0.00/0.05 % Problem : theBenchmark.p : TPTP v0.0.0. Released v0.0.0. 0.00/0.13 % Command : python3 /export/starexec/sandbox2/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox2/tmp/tmp.Gq12apHaAY true 0.24/0.51 % Computer : n018.cluster.edu 0.24/0.51 % Model : x86_64 x86_64 0.24/0.51 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz 0.24/0.51 % Memory : 8046.5625MB 0.24/0.51 % OS : Linux 6.8.0-71-generic 0.24/0.51 % CPULimit : 1440 0.24/0.51 % WCLimit : 180 0.24/0.51 % DateTime : Mon Jul 27 13:09:08 UTC 2026 0.24/0.51 % CPUTime : 0.24/0.51 % Running portfolio for 1440 s 0.24/0.51 % File : /export/starexec/sandbox2/benchmark/theBenchmark.p 0.24/0.51 % Number of cores: 8 0.24/0.52 % Python version: Python 3.12.3 0.24/0.52 % Running in HO mode 0.48/0.95 % Total configuration time : 828 0.48/0.95 % Estimated wc time : 1656 0.48/0.95 % Estimated cpu time (8 cpus) : 207.0 0.48/1.06 % /export/starexec/sandbox2/solver/bin/lams/40_c.s.sh running for 80s 1.85/1.13 % /export/starexec/sandbox2/solver/bin/lams/35_full_unif4.sh running for 80s 1.85/1.15 % /export/starexec/sandbox2/solver/bin/lams/40_c_ic.sh running for 80s 1.85/1.15 % /export/starexec/sandbox2/solver/bin/lams/15_e_short1.sh running for 30s 1.85/1.15 % /export/starexec/sandbox2/solver/bin/lams/40_noforms.sh running for 90s 1.85/1.16 % /export/starexec/sandbox2/solver/bin/lams/40_b.comb.sh running for 70s 1.85/1.16 % /export/starexec/sandbox2/solver/bin/lams/20_acsne_simpl.sh running for 40s 1.85/1.18 % /export/starexec/sandbox2/solver/bin/lams/30_sp5.sh running for 60s 116.64/16.74 % Solved by lams/40_c_ic.sh. 116.64/16.74 % done 1815 iterations in 15.294s 116.64/16.74 % SZS status Theorem for '/export/starexec/sandbox2/benchmark/theBenchmark.p' 116.64/16.74 % SZS output start Refutation 116.64/16.74 thf(setadjoinAx_type, type, setadjoinAx: $o). 116.64/16.74 thf(notdexE_type, type, notdexE: $o). 116.64/16.74 thf(demorgan1a_type, type, demorgan1a: $o). 116.64/16.74 thf(setukpairinjL2_type, type, setukpairinjL2: $o). 116.64/16.74 thf(doubleComplementI1_type, type, doubleComplementI1: $o). 116.64/16.74 thf(setunionAx_type, type, setunionAx: $o). 116.64/16.74 thf(setminusELneg_type, type, setminusELneg: $o). 116.64/16.74 thf(cartprodsndin_type, type, cartprodsndin: $o). 116.64/16.74 thf(ex1E1_type, type, ex1E1: $o). 116.64/16.74 thf(powersetE_type, type, powersetE: $o). 116.64/16.74 thf(woz13rule4_type, type, woz13rule4: $o). 116.64/16.74 thf(omegaSAx_type, type, omegaSAx: $o). 116.64/16.74 thf(exuI1_type, type, exuI1: $o). 116.64/16.74 thf(exuI2_type, type, exuI2: $o). 116.64/16.74 thf(notequalI2_type, type, notequalI2: $o). 116.64/16.74 thf(setukpairinjL_type, type, setukpairinjL: $o). 116.64/16.74 thf(woz13rule1_type, type, woz13rule1: $o). 116.64/16.74 thf(kpairiskpair_type, type, kpairiskpair: $o). 116.64/16.74 thf(upairsubunion_type, type, upairsubunion: $o). 116.64/16.74 thf(funcGraphProp3_type, type, funcGraphProp3: $o). 116.64/16.74 thf(binunionTE_type, type, binunionTE: $o). 116.64/16.74 thf(cartprodmempaircEq_type, type, cartprodmempaircEq: $o). 116.64/16.74 thf(binintersectTERcontra_type, type, binintersectTERcontra: $o). 116.64/16.74 thf(powerset__Cong_type, type, powerset__Cong: $o). 116.64/16.74 thf(sk__268_type, type, sk__268: $i). 116.64/16.74 thf(setminusILneg_type, type, setminusILneg: $o). 116.64/16.74 thf(wellorderingAx_type, type, wellorderingAx: $o). 116.64/16.74 thf(ksndpairEq_type, type, ksndpairEq: $o). 116.64/16.74 thf(funcGraphProp2_type, type, funcGraphProp2: $o). 116.64/16.74 thf(setadjoinSub2_type, type, setadjoinSub2: $o). 116.64/16.74 thf(binintersectSubset5_type, type, binintersectSubset5: $o). 116.64/16.74 thf(iftrue_type, type, iftrue: $o). 116.64/16.74 thf(upairinpowunion_type, type, upairinpowunion: $o). 116.64/16.74 thf(ifSingleton_type, type, ifSingleton: $o). 116.64/16.74 thf(doubleComplementSub2_type, type, doubleComplementSub2: $o). 116.64/16.74 thf(setoftrueEq_type, type, setoftrueEq: $o). 116.64/16.74 thf(funcImageSingleton_type, type, funcImageSingleton: $o). 116.64/16.74 thf(inIntersectImpInUnion2_type, type, inIntersectImpInUnion2: $o). 116.64/16.74 thf(dpsetconstrERa_type, type, dpsetconstrERa: $o). 116.64/16.74 thf(demorgan2b2_type, type, demorgan2b2: $o). 116.64/16.74 thf(lamProp_type, type, lamProp: $o). 116.64/16.74 thf(cartprodpairmemEL_type, type, cartprodpairmemEL: $o). 116.64/16.74 thf(emptyset__Cong_type, type, emptyset__Cong: $o). 116.64/16.74 thf(demorgan2_type, type, demorgan2: $o). 116.64/16.74 thf(sk__267_type, type, sk__267: $i). 116.64/16.74 thf(dpsetconstrER_type, type, dpsetconstrER: $o). 116.64/16.74 thf(sepInPowerset_type, type, sepInPowerset: $o). 116.64/16.74 thf(setukpairIR_type, type, setukpairIR: $o). 116.64/16.74 thf(setukpairinjR1_type, type, setukpairinjR1: $o). 116.64/16.74 thf(lam2p_type, type, lam2p: $o). 116.64/16.74 thf(binunionE_type, type, binunionE: $o). 116.64/16.74 thf(setext_type, type, setext: $o). 116.64/16.74 thf(emptyinPowerset_type, type, emptyinPowerset: $o). 116.64/16.74 thf(ubforcartprodlem1_type, type, ubforcartprodlem1: $o). 116.64/16.74 thf(descr__Cong_type, type, descr__Cong: $o). 116.64/16.74 thf(kfstsingleton_type, type, kfstsingleton: $o). 116.64/16.74 thf(binintersectTELcontra_type, type, binintersectTELcontra: $o). 116.64/16.74 thf(doubleComplementEq_type, type, doubleComplementEq: $o). 116.64/16.74 thf(eqbreln_type, type, eqbreln: $o). 116.64/16.74 thf(binintersectSubset1_type, type, binintersectSubset1: $o). 116.64/16.74 thf(inComplementUnionImpInComplement1_type, type, inComplementUnionImpInComplement1: 116.64/16.74 $o). 116.64/16.74 thf(complementImpComplementIntersect_type, type, complementImpComplementIntersect: 116.64/16.74 $o). 116.64/16.74 thf(in_type, type, in: $i > $i > $o). 116.64/16.74 thf(binunionT_lem_type, type, binunionT_lem: $o). 116.64/16.74 thf(sk__269_type, type, sk__269: $i). 116.64/16.74 thf(quantDeMorgan1_type, type, quantDeMorgan1: $o). 116.64/16.74 thf(complementT_lem_type, type, complementT_lem: $o). 116.64/16.74 thf(binunion_type, type, binunion: $i > $i > $i). 116.64/16.74 thf(kpairsurjEq_type, type, kpairsurjEq: $o). 116.64/16.74 thf(setadjoinIR_type, type, setadjoinIR: $o). 116.64/16.74 thf(doubleComplementE1_type, type, doubleComplementE1: $o). 116.64/16.74 thf(beta1_type, type, beta1: $o). 116.64/16.74 thf(setadjoin__Cong_type, type, setadjoin__Cong: $o). 116.64/16.74 thf(powersetTE1_type, type, powersetTE1: $o). 116.64/16.74 thf(symdiffI2_type, type, symdiffI2: $o). 116.64/16.74 thf(iftrueProp2_type, type, iftrueProp2: $o). 116.64/16.74 thf(upairset2IR_type, type, upairset2IR: $o). 116.64/16.74 thf(iffalseProp2_type, type, iffalseProp2: $o). 116.64/16.74 thf(subsetE_type, type, subsetE: $o). 116.64/16.74 thf(prop2set2propI_type, type, prop2set2propI: $o). 116.64/16.74 thf(demorgan2a_type, type, demorgan2a: $o). 116.64/16.74 thf(dsetconstrEL_type, type, dsetconstrEL: $o). 116.64/16.74 thf(setbeta_type, type, setbeta: $o). 116.64/16.74 thf(eqinunit_type, type, eqinunit: $o). 116.64/16.74 thf(upairsetIL_type, type, upairsetIL: $o). 116.64/16.74 thf(powersetI1_type, type, powersetI1: $o). 116.64/16.74 thf(kfstpairEq_type, type, kfstpairEq: $o). 116.64/16.74 thf(binintersectSubset3_type, type, binintersectSubset3: $o). 116.64/16.74 thf(inComplementUnionImpNotIn1_type, type, inComplementUnionImpNotIn1: $o). 116.64/16.74 thf(setminusIRneg_type, type, setminusIRneg: $o). 116.64/16.74 thf(ap2apEq1_type, type, ap2apEq1: $o). 116.64/16.74 thf(powersetAx_type, type, powersetAx: $o). 116.64/16.74 thf(binintersectSubset4_type, type, binintersectSubset4: $o). 116.64/16.74 thf(singletoninpowunion_type, type, singletoninpowunion: $o). 116.64/16.74 thf(binunionTIRcontra_type, type, binunionTIRcontra: $o). 116.64/16.74 thf(powersetI_type, type, powersetI: $o). 116.64/16.74 thf(cartprodmempair_type, type, cartprodmempair: $o). 116.64/16.74 thf(upairsetIR_type, type, upairsetIR: $o). 116.64/16.74 thf(lamp_type, type, lamp: $o). 116.64/16.74 thf(dpsetconstrEL1_type, type, dpsetconstrEL1: $o). 116.64/16.74 thf(inCongP_type, type, inCongP: $o). 116.64/16.74 thf(setadjoinSub_type, type, setadjoinSub: $o). 116.64/16.74 thf(exuE3e_type, type, exuE3e: $o). 116.64/16.74 thf(emptysetE_type, type, emptysetE: $o). 116.64/16.74 thf(binintersectSubset2_type, type, binintersectSubset2: $o). 116.64/16.74 thf(setunionI_type, type, setunionI: $o). 116.64/16.74 thf(setunion__Cong_type, type, setunion__Cong: $o). 116.64/16.74 thf(prop2setI_type, type, prop2setI: $o). 116.64/16.74 thf(singletonsuniq_type, type, singletonsuniq: $o). 116.64/16.74 thf(nonemptyImpWitness_type, type, nonemptyImpWitness: $o). 116.64/16.74 thf(setminusER_type, type, setminusER: $o). 116.64/16.74 thf(exuE2_type, type, exuE2: $o). 116.64/16.74 thf(emptyset_type, type, emptyset: $i). 116.64/16.74 thf(setukpairinjR11_type, type, setukpairinjR11: $o). 116.64/16.74 thf(ex1I_type, type, ex1I: $o). 116.64/16.74 thf(ex1E2_type, type, ex1E2: $o). 116.64/16.74 thf(setminus_type, type, setminus: $i > $i > $i). 116.64/16.74 thf(setukpairinjL1_type, type, setukpairinjL1: $o). 116.64/16.74 thf(powersetsubset_type, type, powersetsubset: $o). 116.64/16.74 thf(binunionTILcontra_type, type, binunionTILcontra: $o). 116.64/16.74 thf(subPowSU_type, type, subPowSU: $o). 116.64/16.74 thf(notequalI1_type, type, notequalI1: $o). 116.64/16.74 thf(contrasubsetT_type, type, contrasubsetT: $o). 116.64/16.74 thf(notinemptyset_type, type, notinemptyset: $o). 116.64/16.74 thf(lam2lamEq_type, type, lam2lamEq: $o). 116.64/16.74 thf(nonemptyI1_type, type, nonemptyI1: $o). 116.64/16.74 thf(subsetTrans_type, type, subsetTrans: $o). 116.64/16.74 thf(kpairp_type, type, kpairp: $o). 116.64/16.74 thf(setukpairinjR12_type, type, setukpairinjR12: $o). 116.64/16.74 thf(setminusI_type, type, setminusI: $o). 116.64/16.74 thf(binunionIL_type, type, binunionIL: $o). 116.64/16.74 thf(dpsetconstrSub_type, type, dpsetconstrSub: $o). 116.64/16.74 thf(setunionsingleton_type, type, setunionsingleton: $o). 116.64/16.74 thf(subsetE2_type, type, subsetE2: $o). 116.64/16.74 thf(sk__270_type, type, sk__270: $i). 116.64/16.74 thf(singletonsswitch_type, type, singletonsswitch: $o). 116.64/16.74 thf(ubforcartprodlem3_type, type, ubforcartprodlem3: $o). 116.64/16.74 thf(beta2_type, type, beta2: $o). 116.64/16.74 thf(dpsetconstrI_type, type, dpsetconstrI: $o). 116.64/16.74 thf(setextsub_type, type, setextsub: $o). 116.64/16.74 thf(binunionLsub_type, type, binunionLsub: $o). 116.64/16.74 thf(setunionsingleton1_type, type, setunionsingleton1: $o). 116.64/16.74 thf(binintersect_type, type, binintersect: $i > $i > $i). 116.64/16.74 thf(demorgan2a2_type, type, demorgan2a2: $o). 116.64/16.74 thf(complementUnionInPowersetComplement_type, type, complementUnionInPowersetComplement: 116.64/16.74 $o). 116.64/16.74 thf(iftrueorfalse_type, type, iftrueorfalse: $o). 116.64/16.74 thf(emptysetsubset_type, type, emptysetsubset: $o). 116.64/16.74 thf(quantDeMorgan3_type, type, quantDeMorgan3: $o). 116.64/16.74 thf(cartprodpairsurjEq_type, type, cartprodpairsurjEq: $o). 116.64/16.74 thf(setOfPairsIsBReln_type, type, setOfPairsIsBReln: $o). 116.64/16.74 thf(setunionE_type, type, setunionE: $o). 116.64/16.74 thf(ksndsingleton_type, type, ksndsingleton: $o). 116.64/16.74 thf(setminusSubset1_type, type, setminusSubset1: $o). 116.64/16.74 thf(woz13rule0_type, type, woz13rule0: $o). 116.64/16.74 thf(powersetT_lem_type, type, powersetT_lem: $o). 116.64/16.74 thf(emptyinunitempty_type, type, emptyinunitempty: $o). 116.64/16.74 thf(binunionIR_type, type, binunionIR: $o). 116.64/16.74 thf(theeq_type, type, theeq: $o). 116.64/16.74 thf(setadjoinE_type, type, setadjoinE: $o). 116.64/16.74 thf(doubleComplementSub1_type, type, doubleComplementSub1: $o). 116.64/16.74 thf(sk__266_type, type, sk__266: $i). 116.64/16.74 thf(infuncsetfunc_type, type, infuncsetfunc: $o). 116.64/16.74 thf(woz13rule3_type, type, woz13rule3: $o). 116.64/16.74 thf(ap2apEq2_type, type, ap2apEq2: $o). 116.64/16.74 thf(ap2p_type, type, ap2p: $o). 116.64/16.74 thf(setadjoinIL_type, type, setadjoinIL: $o). 116.64/16.74 thf(cartprodsndpairEq_type, type, cartprodsndpairEq: $o). 116.64/16.74 thf(exuE1_type, type, exuE1: $o). 116.64/16.74 thf(ubforcartprodlem2_type, type, ubforcartprodlem2: $o). 116.64/16.74 thf(binintersectRsub_type, type, binintersectRsub: $o). 116.64/16.74 thf(setminusLsub_type, type, setminusLsub: $o). 116.64/16.74 thf(funcextLem_type, type, funcextLem: $o). 116.64/16.74 thf(setukpairinjR_type, type, setukpairinjR: $o). 116.64/16.74 thf(notinsingleton_type, type, notinsingleton: $o). 116.64/16.74 thf(inIntersectImpInIntersectUnions_type, type, inIntersectImpInIntersectUnions: 116.64/16.74 $o). 116.64/16.74 thf(eqimpsubset2_type, type, eqimpsubset2: $o). 116.64/16.74 thf(exuEu_type, type, exuEu: $o). 116.64/16.74 thf(emptysetimpfalse_type, type, emptysetimpfalse: $o). 116.64/16.74 thf(upairsetE_type, type, upairsetE: $o). 116.64/16.74 thf(omega0Ax_type, type, omega0Ax: $o). 116.64/16.74 thf(subsetTI_type, type, subsetTI: $o). 116.64/16.74 thf(notsubsetI_type, type, notsubsetI: $o). 116.64/16.74 thf(contraSubsetComplement_type, type, contraSubsetComplement: $o). 116.64/16.74 thf(iffalseProp1_type, type, iffalseProp1: $o). 116.64/16.74 thf(quantDeMorgan4_type, type, quantDeMorgan4: $o). 116.64/16.74 thf(setextAx_type, type, setextAx: $o). 116.64/16.74 thf(cartprodpairmemER_type, type, cartprodpairmemER: $o). 116.64/16.74 thf(powersetE1_type, type, powersetE1: $o). 116.64/16.74 thf(bs114d_type, type, bs114d: $o). 116.64/16.74 thf(contrasubsetT3_type, type, contrasubsetT3: $o). 116.64/16.74 thf(noeltsimpempty_type, type, noeltsimpempty: $o). 116.64/16.74 thf(complementTcontraSubset_type, type, complementTcontraSubset: $o). 116.64/16.74 thf(ifp_type, type, ifp: $o). 116.64/16.74 thf(inIntersectImpInUnion_type, type, inIntersectImpInUnion: $o). 116.64/16.74 thf(powersetTI1_type, type, powersetTI1: $o). 116.64/16.74 thf(binintersectLsub_type, type, binintersectLsub: $o). 116.64/16.74 thf(subsetI1_type, type, subsetI1: $o). 116.64/16.74 thf(symdiffE_type, type, symdiffE: $o). 116.64/16.74 thf(descrp_type, type, descrp: $o). 116.64/16.74 thf(dsetconstr__Cong_type, type, dsetconstr__Cong: $o). 116.64/16.74 thf(foundationAx_type, type, foundationAx: $o). 116.64/16.74 thf(emptysetAx_type, type, emptysetAx: $o). 116.64/16.74 thf(emptyI_type, type, emptyI: $o). 116.64/16.74 thf(setadjoinOr_type, type, setadjoinOr: $o). 116.64/16.74 thf(eta2_type, type, eta2: $o). 116.64/16.74 thf(binintersectEL_type, type, binintersectEL: $o). 116.64/16.74 thf(emptyE1_type, type, emptyE1: $o). 116.64/16.74 thf(emptyInPowerset_type, type, emptyInPowerset: $o). 116.64/16.74 thf(complementTI1_type, type, complementTI1: $o). 116.64/16.74 thf(vacuousDall_type, type, vacuousDall: $o). 116.64/16.74 thf(dsetconstrER_type, type, dsetconstrER: $o). 116.64/16.74 thf(binintersectI_type, type, binintersectI: $o). 116.64/16.74 thf(funcext_type, type, funcext: $o). 116.64/16.74 thf(funcGraphProp4_type, type, funcGraphProp4: $o). 116.64/16.74 thf(cartprodpairin_type, type, cartprodpairin: $o). 116.64/16.74 thf(cartprodmempair1_type, type, cartprodmempair1: $o). 116.64/16.74 thf(woz13rule2_type, type, woz13rule2: $o). 116.64/16.74 thf(brelnall2_type, type, brelnall2: $o). 116.64/16.74 thf(setextT_type, type, setextT: $o). 116.64/16.74 thf(ex1I2_type, type, ex1I2: $o). 116.64/16.74 thf(symdiffI1_type, type, symdiffI1: $o). 116.64/16.74 thf(setukpairinjR2_type, type, setukpairinjR2: $o). 116.64/16.74 thf(dpsetconstrEL2_type, type, dpsetconstrEL2: $o). 116.64/16.74 thf(theprop_type, type, theprop: $o). 116.64/16.74 thf(subsetI2_type, type, subsetI2: $o). 116.64/16.74 thf(complementInPowersetComplementIntersect_type, type, complementInPowersetComplementIntersect: 116.64/16.74 $o). 116.64/16.74 thf(demorgan1_type, type, demorgan1: $o). 116.64/16.74 thf(setminusT_lem_type, type, setminusT_lem: $o). 116.64/16.74 thf(symdiffIneg1_type, type, symdiffIneg1: $o). 116.64/16.74 thf(setminusERneg_type, type, setminusERneg: $o). 116.64/16.74 thf(symdiffIneg2_type, type, symdiffIneg2: $o). 116.64/16.74 thf(omega__Cong_type, type, omega__Cong: $o). 116.64/16.74 thf(subsetRefl_type, type, subsetRefl: $o). 116.64/16.74 thf(uniqinunit_type, type, uniqinunit: $o). 116.64/16.74 thf(complementSubsetComplementIntersect_type, type, complementSubsetComplementIntersect: 116.64/16.74 $o). 116.64/16.74 thf(demorgan2b_type, type, demorgan2b: $o). 116.64/16.74 thf(setminusSubset2_type, type, setminusSubset2: $o). 116.64/16.74 thf(prop2setE_type, type, prop2setE: $o). 116.64/16.74 thf(binunionEcases_type, type, binunionEcases: $o). 116.64/16.74 thf(funcinfuncset_type, type, funcinfuncset: $o). 116.64/16.74 thf(complementTE1_type, type, complementTE1: $o). 116.64/16.74 thf(nonemptyI_type, type, nonemptyI: $o). 116.64/16.74 thf(app_type, type, app: $o). 116.64/16.74 thf(disjointsetsI1_type, type, disjointsetsI1: $o). 116.64/16.74 thf(demorgan2a1_type, type, demorgan2a1: $o). 116.64/16.74 thf(exuE3u_type, type, exuE3u: $o). 116.64/16.74 thf(eta1_type, type, eta1: $o). 116.64/16.74 thf(setminusEL_type, type, setminusEL: $o). 116.64/16.74 thf(cartprodfstin_type, type, cartprodfstin: $o). 116.64/16.74 thf(setunionsingleton2_type, type, setunionsingleton2: $o). 116.64/16.74 thf(sepSubset_type, type, sepSubset: $o). 116.64/16.74 thf(complementTnotintersectT_type, type, complementTnotintersectT: $o). 116.64/16.74 thf(upairset2E_type, type, upairset2E: $o). 116.64/16.74 thf(eqimpsubset1_type, type, eqimpsubset1: $o). 116.64/16.74 thf(exuI3_type, type, exuI3: $o). 116.64/16.74 thf(cartprodfstpairEq_type, type, cartprodfstpairEq: $o). 116.64/16.74 thf(apProp_type, type, apProp: $o). 116.64/16.74 thf(notdallE_type, type, notdallE: $o). 116.64/16.74 thf(iftrueProp1_type, type, iftrueProp1: $o). 116.64/16.74 thf(binintersectER_type, type, binintersectER: $o). 116.64/16.74 thf(brelnall1_type, type, brelnall1: $o). 116.64/16.74 thf(powerset_type, type, powerset: $i > $i). 116.64/16.74 thf(binunionTEcontra_type, type, binunionTEcontra: $o). 116.64/16.74 thf(demorgan1b_type, type, demorgan1b: $o). 116.64/16.74 thf(dsetconstrI_type, type, dsetconstrI: $o). 116.64/16.74 thf(funcGraphProp1_type, type, funcGraphProp1: $o). 116.64/16.74 thf(binintersectT_lem_type, type, binintersectT_lem: $o). 116.64/16.74 thf(setadjoin_type, type, setadjoin: $i > $i > $i). 116.64/16.74 thf(exu__Cong_type, type, exu__Cong: $o). 116.64/16.74 thf(intersectInPowersetIntersectUnions_type, type, intersectInPowersetIntersectUnions: 116.64/16.74 $o). 116.64/16.74 thf(quantDeMorgan2_type, type, quantDeMorgan2: $o). 116.64/16.74 thf(contrasubsetT2_type, type, contrasubsetT2: $o). 116.64/16.74 thf(secondinupair_type, type, secondinupair: $o). 116.64/16.74 thf(singletonprop_type, type, singletonprop: $o). 116.64/16.74 thf(singletonsubset_type, type, singletonsubset: $o). 116.64/16.74 thf(contrasubsetT1_type, type, contrasubsetT1: $o). 116.64/16.74 thf(singletoninpowerset_type, type, singletoninpowerset: $o). 116.64/16.74 thf(subsetemptysetimpeq_type, type, subsetemptysetimpeq: $o). 116.64/16.74 thf(replAx_type, type, replAx: $o). 116.64/16.74 thf(upairequniteq_type, type, upairequniteq: $o). 116.64/16.74 thf(nonemptyE1_type, type, nonemptyE1: $o). 116.64/16.74 thf(omegaIndAx_type, type, omegaIndAx: $o). 116.64/16.74 thf(setukpairIL_type, type, setukpairIL: $o). 116.64/16.74 thf(setunionE2_type, type, setunionE2: $o). 116.64/16.74 thf(inPowerset_type, type, inPowerset: $o). 116.64/16.74 thf(iffalse_type, type, iffalse: $o). 116.64/16.74 thf(funcext2_type, type, funcext2: $o). 116.64/16.74 thf(subset_type, type, subset: $i > $i > $o). 116.64/16.74 thf(woz1_1_type, type, woz1_1: $o). 116.64/16.74 thf(subbreln_type, type, subbreln: $o). 116.64/16.74 thf(in__Cong_type, type, in__Cong: $o). 116.64/16.74 thf(binunionRsub_type, type, binunionRsub: $o). 116.64/16.74 thf(subset2powerset_type, type, subset2powerset: $o). 116.64/16.74 thf(woz1_1, axiom, woz1_1 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( in @ 116.64/16.74 ( setminus @ A @ X ) @ 116.64/16.74 ( powerset @ ( setminus @ A @ ( binintersect @ X @ Y ) ) ) ) ) ) ))). 116.64/16.74 thf('0', plain, 116.64/16.74 (( woz1_1 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( in @ 116.64/16.74 ( setminus @ X4 @ X6 ) @ 116.64/16.74 ( powerset @ ( setminus @ X4 @ ( binintersect @ X6 @ X8 ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(woz13rule4, axiom, woz13rule4 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Z:$i]: 116.64/16.74 ( ( in @ Z @ ( powerset @ A ) ) => 116.64/16.74 ( ![W:$i]: 116.64/16.74 ( ( in @ W @ ( powerset @ A ) ) => 116.64/16.74 ( ( subset @ X @ Z ) => 116.64/16.74 ( ( subset @ Y @ W ) => 116.64/16.74 ( subset @ 116.64/16.74 ( binintersect @ X @ Y ) @ ( binintersect @ Z @ W ) ) ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('1', plain, 116.64/16.74 (( woz13rule4 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X12:$i]: 116.64/16.74 ( ( in @ X12 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ( subset @ X6 @ X10 ) => 116.64/16.74 ( ( subset @ X8 @ X12 ) => 116.64/16.74 ( subset @ 116.64/16.74 ( binintersect @ X6 @ X8 ) @ 116.64/16.74 ( binintersect @ X10 @ X12 ) ) ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(woz13rule3, axiom, woz13rule3 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Z:$i]: 116.64/16.74 ( ( in @ Z @ ( powerset @ A ) ) => 116.64/16.74 ( ( subset @ X @ Y ) => 116.64/16.74 ( ( subset @ X @ Z ) => 116.64/16.74 ( subset @ X @ ( binintersect @ Y @ Z ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('2', plain, 116.64/16.74 (( woz13rule3 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ( subset @ X6 @ X8 ) => 116.64/16.74 ( ( subset @ X6 @ X10 ) => 116.64/16.74 ( subset @ X6 @ ( binintersect @ X8 @ X10 ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(woz13rule2, axiom, woz13rule2 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Z:$i]: 116.64/16.74 ( ( in @ Z @ ( powerset @ A ) ) => 116.64/16.74 ( ( subset @ Y @ Z ) => 116.64/16.74 ( subset @ ( binintersect @ X @ Y ) @ Z ) ) ) ) ) ) ))). 116.64/16.74 thf('3', plain, 116.64/16.74 (( woz13rule2 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ( subset @ X8 @ X10 ) => 116.64/16.74 ( subset @ ( binintersect @ X6 @ X8 ) @ X10 ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(woz13rule1, axiom, woz13rule1 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Z:$i]: 116.64/16.74 ( ( in @ Z @ ( powerset @ A ) ) => 116.64/16.74 ( ( subset @ X @ Z ) => 116.64/16.74 ( subset @ ( binintersect @ X @ Y ) @ Z ) ) ) ) ) ) ))). 116.64/16.74 thf('4', plain, 116.64/16.74 (( woz13rule1 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ( subset @ X6 @ X10 ) => 116.64/16.74 ( subset @ ( binintersect @ X6 @ X8 ) @ X10 ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(woz13rule0, axiom, woz13rule0 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ ( binintersect @ X @ Y ) ) => ( in @ Xx @ A ) ) ) ) ) ))). 116.64/16.74 thf('5', plain, 116.64/16.74 (( woz13rule0 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ ( binintersect @ X6 @ X8 ) ) => 116.64/16.74 ( in @ X10 @ X4 ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan2, axiom, demorgan2 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ( setminus @ A @ ( binunion @ X @ Y ) ) = 116.64/16.74 ( binintersect @ ( setminus @ A @ X ) @ ( setminus @ A @ Y ) ) ) ) ) ))). 116.64/16.74 thf('6', plain, 116.64/16.74 (( demorgan2 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) = 116.64/16.74 ( binintersect @ 116.64/16.74 ( setminus @ X4 @ X6 ) @ ( setminus @ X4 @ X8 ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan2b, axiom, demorgan2b = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ 116.64/16.74 Xx @ 116.64/16.74 ( binintersect @ ( setminus @ A @ X ) @ ( setminus @ A @ Y ) ) ) => 116.64/16.74 ( in @ Xx @ ( setminus @ A @ ( binunion @ X @ Y ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('7', plain, 116.64/16.74 (( demorgan2b ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( in @ 116.64/16.74 X10 @ 116.64/16.74 ( binintersect @ 116.64/16.74 ( setminus @ X4 @ X6 ) @ ( setminus @ X4 @ X8 ) ) ) => 116.64/16.74 ( in @ X10 @ ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan2b2, axiom, demorgan2b2 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ Xx @ ( setminus @ A @ X ) ) => 116.64/16.74 ( ( in @ Xx @ ( setminus @ A @ Y ) ) => 116.64/16.74 ( in @ Xx @ ( setminus @ A @ ( binunion @ X @ Y ) ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('8', plain, 116.64/16.74 (( demorgan2b2 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( in @ X10 @ ( setminus @ X4 @ X6 ) ) => 116.64/16.74 ( ( in @ X10 @ ( setminus @ X4 @ X8 ) ) => 116.64/16.74 ( in @ X10 @ ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan2a, axiom, demorgan2a = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ Xx @ ( setminus @ A @ ( binunion @ X @ Y ) ) ) => 116.64/16.74 ( in @ 116.64/16.74 Xx @ 116.64/16.74 ( binintersect @ ( setminus @ A @ X ) @ ( setminus @ A @ Y ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('9', plain, 116.64/16.74 (( demorgan2a ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( in @ X10 @ ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) ) => 116.64/16.74 ( in @ 116.64/16.74 X10 @ 116.64/16.74 ( binintersect @ 116.64/16.74 ( setminus @ X4 @ X6 ) @ ( setminus @ X4 @ X8 ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan1, axiom, demorgan1 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ( setminus @ A @ ( binintersect @ X @ Y ) ) = 116.64/16.74 ( binunion @ ( setminus @ A @ X ) @ ( setminus @ A @ Y ) ) ) ) ) ))). 116.64/16.74 thf('10', plain, 116.64/16.74 (( demorgan1 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ( setminus @ X4 @ ( binintersect @ X6 @ X8 ) ) = 116.64/16.74 ( binunion @ ( setminus @ X4 @ X6 ) @ ( setminus @ X4 @ X8 ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan1b, axiom, demorgan1b = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ 116.64/16.74 Xx @ 116.64/16.74 ( binunion @ ( setminus @ A @ X ) @ ( setminus @ A @ Y ) ) ) => 116.64/16.74 ( in @ Xx @ ( setminus @ A @ ( binintersect @ X @ Y ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('11', plain, 116.64/16.74 (( demorgan1b ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( in @ 116.64/16.74 X10 @ 116.64/16.74 ( binunion @ 116.64/16.74 ( setminus @ X4 @ X6 ) @ ( setminus @ X4 @ X8 ) ) ) => 116.64/16.74 ( in @ 116.64/16.74 X10 @ ( setminus @ X4 @ ( binintersect @ X6 @ X8 ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan1a, axiom, demorgan1a = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ Xx @ ( setminus @ A @ ( binintersect @ X @ Y ) ) ) => 116.64/16.74 ( in @ 116.64/16.74 Xx @ 116.64/16.74 ( binunion @ ( setminus @ A @ X ) @ ( setminus @ A @ Y ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('12', plain, 116.64/16.74 (( demorgan1a ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( in @ 116.64/16.74 X10 @ ( setminus @ X4 @ ( binintersect @ X6 @ X8 ) ) ) => 116.64/16.74 ( in @ 116.64/16.74 X10 @ 116.64/16.74 ( binunion @ 116.64/16.74 ( setminus @ X4 @ X6 ) @ ( setminus @ X4 @ X8 ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan2a2, axiom, demorgan2a2 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ Xx @ ( setminus @ A @ ( binunion @ X @ Y ) ) ) => 116.64/16.74 ( in @ Xx @ ( setminus @ A @ Y ) ) ) ) ) ) ) ))). 116.64/16.74 thf('13', plain, 116.64/16.74 (( demorgan2a2 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( in @ X10 @ ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) ) => 116.64/16.74 ( in @ X10 @ ( setminus @ X4 @ X8 ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(complementUnionInPowersetComplement, axiom, 116.64/16.74 complementUnionInPowersetComplement = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( in @ 116.64/16.74 ( setminus @ A @ ( binunion @ X @ Y ) ) @ 116.64/16.74 ( powerset @ ( setminus @ A @ X ) ) ) ) ) ))). 116.64/16.74 thf('14', plain, 116.64/16.74 (( complementUnionInPowersetComplement ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( in @ 116.64/16.74 ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) @ 116.64/16.74 ( powerset @ ( setminus @ X4 @ X6 ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(demorgan2a1, axiom, demorgan2a1 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ Xx @ ( setminus @ A @ ( binunion @ X @ Y ) ) ) => 116.64/16.74 ( in @ Xx @ ( setminus @ A @ X ) ) ) ) ) ) ) ))). 116.64/16.74 thf('15', plain, 116.64/16.74 (( demorgan2a1 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( in @ X10 @ ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) ) => 116.64/16.74 ( in @ X10 @ ( setminus @ X4 @ X6 ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(binunionTEcontra, axiom, binunionTEcontra = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( ~( in @ Xx @ X ) ) => 116.64/16.74 ( ( ~( in @ Xx @ Y ) ) => 116.64/16.74 ( ~( in @ Xx @ ( binunion @ X @ Y ) ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('16', plain, 116.64/16.74 (( binunionTEcontra ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( ~( in @ X10 @ X6 ) ) => 116.64/16.74 ( ( ~( in @ X10 @ X8 ) ) => 116.64/16.74 ( ~( in @ X10 @ ( binunion @ X6 @ X8 ) ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(binunionTE, axiom, binunionTE = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xphi:$o,Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ Xx @ ( binunion @ X @ Y ) ) => 116.64/16.74 ( ( ( in @ Xx @ X ) => ( Xphi ) ) => 116.64/16.74 ( ( ( in @ Xx @ Y ) => ( Xphi ) ) => ( Xphi ) ) ) ) ) ) ) ) ))). 116.64/16.74 thf('17', plain, 116.64/16.74 (( binunionTE ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$o,X12:$i]: 116.64/16.74 ( ( in @ X12 @ X4 ) => 116.64/16.74 ( ( in @ X12 @ ( binunion @ X6 @ X8 ) ) => 116.64/16.74 ( ( ( in @ X12 @ X6 ) => ( X10 ) ) => 116.64/16.74 ( ( ( in @ X12 @ X8 ) => ( X10 ) ) => ( X10 ) ) ) ) ) ) ) ) ) )), 116.64/16.74 define([status(thm)])). 116.64/16.74 thf(inComplementUnionImpInComplement1, axiom, 116.64/16.74 inComplementUnionImpInComplement1 = 116.64/16.74 (![A:$i,X:$i]: 116.64/16.74 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.74 ( ![Y:$i]: 116.64/16.74 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.74 ( ![Xx:$i]: 116.64/16.74 ( ( in @ Xx @ A ) => 116.64/16.74 ( ( in @ Xx @ ( setminus @ A @ ( binunion @ X @ Y ) ) ) => 116.64/16.74 ( in @ Xx @ ( setminus @ A @ X ) ) ) ) ) ) ) ))). 116.64/16.74 thf('18', plain, 116.64/16.74 (( inComplementUnionImpInComplement1 ) = 116.64/16.74 ( ![X4:$i,X6:$i]: 116.64/16.74 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X8:$i]: 116.64/16.74 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.74 ( ![X10:$i]: 116.64/16.74 ( ( in @ X10 @ X4 ) => 116.64/16.74 ( ( in @ X10 @ ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) ) => 116.64/16.75 ( in @ X10 @ ( setminus @ X4 @ X6 ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(inComplementUnionImpNotIn1, axiom, inComplementUnionImpNotIn1 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ ( setminus @ A @ ( binunion @ X @ Y ) ) ) => 116.64/16.75 ( ~( in @ Xx @ X ) ) ) ) ) ) ) ))). 116.64/16.75 thf('19', plain, 116.64/16.75 (( inComplementUnionImpNotIn1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( in @ X10 @ ( setminus @ X4 @ ( binunion @ X6 @ X8 ) ) ) => 116.64/16.75 ( ~( in @ X10 @ X6 ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(intersectInPowersetIntersectUnions, axiom, 116.64/16.75 intersectInPowersetIntersectUnions = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Z:$i]: 116.64/16.75 ( ( in @ Z @ ( powerset @ A ) ) => 116.64/16.75 ( in @ 116.64/16.75 ( binintersect @ X @ Y ) @ 116.64/16.75 ( powerset @ 116.64/16.75 ( binintersect @ ( binunion @ X @ Z ) @ ( binunion @ Y @ Z ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('20', plain, 116.64/16.75 (( intersectInPowersetIntersectUnions ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ ( powerset @ X4 ) ) => 116.64/16.75 ( in @ 116.64/16.75 ( binintersect @ X6 @ X8 ) @ 116.64/16.75 ( powerset @ 116.64/16.75 ( binintersect @ 116.64/16.75 ( binunion @ X6 @ X10 ) @ ( binunion @ X8 @ X10 ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(inIntersectImpInIntersectUnions, axiom, inIntersectImpInIntersectUnions = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Z:$i]: 116.64/16.75 ( ( in @ Z @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ ( binintersect @ X @ Y ) ) => 116.64/16.75 ( in @ 116.64/16.75 Xx @ 116.64/16.75 ( binintersect @ 116.64/16.75 ( binunion @ X @ Z ) @ ( binunion @ Y @ Z ) ) ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('21', plain, 116.64/16.75 (( inIntersectImpInIntersectUnions ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X12:$i]: 116.64/16.75 ( ( in @ X12 @ X4 ) => 116.64/16.75 ( ( in @ X12 @ ( binintersect @ X6 @ X8 ) ) => 116.64/16.75 ( in @ 116.64/16.75 X12 @ 116.64/16.75 ( binintersect @ 116.64/16.75 ( binunion @ X6 @ X10 ) @ ( binunion @ X8 @ X10 ) ) ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(inIntersectImpInUnion2, axiom, inIntersectImpInUnion2 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Z:$i]: 116.64/16.75 ( ( in @ Z @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ ( binintersect @ X @ Y ) ) => 116.64/16.75 ( in @ Xx @ ( binunion @ Y @ Z ) ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('22', plain, 116.64/16.75 (( inIntersectImpInUnion2 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X12:$i]: 116.64/16.75 ( ( in @ X12 @ X4 ) => 116.64/16.75 ( ( in @ X12 @ ( binintersect @ X6 @ X8 ) ) => 116.64/16.75 ( in @ X12 @ ( binunion @ X8 @ X10 ) ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(inIntersectImpInUnion, axiom, inIntersectImpInUnion = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Z:$i]: 116.64/16.75 ( ( in @ Z @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ ( binintersect @ X @ Y ) ) => 116.64/16.75 ( in @ Xx @ ( binunion @ X @ Z ) ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('23', plain, 116.64/16.75 (( inIntersectImpInUnion ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X12:$i]: 116.64/16.75 ( ( in @ X12 @ X4 ) => 116.64/16.75 ( ( in @ X12 @ ( binintersect @ X6 @ X8 ) ) => 116.64/16.75 ( in @ X12 @ ( binunion @ X6 @ X10 ) ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionTIRcontra, axiom, binunionTIRcontra = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( ~( in @ Xx @ ( binunion @ X @ Y ) ) ) => 116.64/16.75 ( ~( in @ Xx @ Y ) ) ) ) ) ) ) ))). 116.64/16.75 thf('24', plain, 116.64/16.75 (( binunionTIRcontra ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( ~( in @ X10 @ ( binunion @ X6 @ X8 ) ) ) => 116.64/16.75 ( ~( in @ X10 @ X8 ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionTILcontra, axiom, binunionTILcontra = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( ~( in @ Xx @ ( binunion @ X @ Y ) ) ) => 116.64/16.75 ( ~( in @ Xx @ X ) ) ) ) ) ) ) ))). 116.64/16.75 thf('25', plain, 116.64/16.75 (( binunionTILcontra ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( ~( in @ X10 @ ( binunion @ X6 @ X8 ) ) ) => 116.64/16.75 ( ~( in @ X10 @ X6 ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(complementTcontraSubset, axiom, complementTcontraSubset = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ( subset @ X @ ( setminus @ A @ Y ) ) => 116.64/16.75 ( subset @ Y @ ( setminus @ A @ X ) ) ) ) ) ))). 116.64/16.75 thf('26', plain, 116.64/16.75 (( complementTcontraSubset ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ( subset @ X6 @ ( setminus @ X4 @ X8 ) ) => 116.64/16.75 ( subset @ X8 @ ( setminus @ X4 @ X6 ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(contraSubsetComplement, axiom, contraSubsetComplement = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ( subset @ X @ ( setminus @ A @ Y ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ Y ) => ( in @ Xx @ ( setminus @ A @ X ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('27', plain, 116.64/16.75 (( contraSubsetComplement ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ( subset @ X6 @ ( setminus @ X4 @ X8 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( in @ X10 @ X8 ) => 116.64/16.75 ( in @ X10 @ ( setminus @ X4 @ X6 ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(complementInPowersetComplementIntersect, axiom, 116.64/16.75 complementInPowersetComplementIntersect = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( in @ 116.64/16.75 ( setminus @ A @ X ) @ 116.64/16.75 ( powerset @ ( setminus @ A @ ( binintersect @ X @ Y ) ) ) ) ) ) ))). 116.64/16.75 thf('28', plain, 116.64/16.75 (( complementInPowersetComplementIntersect ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( in @ 116.64/16.75 ( setminus @ X4 @ X6 ) @ 116.64/16.75 ( powerset @ ( setminus @ X4 @ ( binintersect @ X6 @ X8 ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(complementSubsetComplementIntersect, axiom, 116.64/16.75 complementSubsetComplementIntersect = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( subset @ 116.64/16.75 ( setminus @ A @ X ) @ ( setminus @ A @ ( binintersect @ X @ Y ) ) ) ) ) ))). 116.64/16.75 thf('29', plain, 116.64/16.75 (( complementSubsetComplementIntersect ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( subset @ 116.64/16.75 ( setminus @ X4 @ X6 ) @ 116.64/16.75 ( setminus @ X4 @ ( binintersect @ X6 @ X8 ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(complementImpComplementIntersect, axiom, 116.64/16.75 complementImpComplementIntersect = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ ( setminus @ A @ X ) ) => 116.64/16.75 ( in @ Xx @ ( setminus @ A @ ( binintersect @ X @ Y ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('30', plain, 116.64/16.75 (( complementImpComplementIntersect ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( in @ X10 @ ( setminus @ X4 @ X6 ) ) => 116.64/16.75 ( in @ 116.64/16.75 X10 @ ( setminus @ X4 @ ( binintersect @ X6 @ X8 ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(complementTnotintersectT, axiom, complementTnotintersectT = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ ( setminus @ A @ X ) ) => 116.64/16.75 ( ~( in @ Xx @ ( binintersect @ X @ Y ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('31', plain, 116.64/16.75 (( complementTnotintersectT ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( in @ X10 @ ( setminus @ X4 @ X6 ) ) => 116.64/16.75 ( ~( in @ X10 @ ( binintersect @ X6 @ X8 ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(doubleComplementEq, axiom, doubleComplementEq = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ( X ) = ( setminus @ A @ ( setminus @ A @ X ) ) ) ))). 116.64/16.75 thf('32', plain, 116.64/16.75 (( doubleComplementEq ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ( X6 ) = ( setminus @ X4 @ ( setminus @ X4 @ X6 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(doubleComplementSub2, axiom, doubleComplementSub2 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( subset @ ( setminus @ A @ ( setminus @ A @ X ) ) @ X ) ))). 116.64/16.75 thf('33', plain, 116.64/16.75 (( doubleComplementSub2 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( subset @ ( setminus @ X4 @ ( setminus @ X4 @ X6 ) ) @ X6 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(doubleComplementSub1, axiom, doubleComplementSub1 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( subset @ X @ ( setminus @ A @ ( setminus @ A @ X ) ) ) ))). 116.64/16.75 thf('34', plain, 116.64/16.75 (( doubleComplementSub1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( subset @ X6 @ ( setminus @ X4 @ ( setminus @ X4 @ X6 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(doubleComplementE1, axiom, doubleComplementE1 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ ( setminus @ A @ ( setminus @ A @ X ) ) ) => 116.64/16.75 ( in @ Xx @ X ) ) ) ) ))). 116.64/16.75 thf('35', plain, 116.64/16.75 (( doubleComplementE1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ( in @ X8 @ ( setminus @ X4 @ ( setminus @ X4 @ X6 ) ) ) => 116.64/16.75 ( in @ X8 @ X6 ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(doubleComplementI1, axiom, doubleComplementI1 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ X ) => 116.64/16.75 ( in @ Xx @ ( setminus @ A @ ( setminus @ A @ X ) ) ) ) ) ) ))). 116.64/16.75 thf('36', plain, 116.64/16.75 (( doubleComplementI1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ( in @ X8 @ X6 ) => 116.64/16.75 ( in @ X8 @ ( setminus @ X4 @ ( setminus @ X4 @ X6 ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(contrasubsetT3, axiom, contrasubsetT3 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ( subset @ ( setminus @ A @ Y ) @ ( setminus @ A @ X ) ) => 116.64/16.75 ( subset @ X @ Y ) ) ) ) ))). 116.64/16.75 thf('37', plain, 116.64/16.75 (( contrasubsetT3 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ( subset @ ( setminus @ X4 @ X8 ) @ ( setminus @ X4 @ X6 ) ) => 116.64/16.75 ( subset @ X6 @ X8 ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(contrasubsetT2, axiom, contrasubsetT2 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ( subset @ X @ Y ) => 116.64/16.75 ( subset @ ( setminus @ A @ Y ) @ ( setminus @ A @ X ) ) ) ) ) ))). 116.64/16.75 thf('38', plain, 116.64/16.75 (( contrasubsetT2 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ( subset @ X6 @ X8 ) => 116.64/16.75 ( subset @ ( setminus @ X4 @ X8 ) @ ( setminus @ X4 @ X6 ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(contrasubsetT, axiom, contrasubsetT = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( subset @ X @ ( setminus @ A @ Y ) ) => 116.64/16.75 ( ( in @ Xx @ Y ) => ( ~( in @ Xx @ X ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('39', plain, 116.64/16.75 (( contrasubsetT ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( subset @ X6 @ ( setminus @ X4 @ X8 ) ) => 116.64/16.75 ( ( in @ X10 @ X8 ) => ( ~( in @ X10 @ X6 ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectTERcontra, axiom, binintersectTERcontra = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( ~( in @ Xx @ Y ) ) => 116.64/16.75 ( ~( in @ Xx @ ( binintersect @ X @ Y ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('40', plain, 116.64/16.75 (( binintersectTERcontra ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( ~( in @ X10 @ X8 ) ) => 116.64/16.75 ( ~( in @ X10 @ ( binintersect @ X6 @ X8 ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectTELcontra, axiom, binintersectTELcontra = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( ~( in @ Xx @ X ) ) => 116.64/16.75 ( ~( in @ Xx @ ( binintersect @ X @ Y ) ) ) ) ) ) ) ) ))). 116.64/16.75 thf('41', plain, 116.64/16.75 (( binintersectTELcontra ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X4 ) => 116.64/16.75 ( ( ~( in @ X10 @ X6 ) ) => 116.64/16.75 ( ~( in @ X10 @ ( binintersect @ X6 @ X8 ) ) ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(complementTE1, axiom, complementTE1 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( ~( in @ Xx @ ( setminus @ A @ X ) ) ) => ( in @ Xx @ X ) ) ) ) ))). 116.64/16.75 thf('42', plain, 116.64/16.75 (( complementTE1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ( ~( in @ X8 @ ( setminus @ X4 @ X6 ) ) ) => ( in @ X8 @ X6 ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(complementTI1, axiom, complementTI1 = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ X ) => ( ~( in @ Xx @ ( setminus @ A @ X ) ) ) ) ) ) ))). 116.64/16.75 thf('43', plain, 116.64/16.75 (( complementTI1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ( in @ X8 @ X6 ) => ( ~( in @ X8 @ ( setminus @ X4 @ X6 ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(complementT_lem, axiom, complementT_lem = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( in @ ( setminus @ A @ X ) @ ( powerset @ A ) ) ))). 116.64/16.75 thf('44', plain, 116.64/16.75 (( complementT_lem ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( in @ ( setminus @ X4 @ X6 ) @ ( powerset @ X4 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusT_lem, axiom, setminusT_lem = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( in @ ( setminus @ X @ Y ) @ ( powerset @ A ) ) ) ) ))). 116.64/16.75 thf('45', plain, 116.64/16.75 (( setminusT_lem ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( in @ ( setminus @ X6 @ X8 ) @ ( powerset @ X4 ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionT_lem, axiom, binunionT_lem = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( in @ ( binunion @ X @ Y ) @ ( powerset @ A ) ) ) ) ))). 116.64/16.75 thf('46', plain, 116.64/16.75 (( binunionT_lem ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( in @ ( binunion @ X6 @ X8 ) @ ( powerset @ X4 ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectT_lem, axiom, binintersectT_lem = 116.64/16.75 (![A:$i,X:$i]: 116.64/16.75 ( ( in @ X @ ( powerset @ A ) ) => 116.64/16.75 ( ![Y:$i]: 116.64/16.75 ( ( in @ Y @ ( powerset @ A ) ) => 116.64/16.75 ( in @ ( binintersect @ X @ Y ) @ ( powerset @ A ) ) ) ) ))). 116.64/16.75 thf('47', plain, 116.64/16.75 (( binintersectT_lem ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( in @ X6 @ ( powerset @ X4 ) ) => 116.64/16.75 ( ![X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( powerset @ X4 ) ) => 116.64/16.75 ( in @ ( binintersect @ X6 @ X8 ) @ ( powerset @ X4 ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(ubforcartprodlem2, axiom, ubforcartprodlem2 = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ![Xy:$i]: 116.64/16.75 ( ( in @ Xy @ B ) => 116.64/16.75 ( in @ 116.64/16.75 ( setadjoin @ 116.64/16.75 ( setadjoin @ Xx @ emptyset ) @ 116.64/16.75 ( setadjoin @ 116.64/16.75 ( setadjoin @ Xx @ ( setadjoin @ Xy @ emptyset ) ) @ emptyset ) ) @ 116.64/16.75 ( powerset @ ( powerset @ ( binunion @ A @ B ) ) ) ) ) ) ))). 116.64/16.75 thf('48', plain, 116.64/16.75 (( ubforcartprodlem2 ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X6 ) => 116.64/16.75 ( in @ 116.64/16.75 ( setadjoin @ 116.64/16.75 ( setadjoin @ X8 @ emptyset ) @ 116.64/16.75 ( setadjoin @ 116.64/16.75 ( setadjoin @ X8 @ ( setadjoin @ X10 @ emptyset ) ) @ 116.64/16.75 emptyset ) ) @ 116.64/16.75 ( powerset @ ( powerset @ ( binunion @ X4 @ X6 ) ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(ubforcartprodlem1, axiom, ubforcartprodlem1 = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ![Xy:$i]: 116.64/16.75 ( ( in @ Xy @ B ) => 116.64/16.75 ( subset @ 116.64/16.75 ( setadjoin @ 116.64/16.75 ( setadjoin @ Xx @ emptyset ) @ 116.64/16.75 ( setadjoin @ 116.64/16.75 ( setadjoin @ Xx @ ( setadjoin @ Xy @ emptyset ) ) @ emptyset ) ) @ 116.64/16.75 ( powerset @ ( binunion @ A @ B ) ) ) ) ) ))). 116.64/16.75 thf('49', plain, 116.64/16.75 (( ubforcartprodlem1 ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X6 ) => 116.64/16.75 ( subset @ 116.64/16.75 ( setadjoin @ 116.64/16.75 ( setadjoin @ X8 @ emptyset ) @ 116.64/16.75 ( setadjoin @ 116.64/16.75 ( setadjoin @ X8 @ ( setadjoin @ X10 @ emptyset ) ) @ 116.64/16.75 emptyset ) ) @ 116.64/16.75 ( powerset @ ( binunion @ X4 @ X6 ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(upairinpowunion, axiom, upairinpowunion = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ![Xy:$i]: 116.64/16.75 ( ( in @ Xy @ B ) => 116.64/16.75 ( in @ 116.64/16.75 ( setadjoin @ Xx @ ( setadjoin @ Xy @ emptyset ) ) @ 116.64/16.75 ( powerset @ ( binunion @ A @ B ) ) ) ) ) ))). 116.64/16.75 thf('50', plain, 116.64/16.75 (( upairinpowunion ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X6 ) => 116.64/16.75 ( in @ 116.64/16.75 ( setadjoin @ X8 @ ( setadjoin @ X10 @ emptyset ) ) @ 116.64/16.75 ( powerset @ ( binunion @ X4 @ X6 ) ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(upairsubunion, axiom, upairsubunion = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ![Xy:$i]: 116.64/16.75 ( ( in @ Xy @ B ) => 116.64/16.75 ( subset @ 116.64/16.75 ( setadjoin @ Xx @ ( setadjoin @ Xy @ emptyset ) ) @ 116.64/16.75 ( binunion @ A @ B ) ) ) ) ))). 116.64/16.75 thf('51', plain, 116.64/16.75 (( upairsubunion ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ![X10:$i]: 116.64/16.75 ( ( in @ X10 @ X6 ) => 116.64/16.75 ( subset @ 116.64/16.75 ( setadjoin @ X8 @ ( setadjoin @ X10 @ emptyset ) ) @ 116.64/16.75 ( binunion @ X4 @ X6 ) ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(singletoninpowunion, axiom, singletoninpowunion = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( in @ 116.64/16.75 ( setadjoin @ Xx @ emptyset ) @ ( powerset @ ( binunion @ A @ B ) ) ) ))). 116.64/16.75 thf('52', plain, 116.64/16.75 (( singletoninpowunion ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( in @ 116.64/16.75 ( setadjoin @ X8 @ emptyset ) @ 116.64/16.75 ( powerset @ ( binunion @ X4 @ X6 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusSubset1, axiom, setminusSubset1 = 116.64/16.75 (![A:$i,B:$i]: 116.64/16.75 ( ( ( setminus @ A @ B ) = ( emptyset ) ) => ( subset @ A @ B ) ))). 116.64/16.75 thf('53', plain, 116.64/16.75 (( setminusSubset1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( ( setminus @ X4 @ X6 ) = ( emptyset ) ) => ( subset @ X4 @ X6 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusLsub, axiom, setminusLsub = 116.64/16.75 (![A:$i,B:$i]: ( subset @ ( setminus @ A @ B ) @ A ))). 116.64/16.75 thf('54', plain, 116.64/16.75 (( setminusLsub ) = 116.64/16.75 ( ![X4:$i,X6:$i]: ( subset @ ( setminus @ X4 @ X6 ) @ X4 ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusIRneg, axiom, setminusIRneg = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ B ) => ( ~( in @ Xx @ ( setminus @ A @ B ) ) ) ))). 116.64/16.75 thf('55', plain, 116.64/16.75 (( setminusIRneg ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X6 ) => ( ~( in @ X8 @ ( setminus @ X4 @ X6 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusILneg, axiom, setminusILneg = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( ~( in @ Xx @ A ) ) => ( ~( in @ Xx @ ( setminus @ A @ B ) ) ) ))). 116.64/16.75 thf('56', plain, 116.64/16.75 (( setminusILneg ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( ~( in @ X8 @ X4 ) ) => ( ~( in @ X8 @ ( setminus @ X4 @ X6 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusELneg, axiom, setminusELneg = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( ~( in @ Xx @ ( setminus @ A @ B ) ) ) => 116.64/16.75 ( ( ~( in @ Xx @ B ) ) => ( ~( in @ Xx @ A ) ) ) ))). 116.64/16.75 thf('57', plain, 116.64/16.75 (( setminusELneg ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( ~( in @ X8 @ ( setminus @ X4 @ X6 ) ) ) => 116.64/16.75 ( ( ~( in @ X8 @ X6 ) ) => ( ~( in @ X8 @ X4 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusERneg, axiom, setminusERneg = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( ~( in @ Xx @ ( setminus @ A @ B ) ) ) => 116.64/16.75 ( ( in @ Xx @ A ) => ( in @ Xx @ B ) ) ))). 116.64/16.75 thf('58', plain, 116.64/16.75 (( setminusERneg ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( ~( in @ X8 @ ( setminus @ X4 @ X6 ) ) ) => 116.64/16.75 ( ( in @ X8 @ X4 ) => ( in @ X8 @ X6 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusSubset2, axiom, setminusSubset2 = 116.64/16.75 (![A:$i,B:$i]: 116.64/16.75 ( ( subset @ A @ B ) => ( ( setminus @ A @ B ) = ( emptyset ) ) ))). 116.64/16.75 thf('59', plain, 116.64/16.75 (( setminusSubset2 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( subset @ X4 @ X6 ) => ( ( setminus @ X4 @ X6 ) = ( emptyset ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusER, axiom, setminusER = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ ( setminus @ A @ B ) ) => ( ~( in @ Xx @ B ) ) ))). 116.64/16.75 thf('60', plain, 116.64/16.75 (( setminusER ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( setminus @ X4 @ X6 ) ) => ( ~( in @ X8 @ X6 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusEL, axiom, setminusEL = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ ( setminus @ A @ B ) ) => ( in @ Xx @ A ) ))). 116.64/16.75 thf('61', plain, 116.64/16.75 (( setminusEL ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( setminus @ X4 @ X6 ) ) => ( in @ X8 @ X4 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(setminusI, axiom, setminusI = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( ~( in @ Xx @ B ) ) => ( in @ Xx @ ( setminus @ A @ B ) ) ) ))). 116.64/16.75 thf('62', plain, 116.64/16.75 (( setminusI ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ( ~( in @ X8 @ X6 ) ) => ( in @ X8 @ ( setminus @ X4 @ X6 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(bs114d, axiom, bs114d = 116.64/16.75 (![A:$i,B:$i,C:$i]: 116.64/16.75 ( ( binintersect @ A @ ( binunion @ B @ C ) ) = 116.64/16.75 ( binunion @ ( binintersect @ A @ B ) @ ( binintersect @ A @ C ) ) ))). 116.64/16.75 thf('63', plain, 116.64/16.75 (( bs114d ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( binintersect @ X4 @ ( binunion @ X6 @ X8 ) ) = 116.64/16.75 ( binunion @ ( binintersect @ X4 @ X6 ) @ ( binintersect @ X4 @ X8 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectSubset1, axiom, binintersectSubset1 = 116.64/16.75 (![A:$i,B:$i]: 116.64/16.75 ( ( ( binintersect @ A @ B ) = ( A ) ) => ( subset @ A @ B ) ))). 116.64/16.75 thf('64', plain, 116.64/16.75 (( binintersectSubset1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( ( binintersect @ X4 @ X6 ) = ( X4 ) ) => ( subset @ X4 @ X6 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectSubset4, axiom, binintersectSubset4 = 116.64/16.75 (![A:$i,B:$i]: 116.64/16.75 ( ( subset @ B @ A ) => ( ( binintersect @ A @ B ) = ( B ) ) ))). 116.64/16.75 thf('65', plain, 116.64/16.75 (( binintersectSubset4 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( subset @ X6 @ X4 ) => ( ( binintersect @ X4 @ X6 ) = ( X6 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectRsub, axiom, binintersectRsub = 116.64/16.75 (![A:$i,B:$i]: ( subset @ ( binintersect @ A @ B ) @ B ))). 116.64/16.75 thf('66', plain, 116.64/16.75 (( binintersectRsub ) = 116.64/16.75 ( ![X4:$i,X6:$i]: ( subset @ ( binintersect @ X4 @ X6 ) @ X6 ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(disjointsetsI1, axiom, disjointsetsI1 = 116.64/16.75 (![A:$i,B:$i]: 116.64/16.75 ( ( ~( ?[Xx:$i]: ( ( in @ Xx @ B ) & ( in @ Xx @ A ) ) ) ) => 116.64/16.75 ( ( binintersect @ A @ B ) = ( emptyset ) ) ))). 116.64/16.75 thf('67', plain, 116.64/16.75 (( disjointsetsI1 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( ~( ?[X8:$i]: ( ( in @ X8 @ X6 ) & ( in @ X8 @ X4 ) ) ) ) => 116.64/16.75 ( ( binintersect @ X4 @ X6 ) = ( emptyset ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectER, axiom, binintersectER = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ ( binintersect @ A @ B ) ) => ( in @ Xx @ B ) ))). 116.64/16.75 thf('68', plain, 116.64/16.75 (( binintersectER ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( binintersect @ X4 @ X6 ) ) => ( in @ X8 @ X6 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectSubset3, axiom, binintersectSubset3 = 116.64/16.75 (![A:$i,B:$i]: 116.64/16.75 ( ( ( binintersect @ A @ B ) = ( B ) ) => ( subset @ B @ A ) ))). 116.64/16.75 thf('69', plain, 116.64/16.75 (( binintersectSubset3 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( ( binintersect @ X4 @ X6 ) = ( X6 ) ) => ( subset @ X6 @ X4 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectSubset2, axiom, binintersectSubset2 = 116.64/16.75 (![A:$i,B:$i]: 116.64/16.75 ( ( subset @ A @ B ) => ( ( binintersect @ A @ B ) = ( A ) ) ))). 116.64/16.75 thf('70', plain, 116.64/16.75 (( binintersectSubset2 ) = 116.64/16.75 ( ![X4:$i,X6:$i]: 116.64/16.75 ( ( subset @ X4 @ X6 ) => ( ( binintersect @ X4 @ X6 ) = ( X4 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectLsub, axiom, binintersectLsub = 116.64/16.75 (![A:$i,B:$i]: ( subset @ ( binintersect @ A @ B ) @ A ))). 116.64/16.75 thf('71', plain, 116.64/16.75 (( binintersectLsub ) = 116.64/16.75 ( ![X4:$i,X6:$i]: ( subset @ ( binintersect @ X4 @ X6 ) @ X4 ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectEL, axiom, binintersectEL = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ ( binintersect @ A @ B ) ) => ( in @ Xx @ A ) ))). 116.64/16.75 thf('72', plain, 116.64/16.75 (( binintersectEL ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( binintersect @ X4 @ X6 ) ) => ( in @ X8 @ X4 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectSubset5, axiom, binintersectSubset5 = 116.64/16.75 (![A:$i,B:$i,C:$i]: 116.64/16.75 ( ( subset @ C @ A ) => 116.64/16.75 ( ( subset @ C @ B ) => ( subset @ C @ ( binintersect @ A @ B ) ) ) ))). 116.64/16.75 thf('73', plain, 116.64/16.75 (( binintersectSubset5 ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( subset @ X8 @ X4 ) => 116.64/16.75 ( ( subset @ X8 @ X6 ) => 116.64/16.75 ( subset @ X8 @ ( binintersect @ X4 @ X6 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binintersectI, axiom, binintersectI = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => 116.64/16.75 ( ( in @ Xx @ B ) => ( in @ Xx @ ( binintersect @ A @ B ) ) ) ))). 116.64/16.75 thf('74', plain, 116.64/16.75 (( binintersectI ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => 116.64/16.75 ( ( in @ X8 @ X6 ) => ( in @ X8 @ ( binintersect @ X4 @ X6 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionRsub, axiom, binunionRsub = 116.64/16.75 (![A:$i,B:$i]: ( subset @ B @ ( binunion @ A @ B ) ))). 116.64/16.75 thf('75', plain, 116.64/16.75 (( binunionRsub ) = 116.64/16.75 ( ![X4:$i,X6:$i]: ( subset @ X6 @ ( binunion @ X4 @ X6 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionLsub, axiom, binunionLsub = 116.64/16.75 (![A:$i,B:$i]: ( subset @ A @ ( binunion @ A @ B ) ))). 116.64/16.75 thf('76', plain, 116.64/16.75 (( binunionLsub ) = 116.64/16.75 ( ![X4:$i,X6:$i]: ( subset @ X4 @ ( binunion @ X4 @ X6 ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionE, axiom, binunionE = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ ( binunion @ A @ B ) ) => 116.64/16.75 ( ( in @ Xx @ A ) | ( in @ Xx @ B ) ) ))). 116.64/16.75 thf('77', plain, 116.64/16.75 (( binunionE ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ ( binunion @ X4 @ X6 ) ) => 116.64/16.75 ( ( in @ X8 @ X4 ) | ( in @ X8 @ X6 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionEcases, axiom, binunionEcases = 116.64/16.75 (![A:$i,B:$i,Xx:$i,Xphi:$o]: 116.64/16.75 ( ( in @ Xx @ ( binunion @ A @ B ) ) => 116.64/16.75 ( ( ( in @ Xx @ A ) => ( Xphi ) ) => 116.64/16.75 ( ( ( in @ Xx @ B ) => ( Xphi ) ) => ( Xphi ) ) ) ))). 116.64/16.75 thf('78', plain, 116.64/16.75 (( binunionEcases ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i,X10:$o]: 116.64/16.75 ( ( in @ X8 @ ( binunion @ X4 @ X6 ) ) => 116.64/16.75 ( ( ( in @ X8 @ X4 ) => ( X10 ) ) => 116.64/16.75 ( ( ( in @ X8 @ X6 ) => ( X10 ) ) => ( X10 ) ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionIR, axiom, binunionIR = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ B ) => ( in @ Xx @ ( binunion @ A @ B ) ) ))). 116.64/16.75 thf('79', plain, 116.64/16.75 (( binunionIR ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X6 ) => ( in @ X8 @ ( binunion @ X4 @ X6 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(binunionIL, axiom, binunionIL = 116.64/16.75 (![A:$i,B:$i,Xx:$i]: 116.64/16.75 ( ( in @ Xx @ A ) => ( in @ Xx @ ( binunion @ A @ B ) ) ))). 116.64/16.75 thf('80', plain, 116.64/16.75 (( binunionIL ) = 116.64/16.75 ( ![X4:$i,X6:$i,X8:$i]: 116.64/16.75 ( ( in @ X8 @ X4 ) => ( in @ X8 @ ( binunion @ X4 @ X6 ) ) ) )), 116.64/16.75 define([status(thm)])). 116.64/16.75 thf(woz1_2, conjecture, 116.64/16.75 (( setextAx ) => 116.64/16.75 ( ( emptysetAx ) => 116.64/16.75 ( ( setadjoinAx ) => 116.64/16.75 ( ( powersetAx ) => 116.64/16.75 ( ( setunionAx ) => 116.64/16.75 ( ( omega0Ax ) => 116.64/16.75 ( ( omegaSAx ) => 116.64/16.75 ( ( omegaIndAx ) => 116.64/16.75 ( ( replAx ) => 116.64/16.75 ( ( foundationAx ) => 116.64/16.75 ( ( wellorderingAx ) => 116.64/16.75 ( ( descrp ) => 116.64/16.75 ( ( dsetconstrI ) => 116.64/16.75 ( ( dsetconstrEL ) => 116.64/16.75 ( ( dsetconstrER ) => 116.64/16.75 ( ( exuE1 ) => 116.64/16.75 ( ( prop2setE ) => 116.64/16.75 ( ( emptysetE ) => 116.64/16.75 ( ( emptysetimpfalse ) => 116.64/16.75 ( ( notinemptyset ) => 116.64/16.75 ( ( exuE3e ) => 116.64/16.75 ( ( setext ) => 116.64/16.75 ( ( emptyI ) => 116.64/16.75 ( ( noeltsimpempty ) => 116.64/16.75 ( ( setbeta ) => 116.64/16.75 ( ( nonemptyE1 ) => 116.64/16.75 ( ( nonemptyI ) => 116.64/16.75 ( ( nonemptyI1 ) => 116.64/16.75 ( ( setadjoinIL ) => 116.64/16.75 ( ( emptyinunitempty ) => 116.64/16.75 ( ( setadjoinIR ) => 116.64/16.75 ( ( setadjoinE ) => 116.64/16.75 ( ( 116.64/16.75 setadjoinOr ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setoftrueEq ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 powersetI ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 emptyinPowerset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 emptyInPowerset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 powersetE ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setunionI ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setunionE ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subPowSU ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 exuE2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 nonemptyImpWitness ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 uniqinunit ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 notinsingleton ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 eqinunit ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 singletonsswitch ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 upairsetE ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 upairsetIL ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 upairsetIR ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 emptyE1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 vacuousDall ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 quantDeMorgan1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 quantDeMorgan2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 quantDeMorgan3 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 quantDeMorgan4 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 prop2setI ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 prop2set2propI ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 notdexE ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 notdallE ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 exuI1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 exuI3 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 exuI2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 inCongP ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 in__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 exuE3u ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 exu__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 emptyset__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setadjoin__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 powerset__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setunion__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 omega__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 exuEu ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 descr__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 dsetconstr__Cong ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subsetI1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 eqimpsubset2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 eqimpsubset1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subsetI2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 emptysetsubset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subsetE ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subsetE2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 notsubsetI ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 notequalI1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 notequalI2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subsetRefl ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subsetTrans ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setadjoinSub ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setadjoinSub2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subset2powerset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setextsub ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 subsetemptysetimpeq ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 powersetI1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 powersetE1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 inPowerset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 powersetsubset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 sepInPowerset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 sepSubset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binunionIL ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 upairset2IR ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binunionIR ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binunionEcases ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binunionE ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binunionLsub ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binunionRsub ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectI ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectSubset5 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectEL ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectLsub ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectSubset2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectSubset3 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectER ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 disjointsetsI1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectRsub ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectSubset4 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 binintersectSubset1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 bs114d ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusI ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusEL ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusER ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusSubset2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusERneg ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusELneg ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusILneg ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusIRneg ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusLsub ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setminusSubset1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 symdiffE ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 symdiffI1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 symdiffI2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 symdiffIneg1 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 symdiffIneg2 ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 secondinupair ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setukpairIL ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 setukpairIR ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 kpairiskpair ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 kpairp ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 singletonsubset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 singletoninpowerset ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 singletoninpowunion ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.75 upairset2E ) => 116.64/16.75 ( 116.64/16.75 ( 116.64/16.76 upairsubunion ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 upairinpowunion ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ubforcartprodlem1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ubforcartprodlem2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ubforcartprodlem3 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodpairin ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodmempair1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodmempair ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setunionE2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setunionsingleton1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setunionsingleton2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setunionsingleton ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 singletonprop ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ex1E1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ex1I ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ex1I2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 singletonsuniq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setukpairinjL1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 kfstsingleton ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 theprop ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 kfstpairEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodfstin ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setukpairinjL2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setukpairinjL ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setukpairinjR11 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setukpairinjR12 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setukpairinjR1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 upairequniteq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setukpairinjR2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setukpairinjR ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ksndsingleton ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ksndpairEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 kpairsurjEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodsndin ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodpairmemEL ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodpairmemER ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodmempaircEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodfstpairEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodsndpairEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 cartprodpairsurjEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 dpsetconstrI ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 dpsetconstrSub ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setOfPairsIsBReln ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 dpsetconstrERa ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 dpsetconstrEL1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 dpsetconstrEL2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 dpsetconstrER ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcImageSingleton ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 apProp ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 app ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 infuncsetfunc ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ap2p ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcinfuncset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 lamProp ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 lamp ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 lam2p ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 brelnall1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 brelnall2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ex1E2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcGraphProp1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcGraphProp3 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcGraphProp2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcextLem ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcGraphProp4 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subbreln ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 eqbreln ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcext ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 funcext2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ap2apEq1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ap2apEq2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 beta1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 eta1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 lam2lamEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 beta2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 eta2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 iffalseProp1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 iffalseProp2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 iftrueProp1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 iftrueProp2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ifSingleton ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ifp ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 theeq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 iftrue ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 iffalse ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 iftrueorfalse ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersectT_lem ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binunionT_lem ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powersetT_lem ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setminusT_lem ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementT_lem ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setextT ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subsetTI ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powersetTI1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powersetTE1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementTI1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementTE1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersectTELcontra ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersectTERcontra ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 contrasubsetT ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 contrasubsetT1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 contrasubsetT2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 contrasubsetT3 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 doubleComplementI1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 doubleComplementE1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 doubleComplementSub1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 doubleComplementSub2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 doubleComplementEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementTnotintersectT ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementImpComplementIntersect ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementSubsetComplementIntersect ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementInPowersetComplementIntersect ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 contraSubsetComplement ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementTcontraSubset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binunionTILcontra ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binunionTIRcontra ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 inIntersectImpInUnion ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 inIntersectImpInUnion2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 inIntersectImpInIntersectUnions ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 intersectInPowersetIntersectUnions ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 inComplementUnionImpNotIn1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 inComplementUnionImpInComplement1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binunionTE ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binunionTEcontra ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan2a1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 complementUnionInPowersetComplement ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan2a2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan1a ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan1b ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan2a ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan2b2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan2b ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 demorgan2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 woz13rule0 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 woz13rule1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 woz13rule2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 woz13rule3 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 woz13rule4 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 woz1_1 ) => 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 A:$i,X:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X @ 116.64/16.76 ( 116.64/16.76 powerset @ 116.64/16.76 A ) ) => 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 Y:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 Y @ 116.64/16.76 ( 116.64/16.76 powerset @ 116.64/16.76 A ) ) => 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 Z:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 Z @ 116.64/16.76 ( 116.64/16.76 powerset @ 116.64/16.76 A ) ) => 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 W:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 W @ 116.64/16.76 ( 116.64/16.76 powerset @ 116.64/16.76 A ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 A @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 X @ Y ) @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 Z @ W ) ) ) = 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 A @ X ) @ 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 A @ Y ) ) @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 A @ Z ) @ 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 A @ W ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ))). 116.64/16.76 thf(zf_stmt_0, conjecture, 116.64/16.76 (( setextAx ) => 116.64/16.76 ( ( emptysetAx ) => 116.64/16.76 ( ( setadjoinAx ) => 116.64/16.76 ( ( powersetAx ) => 116.64/16.76 ( ( setunionAx ) => 116.64/16.76 ( ( omega0Ax ) => 116.64/16.76 ( ( omegaSAx ) => 116.64/16.76 ( ( omegaIndAx ) => 116.64/16.76 ( ( replAx ) => 116.64/16.76 ( ( foundationAx ) => 116.64/16.76 ( ( wellorderingAx ) => 116.64/16.76 ( ( descrp ) => 116.64/16.76 ( ( dsetconstrI ) => 116.64/16.76 ( ( dsetconstrEL ) => 116.64/16.76 ( ( dsetconstrER ) => 116.64/16.76 ( ( exuE1 ) => 116.64/16.76 ( ( prop2setE ) => 116.64/16.76 ( ( emptysetE ) => 116.64/16.76 ( ( emptysetimpfalse ) => 116.64/16.76 ( ( notinemptyset ) => 116.64/16.76 ( ( exuE3e ) => 116.64/16.76 ( ( setext ) => 116.64/16.76 ( ( emptyI ) => 116.64/16.76 ( ( noeltsimpempty ) => 116.64/16.76 ( ( setbeta ) => 116.64/16.76 ( ( nonemptyE1 ) => 116.64/16.76 ( ( nonemptyI ) => 116.64/16.76 ( ( nonemptyI1 ) => 116.64/16.76 ( ( setadjoinIL ) => 116.64/16.76 ( ( emptyinunitempty ) => 116.64/16.76 ( ( setadjoinIR ) => 116.64/16.76 ( ( setadjoinE ) => 116.64/16.76 ( ( 116.64/16.76 setadjoinOr ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setoftrueEq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powersetI ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 emptyinPowerset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 emptyInPowerset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powersetE ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setunionI ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setunionE ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subPowSU ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 exuE2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 nonemptyImpWitness ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 uniqinunit ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 notinsingleton ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 eqinunit ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 singletonsswitch ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 upairsetE ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 upairsetIL ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 upairsetIR ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 emptyE1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 vacuousDall ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 quantDeMorgan1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 quantDeMorgan2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 quantDeMorgan3 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 quantDeMorgan4 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 prop2setI ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 prop2set2propI ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 notdexE ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 notdallE ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 exuI1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 exuI3 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 exuI2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 inCongP ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 exuE3u ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 exu__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 emptyset__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setadjoin__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powerset__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setunion__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 omega__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 exuEu ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 descr__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 dsetconstr__Cong ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subsetI1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 eqimpsubset2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 eqimpsubset1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subsetI2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 emptysetsubset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subsetE ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subsetE2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 notsubsetI ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 notequalI1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 notequalI2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subsetRefl ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subsetTrans ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setadjoinSub ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setadjoinSub2 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subset2powerset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setextsub ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subsetemptysetimpeq ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powersetI1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powersetE1 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 inPowerset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 powersetsubset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 sepInPowerset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 sepSubset ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X4:$i, 116.64/16.76 X6:$i, 116.64/16.76 X8:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X8 @ X4 ) => 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X8 @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 X4 @ X6 ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 upairset2IR ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X10:$i, 116.64/16.76 X12:$i, 116.64/16.76 X14:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X14 @ X12 ) => 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X14 @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 X10 @ X12 ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X16:$i, 116.64/16.76 X18:$i, 116.64/16.76 X20:$i, 116.64/16.76 X22:$o]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X20 @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 X16 @ X18 ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X20 @ X16 ) => 116.64/16.76 ( 116.64/16.76 X22 ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X20 @ X18 ) => 116.64/16.76 ( 116.64/16.76 X22 ) ) => 116.64/16.76 ( 116.64/16.76 X22 ) ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X24:$i, 116.64/16.76 X26:$i, 116.64/16.76 X28:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X28 @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 X24 @ X26 ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X28 @ X24 ) | 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X28 @ X26 ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X30:$i, 116.64/16.76 X32:$i]: 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X30 @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 X30 @ X32 ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X34:$i, 116.64/16.76 X36:$i]: 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X36 @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 X34 @ X36 ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X38:$i, 116.64/16.76 X40:$i, 116.64/16.76 X42:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X42 @ X38 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X42 @ X40 ) => 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X42 @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X38 @ X40 ) ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X44:$i, 116.64/16.76 X46:$i, 116.64/16.76 X48:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X48 @ X44 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X48 @ X46 ) => 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X48 @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X44 @ X46 ) ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X50:$i, 116.64/16.76 X52:$i, 116.64/16.76 X54:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X54 @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X50 @ X52 ) ) => 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X54 @ X50 ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X56:$i, 116.64/16.76 X58:$i]: 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X56 @ X58 ) @ 116.64/16.76 X56 ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X60:$i, 116.64/16.76 X62:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X60 @ X62 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X60 @ X62 ) = 116.64/16.76 ( 116.64/16.76 X60 ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X64:$i, 116.64/16.76 X66:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X64 @ X66 ) = 116.64/16.76 ( 116.64/16.76 X66 ) ) => 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X66 @ X64 ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X68:$i, 116.64/16.76 X70:$i, 116.64/16.76 X72:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X72 @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X68 @ X70 ) ) => 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X72 @ X70 ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X74:$i, 116.64/16.76 X76:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ~( 116.64/16.76 ?[ 116.64/16.76 X78:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X78 @ X76 ) & 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X78 @ X74 ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X74 @ X76 ) = 116.64/16.76 ( 116.64/16.76 emptyset ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X80:$i, 116.64/16.76 X82:$i]: 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X80 @ X82 ) @ 116.64/16.76 X82 ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X84:$i, 116.64/16.76 X86:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X86 @ X84 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X84 @ X86 ) = 116.64/16.76 ( 116.64/16.76 X86 ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X88:$i, 116.64/16.76 X90:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X88 @ X90 ) = 116.64/16.76 ( 116.64/16.76 X88 ) ) => 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X88 @ X90 ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X92:$i, 116.64/16.76 X94:$i, 116.64/16.76 X96:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X92 @ 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 X94 @ X96 ) ) = 116.64/16.76 ( 116.64/16.76 binunion @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X92 @ X94 ) @ 116.64/16.76 ( 116.64/16.76 binintersect 116.64/16.76 @ 116.64/16.76 X92 @ X96 ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X98:$i, 116.64/16.76 X100:$i, 116.64/16.76 X102:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X102 @ X98 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ~( 116.64/16.76 in @ 116.64/16.76 X102 @ 116.64/16.76 X100 ) ) => 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X102 @ 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 X98 @ X100 ) ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X104:$i, 116.64/16.76 X106:$i, 116.64/16.76 X108:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X108 @ 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 X104 @ 116.64/16.76 X106 ) ) => 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X108 @ 116.64/16.76 X104 ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X110:$i, 116.64/16.76 X112:$i, 116.64/16.76 X114:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 in @ 116.64/16.76 X114 @ 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 X110 @ 116.64/16.76 X112 ) ) => 116.64/16.76 ( 116.64/16.76 ~( 116.64/16.76 in @ 116.64/16.76 X114 @ 116.64/16.76 X112 ) ) ) ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 ![ 116.64/16.76 X116:$i, 116.64/16.76 X118:$i]: 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 subset @ 116.64/16.76 X116 @ 116.64/16.76 X118 ) => 116.64/16.76 ( 116.64/16.76 ( 116.64/16.76 setminus @ 116.64/16.76 X116 @ 116.64/16.76 X118 ) = 116.64/16.76 ( 116.64/16.76 emptyset ) ) ) ) => 116.64/16.76 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X120:$i, 116.64/16.77 X122:$i, 116.64/16.77 X124:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X124 @ 116.64/16.77 ( 116.64/16.77 setminus 116.64/16.77 @ 116.64/16.77 X120 @ 116.64/16.77 X122 ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X124 @ 116.64/16.77 X120 ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X124 @ 116.64/16.77 X122 ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X126:$i, 116.64/16.77 X128:$i, 116.64/16.77 X130:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X130 @ 116.64/16.77 ( 116.64/16.77 setminus 116.64/16.77 @ 116.64/16.77 X126 @ 116.64/16.77 X128 ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X130 @ 116.64/16.77 X128 ) ) => 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X130 @ 116.64/16.77 X126 ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X132:$i, 116.64/16.77 X134:$i, 116.64/16.77 X136:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X136 @ 116.64/16.77 X132 ) ) => 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X136 @ 116.64/16.77 ( 116.64/16.77 setminus 116.64/16.77 @ 116.64/16.77 X132 @ 116.64/16.77 X134 ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X138:$i, 116.64/16.77 X140:$i, 116.64/16.77 X142:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X142 @ 116.64/16.77 X140 ) => 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X142 @ 116.64/16.77 ( 116.64/16.77 setminus 116.64/16.77 @ 116.64/16.77 X138 @ 116.64/16.77 X140 ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X144:$i, 116.64/16.77 X146:$i]: 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X144 @ 116.64/16.77 X146 ) @ 116.64/16.77 X144 ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X148:$i, 116.64/16.77 X150:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X148 @ 116.64/16.77 X150 ) = 116.64/16.77 ( 116.64/16.77 emptyset ) ) => 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 X148 @ 116.64/16.77 X150 ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 symdiffE ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 symdiffI1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 symdiffI2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 symdiffIneg1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 symdiffIneg2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 secondinupair ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairIL ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairIR ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 kpairiskpair ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 kpairp ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 singletonsubset ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 singletoninpowerset ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X152:$i, 116.64/16.77 X154:$i, 116.64/16.77 X156:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X156 @ 116.64/16.77 X152 ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X156 @ 116.64/16.77 emptyset ) @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 ( 116.64/16.77 binunion @ 116.64/16.77 X152 @ 116.64/16.77 X154 ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 upairset2E ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X158:$i, 116.64/16.77 X160:$i, 116.64/16.77 X162:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X162 @ 116.64/16.77 X158 ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X164:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X164 @ 116.64/16.77 X160 ) => 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X162 @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X164 @ 116.64/16.77 emptyset ) ) @ 116.64/16.77 ( 116.64/16.77 binunion @ 116.64/16.77 X158 @ 116.64/16.77 X160 ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X166:$i, 116.64/16.77 X168:$i, 116.64/16.77 X170:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X170 @ 116.64/16.77 X166 ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X172:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X172 @ 116.64/16.77 X168 ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X170 @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X172 @ 116.64/16.77 emptyset ) ) @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 ( 116.64/16.77 binunion @ 116.64/16.77 X166 @ 116.64/16.77 X168 ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X174:$i, 116.64/16.77 X176:$i, 116.64/16.77 X178:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X178 @ 116.64/16.77 X174 ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X180:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X180 @ 116.64/16.77 X176 ) => 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X178 @ 116.64/16.77 emptyset ) @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X178 @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X180 @ 116.64/16.77 emptyset ) ) @ 116.64/16.77 emptyset ) ) @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 ( 116.64/16.77 binunion @ 116.64/16.77 X174 @ 116.64/16.77 X176 ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X182:$i, 116.64/16.77 X184:$i, 116.64/16.77 X186:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X186 @ 116.64/16.77 X182 ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X188:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X188 @ 116.64/16.77 X184 ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X186 @ 116.64/16.77 emptyset ) @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X186 @ 116.64/16.77 ( 116.64/16.77 setadjoin 116.64/16.77 @ 116.64/16.77 X188 @ 116.64/16.77 emptyset ) ) @ 116.64/16.77 emptyset ) ) @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 ( 116.64/16.77 binunion @ 116.64/16.77 X182 @ 116.64/16.77 X184 ) ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ubforcartprodlem3 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodpairin ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodmempair1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodmempair ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setunionE2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setunionsingleton1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setunionsingleton2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setunionsingleton ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 singletonprop ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ex1E1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ex1I ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ex1I2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 singletonsuniq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairinjL1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 kfstsingleton ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 theprop ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 kfstpairEq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodfstin ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairinjL2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairinjL ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairinjR11 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairinjR12 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairinjR1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 upairequniteq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairinjR2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setukpairinjR ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ksndsingleton ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ksndpairEq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 kpairsurjEq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodsndin ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodpairmemEL ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodpairmemER ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodmempaircEq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodfstpairEq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodsndpairEq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 cartprodpairsurjEq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 dpsetconstrI ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 dpsetconstrSub ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setOfPairsIsBReln ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 dpsetconstrERa ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 dpsetconstrEL1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 dpsetconstrEL2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 dpsetconstrER ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcImageSingleton ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 apProp ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 app ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 infuncsetfunc ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ap2p ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcinfuncset ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 lamProp ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 lamp ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 lam2p ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 brelnall1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 brelnall2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ex1E2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcGraphProp1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcGraphProp3 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcGraphProp2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcextLem ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcGraphProp4 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 subbreln ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 eqbreln ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcext ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 funcext2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ap2apEq1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ap2apEq2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 beta1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 eta1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 lam2lamEq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 beta2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 eta2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 iffalseProp1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 iffalseProp2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 iftrueProp1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 iftrueProp2 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ifSingleton ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ifp ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 theeq ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 iftrue ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 iffalse ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 iftrueorfalse ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X190:$i, 116.64/16.77 X192:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X192 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X190 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X194:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X194 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X190 ) ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 ( 116.64/16.77 binintersect 116.64/16.77 @ 116.64/16.77 X192 @ 116.64/16.77 X194 ) @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X190 ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X196:$i, 116.64/16.77 X198:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X198 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X196 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X200:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X200 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X196 ) ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 ( 116.64/16.77 binunion @ 116.64/16.77 X198 @ 116.64/16.77 X200 ) @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X196 ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 powersetT_lem ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X202:$i, 116.64/16.77 X204:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X204 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X202 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X206:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X206 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X202 ) ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X204 @ 116.64/16.77 X206 ) @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X202 ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X208:$i, 116.64/16.77 X210:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X210 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X208 ) ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X208 @ 116.64/16.77 X210 ) @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X208 ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 setextT ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 subsetTI ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 powersetTI1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 powersetTE1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X212:$i, 116.64/16.77 X214:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X214 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X212 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X216:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X216 @ 116.64/16.77 X212 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X216 @ 116.64/16.77 X214 ) => 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X216 @ 116.64/16.77 ( 116.64/16.77 setminus 116.64/16.77 @ 116.64/16.77 X212 @ 116.64/16.77 X214 ) ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X218:$i, 116.64/16.77 X220:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X220 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X218 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X222:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X222 @ 116.64/16.77 X218 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X222 @ 116.64/16.77 ( 116.64/16.77 setminus 116.64/16.77 @ 116.64/16.77 X218 @ 116.64/16.77 X220 ) ) ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X222 @ 116.64/16.77 X220 ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X224:$i, 116.64/16.77 X226:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X226 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X224 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X228:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X228 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X224 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X230:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X230 @ 116.64/16.77 X224 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X230 @ 116.64/16.77 X226 ) ) => 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X230 @ 116.64/16.77 ( 116.64/16.77 binintersect 116.64/16.77 @ 116.64/16.77 X226 @ 116.64/16.77 X228 ) ) ) ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X232:$i, 116.64/16.77 X234:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X234 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X232 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X236:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X236 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X232 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X238:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X238 @ 116.64/16.77 X232 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X238 @ 116.64/16.77 X236 ) ) => 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X238 @ 116.64/16.77 ( 116.64/16.77 binintersect 116.64/16.77 @ 116.64/16.77 X234 @ 116.64/16.77 X236 ) ) ) ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X240:$i, 116.64/16.77 X242:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X242 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X240 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X244:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X244 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X240 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X246:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X246 @ 116.64/16.77 X240 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 X242 @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X240 @ 116.64/16.77 X244 ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X246 @ 116.64/16.77 X244 ) => 116.64/16.77 ( 116.64/16.77 ~( 116.64/16.77 in @ 116.64/16.77 X246 @ 116.64/16.77 X242 ) ) ) ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 contrasubsetT1 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X248:$i, 116.64/16.77 X250:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X250 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X248 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X252:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X252 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X248 ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 X250 @ 116.64/16.77 X252 ) => 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X248 @ 116.64/16.77 X252 ) @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X248 @ 116.64/16.77 X250 ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X254:$i, 116.64/16.77 X256:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X256 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X254 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X258:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X258 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X254 ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X254 @ 116.64/16.77 X258 ) @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X254 @ 116.64/16.77 X256 ) ) => 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 X256 @ 116.64/16.77 X258 ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X260:$i, 116.64/16.77 X262:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X262 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X260 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X264:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X264 @ 116.64/16.77 X260 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X264 @ 116.64/16.77 X262 ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X264 @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X260 @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X260 @ 116.64/16.77 X262 ) ) ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X266:$i, 116.64/16.77 X268:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X268 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X266 ) ) => 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X270:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X270 @ 116.64/16.77 X266 ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X270 @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X266 @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X266 @ 116.64/16.77 X268 ) ) ) => 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X270 @ 116.64/16.77 X268 ) ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X272:$i, 116.64/16.77 X274:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X274 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X272 ) ) => 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 X274 @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X272 @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X272 @ 116.64/16.77 X274 ) ) ) ) ) => 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 ![ 116.64/16.77 X276:$i, 116.64/16.77 X278:$i]: 116.64/16.77 ( 116.64/16.77 ( 116.64/16.77 in @ 116.64/16.77 X278 @ 116.64/16.77 ( 116.64/16.77 powerset @ 116.64/16.77 X276 ) ) => 116.64/16.77 ( 116.64/16.77 subset @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X276 @ 116.64/16.77 ( 116.64/16.77 setminus @ 116.64/16.77 X276 @ 116.64/16.77 X278 ) ) @ 116.64/16.77 X278 ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X280:$i, 116.64/16.78 X282:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X282 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X280 ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 X282 ) = 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X280 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X280 @ 116.64/16.78 X282 ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X284:$i, 116.64/16.78 X286:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X286 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X284 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X288:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X288 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X284 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X290:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X290 @ 116.64/16.78 X284 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X290 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X284 @ 116.64/16.78 X286 ) ) => 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X290 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X286 @ 116.64/16.78 X288 ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X292:$i, 116.64/16.78 X294:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X294 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X292 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X296:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X296 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X292 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X298:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X298 @ 116.64/16.78 X292 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X298 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X292 @ 116.64/16.78 X294 ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X298 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X292 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X294 @ 116.64/16.78 X296 ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X300:$i, 116.64/16.78 X302:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X302 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X300 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X304:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X304 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X300 ) ) => 116.64/16.78 ( 116.64/16.78 subset @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X300 @ 116.64/16.78 X302 ) @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X300 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X302 @ 116.64/16.78 X304 ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X306:$i, 116.64/16.78 X308:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X308 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X306 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X310:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X310 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X306 ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X306 @ 116.64/16.78 X308 ) @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X306 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X308 @ 116.64/16.78 X310 ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X312:$i, 116.64/16.78 X314:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X314 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X312 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X316:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X316 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X312 ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 subset @ 116.64/16.78 X314 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X312 @ 116.64/16.78 X316 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X318:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X318 @ 116.64/16.78 X312 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X318 @ 116.64/16.78 X316 ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X318 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X312 @ 116.64/16.78 X314 ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X320:$i, 116.64/16.78 X322:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X322 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X320 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X324:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X324 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X320 ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 subset @ 116.64/16.78 X322 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X320 @ 116.64/16.78 X324 ) ) => 116.64/16.78 ( 116.64/16.78 subset @ 116.64/16.78 X324 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X320 @ 116.64/16.78 X322 ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X326:$i, 116.64/16.78 X328:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X328 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X326 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X330:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X330 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X326 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X332:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X332 @ 116.64/16.78 X326 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X332 @ 116.64/16.78 ( 116.64/16.78 binunion 116.64/16.78 @ 116.64/16.78 X328 @ 116.64/16.78 X330 ) ) ) => 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X332 @ 116.64/16.78 X328 ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X334:$i, 116.64/16.78 X336:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X336 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X334 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X338:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X338 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X334 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X340:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X340 @ 116.64/16.78 X334 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X340 @ 116.64/16.78 ( 116.64/16.78 binunion 116.64/16.78 @ 116.64/16.78 X336 @ 116.64/16.78 X338 ) ) ) => 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X340 @ 116.64/16.78 X338 ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X342:$i, 116.64/16.78 X344:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X344 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X342 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X346:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X346 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X342 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X348:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X348 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X342 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X350:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X350 @ 116.64/16.78 X342 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X350 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X344 @ 116.64/16.78 X346 ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X350 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X344 @ 116.64/16.78 X348 ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X352:$i, 116.64/16.78 X354:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X354 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X352 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X356:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X356 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X352 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X358:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X358 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X352 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X360:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X360 @ 116.64/16.78 X352 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X360 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X354 @ 116.64/16.78 X356 ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X360 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X356 @ 116.64/16.78 X358 ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X362:$i, 116.64/16.78 X364:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X364 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X362 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X366:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X366 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X362 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X368:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X368 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X362 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X370:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X370 @ 116.64/16.78 X362 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X370 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X364 @ 116.64/16.78 X366 ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X370 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X364 @ 116.64/16.78 X368 ) @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X366 @ 116.64/16.78 X368 ) ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X372:$i, 116.64/16.78 X374:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X374 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X372 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X376:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X376 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X372 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X378:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X378 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X372 ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X374 @ 116.64/16.78 X376 ) @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X374 @ 116.64/16.78 X378 ) @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X376 @ 116.64/16.78 X378 ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X380:$i, 116.64/16.78 X382:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X382 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X380 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X384:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X384 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X380 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X386:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X386 @ 116.64/16.78 X380 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X386 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X380 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X382 @ 116.64/16.78 X384 ) ) ) => 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X386 @ 116.64/16.78 X382 ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X388:$i, 116.64/16.78 X390:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X390 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X388 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X392:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X392 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X388 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X394:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X394 @ 116.64/16.78 X388 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X394 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X388 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X390 @ 116.64/16.78 X392 ) ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X394 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X388 @ 116.64/16.78 X390 ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X396:$i, 116.64/16.78 X398:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X398 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X396 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X400:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X400 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X396 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X402:$o, 116.64/16.78 X404:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X404 @ 116.64/16.78 X396 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X404 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X398 @ 116.64/16.78 X400 ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X404 @ 116.64/16.78 X398 ) => 116.64/16.78 ( 116.64/16.78 X402 ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X404 @ 116.64/16.78 X400 ) => 116.64/16.78 ( 116.64/16.78 X402 ) ) => 116.64/16.78 ( 116.64/16.78 X402 ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X406:$i, 116.64/16.78 X408:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X408 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X406 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X410:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X410 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X406 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X412:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X412 @ 116.64/16.78 X406 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X412 @ 116.64/16.78 X408 ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X412 @ 116.64/16.78 X410 ) ) => 116.64/16.78 ( 116.64/16.78 ~( 116.64/16.78 in @ 116.64/16.78 X412 @ 116.64/16.78 ( 116.64/16.78 binunion 116.64/16.78 @ 116.64/16.78 X408 @ 116.64/16.78 X410 ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X414:$i, 116.64/16.78 X416:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X416 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X414 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X418:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X418 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X414 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X420:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X420 @ 116.64/16.78 X414 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X420 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X414 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X416 @ 116.64/16.78 X418 ) ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X420 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X414 @ 116.64/16.78 X416 ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X422:$i, 116.64/16.78 X424:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X424 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X422 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X426:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X426 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X422 ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X422 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X424 @ 116.64/16.78 X426 ) ) @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X422 @ 116.64/16.78 X424 ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X428:$i, 116.64/16.78 X430:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X430 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X428 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X432:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X432 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X428 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X434:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X434 @ 116.64/16.78 X428 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X434 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X428 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X430 @ 116.64/16.78 X432 ) ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X434 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X428 @ 116.64/16.78 X432 ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X436:$i, 116.64/16.78 X438:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X438 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X436 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X440:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X440 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X436 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X442:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X442 @ 116.64/16.78 X436 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X442 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X436 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X438 @ 116.64/16.78 X440 ) ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X442 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X436 @ 116.64/16.78 X438 ) @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X436 @ 116.64/16.78 X440 ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X444:$i, 116.64/16.78 X446:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X446 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X444 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X448:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X448 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X444 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X450:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X450 @ 116.64/16.78 X444 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X450 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X444 @ 116.64/16.78 X446 ) @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X444 @ 116.64/16.78 X448 ) ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X450 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X444 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X446 @ 116.64/16.78 X448 ) ) ) ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X452:$i, 116.64/16.78 X454:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X454 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X452 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X456:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X456 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X452 ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X452 @ 116.64/16.78 ( 116.64/16.78 binintersect 116.64/16.78 @ 116.64/16.78 X454 @ 116.64/16.78 X456 ) ) = 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X452 @ 116.64/16.78 X454 ) @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X452 @ 116.64/16.78 X456 ) ) ) ) ) ) ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X458:$i, 116.64/16.78 X460:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X460 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X458 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X462:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X462 @ 116.64/16.78 ( 116.64/16.78 powerset @ 116.64/16.78 X458 ) ) => 116.64/16.78 ( 116.64/16.78 ![ 116.64/16.78 X464:$i]: 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X464 @ 116.64/16.78 X458 ) => 116.64/16.78 ( 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X464 @ 116.64/16.78 ( 116.64/16.78 setminus @ 116.64/16.78 X458 @ 116.64/16.78 ( 116.64/16.78 binunion @ 116.64/16.78 X460 @ 116.64/16.78 X462 ) ) ) => 116.64/16.78 ( 116.64/16.78 in @ 116.64/16.78 X464 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X458 @ 116.64/16.79 X460 ) @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X458 @ 116.64/16.79 X462 ) ) ) ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X466:$i, 116.64/16.79 X468:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X468 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X466 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X470:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X470 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X466 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X472:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X472 @ 116.64/16.79 X466 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X472 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X466 @ 116.64/16.79 X468 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X472 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X466 @ 116.64/16.79 X470 ) ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X472 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X466 @ 116.64/16.79 ( 116.64/16.79 binunion @ 116.64/16.79 X468 @ 116.64/16.79 X470 ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X474:$i, 116.64/16.79 X476:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X476 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X474 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X478:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X478 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X474 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X480:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X480 @ 116.64/16.79 X474 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X480 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X474 @ 116.64/16.79 X476 ) @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X474 @ 116.64/16.79 X478 ) ) ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X480 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X474 @ 116.64/16.79 ( 116.64/16.79 binunion @ 116.64/16.79 X476 @ 116.64/16.79 X478 ) ) ) ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X482:$i, 116.64/16.79 X484:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X484 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X482 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X486:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X486 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X482 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X482 @ 116.64/16.79 ( 116.64/16.79 binunion @ 116.64/16.79 X484 @ 116.64/16.79 X486 ) ) = 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X482 @ 116.64/16.79 X484 ) @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X482 @ 116.64/16.79 X486 ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X488:$i, 116.64/16.79 X490:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X490 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X488 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X492:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X492 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X488 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X494:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X494 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X490 @ 116.64/16.79 X492 ) ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X494 @ 116.64/16.79 X488 ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X496:$i, 116.64/16.79 X498:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X498 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X496 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X500:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X500 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X496 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X502:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X502 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X496 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X498 @ 116.64/16.79 X502 ) => 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X498 @ 116.64/16.79 X500 ) @ 116.64/16.79 X502 ) ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X504:$i, 116.64/16.79 X506:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X506 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X504 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X508:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X508 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X504 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X510:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X510 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X504 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X508 @ 116.64/16.79 X510 ) => 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X506 @ 116.64/16.79 X508 ) @ 116.64/16.79 X510 ) ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X512:$i, 116.64/16.79 X514:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X514 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X512 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X516:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X516 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X512 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X518:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X518 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X512 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X514 @ 116.64/16.79 X516 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X514 @ 116.64/16.79 X518 ) => 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X514 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X516 @ 116.64/16.79 X518 ) ) ) ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X520:$i, 116.64/16.79 X522:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X522 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X520 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X524:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X524 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X520 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X526:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X526 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X520 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X528:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X528 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X520 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X522 @ 116.64/16.79 X526 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X524 @ 116.64/16.79 X528 ) => 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X522 @ 116.64/16.79 X524 ) @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X526 @ 116.64/16.79 X528 ) ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X530:$i, 116.64/16.79 X532:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X532 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X530 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X534:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X534 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X530 ) ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X530 @ 116.64/16.79 X532 ) @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X530 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X532 @ 116.64/16.79 X534 ) ) ) ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X536:$i, 116.64/16.79 X538:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X538 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X536 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X540:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X540 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X536 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X542:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X542 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X536 ) ) => 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X544:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X544 @ 116.64/16.79 ( 116.64/16.79 powerset @ 116.64/16.79 X536 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X536 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 ( 116.64/16.79 binunion @ 116.64/16.79 X538 @ 116.64/16.79 X540 ) @ 116.64/16.79 ( 116.64/16.79 binunion @ 116.64/16.79 X542 @ 116.64/16.79 X544 ) ) ) = 116.64/16.79 ( 116.64/16.79 binunion @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X536 @ 116.64/16.79 X538 ) @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X536 @ 116.64/16.79 X540 ) ) @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X536 @ 116.64/16.79 X542 ) @ 116.64/16.79 ( 116.64/16.79 setminus @ 116.64/16.79 X536 @ 116.64/16.79 X544 ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ))). 116.64/16.79 thf(zf_stmt_1, negated_conjecture, 116.64/16.79 (~( ( setextAx ) => 116.64/16.79 ( ( emptysetAx ) => 116.64/16.79 ( ( setadjoinAx ) => 116.64/16.79 ( ( powersetAx ) => 116.64/16.79 ( ( setunionAx ) => 116.64/16.79 ( ( omega0Ax ) => 116.64/16.79 ( ( omegaSAx ) => 116.64/16.79 ( ( omegaIndAx ) => 116.64/16.79 ( ( replAx ) => 116.64/16.79 ( ( foundationAx ) => 116.64/16.79 ( ( wellorderingAx ) => 116.64/16.79 ( ( descrp ) => 116.64/16.79 ( ( dsetconstrI ) => 116.64/16.79 ( ( dsetconstrEL ) => 116.64/16.79 ( ( dsetconstrER ) => 116.64/16.79 ( ( exuE1 ) => 116.64/16.79 ( ( prop2setE ) => 116.64/16.79 ( ( emptysetE ) => 116.64/16.79 ( ( emptysetimpfalse ) => 116.64/16.79 ( ( notinemptyset ) => 116.64/16.79 ( ( exuE3e ) => 116.64/16.79 ( ( setext ) => 116.64/16.79 ( ( emptyI ) => 116.64/16.79 ( ( noeltsimpempty ) => 116.64/16.79 ( ( setbeta ) => 116.64/16.79 ( ( nonemptyE1 ) => 116.64/16.79 ( ( nonemptyI ) => 116.64/16.79 ( ( nonemptyI1 ) => 116.64/16.79 ( ( setadjoinIL ) => 116.64/16.79 ( ( emptyinunitempty ) => 116.64/16.79 ( ( setadjoinIR ) => 116.64/16.79 ( ( 116.64/16.79 setadjoinE ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setadjoinOr ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setoftrueEq ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 powersetI ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 emptyinPowerset ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 emptyInPowerset ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 powersetE ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setunionI ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setunionE ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subPowSU ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 exuE2 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 nonemptyImpWitness ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 uniqinunit ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 notinsingleton ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 eqinunit ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 singletonsswitch ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 upairsetE ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 upairsetIL ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 upairsetIR ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 emptyE1 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 vacuousDall ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 quantDeMorgan1 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 quantDeMorgan2 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 quantDeMorgan3 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 quantDeMorgan4 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 prop2setI ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 prop2set2propI ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 notdexE ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 notdallE ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 exuI1 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 exuI3 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 exuI2 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 inCongP ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 exuE3u ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 exu__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 emptyset__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setadjoin__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 powerset__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setunion__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 omega__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 exuEu ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 descr__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 dsetconstr__Cong ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subsetI1 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 eqimpsubset2 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 eqimpsubset1 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subsetI2 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 emptysetsubset ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subsetE ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subsetE2 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 notsubsetI ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 notequalI1 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 notequalI2 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subsetRefl ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subsetTrans ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setadjoinSub ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setadjoinSub2 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset2powerset ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 setextsub ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subsetemptysetimpeq ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 powersetI1 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 powersetE1 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 inPowerset ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 powersetsubset ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 sepInPowerset ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 sepSubset ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X4:$i, 116.64/16.79 X6:$i, 116.64/16.79 X8:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X8 @ X4 ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X8 @ 116.64/16.79 ( 116.64/16.79 binunion 116.64/16.79 @ 116.64/16.79 X4 @ X6 ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 upairset2IR ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X10:$i, 116.64/16.79 X12:$i, 116.64/16.79 X14:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X14 @ X12 ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X14 @ 116.64/16.79 ( 116.64/16.79 binunion 116.64/16.79 @ 116.64/16.79 X10 @ X12 ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X16:$i, 116.64/16.79 X18:$i, 116.64/16.79 X20:$i, 116.64/16.79 X22:$o]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X20 @ 116.64/16.79 ( 116.64/16.79 binunion 116.64/16.79 @ 116.64/16.79 X16 @ X18 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X20 @ X16 ) => 116.64/16.79 ( 116.64/16.79 X22 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X20 @ X18 ) => 116.64/16.79 ( 116.64/16.79 X22 ) ) => 116.64/16.79 ( 116.64/16.79 X22 ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X24:$i, 116.64/16.79 X26:$i, 116.64/16.79 X28:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X28 @ 116.64/16.79 ( 116.64/16.79 binunion 116.64/16.79 @ 116.64/16.79 X24 @ X26 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X28 @ X24 ) | 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X28 @ X26 ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X30:$i, 116.64/16.79 X32:$i]: 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X30 @ 116.64/16.79 ( 116.64/16.79 binunion 116.64/16.79 @ 116.64/16.79 X30 @ X32 ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X34:$i, 116.64/16.79 X36:$i]: 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X36 @ 116.64/16.79 ( 116.64/16.79 binunion 116.64/16.79 @ 116.64/16.79 X34 @ X36 ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X38:$i, 116.64/16.79 X40:$i, 116.64/16.79 X42:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X42 @ X38 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X42 @ X40 ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X42 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X38 @ X40 ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X44:$i, 116.64/16.79 X46:$i, 116.64/16.79 X48:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X48 @ X44 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X48 @ X46 ) => 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X48 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X44 @ X46 ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X50:$i, 116.64/16.79 X52:$i, 116.64/16.79 X54:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X54 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X50 @ X52 ) ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X54 @ X50 ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X56:$i, 116.64/16.79 X58:$i]: 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X56 @ X58 ) @ 116.64/16.79 X56 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X60:$i, 116.64/16.79 X62:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X60 @ X62 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X60 @ X62 ) = 116.64/16.79 ( 116.64/16.79 X60 ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X64:$i, 116.64/16.79 X66:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X64 @ X66 ) = 116.64/16.79 ( 116.64/16.79 X66 ) ) => 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X66 @ X64 ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X68:$i, 116.64/16.79 X70:$i, 116.64/16.79 X72:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X72 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X68 @ X70 ) ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X72 @ X70 ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X74:$i, 116.64/16.79 X76:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ~ 116.64/16.79 ( 116.64/16.79 ?[ 116.64/16.79 X78:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X78 @ X76 ) & 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X78 @ X74 ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X74 @ X76 ) = 116.64/16.79 ( 116.64/16.79 emptyset ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X80:$i, 116.64/16.79 X82:$i]: 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X80 @ X82 ) @ 116.64/16.79 X82 ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X84:$i, 116.64/16.79 X86:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X86 @ X84 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X84 @ X86 ) = 116.64/16.79 ( 116.64/16.79 X86 ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X88:$i, 116.64/16.79 X90:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X88 @ X90 ) = 116.64/16.79 ( 116.64/16.79 X88 ) ) => 116.64/16.79 ( 116.64/16.79 subset @ 116.64/16.79 X88 @ X90 ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X92:$i, 116.64/16.79 X94:$i, 116.64/16.79 X96:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X92 @ 116.64/16.79 ( 116.64/16.79 binunion 116.64/16.79 @ 116.64/16.79 X94 @ X96 ) ) = 116.64/16.79 ( 116.64/16.79 binunion 116.64/16.79 @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X92 @ X94 ) @ 116.64/16.79 ( 116.64/16.79 binintersect 116.64/16.79 @ 116.64/16.79 X92 @ X96 ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X98:$i, 116.64/16.79 X100:$i, 116.64/16.79 X102:$i]: 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X102 @ 116.64/16.79 X98 ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ~ 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X102 @ 116.64/16.79 X100 ) ) => 116.64/16.79 ( 116.64/16.79 in @ 116.64/16.79 X102 @ 116.64/16.79 ( 116.64/16.79 setminus 116.64/16.79 @ 116.64/16.79 X98 @ 116.64/16.79 X100 ) ) ) ) ) => 116.64/16.79 ( 116.64/16.79 ( 116.64/16.79 ![ 116.64/16.79 X104:$i, 116.64/16.79 X106:$i, 116.64/16.79 X108:$i]: 116.64/16.79 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X108 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X104 @ 116.64/16.80 X106 ) ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X108 @ 116.64/16.80 X104 ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X110:$i, 116.64/16.80 X112:$i, 116.64/16.80 X114:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X114 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X110 @ 116.64/16.80 X112 ) ) => 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X114 @ 116.64/16.80 X112 ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X116:$i, 116.64/16.80 X118:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 subset @ 116.64/16.80 X116 @ 116.64/16.80 X118 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X116 @ 116.64/16.80 X118 ) = 116.64/16.80 ( 116.64/16.80 emptyset ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X120:$i, 116.64/16.80 X122:$i, 116.64/16.80 X124:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X124 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X120 @ 116.64/16.80 X122 ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X124 @ 116.64/16.80 X120 ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X124 @ 116.64/16.80 X122 ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X126:$i, 116.64/16.80 X128:$i, 116.64/16.80 X130:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X130 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X126 @ 116.64/16.80 X128 ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X130 @ 116.64/16.80 X128 ) ) => 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X130 @ 116.64/16.80 X126 ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X132:$i, 116.64/16.80 X134:$i, 116.64/16.80 X136:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X136 @ 116.64/16.80 X132 ) ) => 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X136 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X132 @ 116.64/16.80 X134 ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X138:$i, 116.64/16.80 X140:$i, 116.64/16.80 X142:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X142 @ 116.64/16.80 X140 ) => 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X142 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X138 @ 116.64/16.80 X140 ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X144:$i, 116.64/16.80 X146:$i]: 116.64/16.80 ( 116.64/16.80 subset @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X144 @ 116.64/16.80 X146 ) @ 116.64/16.80 X144 ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X148:$i, 116.64/16.80 X150:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X148 @ 116.64/16.80 X150 ) = 116.64/16.80 ( 116.64/16.80 emptyset ) ) => 116.64/16.80 ( 116.64/16.80 subset @ 116.64/16.80 X148 @ 116.64/16.80 X150 ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 symdiffE ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 symdiffI1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 symdiffI2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 symdiffIneg1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 symdiffIneg2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 secondinupair ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairIL ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairIR ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 kpairiskpair ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 kpairp ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 singletonsubset ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 singletoninpowerset ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X152:$i, 116.64/16.80 X154:$i, 116.64/16.80 X156:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X156 @ 116.64/16.80 X152 ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X156 @ 116.64/16.80 emptyset ) @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 binunion 116.64/16.80 @ 116.64/16.80 X152 @ 116.64/16.80 X154 ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 upairset2E ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X158:$i, 116.64/16.80 X160:$i, 116.64/16.80 X162:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X162 @ 116.64/16.80 X158 ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X164:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X164 @ 116.64/16.80 X160 ) => 116.64/16.80 ( 116.64/16.80 subset @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X162 @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X164 @ 116.64/16.80 emptyset ) ) @ 116.64/16.80 ( 116.64/16.80 binunion 116.64/16.80 @ 116.64/16.80 X158 @ 116.64/16.80 X160 ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X166:$i, 116.64/16.80 X168:$i, 116.64/16.80 X170:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X170 @ 116.64/16.80 X166 ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X172:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X172 @ 116.64/16.80 X168 ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X170 @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X172 @ 116.64/16.80 emptyset ) ) @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 binunion 116.64/16.80 @ 116.64/16.80 X166 @ 116.64/16.80 X168 ) ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X174:$i, 116.64/16.80 X176:$i, 116.64/16.80 X178:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X178 @ 116.64/16.80 X174 ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X180:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X180 @ 116.64/16.80 X176 ) => 116.64/16.80 ( 116.64/16.80 subset @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X178 @ 116.64/16.80 emptyset ) @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X178 @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X180 @ 116.64/16.80 emptyset ) ) @ 116.64/16.80 emptyset ) ) @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 binunion 116.64/16.80 @ 116.64/16.80 X174 @ 116.64/16.80 X176 ) ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X182:$i, 116.64/16.80 X184:$i, 116.64/16.80 X186:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X186 @ 116.64/16.80 X182 ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X188:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X188 @ 116.64/16.80 X184 ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X186 @ 116.64/16.80 emptyset ) @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X186 @ 116.64/16.80 ( 116.64/16.80 setadjoin 116.64/16.80 @ 116.64/16.80 X188 @ 116.64/16.80 emptyset ) ) @ 116.64/16.80 emptyset ) ) @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 ( 116.64/16.80 binunion 116.64/16.80 @ 116.64/16.80 X182 @ 116.64/16.80 X184 ) ) ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ubforcartprodlem3 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodpairin ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodmempair1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodmempair ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setunionE2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setunionsingleton1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setunionsingleton2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setunionsingleton ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 singletonprop ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ex1E1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ex1I ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ex1I2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 singletonsuniq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairinjL1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 kfstsingleton ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 theprop ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 kfstpairEq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodfstin ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairinjL2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairinjL ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairinjR11 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairinjR12 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairinjR1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 upairequniteq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairinjR2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setukpairinjR ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ksndsingleton ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ksndpairEq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 kpairsurjEq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodsndin ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodpairmemEL ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodpairmemER ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodmempaircEq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodfstpairEq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodsndpairEq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 cartprodpairsurjEq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 dpsetconstrI ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 dpsetconstrSub ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setOfPairsIsBReln ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 dpsetconstrERa ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 dpsetconstrEL1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 dpsetconstrEL2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 dpsetconstrER ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcImageSingleton ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 apProp ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 app ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 infuncsetfunc ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ap2p ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcinfuncset ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 lamProp ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 lamp ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 lam2p ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 brelnall1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 brelnall2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ex1E2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcGraphProp1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcGraphProp3 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcGraphProp2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcextLem ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcGraphProp4 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 subbreln ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 eqbreln ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcext ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 funcext2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ap2apEq1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ap2apEq2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 beta1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 eta1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 lam2lamEq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 beta2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 eta2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 iffalseProp1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 iffalseProp2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 iftrueProp1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 iftrueProp2 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ifSingleton ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ifp ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 theeq ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 iftrue ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 iffalse ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 iftrueorfalse ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X190:$i, 116.64/16.80 X192:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X192 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X190 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X194:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X194 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X190 ) ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 ( 116.64/16.80 binintersect 116.64/16.80 @ 116.64/16.80 X192 @ 116.64/16.80 X194 ) @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X190 ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X196:$i, 116.64/16.80 X198:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X198 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X196 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X200:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X200 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X196 ) ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 ( 116.64/16.80 binunion 116.64/16.80 @ 116.64/16.80 X198 @ 116.64/16.80 X200 ) @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X196 ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 powersetT_lem ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X202:$i, 116.64/16.80 X204:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X204 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X202 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X206:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X206 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X202 ) ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X204 @ 116.64/16.80 X206 ) @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X202 ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X208:$i, 116.64/16.80 X210:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X210 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X208 ) ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X208 @ 116.64/16.80 X210 ) @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X208 ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 setextT ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 subsetTI ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 powersetTI1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 powersetTE1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X212:$i, 116.64/16.80 X214:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X214 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X212 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X216:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X216 @ 116.64/16.80 X212 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X216 @ 116.64/16.80 X214 ) => 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X216 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X212 @ 116.64/16.80 X214 ) ) ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X218:$i, 116.64/16.80 X220:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X220 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X218 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X222:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X222 @ 116.64/16.80 X218 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X222 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X218 @ 116.64/16.80 X220 ) ) ) => 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X222 @ 116.64/16.80 X220 ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X224:$i, 116.64/16.80 X226:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X226 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X224 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X228:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X228 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X224 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X230:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X230 @ 116.64/16.80 X224 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X230 @ 116.64/16.80 X226 ) ) => 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X230 @ 116.64/16.80 ( 116.64/16.80 binintersect 116.64/16.80 @ 116.64/16.80 X226 @ 116.64/16.80 X228 ) ) ) ) ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X232:$i, 116.64/16.80 X234:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X234 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X232 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X236:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X236 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X232 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X238:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X238 @ 116.64/16.80 X232 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X238 @ 116.64/16.80 X236 ) ) => 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X238 @ 116.64/16.80 ( 116.64/16.80 binintersect 116.64/16.80 @ 116.64/16.80 X234 @ 116.64/16.80 X236 ) ) ) ) ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X240:$i, 116.64/16.80 X242:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X242 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X240 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X244:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X244 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X240 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X246:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X246 @ 116.64/16.80 X240 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 subset @ 116.64/16.80 X242 @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X240 @ 116.64/16.80 X244 ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X246 @ 116.64/16.80 X244 ) => 116.64/16.80 ( 116.64/16.80 ~ 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X246 @ 116.64/16.80 X242 ) ) ) ) ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 contrasubsetT1 ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X248:$i, 116.64/16.80 X250:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X250 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X248 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X252:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X252 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X248 ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 subset @ 116.64/16.80 X250 @ 116.64/16.80 X252 ) => 116.64/16.80 ( 116.64/16.80 subset @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X248 @ 116.64/16.80 X252 ) @ 116.64/16.80 ( 116.64/16.80 setminus 116.64/16.80 @ 116.64/16.80 X248 @ 116.64/16.80 X250 ) ) ) ) ) ) ) => 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X254:$i, 116.64/16.80 X256:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X256 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.80 @ 116.64/16.80 X254 ) ) => 116.64/16.80 ( 116.64/16.80 ![ 116.64/16.80 X258:$i]: 116.64/16.80 ( 116.64/16.80 ( 116.64/16.80 in @ 116.64/16.80 X258 @ 116.64/16.80 ( 116.64/16.80 powerset 116.64/16.81 @ 116.64/16.81 X254 ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 subset @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X254 @ 116.64/16.81 X258 ) @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X254 @ 116.64/16.81 X256 ) ) => 116.64/16.81 ( 116.64/16.81 subset @ 116.64/16.81 X256 @ 116.64/16.81 X258 ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X260:$i, 116.64/16.81 X262:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X262 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X260 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X264:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X264 @ 116.64/16.81 X260 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X264 @ 116.64/16.81 X262 ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X264 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X260 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X260 @ 116.64/16.81 X262 ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X266:$i, 116.64/16.81 X268:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X268 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X266 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X270:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X270 @ 116.64/16.81 X266 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X270 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X266 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X266 @ 116.64/16.81 X268 ) ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X270 @ 116.64/16.81 X268 ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X272:$i, 116.64/16.81 X274:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X274 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X272 ) ) => 116.64/16.81 ( 116.64/16.81 subset @ 116.64/16.81 X274 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X272 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X272 @ 116.64/16.81 X274 ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X276:$i, 116.64/16.81 X278:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X278 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X276 ) ) => 116.64/16.81 ( 116.64/16.81 subset @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X276 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X276 @ 116.64/16.81 X278 ) ) @ 116.64/16.81 X278 ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X280:$i, 116.64/16.81 X282:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X282 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X280 ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 X282 ) = 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X280 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X280 @ 116.64/16.81 X282 ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X284:$i, 116.64/16.81 X286:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X286 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X284 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X288:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X288 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X284 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X290:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X290 @ 116.64/16.81 X284 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X290 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X284 @ 116.64/16.81 X286 ) ) => 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X290 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 X286 @ 116.64/16.81 X288 ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X292:$i, 116.64/16.81 X294:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X294 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X292 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X296:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X296 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X292 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X298:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X298 @ 116.64/16.81 X292 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X298 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X292 @ 116.64/16.81 X294 ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X298 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X292 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 X294 @ 116.64/16.81 X296 ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X300:$i, 116.64/16.81 X302:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X302 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X300 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X304:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X304 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X300 ) ) => 116.64/16.81 ( 116.64/16.81 subset @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X300 @ 116.64/16.81 X302 ) @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X300 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 X302 @ 116.64/16.81 X304 ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X306:$i, 116.64/16.81 X308:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X308 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X306 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X310:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X310 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X306 ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X306 @ 116.64/16.81 X308 ) @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X306 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 X308 @ 116.64/16.81 X310 ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X312:$i, 116.64/16.81 X314:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X314 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X312 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X316:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X316 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X312 ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 subset @ 116.64/16.81 X314 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X312 @ 116.64/16.81 X316 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X318:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X318 @ 116.64/16.81 X312 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X318 @ 116.64/16.81 X316 ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X318 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X312 @ 116.64/16.81 X314 ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X320:$i, 116.64/16.81 X322:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X322 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X320 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X324:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X324 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X320 ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 subset @ 116.64/16.81 X322 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X320 @ 116.64/16.81 X324 ) ) => 116.64/16.81 ( 116.64/16.81 subset @ 116.64/16.81 X324 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X320 @ 116.64/16.81 X322 ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X326:$i, 116.64/16.81 X328:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X328 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X326 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X330:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X330 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X326 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X332:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X332 @ 116.64/16.81 X326 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X332 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X328 @ 116.64/16.81 X330 ) ) ) => 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X332 @ 116.64/16.81 X328 ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X334:$i, 116.64/16.81 X336:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X336 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X334 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X338:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X338 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X334 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X340:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X340 @ 116.64/16.81 X334 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X340 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X336 @ 116.64/16.81 X338 ) ) ) => 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X340 @ 116.64/16.81 X338 ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X342:$i, 116.64/16.81 X344:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X344 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X342 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X346:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X346 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X342 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X348:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X348 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X342 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X350:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X350 @ 116.64/16.81 X342 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X350 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 X344 @ 116.64/16.81 X346 ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X350 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X344 @ 116.64/16.81 X348 ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X352:$i, 116.64/16.81 X354:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X354 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X352 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X356:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X356 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X352 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X358:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X358 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X352 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X360:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X360 @ 116.64/16.81 X352 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X360 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 X354 @ 116.64/16.81 X356 ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X360 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X356 @ 116.64/16.81 X358 ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X362:$i, 116.64/16.81 X364:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X364 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X362 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X366:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X366 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X362 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X368:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X368 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X362 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X370:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X370 @ 116.64/16.81 X362 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X370 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 X364 @ 116.64/16.81 X366 ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X370 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X364 @ 116.64/16.81 X368 ) @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X366 @ 116.64/16.81 X368 ) ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X372:$i, 116.64/16.81 X374:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X374 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X372 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X376:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X376 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X372 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X378:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X378 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X372 ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 X374 @ 116.64/16.81 X376 ) @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 ( 116.64/16.81 binintersect 116.64/16.81 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X374 @ 116.64/16.81 X378 ) @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X376 @ 116.64/16.81 X378 ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X380:$i, 116.64/16.81 X382:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X382 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X380 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X384:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X384 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X380 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X386:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X386 @ 116.64/16.81 X380 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X386 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X380 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X382 @ 116.64/16.81 X384 ) ) ) => 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X386 @ 116.64/16.81 X382 ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X388:$i, 116.64/16.81 X390:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X390 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X388 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X392:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X392 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X388 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X394:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X394 @ 116.64/16.81 X388 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X394 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X388 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X390 @ 116.64/16.81 X392 ) ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X394 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X388 @ 116.64/16.81 X390 ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X396:$i, 116.64/16.81 X398:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X398 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X396 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X400:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X400 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X396 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X402:$o, 116.64/16.81 X404:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X404 @ 116.64/16.81 X396 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X404 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X398 @ 116.64/16.81 X400 ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X404 @ 116.64/16.81 X398 ) => 116.64/16.81 ( 116.64/16.81 X402 ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X404 @ 116.64/16.81 X400 ) => 116.64/16.81 ( 116.64/16.81 X402 ) ) => 116.64/16.81 ( 116.64/16.81 X402 ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X406:$i, 116.64/16.81 X408:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X408 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X406 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X410:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X410 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X406 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X412:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X412 @ 116.64/16.81 X406 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X412 @ 116.64/16.81 X408 ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X412 @ 116.64/16.81 X410 ) ) => 116.64/16.81 ( 116.64/16.81 ~ 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X412 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X408 @ 116.64/16.81 X410 ) ) ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X414:$i, 116.64/16.81 X416:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X416 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X414 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X418:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X418 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X414 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X420:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X420 @ 116.64/16.81 X414 ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X420 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X414 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X416 @ 116.64/16.81 X418 ) ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X420 @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X414 @ 116.64/16.81 X416 ) ) ) ) ) ) ) ) ) => 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X422:$i, 116.64/16.81 X424:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X424 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X422 ) ) => 116.64/16.81 ( 116.64/16.81 ![ 116.64/16.81 X426:$i]: 116.64/16.81 ( 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 X426 @ 116.64/16.81 ( 116.64/16.81 powerset 116.64/16.81 @ 116.64/16.81 X422 ) ) => 116.64/16.81 ( 116.64/16.81 in @ 116.64/16.81 ( 116.64/16.81 setminus 116.64/16.81 @ 116.64/16.81 X422 @ 116.64/16.81 ( 116.64/16.81 binunion 116.64/16.81 @ 116.64/16.81 X424 @ 116.64/16.81 X426 ) ) @ 116.64/16.81 ( 116.64/16.81 powerset 125.70/16.81 @ 125.70/16.81 ( 125.70/16.81 setminus 125.70/16.81 @ 125.70/16.81 X422 @ 125.70/16.81 X424 ) ) ) ) ) ) ) => 125.70/16.81 ( 125.70/16.81 ( 125.70/16.81 ![ 125.70/16.81 X428:$i, 125.70/16.81 X430:$i]: 125.70/16.81 ( 125.70/16.81 ( 125.70/16.81 in @ 125.70/16.82 X430 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X428 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X432:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X432 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X428 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X434:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X434 @ 125.70/16.82 X428 ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X434 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X428 @ 125.70/16.82 ( 125.70/16.82 binunion 125.70/16.82 @ 125.70/16.82 X430 @ 125.70/16.82 X432 ) ) ) => 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X434 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X428 @ 125.70/16.82 X432 ) ) ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X436:$i, 125.70/16.82 X438:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X438 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X436 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X440:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X440 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X436 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X442:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X442 @ 125.70/16.82 X436 ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X442 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X436 @ 125.70/16.82 ( 125.70/16.82 binintersect 125.70/16.82 @ 125.70/16.82 X438 @ 125.70/16.82 X440 ) ) ) => 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X442 @ 125.70/16.82 ( 125.70/16.82 binunion 125.70/16.82 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X436 @ 125.70/16.82 X438 ) @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X436 @ 125.70/16.82 X440 ) ) ) ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X444:$i, 125.70/16.82 X446:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X446 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X444 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X448:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X448 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X444 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X450:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X450 @ 125.70/16.82 X444 ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X450 @ 125.70/16.82 ( 125.70/16.82 binunion 125.70/16.82 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X444 @ 125.70/16.82 X446 ) @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X444 @ 125.70/16.82 X448 ) ) ) => 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X450 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X444 @ 125.70/16.82 ( 125.70/16.82 binintersect 125.70/16.82 @ 125.70/16.82 X446 @ 125.70/16.82 X448 ) ) ) ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X452:$i, 125.70/16.82 X454:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X454 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X452 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X456:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X456 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X452 ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X452 @ 125.70/16.82 ( 125.70/16.82 binintersect 125.70/16.82 @ 125.70/16.82 X454 @ 125.70/16.82 X456 ) ) = 125.70/16.82 ( 125.70/16.82 binunion 125.70/16.82 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X452 @ 125.70/16.82 X454 ) @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X452 @ 125.70/16.82 X456 ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X458:$i, 125.70/16.82 X460:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X460 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X458 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X462:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X462 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X458 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X464:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X464 @ 125.70/16.82 X458 ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X464 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X458 @ 125.70/16.82 ( 125.70/16.82 binunion 125.70/16.82 @ 125.70/16.82 X460 @ 125.70/16.82 X462 ) ) ) => 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X464 @ 125.70/16.82 ( 125.70/16.82 binintersect 125.70/16.82 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X458 @ 125.70/16.82 X460 ) @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X458 @ 125.70/16.82 X462 ) ) ) ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X466:$i, 125.70/16.82 X468:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X468 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X466 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X470:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X470 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X466 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X472:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X472 @ 125.70/16.82 X466 ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X472 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X466 @ 125.70/16.82 X468 ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X472 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X466 @ 125.70/16.82 X470 ) ) => 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X472 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X466 @ 125.70/16.82 ( 125.70/16.82 binunion 125.70/16.82 @ 125.70/16.82 X468 @ 125.70/16.82 X470 ) ) ) ) ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X474:$i, 125.70/16.82 X476:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X476 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X474 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X478:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X478 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X474 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X480:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X480 @ 125.70/16.82 X474 ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X480 @ 125.70/16.82 ( 125.70/16.82 binintersect 125.70/16.82 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X474 @ 125.70/16.82 X476 ) @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X474 @ 125.70/16.82 X478 ) ) ) => 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X480 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X474 @ 125.70/16.82 ( 125.70/16.82 binunion 125.70/16.82 @ 125.70/16.82 X476 @ 125.70/16.82 X478 ) ) ) ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X482:$i, 125.70/16.82 X484:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X484 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X482 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X486:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X486 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X482 ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X482 @ 125.70/16.82 ( 125.70/16.82 binunion 125.70/16.82 @ 125.70/16.82 X484 @ 125.70/16.82 X486 ) ) = 125.70/16.82 ( 125.70/16.82 binintersect 125.70/16.82 @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X482 @ 125.70/16.82 X484 ) @ 125.70/16.82 ( 125.70/16.82 setminus 125.70/16.82 @ 125.70/16.82 X482 @ 125.70/16.82 X486 ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X488:$i, 125.70/16.82 X490:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X490 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X488 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X492:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X492 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X488 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X494:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X494 @ 125.70/16.82 ( 125.70/16.82 binintersect 125.70/16.82 @ 125.70/16.82 X490 @ 125.70/16.82 X492 ) ) => 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X494 @ 125.70/16.82 X488 ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X496:$i, 125.70/16.82 X498:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X498 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X496 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X500:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X500 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X496 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X502:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X502 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X496 ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 subset @ 125.70/16.82 X498 @ 125.70/16.82 X502 ) => 125.70/16.82 ( 125.70/16.82 subset @ 125.70/16.82 ( 125.70/16.82 binintersect 125.70/16.82 @ 125.70/16.82 X498 @ 125.70/16.82 X500 ) @ 125.70/16.82 X502 ) ) ) ) ) ) ) ) => 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X504:$i, 125.70/16.82 X506:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.82 X506 @ 125.70/16.82 ( 125.70/16.82 powerset 125.70/16.82 @ 125.70/16.82 X504 ) ) => 125.70/16.82 ( 125.70/16.82 ![ 125.70/16.82 X508:$i]: 125.70/16.82 ( 125.70/16.82 ( 125.70/16.82 in @ 125.70/16.83 X508 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X504 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X510:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X510 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X504 ) ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 subset @ 125.70/16.83 X508 @ 125.70/16.83 X510 ) => 125.70/16.83 ( 125.70/16.83 subset @ 125.70/16.83 ( 125.70/16.83 binintersect 125.70/16.83 @ 125.70/16.83 X506 @ 125.70/16.83 X508 ) @ 125.70/16.83 X510 ) ) ) ) ) ) ) ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X512:$i, 125.70/16.83 X514:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X514 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X512 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X516:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X516 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X512 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X518:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X518 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X512 ) ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 subset @ 125.70/16.83 X514 @ 125.70/16.83 X516 ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 subset @ 125.70/16.83 X514 @ 125.70/16.83 X518 ) => 125.70/16.83 ( 125.70/16.83 subset @ 125.70/16.83 X514 @ 125.70/16.83 ( 125.70/16.83 binintersect 125.70/16.83 @ 125.70/16.83 X516 @ 125.70/16.83 X518 ) ) ) ) ) ) ) ) ) ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X520:$i, 125.70/16.83 X522:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X522 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X520 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X524:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X524 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X520 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X526:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X526 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X520 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X528:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X528 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X520 ) ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 subset @ 125.70/16.83 X522 @ 125.70/16.83 X526 ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 subset @ 125.70/16.83 X524 @ 125.70/16.83 X528 ) => 125.70/16.83 ( 125.70/16.83 subset @ 125.70/16.83 ( 125.70/16.83 binintersect 125.70/16.83 @ 125.70/16.83 X522 @ 125.70/16.83 X524 ) @ 125.70/16.83 ( 125.70/16.83 binintersect 125.70/16.83 @ 125.70/16.83 X526 @ 125.70/16.83 X528 ) ) ) ) ) ) ) ) ) ) ) ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X530:$i, 125.70/16.83 X532:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X532 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X530 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X534:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X534 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X530 ) ) => 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 ( 125.70/16.83 setminus 125.70/16.83 @ 125.70/16.83 X530 @ 125.70/16.83 X532 ) @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 ( 125.70/16.83 setminus 125.70/16.83 @ 125.70/16.83 X530 @ 125.70/16.83 ( 125.70/16.83 binintersect 125.70/16.83 @ 125.70/16.83 X532 @ 125.70/16.83 X534 ) ) ) ) ) ) ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X536:$i, 125.70/16.83 X538:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X538 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X536 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X540:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X540 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X536 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X542:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X542 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X536 ) ) => 125.70/16.83 ( 125.70/16.83 ![ 125.70/16.83 X544:$i]: 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 in @ 125.70/16.83 X544 @ 125.70/16.83 ( 125.70/16.83 powerset 125.70/16.83 @ 125.70/16.83 X536 ) ) => 125.70/16.83 ( 125.70/16.83 ( 125.70/16.83 setminus 125.70/16.83 @ 125.70/16.83 X536 @ 125.70/16.83 ( 125.70/16.83 binintersect 125.70/16.83 @ 125.70/16.83 ( 125.70/16.83 binunion 125.70/16.83 @ 125.70/16.83 X538 @ 125.70/16.83 X540 ) @ 125.70/16.83 ( 125.70/16.83 binunion 125.70/16.83 @ 125.70/16.83 X542 @ 125.70/16.83 X544 ) ) ) = 125.70/16.83 ( 125.70/16.83 binunion 125.70/16.83 @ 125.70/16.83 ( 125.70/16.83 binintersect 125.70/16.83 @ 125.70/16.83 ( 125.70/16.83 setminus 125.70/16.83 @ 125.70/16.83 X536 @ 125.70/16.83 X538 ) @ 125.70/16.83 ( 125.70/16.83 setminus 125.70/16.83 @ 125.70/16.83 X536 @ 125.70/16.83 X540 ) ) @ 125.70/16.83 ( 125.70/16.83 binintersect 125.70/16.83 @ 125.70/16.83 ( 125.70/16.83 setminus 125.70/16.83 @ 125.70/16.83 X536 @ 125.70/16.83 X542 ) @ 125.70/16.83 ( 125.70/16.83 setminus 125.70/16.83 @ 125.70/16.83 X536 @ 125.70/16.83 X544 ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) )), 125.70/16.83 inference('cnf.neg', [status(esa)], [zf_stmt_0])). 125.70/16.83 thf(zip_derived_cl175, plain, 125.70/16.83 (![X216 : $i, X217 : $i, X218 : $i]: 125.70/16.83 (~ (in @ X216 @ (powerset @ X217)) 125.70/16.83 | (in @ (binunion @ X218 @ X216) @ (powerset @ X217)) 125.70/16.83 | ~ (in @ X218 @ (powerset @ X217)))), 125.70/16.83 inference('cnf', [status(esa)], [zf_stmt_1])). 125.70/16.83 thf(zip_derived_cl144, plain, ( (in @ sk__268 @ (powerset @ sk__266))), 125.70/16.83 inference('cnf', [status(esa)], [zf_stmt_1])). 125.70/16.83 thf(zip_derived_cl148, plain, ( (in @ sk__267 @ (powerset @ sk__266))), 125.70/16.83 inference('cnf', [status(esa)], [zf_stmt_1])). 125.70/16.83 thf(zip_derived_cl154, plain, 125.70/16.83 (![X151 : $i, X152 : $i, X153 : $i]: 125.70/16.83 (~ (in @ X151 @ (powerset @ X152)) 125.70/16.83 | ((setminus @ X152 @ (binintersect @ X153 @ X151)) 125.70/16.83 = (binunion @ (setminus @ X152 @ X153) @ (setminus @ X152 @ X151))) 125.70/16.83 | ~ (in @ X153 @ (powerset @ X152)))), 125.70/16.83 inference('cnf', [status(esa)], [zf_stmt_1])). 125.70/16.83 thf(zip_derived_cl145, plain, ( (in @ sk__270 @ (powerset @ sk__266))), 125.70/16.83 inference('cnf', [status(esa)], [zf_stmt_1])). 125.70/16.83 thf(zip_derived_cl147, plain, ( (in @ sk__269 @ (powerset @ sk__266))), 125.70/16.83 inference('cnf', [status(esa)], [zf_stmt_1])). 125.70/16.83 thf(zip_derived_cl146, plain, 125.70/16.83 (((setminus @ sk__266 @ 125.70/16.83 (binintersect @ (binunion @ sk__267 @ sk__268) @ 125.70/16.83 (binunion @ sk__269 @ sk__270))) 125.70/16.83 != (binunion @ 125.70/16.83 (binintersect @ (setminus @ sk__266 @ sk__267) @ 125.70/16.83 (setminus @ sk__266 @ sk__268)) @ 125.70/16.83 (binintersect @ (setminus @ sk__266 @ sk__269) @ 125.70/16.83 (setminus @ sk__266 @ sk__270))))), 125.70/16.83 inference('cnf', [status(esa)], [zf_stmt_1])). 125.70/16.83 thf(zip_derived_cl152, plain, 125.70/16.83 (![X144 : $i, X145 : $i, X146 : $i]: 125.70/16.83 (~ (in @ X144 @ (powerset @ X145)) 125.70/16.83 | ((setminus @ X145 @ (binunion @ X146 @ X144)) 125.70/16.83 = (binintersect @ (setminus @ X145 @ X146) @ 125.70/16.83 (setminus @ X145 @ X144))) 125.70/16.83 | ~ (in @ X146 @ (powerset @ X145)))), 125.70/16.83 inference('cnf', [status(esa)], [zf_stmt_1])). 125.70/16.83 thf(zip_derived_cl11039, plain, ($false), 125.70/16.83 inference('eprover', [status(thm)], 125.70/16.83 [zip_derived_cl175, zip_derived_cl144, zip_derived_cl148, 125.70/16.83 zip_derived_cl154, zip_derived_cl145, zip_derived_cl147, 125.70/16.83 zip_derived_cl146, zip_derived_cl152])). 125.70/16.83 125.70/16.83 % SZS output end Refutation 125.70/16.83 125.70/16.83 125.70/16.83 % /export/starexec/sandbox2/solver/bin/lams/30_b.l.sh running for 90s 125.70/16.83 % Terminating... 18.01/16.95 % Runner terminated. 7.48/17.01 % Zipperpin 1.5 exiting 7.48/17.04 EOF