TSTP Solution File: SYO552^1 by cocATP---0.2.0
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- Process Solution
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% File : cocATP---0.2.0
% Problem : SYO552^1 : TPTP v7.5.0. Released v5.2.0.
% Transfm : none
% Format : tptp:raw
% Command : python CASC.py /export/starexec/sandbox/benchmark/theBenchmark.p
% Computer : n014.cluster.edu
% Model : x86_64 x86_64
% CPU : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory : 8042.1875MB
% OS : Linux 3.10.0-693.el7.x86_64
% CPULimit : 300s
% WCLimit : 0s
% DateTime : Tue Mar 29 00:52:05 EDT 2022
% Result : Theorem 0.72s 0.89s
% Output : Proof 0.72s
% Verified :
% SZS Type : -
% Comments :
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%----WARNING: Could not form TPTP format derivation
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%----ORIGINAL SYSTEM OUTPUT
% 0.03/0.11 % Problem : SYO552^1 : TPTP v7.5.0. Released v5.2.0.
% 0.03/0.12 % Command : python CASC.py /export/starexec/sandbox/benchmark/theBenchmark.p
% 0.12/0.32 % Computer : n014.cluster.edu
% 0.12/0.32 % Model : x86_64 x86_64
% 0.12/0.32 % CPUModel : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.32 % RAMPerCPU : 8042.1875MB
% 0.12/0.32 % OS : Linux 3.10.0-693.el7.x86_64
% 0.12/0.32 % CPULimit : 300
% 0.12/0.32 % DateTime : Sun Mar 13 20:18:47 EDT 2022
% 0.12/0.32 % CPUTime :
% 0.12/0.33 ModuleCmd_Load.c(213):ERROR:105: Unable to locate a modulefile for 'python/python27'
% 0.12/0.33 Python 2.7.5
% 0.72/0.89 Using paths ['/home/cristobal/cocATP/CASC/TPTP/', '/export/starexec/sandbox/benchmark/', '/export/starexec/sandbox/benchmark/']
% 0.72/0.89 FOF formula ((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X)))) of role conjecture named claim
% 0.72/0.89 Conjecture to prove = ((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X)))):Prop
% 0.72/0.89 Parameter fofType_DUMMY:fofType.
% 0.72/0.89 We need to prove ['((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X))))']
% 0.72/0.89 Parameter fofType:Type.
% 0.72/0.89 Trying to prove ((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X))))
% 0.72/0.89 Found eq_ref00:=(eq_ref0 ((x X) Y)):(((eq fofType) ((x X) Y)) ((x X) Y))
% 0.72/0.89 Found (eq_ref0 ((x X) Y)) as proof of (((eq fofType) ((x X) Y)) X)
% 0.72/0.89 Found ((eq_ref fofType) ((x X) Y)) as proof of (((eq fofType) ((x X) Y)) X)
% 0.72/0.89 Found ((eq_ref fofType) ((x X) Y)) as proof of (((eq fofType) ((x X) Y)) X)
% 0.72/0.89 Found (fun (Y:fofType)=> ((eq_ref fofType) ((x X) Y))) as proof of (((eq fofType) ((x X) Y)) X)
% 0.72/0.89 Found (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) ((x X) Y))) as proof of (forall (Y:fofType), (((eq fofType) ((x X) Y)) X))
% 0.72/0.89 Found (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) ((x X) Y))) as proof of (forall (X:fofType) (Y:fofType), (((eq fofType) ((x X) Y)) X))
% 0.72/0.89 Found (ex_intro000 (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) ((x X) Y)))) as proof of ((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X))))
% 0.72/0.89 Found ((ex_intro00 (fun (x3:fofType) (x20:fofType)=> x3)) (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) (((fun (x3:fofType) (x20:fofType)=> x3) X) Y)))) as proof of ((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X))))
% 0.72/0.89 Found (((ex_intro0 (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X)))) (fun (x3:fofType) (x20:fofType)=> x3)) (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) (((fun (x3:fofType) (x20:fofType)=> x3) X) Y)))) as proof of ((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X))))
% 0.72/0.89 Found ((((ex_intro (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X)))) (fun (x3:fofType) (x20:fofType)=> x3)) (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) (((fun (x3:fofType) (x20:fofType)=> x3) X) Y)))) as proof of ((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X))))
% 0.72/0.89 Found ((((ex_intro (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X)))) (fun (x3:fofType) (x20:fofType)=> x3)) (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) (((fun (x3:fofType) (x20:fofType)=> x3) X) Y)))) as proof of ((ex (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X))))
% 0.72/0.89 Got proof ((((ex_intro (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X)))) (fun (x3:fofType) (x20:fofType)=> x3)) (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) (((fun (x3:fofType) (x20:fofType)=> x3) X) Y))))
% 0.72/0.89 Time elapsed = 0.296774s
% 0.72/0.89 node=74 cost=64.000000 depth=10
% 0.72/0.89 ::::::::::::::::::::::
% 0.72/0.89 % SZS status Theorem for /export/starexec/sandbox/benchmark/theBenchmark.p
% 0.72/0.89 % SZS output start Proof for /export/starexec/sandbox/benchmark/theBenchmark.p
% 0.72/0.89 ((((ex_intro (fofType->(fofType->fofType))) (fun (F:(fofType->(fofType->fofType)))=> (forall (X:fofType) (Y:fofType), (((eq fofType) ((F X) Y)) X)))) (fun (x3:fofType) (x20:fofType)=> x3)) (fun (X:fofType) (Y:fofType)=> ((eq_ref fofType) (((fun (x3:fofType) (x20:fofType)=> x3) X) Y))))
% 0.72/0.90 % SZS output end Proof for /export/starexec/sandbox/benchmark/theBenchmark.p
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