TSTP Solution File: PRO009+4 by CSE---1.6

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : CSE---1.6
% Problem  : PRO009+4 : TPTP v8.1.2. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : java -jar /export/starexec/sandbox2/solver/bin/mcs_scs.jar %s %d

% Computer : n015.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  : 300s
% DateTime : Thu Aug 31 13:05:47 EDT 2023

% Result   : Theorem 0.75s 0.85s
% Output   : CNFRefutation 0.75s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.12  % Problem    : PRO009+4 : TPTP v8.1.2. Released v4.0.0.
% 0.00/0.13  % Command    : java -jar /export/starexec/sandbox2/solver/bin/mcs_scs.jar %s %d
% 0.12/0.34  % Computer : n015.cluster.edu
% 0.12/0.34  % Model    : x86_64 x86_64
% 0.12/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.34  % Memory   : 8042.1875MB
% 0.12/0.34  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.12/0.34  % CPULimit   : 300
% 0.12/0.34  % WCLimit    : 300
% 0.12/0.34  % DateTime   : Mon Aug 28 19:48:10 EDT 2023
% 0.12/0.34  % CPUTime    : 
% 0.19/0.56  start to proof:theBenchmark
% 0.75/0.83  %-------------------------------------------
% 0.75/0.83  % File        :CSE---1.6
% 0.75/0.84  % Problem     :theBenchmark
% 0.75/0.84  % Transform   :cnf
% 0.75/0.84  % Format      :tptp:raw
% 0.75/0.84  % Command     :java -jar mcs_scs.jar %d %s
% 0.75/0.84  
% 0.75/0.84  % Result      :Theorem 0.220000s
% 0.75/0.84  % Output      :CNFRefutation 0.220000s
% 0.75/0.84  %-------------------------------------------
% 0.75/0.84  %------------------------------------------------------------------------------
% 0.75/0.84  % File     : PRO009+4 : TPTP v8.1.2. Released v4.0.0.
% 0.75/0.84  % Domain   : Processes
% 0.75/0.84  % Problem  : PSL cliff problem coe-7.1.2
% 0.75/0.84  % Version  : Especial : Augmented > Especial.
% 0.75/0.84  % English  : 
% 0.75/0.84  % Refs     : [Hal09] Halcomb (2009), Email to G. Sutcliffe
% 0.75/0.84  % Source   : [Hal09]
% 0.75/0.84  % Names    : unique-cat-p9x__coe-7.1.2-pd [Hal09]
% 0.75/0.84  
% 0.75/0.84  % Status   : Theorem
% 0.75/0.84  % Rating   : 0.17 v8.1.0, 0.19 v7.5.0, 0.22 v7.4.0, 0.10 v7.2.0, 0.07 v7.1.0, 0.09 v7.0.0, 0.10 v6.4.0, 0.15 v6.3.0, 0.17 v6.2.0, 0.24 v6.1.0, 0.27 v6.0.0, 0.17 v5.5.0, 0.19 v5.4.0, 0.25 v5.3.0, 0.33 v5.2.0, 0.10 v5.1.0, 0.19 v5.0.0, 0.17 v4.1.0, 0.22 v4.0.0
% 0.75/0.84  % Syntax   : Number of formulae    :   46 (  12 unt;   0 def)
% 0.75/0.84  %            Number of atoms       :  144 (  12 equ)
% 0.75/0.84  %            Maximal formula atoms :    9 (   3 avg)
% 0.75/0.84  %            Number of connectives :  116 (  18   ~;   5   |;  58   &)
% 0.75/0.84  %                                         (   7 <=>;  28  =>;   0  <=;   0 <~>)
% 0.75/0.84  %            Maximal formula depth :   13 (   6 avg)
% 0.75/0.84  %            Maximal term depth    :    1 (   1 avg)
% 0.75/0.84  %            Number of predicates  :   18 (  17 usr;   0 prp; 1-3 aty)
% 0.75/0.84  %            Number of functors    :    5 (   5 usr;   5 con; 0-0 aty)
% 0.75/0.84  %            Number of variables   :  108 (  89   !;  19   ?)
% 0.75/0.84  % SPC      : FOF_THM_RFO_SEQ
% 0.75/0.84  
% 0.75/0.84  % Comments :
% 0.75/0.84  %------------------------------------------------------------------------------
% 0.75/0.84  fof(sos,axiom,
% 0.75/0.84      ! [X0,X1] :
% 0.75/0.84        ( ( occurrence_of(X1,X0)
% 0.75/0.84          & ~ atomic(X0) )
% 0.75/0.84       => ? [X2] :
% 0.75/0.84            ( root(X2,X0)
% 0.75/0.84            & subactivity_occurrence(X2,X1) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_01,axiom,
% 0.75/0.84      ! [X3,X4,X5,X6,X7] :
% 0.75/0.84        ( ( occurrence_of(X4,X3)
% 0.75/0.84          & root_occ(X6,X4)
% 0.75/0.84          & leaf_occ(X7,X4)
% 0.75/0.84          & subactivity_occurrence(X5,X4)
% 0.75/0.84          & min_precedes(X6,X5,X3)
% 0.75/0.84          & X5 != X7 )
% 0.75/0.84       => min_precedes(X5,X7,X3) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_02,axiom,
% 0.75/0.84      ! [X8,X9,X10,X11] :
% 0.75/0.84        ( ( occurrence_of(X9,X8)
% 0.75/0.84          & subactivity_occurrence(X10,X9)
% 0.75/0.84          & leaf_occ(X11,X9)
% 0.75/0.84          & arboreal(X10)
% 0.75/0.84          & ~ min_precedes(X10,X11,X8) )
% 0.75/0.84       => X11 = X10 ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_03,axiom,
% 0.75/0.84      ! [X12,X13] :
% 0.75/0.84        ( occurrence_of(X13,X12)
% 0.75/0.84       => ( activity(X12)
% 0.75/0.84          & activity_occurrence(X13) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_04,axiom,
% 0.75/0.84      ! [X14,X15,X16,X17] :
% 0.75/0.84        ( ( occurrence_of(X15,X14)
% 0.75/0.84          & arboreal(X16)
% 0.75/0.84          & arboreal(X17)
% 0.75/0.84          & subactivity_occurrence(X16,X15)
% 0.75/0.84          & subactivity_occurrence(X17,X15) )
% 0.75/0.84       => ( min_precedes(X16,X17,X14)
% 0.75/0.84          | min_precedes(X17,X16,X14)
% 0.75/0.84          | X16 = X17 ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_05,axiom,
% 0.75/0.84      ! [X18,X19] :
% 0.75/0.84        ( root(X19,X18)
% 0.75/0.84       => ? [X20] :
% 0.75/0.84            ( subactivity(X20,X18)
% 0.75/0.84            & atocc(X19,X20) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_06,axiom,
% 0.75/0.84      ! [X21,X22,X23] :
% 0.75/0.84        ( min_precedes(X22,X23,X21)
% 0.75/0.84       => ? [X24] :
% 0.75/0.84            ( occurrence_of(X24,X21)
% 0.75/0.84            & subactivity_occurrence(X22,X24)
% 0.75/0.84            & subactivity_occurrence(X23,X24) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_07,axiom,
% 0.75/0.84      ! [X25,X26] :
% 0.75/0.84        ( ( leaf(X25,X26)
% 0.75/0.84          & ~ atomic(X26) )
% 0.75/0.84       => ? [X27] :
% 0.75/0.84            ( occurrence_of(X27,X26)
% 0.75/0.84            & leaf_occ(X25,X27) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_08,axiom,
% 0.75/0.84      ! [X28,X29,X30] :
% 0.75/0.84        ( ( occurrence_of(X28,X29)
% 0.75/0.84          & occurrence_of(X28,X30) )
% 0.75/0.84       => X29 = X30 ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_09,axiom,
% 0.75/0.84      ! [X31,X32,X33] :
% 0.75/0.84        ( ( occurrence_of(X31,X33)
% 0.75/0.84          & leaf_occ(X32,X31) )
% 0.75/0.84       => ~ ? [X34] : min_precedes(X32,X34,X33) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_10,axiom,
% 0.75/0.84      ! [X35,X36,X37] :
% 0.75/0.84        ( ( occurrence_of(X35,X37)
% 0.75/0.84          & root_occ(X36,X35) )
% 0.75/0.84       => ~ ? [X38] : min_precedes(X38,X36,X37) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_11,axiom,
% 0.75/0.84      ! [X39,X40] :
% 0.75/0.84        ( subactivity_occurrence(X39,X40)
% 0.75/0.84       => ( activity_occurrence(X39)
% 0.75/0.84          & activity_occurrence(X40) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_12,axiom,
% 0.75/0.84      ! [X41] :
% 0.75/0.84        ( activity_occurrence(X41)
% 0.75/0.84       => ? [X42] :
% 0.75/0.84            ( activity(X42)
% 0.75/0.84            & occurrence_of(X41,X42) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_13,axiom,
% 0.75/0.84      ! [X43] :
% 0.75/0.84        ( legal(X43)
% 0.75/0.84       => arboreal(X43) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_14,axiom,
% 0.75/0.84      ! [X44,X45] :
% 0.75/0.84        ( atocc(X44,X45)
% 0.75/0.84      <=> ? [X46] :
% 0.75/0.84            ( subactivity(X45,X46)
% 0.75/0.84            & atomic(X46)
% 0.75/0.84            & occurrence_of(X44,X46) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_15,axiom,
% 0.75/0.84      ! [X47,X48] :
% 0.75/0.84        ( leaf(X47,X48)
% 0.75/0.84      <=> ( ( root(X47,X48)
% 0.75/0.84            | ? [X49] : min_precedes(X49,X47,X48) )
% 0.75/0.84          & ~ ? [X50] : min_precedes(X47,X50,X48) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_16,axiom,
% 0.75/0.84      ! [X51,X52] :
% 0.75/0.84        ( occurrence_of(X51,X52)
% 0.75/0.84       => ( arboreal(X51)
% 0.75/0.84        <=> atomic(X52) ) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_17,axiom,
% 0.75/0.84      ! [X53,X54] :
% 0.75/0.84        ( root(X53,X54)
% 0.75/0.84       => legal(X53) ) ).
% 0.75/0.84  
% 0.75/0.84  fof(sos_18,axiom,
% 0.75/0.85      ! [X55,X56] :
% 0.75/0.85        ( leaf_occ(X55,X56)
% 0.75/0.85      <=> ? [X57] :
% 0.75/0.85            ( occurrence_of(X56,X57)
% 0.75/0.85            & subactivity_occurrence(X55,X56)
% 0.75/0.85            & leaf(X55,X57) ) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_19,axiom,
% 0.75/0.85      ! [X58,X59] :
% 0.75/0.85        ( root_occ(X58,X59)
% 0.75/0.85      <=> ? [X60] :
% 0.75/0.85            ( occurrence_of(X59,X60)
% 0.75/0.85            & subactivity_occurrence(X58,X59)
% 0.75/0.85            & root(X58,X60) ) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_20,axiom,
% 0.75/0.85      ! [X61,X62] :
% 0.75/0.85        ( earlier(X61,X62)
% 0.75/0.85       => ~ earlier(X62,X61) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_21,axiom,
% 0.75/0.85      ! [X63,X64] :
% 0.75/0.85        ( precedes(X63,X64)
% 0.75/0.85      <=> ( earlier(X63,X64)
% 0.75/0.85          & legal(X64) ) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_22,axiom,
% 0.75/0.85      ! [X65,X66,X67] :
% 0.75/0.85        ( min_precedes(X65,X66,X67)
% 0.75/0.85       => ~ root(X66,X67) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_23,axiom,
% 0.75/0.85      ! [X68,X69,X70] :
% 0.75/0.85        ( min_precedes(X68,X69,X70)
% 0.75/0.85       => ? [X71] :
% 0.75/0.85            ( root(X71,X70)
% 0.75/0.85            & min_precedes(X71,X69,X70) ) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_24,axiom,
% 0.75/0.85      ! [X72,X73,X74] :
% 0.75/0.85        ( min_precedes(X72,X73,X74)
% 0.75/0.85       => precedes(X72,X73) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_25,axiom,
% 0.75/0.85      ! [X75,X76,X77] :
% 0.75/0.85        ( next_subocc(X75,X76,X77)
% 0.75/0.85       => ( arboreal(X75)
% 0.75/0.85          & arboreal(X76) ) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_26,axiom,
% 0.75/0.85      ! [X78,X79,X80] :
% 0.75/0.85        ( next_subocc(X78,X79,X80)
% 0.75/0.85      <=> ( min_precedes(X78,X79,X80)
% 0.75/0.85          & ~ ? [X81] :
% 0.75/0.85                ( min_precedes(X78,X81,X80)
% 0.75/0.85                & min_precedes(X81,X79,X80) ) ) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_27,axiom,
% 0.75/0.85      ! [X82,X83,X84,X85] :
% 0.75/0.85        ( ( min_precedes(X82,X83,X84)
% 0.75/0.85          & occurrence_of(X85,X84)
% 0.75/0.85          & subactivity_occurrence(X83,X85) )
% 0.75/0.85       => subactivity_occurrence(X82,X85) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_28,axiom,
% 0.75/0.85      ! [X86,X87,X88,X89] :
% 0.75/0.85        ( ( occurrence_of(X88,X89)
% 0.75/0.85          & ~ atomic(X89)
% 0.75/0.85          & leaf_occ(X86,X88)
% 0.75/0.85          & leaf_occ(X87,X88) )
% 0.75/0.85       => X86 = X87 ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_29,axiom,
% 0.75/0.85      ! [X90,X91,X92,X93] :
% 0.75/0.85        ( ( occurrence_of(X92,X93)
% 0.75/0.85          & root_occ(X90,X92)
% 0.75/0.85          & root_occ(X91,X92) )
% 0.75/0.85       => X90 = X91 ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_30,axiom,
% 0.75/0.85      ! [X94,X95,X96] :
% 0.75/0.85        ( ( earlier(X94,X95)
% 0.75/0.85          & earlier(X95,X96) )
% 0.75/0.85       => earlier(X94,X96) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_31,axiom,
% 0.75/0.85      ! [X97,X98,X99,X100] :
% 0.75/0.85        ( ( min_precedes(X97,X98,X100)
% 0.75/0.85          & min_precedes(X97,X99,X100)
% 0.75/0.85          & precedes(X98,X99) )
% 0.75/0.85       => min_precedes(X98,X99,X100) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_32,axiom,
% 0.75/0.85      ! [X101] :
% 0.75/0.85        ( occurrence_of(X101,tptp0)
% 0.75/0.85       => ? [X102,X103,X104] :
% 0.75/0.85            ( occurrence_of(X102,tptp3)
% 0.75/0.85            & root_occ(X102,X101)
% 0.75/0.85            & occurrence_of(X103,tptp4)
% 0.75/0.85            & next_subocc(X102,X103,tptp0)
% 0.75/0.85            & ( occurrence_of(X104,tptp2)
% 0.75/0.85              | occurrence_of(X104,tptp1) )
% 0.75/0.85            & next_subocc(X103,X104,tptp0)
% 0.75/0.85            & leaf_occ(X104,X101) ) ) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_33,axiom,
% 0.75/0.85      activity(tptp0) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_34,axiom,
% 0.75/0.85      ~ atomic(tptp0) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_35,axiom,
% 0.75/0.85      atomic(tptp4) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_36,axiom,
% 0.75/0.85      atomic(tptp2) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_37,axiom,
% 0.75/0.85      atomic(tptp1) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_38,axiom,
% 0.75/0.85      atomic(tptp3) ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_39,axiom,
% 0.75/0.85      tptp4 != tptp3 ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_40,axiom,
% 0.75/0.85      tptp4 != tptp2 ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_41,axiom,
% 0.75/0.85      tptp4 != tptp1 ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_42,axiom,
% 0.75/0.85      tptp3 != tptp2 ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_43,axiom,
% 0.75/0.85      tptp3 != tptp1 ).
% 0.75/0.85  
% 0.75/0.85  fof(sos_44,axiom,
% 0.75/0.85      tptp2 != tptp1 ).
% 0.75/0.85  
% 0.75/0.85  fof(goals,conjecture,
% 0.75/0.85      ! [X105] :
% 0.75/0.85        ( occurrence_of(X105,tptp0)
% 0.75/0.85       => ? [X106,X107] :
% 0.75/0.85            ( occurrence_of(X106,tptp3)
% 0.75/0.85            & root_occ(X106,X105)
% 0.75/0.85            & ( occurrence_of(X107,tptp2)
% 0.75/0.85              | occurrence_of(X107,tptp1) )
% 0.75/0.85            & min_precedes(X106,X107,tptp0)
% 0.75/0.85            & leaf_occ(X107,X105) ) ) ).
% 0.75/0.85  
% 0.75/0.85  %------------------------------------------------------------------------------
% 0.75/0.85  %-------------------------------------------
% 0.75/0.85  % Proof found
% 0.75/0.85  % SZS status Theorem for theBenchmark
% 0.75/0.85  % SZS output start Proof
% 0.75/0.85  %ClaNum:145(EqnAxiom:63)
% 0.75/0.85  %VarNum:404(SingletonVarNum:168)
% 0.75/0.85  %MaxLitNum:8
% 0.75/0.85  %MaxfuncDepth:1
% 0.75/0.85  %SharedTerms:19
% 0.75/0.85  %goalClause: 69 132 133
% 0.75/0.85  %singleGoalClaCount:1
% 0.75/0.85  [64]P1(a1)
% 0.75/0.85  [65]P1(a21)
% 0.75/0.85  [66]P1(a2)
% 0.75/0.85  [67]P1(a3)
% 0.75/0.85  [68]P2(a4)
% 0.75/0.85  [69]P6(a5,a4)
% 0.75/0.85  [70]~E(a1,a21)
% 0.75/0.85  [71]~E(a1,a2)
% 0.75/0.85  [72]~E(a2,a21)
% 0.75/0.85  [73]~E(a1,a3)
% 0.75/0.85  [74]~E(a3,a21)
% 0.75/0.85  [75]~E(a3,a2)
% 0.75/0.85  [76]~P1(a4)
% 0.75/0.85  [77]~P7(x771)+P3(x771)
% 0.75/0.85  [78]~P4(x781)+P2(f12(x781))
% 0.75/0.85  [85]~P4(x851)+P6(x851,f12(x851))
% 0.75/0.85  [91]~P6(x911,a4)+P6(f6(x911),a1)
% 0.75/0.85  [92]~P6(x921,a4)+P6(f10(x921),a21)
% 0.75/0.85  [93]~P6(x931,a4)+P16(f6(x931),x931)
% 0.75/0.85  [94]~P6(x941,a4)+P8(f11(x941),x941)
% 0.75/0.85  [118]~P6(x1181,a4)+P11(f6(x1181),f10(x1181),a4)
% 0.75/0.85  [119]~P6(x1191,a4)+P11(f10(x1191),f11(x1191),a4)
% 0.75/0.85  [79]P2(x791)+~P6(x792,x791)
% 0.75/0.85  [80]P4(x801)+~P6(x801,x802)
% 0.75/0.85  [81]P4(x811)+~P13(x812,x811)
% 0.75/0.85  [82]P4(x821)+~P13(x821,x822)
% 0.75/0.85  [83]P7(x831)+~P14(x831,x832)
% 0.75/0.85  [84]P7(x841)+~P15(x842,x841)
% 0.75/0.85  [88]~P16(x881,x882)+P13(x881,x882)
% 0.75/0.85  [89]~P8(x891,x892)+P13(x891,x892)
% 0.75/0.85  [90]~P15(x901,x902)+P9(x901,x902)
% 0.75/0.85  [96]~P9(x962,x961)+~P9(x961,x962)
% 0.75/0.85  [98]~P5(x981,x982)+P1(f17(x981,x982))
% 0.75/0.85  [101]~P5(x1011,x1012)+P6(x1011,f17(x1011,x1012))
% 0.75/0.85  [102]~P8(x1022,x1021)+P6(x1021,f18(x1022,x1021))
% 0.75/0.85  [103]~P16(x1032,x1031)+P6(x1031,f7(x1032,x1031))
% 0.75/0.85  [104]~P16(x1041,x1042)+P14(x1041,f7(x1041,x1042))
% 0.75/0.85  [105]~P5(x1052,x1051)+P17(x1051,f17(x1052,x1051))
% 0.75/0.85  [106]~P14(x1061,x1062)+P5(x1061,f13(x1062,x1061))
% 0.75/0.85  [107]~P8(x1071,x1072)+P10(x1071,f18(x1071,x1072))
% 0.75/0.85  [108]~P14(x1082,x1081)+P17(f13(x1081,x1082),x1081)
% 0.75/0.85  [120]P3(x1201)+~P11(x1202,x1201,x1203)
% 0.75/0.85  [121]P3(x1211)+~P11(x1211,x1212,x1213)
% 0.75/0.85  [122]P15(x1221,x1222)+~P12(x1221,x1222,x1223)
% 0.75/0.85  [123]~P14(x1231,x1232)+~P12(x1233,x1231,x1232)
% 0.75/0.85  [124]~P10(x1241,x1242)+~P12(x1241,x1243,x1242)
% 0.75/0.85  [130]~P11(x1301,x1302,x1303)+P12(x1301,x1302,x1303)
% 0.75/0.85  [136]~P12(x1363,x1361,x1362)+P13(x1361,f16(x1362,x1363,x1361))
% 0.75/0.85  [137]~P12(x1371,x1373,x1372)+P13(x1371,f16(x1372,x1371,x1373))
% 0.75/0.85  [138]~P12(x1382,x1383,x1381)+P6(f16(x1381,x1382,x1383),x1381)
% 0.75/0.85  [139]~P12(x1391,x1392,x1393)+P14(f8(x1391,x1392,x1393),x1393)
% 0.75/0.85  [141]~P12(x1411,x1412,x1413)+P12(f8(x1411,x1412,x1413),x1412,x1413)
% 0.75/0.85  [99]~P6(x991,a4)+P6(f11(x991),a2)+P6(f11(x991),a3)
% 0.75/0.85  [86]~P6(x862,x861)+P1(x861)+~P3(x862)
% 0.75/0.85  [87]~P6(x871,x872)+P3(x871)+~P1(x872)
% 0.75/0.85  [95]~P7(x952)+~P9(x951,x952)+P15(x951,x952)
% 0.75/0.85  [110]~P10(x1102,x1101)+P1(x1101)+P8(x1102,f15(x1102,x1101))
% 0.75/0.85  [111]~P10(x1112,x1111)+P1(x1111)+P6(f15(x1112,x1111),x1111)
% 0.75/0.85  [112]~P6(x1122,x1121)+P1(x1121)+P14(f14(x1121,x1122),x1121)
% 0.75/0.85  [113]~P6(x1132,x1131)+P1(x1131)+P13(f14(x1131,x1132),x1132)
% 0.75/0.85  [125]~P14(x1251,x1252)+P10(x1251,x1252)+P12(x1251,f19(x1251,x1252),x1252)
% 0.75/0.85  [126]~P10(x1261,x1262)+P14(x1261,x1262)+P12(f20(x1261,x1262),x1261,x1262)
% 0.75/0.85  [97]~P6(x973,x971)+E(x971,x972)+~P6(x973,x972)
% 0.75/0.85  [100]~P9(x1001,x1003)+P9(x1001,x1002)+~P9(x1003,x1002)
% 0.75/0.85  [134]P10(x1341,x1342)+~P12(x1343,x1341,x1342)+P12(x1341,f19(x1341,x1342),x1342)
% 0.75/0.85  [144]~P12(x1441,x1442,x1443)+P11(x1441,x1442,x1443)+P12(x1441,f9(x1441,x1442,x1443),x1443)
% 0.75/0.85  [145]~P12(x1451,x1452,x1453)+P11(x1451,x1452,x1453)+P12(f9(x1451,x1452,x1453),x1452,x1453)
% 0.75/0.85  [127]~P6(x1271,x1272)+~P12(x1274,x1273,x1272)+~P16(x1273,x1271)
% 0.75/0.85  [128]~P6(x1281,x1282)+~P12(x1283,x1284,x1282)+~P8(x1283,x1281)
% 0.75/0.85  [143]~P11(x1434,x1432,x1433)+~P12(x1431,x1432,x1433)+~P12(x1434,x1431,x1433)
% 0.75/0.85  [109]~P6(x1091,x1093)+~P17(x1092,x1093)+P5(x1091,x1092)+~P1(x1093)
% 0.75/0.85  [116]~P14(x1161,x1163)+~P13(x1161,x1162)+P16(x1161,x1162)+~P6(x1162,x1163)
% 0.75/0.85  [117]~P13(x1171,x1172)+~P10(x1171,x1173)+P8(x1171,x1172)+~P6(x1172,x1173)
% 0.75/0.85  [114]~P16(x1142,x1143)+~P16(x1141,x1143)+E(x1141,x1142)+~P6(x1143,x1144)
% 0.75/0.85  [131]~P12(x1311,x1314,x1313)+P13(x1311,x1312)+~P6(x1312,x1313)+~P13(x1314,x1312)
% 0.75/0.85  [142]~P15(x1421,x1422)+~P12(x1424,x1421,x1423)+P12(x1421,x1422,x1423)+~P12(x1424,x1422,x1423)
% 0.75/0.85  [132]~P12(x1321,x1322,a4)+~P16(x1321,a5)+~P8(x1322,a5)+~P6(x1321,a1)+~P6(x1322,a2)
% 0.75/0.85  [133]~P12(x1331,x1332,a4)+~P16(x1331,a5)+~P8(x1332,a5)+~P6(x1331,a1)+~P6(x1332,a3)
% 0.75/0.85  [115]~P8(x1152,x1154)+~P8(x1151,x1154)+E(x1151,x1152)+~P6(x1154,x1153)+P1(x1153)
% 0.75/0.85  [129]~P3(x1291)+~P13(x1291,x1294)+~P8(x1292,x1294)+E(x1291,x1292)+P12(x1291,x1292,x1293)+~P6(x1294,x1293)
% 0.75/0.85  [140]~P13(x1402,x1404)+~P8(x1401,x1404)+~P12(x1405,x1402,x1403)+E(x1401,x1402)+P12(x1402,x1401,x1403)+~P6(x1404,x1403)+~P16(x1405,x1404)
% 0.75/0.85  [135]P12(x1351,x1352,x1353)+~P3(x1352)+~P3(x1351)+~P13(x1352,x1354)+~P13(x1351,x1354)+E(x1351,x1352)+P12(x1352,x1351,x1353)+~P6(x1354,x1353)
% 0.75/0.85  %EqnAxiom
% 0.75/0.85  [1]E(x11,x11)
% 0.75/0.85  [2]E(x22,x21)+~E(x21,x22)
% 0.75/0.85  [3]E(x31,x33)+~E(x31,x32)+~E(x32,x33)
% 0.75/0.85  [4]~E(x41,x42)+E(f12(x41),f12(x42))
% 0.75/0.85  [5]~E(x51,x52)+E(f9(x51,x53,x54),f9(x52,x53,x54))
% 0.75/0.85  [6]~E(x61,x62)+E(f9(x63,x61,x64),f9(x63,x62,x64))
% 0.75/0.85  [7]~E(x71,x72)+E(f9(x73,x74,x71),f9(x73,x74,x72))
% 0.75/0.85  [8]~E(x81,x82)+E(f6(x81),f6(x82))
% 0.75/0.85  [9]~E(x91,x92)+E(f10(x91),f10(x92))
% 0.75/0.85  [10]~E(x101,x102)+E(f8(x101,x103,x104),f8(x102,x103,x104))
% 0.75/0.85  [11]~E(x111,x112)+E(f8(x113,x111,x114),f8(x113,x112,x114))
% 0.75/0.85  [12]~E(x121,x122)+E(f8(x123,x124,x121),f8(x123,x124,x122))
% 0.75/0.85  [13]~E(x131,x132)+E(f11(x131),f11(x132))
% 0.75/0.85  [14]~E(x141,x142)+E(f17(x141,x143),f17(x142,x143))
% 0.75/0.85  [15]~E(x151,x152)+E(f17(x153,x151),f17(x153,x152))
% 0.75/0.85  [16]~E(x161,x162)+E(f19(x161,x163),f19(x162,x163))
% 0.75/0.85  [17]~E(x171,x172)+E(f19(x173,x171),f19(x173,x172))
% 0.75/0.85  [18]~E(x181,x182)+E(f20(x181,x183),f20(x182,x183))
% 0.75/0.85  [19]~E(x191,x192)+E(f20(x193,x191),f20(x193,x192))
% 0.75/0.85  [20]~E(x201,x202)+E(f16(x201,x203,x204),f16(x202,x203,x204))
% 0.75/0.85  [21]~E(x211,x212)+E(f16(x213,x211,x214),f16(x213,x212,x214))
% 0.75/0.85  [22]~E(x221,x222)+E(f16(x223,x224,x221),f16(x223,x224,x222))
% 0.75/0.85  [23]~E(x231,x232)+E(f18(x231,x233),f18(x232,x233))
% 0.75/0.85  [24]~E(x241,x242)+E(f18(x243,x241),f18(x243,x242))
% 0.75/0.85  [25]~E(x251,x252)+E(f7(x251,x253),f7(x252,x253))
% 0.75/0.85  [26]~E(x261,x262)+E(f7(x263,x261),f7(x263,x262))
% 0.75/0.85  [27]~E(x271,x272)+E(f15(x271,x273),f15(x272,x273))
% 0.75/0.85  [28]~E(x281,x282)+E(f15(x283,x281),f15(x283,x282))
% 0.75/0.85  [29]~E(x291,x292)+E(f14(x291,x293),f14(x292,x293))
% 0.75/0.85  [30]~E(x301,x302)+E(f14(x303,x301),f14(x303,x302))
% 0.75/0.85  [31]~E(x311,x312)+E(f13(x311,x313),f13(x312,x313))
% 0.75/0.85  [32]~E(x321,x322)+E(f13(x323,x321),f13(x323,x322))
% 0.75/0.85  [33]~P1(x331)+P1(x332)+~E(x331,x332)
% 0.75/0.85  [34]P12(x342,x343,x344)+~E(x341,x342)+~P12(x341,x343,x344)
% 0.75/0.85  [35]P12(x353,x352,x354)+~E(x351,x352)+~P12(x353,x351,x354)
% 0.75/0.85  [36]P12(x363,x364,x362)+~E(x361,x362)+~P12(x363,x364,x361)
% 0.75/0.85  [37]P8(x372,x373)+~E(x371,x372)+~P8(x371,x373)
% 0.75/0.85  [38]P8(x383,x382)+~E(x381,x382)+~P8(x383,x381)
% 0.75/0.85  [39]P11(x392,x393,x394)+~E(x391,x392)+~P11(x391,x393,x394)
% 0.75/0.85  [40]P11(x403,x402,x404)+~E(x401,x402)+~P11(x403,x401,x404)
% 0.75/0.85  [41]P11(x413,x414,x412)+~E(x411,x412)+~P11(x413,x414,x411)
% 0.75/0.85  [42]~P2(x421)+P2(x422)+~E(x421,x422)
% 0.75/0.85  [43]P6(x432,x433)+~E(x431,x432)+~P6(x431,x433)
% 0.75/0.85  [44]P6(x443,x442)+~E(x441,x442)+~P6(x443,x441)
% 0.75/0.85  [45]P16(x452,x453)+~E(x451,x452)+~P16(x451,x453)
% 0.75/0.85  [46]P16(x463,x462)+~E(x461,x462)+~P16(x463,x461)
% 0.75/0.85  [47]~P3(x471)+P3(x472)+~E(x471,x472)
% 0.75/0.85  [48]~P7(x481)+P7(x482)+~E(x481,x482)
% 0.75/0.85  [49]P13(x492,x493)+~E(x491,x492)+~P13(x491,x493)
% 0.75/0.85  [50]P13(x503,x502)+~E(x501,x502)+~P13(x503,x501)
% 0.75/0.85  [51]~P4(x511)+P4(x512)+~E(x511,x512)
% 0.75/0.85  [52]P10(x522,x523)+~E(x521,x522)+~P10(x521,x523)
% 0.75/0.85  [53]P10(x533,x532)+~E(x531,x532)+~P10(x533,x531)
% 0.75/0.85  [54]P5(x542,x543)+~E(x541,x542)+~P5(x541,x543)
% 0.75/0.85  [55]P5(x553,x552)+~E(x551,x552)+~P5(x553,x551)
% 0.75/0.86  [56]P15(x562,x563)+~E(x561,x562)+~P15(x561,x563)
% 0.75/0.86  [57]P15(x573,x572)+~E(x571,x572)+~P15(x573,x571)
% 0.75/0.86  [58]P14(x582,x583)+~E(x581,x582)+~P14(x581,x583)
% 0.75/0.86  [59]P14(x593,x592)+~E(x591,x592)+~P14(x593,x591)
% 0.75/0.86  [60]P9(x602,x603)+~E(x601,x602)+~P9(x601,x603)
% 0.75/0.86  [61]P9(x613,x612)+~E(x611,x612)+~P9(x613,x611)
% 0.75/0.86  [62]P17(x622,x623)+~E(x621,x622)+~P17(x621,x623)
% 0.75/0.86  [63]P17(x633,x632)+~E(x631,x632)+~P17(x633,x631)
% 0.75/0.86  
% 0.75/0.86  %-------------------------------------------
% 0.75/0.86  cnf(146,plain,
% 0.75/0.86     (~P3(a5)),
% 0.75/0.86     inference(scs_inference,[],[69,76,86])).
% 0.75/0.86  cnf(150,plain,
% 0.75/0.86     (P8(f11(a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94])).
% 0.75/0.86  cnf(152,plain,
% 0.75/0.86     (P16(f6(a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93])).
% 0.75/0.86  cnf(156,plain,
% 0.75/0.86     (P6(f6(a5),a1)),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93,92,91])).
% 0.75/0.86  cnf(158,plain,
% 0.75/0.86     (P6(a5,f12(a5))),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93,92,91,85])).
% 0.75/0.86  cnf(162,plain,
% 0.75/0.86     (P11(f10(a5),f11(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93,92,91,85,78,119])).
% 0.75/0.86  cnf(164,plain,
% 0.75/0.86     (P11(f6(a5),f10(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93,92,91,85,78,119,118])).
% 0.75/0.86  cnf(166,plain,
% 0.75/0.86     (P10(f11(a5),f18(f11(a5),a5))),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93,92,91,85,78,119,118,107])).
% 0.75/0.86  cnf(168,plain,
% 0.75/0.86     (P14(f6(a5),f7(f6(a5),a5))),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104])).
% 0.75/0.86  cnf(170,plain,
% 0.75/0.86     (P6(a5,f7(f6(a5),a5))),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103])).
% 0.75/0.86  cnf(172,plain,
% 0.75/0.86     (P6(a5,f18(f11(a5),a5))),
% 0.75/0.86     inference(scs_inference,[],[69,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102])).
% 0.75/0.86  cnf(176,plain,
% 0.75/0.86     (~P12(f11(a5),x1761,a4)),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128])).
% 0.75/0.86  cnf(178,plain,
% 0.75/0.86     (~P12(x1781,f6(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127])).
% 0.75/0.86  cnf(180,plain,
% 0.75/0.86     (~P6(f10(a5),a1)),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97])).
% 0.75/0.86  cnf(182,plain,
% 0.75/0.86     (P3(f6(a5))),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87])).
% 0.75/0.86  cnf(186,plain,
% 0.75/0.86     (P14(f14(a4,a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87,113,112])).
% 0.75/0.86  cnf(188,plain,
% 0.75/0.86     (P16(f14(a4,a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87,113,112,116])).
% 0.75/0.86  cnf(190,plain,
% 0.75/0.86     (~P11(f11(a5),x1901,a4)),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87,113,112,116,130])).
% 0.75/0.86  cnf(192,plain,
% 0.75/0.86     (P3(f10(a5))),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87,113,112,116,130,121])).
% 0.75/0.86  cnf(194,plain,
% 0.75/0.86     (P3(f11(a5))),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87,113,112,116,130,121,120])).
% 0.75/0.86  cnf(196,plain,
% 0.75/0.86     (P7(f6(a5))),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87,113,112,116,130,121,120,83])).
% 0.75/0.86  cnf(202,plain,
% 0.75/0.86     (~P7(a5)),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87,113,112,116,130,121,120,83,82,79,77])).
% 0.75/0.86  cnf(207,plain,
% 0.75/0.86     (P6(f11(a5),a3)+P6(f11(a5),a2)),
% 0.75/0.86     inference(scs_inference,[],[69,64,70,76,86,2,80,94,93,92,91,85,78,119,118,107,104,103,102,51,33,128,127,97,87,113,112,116,130,121,120,83,82,79,77,48,125,99])).
% 0.75/0.86  cnf(223,plain,
% 0.75/0.86     (~P12(f11(a5),x2231,f18(f11(a5),a5))),
% 0.75/0.86     inference(scs_inference,[],[166,124])).
% 0.75/0.86  cnf(225,plain,
% 0.75/0.86     (~P12(x2251,f6(a5),f7(f6(a5),a5))),
% 0.75/0.86     inference(scs_inference,[],[166,168,124,123])).
% 0.75/0.86  cnf(227,plain,
% 0.75/0.86     (P13(f11(a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[166,168,150,124,123,89])).
% 0.75/0.86  cnf(229,plain,
% 0.75/0.86     (P13(f6(a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[166,168,150,152,124,123,89,88])).
% 0.75/0.86  cnf(238,plain,
% 0.75/0.86     (~E(f10(a5),f11(a5))),
% 0.75/0.86     inference(scs_inference,[],[162,166,168,190,186,150,152,156,180,202,124,123,89,88,84,108,106,43,39])).
% 0.75/0.86  cnf(240,plain,
% 0.75/0.86     (P12(f10(a5),f11(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[162,166,168,190,186,150,152,156,180,202,124,123,89,88,84,108,106,43,39,130])).
% 0.75/0.86  cnf(244,plain,
% 0.75/0.86     (~P14(a5,x2441)),
% 0.75/0.86     inference(scs_inference,[],[162,166,168,190,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83])).
% 0.75/0.86  cnf(256,plain,
% 0.75/0.86     (~P16(f11(a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[69,71,162,166,168,190,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127])).
% 0.75/0.86  cnf(258,plain,
% 0.75/0.86     (~P6(f11(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,71,76,162,166,168,190,194,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86])).
% 0.75/0.86  cnf(261,plain,
% 0.75/0.86     (~P12(x2611,a5,x2612)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,190,194,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122])).
% 0.75/0.86  cnf(268,plain,
% 0.75/0.86     (~E(f11(a5),f6(a5))),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,178,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35])).
% 0.75/0.86  cnf(269,plain,
% 0.75/0.86     (~P12(f10(a5),f10(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,178,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143])).
% 0.75/0.86  cnf(271,plain,
% 0.75/0.86     (P10(f11(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,178,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134])).
% 0.75/0.86  cnf(272,plain,
% 0.75/0.86     (~P12(f11(a5),x2721,a4)),
% 0.75/0.86     inference(rename_variables,[],[176])).
% 0.75/0.86  cnf(279,plain,
% 0.75/0.86     (P13(f10(a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131])).
% 0.75/0.86  cnf(281,plain,
% 0.75/0.86     (P12(f6(a5),f10(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135])).
% 0.75/0.86  cnf(283,plain,
% 0.75/0.86     (~P10(f10(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117])).
% 0.75/0.86  cnf(285,plain,
% 0.75/0.86     (~P14(f11(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116])).
% 0.75/0.86  cnf(287,plain,
% 0.75/0.86     (~P16(f10(a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114])).
% 0.75/0.86  cnf(289,plain,
% 0.75/0.86     (~P8(f6(a5),a5)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114,129])).
% 0.75/0.86  cnf(291,plain,
% 0.75/0.86     (P12(f8(f10(a5),f11(a5),a4),f11(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114,129,141])).
% 0.75/0.86  cnf(293,plain,
% 0.75/0.86     (P14(f8(f10(a5),f11(a5),a4),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114,129,141,139])).
% 0.75/0.86  cnf(295,plain,
% 0.75/0.86     (P6(f16(a4,f10(a5),f11(a5)),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114,129,141,139,138])).
% 0.75/0.86  cnf(297,plain,
% 0.75/0.86     (P13(f10(a5),f16(a4,f10(a5),f11(a5)))),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114,129,141,139,138,137])).
% 0.75/0.86  cnf(299,plain,
% 0.75/0.86     (P13(f11(a5),f16(a4,f10(a5),f11(a5)))),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114,129,141,139,138,137,136])).
% 0.75/0.86  cnf(303,plain,
% 0.75/0.86     (P6(f15(f11(a5),a4),a4)),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,196,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114,129,141,139,138,137,136,95,111])).
% 0.75/0.86  cnf(305,plain,
% 0.75/0.86     (P8(f11(a5),f15(f11(a5),a4))),
% 0.75/0.86     inference(scs_inference,[],[69,66,71,76,162,166,168,176,272,178,182,190,192,194,196,188,170,186,150,152,156,180,146,202,124,123,89,88,84,108,106,43,39,130,120,83,104,128,97,87,121,127,86,33,122,58,47,45,40,37,35,143,134,126,142,131,135,117,116,114,129,141,139,138,137,136,95,111,110])).
% 0.75/0.86  cnf(330,plain,
% 0.75/0.86     (P14(f14(a4,a5),f7(f14(a4,a5),a5))),
% 0.75/0.86     inference(scs_inference,[],[240,299,271,285,291,281,188,176,81,34,122,143,126,124,123,84,104])).
% 0.75/0.86  cnf(333,plain,
% 0.75/0.86     (P12(f10(a5),f19(f10(a5),a4),a4)),
% 0.75/0.86     inference(scs_inference,[],[240,299,271,285,291,281,295,258,283,188,176,81,34,122,143,126,124,123,84,104,43,134])).
% 0.75/0.86  cnf(335,plain,
% 0.75/0.86     (~P15(f10(a5),f10(a5))),
% 0.75/0.86     inference(scs_inference,[],[240,299,271,285,291,269,281,295,258,283,188,176,81,34,122,143,126,124,123,84,104,43,134,142])).
% 0.75/0.86  cnf(355,plain,
% 0.75/0.86     (~P3(f16(a4,f10(a5),f11(a5)))),
% 0.75/0.86     inference(scs_inference,[],[64,146,76,164,223,225,240,238,299,305,271,285,289,268,172,291,269,281,295,303,227,229,256,258,279,283,188,190,176,182,150,192,194,170,81,34,122,143,126,124,123,84,104,43,134,142,115,87,130,135,39,129,127,117,116,86])).
% 0.75/0.86  cnf(357,plain,
% 0.75/0.86     (P9(f10(a5),f11(a5))),
% 0.75/0.86     inference(scs_inference,[],[64,146,76,164,223,225,240,238,299,305,271,285,289,268,172,291,269,281,295,303,227,229,256,258,279,283,188,190,176,182,150,192,194,170,81,34,122,143,126,124,123,84,104,43,134,142,115,87,130,135,39,129,127,117,116,86,90])).
% 0.75/0.86  cnf(362,plain,
% 0.75/0.86     (P13(f6(a5),f16(a4,f10(a5),f11(a5)))),
% 0.75/0.86     inference(scs_inference,[],[64,146,76,164,223,225,240,238,299,297,305,271,285,289,268,172,291,269,281,295,303,227,229,256,258,279,283,188,190,176,182,150,192,194,170,81,34,122,143,126,124,123,84,104,43,134,142,115,87,130,135,39,129,127,117,116,86,90,59,52,44,131])).
% 0.75/0.86  cnf(367,plain,
% 0.75/0.86     (P7(f8(f10(a5),f11(a5),a4))),
% 0.75/0.86     inference(scs_inference,[],[64,146,76,164,223,225,240,238,299,297,261,305,271,285,289,268,293,172,291,269,281,295,303,227,229,256,258,279,283,188,190,176,182,186,150,192,194,170,81,34,122,143,126,124,123,84,104,43,134,142,115,87,130,135,39,129,127,117,116,86,90,59,52,44,131,58,35,83])).
% 0.75/0.86  cnf(375,plain,
% 0.75/0.86     (P15(f10(a5),f19(f10(a5),a4))),
% 0.75/0.86     inference(scs_inference,[],[333,357,96,90,122])).
% 0.75/0.86  cnf(389,plain,
% 0.75/0.86     (P12(f6(a5),f11(a5),a4)),
% 0.75/0.86     inference(scs_inference,[],[367,355,287,333,362,244,357,268,299,261,158,176,182,194,188,150,295,162,96,90,122,143,120,77,45,128,126,135])).
% 0.75/0.86  cnf(407,plain,
% 0.75/0.86     (~P6(f11(a5),a2)),
% 0.75/0.86     inference(scs_inference,[],[73,67,146,76,367,355,330,287,333,362,244,357,268,299,261,271,158,176,182,152,156,194,188,150,295,162,96,90,122,143,120,77,45,128,126,135,87,117,123,121,97,127,86,61,132])).
% 0.75/0.86  cnf(431,plain,
% 0.75/0.86     (P6(f11(a5),a3)),
% 0.75/0.86     inference(scs_inference,[],[407,207])).
% 0.75/0.86  cnf(434,plain,
% 0.75/0.86     (~P6(f11(a5),a3)),
% 0.75/0.86     inference(scs_inference,[],[375,389,335,152,156,150,57,133])).
% 0.75/0.86  cnf(486,plain,
% 0.75/0.86     ($false),
% 0.75/0.86     inference(scs_inference,[],[434,431]),
% 0.75/0.86     ['proof']).
% 0.75/0.86  % SZS output end Proof
% 0.75/0.86  % Total time :0.220000s
%------------------------------------------------------------------------------