%------------------------------------------------------------------------------
% File : CSE---1.7
% Problem : CSR032+1 : TPTP v8.2.0. Released v3.4.0.
% Transfm : none
% Format : tptp:raw
% Command : java -jar /export/starexec/sandbox/solver/bin/mcs_scs.jar %d %s
% Computer : n005.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 : Mon Jun 24 05:00:04 EDT 2024
% Result : Theorem 0.56s 0.62s
% Output : CNFRefutation 0.56s
% Verified :
% SZS Type : -
% Comments :
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.07/0.12 % Problem : CSR032+1 : TPTP v8.2.0. Released v3.4.0.
% 0.07/0.12 % Command : java -jar /export/starexec/sandbox/solver/bin/mcs_scs.jar %d %s
% 0.13/0.33 % Computer : n005.cluster.edu
% 0.13/0.33 % Model : x86_64 x86_64
% 0.13/0.33 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.13/0.33 % Memory : 8042.1875MB
% 0.13/0.33 % OS : Linux 3.10.0-693.el7.x86_64
% 0.13/0.33 % CPULimit : 300
% 0.13/0.33 % WCLimit : 300
% 0.13/0.33 % DateTime : Wed Jun 19 22:26:24 EDT 2024
% 0.13/0.33 % CPUTime :
% 0.19/0.56 start to proof:theBenchmark
% 0.53/0.60 %-------------------------------------------
% 0.53/0.60 % File :CSE---1.7
% 0.53/0.60 % Problem :theBenchmark
% 0.53/0.60 % Transform :cnf
% 0.53/0.60 % Format :tptp:raw
% 0.53/0.60 % Command :java -jar mcs_scs.jar %d %s
% 0.53/0.60
% 0.53/0.60 % Result :Theorem 0.000000s
% 0.53/0.60 % Output :CNFRefutation 0.000000s
% 0.53/0.60 %-------------------------------------------
% 0.53/0.61 %------------------------------------------------------------------------------
% 0.53/0.61 % File : CSR032+1 : TPTP v8.2.0. Released v3.4.0.
% 0.53/0.61 % Domain : Common Sense Reasoning
% 0.53/0.61 % Problem : Autogenerated Cyc Problem CSR032+1
% 0.53/0.61 % Version : Especial.
% 0.53/0.61 % English :
% 0.53/0.61
% 0.53/0.61 % Refs : [RS+] Reagan Smith et al., The Cyc TPTP Challenge Problem
% 0.53/0.61 % Source : [RS+]
% 0.53/0.61 % Names :
% 0.53/0.61
% 0.53/0.61 % Status : Theorem
% 0.53/0.61 % Rating : 0.00 v6.1.0, 0.04 v6.0.0, 0.25 v5.5.0, 0.12 v5.4.0, 0.17 v5.3.0, 0.26 v5.2.0, 0.14 v5.0.0, 0.15 v4.1.0, 0.11 v4.0.1, 0.05 v3.7.0, 0.00 v3.4.0
% 0.53/0.61 % Syntax : Number of formulae : 68 ( 14 unt; 0 def)
% 0.53/0.61 % Number of atoms : 135 ( 0 equ)
% 0.53/0.61 % Maximal formula atoms : 3 ( 1 avg)
% 0.53/0.61 % Number of connectives : 68 ( 1 ~; 0 |; 14 &)
% 0.53/0.61 % ( 0 <=>; 53 =>; 0 <=; 0 <~>)
% 0.53/0.61 % Maximal formula depth : 7 ( 4 avg)
% 0.53/0.61 % Maximal term depth : 2 ( 1 avg)
% 0.53/0.61 % Number of predicates : 19 ( 19 usr; 0 prp; 1-3 aty)
% 0.53/0.61 % Number of functors : 16 ( 16 usr; 15 con; 0-2 aty)
% 0.53/0.61 % Number of variables : 108 ( 107 !; 1 ?)
% 0.53/0.61 % SPC : FOF_THM_RFO_NEQ
% 0.53/0.61
% 0.53/0.61 % Comments : Autogenerated from the OpenCyc KB. Documentation can be found at
% 0.53/0.61 % http://opencyc.org/doc/#TPTP_Challenge_Problem_Set
% 0.53/0.61 % : Cyc(R) Knowledge Base Copyright(C) 1995-2007 Cycorp, Inc., Austin,
% 0.53/0.61 % TX, USA. All rights reserved.
% 0.53/0.61 % : OpenCyc Knowledge Base Copyright(C) 2001-2007 Cycorp, Inc.,
% 0.53/0.61 % Austin, TX, USA. All rights reserved.
% 0.53/0.61 %------------------------------------------------------------------------------
% 0.53/0.61 %$problem_series(cyc_scaling_1,[CSR025+1,CSR026+1,CSR027+1,CSR028+1,CSR029+1,CSR030+1,CSR031+1,CSR032+1,CSR033+1,CSR034+1,CSR035+1,CSR036+1,CSR037+1,CSR038+1,CSR039+1,CSR040+1,CSR041+1,CSR042+1,CSR043+1,CSR044+1,CSR045+1,CSR046+1,CSR047+1,CSR048+1,CSR049+1,CSR050+1,CSR051+1,CSR052+1,CSR053+1,CSR054+1,CSR055+1,CSR056+1,CSR057+1,CSR058+1,CSR059+1,CSR060+1,CSR061+1,CSR062+1,CSR063+1,CSR064+1,CSR065+1,CSR066+1,CSR067+1,CSR068+1,CSR069+1,CSR070+1,CSR071+1,CSR072+1,CSR073+1,CSR074+1])
% 0.53/0.61 %$static(cyc_scaling_1,include('Axioms/CSR002+0.ax'))
% 0.53/0.61 %----Empty file include('Axioms/CSR002+0.ax').
% 0.53/0.61 %------------------------------------------------------------------------------
% 0.53/0.61 % Cyc Assertion #426678:
% 0.53/0.61 fof(just1,axiom,
% 0.53/0.61 individual(f_citynamedfn(s_agen,c_france)) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #638580:
% 0.53/0.61 fof(just2,axiom,
% 0.53/0.61 genls(c_trajector_underspecified,c_location_underspecified) ).
% 0.53/0.61
% 0.53/0.61 fof(just3,axiom,
% 0.53/0.61 ! [OBJ] :
% 0.53/0.61 ( trajector_underspecified(OBJ)
% 0.53/0.61 => location_underspecified(OBJ) ) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #753566:
% 0.53/0.61 fof(just4,axiom,
% 0.53/0.61 genls(c_location_underspecified,c_thing) ).
% 0.53/0.61
% 0.53/0.61 fof(just5,axiom,
% 0.53/0.61 ! [OBJ] :
% 0.53/0.61 ( location_underspecified(OBJ)
% 0.53/0.61 => thing(OBJ) ) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #899762:
% 0.53/0.61 fof(just6,axiom,
% 0.53/0.61 genlmt(c_humansociallifemt,c_basekb) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #1322220:
% 0.53/0.61 fof(just7,axiom,
% 0.53/0.61 transitivebinarypredicate(c_genlmt) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #1408590:
% 0.53/0.61 fof(just8,axiom,
% 0.53/0.61 genlmt(c_reasoningaboutpossibleantecedentsmt,c_humansociallifemt) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #1610244:
% 0.53/0.61 fof(just9,axiom,
% 0.53/0.61 genls(c_individual,c_trajector_underspecified) ).
% 0.53/0.61
% 0.53/0.61 fof(just10,axiom,
% 0.53/0.61 ! [OBJ] :
% 0.53/0.61 ( individual(OBJ)
% 0.53/0.61 => trajector_underspecified(OBJ) ) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #1650755:
% 0.53/0.61 fof(just11,axiom,
% 0.53/0.61 genlmt(c_basekb,c_universalvocabularymt) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #398814:
% 0.53/0.61 fof(just12,axiom,
% 0.53/0.61 ! [OBJ,COL1,COL2] :
% 0.53/0.61 ~ ( isa(OBJ,COL1)
% 0.53/0.61 & isa(OBJ,COL2)
% 0.53/0.61 & disjointwith(COL1,COL2) ) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Assertion #831913:
% 0.53/0.61 fof(just13,axiom,
% 0.53/0.61 ! [SPECPRED,PRED,GENLPRED] :
% 0.53/0.61 ( ( genlinverse(SPECPRED,PRED)
% 0.53/0.61 & genlinverse(PRED,GENLPRED) )
% 0.53/0.61 => genlpreds(SPECPRED,GENLPRED) ) ).
% 0.53/0.61
% 0.53/0.61 % Cyc Constant #40273:
% 0.53/0.61 fof(just14,axiom,
% 0.53/0.61 ! [ARG1,INS] :
% 0.53/0.61 ( genlpreds(ARG1,INS)
% 0.53/0.61 => predicate(INS) ) ).
% 0.53/0.61
% 0.53/0.61 fof(just15,axiom,
% 0.53/0.61 ! [ARG1,INS] :
% 0.53/0.61 ( genlpreds(ARG1,INS)
% 0.53/0.61 => predicate(INS) ) ).
% 0.53/0.61
% 0.53/0.61 fof(just16,axiom,
% 0.53/0.61 ! [INS,ARG2] :
% 0.53/0.61 ( genlpreds(INS,ARG2)
% 0.53/0.61 => predicate(INS) ) ).
% 0.53/0.61
% 0.53/0.61 fof(just17,axiom,
% 0.53/0.61 ! [INS,ARG2] :
% 0.53/0.61 ( genlpreds(INS,ARG2)
% 0.53/0.61 => predicate(INS) ) ).
% 0.53/0.61
% 0.53/0.61 fof(just18,axiom,
% 0.53/0.61 ! [X,Y,Z] :
% 0.53/0.61 ( ( genlpreds(X,Y)
% 0.53/0.61 & genlpreds(Y,Z) )
% 0.53/0.61 => genlpreds(X,Z) ) ).
% 0.53/0.61
% 0.53/0.61 fof(just19,axiom,
% 0.53/0.61 ! [X] :
% 0.53/0.61 ( predicate(X)
% 0.56/0.61 => genlpreds(X,X) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just20,axiom,
% 0.56/0.61 ! [X] :
% 0.56/0.61 ( predicate(X)
% 0.56/0.61 => genlpreds(X,X) ) ).
% 0.56/0.61
% 0.56/0.61 % Cyc Constant #45259:
% 0.56/0.61 fof(just21,axiom,
% 0.56/0.61 ! [ARG1,INS] :
% 0.56/0.61 ( genlinverse(ARG1,INS)
% 0.56/0.61 => binarypredicate(INS) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just22,axiom,
% 0.56/0.61 ! [INS,ARG2] :
% 0.56/0.61 ( genlinverse(INS,ARG2)
% 0.56/0.61 => binarypredicate(INS) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just23,axiom,
% 0.56/0.61 ! [OLD,ARG2,NEW] :
% 0.56/0.61 ( ( genlinverse(OLD,ARG2)
% 0.56/0.61 & genlpreds(NEW,OLD) )
% 0.56/0.61 => genlinverse(NEW,ARG2) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just24,axiom,
% 0.56/0.61 ! [ARG1,OLD,NEW] :
% 0.56/0.61 ( ( genlinverse(ARG1,OLD)
% 0.56/0.61 & genlpreds(OLD,NEW) )
% 0.56/0.61 => genlinverse(ARG1,NEW) ) ).
% 0.56/0.61
% 0.56/0.61 % Cyc Constant #78648:
% 0.56/0.61 fof(just25,axiom,
% 0.56/0.61 ! [ARG1,INS] :
% 0.56/0.61 ( disjointwith(ARG1,INS)
% 0.56/0.61 => collection(INS) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just26,axiom,
% 0.56/0.61 ! [INS,ARG2] :
% 0.56/0.61 ( disjointwith(INS,ARG2)
% 0.56/0.61 => collection(INS) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just27,axiom,
% 0.56/0.61 ! [X,Y] :
% 0.56/0.61 ( disjointwith(X,Y)
% 0.56/0.61 => disjointwith(Y,X) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just28,axiom,
% 0.56/0.61 ! [ARG1,OLD,NEW] :
% 0.56/0.61 ( ( disjointwith(ARG1,OLD)
% 0.56/0.61 & genls(NEW,OLD) )
% 0.56/0.61 => disjointwith(ARG1,NEW) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just29,axiom,
% 0.56/0.61 ! [OLD,ARG2,NEW] :
% 0.56/0.61 ( ( disjointwith(OLD,ARG2)
% 0.56/0.61 & genls(NEW,OLD) )
% 0.56/0.61 => disjointwith(NEW,ARG2) ) ).
% 0.56/0.61
% 0.56/0.61 % Cyc Constant #127156:
% 0.56/0.61 fof(just30,axiom,
% 0.56/0.61 ! [X] :
% 0.56/0.61 ( isa(X,c_transitivebinarypredicate)
% 0.56/0.61 => transitivebinarypredicate(X) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just31,axiom,
% 0.56/0.61 ! [X] :
% 0.56/0.61 ( transitivebinarypredicate(X)
% 0.56/0.61 => isa(X,c_transitivebinarypredicate) ) ).
% 0.56/0.61
% 0.56/0.61 % Cyc Constant #27757:
% 0.56/0.61 fof(just32,axiom,
% 0.56/0.61 mtvisible(c_basekb) ).
% 0.56/0.61
% 0.56/0.61 % Cyc Constant #19550:
% 0.56/0.61 fof(just33,axiom,
% 0.56/0.61 ! [SPECMT,GENLMT] :
% 0.56/0.61 ( ( mtvisible(SPECMT)
% 0.56/0.61 & genlmt(SPECMT,GENLMT) )
% 0.56/0.61 => mtvisible(GENLMT) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just34,axiom,
% 0.56/0.61 ! [ARG1,INS] :
% 0.56/0.61 ( genlmt(ARG1,INS)
% 0.56/0.61 => microtheory(INS) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just35,axiom,
% 0.56/0.61 ! [ARG1,INS] :
% 0.56/0.61 ( genlmt(ARG1,INS)
% 0.56/0.61 => microtheory(INS) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just36,axiom,
% 0.56/0.61 ! [INS,ARG2] :
% 0.56/0.61 ( genlmt(INS,ARG2)
% 0.56/0.61 => microtheory(INS) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just37,axiom,
% 0.56/0.61 ! [INS,ARG2] :
% 0.56/0.61 ( genlmt(INS,ARG2)
% 0.56/0.61 => microtheory(INS) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just38,axiom,
% 0.56/0.61 ! [X,Y,Z] :
% 0.56/0.61 ( ( genlmt(X,Y)
% 0.56/0.61 & genlmt(Y,Z) )
% 0.56/0.61 => genlmt(X,Z) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just39,axiom,
% 0.56/0.61 ! [X] :
% 0.56/0.61 ( microtheory(X)
% 0.56/0.61 => genlmt(X,X) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just40,axiom,
% 0.56/0.61 ! [X] :
% 0.56/0.61 ( microtheory(X)
% 0.56/0.61 => genlmt(X,X) ) ).
% 0.56/0.61
% 0.56/0.61 % Cyc Constant #48859:
% 0.56/0.61 fof(just41,axiom,
% 0.56/0.61 ! [X] :
% 0.56/0.61 ( isa(X,c_thing)
% 0.56/0.61 => thing(X) ) ).
% 0.56/0.61
% 0.56/0.61 fof(just42,axiom,
% 0.56/0.61 ! [X] :
% 0.56/0.61 ( thing(X)
% 0.56/0.61 => isa(X,c_thing) ) ).
% 0.56/0.61
% 0.56/0.61 % Cyc Constant #14857:
% 0.56/0.61 fof(just43,axiom,
% 0.56/0.62 ! [X] :
% 0.56/0.62 ( isa(X,c_location_underspecified)
% 0.56/0.62 => location_underspecified(X) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just44,axiom,
% 0.56/0.62 ! [X] :
% 0.56/0.62 ( location_underspecified(X)
% 0.56/0.62 => isa(X,c_location_underspecified) ) ).
% 0.56/0.62
% 0.56/0.62 % Cyc Constant #24658:
% 0.56/0.62 fof(just45,axiom,
% 0.56/0.62 ! [X] :
% 0.56/0.62 ( isa(X,c_trajector_underspecified)
% 0.56/0.62 => trajector_underspecified(X) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just46,axiom,
% 0.56/0.62 ! [X] :
% 0.56/0.62 ( trajector_underspecified(X)
% 0.56/0.62 => isa(X,c_trajector_underspecified) ) ).
% 0.56/0.62
% 0.56/0.62 % Cyc Constant #0:
% 0.56/0.62 fof(just47,axiom,
% 0.56/0.62 ! [ARG1,INS] :
% 0.56/0.62 ( genls(ARG1,INS)
% 0.56/0.62 => collection(INS) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just48,axiom,
% 0.56/0.62 ! [ARG1,INS] :
% 0.56/0.62 ( genls(ARG1,INS)
% 0.56/0.62 => collection(INS) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just49,axiom,
% 0.56/0.62 ! [INS,ARG2] :
% 0.56/0.62 ( genls(INS,ARG2)
% 0.56/0.62 => collection(INS) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just50,axiom,
% 0.56/0.62 ! [INS,ARG2] :
% 0.56/0.62 ( genls(INS,ARG2)
% 0.56/0.62 => collection(INS) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just51,axiom,
% 0.56/0.62 ! [X,Y,Z] :
% 0.56/0.62 ( ( genls(X,Y)
% 0.56/0.62 & genls(Y,Z) )
% 0.56/0.62 => genls(X,Z) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just52,axiom,
% 0.56/0.62 ! [X] :
% 0.56/0.62 ( collection(X)
% 0.56/0.62 => genls(X,X) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just53,axiom,
% 0.56/0.62 ! [X] :
% 0.56/0.62 ( collection(X)
% 0.56/0.62 => genls(X,X) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just54,axiom,
% 0.56/0.62 ! [OLD,ARG2,NEW] :
% 0.56/0.62 ( ( genls(OLD,ARG2)
% 0.56/0.62 & genls(NEW,OLD) )
% 0.56/0.62 => genls(NEW,ARG2) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just55,axiom,
% 0.56/0.62 ! [ARG1,OLD,NEW] :
% 0.56/0.62 ( ( genls(ARG1,OLD)
% 0.56/0.62 & genls(OLD,NEW) )
% 0.56/0.62 => genls(ARG1,NEW) ) ).
% 0.56/0.62
% 0.56/0.62 % Cyc Constant #113597:
% 0.56/0.62 fof(just56,axiom,
% 0.56/0.62 ! [X] :
% 0.56/0.62 ( isa(X,c_individual)
% 0.56/0.62 => individual(X) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just57,axiom,
% 0.56/0.62 ! [X] :
% 0.56/0.62 ( individual(X)
% 0.56/0.62 => isa(X,c_individual) ) ).
% 0.56/0.62
% 0.56/0.62 % Cyc Constant #97068:
% 0.56/0.62 fof(just58,axiom,
% 0.56/0.62 ! [ARG1,ARG2] : natfunction(f_citynamedfn(ARG1,ARG2),c_citynamedfn) ).
% 0.56/0.62
% 0.56/0.62 fof(just59,axiom,
% 0.56/0.62 ! [ARG1,ARG2] : natargument(f_citynamedfn(ARG1,ARG2),n_1,ARG1) ).
% 0.56/0.62
% 0.56/0.62 fof(just60,axiom,
% 0.56/0.62 ! [ARG1,ARG2] : natargument(f_citynamedfn(ARG1,ARG2),n_2,ARG2) ).
% 0.56/0.62
% 0.56/0.62 fof(just61,axiom,
% 0.56/0.62 ! [ARG1,ARG2] : city(f_citynamedfn(ARG1,ARG2)) ).
% 0.56/0.62
% 0.56/0.62 % Cyc Constant #72115:
% 0.56/0.62 fof(just62,axiom,
% 0.56/0.62 ! [ARG1,INS] :
% 0.56/0.62 ( isa(ARG1,INS)
% 0.56/0.62 => collection(INS) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just63,axiom,
% 0.56/0.62 ! [ARG1,INS] :
% 0.56/0.62 ( isa(ARG1,INS)
% 0.56/0.62 => collection(INS) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just64,axiom,
% 0.56/0.62 ! [INS,ARG2] :
% 0.56/0.62 ( isa(INS,ARG2)
% 0.56/0.62 => thing(INS) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just65,axiom,
% 0.56/0.62 ! [INS,ARG2] :
% 0.56/0.62 ( isa(INS,ARG2)
% 0.56/0.62 => thing(INS) ) ).
% 0.56/0.62
% 0.56/0.62 fof(just66,axiom,
% 0.56/0.62 ! [ARG1,OLD,NEW] :
% 0.56/0.62 ( ( isa(ARG1,OLD)
% 0.56/0.62 & genls(OLD,NEW) )
% 0.56/0.62 => isa(ARG1,NEW) ) ).
% 0.56/0.62
% 0.56/0.62 % Cyc Constant #95028:
% 0.56/0.62 fof(just67,axiom,
% 0.56/0.62 mtvisible(c_universalvocabularymt) ).
% 0.56/0.62
% 0.56/0.62 fof(query32,conjecture,
% 0.56/0.62 ? [COL] :
% 0.56/0.62 ( mtvisible(c_reasoningaboutpossibleantecedentsmt)
% 0.56/0.62 => isa(f_citynamedfn(s_agen,c_france),COL) ) ).
% 0.56/0.62
% 0.56/0.62 %------------------------------------------------------------------------------
% 0.56/0.62 %-------------------------------------------
% 0.56/0.62 % Proof found
% 0.56/0.62 % SZS status Theorem for theBenchmark
% 0.56/0.62 % SZS output start Proof
% 0.56/0.62 %ClaNum:69(EqnAxiom:0)
% 0.56/0.62 %VarNum:148(SingletonVarNum:82)
% 0.56/0.62 %MaxLitNum:3
% 0.56/0.62 %MaxfuncDepth:1
% 0.56/0.62 %SharedTerms:27
% 0.56/0.62 %goalClause: 3 16
% 0.56/0.62 %singleGoalClaCount:2
% 0.56/0.62 [1]P1(a1)
% 0.56/0.62 [2]P2(a2)
% 0.56/0.62 [3]P2(a5)
% 0.56/0.62 [4]P2(a9)
% 0.56/0.62 [5]P3(a10,a6)
% 0.56/0.62 [6]P3(a6,a11)
% 0.56/0.62 [7]P3(a7,a10)
% 0.56/0.62 [8]P4(a8,a2)
% 0.56/0.62 [9]P4(a2,a9)
% 0.56/0.62 [10]P4(a5,a8)
% 0.56/0.62 [11]P11(f14(a13,a3))
% 0.56/0.62 [16]~P12(f14(a13,a3),x161)
% 0.56/0.62 [12]P5(f14(x121,x122))
% 0.56/0.62 [13]P15(f14(x131,x132),a4)
% 0.56/0.62 [14]P16(f14(x141,x142),a15,x141)
% 0.56/0.62 [15]P16(f14(x151,x152),a16,x152)
% 0.56/0.62 [17]~P11(x171)+P17(x171)
% 0.56/0.62 [18]~P17(x181)+P13(x181)
% 0.56/0.62 [19]~P13(x191)+P18(x191)
% 0.56/0.62 [20]~P17(x201)+P12(x201,a10)
% 0.56/0.62 [21]~P13(x211)+P12(x211,a6)
% 0.56/0.62 [22]~P18(x221)+P12(x221,a11)
% 0.56/0.62 [23]~P11(x231)+P12(x231,a7)
% 0.56/0.62 [24]~P1(x241)+P12(x241,a12)
% 0.56/0.62 [26]~P7(x261)+P3(x261,x261)
% 0.56/0.62 [28]~P14(x281)+P4(x281,x281)
% 0.56/0.62 [30]~P19(x301)+P10(x301,x301)
% 0.56/0.62 [31]P11(x311)+~P12(x311,a7)
% 0.56/0.62 [32]P17(x321)+~P12(x321,a10)
% 0.56/0.62 [33]P13(x331)+~P12(x331,a6)
% 0.56/0.62 [35]P1(x351)+~P12(x351,a12)
% 0.56/0.62 [37]P18(x371)+~P12(x371,x372)
% 0.56/0.62 [39]P19(x391)+~P10(x392,x391)
% 0.56/0.62 [41]P19(x411)+~P10(x411,x412)
% 0.56/0.62 [42]P6(x421)+~P8(x422,x421)
% 0.56/0.62 [43]P6(x431)+~P8(x431,x432)
% 0.56/0.62 [45]P7(x451)+~P3(x452,x451)
% 0.56/0.62 [47]P7(x471)+~P12(x472,x471)
% 0.56/0.62 [48]P7(x481)+~P9(x482,x481)
% 0.56/0.62 [50]P7(x501)+~P3(x501,x502)
% 0.56/0.62 [51]P7(x511)+~P9(x511,x512)
% 0.56/0.62 [53]P14(x531)+~P4(x532,x531)
% 0.56/0.62 [55]P14(x551)+~P4(x551,x552)
% 0.56/0.62 [57]~P9(x572,x571)+P9(x571,x572)
% 0.56/0.62 [56]~P4(x562,x561)+P2(x561)+~P2(x562)
% 0.56/0.62 [60]~P3(x601,x603)+P3(x601,x602)+~P3(x603,x602)
% 0.56/0.62 [61]~P4(x611,x613)+P4(x611,x612)+~P4(x613,x612)
% 0.56/0.62 [62]~P12(x621,x623)+P12(x621,x622)+~P3(x623,x622)
% 0.56/0.62 [63]~P9(x633,x632)+P9(x631,x632)+~P3(x631,x633)
% 0.56/0.62 [64]~P9(x641,x643)+P9(x641,x642)+~P3(x642,x643)
% 0.56/0.62 [65]~P10(x651,x653)+P8(x651,x652)+~P8(x653,x652)
% 0.56/0.62 [66]~P10(x663,x662)+P8(x661,x662)+~P8(x661,x663)
% 0.56/0.62 [67]~P8(x671,x673)+P10(x671,x672)+~P8(x673,x672)
% 0.56/0.62 [68]~P10(x681,x683)+P10(x681,x682)+~P10(x683,x682)
% 0.56/0.62 [69]~P9(x693,x692)+~P12(x691,x692)+~P12(x691,x693)
% 0.56/0.62 %EqnAxiom
% 0.56/0.62
% 0.56/0.62 %-------------------------------------------
% 0.56/0.62 cnf(70,plain,
% 0.56/0.62 ($false),
% 0.56/0.62 inference(scs_inference,[],[11,16,23]),
% 0.56/0.62 ['proof']).
% 0.56/0.62 % SZS output end Proof
% 0.56/0.62 % Total time :0.000000s
%------------------------------------------------------------------------------