%------------------------------------------------------------------------------
% File : LEO-II---2.3.1
% Problem : CSR032+1 : TPTP v9.3.1. Released v3.4.0.
% Transfm : none
% Format : tptp:raw
% Command : leo --cores 7 --timeout 300 --proofoutput 1 --foatp e --atp e=/export/starexec/sandbox2/solver/bin/eprover /export/starexec/sandbox2/benchmark/theBenchmark.p
% Computer : n014.cluster.edu
% Model : x86_64 x86_64
% CPU : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory : 8046.5625MB
% OS : Linux 6.8.0-71-generic
% CPULimit : 300s
% WCLimit : 300s
% DateTime : Wed Oct 7 10:13:19 AM UTC 2026
% Result : Theorem 0.25s 0.36s
% Output : CNFRefutation 0.25s
% Verified :
% SZS Type : Refutation
% Derivation depth : 17
% Number of leaves : 26
% Syntax : Number of formulae : 190 ( 125 unt; 0 typ; 0 def)
% Number of atoms : 824 ( 220 equ; 0 cnn)
% Maximal formula atoms : 3 ( 4 avg)
% Number of connectives : 1057 ( 173 ~; 129 |; 12 &; 690 @)
% ( 0 <=>; 53 =>; 0 <=; 0 <~>)
% Maximal formula depth : 9 ( 3 avg)
% Number of types : 2 ( 0 usr)
% Number of type conns : 0 ( 0 >; 0 *; 0 +; 0 <<)
% Number of symbols : 38 ( 35 usr; 17 con; 0-3 aty)
% Number of variables : 296 ( 0 ^; 291 !; 5 ?; 296 :)
% Comments :
%------------------------------------------------------------------------------
thf(tp_binarypredicate,type,
binarypredicate: $i > $o ).
thf(tp_c_basekb,type,
c_basekb: $i ).
thf(tp_c_citynamedfn,type,
c_citynamedfn: $i ).
thf(tp_c_france,type,
c_france: $i ).
thf(tp_c_genlmt,type,
c_genlmt: $i ).
thf(tp_c_humansociallifemt,type,
c_humansociallifemt: $i ).
thf(tp_c_individual,type,
c_individual: $i ).
thf(tp_c_location_underspecified,type,
c_location_underspecified: $i ).
thf(tp_c_reasoningaboutpossibleantecedentsmt,type,
c_reasoningaboutpossibleantecedentsmt: $i ).
thf(tp_c_thing,type,
c_thing: $i ).
thf(tp_c_trajector_underspecified,type,
c_trajector_underspecified: $i ).
thf(tp_c_transitivebinarypredicate,type,
c_transitivebinarypredicate: $i ).
thf(tp_c_universalvocabularymt,type,
c_universalvocabularymt: $i ).
thf(tp_city,type,
city: $i > $o ).
thf(tp_collection,type,
collection: $i > $o ).
thf(tp_disjointwith,type,
disjointwith: $i > $i > $o ).
thf(tp_f_citynamedfn,type,
f_citynamedfn: $i > $i > $i ).
thf(tp_genlinverse,type,
genlinverse: $i > $i > $o ).
thf(tp_genlmt,type,
genlmt: $i > $i > $o ).
thf(tp_genlpreds,type,
genlpreds: $i > $i > $o ).
thf(tp_genls,type,
genls: $i > $i > $o ).
thf(tp_individual,type,
individual: $i > $o ).
thf(tp_isa,type,
isa: $i > $i > $o ).
thf(tp_location_underspecified,type,
location_underspecified: $i > $o ).
thf(tp_microtheory,type,
microtheory: $i > $o ).
thf(tp_mtvisible,type,
mtvisible: $i > $o ).
thf(tp_n_1,type,
n_1: $i ).
thf(tp_n_2,type,
n_2: $i ).
thf(tp_natargument,type,
natargument: $i > $i > $i > $o ).
thf(tp_natfunction,type,
natfunction: $i > $i > $o ).
thf(tp_predicate,type,
predicate: $i > $o ).
thf(tp_s_agen,type,
s_agen: $i ).
thf(tp_thing,type,
thing: $i > $o ).
thf(tp_trajector_underspecified,type,
trajector_underspecified: $i > $o ).
thf(tp_transitivebinarypredicate,type,
transitivebinarypredicate: $i > $o ).
thf(1,axiom,
mtvisible @ c_universalvocabularymt,
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just67) ).
thf(2,axiom,
! [ARG1: $i,OLD: $i,NEW: $i] :
( ( ( isa @ ARG1 @ OLD )
& ( genls @ OLD @ NEW ) )
=> ( isa @ ARG1 @ NEW ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just66) ).
thf(3,axiom,
! [INS: $i,ARG2: $i] :
( ( isa @ INS @ ARG2 )
=> ( thing @ INS ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just65) ).
thf(4,axiom,
! [INS: $i,ARG2: $i] :
( ( isa @ INS @ ARG2 )
=> ( thing @ INS ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just64) ).
thf(5,axiom,
! [ARG1: $i,INS: $i] :
( ( isa @ ARG1 @ INS )
=> ( collection @ INS ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just63) ).
thf(6,axiom,
! [ARG1: $i,INS: $i] :
( ( isa @ ARG1 @ INS )
=> ( collection @ INS ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just62) ).
thf(7,axiom,
! [ARG1: $i,ARG2: $i] : ( city @ ( f_citynamedfn @ ARG1 @ ARG2 ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just61) ).
thf(8,axiom,
! [ARG1: $i,ARG2: $i] : ( natargument @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ n_2 @ ARG2 ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just60) ).
thf(9,axiom,
! [ARG1: $i,ARG2: $i] : ( natargument @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ n_1 @ ARG1 ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just59) ).
thf(10,axiom,
! [ARG1: $i,ARG2: $i] : ( natfunction @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ c_citynamedfn ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just58) ).
thf(11,axiom,
! [X: $i] :
( ( individual @ X )
=> ( isa @ X @ c_individual ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just57) ).
thf(12,axiom,
! [X: $i] :
( ( isa @ X @ c_individual )
=> ( individual @ X ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just56) ).
thf(22,axiom,
! [X: $i] :
( ( trajector_underspecified @ X )
=> ( isa @ X @ c_trajector_underspecified ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just46) ).
thf(23,axiom,
! [X: $i] :
( ( isa @ X @ c_trajector_underspecified )
=> ( trajector_underspecified @ X ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just45) ).
thf(24,axiom,
! [X: $i] :
( ( location_underspecified @ X )
=> ( isa @ X @ c_location_underspecified ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just44) ).
thf(25,axiom,
! [X: $i] :
( ( isa @ X @ c_location_underspecified )
=> ( location_underspecified @ X ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just43) ).
thf(26,axiom,
! [X: $i] :
( ( thing @ X )
=> ( isa @ X @ c_thing ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just42) ).
thf(27,axiom,
! [X: $i] :
( ( isa @ X @ c_thing )
=> ( thing @ X ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just41) ).
thf(35,axiom,
! [SPECMT: $i,GENLMT: $i] :
( ( ( mtvisible @ SPECMT )
& ( genlmt @ SPECMT @ GENLMT ) )
=> ( mtvisible @ GENLMT ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just33) ).
thf(36,axiom,
mtvisible @ c_basekb,
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just32) ).
thf(37,axiom,
! [X: $i] :
( ( transitivebinarypredicate @ X )
=> ( isa @ X @ c_transitivebinarypredicate ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just31) ).
thf(38,axiom,
! [X: $i] :
( ( isa @ X @ c_transitivebinarypredicate )
=> ( transitivebinarypredicate @ X ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just30) ).
thf(56,axiom,
! [OBJ: $i,COL1: $i,COL2: $i] :
~ ( ( isa @ OBJ @ COL1 )
& ( isa @ OBJ @ COL2 )
& ( disjointwith @ COL1 @ COL2 ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just12) ).
thf(60,axiom,
genlmt @ c_reasoningaboutpossibleantecedentsmt @ c_humansociallifemt,
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just8) ).
thf(67,axiom,
individual @ ( f_citynamedfn @ s_agen @ c_france ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just1) ).
thf(68,conjecture,
? [COL: $i] :
( ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
=> ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ COL ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',query32) ).
thf(69,negated_conjecture,
( ( ? [COL: $i] :
( ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
=> ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ COL ) ) )
= $false ),
inference(negate_conjecture,[status(cth)],[68]) ).
thf(70,plain,
( ( ? [COL: $i] :
( ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
=> ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ COL ) ) )
= $false ),
inference(unfold_def,[status(thm)],[69]) ).
thf(71,plain,
( ( mtvisible @ c_universalvocabularymt )
= $true ),
inference(unfold_def,[status(thm)],[1]) ).
thf(72,plain,
( ( ! [ARG1: $i,OLD: $i,NEW: $i] :
( ( ( isa @ ARG1 @ OLD )
& ( genls @ OLD @ NEW ) )
=> ( isa @ ARG1 @ NEW ) ) )
= $true ),
inference(unfold_def,[status(thm)],[2]) ).
thf(73,plain,
( ( ! [INS: $i,ARG2: $i] :
( ( isa @ INS @ ARG2 )
=> ( thing @ INS ) ) )
= $true ),
inference(unfold_def,[status(thm)],[3]) ).
thf(74,plain,
( ( ! [INS: $i,ARG2: $i] :
( ( isa @ INS @ ARG2 )
=> ( thing @ INS ) ) )
= $true ),
inference(unfold_def,[status(thm)],[4]) ).
thf(75,plain,
( ( ! [ARG1: $i,INS: $i] :
( ( isa @ ARG1 @ INS )
=> ( collection @ INS ) ) )
= $true ),
inference(unfold_def,[status(thm)],[5]) ).
thf(76,plain,
( ( ! [ARG1: $i,INS: $i] :
( ( isa @ ARG1 @ INS )
=> ( collection @ INS ) ) )
= $true ),
inference(unfold_def,[status(thm)],[6]) ).
thf(77,plain,
( ( ! [ARG1: $i,ARG2: $i] : ( city @ ( f_citynamedfn @ ARG1 @ ARG2 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[7]) ).
thf(78,plain,
( ( ! [ARG1: $i,ARG2: $i] : ( natargument @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ n_2 @ ARG2 ) )
= $true ),
inference(unfold_def,[status(thm)],[8]) ).
thf(79,plain,
( ( ! [ARG1: $i,ARG2: $i] : ( natargument @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ n_1 @ ARG1 ) )
= $true ),
inference(unfold_def,[status(thm)],[9]) ).
thf(80,plain,
( ( ! [ARG1: $i,ARG2: $i] : ( natfunction @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ c_citynamedfn ) )
= $true ),
inference(unfold_def,[status(thm)],[10]) ).
thf(81,plain,
( ( ! [X: $i] :
( ( individual @ X )
=> ( isa @ X @ c_individual ) ) )
= $true ),
inference(unfold_def,[status(thm)],[11]) ).
thf(82,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_individual )
=> ( individual @ X ) ) )
= $true ),
inference(unfold_def,[status(thm)],[12]) ).
thf(83,plain,
( ( ! [X: $i] :
( ( trajector_underspecified @ X )
=> ( isa @ X @ c_trajector_underspecified ) ) )
= $true ),
inference(unfold_def,[status(thm)],[22]) ).
thf(84,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_trajector_underspecified )
=> ( trajector_underspecified @ X ) ) )
= $true ),
inference(unfold_def,[status(thm)],[23]) ).
thf(85,plain,
( ( ! [X: $i] :
( ( location_underspecified @ X )
=> ( isa @ X @ c_location_underspecified ) ) )
= $true ),
inference(unfold_def,[status(thm)],[24]) ).
thf(86,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_location_underspecified )
=> ( location_underspecified @ X ) ) )
= $true ),
inference(unfold_def,[status(thm)],[25]) ).
thf(87,plain,
( ( ! [X: $i] :
( ( thing @ X )
=> ( isa @ X @ c_thing ) ) )
= $true ),
inference(unfold_def,[status(thm)],[26]) ).
thf(88,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_thing )
=> ( thing @ X ) ) )
= $true ),
inference(unfold_def,[status(thm)],[27]) ).
thf(89,plain,
( ( ! [SPECMT: $i,GENLMT: $i] :
( ( ( mtvisible @ SPECMT )
& ( genlmt @ SPECMT @ GENLMT ) )
=> ( mtvisible @ GENLMT ) ) )
= $true ),
inference(unfold_def,[status(thm)],[35]) ).
thf(90,plain,
( ( mtvisible @ c_basekb )
= $true ),
inference(unfold_def,[status(thm)],[36]) ).
thf(91,plain,
( ( ! [X: $i] :
( ( transitivebinarypredicate @ X )
=> ( isa @ X @ c_transitivebinarypredicate ) ) )
= $true ),
inference(unfold_def,[status(thm)],[37]) ).
thf(92,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_transitivebinarypredicate )
=> ( transitivebinarypredicate @ X ) ) )
= $true ),
inference(unfold_def,[status(thm)],[38]) ).
thf(93,plain,
( ( ! [OBJ: $i,COL1: $i,COL2: $i] :
~ ( ( isa @ OBJ @ COL1 )
& ( isa @ OBJ @ COL2 )
& ( disjointwith @ COL1 @ COL2 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[56]) ).
thf(94,plain,
( ( genlmt @ c_reasoningaboutpossibleantecedentsmt @ c_humansociallifemt )
= $true ),
inference(unfold_def,[status(thm)],[60]) ).
thf(95,plain,
( ( individual @ ( f_citynamedfn @ s_agen @ c_france ) )
= $true ),
inference(unfold_def,[status(thm)],[67]) ).
thf(96,plain,
( ( ~ ? [COL: $i] :
( ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
=> ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ COL ) ) )
= $true ),
inference(polarity_switch,[status(thm)],[70]) ).
thf(97,plain,
( ( individual @ ( f_citynamedfn @ s_agen @ c_france ) )
= $true ),
inference(copy,[status(thm)],[95]) ).
thf(98,plain,
( ( genlmt @ c_reasoningaboutpossibleantecedentsmt @ c_humansociallifemt )
= $true ),
inference(copy,[status(thm)],[94]) ).
thf(99,plain,
( ( ! [OBJ: $i,COL1: $i,COL2: $i] :
~ ( ( isa @ OBJ @ COL1 )
& ( isa @ OBJ @ COL2 )
& ( disjointwith @ COL1 @ COL2 ) ) )
= $true ),
inference(copy,[status(thm)],[93]) ).
thf(100,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_transitivebinarypredicate )
=> ( transitivebinarypredicate @ X ) ) )
= $true ),
inference(copy,[status(thm)],[92]) ).
thf(101,plain,
( ( ! [X: $i] :
( ( transitivebinarypredicate @ X )
=> ( isa @ X @ c_transitivebinarypredicate ) ) )
= $true ),
inference(copy,[status(thm)],[91]) ).
thf(102,plain,
( ( mtvisible @ c_basekb )
= $true ),
inference(copy,[status(thm)],[90]) ).
thf(103,plain,
( ( ! [SPECMT: $i,GENLMT: $i] :
( ( ( mtvisible @ SPECMT )
& ( genlmt @ SPECMT @ GENLMT ) )
=> ( mtvisible @ GENLMT ) ) )
= $true ),
inference(copy,[status(thm)],[89]) ).
thf(104,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_thing )
=> ( thing @ X ) ) )
= $true ),
inference(copy,[status(thm)],[88]) ).
thf(105,plain,
( ( ! [X: $i] :
( ( thing @ X )
=> ( isa @ X @ c_thing ) ) )
= $true ),
inference(copy,[status(thm)],[87]) ).
thf(106,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_location_underspecified )
=> ( location_underspecified @ X ) ) )
= $true ),
inference(copy,[status(thm)],[86]) ).
thf(107,plain,
( ( ! [X: $i] :
( ( location_underspecified @ X )
=> ( isa @ X @ c_location_underspecified ) ) )
= $true ),
inference(copy,[status(thm)],[85]) ).
thf(108,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_trajector_underspecified )
=> ( trajector_underspecified @ X ) ) )
= $true ),
inference(copy,[status(thm)],[84]) ).
thf(109,plain,
( ( ! [X: $i] :
( ( trajector_underspecified @ X )
=> ( isa @ X @ c_trajector_underspecified ) ) )
= $true ),
inference(copy,[status(thm)],[83]) ).
thf(110,plain,
( ( ! [X: $i] :
( ( isa @ X @ c_individual )
=> ( individual @ X ) ) )
= $true ),
inference(copy,[status(thm)],[82]) ).
thf(111,plain,
( ( ! [X: $i] :
( ( individual @ X )
=> ( isa @ X @ c_individual ) ) )
= $true ),
inference(copy,[status(thm)],[81]) ).
thf(112,plain,
( ( ! [ARG1: $i,ARG2: $i] : ( natfunction @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ c_citynamedfn ) )
= $true ),
inference(copy,[status(thm)],[80]) ).
thf(113,plain,
( ( ! [ARG1: $i,ARG2: $i] : ( natargument @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ n_1 @ ARG1 ) )
= $true ),
inference(copy,[status(thm)],[79]) ).
thf(114,plain,
( ( ! [ARG1: $i,ARG2: $i] : ( natargument @ ( f_citynamedfn @ ARG1 @ ARG2 ) @ n_2 @ ARG2 ) )
= $true ),
inference(copy,[status(thm)],[78]) ).
thf(115,plain,
( ( ! [ARG1: $i,ARG2: $i] : ( city @ ( f_citynamedfn @ ARG1 @ ARG2 ) ) )
= $true ),
inference(copy,[status(thm)],[77]) ).
thf(116,plain,
( ( ! [ARG1: $i,INS: $i] :
( ( isa @ ARG1 @ INS )
=> ( collection @ INS ) ) )
= $true ),
inference(copy,[status(thm)],[76]) ).
thf(117,plain,
( ( ! [ARG1: $i,INS: $i] :
( ( isa @ ARG1 @ INS )
=> ( collection @ INS ) ) )
= $true ),
inference(copy,[status(thm)],[75]) ).
thf(118,plain,
( ( ! [INS: $i,ARG2: $i] :
( ( isa @ INS @ ARG2 )
=> ( thing @ INS ) ) )
= $true ),
inference(copy,[status(thm)],[74]) ).
thf(119,plain,
( ( ! [INS: $i,ARG2: $i] :
( ( isa @ INS @ ARG2 )
=> ( thing @ INS ) ) )
= $true ),
inference(copy,[status(thm)],[73]) ).
thf(120,plain,
( ( ! [ARG1: $i,OLD: $i,NEW: $i] :
( ( ( isa @ ARG1 @ OLD )
& ( genls @ OLD @ NEW ) )
=> ( isa @ ARG1 @ NEW ) ) )
= $true ),
inference(copy,[status(thm)],[72]) ).
thf(121,plain,
( ( mtvisible @ c_universalvocabularymt )
= $true ),
inference(copy,[status(thm)],[71]) ).
thf(122,plain,
( ( ~ ? [COL: $i] :
( ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
=> ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ COL ) ) )
= $true ),
inference(copy,[status(thm)],[96]) ).
thf(123,plain,
( ( ! [SX0: $i,SX1: $i] :
( ~ ( isa @ SX0 @ SX1 )
| ( thing @ SX0 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[119]) ).
thf(124,plain,
( ( ! [SX0: $i,SX1: $i,SX2: $i] :
~ ~ ( ~ ~ ( ~ ( isa @ SX0 @ SX1 )
| ~ ( isa @ SX0 @ SX2 ) )
| ~ ( disjointwith @ SX1 @ SX2 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[99]) ).
thf(125,plain,
( ( ! [SX0: $i,SX1: $i,SX2: $i] :
( ~ ~ ( ~ ( isa @ SX0 @ SX1 )
| ~ ( genls @ SX1 @ SX2 ) )
| ( isa @ SX0 @ SX2 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[120]) ).
thf(126,plain,
( ( ! [SX0: $i,SX1: $i] :
( ~ ( isa @ SX0 @ SX1 )
| ( collection @ SX1 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[116]) ).
thf(127,plain,
( ( ! [SX0: $i] :
( ~ ( isa @ SX0 @ c_individual )
| ( individual @ SX0 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[110]) ).
thf(128,plain,
( ( ! [SX0: $i,SX1: $i] :
( ~ ( isa @ SX0 @ SX1 )
| ( collection @ SX1 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[117]) ).
thf(129,plain,
( ( ! [SX0: $i] :
( ~ ( location_underspecified @ SX0 )
| ( isa @ SX0 @ c_location_underspecified ) ) )
= $true ),
inference(unfold_def,[status(thm)],[107]) ).
thf(130,plain,
( ( ! [SX0: $i] :
( ~ ( thing @ SX0 )
| ( isa @ SX0 @ c_thing ) ) )
= $true ),
inference(unfold_def,[status(thm)],[105]) ).
thf(131,plain,
( ( ! [SX0: $i] :
( ~ ( isa @ SX0 @ c_transitivebinarypredicate )
| ( transitivebinarypredicate @ SX0 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[100]) ).
thf(132,plain,
( ( ~ ~ ! [SX0: $i] :
~ ( ~ ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
| ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ SX0 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[122]) ).
thf(133,plain,
( ( ! [SX0: $i] :
( ~ ( trajector_underspecified @ SX0 )
| ( isa @ SX0 @ c_trajector_underspecified ) ) )
= $true ),
inference(unfold_def,[status(thm)],[109]) ).
thf(134,plain,
( ( ! [SX0: $i,SX1: $i] :
( ~ ( isa @ SX0 @ SX1 )
| ( thing @ SX0 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[118]) ).
thf(135,plain,
( ( ! [SX0: $i] :
( ~ ( transitivebinarypredicate @ SX0 )
| ( isa @ SX0 @ c_transitivebinarypredicate ) ) )
= $true ),
inference(unfold_def,[status(thm)],[101]) ).
thf(136,plain,
( ( ! [SX0: $i] :
( ~ ( individual @ SX0 )
| ( isa @ SX0 @ c_individual ) ) )
= $true ),
inference(unfold_def,[status(thm)],[111]) ).
thf(137,plain,
( ( ! [SX0: $i] :
( ~ ( isa @ SX0 @ c_location_underspecified )
| ( location_underspecified @ SX0 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[106]) ).
thf(138,plain,
( ( ! [SX0: $i,SX1: $i] :
( ~ ~ ( ~ ( mtvisible @ SX0 )
| ~ ( genlmt @ SX0 @ SX1 ) )
| ( mtvisible @ SX1 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[103]) ).
thf(139,plain,
( ( ! [SX0: $i] :
( ~ ( isa @ SX0 @ c_thing )
| ( thing @ SX0 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[104]) ).
thf(140,plain,
( ( ! [SX0: $i] :
( ~ ( isa @ SX0 @ c_trajector_underspecified )
| ( trajector_underspecified @ SX0 ) ) )
= $true ),
inference(unfold_def,[status(thm)],[108]) ).
thf(141,plain,
! [SV1: $i] :
( ( ! [SY35: $i] : ( natfunction @ ( f_citynamedfn @ SV1 @ SY35 ) @ c_citynamedfn ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[112]) ).
thf(142,plain,
! [SV2: $i] :
( ( ! [SY36: $i] : ( natargument @ ( f_citynamedfn @ SV2 @ SY36 ) @ n_1 @ SV2 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[113]) ).
thf(143,plain,
! [SV3: $i] :
( ( ! [SY37: $i] : ( natargument @ ( f_citynamedfn @ SV3 @ SY37 ) @ n_2 @ SY37 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[114]) ).
thf(144,plain,
! [SV4: $i] :
( ( ! [SY38: $i] : ( city @ ( f_citynamedfn @ SV4 @ SY38 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[115]) ).
thf(145,plain,
! [SV5: $i] :
( ( ! [SY39: $i] :
( ~ ( isa @ SV5 @ SY39 )
| ( thing @ SV5 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[123]) ).
thf(146,plain,
! [SV6: $i] :
( ( ! [SY40: $i,SY41: $i] :
~ ~ ( ~ ~ ( ~ ( isa @ SV6 @ SY40 )
| ~ ( isa @ SV6 @ SY41 ) )
| ~ ( disjointwith @ SY40 @ SY41 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[124]) ).
thf(147,plain,
! [SV7: $i] :
( ( ! [SY42: $i,SY43: $i] :
( ~ ~ ( ~ ( isa @ SV7 @ SY42 )
| ~ ( genls @ SY42 @ SY43 ) )
| ( isa @ SV7 @ SY43 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[125]) ).
thf(148,plain,
! [SV8: $i] :
( ( ! [SY44: $i] :
( ~ ( isa @ SV8 @ SY44 )
| ( collection @ SY44 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[126]) ).
thf(149,plain,
! [SV9: $i] :
( ( ~ ( isa @ SV9 @ c_individual )
| ( individual @ SV9 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[127]) ).
thf(150,plain,
! [SV10: $i] :
( ( ! [SY45: $i] :
( ~ ( isa @ SV10 @ SY45 )
| ( collection @ SY45 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[128]) ).
thf(151,plain,
! [SV11: $i] :
( ( ~ ( location_underspecified @ SV11 )
| ( isa @ SV11 @ c_location_underspecified ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[129]) ).
thf(152,plain,
! [SV12: $i] :
( ( ~ ( thing @ SV12 )
| ( isa @ SV12 @ c_thing ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[130]) ).
thf(153,plain,
! [SV13: $i] :
( ( ~ ( isa @ SV13 @ c_transitivebinarypredicate )
| ( transitivebinarypredicate @ SV13 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[131]) ).
thf(154,plain,
( ( ~ ! [SX0: $i] :
~ ( ~ ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
| ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ SX0 ) ) )
= $false ),
inference(extcnf_not_pos,[status(thm)],[132]) ).
thf(155,plain,
! [SV14: $i] :
( ( ~ ( trajector_underspecified @ SV14 )
| ( isa @ SV14 @ c_trajector_underspecified ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[133]) ).
thf(156,plain,
! [SV15: $i] :
( ( ! [SY46: $i] :
( ~ ( isa @ SV15 @ SY46 )
| ( thing @ SV15 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[134]) ).
thf(157,plain,
! [SV16: $i] :
( ( ~ ( transitivebinarypredicate @ SV16 )
| ( isa @ SV16 @ c_transitivebinarypredicate ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[135]) ).
thf(158,plain,
! [SV17: $i] :
( ( ~ ( individual @ SV17 )
| ( isa @ SV17 @ c_individual ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[136]) ).
thf(159,plain,
! [SV18: $i] :
( ( ~ ( isa @ SV18 @ c_location_underspecified )
| ( location_underspecified @ SV18 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[137]) ).
thf(160,plain,
! [SV19: $i] :
( ( ! [SY47: $i] :
( ~ ~ ( ~ ( mtvisible @ SV19 )
| ~ ( genlmt @ SV19 @ SY47 ) )
| ( mtvisible @ SY47 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[138]) ).
thf(161,plain,
! [SV20: $i] :
( ( ~ ( isa @ SV20 @ c_thing )
| ( thing @ SV20 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[139]) ).
thf(162,plain,
! [SV21: $i] :
( ( ~ ( isa @ SV21 @ c_trajector_underspecified )
| ( trajector_underspecified @ SV21 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[140]) ).
thf(163,plain,
! [SV22: $i,SV1: $i] :
( ( natfunction @ ( f_citynamedfn @ SV1 @ SV22 ) @ c_citynamedfn )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[141]) ).
thf(164,plain,
! [SV23: $i,SV2: $i] :
( ( natargument @ ( f_citynamedfn @ SV2 @ SV23 ) @ n_1 @ SV2 )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[142]) ).
thf(165,plain,
! [SV24: $i,SV3: $i] :
( ( natargument @ ( f_citynamedfn @ SV3 @ SV24 ) @ n_2 @ SV24 )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[143]) ).
thf(166,plain,
! [SV25: $i,SV4: $i] :
( ( city @ ( f_citynamedfn @ SV4 @ SV25 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[144]) ).
thf(167,plain,
! [SV26: $i,SV5: $i] :
( ( ~ ( isa @ SV5 @ SV26 )
| ( thing @ SV5 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[145]) ).
thf(168,plain,
! [SV27: $i,SV6: $i] :
( ( ! [SY48: $i] :
~ ~ ( ~ ~ ( ~ ( isa @ SV6 @ SV27 )
| ~ ( isa @ SV6 @ SY48 ) )
| ~ ( disjointwith @ SV27 @ SY48 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[146]) ).
thf(169,plain,
! [SV28: $i,SV7: $i] :
( ( ! [SY49: $i] :
( ~ ~ ( ~ ( isa @ SV7 @ SV28 )
| ~ ( genls @ SV28 @ SY49 ) )
| ( isa @ SV7 @ SY49 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[147]) ).
thf(170,plain,
! [SV29: $i,SV8: $i] :
( ( ~ ( isa @ SV8 @ SV29 )
| ( collection @ SV29 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[148]) ).
thf(171,plain,
! [SV9: $i] :
( ( ( ~ ( isa @ SV9 @ c_individual ) )
= $true )
| ( ( individual @ SV9 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[149]) ).
thf(172,plain,
! [SV30: $i,SV10: $i] :
( ( ~ ( isa @ SV10 @ SV30 )
| ( collection @ SV30 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[150]) ).
thf(173,plain,
! [SV11: $i] :
( ( ( ~ ( location_underspecified @ SV11 ) )
= $true )
| ( ( isa @ SV11 @ c_location_underspecified )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[151]) ).
thf(174,plain,
! [SV12: $i] :
( ( ( ~ ( thing @ SV12 ) )
= $true )
| ( ( isa @ SV12 @ c_thing )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[152]) ).
thf(175,plain,
! [SV13: $i] :
( ( ( ~ ( isa @ SV13 @ c_transitivebinarypredicate ) )
= $true )
| ( ( transitivebinarypredicate @ SV13 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[153]) ).
thf(176,plain,
( ( ! [SX0: $i] :
~ ( ~ ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
| ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ SX0 ) ) )
= $true ),
inference(extcnf_not_neg,[status(thm)],[154]) ).
thf(177,plain,
! [SV14: $i] :
( ( ( ~ ( trajector_underspecified @ SV14 ) )
= $true )
| ( ( isa @ SV14 @ c_trajector_underspecified )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[155]) ).
thf(178,plain,
! [SV31: $i,SV15: $i] :
( ( ~ ( isa @ SV15 @ SV31 )
| ( thing @ SV15 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[156]) ).
thf(179,plain,
! [SV16: $i] :
( ( ( ~ ( transitivebinarypredicate @ SV16 ) )
= $true )
| ( ( isa @ SV16 @ c_transitivebinarypredicate )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[157]) ).
thf(180,plain,
! [SV17: $i] :
( ( ( ~ ( individual @ SV17 ) )
= $true )
| ( ( isa @ SV17 @ c_individual )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[158]) ).
thf(181,plain,
! [SV18: $i] :
( ( ( ~ ( isa @ SV18 @ c_location_underspecified ) )
= $true )
| ( ( location_underspecified @ SV18 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[159]) ).
thf(182,plain,
! [SV32: $i,SV19: $i] :
( ( ~ ~ ( ~ ( mtvisible @ SV19 )
| ~ ( genlmt @ SV19 @ SV32 ) )
| ( mtvisible @ SV32 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[160]) ).
thf(183,plain,
! [SV20: $i] :
( ( ( ~ ( isa @ SV20 @ c_thing ) )
= $true )
| ( ( thing @ SV20 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[161]) ).
thf(184,plain,
! [SV21: $i] :
( ( ( ~ ( isa @ SV21 @ c_trajector_underspecified ) )
= $true )
| ( ( trajector_underspecified @ SV21 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[162]) ).
thf(185,plain,
! [SV26: $i,SV5: $i] :
( ( ( ~ ( isa @ SV5 @ SV26 ) )
= $true )
| ( ( thing @ SV5 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[167]) ).
thf(186,plain,
! [SV33: $i,SV27: $i,SV6: $i] :
( ( ~ ~ ( ~ ~ ( ~ ( isa @ SV6 @ SV27 )
| ~ ( isa @ SV6 @ SV33 ) )
| ~ ( disjointwith @ SV27 @ SV33 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[168]) ).
thf(187,plain,
! [SV34: $i,SV28: $i,SV7: $i] :
( ( ~ ~ ( ~ ( isa @ SV7 @ SV28 )
| ~ ( genls @ SV28 @ SV34 ) )
| ( isa @ SV7 @ SV34 ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[169]) ).
thf(188,plain,
! [SV29: $i,SV8: $i] :
( ( ( ~ ( isa @ SV8 @ SV29 ) )
= $true )
| ( ( collection @ SV29 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[170]) ).
thf(189,plain,
! [SV9: $i] :
( ( ( isa @ SV9 @ c_individual )
= $false )
| ( ( individual @ SV9 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[171]) ).
thf(190,plain,
! [SV30: $i,SV10: $i] :
( ( ( ~ ( isa @ SV10 @ SV30 ) )
= $true )
| ( ( collection @ SV30 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[172]) ).
thf(191,plain,
! [SV11: $i] :
( ( ( location_underspecified @ SV11 )
= $false )
| ( ( isa @ SV11 @ c_location_underspecified )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[173]) ).
thf(192,plain,
! [SV12: $i] :
( ( ( thing @ SV12 )
= $false )
| ( ( isa @ SV12 @ c_thing )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[174]) ).
thf(193,plain,
! [SV13: $i] :
( ( ( isa @ SV13 @ c_transitivebinarypredicate )
= $false )
| ( ( transitivebinarypredicate @ SV13 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[175]) ).
thf(194,plain,
! [SV35: $i] :
( ( ~ ( ~ ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
| ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ SV35 ) ) )
= $true ),
inference(extcnf_forall_pos,[status(thm)],[176]) ).
thf(195,plain,
! [SV14: $i] :
( ( ( trajector_underspecified @ SV14 )
= $false )
| ( ( isa @ SV14 @ c_trajector_underspecified )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[177]) ).
thf(196,plain,
! [SV31: $i,SV15: $i] :
( ( ( ~ ( isa @ SV15 @ SV31 ) )
= $true )
| ( ( thing @ SV15 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[178]) ).
thf(197,plain,
! [SV16: $i] :
( ( ( transitivebinarypredicate @ SV16 )
= $false )
| ( ( isa @ SV16 @ c_transitivebinarypredicate )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[179]) ).
thf(198,plain,
! [SV17: $i] :
( ( ( individual @ SV17 )
= $false )
| ( ( isa @ SV17 @ c_individual )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[180]) ).
thf(199,plain,
! [SV18: $i] :
( ( ( isa @ SV18 @ c_location_underspecified )
= $false )
| ( ( location_underspecified @ SV18 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[181]) ).
thf(200,plain,
! [SV32: $i,SV19: $i] :
( ( ( ~ ~ ( ~ ( mtvisible @ SV19 )
| ~ ( genlmt @ SV19 @ SV32 ) ) )
= $true )
| ( ( mtvisible @ SV32 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[182]) ).
thf(201,plain,
! [SV20: $i] :
( ( ( isa @ SV20 @ c_thing )
= $false )
| ( ( thing @ SV20 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[183]) ).
thf(202,plain,
! [SV21: $i] :
( ( ( isa @ SV21 @ c_trajector_underspecified )
= $false )
| ( ( trajector_underspecified @ SV21 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[184]) ).
thf(203,plain,
! [SV26: $i,SV5: $i] :
( ( ( isa @ SV5 @ SV26 )
= $false )
| ( ( thing @ SV5 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[185]) ).
thf(204,plain,
! [SV33: $i,SV27: $i,SV6: $i] :
( ( ~ ( ~ ~ ( ~ ( isa @ SV6 @ SV27 )
| ~ ( isa @ SV6 @ SV33 ) )
| ~ ( disjointwith @ SV27 @ SV33 ) ) )
= $false ),
inference(extcnf_not_pos,[status(thm)],[186]) ).
thf(205,plain,
! [SV34: $i,SV28: $i,SV7: $i] :
( ( ( ~ ~ ( ~ ( isa @ SV7 @ SV28 )
| ~ ( genls @ SV28 @ SV34 ) ) )
= $true )
| ( ( isa @ SV7 @ SV34 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[187]) ).
thf(206,plain,
! [SV29: $i,SV8: $i] :
( ( ( isa @ SV8 @ SV29 )
= $false )
| ( ( collection @ SV29 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[188]) ).
thf(207,plain,
! [SV30: $i,SV10: $i] :
( ( ( isa @ SV10 @ SV30 )
= $false )
| ( ( collection @ SV30 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[190]) ).
thf(208,plain,
! [SV35: $i] :
( ( ~ ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
| ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ SV35 ) )
= $false ),
inference(extcnf_not_pos,[status(thm)],[194]) ).
thf(209,plain,
! [SV31: $i,SV15: $i] :
( ( ( isa @ SV15 @ SV31 )
= $false )
| ( ( thing @ SV15 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[196]) ).
thf(210,plain,
! [SV32: $i,SV19: $i] :
( ( ( ~ ( ~ ( mtvisible @ SV19 )
| ~ ( genlmt @ SV19 @ SV32 ) ) )
= $false )
| ( ( mtvisible @ SV32 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[200]) ).
thf(211,plain,
! [SV33: $i,SV27: $i,SV6: $i] :
( ( ~ ~ ( ~ ( isa @ SV6 @ SV27 )
| ~ ( isa @ SV6 @ SV33 ) )
| ~ ( disjointwith @ SV27 @ SV33 ) )
= $true ),
inference(extcnf_not_neg,[status(thm)],[204]) ).
thf(212,plain,
! [SV34: $i,SV28: $i,SV7: $i] :
( ( ( ~ ( ~ ( isa @ SV7 @ SV28 )
| ~ ( genls @ SV28 @ SV34 ) ) )
= $false )
| ( ( isa @ SV7 @ SV34 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[205]) ).
thf(213,plain,
( ( ~ ( mtvisible @ c_reasoningaboutpossibleantecedentsmt ) )
= $false ),
inference(extcnf_or_neg,[status(thm)],[208]) ).
thf(214,plain,
! [SV35: $i] :
( ( isa @ ( f_citynamedfn @ s_agen @ c_france ) @ SV35 )
= $false ),
inference(extcnf_or_neg,[status(thm)],[208]) ).
thf(215,plain,
! [SV32: $i,SV19: $i] :
( ( ( ~ ( mtvisible @ SV19 )
| ~ ( genlmt @ SV19 @ SV32 ) )
= $true )
| ( ( mtvisible @ SV32 )
= $true ) ),
inference(extcnf_not_neg,[status(thm)],[210]) ).
thf(216,plain,
! [SV33: $i,SV27: $i,SV6: $i] :
( ( ( ~ ~ ( ~ ( isa @ SV6 @ SV27 )
| ~ ( isa @ SV6 @ SV33 ) ) )
= $true )
| ( ( ~ ( disjointwith @ SV27 @ SV33 ) )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[211]) ).
thf(217,plain,
! [SV34: $i,SV28: $i,SV7: $i] :
( ( ( ~ ( isa @ SV7 @ SV28 )
| ~ ( genls @ SV28 @ SV34 ) )
= $true )
| ( ( isa @ SV7 @ SV34 )
= $true ) ),
inference(extcnf_not_neg,[status(thm)],[212]) ).
thf(218,plain,
( ( mtvisible @ c_reasoningaboutpossibleantecedentsmt )
= $true ),
inference(extcnf_not_neg,[status(thm)],[213]) ).
thf(219,plain,
! [SV32: $i,SV19: $i] :
( ( ( ~ ( mtvisible @ SV19 ) )
= $true )
| ( ( ~ ( genlmt @ SV19 @ SV32 ) )
= $true )
| ( ( mtvisible @ SV32 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[215]) ).
thf(220,plain,
! [SV33: $i,SV27: $i,SV6: $i] :
( ( ( ~ ( ~ ( isa @ SV6 @ SV27 )
| ~ ( isa @ SV6 @ SV33 ) ) )
= $false )
| ( ( ~ ( disjointwith @ SV27 @ SV33 ) )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[216]) ).
thf(221,plain,
! [SV34: $i,SV28: $i,SV7: $i] :
( ( ( ~ ( isa @ SV7 @ SV28 ) )
= $true )
| ( ( ~ ( genls @ SV28 @ SV34 ) )
= $true )
| ( ( isa @ SV7 @ SV34 )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[217]) ).
thf(222,plain,
! [SV32: $i,SV19: $i] :
( ( ( mtvisible @ SV19 )
= $false )
| ( ( ~ ( genlmt @ SV19 @ SV32 ) )
= $true )
| ( ( mtvisible @ SV32 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[219]) ).
thf(223,plain,
! [SV33: $i,SV27: $i,SV6: $i] :
( ( ( ~ ( isa @ SV6 @ SV27 )
| ~ ( isa @ SV6 @ SV33 ) )
= $true )
| ( ( ~ ( disjointwith @ SV27 @ SV33 ) )
= $true ) ),
inference(extcnf_not_neg,[status(thm)],[220]) ).
thf(224,plain,
! [SV34: $i,SV28: $i,SV7: $i] :
( ( ( isa @ SV7 @ SV28 )
= $false )
| ( ( ~ ( genls @ SV28 @ SV34 ) )
= $true )
| ( ( isa @ SV7 @ SV34 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[221]) ).
thf(225,plain,
! [SV32: $i,SV19: $i] :
( ( ( genlmt @ SV19 @ SV32 )
= $false )
| ( ( mtvisible @ SV19 )
= $false )
| ( ( mtvisible @ SV32 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[222]) ).
thf(226,plain,
! [SV33: $i,SV27: $i,SV6: $i] :
( ( ( ~ ( isa @ SV6 @ SV27 ) )
= $true )
| ( ( ~ ( isa @ SV6 @ SV33 ) )
= $true )
| ( ( ~ ( disjointwith @ SV27 @ SV33 ) )
= $true ) ),
inference(extcnf_or_pos,[status(thm)],[223]) ).
thf(227,plain,
! [SV7: $i,SV34: $i,SV28: $i] :
( ( ( genls @ SV28 @ SV34 )
= $false )
| ( ( isa @ SV7 @ SV28 )
= $false )
| ( ( isa @ SV7 @ SV34 )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[224]) ).
thf(228,plain,
! [SV33: $i,SV27: $i,SV6: $i] :
( ( ( isa @ SV6 @ SV27 )
= $false )
| ( ( ~ ( isa @ SV6 @ SV33 ) )
= $true )
| ( ( ~ ( disjointwith @ SV27 @ SV33 ) )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[226]) ).
thf(229,plain,
! [SV27: $i,SV33: $i,SV6: $i] :
( ( ( isa @ SV6 @ SV33 )
= $false )
| ( ( isa @ SV6 @ SV27 )
= $false )
| ( ( ~ ( disjointwith @ SV27 @ SV33 ) )
= $true ) ),
inference(extcnf_not_pos,[status(thm)],[228]) ).
thf(230,plain,
! [SV6: $i,SV33: $i,SV27: $i] :
( ( ( disjointwith @ SV27 @ SV33 )
= $false )
| ( ( isa @ SV6 @ SV27 )
= $false )
| ( ( isa @ SV6 @ SV33 )
= $false ) ),
inference(extcnf_not_pos,[status(thm)],[229]) ).
thf(231,plain,
$false = $true,
inference(fo_atp_e,[status(thm)],[97,230,227,225,218,214,209,207,206,203,202,201,199,198,197,195,193,192,191,189,166,165,164,163,121,102,98]) ).
thf(232,plain,
$false,
inference(solved_all_splits,[solved_all_splits(join,[])],[231]) ).
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.04 % Problem : CSR032+1 : TPTP v9.3.1. Released v3.4.0.
% 0.00/0.06 % Command : leo --cores 7 --timeout 300 --proofoutput 1 --foatp e --atp e=/export/starexec/sandbox2/solver/bin/eprover /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.09/0.23 % Computer : n014.cluster.edu
% 0.09/0.23 % Model : x86_64 x86_64
% 0.09/0.23 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.09/0.23 % Memory : 8046.5625MB
% 0.09/0.23 % OS : Linux 6.8.0-71-generic
% 0.09/0.23 % CPULimit : 300
% 0.09/0.23 % WCLimit : 300
% 0.09/0.23 % DateTime : Tue Oct 6 18:41:11 UTC 2026
% 0.09/0.24 % CPUTime :
% 0.09/0.24 Running leo --cores 7 --timeout 300 --proofoutput 1 --foatp e --atp e=/export/starexec/sandbox2/solver/bin/eprover /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.25/0.36
% 0.25/0.36 No.of.Axioms: 25
% 0.25/0.36
% 0.25/0.36 Length.of.Defs: 0
% 0.25/0.36
% 0.25/0.36 Contains.Choice.Funs: false
% 0.25/0.36 ....
% 0.25/0.36
% 0.25/0.36 ********************************
% 0.25/0.36 * All subproblems solved! *
% 0.25/0.36 ********************************
% 0.25/0.36 % SZS status Theorem for /export/starexec/sandbox2/benchmark/theBenchmark.p : (rf:1,axioms:25,ps:0,u:6,ude:true,rLeibEQ:true,rAndEQ:true,use_choice:true,use_extuni:true,use_extcnf_combined:false,expand_extuni:false,foatp:e,atp_timeout:299,atp_calls_frequency:5,ordering:none,proof_output:1,protocol_output:false,clause_count:231,loop_count:0,foatp_calls:1,translation:fof_full)
% 0.25/0.36
% 0.25/0.36 %**** Beginning of derivation protocol ****
% 0.25/0.36 % SZS output start CNFRefutation
% See solution above
% 0.25/0.37
% 0.25/0.37 %**** End of derivation protocol ****
% 0.25/0.37 %**** no. of clauses in derivation: 190 ****
% 0.25/0.37 %**** clause counter: 231 ****
% 0.25/0.37
% 0.25/0.37 % SZS status Theorem for /export/starexec/sandbox2/benchmark/theBenchmark.p : (rf:1,axioms:25,ps:0,u:6,ude:true,rLeibEQ:true,rAndEQ:true,use_choice:true,use_extuni:true,use_extcnf_combined:false,expand_extuni:false,foatp:e,atp_timeout:299,atp_calls_frequency:5,ordering:none,proof_output:1,protocol_output:false,clause_count:231,loop_count:0,foatp_calls:1,translation:fof_full)
%------------------------------------------------------------------------------