%------------------------------------------------------------------------------
% File : Vampire---5.0.1
% Problem : NLP252+1 : TPTP v9.3.1. Released v2.4.0.
% Transfm : none
% Format : tptp:raw
% Command : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% Computer : n011.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 : Tue Sep 29 12:08:13 PM UTC 2026
% Result : Theorem 2.65s 1.31s
% Output : Refutation 0.18s
% Verified :
% SZS Type : Refutation
% Derivation depth : 35
% Number of leaves : 37
% Syntax : Number of formulae : 256 ( 44 unt; 32 def)
% Number of atoms : 1644 ( 0 equ)
% Maximal formula atoms : 66 ( 6 avg)
% Number of connectives : 2521 (1133 ~;1043 |; 301 &)
% ( 32 <=>; 12 =>; 0 <=; 0 <~>)
% Maximal formula depth : 57 ( 8 avg)
% Maximal term depth : 3 ( 1 avg)
% Number of predicates : 49 ( 48 usr; 10 prp; 0-4 aty)
% Number of functors : 10 ( 10 usr; 8 con; 0-1 aty)
% Number of variables : 575 ( 0 sgn 469 !; 106 ?)
% Comments :
%------------------------------------------------------------------------------
fof(f1,axiom,
! [X0,X1] :
( jules_forename(X0,X1)
=> forename(X0,X1) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ax1) ).
fof(f2,axiom,
! [X0,X1] :
( vincent_forename(X0,X1)
=> forename(X0,X1) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ax2) ).
fof(f30,axiom,
! [X0,X1] :
( smoke(X0,X1)
=> event(X0,X1) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ax30) ).
fof(f49,axiom,
! [X0,X1,X2] :
( ( accessible_world(X1,X2)
& man(X1,X0) )
=> man(X2,X0) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ax49) ).
fof(f72,conjecture,
~ ( ? [X0] :
( actual_world(X0)
& ? [X1,X2,X3,X4,X5,X6,X7] :
( of(X0,X2,X1)
& man(X0,X1)
& vincent_forename(X0,X2)
& forename(X0,X2)
& proposition(X0,X4)
& agent(X0,X3,X1)
& theme(X0,X3,X4)
& event(X0,X3)
& present(X0,X3)
& think_believe_consider(X0,X3)
& accessible_world(X0,X4)
& ! [X8] :
( man(X4,X8)
=> ? [X9] :
( event(X4,X9)
& agent(X4,X9,X8)
& present(X4,X9)
& smoke(X4,X9) ) )
& of(X0,X5,X6)
& man(X0,X6)
& jules_forename(X0,X5)
& forename(X0,X5)
& man(X0,X6)
& state(X0,X7)
& be(X0,X7,X6,X6) ) )
& ~ ? [X10] :
( actual_world(X10)
& ? [X11,X12,X13,X1,X2,X3,X4,X5,X6,X7,X14,X15] :
( of(X10,X12,X11)
& man(X10,X11)
& vincent_forename(X10,X12)
& forename(X10,X12)
& of(X10,X13,X6)
& jules_forename(X10,X13)
& forename(X10,X13)
& of(X10,X2,X1)
& man(X10,X1)
& vincent_forename(X10,X2)
& forename(X10,X2)
& proposition(X10,X4)
& agent(X10,X3,X1)
& theme(X10,X3,X4)
& event(X10,X3)
& present(X10,X3)
& think_believe_consider(X10,X3)
& accessible_world(X10,X4)
& ! [X8] :
( man(X4,X8)
=> ? [X9] :
( event(X4,X9)
& agent(X4,X9,X8)
& present(X4,X9)
& smoke(X4,X9) ) )
& of(X10,X5,X6)
& man(X10,X6)
& jules_forename(X10,X5)
& forename(X10,X5)
& man(X10,X6)
& state(X10,X7)
& be(X10,X7,X6,X6)
& proposition(X10,X15)
& agent(X10,X14,X11)
& theme(X10,X14,X15)
& event(X10,X14)
& present(X10,X14)
& think_believe_consider(X10,X14)
& accessible_world(X10,X15)
& ? [X16] :
( event(X15,X16)
& agent(X15,X16,X6)
& present(X15,X16)
& smoke(X15,X16) ) ) ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',co1) ).
fof(f73,negated_conjecture,
~ ~ ( ? [X0] :
( actual_world(X0)
& ? [X1,X2,X3,X4,X5,X6,X7] :
( of(X0,X2,X1)
& man(X0,X1)
& vincent_forename(X0,X2)
& forename(X0,X2)
& proposition(X0,X4)
& agent(X0,X3,X1)
& theme(X0,X3,X4)
& event(X0,X3)
& present(X0,X3)
& think_believe_consider(X0,X3)
& accessible_world(X0,X4)
& ! [X8] :
( man(X4,X8)
=> ? [X9] :
( event(X4,X9)
& agent(X4,X9,X8)
& present(X4,X9)
& smoke(X4,X9) ) )
& of(X0,X5,X6)
& man(X0,X6)
& jules_forename(X0,X5)
& forename(X0,X5)
& man(X0,X6)
& state(X0,X7)
& be(X0,X7,X6,X6) ) )
& ~ ? [X10] :
( actual_world(X10)
& ? [X11,X12,X13,X1,X2,X3,X4,X5,X6,X7,X14,X15] :
( of(X10,X12,X11)
& man(X10,X11)
& vincent_forename(X10,X12)
& forename(X10,X12)
& of(X10,X13,X6)
& jules_forename(X10,X13)
& forename(X10,X13)
& of(X10,X2,X1)
& man(X10,X1)
& vincent_forename(X10,X2)
& forename(X10,X2)
& proposition(X10,X4)
& agent(X10,X3,X1)
& theme(X10,X3,X4)
& event(X10,X3)
& present(X10,X3)
& think_believe_consider(X10,X3)
& accessible_world(X10,X4)
& ! [X8] :
( man(X4,X8)
=> ? [X9] :
( event(X4,X9)
& agent(X4,X9,X8)
& present(X4,X9)
& smoke(X4,X9) ) )
& of(X10,X5,X6)
& man(X10,X6)
& jules_forename(X10,X5)
& forename(X10,X5)
& man(X10,X6)
& state(X10,X7)
& be(X10,X7,X6,X6)
& proposition(X10,X15)
& agent(X10,X14,X11)
& theme(X10,X14,X15)
& event(X10,X14)
& present(X10,X14)
& think_believe_consider(X10,X14)
& accessible_world(X10,X15)
& ? [X16] :
( event(X15,X16)
& agent(X15,X16,X6)
& present(X15,X16)
& smoke(X15,X16) ) ) ) ),
inference(negated_conjecture,[status(cth)],[f72]) ).
fof(f74,plain,
~ ~ ( ? [X0] :
( actual_world(X0)
& ? [X1,X2,X3,X4,X5,X6,X7] :
( of(X0,X2,X1)
& man(X0,X1)
& vincent_forename(X0,X2)
& forename(X0,X2)
& proposition(X0,X4)
& agent(X0,X3,X1)
& theme(X0,X3,X4)
& event(X0,X3)
& present(X0,X3)
& think_believe_consider(X0,X3)
& accessible_world(X0,X4)
& ! [X8] :
( man(X4,X8)
=> ? [X9] :
( event(X4,X9)
& agent(X4,X9,X8)
& present(X4,X9)
& smoke(X4,X9) ) )
& of(X0,X5,X6)
& man(X0,X6)
& jules_forename(X0,X5)
& forename(X0,X5)
& man(X0,X6)
& state(X0,X7)
& be(X0,X7,X6,X6) ) )
& ~ ? [X10] :
( actual_world(X10)
& ? [X11,X12,X13,X14,X15,X16,X17,X18,X19,X20,X21,X22] :
( of(X10,X12,X11)
& man(X10,X11)
& vincent_forename(X10,X12)
& forename(X10,X12)
& of(X10,X13,X19)
& jules_forename(X10,X13)
& forename(X10,X13)
& of(X10,X15,X14)
& man(X10,X14)
& vincent_forename(X10,X15)
& forename(X10,X15)
& proposition(X10,X17)
& agent(X10,X16,X14)
& theme(X10,X16,X17)
& event(X10,X16)
& present(X10,X16)
& think_believe_consider(X10,X16)
& accessible_world(X10,X17)
& ! [X23] :
( man(X17,X23)
=> ? [X24] :
( event(X17,X24)
& agent(X17,X24,X23)
& present(X17,X24)
& smoke(X17,X24) ) )
& of(X10,X18,X19)
& man(X10,X19)
& jules_forename(X10,X18)
& forename(X10,X18)
& man(X10,X19)
& state(X10,X20)
& be(X10,X20,X19,X19)
& proposition(X10,X22)
& agent(X10,X21,X11)
& theme(X10,X21,X22)
& event(X10,X21)
& present(X10,X21)
& think_believe_consider(X10,X21)
& accessible_world(X10,X22)
& ? [X25] :
( event(X22,X25)
& agent(X22,X25,X19)
& present(X22,X25)
& smoke(X22,X25) ) ) ) ),
inference(rectify,[],[f73]) ).
fof(f75,plain,
( ? [X0] :
( actual_world(X0)
& ? [X1,X2,X3,X4,X5,X6,X7] :
( of(X0,X2,X1)
& man(X0,X1)
& vincent_forename(X0,X2)
& forename(X0,X2)
& proposition(X0,X4)
& agent(X0,X3,X1)
& theme(X0,X3,X4)
& event(X0,X3)
& present(X0,X3)
& think_believe_consider(X0,X3)
& accessible_world(X0,X4)
& ! [X8] :
( man(X4,X8)
=> ? [X9] :
( event(X4,X9)
& agent(X4,X9,X8)
& present(X4,X9)
& smoke(X4,X9) ) )
& of(X0,X5,X6)
& man(X0,X6)
& jules_forename(X0,X5)
& forename(X0,X5)
& man(X0,X6)
& state(X0,X7)
& be(X0,X7,X6,X6) ) )
& ~ ? [X10] :
( actual_world(X10)
& ? [X11,X12,X13,X14,X15,X16,X17,X18,X19,X20,X21,X22] :
( of(X10,X12,X11)
& man(X10,X11)
& vincent_forename(X10,X12)
& forename(X10,X12)
& of(X10,X13,X19)
& jules_forename(X10,X13)
& forename(X10,X13)
& of(X10,X15,X14)
& man(X10,X14)
& vincent_forename(X10,X15)
& forename(X10,X15)
& proposition(X10,X17)
& agent(X10,X16,X14)
& theme(X10,X16,X17)
& event(X10,X16)
& present(X10,X16)
& think_believe_consider(X10,X16)
& accessible_world(X10,X17)
& ! [X23] :
( man(X17,X23)
=> ? [X24] :
( event(X17,X24)
& agent(X17,X24,X23)
& present(X17,X24)
& smoke(X17,X24) ) )
& of(X10,X18,X19)
& man(X10,X19)
& jules_forename(X10,X18)
& forename(X10,X18)
& man(X10,X19)
& state(X10,X20)
& be(X10,X20,X19,X19)
& proposition(X10,X22)
& agent(X10,X21,X11)
& theme(X10,X21,X22)
& event(X10,X21)
& present(X10,X21)
& think_believe_consider(X10,X21)
& accessible_world(X10,X22)
& ? [X25] :
( event(X22,X25)
& agent(X22,X25,X19)
& present(X22,X25)
& smoke(X22,X25) ) ) ) ),
inference(flattening,[],[f74]) ).
fof(f81,plain,
( ? [X0] :
( actual_world(X0)
& ? [X1,X2,X3,X4,X5,X6,X7] :
( of(X0,X2,X1)
& man(X0,X1)
& vincent_forename(X0,X2)
& forename(X0,X2)
& proposition(X0,X4)
& agent(X0,X3,X1)
& theme(X0,X3,X4)
& event(X0,X3)
& present(X0,X3)
& think_believe_consider(X0,X3)
& accessible_world(X0,X4)
& ! [X8] :
( ? [X9] :
( event(X4,X9)
& agent(X4,X9,X8)
& present(X4,X9)
& smoke(X4,X9) )
| ~ man(X4,X8) )
& of(X0,X5,X6)
& man(X0,X6)
& jules_forename(X0,X5)
& forename(X0,X5)
& man(X0,X6)
& state(X0,X7)
& be(X0,X7,X6,X6) ) )
& ! [X10] :
( ~ actual_world(X10)
| ! [X11,X12,X13,X14,X15,X16,X17,X18,X19,X20,X21,X22] :
( ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ proposition(X10,X17)
| ~ agent(X10,X16,X14)
| ~ theme(X10,X16,X17)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ accessible_world(X10,X17)
| ? [X23] :
( ! [X24] :
( ~ event(X17,X24)
| ~ agent(X17,X24,X23)
| ~ present(X17,X24)
| ~ smoke(X17,X24) )
& man(X17,X23) )
| ~ of(X10,X18,X19)
| ~ man(X10,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ! [X25] :
( ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25) ) ) ) ),
inference(ennf_transformation,[],[f75]) ).
fof(f84,plain,
! [X0,X1] :
( forename(X0,X1)
| ~ jules_forename(X0,X1) ),
inference(ennf_transformation,[],[f1]) ).
fof(f89,plain,
! [X0,X1] :
( forename(X0,X1)
| ~ vincent_forename(X0,X1) ),
inference(ennf_transformation,[],[f2]) ).
fof(f90,plain,
! [X0,X1,X2] :
( man(X2,X0)
| ~ accessible_world(X1,X2)
| ~ man(X1,X0) ),
inference(ennf_transformation,[],[f49]) ).
fof(f91,plain,
! [X0,X1,X2] :
( man(X2,X0)
| ~ accessible_world(X1,X2)
| ~ man(X1,X0) ),
inference(flattening,[],[f90]) ).
fof(f101,plain,
! [X0,X1] :
( event(X0,X1)
| ~ smoke(X0,X1) ),
inference(ennf_transformation,[],[f30]) ).
fof(f117,plain,
( actual_world(sK0)
& of(sK0,sK2,sK1)
& man(sK0,sK1)
& vincent_forename(sK0,sK2)
& forename(sK0,sK2)
& proposition(sK0,sK4)
& agent(sK0,sK3,sK1)
& theme(sK0,sK3,sK4)
& event(sK0,sK3)
& present(sK0,sK3)
& think_believe_consider(sK0,sK3)
& accessible_world(sK0,sK4)
& ! [X8] :
( ( event(sK4,sK8(X8))
& agent(sK4,sK8(X8),X8)
& present(sK4,sK8(X8))
& smoke(sK4,sK8(X8)) )
| ~ man(sK4,X8) )
& of(sK0,sK5,sK6)
& man(sK0,sK6)
& jules_forename(sK0,sK5)
& forename(sK0,sK5)
& man(sK0,sK6)
& state(sK0,sK7)
& be(sK0,sK7,sK6,sK6)
& ! [X10] :
( ~ actual_world(X10)
| ! [X11,X12,X13,X14,X15,X16,X17,X18,X19,X20,X21,X22] :
( ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ proposition(X10,X17)
| ~ agent(X10,X16,X14)
| ~ theme(X10,X16,X17)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ accessible_world(X10,X17)
| ( ! [X24] :
( ~ event(X17,X24)
| ~ agent(X17,X24,sK9(X17))
| ~ present(X17,X24)
| ~ smoke(X17,X24) )
& man(X17,sK9(X17)) )
| ~ of(X10,X18,X19)
| ~ man(X10,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ! [X25] :
( ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25) ) ) ) ),
inference(skolemize,[status(esa),new_symbols(skolem,[sK0,sK1,sK2,sK3,sK4,sK5,sK6,sK7,sK8,sK9]),skolemize(X0,sK0),skolemize(X1,sK1),skolemize(X2,sK2),skolemize(X3,sK3),skolemize(X4,sK4),skolemize(X5,sK5),skolemize(X6,sK6),skolemize(X7,sK7),skolemize(X9,sK8(X8)),skolemize(X23,sK9(X17))],[f81]) ).
fof(f118,plain,
! [X21,X10,X11,X18,X19,X16,X14,X17,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ proposition(X10,X17)
| ~ agent(X10,X16,X14)
| ~ theme(X10,X16,X17)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ accessible_world(X10,X17)
| man(X17,sK9(X17))
| ~ of(X10,X18,X19)
| ~ man(X10,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25) ),
inference(cnf_transformation,[],[f117]) ).
fof(f119,plain,
! [X21,X10,X11,X18,X19,X16,X14,X17,X15,X24,X12,X22,X13,X20,X25] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ proposition(X10,X17)
| ~ agent(X10,X16,X14)
| ~ theme(X10,X16,X17)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ accessible_world(X10,X17)
| ~ event(X17,X24)
| ~ agent(X17,X24,sK9(X17))
| ~ present(X17,X24)
| ~ smoke(X17,X24)
| ~ of(X10,X18,X19)
| ~ man(X10,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25) ),
inference(cnf_transformation,[],[f117]) ).
fof(f120,plain,
be(sK0,sK7,sK6,sK6),
inference(cnf_transformation,[],[f117]) ).
fof(f121,plain,
state(sK0,sK7),
inference(cnf_transformation,[],[f117]) ).
fof(f122,plain,
man(sK0,sK6),
inference(cnf_transformation,[],[f117]) ).
fof(f124,plain,
jules_forename(sK0,sK5),
inference(cnf_transformation,[],[f117]) ).
fof(f126,plain,
of(sK0,sK5,sK6),
inference(cnf_transformation,[],[f117]) ).
fof(f127,plain,
! [X8] :
( smoke(sK4,sK8(X8))
| ~ man(sK4,X8) ),
inference(cnf_transformation,[],[f117]) ).
fof(f128,plain,
! [X8] :
( present(sK4,sK8(X8))
| ~ man(sK4,X8) ),
inference(cnf_transformation,[],[f117]) ).
fof(f129,plain,
! [X8] :
( agent(sK4,sK8(X8),X8)
| ~ man(sK4,X8) ),
inference(cnf_transformation,[],[f117]) ).
fof(f131,plain,
accessible_world(sK0,sK4),
inference(cnf_transformation,[],[f117]) ).
fof(f132,plain,
think_believe_consider(sK0,sK3),
inference(cnf_transformation,[],[f117]) ).
fof(f133,plain,
present(sK0,sK3),
inference(cnf_transformation,[],[f117]) ).
fof(f134,plain,
event(sK0,sK3),
inference(cnf_transformation,[],[f117]) ).
fof(f135,plain,
theme(sK0,sK3,sK4),
inference(cnf_transformation,[],[f117]) ).
fof(f136,plain,
agent(sK0,sK3,sK1),
inference(cnf_transformation,[],[f117]) ).
fof(f137,plain,
proposition(sK0,sK4),
inference(cnf_transformation,[],[f117]) ).
fof(f139,plain,
vincent_forename(sK0,sK2),
inference(cnf_transformation,[],[f117]) ).
fof(f140,plain,
man(sK0,sK1),
inference(cnf_transformation,[],[f117]) ).
fof(f141,plain,
of(sK0,sK2,sK1),
inference(cnf_transformation,[],[f117]) ).
fof(f142,plain,
actual_world(sK0),
inference(cnf_transformation,[],[f117]) ).
fof(f144,plain,
! [X0,X1] :
( ~ jules_forename(X0,X1)
| forename(X0,X1) ),
inference(cnf_transformation,[],[f84]) ).
fof(f147,plain,
! [X0,X1] :
( ~ vincent_forename(X0,X1)
| forename(X0,X1) ),
inference(cnf_transformation,[],[f89]) ).
fof(f148,plain,
! [X2,X0,X1] :
( ~ accessible_world(X1,X2)
| man(X2,X0)
| ~ man(X1,X0) ),
inference(cnf_transformation,[],[f91]) ).
fof(f154,plain,
! [X0,X1] :
( ~ smoke(X0,X1)
| event(X0,X1) ),
inference(cnf_transformation,[],[f101]) ).
fof(f163,plain,
! [X17,X24] :
( ~ event(X17,X24)
| ~ agent(X17,X24,sK9(X17))
| ~ present(X17,X24)
| ~ smoke(X17,X24)
| sP10(X17) ),
inference(cnf_transformation,[],[f163_D]) ).
fof(f163_D,definition,
! [X17] :
( ! [X24] :
( ~ event(X17,X24)
| ~ agent(X17,X24,sK9(X17))
| ~ present(X17,X24)
| ~ smoke(X17,X24) )
<=> ~ sP10(X17) ),
introduced(definition,[new_symbols(definition,[sP10])],[general_splitting_component_introduction]) ).
fof(f164,plain,
! [X21,X10,X11,X18,X19,X16,X14,X17,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ proposition(X10,X17)
| ~ agent(X10,X16,X14)
| ~ theme(X10,X16,X17)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ accessible_world(X10,X17)
| ~ of(X10,X18,X19)
| ~ man(X10,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP10(X17) ),
inference(general_splitting,[],[f119,f163_D]) ).
fof(f165,plain,
! [X10,X18,X19] :
( ~ of(X10,X18,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18)
| sP11(X10,X19) ),
inference(cnf_transformation,[],[f165_D]) ).
fof(f165_D,definition,
! [X19,X10] :
( ! [X18] :
( ~ of(X10,X18,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18) )
<=> ~ sP11(X10,X19) ),
introduced(definition,[new_symbols(definition,[sP11])],[general_splitting_component_introduction]) ).
fof(f166,plain,
! [X21,X10,X11,X19,X16,X14,X17,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ proposition(X10,X17)
| ~ agent(X10,X16,X14)
| ~ theme(X10,X16,X17)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ accessible_world(X10,X17)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP10(X17)
| ~ sP11(X10,X19) ),
inference(general_splitting,[],[f164,f165_D]) ).
fof(f167,plain,
! [X10,X16,X17] :
( ~ theme(X10,X16,X17)
| ~ proposition(X10,X17)
| ~ accessible_world(X10,X17)
| ~ sP10(X17)
| sP12(X10,X16) ),
inference(cnf_transformation,[],[f167_D]) ).
fof(f167_D,definition,
! [X16,X10] :
( ! [X17] :
( ~ theme(X10,X16,X17)
| ~ proposition(X10,X17)
| ~ accessible_world(X10,X17)
| ~ sP10(X17) )
<=> ~ sP12(X10,X16) ),
introduced(definition,[new_symbols(definition,[sP12])],[general_splitting_component_introduction]) ).
fof(f168,plain,
! [X21,X10,X11,X19,X16,X14,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ agent(X10,X16,X14)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP11(X10,X19)
| ~ sP12(X10,X16) ),
inference(general_splitting,[],[f166,f167_D]) ).
fof(f169,plain,
! [X10,X16,X14] :
( ~ agent(X10,X16,X14)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ sP12(X10,X16)
| sP13(X10,X14) ),
inference(cnf_transformation,[],[f169_D]) ).
fof(f169_D,definition,
! [X14,X10] :
( ! [X16] :
( ~ agent(X10,X16,X14)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ sP12(X10,X16) )
<=> ~ sP13(X10,X14) ),
introduced(definition,[new_symbols(definition,[sP13])],[general_splitting_component_introduction]) ).
fof(f170,plain,
! [X21,X10,X11,X19,X14,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP11(X10,X19)
| ~ sP13(X10,X14) ),
inference(general_splitting,[],[f168,f169_D]) ).
fof(f171,plain,
! [X10,X14,X15] :
( ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ sP13(X10,X14)
| sP14(X10,X15) ),
inference(cnf_transformation,[],[f171_D]) ).
fof(f171_D,definition,
! [X15,X10] :
( ! [X14] :
( ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ sP13(X10,X14) )
<=> ~ sP14(X10,X15) ),
introduced(definition,[new_symbols(definition,[sP14])],[general_splitting_component_introduction]) ).
fof(f172,plain,
! [X21,X10,X11,X19,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP11(X10,X19)
| ~ sP14(X10,X15) ),
inference(general_splitting,[],[f170,f171_D]) ).
fof(f173,plain,
! [X10,X15] :
( ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ sP14(X10,X15)
| sP15(X10) ),
inference(cnf_transformation,[],[f173_D]) ).
fof(f173_D,definition,
! [X10] :
( ! [X15] :
( ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ sP14(X10,X15) )
<=> ~ sP15(X10) ),
introduced(definition,[new_symbols(definition,[sP15])],[general_splitting_component_introduction]) ).
fof(f174,plain,
! [X21,X10,X11,X19,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP11(X10,X19)
| ~ sP15(X10) ),
inference(general_splitting,[],[f172,f173_D]) ).
fof(f175,plain,
! [X10,X11,X12] :
( ~ of(X10,X12,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| sP16(X10,X11) ),
inference(cnf_transformation,[],[f175_D]) ).
fof(f175_D,definition,
! [X11,X10] :
( ! [X12] :
( ~ of(X10,X12,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12) )
<=> ~ sP16(X10,X11) ),
introduced(definition,[new_symbols(definition,[sP16])],[general_splitting_component_introduction]) ).
fof(f176,plain,
! [X21,X10,X11,X19,X22,X25,X13,X20] :
( ~ actual_world(X10)
| ~ man(X10,X11)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP11(X10,X19)
| ~ sP15(X10)
| ~ sP16(X10,X11) ),
inference(general_splitting,[],[f174,f175_D]) ).
fof(f177,plain,
! [X21,X10,X11] :
( ~ agent(X10,X21,X11)
| ~ man(X10,X11)
| ~ sP16(X10,X11)
| sP17(X21,X10) ),
inference(cnf_transformation,[],[f177_D]) ).
fof(f177_D,definition,
! [X10,X21] :
( ! [X11] :
( ~ agent(X10,X21,X11)
| ~ man(X10,X11)
| ~ sP16(X10,X11) )
<=> ~ sP17(X21,X10) ),
introduced(definition,[new_symbols(definition,[sP17])],[general_splitting_component_introduction]) ).
fof(f178,plain,
! [X21,X10,X19,X22,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP11(X10,X19)
| ~ sP15(X10)
| ~ sP17(X21,X10) ),
inference(general_splitting,[],[f176,f177_D]) ).
fof(f179,plain,
! [X21,X10,X22] :
( ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ sP17(X21,X10)
| sP18(X22,X10) ),
inference(cnf_transformation,[],[f179_D]) ).
fof(f179_D,definition,
! [X10,X22] :
( ! [X21] :
( ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ sP17(X21,X10) )
<=> ~ sP18(X22,X10) ),
introduced(definition,[new_symbols(definition,[sP18])],[general_splitting_component_introduction]) ).
fof(f180,plain,
! [X10,X19,X22,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP11(X10,X19)
| ~ sP15(X10)
| ~ sP18(X22,X10) ),
inference(general_splitting,[],[f178,f179_D]) ).
fof(f181,plain,
! [X19,X22,X25] :
( ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| sP19(X22,X19) ),
inference(cnf_transformation,[],[f181_D]) ).
fof(f181_D,definition,
! [X19,X22] :
( ! [X25] :
( ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25) )
<=> ~ sP19(X22,X19) ),
introduced(definition,[new_symbols(definition,[sP19])],[general_splitting_component_introduction]) ).
fof(f182,plain,
! [X10,X19,X22,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ accessible_world(X10,X22)
| ~ sP11(X10,X19)
| ~ sP15(X10)
| ~ sP18(X22,X10)
| ~ sP19(X22,X19) ),
inference(general_splitting,[],[f180,f181_D]) ).
fof(f183,plain,
! [X10,X19,X22] :
( ~ sP19(X22,X19)
| ~ accessible_world(X10,X22)
| ~ sP18(X22,X10)
| ~ proposition(X10,X22)
| sP20(X10,X19) ),
inference(cnf_transformation,[],[f183_D]) ).
fof(f183_D,definition,
! [X19,X10] :
( ! [X22] :
( ~ sP19(X22,X19)
| ~ accessible_world(X10,X22)
| ~ sP18(X22,X10)
| ~ proposition(X10,X22) )
<=> ~ sP20(X10,X19) ),
introduced(definition,[new_symbols(definition,[sP20])],[general_splitting_component_introduction]) ).
fof(f184,plain,
! [X10,X19,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ sP11(X10,X19)
| ~ sP15(X10)
| ~ sP20(X10,X19) ),
inference(general_splitting,[],[f182,f183_D]) ).
fof(f185,plain,
! [X10,X19,X13] :
( ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| sP21(X10,X19) ),
inference(cnf_transformation,[],[f185_D]) ).
fof(f185_D,definition,
! [X19,X10] :
( ! [X13] :
( ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13) )
<=> ~ sP21(X10,X19) ),
introduced(definition,[new_symbols(definition,[sP21])],[general_splitting_component_introduction]) ).
fof(f186,plain,
! [X10,X19,X20] :
( ~ actual_world(X10)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ sP11(X10,X19)
| ~ sP15(X10)
| ~ sP20(X10,X19)
| ~ sP21(X10,X19) ),
inference(general_splitting,[],[f184,f185_D]) ).
fof(f187,plain,
! [X10,X18,X19] :
( ~ of(X10,X18,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18)
| sP22(X10,X19) ),
inference(cnf_transformation,[],[f187_D]) ).
fof(f187_D,definition,
! [X19,X10] :
( ! [X18] :
( ~ of(X10,X18,X19)
| ~ jules_forename(X10,X18)
| ~ forename(X10,X18) )
<=> ~ sP22(X10,X19) ),
introduced(definition,[new_symbols(definition,[sP22])],[general_splitting_component_introduction]) ).
fof(f188,plain,
! [X21,X10,X11,X19,X16,X14,X17,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ proposition(X10,X17)
| ~ agent(X10,X16,X14)
| ~ theme(X10,X16,X17)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ accessible_world(X10,X17)
| man(X17,sK9(X17))
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP22(X10,X19) ),
inference(general_splitting,[],[f118,f187_D]) ).
fof(f189,plain,
! [X10,X16,X17] :
( ~ theme(X10,X16,X17)
| ~ proposition(X10,X17)
| ~ accessible_world(X10,X17)
| man(X17,sK9(X17))
| sP23(X10,X16) ),
inference(cnf_transformation,[],[f189_D]) ).
fof(f189_D,definition,
! [X16,X10] :
( ! [X17] :
( ~ theme(X10,X16,X17)
| ~ proposition(X10,X17)
| ~ accessible_world(X10,X17)
| man(X17,sK9(X17)) )
<=> ~ sP23(X10,X16) ),
introduced(definition,[new_symbols(definition,[sP23])],[general_splitting_component_introduction]) ).
fof(f190,plain,
! [X21,X10,X11,X19,X16,X14,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ agent(X10,X16,X14)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP22(X10,X19)
| ~ sP23(X10,X16) ),
inference(general_splitting,[],[f188,f189_D]) ).
fof(f191,plain,
! [X10,X16,X14] :
( ~ agent(X10,X16,X14)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ sP23(X10,X16)
| sP24(X10,X14) ),
inference(cnf_transformation,[],[f191_D]) ).
fof(f191_D,definition,
! [X14,X10] :
( ! [X16] :
( ~ agent(X10,X16,X14)
| ~ event(X10,X16)
| ~ present(X10,X16)
| ~ think_believe_consider(X10,X16)
| ~ sP23(X10,X16) )
<=> ~ sP24(X10,X14) ),
introduced(definition,[new_symbols(definition,[sP24])],[general_splitting_component_introduction]) ).
fof(f192,plain,
! [X21,X10,X11,X19,X14,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP22(X10,X19)
| ~ sP24(X10,X14) ),
inference(general_splitting,[],[f190,f191_D]) ).
fof(f193,plain,
! [X10,X14,X15] :
( ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ sP24(X10,X14)
| sP25(X10,X15) ),
inference(cnf_transformation,[],[f193_D]) ).
fof(f193_D,definition,
! [X15,X10] :
( ! [X14] :
( ~ of(X10,X15,X14)
| ~ man(X10,X14)
| ~ sP24(X10,X14) )
<=> ~ sP25(X10,X15) ),
introduced(definition,[new_symbols(definition,[sP25])],[general_splitting_component_introduction]) ).
fof(f194,plain,
! [X21,X10,X11,X19,X15,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP22(X10,X19)
| ~ sP25(X10,X15) ),
inference(general_splitting,[],[f192,f193_D]) ).
fof(f195,plain,
! [X10,X15] :
( ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ sP25(X10,X15)
| sP26(X10) ),
inference(cnf_transformation,[],[f195_D]) ).
fof(f195_D,definition,
! [X10] :
( ! [X15] :
( ~ vincent_forename(X10,X15)
| ~ forename(X10,X15)
| ~ sP25(X10,X15) )
<=> ~ sP26(X10) ),
introduced(definition,[new_symbols(definition,[sP26])],[general_splitting_component_introduction]) ).
fof(f196,plain,
! [X21,X10,X11,X19,X22,X12,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X12,X11)
| ~ man(X10,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP22(X10,X19)
| ~ sP26(X10) ),
inference(general_splitting,[],[f194,f195_D]) ).
fof(f197,plain,
! [X10,X11,X12] :
( ~ of(X10,X12,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12)
| sP27(X10,X11) ),
inference(cnf_transformation,[],[f197_D]) ).
fof(f197_D,definition,
! [X11,X10] :
( ! [X12] :
( ~ of(X10,X12,X11)
| ~ vincent_forename(X10,X12)
| ~ forename(X10,X12) )
<=> ~ sP27(X10,X11) ),
introduced(definition,[new_symbols(definition,[sP27])],[general_splitting_component_introduction]) ).
fof(f198,plain,
! [X21,X10,X11,X19,X22,X25,X13,X20] :
( ~ actual_world(X10)
| ~ man(X10,X11)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ agent(X10,X21,X11)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP22(X10,X19)
| ~ sP26(X10)
| ~ sP27(X10,X11) ),
inference(general_splitting,[],[f196,f197_D]) ).
fof(f199,plain,
! [X21,X10,X11] :
( ~ agent(X10,X21,X11)
| ~ man(X10,X11)
| ~ sP27(X10,X11)
| sP28(X21,X10) ),
inference(cnf_transformation,[],[f199_D]) ).
fof(f199_D,definition,
! [X10,X21] :
( ! [X11] :
( ~ agent(X10,X21,X11)
| ~ man(X10,X11)
| ~ sP27(X10,X11) )
<=> ~ sP28(X21,X10) ),
introduced(definition,[new_symbols(definition,[sP28])],[general_splitting_component_introduction]) ).
fof(f200,plain,
! [X21,X10,X19,X22,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP22(X10,X19)
| ~ sP26(X10)
| ~ sP28(X21,X10) ),
inference(general_splitting,[],[f198,f199_D]) ).
fof(f201,plain,
! [X21,X10,X22] :
( ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ sP28(X21,X10)
| sP29(X22,X10) ),
inference(cnf_transformation,[],[f201_D]) ).
fof(f201_D,definition,
! [X10,X22] :
( ! [X21] :
( ~ theme(X10,X21,X22)
| ~ event(X10,X21)
| ~ present(X10,X21)
| ~ think_believe_consider(X10,X21)
| ~ sP28(X21,X10) )
<=> ~ sP29(X22,X10) ),
introduced(definition,[new_symbols(definition,[sP29])],[general_splitting_component_introduction]) ).
fof(f202,plain,
! [X10,X19,X22,X25,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ accessible_world(X10,X22)
| ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| ~ sP22(X10,X19)
| ~ sP26(X10)
| ~ sP29(X22,X10) ),
inference(general_splitting,[],[f200,f201_D]) ).
fof(f203,plain,
! [X19,X22,X25] :
( ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| sP30(X22,X19) ),
inference(cnf_transformation,[],[f203_D]) ).
fof(f203_D,definition,
! [X19,X22] :
( ! [X25] :
( ~ event(X22,X25)
| ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25) )
<=> ~ sP30(X22,X19) ),
introduced(definition,[new_symbols(definition,[sP30])],[general_splitting_component_introduction]) ).
fof(f204,plain,
! [X10,X19,X22,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ proposition(X10,X22)
| ~ accessible_world(X10,X22)
| ~ sP22(X10,X19)
| ~ sP26(X10)
| ~ sP29(X22,X10)
| ~ sP30(X22,X19) ),
inference(general_splitting,[],[f202,f203_D]) ).
fof(f205,plain,
! [X10,X19,X22] :
( ~ sP30(X22,X19)
| ~ accessible_world(X10,X22)
| ~ sP29(X22,X10)
| ~ proposition(X10,X22)
| sP31(X10,X19) ),
inference(cnf_transformation,[],[f205_D]) ).
fof(f205_D,definition,
! [X19,X10] :
( ! [X22] :
( ~ sP30(X22,X19)
| ~ accessible_world(X10,X22)
| ~ sP29(X22,X10)
| ~ proposition(X10,X22) )
<=> ~ sP31(X10,X19) ),
introduced(definition,[new_symbols(definition,[sP31])],[general_splitting_component_introduction]) ).
fof(f206,plain,
! [X10,X19,X13,X20] :
( ~ actual_world(X10)
| ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ sP22(X10,X19)
| ~ sP26(X10)
| ~ sP31(X10,X19) ),
inference(general_splitting,[],[f204,f205_D]) ).
fof(f207,plain,
! [X10,X19,X13] :
( ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13)
| sP32(X10,X19) ),
inference(cnf_transformation,[],[f207_D]) ).
fof(f207_D,definition,
! [X19,X10] :
( ! [X13] :
( ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| ~ forename(X10,X13) )
<=> ~ sP32(X10,X19) ),
introduced(definition,[new_symbols(definition,[sP32])],[general_splitting_component_introduction]) ).
fof(f208,plain,
! [X10,X19,X20] :
( ~ actual_world(X10)
| ~ man(X10,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ be(X10,X20,X19,X19)
| ~ sP22(X10,X19)
| ~ sP26(X10)
| ~ sP31(X10,X19)
| ~ sP32(X10,X19) ),
inference(general_splitting,[],[f206,f207_D]) ).
fof(f213,plain,
! [X10,X19,X20] :
( ~ be(X10,X20,X19,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ actual_world(X10)
| ~ sP11(X10,X19)
| ~ sP15(X10)
| ~ sP20(X10,X19)
| ~ sP21(X10,X19) ),
inference(duplicate_literal_removal,[],[f186]) ).
fof(f214,plain,
! [X10,X19,X20] :
( ~ be(X10,X20,X19,X19)
| ~ man(X10,X19)
| ~ state(X10,X20)
| ~ actual_world(X10)
| ~ sP22(X10,X19)
| ~ sP26(X10)
| ~ sP31(X10,X19)
| ~ sP32(X10,X19) ),
inference(duplicate_literal_removal,[],[f208]) ).
fof(f215,plain,
! [X17,X24] :
( ~ agent(X17,X24,sK9(X17))
| ~ present(X17,X24)
| ~ smoke(X17,X24)
| sP10(X17) ),
inference(forward_subsumption_resolution,[],[f163,f154]) ).
fof(f216,plain,
! [X10,X18,X19] :
( ~ of(X10,X18,X19)
| ~ jules_forename(X10,X18)
| sP11(X10,X19) ),
inference(forward_subsumption_resolution,[],[f165,f144]) ).
fof(f217,plain,
! [X10,X15] :
( ~ sP14(X10,X15)
| ~ vincent_forename(X10,X15)
| sP15(X10) ),
inference(forward_subsumption_resolution,[],[f173,f147]) ).
fof(f218,plain,
! [X10,X11,X12] :
( ~ of(X10,X12,X11)
| ~ vincent_forename(X10,X12)
| sP16(X10,X11) ),
inference(forward_subsumption_resolution,[],[f175,f147]) ).
fof(f219,plain,
! [X19,X22,X25] :
( ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| sP19(X22,X19) ),
inference(forward_subsumption_resolution,[],[f181,f154]) ).
fof(f220,plain,
! [X10,X19,X13] :
( ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| sP21(X10,X19) ),
inference(forward_subsumption_resolution,[],[f185,f144]) ).
fof(f221,plain,
! [X10,X18,X19] :
( ~ of(X10,X18,X19)
| ~ jules_forename(X10,X18)
| sP22(X10,X19) ),
inference(forward_subsumption_resolution,[],[f187,f144]) ).
fof(f222,plain,
! [X10,X15] :
( ~ sP25(X10,X15)
| ~ vincent_forename(X10,X15)
| sP26(X10) ),
inference(forward_subsumption_resolution,[],[f195,f147]) ).
fof(f223,plain,
! [X10,X11,X12] :
( ~ of(X10,X12,X11)
| ~ vincent_forename(X10,X12)
| sP27(X10,X11) ),
inference(forward_subsumption_resolution,[],[f197,f147]) ).
fof(f224,plain,
! [X19,X22,X25] :
( ~ agent(X22,X25,X19)
| ~ present(X22,X25)
| ~ smoke(X22,X25)
| sP30(X22,X19) ),
inference(forward_subsumption_resolution,[],[f203,f154]) ).
fof(f225,plain,
! [X10,X19,X13] :
( ~ of(X10,X13,X19)
| ~ jules_forename(X10,X13)
| sP32(X10,X19) ),
inference(forward_subsumption_resolution,[],[f207,f144]) ).
fof(f231,plain,
! [X0] :
( ~ man(sK0,X0)
| man(sK4,X0) ),
inference(resolution,[],[f131,f148]) ).
fof(f256,plain,
( ~ jules_forename(sK0,sK5)
| sP11(sK0,sK6) ),
inference(resolution,[],[f216,f126]) ).
fof(f267,plain,
sP11(sK0,sK6),
inference(forward_subsumption_resolution,[],[f256,f124]) ).
fof(f269,plain,
( ~ vincent_forename(sK0,sK2)
| sP16(sK0,sK1) ),
inference(resolution,[],[f218,f141]) ).
fof(f270,plain,
sP16(sK0,sK1),
inference(forward_subsumption_resolution,[],[f269,f139]) ).
fof(f280,plain,
( ~ jules_forename(sK0,sK5)
| sP21(sK0,sK6) ),
inference(resolution,[],[f220,f126]) ).
fof(f282,plain,
sP21(sK0,sK6),
inference(forward_subsumption_resolution,[],[f280,f124]) ).
fof(f283,plain,
( ~ jules_forename(sK0,sK5)
| sP22(sK0,sK6) ),
inference(resolution,[],[f221,f126]) ).
fof(f285,plain,
sP22(sK0,sK6),
inference(forward_subsumption_resolution,[],[f283,f124]) ).
fof(f287,plain,
( ~ vincent_forename(sK0,sK2)
| sP27(sK0,sK1) ),
inference(resolution,[],[f223,f141]) ).
fof(f288,plain,
sP27(sK0,sK1),
inference(forward_subsumption_resolution,[],[f287,f139]) ).
fof(f289,plain,
( ~ jules_forename(sK0,sK5)
| sP32(sK0,sK6) ),
inference(resolution,[],[f225,f126]) ).
fof(f291,plain,
sP32(sK0,sK6),
inference(forward_subsumption_resolution,[],[f289,f124]) ).
fof(f293,plain,
( ~ man(sK0,sK1)
| ~ sP13(sK0,sK1)
| sP14(sK0,sK2) ),
inference(resolution,[],[f171,f141]) ).
fof(f294,plain,
( ~ sP13(sK0,sK1)
| sP14(sK0,sK2) ),
inference(forward_subsumption_resolution,[],[f293,f140]) ).
fof(f297,definition,
( spl35_5
<=> sP14(sK0,sK2) ),
introduced(definition,[new_symbols(definition,[spl35_5])],[avatar_definition]) ).
fof(f299,plain,
( sP14(sK0,sK2)
| ~ spl35_5 ),
inference(avatar_component_clause,[],[f297]) ).
fof(f301,definition,
( spl35_6
<=> sP13(sK0,sK1) ),
introduced(definition,[new_symbols(definition,[spl35_6])],[avatar_definition]) ).
fof(f303,plain,
( ~ sP13(sK0,sK1)
| spl35_6 ),
inference(avatar_component_clause,[],[f301]) ).
fof(f304,plain,
( spl35_5
| ~ spl35_6 ),
inference(avatar_split_clause,[],[f294,f301,f297]) ).
fof(f314,plain,
( ~ man(sK0,sK1)
| ~ sP16(sK0,sK1)
| sP17(sK3,sK0) ),
inference(resolution,[],[f177,f136]) ).
fof(f317,plain,
( ~ sP16(sK0,sK1)
| sP17(sK3,sK0) ),
inference(forward_subsumption_resolution,[],[f314,f140]) ).
fof(f318,plain,
sP17(sK3,sK0),
inference(forward_subsumption_resolution,[],[f317,f270]) ).
fof(f320,plain,
( ~ man(sK0,sK1)
| ~ sP24(sK0,sK1)
| sP25(sK0,sK2) ),
inference(resolution,[],[f193,f141]) ).
fof(f321,plain,
( ~ sP24(sK0,sK1)
| sP25(sK0,sK2) ),
inference(forward_subsumption_resolution,[],[f320,f140]) ).
fof(f324,definition,
( spl35_9
<=> sP25(sK0,sK2) ),
introduced(definition,[new_symbols(definition,[spl35_9])],[avatar_definition]) ).
fof(f326,plain,
( sP25(sK0,sK2)
| ~ spl35_9 ),
inference(avatar_component_clause,[],[f324]) ).
fof(f328,definition,
( spl35_10
<=> sP24(sK0,sK1) ),
introduced(definition,[new_symbols(definition,[spl35_10])],[avatar_definition]) ).
fof(f330,plain,
( ~ sP24(sK0,sK1)
| spl35_10 ),
inference(avatar_component_clause,[],[f328]) ).
fof(f331,plain,
( spl35_9
| ~ spl35_10 ),
inference(avatar_split_clause,[],[f321,f328,f324]) ).
fof(f341,plain,
( ~ man(sK0,sK1)
| ~ sP27(sK0,sK1)
| sP28(sK3,sK0) ),
inference(resolution,[],[f199,f136]) ).
fof(f344,plain,
( ~ sP27(sK0,sK1)
| sP28(sK3,sK0) ),
inference(forward_subsumption_resolution,[],[f341,f140]) ).
fof(f345,plain,
sP28(sK3,sK0),
inference(forward_subsumption_resolution,[],[f344,f288]) ).
fof(f346,plain,
( ~ present(sK4,sK8(sK9(sK4)))
| ~ smoke(sK4,sK8(sK9(sK4)))
| sP10(sK4)
| ~ man(sK4,sK9(sK4)) ),
inference(resolution,[],[f215,f129]) ).
fof(f347,plain,
( ~ smoke(sK4,sK8(sK9(sK4)))
| sP10(sK4)
| ~ man(sK4,sK9(sK4)) ),
inference(forward_subsumption_resolution,[],[f346,f128]) ).
fof(f348,plain,
( sP10(sK4)
| ~ man(sK4,sK9(sK4)) ),
inference(forward_subsumption_resolution,[],[f347,f127]) ).
fof(f350,definition,
( spl35_13
<=> man(sK4,sK9(sK4)) ),
introduced(definition,[new_symbols(definition,[spl35_13])],[avatar_definition]) ).
fof(f352,plain,
( ~ man(sK4,sK9(sK4))
| spl35_13 ),
inference(avatar_component_clause,[],[f350]) ).
fof(f354,definition,
( spl35_14
<=> sP10(sK4) ),
introduced(definition,[new_symbols(definition,[spl35_14])],[avatar_definition]) ).
fof(f357,plain,
( ~ spl35_13
| spl35_14 ),
inference(avatar_split_clause,[],[f348,f354,f350]) ).
fof(f359,plain,
! [X0] :
( ~ present(sK4,sK8(X0))
| ~ smoke(sK4,sK8(X0))
| sP19(sK4,X0)
| ~ man(sK4,X0) ),
inference(resolution,[],[f219,f129]) ).
fof(f360,plain,
! [X0] :
( ~ smoke(sK4,sK8(X0))
| sP19(sK4,X0)
| ~ man(sK4,X0) ),
inference(forward_subsumption_resolution,[],[f359,f128]) ).
fof(f362,plain,
! [X0] :
( ~ man(sK4,X0)
| sP19(sK4,X0) ),
inference(forward_subsumption_resolution,[],[f360,f127]) ).
fof(f373,plain,
! [X0] :
( ~ present(sK4,sK8(X0))
| ~ smoke(sK4,sK8(X0))
| sP30(sK4,X0)
| ~ man(sK4,X0) ),
inference(resolution,[],[f224,f129]) ).
fof(f374,plain,
! [X0] :
( ~ smoke(sK4,sK8(X0))
| sP30(sK4,X0)
| ~ man(sK4,X0) ),
inference(forward_subsumption_resolution,[],[f373,f128]) ).
fof(f375,plain,
! [X0] :
( ~ man(sK4,X0)
| sP30(sK4,X0) ),
inference(forward_subsumption_resolution,[],[f374,f127]) ).
fof(f376,plain,
( ~ proposition(sK0,sK4)
| ~ accessible_world(sK0,sK4)
| ~ sP10(sK4)
| sP12(sK0,sK3) ),
inference(resolution,[],[f167,f135]) ).
fof(f377,plain,
( ~ accessible_world(sK0,sK4)
| ~ sP10(sK4)
| sP12(sK0,sK3) ),
inference(forward_subsumption_resolution,[],[f376,f137]) ).
fof(f378,plain,
( ~ sP10(sK4)
| sP12(sK0,sK3) ),
inference(forward_subsumption_resolution,[],[f377,f131]) ).
fof(f380,definition,
( spl35_17
<=> sP12(sK0,sK3) ),
introduced(definition,[new_symbols(definition,[spl35_17])],[avatar_definition]) ).
fof(f383,plain,
( spl35_17
| ~ spl35_14 ),
inference(avatar_split_clause,[],[f378,f354,f380]) ).
fof(f384,plain,
( ~ proposition(sK0,sK4)
| ~ accessible_world(sK0,sK4)
| man(sK4,sK9(sK4))
| sP23(sK0,sK3) ),
inference(resolution,[],[f189,f135]) ).
fof(f385,plain,
( ~ accessible_world(sK0,sK4)
| man(sK4,sK9(sK4))
| sP23(sK0,sK3) ),
inference(forward_subsumption_resolution,[],[f384,f137]) ).
fof(f386,plain,
( man(sK4,sK9(sK4))
| sP23(sK0,sK3) ),
inference(forward_subsumption_resolution,[],[f385,f131]) ).
fof(f387,plain,
( sP23(sK0,sK3)
| spl35_13 ),
inference(forward_subsumption_resolution,[],[f386,f352]) ).
fof(f388,plain,
( ~ event(sK0,sK3)
| ~ present(sK0,sK3)
| ~ think_believe_consider(sK0,sK3)
| ~ sP12(sK0,sK3)
| sP13(sK0,sK1) ),
inference(resolution,[],[f169,f136]) ).
fof(f391,plain,
( ~ present(sK0,sK3)
| ~ think_believe_consider(sK0,sK3)
| ~ sP12(sK0,sK3)
| sP13(sK0,sK1) ),
inference(forward_subsumption_resolution,[],[f388,f134]) ).
fof(f393,plain,
( ~ think_believe_consider(sK0,sK3)
| ~ sP12(sK0,sK3)
| sP13(sK0,sK1) ),
inference(forward_subsumption_resolution,[],[f391,f133]) ).
fof(f394,plain,
( ~ sP12(sK0,sK3)
| sP13(sK0,sK1) ),
inference(forward_subsumption_resolution,[],[f393,f132]) ).
fof(f395,plain,
( ~ sP12(sK0,sK3)
| spl35_6 ),
inference(forward_subsumption_resolution,[],[f394,f303]) ).
fof(f396,plain,
( ~ spl35_17
| spl35_6 ),
inference(avatar_split_clause,[],[f395,f301,f380]) ).
fof(f397,plain,
( ~ event(sK0,sK3)
| ~ present(sK0,sK3)
| ~ think_believe_consider(sK0,sK3)
| ~ sP17(sK3,sK0)
| sP18(sK4,sK0) ),
inference(resolution,[],[f179,f135]) ).
fof(f398,plain,
( ~ present(sK0,sK3)
| ~ think_believe_consider(sK0,sK3)
| ~ sP17(sK3,sK0)
| sP18(sK4,sK0) ),
inference(forward_subsumption_resolution,[],[f397,f134]) ).
fof(f399,plain,
( ~ think_believe_consider(sK0,sK3)
| ~ sP17(sK3,sK0)
| sP18(sK4,sK0) ),
inference(forward_subsumption_resolution,[],[f398,f133]) ).
fof(f400,plain,
( ~ sP17(sK3,sK0)
| sP18(sK4,sK0) ),
inference(forward_subsumption_resolution,[],[f399,f132]) ).
fof(f401,plain,
sP18(sK4,sK0),
inference(forward_subsumption_resolution,[],[f400,f318]) ).
fof(f402,plain,
( ~ event(sK0,sK3)
| ~ present(sK0,sK3)
| ~ think_believe_consider(sK0,sK3)
| ~ sP23(sK0,sK3)
| sP24(sK0,sK1) ),
inference(resolution,[],[f191,f136]) ).
fof(f405,plain,
( ~ present(sK0,sK3)
| ~ think_believe_consider(sK0,sK3)
| ~ sP23(sK0,sK3)
| sP24(sK0,sK1) ),
inference(forward_subsumption_resolution,[],[f402,f134]) ).
fof(f407,plain,
( ~ think_believe_consider(sK0,sK3)
| ~ sP23(sK0,sK3)
| sP24(sK0,sK1) ),
inference(forward_subsumption_resolution,[],[f405,f133]) ).
fof(f408,plain,
( ~ sP23(sK0,sK3)
| sP24(sK0,sK1) ),
inference(forward_subsumption_resolution,[],[f407,f132]) ).
fof(f409,plain,
( sP24(sK0,sK1)
| spl35_13 ),
inference(forward_subsumption_resolution,[],[f408,f387]) ).
fof(f410,plain,
( $false
| spl35_10
| spl35_13 ),
inference(forward_subsumption_resolution,[],[f409,f330]) ).
fof(f411,plain,
( spl35_10
| spl35_13 ),
inference(avatar_contradiction_clause,[],[f410]) ).
fof(f413,plain,
( ~ event(sK0,sK3)
| ~ present(sK0,sK3)
| ~ think_believe_consider(sK0,sK3)
| ~ sP28(sK3,sK0)
| sP29(sK4,sK0) ),
inference(resolution,[],[f201,f135]) ).
fof(f414,plain,
( ~ present(sK0,sK3)
| ~ think_believe_consider(sK0,sK3)
| ~ sP28(sK3,sK0)
| sP29(sK4,sK0) ),
inference(forward_subsumption_resolution,[],[f413,f134]) ).
fof(f415,plain,
( ~ think_believe_consider(sK0,sK3)
| ~ sP28(sK3,sK0)
| sP29(sK4,sK0) ),
inference(forward_subsumption_resolution,[],[f414,f133]) ).
fof(f416,plain,
( ~ sP28(sK3,sK0)
| sP29(sK4,sK0) ),
inference(forward_subsumption_resolution,[],[f415,f132]) ).
fof(f417,plain,
sP29(sK4,sK0),
inference(forward_subsumption_resolution,[],[f416,f345]) ).
fof(f418,plain,
( ~ vincent_forename(sK0,sK2)
| sP15(sK0)
| ~ spl35_5 ),
inference(resolution,[],[f299,f217]) ).
fof(f419,plain,
( sP15(sK0)
| ~ spl35_5 ),
inference(forward_subsumption_resolution,[],[f418,f139]) ).
fof(f420,plain,
( ~ man(sK0,sK6)
| ~ state(sK0,sK7)
| ~ actual_world(sK0)
| ~ sP11(sK0,sK6)
| ~ sP15(sK0)
| ~ sP20(sK0,sK6)
| ~ sP21(sK0,sK6) ),
inference(resolution,[],[f213,f120]) ).
fof(f421,plain,
( ~ state(sK0,sK7)
| ~ actual_world(sK0)
| ~ sP11(sK0,sK6)
| ~ sP15(sK0)
| ~ sP20(sK0,sK6)
| ~ sP21(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f420,f122]) ).
fof(f422,plain,
( ~ actual_world(sK0)
| ~ sP11(sK0,sK6)
| ~ sP15(sK0)
| ~ sP20(sK0,sK6)
| ~ sP21(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f421,f121]) ).
fof(f423,plain,
( ~ sP11(sK0,sK6)
| ~ sP15(sK0)
| ~ sP20(sK0,sK6)
| ~ sP21(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f422,f142]) ).
fof(f424,plain,
( ~ sP15(sK0)
| ~ sP20(sK0,sK6)
| ~ sP21(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f423,f267]) ).
fof(f425,plain,
( ~ sP20(sK0,sK6)
| ~ sP21(sK0,sK6)
| ~ spl35_5 ),
inference(forward_subsumption_resolution,[],[f424,f419]) ).
fof(f426,plain,
( ~ sP20(sK0,sK6)
| ~ spl35_5 ),
inference(forward_subsumption_resolution,[],[f425,f282]) ).
fof(f427,plain,
( ~ man(sK0,sK6)
| ~ state(sK0,sK7)
| ~ actual_world(sK0)
| ~ sP22(sK0,sK6)
| ~ sP26(sK0)
| ~ sP31(sK0,sK6)
| ~ sP32(sK0,sK6) ),
inference(resolution,[],[f214,f120]) ).
fof(f428,plain,
( ~ state(sK0,sK7)
| ~ actual_world(sK0)
| ~ sP22(sK0,sK6)
| ~ sP26(sK0)
| ~ sP31(sK0,sK6)
| ~ sP32(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f427,f122]) ).
fof(f429,plain,
( ~ actual_world(sK0)
| ~ sP22(sK0,sK6)
| ~ sP26(sK0)
| ~ sP31(sK0,sK6)
| ~ sP32(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f428,f121]) ).
fof(f430,plain,
( ~ sP22(sK0,sK6)
| ~ sP26(sK0)
| ~ sP31(sK0,sK6)
| ~ sP32(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f429,f142]) ).
fof(f431,plain,
( ~ sP26(sK0)
| ~ sP31(sK0,sK6)
| ~ sP32(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f430,f285]) ).
fof(f432,plain,
( ~ sP26(sK0)
| ~ sP31(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f431,f291]) ).
fof(f434,definition,
( spl35_18
<=> sP31(sK0,sK6) ),
introduced(definition,[new_symbols(definition,[spl35_18])],[avatar_definition]) ).
fof(f436,plain,
( ~ sP31(sK0,sK6)
| spl35_18 ),
inference(avatar_component_clause,[],[f434]) ).
fof(f438,definition,
( spl35_19
<=> sP26(sK0) ),
introduced(definition,[new_symbols(definition,[spl35_19])],[avatar_definition]) ).
fof(f441,plain,
( ~ spl35_18
| ~ spl35_19 ),
inference(avatar_split_clause,[],[f432,f438,f434]) ).
fof(f443,plain,
man(sK4,sK6),
inference(resolution,[],[f231,f122]) ).
fof(f453,plain,
sP19(sK4,sK6),
inference(resolution,[],[f362,f443]) ).
fof(f457,plain,
sP30(sK4,sK6),
inference(resolution,[],[f375,f443]) ).
fof(f469,plain,
! [X0] :
( ~ sP18(sK4,X0)
| ~ accessible_world(X0,sK4)
| ~ proposition(X0,sK4)
| sP20(X0,sK6) ),
inference(resolution,[],[f453,f183]) ).
fof(f496,plain,
! [X0] :
( ~ sP29(sK4,X0)
| ~ accessible_world(X0,sK4)
| ~ proposition(X0,sK4)
| sP31(X0,sK6) ),
inference(resolution,[],[f457,f205]) ).
fof(f785,plain,
( ~ accessible_world(sK0,sK4)
| ~ proposition(sK0,sK4)
| sP20(sK0,sK6) ),
inference(resolution,[],[f469,f401]) ).
fof(f787,plain,
( ~ proposition(sK0,sK4)
| sP20(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f785,f131]) ).
fof(f788,plain,
sP20(sK0,sK6),
inference(forward_subsumption_resolution,[],[f787,f137]) ).
fof(f789,plain,
( $false
| ~ spl35_5 ),
inference(forward_subsumption_resolution,[],[f788,f426]) ).
fof(f790,plain,
~ spl35_5,
inference(avatar_contradiction_clause,[],[f789]) ).
fof(f797,plain,
( ~ vincent_forename(sK0,sK2)
| sP26(sK0)
| ~ spl35_9 ),
inference(resolution,[],[f326,f222]) ).
fof(f798,plain,
( sP26(sK0)
| ~ spl35_9 ),
inference(forward_subsumption_resolution,[],[f797,f139]) ).
fof(f799,plain,
( spl35_19
| ~ spl35_9 ),
inference(avatar_split_clause,[],[f798,f324,f438]) ).
fof(f835,plain,
( ~ accessible_world(sK0,sK4)
| ~ proposition(sK0,sK4)
| sP31(sK0,sK6) ),
inference(resolution,[],[f496,f417]) ).
fof(f837,plain,
( ~ proposition(sK0,sK4)
| sP31(sK0,sK6) ),
inference(forward_subsumption_resolution,[],[f835,f131]) ).
fof(f838,plain,
sP31(sK0,sK6),
inference(forward_subsumption_resolution,[],[f837,f137]) ).
fof(f839,plain,
( $false
| spl35_18 ),
inference(forward_subsumption_resolution,[],[f838,f436]) ).
fof(f840,plain,
spl35_18,
inference(avatar_contradiction_clause,[],[f839]) ).
cnf(s3,plain,
( spl35_5
| ~ spl35_6 ),
inference(sat_conversion,[],[f304]) ).
cnf(s5,plain,
( spl35_9
| ~ spl35_10 ),
inference(sat_conversion,[],[f331]) ).
cnf(s7,plain,
( ~ spl35_13
| spl35_14 ),
inference(sat_conversion,[],[f357]) ).
cnf(s9,plain,
( ~ spl35_14
| spl35_17 ),
inference(sat_conversion,[],[f383]) ).
cnf(s10,plain,
( spl35_6
| ~ spl35_17 ),
inference(sat_conversion,[],[f396]) ).
cnf(s11,plain,
( spl35_10
| spl35_13 ),
inference(sat_conversion,[],[f411]) ).
cnf(s12,plain,
( ~ spl35_18
| ~ spl35_19 ),
inference(sat_conversion,[],[f441]) ).
cnf(s26,plain,
~ spl35_5,
inference(sat_conversion,[],[f790]) ).
cnf(s28,plain,
( ~ spl35_9
| spl35_19 ),
inference(sat_conversion,[],[f799]) ).
cnf(s29,plain,
spl35_18,
inference(sat_conversion,[],[f840]) ).
cnf(s31,plain,
~ spl35_19,
inference(rat,[],[s12,s29]) ).
cnf(s32,plain,
~ spl35_9,
inference(rat,[],[s28,s31]) ).
cnf(s33,plain,
~ spl35_10,
inference(rat,[],[s5,s32]) ).
cnf(s34,plain,
spl35_13,
inference(rat,[],[s11,s33]) ).
cnf(s35,plain,
spl35_14,
inference(rat,[],[s7,s34]) ).
cnf(s36,plain,
spl35_17,
inference(rat,[],[s9,s35]) ).
cnf(s37,plain,
spl35_6,
inference(rat,[],[s10,s36]) ).
cnf(s38,plain,
$false,
inference(rat,[],[s3,s37,s26]) ).
fof(f841,plain,
$false,
inference(avatar_sat_refutation,[],[s38]) ).
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03 % Problem : NLP252+1 : TPTP v9.3.1. Released v2.4.0.
% 0.00/0.06 % Command : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% 0.12/0.39 % Computer : n011.cluster.edu
% 0.12/0.39 % Model : x86_64 x86_64
% 0.12/0.39 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.39 % Memory : 8046.5625MB
% 0.12/0.39 % OS : Linux 6.8.0-71-generic
% 0.12/0.39 % CPULimit : 300
% 0.12/0.39 % WCLimit : 300
% 0.12/0.39 % DateTime : Sun Sep 27 18:36:45 UTC 2026
% 0.12/0.40 % CPUTime :
% 0.12/0.40 Running run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% 0.12/0.43 Running first-order theorem proving
% 0.12/0.43 Running: /export/starexec/sandbox2/solver/bin/vampire --input_syntax tptp --output_axiom_names on --mode casc -m 16384 --cores 7 -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 2.65/1.31 % (2678128)Detected formulas, will run a generic FOF schedule.
% 2.65/1.31 % (2678135)lrs+1010_1_anc=all:sfv=off:to=kbo:ncem=casc2026/models/loop7.pt:sil=128000:npcc=on:prc=on:sos=all:bsr=unit_only:sac=on:random_seed=549024608:i=141695:sd=1:nm=32:gsp=on:ss=included_2999 on theBenchmark for (2999ds/141695Mi)
% 2.65/1.31 % (2678134)lrs+11_1_ncem=casc2026/models/loop8.pt:sil=128000:npcc=on:lma=off:spb=units:urr=ec_only:bce=on:s2agt=64:updr=off:random_seed=2722475921:i=134677:sd=20:aac=none:nm=16:ss=included:sgt=10_2999 on theBenchmark for (2999ds/134677Mi)
% 2.65/1.31 % (2678133)lrs+10_1_ncem=casc2026/models/loop8.pt:sil=128000:tgt=full:npcc=on:drc=off:sp=weighted_frequency:spb=goal:fd=preordered:foolp=on:random_seed=2844413388:i=141193_2999 on theBenchmark for (2999ds/141193Mi)
% 2.65/1.31 % (2678137)dis-1010_2:3_sil=16000:sp=reverse_frequency:random_seed=4147750123:i=119:av=off:ss=axioms_2999 on theBenchmark for (2999ds/119Mi)
% 2.65/1.31 % (2678138)dis-1011_1_sil=16000:fde=unused:s2agt=70:random_seed=2377972925:s2a=on:i=139:gtg=position_2999 on theBenchmark for (2999ds/139Mi)
% 2.65/1.31 % (2678139)dis-21_1_sil=8000:lcm=predicate:random_seed=3088071778:st=5:avsq=on:i=129:avsqr=1,16:sd=3:aac=none:ep=RS:fsr=off:ss=included_2999 on theBenchmark for (2999ds/129Mi)
% 2.65/1.31 % (2678136)lrs+1010_1_to=lpo:sil=32000:sos=on:spb=goal_then_units:bce=on:random_seed=3400352825:i=109:sd=1:ins=1:gsp=on:ss=axioms_2999 on theBenchmark for (2999ds/109Mi)
% 2.65/1.31 % (2678136)First to succeed.
% 2.65/1.31 % (2678136)Solution written to "/export/starexec/sandbox2/tmp/vampire-proof-2678128"
% 2.65/1.31 % (2678138)Also succeeded, but the first one will report.
% 2.65/1.31 % (2678139)Instruction limit reached!
% 2.65/1.31 % (2678139)------------------------------
% 2.65/1.31 % (2678139)Version: Vampire 5.0.1 (Release build, commit ea8961452 on 2026-07-16 15:14:34 +0200)
% 2.65/1.31 % (2678139)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 2.65/1.31 % (2678139)CaDiCaL version: 2.1.3
% 2.65/1.31 % (2678139)Termination reason: Instruction limit
% 2.65/1.31 % (2678139)Termination phase: Saturation
% 2.65/1.31 % (2678139)Time elapsed: 0.048 s
% 2.65/1.31 % (2678139)Peak memory usage: 87 MB
% 2.65/1.31 % (2678139)Instructions burned: 130 (million)
% 2.65/1.31 % (2678137)Instruction limit reached!
% 2.65/1.31 % (2678137)------------------------------
% 2.65/1.31 % (2678137)Version: Vampire 5.0.1 (Release build, commit ea8961452 on 2026-07-16 15:14:34 +0200)
% 2.65/1.31 % (2678137)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 2.65/1.31 % (2678137)CaDiCaL version: 2.1.3
% 2.65/1.31 % (2678137)Termination reason: Instruction limit
% 2.65/1.31 % (2678137)Termination phase: Saturation
% 2.65/1.31 % (2678137)Time elapsed: 0.062 s
% 2.65/1.31 % (2678137)Peak memory usage: 88 MB
% 2.65/1.31 % (2678137)Instructions burned: 120 (million)
% 2.65/1.31 % (2678147)lrs+10_1_sil=8000:sp=occurrence:random_seed=3087711965:i=285:sd=3:ss=axioms:sgt=8_2997 on theBenchmark for (2997ds/285Mi)
% 2.65/1.31 % (2678147)Also succeeded, but the first one will report.
% 2.65/1.31 % (2678148)lrs+10_1_sil=32000:urr=on:br=off:random_seed=3604314728:i=157:sd=1:gtg=position:ss=axioms:sgt=8_2997 on theBenchmark for (2997ds/157Mi)
% 2.65/1.31 % (2678148)Also succeeded, but the first one will report.
% 2.65/1.31 % (2678136)Refutation found. Thanks to Tanya!
% 2.65/1.31 % SZS status Theorem for theBenchmark
% 2.65/1.31 % SZS output start Proof for theBenchmark
% See solution above
% 0.18/1.51 % (2678136)------------------------------
% 0.18/1.51 % (2678136)Version: Vampire 5.0.1 (Release build, commit ea8961452 on 2026-07-16 15:14:34 +0200)
% 0.18/1.51 % (2678136)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 0.18/1.51 % (2678136)CaDiCaL version: 2.1.3
% 0.18/1.51 % (2678136)Termination reason: Refutation
% 0.18/1.51 % (2678136)Time elapsed: 0.022 s
% 0.18/1.51 % (2678136)Peak memory usage: 89 MB
% 0.18/1.51 % (2678136)Instructions burned: 34 (million)
% 0.18/1.51 % (2678136)------------------------------
% 0.18/1.51 % (2678136)------------------------------
% 0.18/1.51 % (2678128)Success in time 0.445 s
% 0.18/1.51 % Vampire exiting
%------------------------------------------------------------------------------