TSTP Solution File: NLP258+1 by Vampire-SAT---4.8

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Vampire-SAT---4.8
% Problem  : NLP258+1 : TPTP v8.1.2. Released v2.4.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : vampire --mode casc_sat -m 16384 --cores 7 -t %d %s

% Computer : n011.cluster.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory   : 8042.1875MB
% OS       : Linux 3.10.0-693.el7.x86_64
% CPULimit : 300s
% WCLimit  : 300s
% DateTime : Sun May  5 08:07:05 EDT 2024

% Result   : Theorem 0.14s 0.41s
% Output   : Refutation 0.14s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   26
%            Number of leaves      :   28
% Syntax   : Number of formulae    :  159 (  50 unt;   0 def)
%            Number of atoms       : 1518 (   0 equ)
%            Maximal formula atoms :   65 (   9 avg)
%            Number of connectives : 2352 ( 993   ~; 916   |; 409   &)
%                                         (  21 <=>;  13  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   55 (  12 avg)
%            Maximal term depth    :    3 (   1 avg)
%            Number of predicates  :   39 (  38 usr;   1 prp; 0-4 aty)
%            Number of functors    :   10 (  10 usr;   8 con; 0-2 aty)
%            Number of variables   :  549 ( 411   !; 138   ?)

% Comments : 
%------------------------------------------------------------------------------
fof(f1665,plain,
    $false,
    inference(subsumption_resolution,[],[f1663,f1577]) ).

fof(f1577,plain,
    agent(sK7,sK1(sK7,sK2(sK7)),sK2(sK7)),
    inference(unit_resulting_resolution,[],[f1571,f195]) ).

fof(f195,plain,
    ! [X0,X1] :
      ( ~ sP0(X0,X1)
      | agent(X0,sK1(X0,X1),X1) ),
    inference(cnf_transformation,[],[f189]) ).

fof(f189,plain,
    ! [X0,X1] :
      ( ( smoke(X0,sK1(X0,X1))
        & present(X0,sK1(X0,X1))
        & agent(X0,sK1(X0,X1),X1)
        & event(X0,sK1(X0,X1)) )
      | ~ sP0(X0,X1) ),
    inference(skolemisation,[status(esa),new_symbols(skolem,[sK1])],[f187,f188]) ).

fof(f188,plain,
    ! [X0,X1] :
      ( ? [X2] :
          ( smoke(X0,X2)
          & present(X0,X2)
          & agent(X0,X2,X1)
          & event(X0,X2) )
     => ( smoke(X0,sK1(X0,X1))
        & present(X0,sK1(X0,X1))
        & agent(X0,sK1(X0,X1),X1)
        & event(X0,sK1(X0,X1)) ) ),
    introduced(choice_axiom,[]) ).

fof(f187,plain,
    ! [X0,X1] :
      ( ? [X2] :
          ( smoke(X0,X2)
          & present(X0,X2)
          & agent(X0,X2,X1)
          & event(X0,X2) )
      | ~ sP0(X0,X1) ),
    inference(rectify,[],[f186]) ).

fof(f186,plain,
    ! [X19,X23] :
      ( ? [X24] :
          ( smoke(X19,X24)
          & present(X19,X24)
          & agent(X19,X24,X23)
          & event(X19,X24) )
      | ~ sP0(X19,X23) ),
    inference(nnf_transformation,[],[f184]) ).

fof(f184,plain,
    ! [X19,X23] :
      ( ? [X24] :
          ( smoke(X19,X24)
          & present(X19,X24)
          & agent(X19,X24,X23)
          & event(X19,X24) )
      | ~ sP0(X19,X23) ),
    introduced(predicate_definition_introduction,[new_symbols(naming,[sP0])]) ).

fof(f1571,plain,
    sP0(sK7,sK2(sK7)),
    inference(unit_resulting_resolution,[],[f1548,f210]) ).

fof(f210,plain,
    ! [X23] :
      ( ~ man(sK7,X23)
      | sP0(sK7,X23) ),
    inference(cnf_transformation,[],[f193]) ).

fof(f193,plain,
    ( ! [X0] :
        ( ! [X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] :
            ( ! [X12] :
                ( ~ smoke(X11,X12)
                | ~ present(X11,X12)
                | ~ agent(X11,X12,X8)
                | ~ event(X11,X12) )
            | ~ accessible_world(X0,X11)
            | ~ think_believe_consider(X0,X10)
            | ~ present(X0,X10)
            | ~ event(X0,X10)
            | ~ theme(X0,X10,X11)
            | ~ agent(X0,X10,X3)
            | ~ proposition(X0,X11)
            | ~ be(X0,X9,X8,X8)
            | ~ state(X0,X9)
            | ~ man(X0,X8)
            | ~ forename(X0,X7)
            | ~ jules_forename(X0,X7)
            | ~ man(X0,X8)
            | ~ of(X0,X7,X8)
            | ( ! [X14] :
                  ( ~ smoke(X6,X14)
                  | ~ present(X6,X14)
                  | ~ agent(X6,X14,sK2(X6))
                  | ~ event(X6,X14) )
              & man(X6,sK2(X6)) )
            | ~ accessible_world(X0,X6)
            | ~ think_believe_consider(X0,X5)
            | ~ present(X0,X5)
            | ~ event(X0,X5)
            | ~ theme(X0,X5,X6)
            | ~ agent(X0,X5,X3)
            | ~ proposition(X0,X6)
            | ~ forename(X0,X4)
            | ~ vincent_forename(X0,X4)
            | ~ man(X0,X3)
            | ~ of(X0,X4,X3)
            | ~ forename(X0,X2)
            | ~ vincent_forename(X0,X2)
            | ~ of(X0,X2,X3)
            | ~ forename(X0,X1)
            | ~ jules_forename(X0,X1)
            | ~ of(X0,X1,X8) )
        | ~ actual_world(X0) )
    & be(sK3,sK10,sK9,sK9)
    & state(sK3,sK10)
    & man(sK3,sK9)
    & forename(sK3,sK8)
    & jules_forename(sK3,sK8)
    & man(sK3,sK9)
    & of(sK3,sK8,sK9)
    & ! [X23] :
        ( sP0(sK7,X23)
        | ~ man(sK7,X23) )
    & accessible_world(sK3,sK7)
    & think_believe_consider(sK3,sK6)
    & present(sK3,sK6)
    & event(sK3,sK6)
    & theme(sK3,sK6,sK7)
    & agent(sK3,sK6,sK4)
    & proposition(sK3,sK7)
    & forename(sK3,sK5)
    & vincent_forename(sK3,sK5)
    & man(sK3,sK4)
    & of(sK3,sK5,sK4)
    & actual_world(sK3) ),
    inference(skolemisation,[status(esa),new_symbols(skolem,[sK2,sK3,sK4,sK5,sK6,sK7,sK8,sK9,sK10])],[f185,f192,f191,f190]) ).

fof(f190,plain,
    ! [X6] :
      ( ? [X13] :
          ( ! [X14] :
              ( ~ smoke(X6,X14)
              | ~ present(X6,X14)
              | ~ agent(X6,X14,X13)
              | ~ event(X6,X14) )
          & man(X6,X13) )
     => ( ! [X14] :
            ( ~ smoke(X6,X14)
            | ~ present(X6,X14)
            | ~ agent(X6,X14,sK2(X6))
            | ~ event(X6,X14) )
        & man(X6,sK2(X6)) ) ),
    introduced(choice_axiom,[]) ).

fof(f191,plain,
    ( ? [X15] :
        ( ? [X16,X17,X18,X19,X20,X21,X22] :
            ( be(X15,X22,X21,X21)
            & state(X15,X22)
            & man(X15,X21)
            & forename(X15,X20)
            & jules_forename(X15,X20)
            & man(X15,X21)
            & of(X15,X20,X21)
            & ! [X23] :
                ( sP0(X19,X23)
                | ~ man(X19,X23) )
            & accessible_world(X15,X19)
            & think_believe_consider(X15,X18)
            & present(X15,X18)
            & event(X15,X18)
            & theme(X15,X18,X19)
            & agent(X15,X18,X16)
            & proposition(X15,X19)
            & forename(X15,X17)
            & vincent_forename(X15,X17)
            & man(X15,X16)
            & of(X15,X17,X16) )
        & actual_world(X15) )
   => ( ? [X22,X21,X20,X19,X18,X17,X16] :
          ( be(sK3,X22,X21,X21)
          & state(sK3,X22)
          & man(sK3,X21)
          & forename(sK3,X20)
          & jules_forename(sK3,X20)
          & man(sK3,X21)
          & of(sK3,X20,X21)
          & ! [X23] :
              ( sP0(X19,X23)
              | ~ man(X19,X23) )
          & accessible_world(sK3,X19)
          & think_believe_consider(sK3,X18)
          & present(sK3,X18)
          & event(sK3,X18)
          & theme(sK3,X18,X19)
          & agent(sK3,X18,X16)
          & proposition(sK3,X19)
          & forename(sK3,X17)
          & vincent_forename(sK3,X17)
          & man(sK3,X16)
          & of(sK3,X17,X16) )
      & actual_world(sK3) ) ),
    introduced(choice_axiom,[]) ).

fof(f192,plain,
    ( ? [X22,X21,X20,X19,X18,X17,X16] :
        ( be(sK3,X22,X21,X21)
        & state(sK3,X22)
        & man(sK3,X21)
        & forename(sK3,X20)
        & jules_forename(sK3,X20)
        & man(sK3,X21)
        & of(sK3,X20,X21)
        & ! [X23] :
            ( sP0(X19,X23)
            | ~ man(X19,X23) )
        & accessible_world(sK3,X19)
        & think_believe_consider(sK3,X18)
        & present(sK3,X18)
        & event(sK3,X18)
        & theme(sK3,X18,X19)
        & agent(sK3,X18,X16)
        & proposition(sK3,X19)
        & forename(sK3,X17)
        & vincent_forename(sK3,X17)
        & man(sK3,X16)
        & of(sK3,X17,X16) )
   => ( be(sK3,sK10,sK9,sK9)
      & state(sK3,sK10)
      & man(sK3,sK9)
      & forename(sK3,sK8)
      & jules_forename(sK3,sK8)
      & man(sK3,sK9)
      & of(sK3,sK8,sK9)
      & ! [X23] :
          ( sP0(sK7,X23)
          | ~ man(sK7,X23) )
      & accessible_world(sK3,sK7)
      & think_believe_consider(sK3,sK6)
      & present(sK3,sK6)
      & event(sK3,sK6)
      & theme(sK3,sK6,sK7)
      & agent(sK3,sK6,sK4)
      & proposition(sK3,sK7)
      & forename(sK3,sK5)
      & vincent_forename(sK3,sK5)
      & man(sK3,sK4)
      & of(sK3,sK5,sK4) ) ),
    introduced(choice_axiom,[]) ).

fof(f185,plain,
    ( ! [X0] :
        ( ! [X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] :
            ( ! [X12] :
                ( ~ smoke(X11,X12)
                | ~ present(X11,X12)
                | ~ agent(X11,X12,X8)
                | ~ event(X11,X12) )
            | ~ accessible_world(X0,X11)
            | ~ think_believe_consider(X0,X10)
            | ~ present(X0,X10)
            | ~ event(X0,X10)
            | ~ theme(X0,X10,X11)
            | ~ agent(X0,X10,X3)
            | ~ proposition(X0,X11)
            | ~ be(X0,X9,X8,X8)
            | ~ state(X0,X9)
            | ~ man(X0,X8)
            | ~ forename(X0,X7)
            | ~ jules_forename(X0,X7)
            | ~ man(X0,X8)
            | ~ of(X0,X7,X8)
            | ? [X13] :
                ( ! [X14] :
                    ( ~ smoke(X6,X14)
                    | ~ present(X6,X14)
                    | ~ agent(X6,X14,X13)
                    | ~ event(X6,X14) )
                & man(X6,X13) )
            | ~ accessible_world(X0,X6)
            | ~ think_believe_consider(X0,X5)
            | ~ present(X0,X5)
            | ~ event(X0,X5)
            | ~ theme(X0,X5,X6)
            | ~ agent(X0,X5,X3)
            | ~ proposition(X0,X6)
            | ~ forename(X0,X4)
            | ~ vincent_forename(X0,X4)
            | ~ man(X0,X3)
            | ~ of(X0,X4,X3)
            | ~ forename(X0,X2)
            | ~ vincent_forename(X0,X2)
            | ~ of(X0,X2,X3)
            | ~ forename(X0,X1)
            | ~ jules_forename(X0,X1)
            | ~ of(X0,X1,X8) )
        | ~ actual_world(X0) )
    & ? [X15] :
        ( ? [X16,X17,X18,X19,X20,X21,X22] :
            ( be(X15,X22,X21,X21)
            & state(X15,X22)
            & man(X15,X21)
            & forename(X15,X20)
            & jules_forename(X15,X20)
            & man(X15,X21)
            & of(X15,X20,X21)
            & ! [X23] :
                ( sP0(X19,X23)
                | ~ man(X19,X23) )
            & accessible_world(X15,X19)
            & think_believe_consider(X15,X18)
            & present(X15,X18)
            & event(X15,X18)
            & theme(X15,X18,X19)
            & agent(X15,X18,X16)
            & proposition(X15,X19)
            & forename(X15,X17)
            & vincent_forename(X15,X17)
            & man(X15,X16)
            & of(X15,X17,X16) )
        & actual_world(X15) ) ),
    inference(definition_folding,[],[f76,f184]) ).

fof(f76,plain,
    ( ! [X0] :
        ( ! [X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] :
            ( ! [X12] :
                ( ~ smoke(X11,X12)
                | ~ present(X11,X12)
                | ~ agent(X11,X12,X8)
                | ~ event(X11,X12) )
            | ~ accessible_world(X0,X11)
            | ~ think_believe_consider(X0,X10)
            | ~ present(X0,X10)
            | ~ event(X0,X10)
            | ~ theme(X0,X10,X11)
            | ~ agent(X0,X10,X3)
            | ~ proposition(X0,X11)
            | ~ be(X0,X9,X8,X8)
            | ~ state(X0,X9)
            | ~ man(X0,X8)
            | ~ forename(X0,X7)
            | ~ jules_forename(X0,X7)
            | ~ man(X0,X8)
            | ~ of(X0,X7,X8)
            | ? [X13] :
                ( ! [X14] :
                    ( ~ smoke(X6,X14)
                    | ~ present(X6,X14)
                    | ~ agent(X6,X14,X13)
                    | ~ event(X6,X14) )
                & man(X6,X13) )
            | ~ accessible_world(X0,X6)
            | ~ think_believe_consider(X0,X5)
            | ~ present(X0,X5)
            | ~ event(X0,X5)
            | ~ theme(X0,X5,X6)
            | ~ agent(X0,X5,X3)
            | ~ proposition(X0,X6)
            | ~ forename(X0,X4)
            | ~ vincent_forename(X0,X4)
            | ~ man(X0,X3)
            | ~ of(X0,X4,X3)
            | ~ forename(X0,X2)
            | ~ vincent_forename(X0,X2)
            | ~ of(X0,X2,X3)
            | ~ forename(X0,X1)
            | ~ jules_forename(X0,X1)
            | ~ of(X0,X1,X8) )
        | ~ actual_world(X0) )
    & ? [X15] :
        ( ? [X16,X17,X18,X19,X20,X21,X22] :
            ( be(X15,X22,X21,X21)
            & state(X15,X22)
            & man(X15,X21)
            & forename(X15,X20)
            & jules_forename(X15,X20)
            & man(X15,X21)
            & of(X15,X20,X21)
            & ! [X23] :
                ( ? [X24] :
                    ( smoke(X19,X24)
                    & present(X19,X24)
                    & agent(X19,X24,X23)
                    & event(X19,X24) )
                | ~ man(X19,X23) )
            & accessible_world(X15,X19)
            & think_believe_consider(X15,X18)
            & present(X15,X18)
            & event(X15,X18)
            & theme(X15,X18,X19)
            & agent(X15,X18,X16)
            & proposition(X15,X19)
            & forename(X15,X17)
            & vincent_forename(X15,X17)
            & man(X15,X16)
            & of(X15,X17,X16) )
        & actual_world(X15) ) ),
    inference(ennf_transformation,[],[f75]) ).

fof(f75,plain,
    ( ~ ? [X0] :
          ( ? [X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] :
              ( ? [X12] :
                  ( smoke(X11,X12)
                  & present(X11,X12)
                  & agent(X11,X12,X8)
                  & event(X11,X12) )
              & accessible_world(X0,X11)
              & think_believe_consider(X0,X10)
              & present(X0,X10)
              & event(X0,X10)
              & theme(X0,X10,X11)
              & agent(X0,X10,X3)
              & proposition(X0,X11)
              & be(X0,X9,X8,X8)
              & state(X0,X9)
              & man(X0,X8)
              & forename(X0,X7)
              & jules_forename(X0,X7)
              & man(X0,X8)
              & of(X0,X7,X8)
              & ! [X13] :
                  ( man(X6,X13)
                 => ? [X14] :
                      ( smoke(X6,X14)
                      & present(X6,X14)
                      & agent(X6,X14,X13)
                      & event(X6,X14) ) )
              & accessible_world(X0,X6)
              & think_believe_consider(X0,X5)
              & present(X0,X5)
              & event(X0,X5)
              & theme(X0,X5,X6)
              & agent(X0,X5,X3)
              & proposition(X0,X6)
              & forename(X0,X4)
              & vincent_forename(X0,X4)
              & man(X0,X3)
              & of(X0,X4,X3)
              & forename(X0,X2)
              & vincent_forename(X0,X2)
              & of(X0,X2,X3)
              & forename(X0,X1)
              & jules_forename(X0,X1)
              & of(X0,X1,X8) )
          & actual_world(X0) )
    & ? [X15] :
        ( ? [X16,X17,X18,X19,X20,X21,X22] :
            ( be(X15,X22,X21,X21)
            & state(X15,X22)
            & man(X15,X21)
            & forename(X15,X20)
            & jules_forename(X15,X20)
            & man(X15,X21)
            & of(X15,X20,X21)
            & ! [X23] :
                ( man(X19,X23)
               => ? [X24] :
                    ( smoke(X19,X24)
                    & present(X19,X24)
                    & agent(X19,X24,X23)
                    & event(X19,X24) ) )
            & accessible_world(X15,X19)
            & think_believe_consider(X15,X18)
            & present(X15,X18)
            & event(X15,X18)
            & theme(X15,X18,X19)
            & agent(X15,X18,X16)
            & proposition(X15,X19)
            & forename(X15,X17)
            & vincent_forename(X15,X17)
            & man(X15,X16)
            & of(X15,X17,X16) )
        & actual_world(X15) ) ),
    inference(flattening,[],[f74]) ).

fof(f74,plain,
    ~ ~ ( ~ ? [X0] :
              ( ? [X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] :
                  ( ? [X12] :
                      ( smoke(X11,X12)
                      & present(X11,X12)
                      & agent(X11,X12,X8)
                      & event(X11,X12) )
                  & accessible_world(X0,X11)
                  & think_believe_consider(X0,X10)
                  & present(X0,X10)
                  & event(X0,X10)
                  & theme(X0,X10,X11)
                  & agent(X0,X10,X3)
                  & proposition(X0,X11)
                  & be(X0,X9,X8,X8)
                  & state(X0,X9)
                  & man(X0,X8)
                  & forename(X0,X7)
                  & jules_forename(X0,X7)
                  & man(X0,X8)
                  & of(X0,X7,X8)
                  & ! [X13] :
                      ( man(X6,X13)
                     => ? [X14] :
                          ( smoke(X6,X14)
                          & present(X6,X14)
                          & agent(X6,X14,X13)
                          & event(X6,X14) ) )
                  & accessible_world(X0,X6)
                  & think_believe_consider(X0,X5)
                  & present(X0,X5)
                  & event(X0,X5)
                  & theme(X0,X5,X6)
                  & agent(X0,X5,X3)
                  & proposition(X0,X6)
                  & forename(X0,X4)
                  & vincent_forename(X0,X4)
                  & man(X0,X3)
                  & of(X0,X4,X3)
                  & forename(X0,X2)
                  & vincent_forename(X0,X2)
                  & of(X0,X2,X3)
                  & forename(X0,X1)
                  & jules_forename(X0,X1)
                  & of(X0,X1,X8) )
              & actual_world(X0) )
        & ? [X15] :
            ( ? [X16,X17,X18,X19,X20,X21,X22] :
                ( be(X15,X22,X21,X21)
                & state(X15,X22)
                & man(X15,X21)
                & forename(X15,X20)
                & jules_forename(X15,X20)
                & man(X15,X21)
                & of(X15,X20,X21)
                & ! [X23] :
                    ( man(X19,X23)
                   => ? [X24] :
                        ( smoke(X19,X24)
                        & present(X19,X24)
                        & agent(X19,X24,X23)
                        & event(X19,X24) ) )
                & accessible_world(X15,X19)
                & think_believe_consider(X15,X18)
                & present(X15,X18)
                & event(X15,X18)
                & theme(X15,X18,X19)
                & agent(X15,X18,X16)
                & proposition(X15,X19)
                & forename(X15,X17)
                & vincent_forename(X15,X17)
                & man(X15,X16)
                & of(X15,X17,X16) )
            & actual_world(X15) ) ),
    inference(rectify,[],[f73]) ).

fof(f73,negated_conjecture,
    ~ ~ ( ~ ? [X10] :
              ( ? [X11,X12,X1,X2,X3,X4,X5,X6,X7,X13,X14] :
                  ( ? [X15] :
                      ( smoke(X14,X15)
                      & present(X14,X15)
                      & agent(X14,X15,X6)
                      & event(X14,X15) )
                  & accessible_world(X10,X14)
                  & think_believe_consider(X10,X13)
                  & present(X10,X13)
                  & event(X10,X13)
                  & theme(X10,X13,X14)
                  & agent(X10,X13,X1)
                  & proposition(X10,X14)
                  & be(X10,X7,X6,X6)
                  & state(X10,X7)
                  & man(X10,X6)
                  & forename(X10,X5)
                  & jules_forename(X10,X5)
                  & man(X10,X6)
                  & of(X10,X5,X6)
                  & ! [X8] :
                      ( man(X4,X8)
                     => ? [X9] :
                          ( smoke(X4,X9)
                          & present(X4,X9)
                          & agent(X4,X9,X8)
                          & event(X4,X9) ) )
                  & accessible_world(X10,X4)
                  & think_believe_consider(X10,X3)
                  & present(X10,X3)
                  & event(X10,X3)
                  & theme(X10,X3,X4)
                  & agent(X10,X3,X1)
                  & proposition(X10,X4)
                  & forename(X10,X2)
                  & vincent_forename(X10,X2)
                  & man(X10,X1)
                  & of(X10,X2,X1)
                  & forename(X10,X12)
                  & vincent_forename(X10,X12)
                  & of(X10,X12,X1)
                  & forename(X10,X11)
                  & jules_forename(X10,X11)
                  & of(X10,X11,X6) )
              & actual_world(X10) )
        & ? [X0] :
            ( ? [X1,X2,X3,X4,X5,X6,X7] :
                ( be(X0,X7,X6,X6)
                & state(X0,X7)
                & man(X0,X6)
                & forename(X0,X5)
                & jules_forename(X0,X5)
                & man(X0,X6)
                & of(X0,X5,X6)
                & ! [X8] :
                    ( man(X4,X8)
                   => ? [X9] :
                        ( smoke(X4,X9)
                        & present(X4,X9)
                        & agent(X4,X9,X8)
                        & event(X4,X9) ) )
                & accessible_world(X0,X4)
                & think_believe_consider(X0,X3)
                & present(X0,X3)
                & event(X0,X3)
                & theme(X0,X3,X4)
                & agent(X0,X3,X1)
                & proposition(X0,X4)
                & forename(X0,X2)
                & vincent_forename(X0,X2)
                & man(X0,X1)
                & of(X0,X2,X1) )
            & actual_world(X0) ) ),
    inference(negated_conjecture,[],[f72]) ).

fof(f72,conjecture,
    ~ ( ~ ? [X10] :
            ( ? [X11,X12,X1,X2,X3,X4,X5,X6,X7,X13,X14] :
                ( ? [X15] :
                    ( smoke(X14,X15)
                    & present(X14,X15)
                    & agent(X14,X15,X6)
                    & event(X14,X15) )
                & accessible_world(X10,X14)
                & think_believe_consider(X10,X13)
                & present(X10,X13)
                & event(X10,X13)
                & theme(X10,X13,X14)
                & agent(X10,X13,X1)
                & proposition(X10,X14)
                & be(X10,X7,X6,X6)
                & state(X10,X7)
                & man(X10,X6)
                & forename(X10,X5)
                & jules_forename(X10,X5)
                & man(X10,X6)
                & of(X10,X5,X6)
                & ! [X8] :
                    ( man(X4,X8)
                   => ? [X9] :
                        ( smoke(X4,X9)
                        & present(X4,X9)
                        & agent(X4,X9,X8)
                        & event(X4,X9) ) )
                & accessible_world(X10,X4)
                & think_believe_consider(X10,X3)
                & present(X10,X3)
                & event(X10,X3)
                & theme(X10,X3,X4)
                & agent(X10,X3,X1)
                & proposition(X10,X4)
                & forename(X10,X2)
                & vincent_forename(X10,X2)
                & man(X10,X1)
                & of(X10,X2,X1)
                & forename(X10,X12)
                & vincent_forename(X10,X12)
                & of(X10,X12,X1)
                & forename(X10,X11)
                & jules_forename(X10,X11)
                & of(X10,X11,X6) )
            & actual_world(X10) )
      & ? [X0] :
          ( ? [X1,X2,X3,X4,X5,X6,X7] :
              ( be(X0,X7,X6,X6)
              & state(X0,X7)
              & man(X0,X6)
              & forename(X0,X5)
              & jules_forename(X0,X5)
              & man(X0,X6)
              & of(X0,X5,X6)
              & ! [X8] :
                  ( man(X4,X8)
                 => ? [X9] :
                      ( smoke(X4,X9)
                      & present(X4,X9)
                      & agent(X4,X9,X8)
                      & event(X4,X9) ) )
              & accessible_world(X0,X4)
              & think_believe_consider(X0,X3)
              & present(X0,X3)
              & event(X0,X3)
              & theme(X0,X3,X4)
              & agent(X0,X3,X1)
              & proposition(X0,X4)
              & forename(X0,X2)
              & vincent_forename(X0,X2)
              & man(X0,X1)
              & of(X0,X2,X1) )
          & actual_world(X0) ) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',co1) ).

fof(f1548,plain,
    man(sK7,sK2(sK7)),
    inference(unit_resulting_resolution,[],[f1541,f1501]) ).

fof(f1501,plain,
    ( sP30(sK7,sK3)
    | man(sK7,sK2(sK7)) ),
    inference(resolution,[],[f1497,f1492]) ).

fof(f1492,plain,
    ( sP29(sK6,sK3)
    | man(sK7,sK2(sK7)) ),
    inference(resolution,[],[f1484,f1477]) ).

fof(f1477,plain,
    ( sP28(sK4,sK3)
    | man(sK7,sK2(sK7)) ),
    inference(resolution,[],[f1469,f1425]) ).

fof(f1425,plain,
    ( sP24(sK3,sK6)
    | man(sK7,sK2(sK7)) ),
    inference(subsumption_resolution,[],[f1424,f203]) ).

fof(f203,plain,
    proposition(sK3,sK7),
    inference(cnf_transformation,[],[f193]) ).

fof(f1424,plain,
    ( man(sK7,sK2(sK7))
    | ~ proposition(sK3,sK7)
    | sP24(sK3,sK6) ),
    inference(subsumption_resolution,[],[f1422,f209]) ).

fof(f209,plain,
    accessible_world(sK3,sK7),
    inference(cnf_transformation,[],[f193]) ).

fof(f1422,plain,
    ( ~ accessible_world(sK3,sK7)
    | man(sK7,sK2(sK7))
    | ~ proposition(sK3,sK7)
    | sP24(sK3,sK6) ),
    inference(resolution,[],[f317,f205]) ).

fof(f205,plain,
    theme(sK3,sK6,sK7),
    inference(cnf_transformation,[],[f193]) ).

fof(f317,plain,
    ! [X0,X6,X5] :
      ( ~ theme(X0,X5,X6)
      | ~ accessible_world(X0,X6)
      | man(X6,sK2(X6))
      | ~ proposition(X0,X6)
      | sP24(X0,X5) ),
    inference(cnf_transformation,[],[f317_D]) ).

fof(f317_D,plain,
    ! [X5,X0] :
      ( ! [X6] :
          ( ~ theme(X0,X5,X6)
          | ~ accessible_world(X0,X6)
          | man(X6,sK2(X6))
          | ~ proposition(X0,X6) )
    <=> ~ sP24(X0,X5) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP24])]) ).

fof(f1469,plain,
    ( ~ sP24(sK3,sK6)
    | sP28(sK4,sK3) ),
    inference(subsumption_resolution,[],[f1468,f208]) ).

fof(f208,plain,
    think_believe_consider(sK3,sK6),
    inference(cnf_transformation,[],[f193]) ).

fof(f1468,plain,
    ( ~ think_believe_consider(sK3,sK6)
    | ~ sP24(sK3,sK6)
    | sP28(sK4,sK3) ),
    inference(subsumption_resolution,[],[f1467,f206]) ).

fof(f206,plain,
    event(sK3,sK6),
    inference(cnf_transformation,[],[f193]) ).

fof(f1467,plain,
    ( ~ event(sK3,sK6)
    | ~ think_believe_consider(sK3,sK6)
    | ~ sP24(sK3,sK6)
    | sP28(sK4,sK3) ),
    inference(subsumption_resolution,[],[f1463,f207]) ).

fof(f207,plain,
    present(sK3,sK6),
    inference(cnf_transformation,[],[f193]) ).

fof(f1463,plain,
    ( ~ present(sK3,sK6)
    | ~ event(sK3,sK6)
    | ~ think_believe_consider(sK3,sK6)
    | ~ sP24(sK3,sK6)
    | sP28(sK4,sK3) ),
    inference(resolution,[],[f325,f204]) ).

fof(f204,plain,
    agent(sK3,sK6,sK4),
    inference(cnf_transformation,[],[f193]) ).

fof(f325,plain,
    ! [X3,X0,X5] :
      ( ~ agent(X0,X5,X3)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ think_believe_consider(X0,X5)
      | ~ sP24(X0,X5)
      | sP28(X3,X0) ),
    inference(cnf_transformation,[],[f325_D]) ).

fof(f325_D,plain,
    ! [X0,X3] :
      ( ! [X5] :
          ( ~ agent(X0,X5,X3)
          | ~ present(X0,X5)
          | ~ event(X0,X5)
          | ~ think_believe_consider(X0,X5)
          | ~ sP24(X0,X5) )
    <=> ~ sP28(X3,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP28])]) ).

fof(f1484,plain,
    ( ~ sP28(sK4,sK3)
    | sP29(sK6,sK3) ),
    inference(subsumption_resolution,[],[f1483,f1359]) ).

fof(f1359,plain,
    sP27(sK4,sK3),
    inference(unit_resulting_resolution,[],[f202,f201,f199,f323]) ).

fof(f323,plain,
    ! [X3,X0,X4] :
      ( ~ of(X0,X4,X3)
      | ~ vincent_forename(X0,X4)
      | ~ forename(X0,X4)
      | sP27(X3,X0) ),
    inference(cnf_transformation,[],[f323_D]) ).

fof(f323_D,plain,
    ! [X0,X3] :
      ( ! [X4] :
          ( ~ of(X0,X4,X3)
          | ~ vincent_forename(X0,X4)
          | ~ forename(X0,X4) )
    <=> ~ sP27(X3,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP27])]) ).

fof(f199,plain,
    of(sK3,sK5,sK4),
    inference(cnf_transformation,[],[f193]) ).

fof(f201,plain,
    vincent_forename(sK3,sK5),
    inference(cnf_transformation,[],[f193]) ).

fof(f202,plain,
    forename(sK3,sK5),
    inference(cnf_transformation,[],[f193]) ).

fof(f1483,plain,
    ( ~ sP27(sK4,sK3)
    | ~ sP28(sK4,sK3)
    | sP29(sK6,sK3) ),
    inference(subsumption_resolution,[],[f1482,f1335]) ).

fof(f1335,plain,
    sP22(sK4,sK3),
    inference(unit_resulting_resolution,[],[f202,f201,f199,f313]) ).

fof(f313,plain,
    ! [X2,X3,X0] :
      ( ~ of(X0,X2,X3)
      | ~ vincent_forename(X0,X2)
      | ~ forename(X0,X2)
      | sP22(X3,X0) ),
    inference(cnf_transformation,[],[f313_D]) ).

fof(f313_D,plain,
    ! [X0,X3] :
      ( ! [X2] :
          ( ~ of(X0,X2,X3)
          | ~ vincent_forename(X0,X2)
          | ~ forename(X0,X2) )
    <=> ~ sP22(X3,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP22])]) ).

fof(f1482,plain,
    ( ~ sP22(sK4,sK3)
    | ~ sP27(sK4,sK3)
    | ~ sP28(sK4,sK3)
    | sP29(sK6,sK3) ),
    inference(subsumption_resolution,[],[f1478,f200]) ).

fof(f200,plain,
    man(sK3,sK4),
    inference(cnf_transformation,[],[f193]) ).

fof(f1478,plain,
    ( ~ man(sK3,sK4)
    | ~ sP22(sK4,sK3)
    | ~ sP27(sK4,sK3)
    | ~ sP28(sK4,sK3)
    | sP29(sK6,sK3) ),
    inference(resolution,[],[f327,f204]) ).

fof(f327,plain,
    ! [X3,X10,X0] :
      ( ~ agent(X0,X10,X3)
      | ~ man(X0,X3)
      | ~ sP22(X3,X0)
      | ~ sP27(X3,X0)
      | ~ sP28(X3,X0)
      | sP29(X10,X0) ),
    inference(cnf_transformation,[],[f327_D]) ).

fof(f327_D,plain,
    ! [X0,X10] :
      ( ! [X3] :
          ( ~ agent(X0,X10,X3)
          | ~ man(X0,X3)
          | ~ sP22(X3,X0)
          | ~ sP27(X3,X0)
          | ~ sP28(X3,X0) )
    <=> ~ sP29(X10,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP29])]) ).

fof(f1497,plain,
    ( ~ sP29(sK6,sK3)
    | sP30(sK7,sK3) ),
    inference(subsumption_resolution,[],[f1496,f208]) ).

fof(f1496,plain,
    ( ~ think_believe_consider(sK3,sK6)
    | ~ sP29(sK6,sK3)
    | sP30(sK7,sK3) ),
    inference(subsumption_resolution,[],[f1495,f206]) ).

fof(f1495,plain,
    ( ~ event(sK3,sK6)
    | ~ think_believe_consider(sK3,sK6)
    | ~ sP29(sK6,sK3)
    | sP30(sK7,sK3) ),
    inference(subsumption_resolution,[],[f1493,f207]) ).

fof(f1493,plain,
    ( ~ present(sK3,sK6)
    | ~ event(sK3,sK6)
    | ~ think_believe_consider(sK3,sK6)
    | ~ sP29(sK6,sK3)
    | sP30(sK7,sK3) ),
    inference(resolution,[],[f329,f205]) ).

fof(f329,plain,
    ! [X10,X0,X11] :
      ( ~ theme(X0,X10,X11)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ think_believe_consider(X0,X10)
      | ~ sP29(X10,X0)
      | sP30(X11,X0) ),
    inference(cnf_transformation,[],[f329_D]) ).

fof(f329_D,plain,
    ! [X0,X11] :
      ( ! [X10] :
          ( ~ theme(X0,X10,X11)
          | ~ present(X0,X10)
          | ~ event(X0,X10)
          | ~ think_believe_consider(X0,X10)
          | ~ sP29(X10,X0) )
    <=> ~ sP30(X11,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP30])]) ).

fof(f1541,plain,
    ~ sP30(sK7,sK3),
    inference(unit_resulting_resolution,[],[f1392,f215,f1351,f1279,f1343,f198,f209,f203,f338]) ).

fof(f338,plain,
    ! [X0,X11,X8] :
      ( ~ sP30(X11,X0)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ actual_world(X0)
      | ~ sP23(X0,X8)
      | ~ sP25(X0,X8)
      | ~ sP26(X0,X8)
      | ~ accessible_world(X0,X11)
      | sP31(X11,X8) ),
    inference(duplicate_literal_removal,[],[f331]) ).

fof(f331,plain,
    ! [X0,X11,X8] :
      ( ~ accessible_world(X0,X11)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ actual_world(X0)
      | ~ sP23(X0,X8)
      | ~ sP25(X0,X8)
      | ~ sP26(X0,X8)
      | ~ sP30(X11,X0)
      | sP31(X11,X8) ),
    inference(cnf_transformation,[],[f331_D]) ).

fof(f331_D,plain,
    ! [X8,X11] :
      ( ! [X0] :
          ( ~ accessible_world(X0,X11)
          | ~ proposition(X0,X11)
          | ~ man(X0,X8)
          | ~ man(X0,X8)
          | ~ actual_world(X0)
          | ~ sP23(X0,X8)
          | ~ sP25(X0,X8)
          | ~ sP26(X0,X8)
          | ~ sP30(X11,X0) )
    <=> ~ sP31(X11,X8) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP31])]) ).

fof(f198,plain,
    actual_world(sK3),
    inference(cnf_transformation,[],[f193]) ).

fof(f1343,plain,
    sP23(sK3,sK9),
    inference(unit_resulting_resolution,[],[f214,f213,f211,f315]) ).

fof(f315,plain,
    ! [X0,X1,X8] :
      ( ~ of(X0,X1,X8)
      | ~ jules_forename(X0,X1)
      | ~ forename(X0,X1)
      | sP23(X0,X8) ),
    inference(cnf_transformation,[],[f315_D]) ).

fof(f315_D,plain,
    ! [X8,X0] :
      ( ! [X1] :
          ( ~ of(X0,X1,X8)
          | ~ jules_forename(X0,X1)
          | ~ forename(X0,X1) )
    <=> ~ sP23(X0,X8) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP23])]) ).

fof(f211,plain,
    of(sK3,sK8,sK9),
    inference(cnf_transformation,[],[f193]) ).

fof(f213,plain,
    jules_forename(sK3,sK8),
    inference(cnf_transformation,[],[f193]) ).

fof(f214,plain,
    forename(sK3,sK8),
    inference(cnf_transformation,[],[f193]) ).

fof(f1279,plain,
    sP25(sK3,sK9),
    inference(unit_resulting_resolution,[],[f216,f217,f319]) ).

fof(f319,plain,
    ! [X0,X8,X9] :
      ( ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | sP25(X0,X8) ),
    inference(cnf_transformation,[],[f319_D]) ).

fof(f319_D,plain,
    ! [X8,X0] :
      ( ! [X9] :
          ( ~ be(X0,X9,X8,X8)
          | ~ state(X0,X9) )
    <=> ~ sP25(X0,X8) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP25])]) ).

fof(f217,plain,
    be(sK3,sK10,sK9,sK9),
    inference(cnf_transformation,[],[f193]) ).

fof(f216,plain,
    state(sK3,sK10),
    inference(cnf_transformation,[],[f193]) ).

fof(f1351,plain,
    sP26(sK3,sK9),
    inference(unit_resulting_resolution,[],[f214,f213,f211,f321]) ).

fof(f321,plain,
    ! [X0,X8,X7] :
      ( ~ of(X0,X7,X8)
      | ~ jules_forename(X0,X7)
      | ~ forename(X0,X7)
      | sP26(X0,X8) ),
    inference(cnf_transformation,[],[f321_D]) ).

fof(f321_D,plain,
    ! [X8,X0] :
      ( ! [X7] :
          ( ~ of(X0,X7,X8)
          | ~ jules_forename(X0,X7)
          | ~ forename(X0,X7) )
    <=> ~ sP26(X0,X8) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP26])]) ).

fof(f215,plain,
    man(sK3,sK9),
    inference(cnf_transformation,[],[f193]) ).

fof(f1392,plain,
    ~ sP31(sK7,sK9),
    inference(unit_resulting_resolution,[],[f1112,f1110,f1111,f1109,f332]) ).

fof(f332,plain,
    ! [X11,X8,X12] :
      ( ~ agent(X11,X12,X8)
      | ~ present(X11,X12)
      | ~ smoke(X11,X12)
      | ~ event(X11,X12)
      | ~ sP31(X11,X8) ),
    inference(general_splitting,[],[f330,f331_D]) ).

fof(f330,plain,
    ! [X0,X11,X8,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ actual_world(X0)
      | ~ sP23(X0,X8)
      | ~ sP25(X0,X8)
      | ~ sP26(X0,X8)
      | ~ sP30(X11,X0) ),
    inference(general_splitting,[],[f328,f329_D]) ).

fof(f328,plain,
    ! [X10,X0,X11,X8,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ actual_world(X0)
      | ~ sP23(X0,X8)
      | ~ sP25(X0,X8)
      | ~ sP26(X0,X8)
      | ~ sP29(X10,X0) ),
    inference(general_splitting,[],[f326,f327_D]) ).

fof(f326,plain,
    ! [X3,X10,X0,X11,X8,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ man(X0,X3)
      | ~ actual_world(X0)
      | ~ sP22(X3,X0)
      | ~ sP23(X0,X8)
      | ~ sP25(X0,X8)
      | ~ sP26(X0,X8)
      | ~ sP27(X3,X0)
      | ~ sP28(X3,X0) ),
    inference(general_splitting,[],[f324,f325_D]) ).

fof(f324,plain,
    ! [X3,X10,X0,X11,X8,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ agent(X0,X5,X3)
      | ~ man(X0,X3)
      | ~ actual_world(X0)
      | ~ sP22(X3,X0)
      | ~ sP23(X0,X8)
      | ~ sP24(X0,X5)
      | ~ sP25(X0,X8)
      | ~ sP26(X0,X8)
      | ~ sP27(X3,X0) ),
    inference(general_splitting,[],[f322,f323_D]) ).

fof(f322,plain,
    ! [X3,X10,X0,X11,X8,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ agent(X0,X5,X3)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ actual_world(X0)
      | ~ sP22(X3,X0)
      | ~ sP23(X0,X8)
      | ~ sP24(X0,X5)
      | ~ sP25(X0,X8)
      | ~ sP26(X0,X8) ),
    inference(general_splitting,[],[f320,f321_D]) ).

fof(f320,plain,
    ! [X3,X10,X0,X11,X8,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ agent(X0,X5,X3)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ actual_world(X0)
      | ~ sP22(X3,X0)
      | ~ sP23(X0,X8)
      | ~ sP24(X0,X5)
      | ~ sP25(X0,X8) ),
    inference(general_splitting,[],[f318,f319_D]) ).

fof(f318,plain,
    ! [X3,X10,X0,X11,X8,X9,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ agent(X0,X5,X3)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ actual_world(X0)
      | ~ sP22(X3,X0)
      | ~ sP23(X0,X8)
      | ~ sP24(X0,X5) ),
    inference(general_splitting,[],[f316,f317_D]) ).

fof(f316,plain,
    ! [X3,X10,X0,X11,X8,X6,X9,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | man(X6,sK2(X6))
      | ~ accessible_world(X0,X6)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ theme(X0,X5,X6)
      | ~ agent(X0,X5,X3)
      | ~ proposition(X0,X6)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ actual_world(X0)
      | ~ sP22(X3,X0)
      | ~ sP23(X0,X8) ),
    inference(general_splitting,[],[f314,f315_D]) ).

fof(f314,plain,
    ! [X3,X10,X0,X11,X1,X8,X6,X9,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | man(X6,sK2(X6))
      | ~ accessible_world(X0,X6)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ theme(X0,X5,X6)
      | ~ agent(X0,X5,X3)
      | ~ proposition(X0,X6)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ forename(X0,X1)
      | ~ jules_forename(X0,X1)
      | ~ of(X0,X1,X8)
      | ~ actual_world(X0)
      | ~ sP22(X3,X0) ),
    inference(general_splitting,[],[f218,f313_D]) ).

fof(f218,plain,
    ! [X2,X3,X10,X0,X11,X1,X8,X6,X9,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | man(X6,sK2(X6))
      | ~ accessible_world(X0,X6)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ theme(X0,X5,X6)
      | ~ agent(X0,X5,X3)
      | ~ proposition(X0,X6)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ forename(X0,X2)
      | ~ vincent_forename(X0,X2)
      | ~ of(X0,X2,X3)
      | ~ forename(X0,X1)
      | ~ jules_forename(X0,X1)
      | ~ of(X0,X1,X8)
      | ~ actual_world(X0) ),
    inference(cnf_transformation,[],[f193]) ).

fof(f1109,plain,
    agent(sK7,sK1(sK7,sK9),sK9),
    inference(unit_resulting_resolution,[],[f1095,f195]) ).

fof(f1095,plain,
    sP0(sK7,sK9),
    inference(unit_resulting_resolution,[],[f1087,f210]) ).

fof(f1087,plain,
    man(sK7,sK9),
    inference(unit_resulting_resolution,[],[f215,f209,f282]) ).

fof(f282,plain,
    ! [X2,X0,X1] :
      ( ~ accessible_world(X1,X2)
      | ~ man(X1,X0)
      | man(X2,X0) ),
    inference(cnf_transformation,[],[f168]) ).

fof(f168,plain,
    ! [X0,X1,X2] :
      ( man(X2,X0)
      | ~ man(X1,X0)
      | ~ accessible_world(X1,X2) ),
    inference(flattening,[],[f167]) ).

fof(f167,plain,
    ! [X0,X1,X2] :
      ( man(X2,X0)
      | ~ man(X1,X0)
      | ~ accessible_world(X1,X2) ),
    inference(ennf_transformation,[],[f49]) ).

fof(f49,axiom,
    ! [X0,X1,X2] :
      ( ( man(X1,X0)
        & accessible_world(X1,X2) )
     => man(X2,X0) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ax49) ).

fof(f1111,plain,
    present(sK7,sK1(sK7,sK9)),
    inference(unit_resulting_resolution,[],[f1095,f196]) ).

fof(f196,plain,
    ! [X0,X1] :
      ( ~ sP0(X0,X1)
      | present(X0,sK1(X0,X1)) ),
    inference(cnf_transformation,[],[f189]) ).

fof(f1110,plain,
    smoke(sK7,sK1(sK7,sK9)),
    inference(unit_resulting_resolution,[],[f1095,f197]) ).

fof(f197,plain,
    ! [X0,X1] :
      ( ~ sP0(X0,X1)
      | smoke(X0,sK1(X0,X1)) ),
    inference(cnf_transformation,[],[f189]) ).

fof(f1112,plain,
    event(sK7,sK1(sK7,sK9)),
    inference(unit_resulting_resolution,[],[f1095,f194]) ).

fof(f194,plain,
    ! [X0,X1] :
      ( ~ sP0(X0,X1)
      | event(X0,sK1(X0,X1)) ),
    inference(cnf_transformation,[],[f189]) ).

fof(f1663,plain,
    ~ agent(sK7,sK1(sK7,sK2(sK7)),sK2(sK7)),
    inference(unit_resulting_resolution,[],[f1565,f1579,f1578,f1580,f291]) ).

fof(f291,plain,
    ! [X6,X14] :
      ( ~ agent(X6,X14,sK2(X6))
      | ~ present(X6,X14)
      | ~ smoke(X6,X14)
      | ~ event(X6,X14)
      | sP11(X6) ),
    inference(cnf_transformation,[],[f291_D]) ).

fof(f291_D,plain,
    ! [X6] :
      ( ! [X14] :
          ( ~ agent(X6,X14,sK2(X6))
          | ~ present(X6,X14)
          | ~ smoke(X6,X14)
          | ~ event(X6,X14) )
    <=> ~ sP11(X6) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP11])]) ).

fof(f1580,plain,
    event(sK7,sK1(sK7,sK2(sK7))),
    inference(unit_resulting_resolution,[],[f1571,f194]) ).

fof(f1578,plain,
    smoke(sK7,sK1(sK7,sK2(sK7))),
    inference(unit_resulting_resolution,[],[f1571,f197]) ).

fof(f1579,plain,
    present(sK7,sK1(sK7,sK2(sK7))),
    inference(unit_resulting_resolution,[],[f1571,f196]) ).

fof(f1565,plain,
    ~ sP11(sK7),
    inference(unit_resulting_resolution,[],[f209,f203,f205,f1559,f297]) ).

fof(f297,plain,
    ! [X0,X6,X5] :
      ( ~ theme(X0,X5,X6)
      | ~ accessible_world(X0,X6)
      | ~ proposition(X0,X6)
      | ~ sP11(X6)
      | sP14(X0,X5) ),
    inference(cnf_transformation,[],[f297_D]) ).

fof(f297_D,plain,
    ! [X5,X0] :
      ( ! [X6] :
          ( ~ theme(X0,X5,X6)
          | ~ accessible_world(X0,X6)
          | ~ proposition(X0,X6)
          | ~ sP11(X6) )
    <=> ~ sP14(X0,X5) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP14])]) ).

fof(f1559,plain,
    ~ sP14(sK3,sK6),
    inference(unit_resulting_resolution,[],[f207,f208,f206,f204,f1553,f305]) ).

fof(f305,plain,
    ! [X3,X0,X5] :
      ( ~ agent(X0,X5,X3)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ think_believe_consider(X0,X5)
      | ~ sP14(X0,X5)
      | sP18(X3,X0) ),
    inference(cnf_transformation,[],[f305_D]) ).

fof(f305_D,plain,
    ! [X0,X3] :
      ( ! [X5] :
          ( ~ agent(X0,X5,X3)
          | ~ present(X0,X5)
          | ~ event(X0,X5)
          | ~ think_believe_consider(X0,X5)
          | ~ sP14(X0,X5) )
    <=> ~ sP18(X3,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP18])]) ).

fof(f1553,plain,
    ~ sP18(sK4,sK3),
    inference(unit_resulting_resolution,[],[f200,f1327,f1303,f204,f1547,f307]) ).

fof(f307,plain,
    ! [X3,X10,X0] :
      ( ~ agent(X0,X10,X3)
      | ~ man(X0,X3)
      | ~ sP12(X3,X0)
      | ~ sP17(X3,X0)
      | ~ sP18(X3,X0)
      | sP19(X10,X0) ),
    inference(cnf_transformation,[],[f307_D]) ).

fof(f307_D,plain,
    ! [X0,X10] :
      ( ! [X3] :
          ( ~ agent(X0,X10,X3)
          | ~ man(X0,X3)
          | ~ sP12(X3,X0)
          | ~ sP17(X3,X0)
          | ~ sP18(X3,X0) )
    <=> ~ sP19(X10,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP19])]) ).

fof(f1547,plain,
    ~ sP19(sK6,sK3),
    inference(unit_resulting_resolution,[],[f207,f208,f206,f205,f1540,f309]) ).

fof(f309,plain,
    ! [X10,X0,X11] :
      ( ~ theme(X0,X10,X11)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ think_believe_consider(X0,X10)
      | ~ sP19(X10,X0)
      | sP20(X11,X0) ),
    inference(cnf_transformation,[],[f309_D]) ).

fof(f309_D,plain,
    ! [X0,X11] :
      ( ! [X10] :
          ( ~ theme(X0,X10,X11)
          | ~ present(X0,X10)
          | ~ event(X0,X10)
          | ~ think_believe_consider(X0,X10)
          | ~ sP19(X10,X0) )
    <=> ~ sP20(X11,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP20])]) ).

fof(f1540,plain,
    ~ sP20(sK7,sK3),
    inference(unit_resulting_resolution,[],[f1384,f215,f1319,f1277,f1311,f198,f209,f203,f337]) ).

fof(f337,plain,
    ! [X0,X11,X8] :
      ( ~ sP20(X11,X0)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ actual_world(X0)
      | ~ sP13(X0,X8)
      | ~ sP15(X0,X8)
      | ~ sP16(X0,X8)
      | ~ accessible_world(X0,X11)
      | sP21(X11,X8) ),
    inference(duplicate_literal_removal,[],[f311]) ).

fof(f311,plain,
    ! [X0,X11,X8] :
      ( ~ accessible_world(X0,X11)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ actual_world(X0)
      | ~ sP13(X0,X8)
      | ~ sP15(X0,X8)
      | ~ sP16(X0,X8)
      | ~ sP20(X11,X0)
      | sP21(X11,X8) ),
    inference(cnf_transformation,[],[f311_D]) ).

fof(f311_D,plain,
    ! [X8,X11] :
      ( ! [X0] :
          ( ~ accessible_world(X0,X11)
          | ~ proposition(X0,X11)
          | ~ man(X0,X8)
          | ~ man(X0,X8)
          | ~ actual_world(X0)
          | ~ sP13(X0,X8)
          | ~ sP15(X0,X8)
          | ~ sP16(X0,X8)
          | ~ sP20(X11,X0) )
    <=> ~ sP21(X11,X8) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP21])]) ).

fof(f1311,plain,
    sP13(sK3,sK9),
    inference(unit_resulting_resolution,[],[f214,f213,f211,f295]) ).

fof(f295,plain,
    ! [X0,X1,X8] :
      ( ~ of(X0,X1,X8)
      | ~ jules_forename(X0,X1)
      | ~ forename(X0,X1)
      | sP13(X0,X8) ),
    inference(cnf_transformation,[],[f295_D]) ).

fof(f295_D,plain,
    ! [X8,X0] :
      ( ! [X1] :
          ( ~ of(X0,X1,X8)
          | ~ jules_forename(X0,X1)
          | ~ forename(X0,X1) )
    <=> ~ sP13(X0,X8) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP13])]) ).

fof(f1277,plain,
    sP15(sK3,sK9),
    inference(unit_resulting_resolution,[],[f216,f217,f299]) ).

fof(f299,plain,
    ! [X0,X8,X9] :
      ( ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | sP15(X0,X8) ),
    inference(cnf_transformation,[],[f299_D]) ).

fof(f299_D,plain,
    ! [X8,X0] :
      ( ! [X9] :
          ( ~ be(X0,X9,X8,X8)
          | ~ state(X0,X9) )
    <=> ~ sP15(X0,X8) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP15])]) ).

fof(f1319,plain,
    sP16(sK3,sK9),
    inference(unit_resulting_resolution,[],[f214,f213,f211,f301]) ).

fof(f301,plain,
    ! [X0,X8,X7] :
      ( ~ of(X0,X7,X8)
      | ~ jules_forename(X0,X7)
      | ~ forename(X0,X7)
      | sP16(X0,X8) ),
    inference(cnf_transformation,[],[f301_D]) ).

fof(f301_D,plain,
    ! [X8,X0] :
      ( ! [X7] :
          ( ~ of(X0,X7,X8)
          | ~ jules_forename(X0,X7)
          | ~ forename(X0,X7) )
    <=> ~ sP16(X0,X8) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP16])]) ).

fof(f1384,plain,
    ~ sP21(sK7,sK9),
    inference(unit_resulting_resolution,[],[f1112,f1110,f1111,f1109,f312]) ).

fof(f312,plain,
    ! [X11,X8,X12] :
      ( ~ agent(X11,X12,X8)
      | ~ present(X11,X12)
      | ~ smoke(X11,X12)
      | ~ event(X11,X12)
      | ~ sP21(X11,X8) ),
    inference(general_splitting,[],[f310,f311_D]) ).

fof(f310,plain,
    ! [X0,X11,X8,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ actual_world(X0)
      | ~ sP13(X0,X8)
      | ~ sP15(X0,X8)
      | ~ sP16(X0,X8)
      | ~ sP20(X11,X0) ),
    inference(general_splitting,[],[f308,f309_D]) ).

fof(f308,plain,
    ! [X10,X0,X11,X8,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ actual_world(X0)
      | ~ sP13(X0,X8)
      | ~ sP15(X0,X8)
      | ~ sP16(X0,X8)
      | ~ sP19(X10,X0) ),
    inference(general_splitting,[],[f306,f307_D]) ).

fof(f306,plain,
    ! [X3,X10,X0,X11,X8,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ man(X0,X3)
      | ~ actual_world(X0)
      | ~ sP12(X3,X0)
      | ~ sP13(X0,X8)
      | ~ sP15(X0,X8)
      | ~ sP16(X0,X8)
      | ~ sP17(X3,X0)
      | ~ sP18(X3,X0) ),
    inference(general_splitting,[],[f304,f305_D]) ).

fof(f304,plain,
    ! [X3,X10,X0,X11,X8,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ agent(X0,X5,X3)
      | ~ man(X0,X3)
      | ~ actual_world(X0)
      | ~ sP12(X3,X0)
      | ~ sP13(X0,X8)
      | ~ sP14(X0,X5)
      | ~ sP15(X0,X8)
      | ~ sP16(X0,X8)
      | ~ sP17(X3,X0) ),
    inference(general_splitting,[],[f302,f303_D]) ).

fof(f303,plain,
    ! [X3,X0,X4] :
      ( ~ of(X0,X4,X3)
      | ~ vincent_forename(X0,X4)
      | ~ forename(X0,X4)
      | sP17(X3,X0) ),
    inference(cnf_transformation,[],[f303_D]) ).

fof(f303_D,plain,
    ! [X0,X3] :
      ( ! [X4] :
          ( ~ of(X0,X4,X3)
          | ~ vincent_forename(X0,X4)
          | ~ forename(X0,X4) )
    <=> ~ sP17(X3,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP17])]) ).

fof(f302,plain,
    ! [X3,X10,X0,X11,X8,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ man(X0,X8)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ agent(X0,X5,X3)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ actual_world(X0)
      | ~ sP12(X3,X0)
      | ~ sP13(X0,X8)
      | ~ sP14(X0,X5)
      | ~ sP15(X0,X8)
      | ~ sP16(X0,X8) ),
    inference(general_splitting,[],[f300,f301_D]) ).

fof(f300,plain,
    ! [X3,X10,X0,X11,X8,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ agent(X0,X5,X3)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ actual_world(X0)
      | ~ sP12(X3,X0)
      | ~ sP13(X0,X8)
      | ~ sP14(X0,X5)
      | ~ sP15(X0,X8) ),
    inference(general_splitting,[],[f298,f299_D]) ).

fof(f298,plain,
    ! [X3,X10,X0,X11,X8,X9,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ agent(X0,X5,X3)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ actual_world(X0)
      | ~ sP12(X3,X0)
      | ~ sP13(X0,X8)
      | ~ sP14(X0,X5) ),
    inference(general_splitting,[],[f296,f297_D]) ).

fof(f296,plain,
    ! [X3,X10,X0,X11,X8,X6,X9,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | ~ accessible_world(X0,X6)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ theme(X0,X5,X6)
      | ~ agent(X0,X5,X3)
      | ~ proposition(X0,X6)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ actual_world(X0)
      | ~ sP11(X6)
      | ~ sP12(X3,X0)
      | ~ sP13(X0,X8) ),
    inference(general_splitting,[],[f294,f295_D]) ).

fof(f294,plain,
    ! [X3,X10,X0,X11,X1,X8,X6,X9,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | ~ accessible_world(X0,X6)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ theme(X0,X5,X6)
      | ~ agent(X0,X5,X3)
      | ~ proposition(X0,X6)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ forename(X0,X1)
      | ~ jules_forename(X0,X1)
      | ~ of(X0,X1,X8)
      | ~ actual_world(X0)
      | ~ sP11(X6)
      | ~ sP12(X3,X0) ),
    inference(general_splitting,[],[f292,f293_D]) ).

fof(f293,plain,
    ! [X2,X3,X0] :
      ( ~ of(X0,X2,X3)
      | ~ vincent_forename(X0,X2)
      | ~ forename(X0,X2)
      | sP12(X3,X0) ),
    inference(cnf_transformation,[],[f293_D]) ).

fof(f293_D,plain,
    ! [X0,X3] :
      ( ! [X2] :
          ( ~ of(X0,X2,X3)
          | ~ vincent_forename(X0,X2)
          | ~ forename(X0,X2) )
    <=> ~ sP12(X3,X0) ),
    introduced(general_splitting_component_introduction,[new_symbols(naming,[sP12])]) ).

fof(f292,plain,
    ! [X2,X3,X10,X0,X11,X1,X8,X6,X9,X7,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | ~ accessible_world(X0,X6)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ theme(X0,X5,X6)
      | ~ agent(X0,X5,X3)
      | ~ proposition(X0,X6)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ forename(X0,X2)
      | ~ vincent_forename(X0,X2)
      | ~ of(X0,X2,X3)
      | ~ forename(X0,X1)
      | ~ jules_forename(X0,X1)
      | ~ of(X0,X1,X8)
      | ~ actual_world(X0)
      | ~ sP11(X6) ),
    inference(general_splitting,[],[f219,f291_D]) ).

fof(f219,plain,
    ! [X2,X3,X10,X0,X11,X1,X8,X6,X9,X7,X14,X4,X5,X12] :
      ( ~ smoke(X11,X12)
      | ~ present(X11,X12)
      | ~ agent(X11,X12,X8)
      | ~ event(X11,X12)
      | ~ accessible_world(X0,X11)
      | ~ think_believe_consider(X0,X10)
      | ~ present(X0,X10)
      | ~ event(X0,X10)
      | ~ theme(X0,X10,X11)
      | ~ agent(X0,X10,X3)
      | ~ proposition(X0,X11)
      | ~ be(X0,X9,X8,X8)
      | ~ state(X0,X9)
      | ~ man(X0,X8)
      | ~ forename(X0,X7)
      | ~ jules_forename(X0,X7)
      | ~ man(X0,X8)
      | ~ of(X0,X7,X8)
      | ~ smoke(X6,X14)
      | ~ present(X6,X14)
      | ~ agent(X6,X14,sK2(X6))
      | ~ event(X6,X14)
      | ~ accessible_world(X0,X6)
      | ~ think_believe_consider(X0,X5)
      | ~ present(X0,X5)
      | ~ event(X0,X5)
      | ~ theme(X0,X5,X6)
      | ~ agent(X0,X5,X3)
      | ~ proposition(X0,X6)
      | ~ forename(X0,X4)
      | ~ vincent_forename(X0,X4)
      | ~ man(X0,X3)
      | ~ of(X0,X4,X3)
      | ~ forename(X0,X2)
      | ~ vincent_forename(X0,X2)
      | ~ of(X0,X2,X3)
      | ~ forename(X0,X1)
      | ~ jules_forename(X0,X1)
      | ~ of(X0,X1,X8)
      | ~ actual_world(X0) ),
    inference(cnf_transformation,[],[f193]) ).

fof(f1303,plain,
    sP12(sK4,sK3),
    inference(unit_resulting_resolution,[],[f202,f201,f199,f293]) ).

fof(f1327,plain,
    sP17(sK4,sK3),
    inference(unit_resulting_resolution,[],[f202,f201,f199,f303]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.07/0.12  % Problem    : NLP258+1 : TPTP v8.1.2. Released v2.4.0.
% 0.07/0.14  % Command    : vampire --mode casc_sat -m 16384 --cores 7 -t %d %s
% 0.14/0.35  % Computer : n011.cluster.edu
% 0.14/0.35  % Model    : x86_64 x86_64
% 0.14/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.14/0.35  % Memory   : 8042.1875MB
% 0.14/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.14/0.35  % CPULimit   : 300
% 0.14/0.35  % WCLimit    : 300
% 0.14/0.35  % DateTime   : Fri May  3 12:42:19 EDT 2024
% 0.14/0.35  % CPUTime    : 
% 0.14/0.35  % (2779)Running in auto input_syntax mode. Trying TPTP
% 0.14/0.37  % (2785)fmb+10_1_bce=on:fmbsr=1.5:nm=32_533 on theBenchmark for (533ds/0Mi)
% 0.14/0.37  % (2784)WARNING: value z3 for option sas not known
% 0.14/0.37  TRYING [1]
% 0.14/0.37  TRYING [2]
% 0.14/0.37  % (2782)fmb+10_1_bce=on:fmbas=function:fmbsr=1.2:fde=unused:nm=0_846 on theBenchmark for (846ds/0Mi)
% 0.14/0.37  % (2786)ott+10_10:1_add=off:afr=on:amm=off:anc=all:bd=off:bs=on:fsr=off:irw=on:lma=on:msp=off:nm=4:nwc=4.0:sac=on:sp=reverse_frequency_531 on theBenchmark for (531ds/0Mi)
% 0.14/0.37  % (2784)dis+2_11_add=large:afr=on:amm=off:bd=off:bce=on:fsd=off:fde=none:gs=on:gsaa=full_model:gsem=off:irw=on:msp=off:nm=4:nwc=1.3:sas=z3:sims=off:sac=on:sp=reverse_arity_569 on theBenchmark for (569ds/0Mi)
% 0.14/0.37  % (2783)fmb+10_1_bce=on:fmbdsb=on:fmbes=contour:fmbswr=3:fde=none:nm=0_793 on theBenchmark for (793ds/0Mi)
% 0.14/0.37  % (2787)ott-10_8_av=off:bd=preordered:bs=on:fsd=off:fsr=off:fde=unused:irw=on:lcm=predicate:lma=on:nm=4:nwc=1.7:sp=frequency_522 on theBenchmark for (522ds/0Mi)
% 0.14/0.37  % (2788)ott+1_64_av=off:bd=off:bce=on:fsd=off:fde=unused:gsp=on:irw=on:lcm=predicate:lma=on:nm=2:nwc=1.1:sims=off:urr=on_497 on theBenchmark for (497ds/0Mi)
% 0.14/0.38  TRYING [3]
% 0.14/0.38  TRYING [1]
% 0.14/0.38  TRYING [2]
% 0.14/0.38  TRYING [4]
% 0.14/0.39  TRYING [3]
% 0.14/0.40  TRYING [4]
% 0.14/0.40  TRYING [5]
% 0.14/0.40  % (2788)First to succeed.
% 0.14/0.41  % (2788)Solution written to "/export/starexec/sandbox2/tmp/vampire-proof-2779"
% 0.14/0.41  % (2788)Refutation found. Thanks to Tanya!
% 0.14/0.41  % SZS status Theorem for theBenchmark
% 0.14/0.41  % SZS output start Proof for theBenchmark
% See solution above
% 0.14/0.41  % (2788)------------------------------
% 0.14/0.41  % (2788)Version: Vampire 4.8 (commit 3a798227e on 2024-05-03 07:42:47 +0200)
% 0.14/0.41  % (2788)Termination reason: Refutation
% 0.14/0.41  
% 0.14/0.41  % (2788)Memory used [KB]: 1412
% 0.14/0.41  % (2788)Time elapsed: 0.034 s
% 0.14/0.41  % (2788)Instructions burned: 63 (million)
% 0.14/0.41  % (2779)Success in time 0.052 s
%------------------------------------------------------------------------------