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LisaST---0.9.THM-CRf.s

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%------------------------------------------------------------------------------
% File     : LisaST---0.9
% Problem  : CSR033+3 : TPTP v9.3.1. Released v3.4.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : casc-portfolio.sh -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p

% Computer : n019.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 : Sun Sep 27 07:03:48 AM UTC 2026

% Result   : Theorem 62.76s 9.11s
% Output   : CNFRefutation 62.76s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :    8
%            Number of leaves      :   13
% Syntax   : Number of formulae    :   52 (  20 unt;   0 def)
%            Number of atoms       :   93 (   0 equ)
%            Maximal formula atoms :    3 (   1 avg)
%            Number of connectives :   71 (  30   ~;  27   |;   4   &)
%                                         (   0 <=>;  10  =>;   0  <=;   0 <~>)
%            Maximal formula depth :    6 (   2 avg)
%            Maximal term depth    :    1 (   1 avg)
%            Number of predicates  :    6 (   5 usr;   1 prp; 0-2 aty)
%            Number of functors    :   10 (  10 usr;  10 con; 0-0 aty)
%            Number of variables   :   20 (   0 sgn   7   !;   0   ?)

% Comments : 
%------------------------------------------------------------------------------
fof(ax2_232,axiom,
    genlmt('c$utptpgeo$uspindlecollectormt','c$utptpgeo$umember2$umt') ).

fof(ax2_438,axiom,
    ( mtvisible('c$utptpgeo$umember2$umt')
   => geographicalsubregions('c$ugeoregion$ul2$ux8$uy2','c$ugeoregion$ul3$ux25$uy7') ) ).

fof(ax2_1039,axiom,
    ( mtvisible('c$utptpgeo$umember2$umt')
   => geographicalsubregions('c$ugeoregion$ul1$ux2$uy0','c$ugeoregion$ul2$ux8$uy2') ) ).

fof(ax2_1111,axiom,
    genlmt('c$utptpgeo$uspindleheadmt','c$uworldgeographymt') ).

fof(ax2_1935,axiom,
    ! [X0,X1] :
      ( geographicalsubregions(X0,X1)
     => inregion(X1,X0) ) ).

fof(ax2_2024,axiom,
    ( mtvisible('c$uworldgeographymt')
   => 'geolevel$u1'('c$ugeoregion$ul1$ux2$uy0') ) ).

fof(ax2_2217,axiom,
    genlmt('c$utptpgeo$uspindlecollectormt','c$utptpgeo$umember4$umt') ).

fof(ax2_2525,axiom,
    genlmt('c$utptpgeo$umember4$umt','c$utptpgeo$uspindleheadmt') ).

fof(ax2_2573,axiom,
    ( mtvisible('c$utptpgeo$umember2$umt')
   => geographicalsubregions('c$ugeoregion$ul3$ux25$uy7','c$ugeoregion$ul4$ux76$uy23') ) ).

fof(ax2_2962,axiom,
    ( mtvisible('c$utptpgeo$umember2$umt')
   => inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul4$ux76$uy23') ) ).

fof(ax2_7302,axiom,
    ! [X0,X1,X2] :
      ( ( inregion(X1,X2)
        & inregion(X0,X1) )
     => inregion(X0,X2) ) ).

fof(ax2_7997,axiom,
    ! [X0,X1] :
      ( ( genlmt(X0,X1)
        & mtvisible(X0) )
     => mtvisible(X1) ) ).

fof(query133,conjecture,
    ( mtvisible('c$utptpgeo$uspindlecollectormt')
   => ( 'geolevel$u1'('c$ugeoregion$ul1$ux2$uy0')
      & inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul1$ux2$uy0') ) ) ).

fof(negated_conjecture,negated_conjecture,
    ~ ( mtvisible('c$utptpgeo$uspindlecollectormt')
     => ( 'geolevel$u1'('c$ugeoregion$ul1$ux2$uy0')
        & inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul1$ux2$uy0') ) ),
    inference(negate_conjecture,[status(cth)],[query133]) ).

cnf(c3,plain,
    genlmt('c$utptpgeo$uspindlecollectormt','c$utptpgeo$umember2$umt'),
    inference(clausification,[status(esa)],[ax2_232]) ).

cnf(c4,plain,
    ( geographicalsubregions('c$ugeoregion$ul2$ux8$uy2','c$ugeoregion$ul3$ux25$uy7')
    | ~ mtvisible('c$utptpgeo$umember2$umt') ),
    inference(clausification,[status(esa)],[ax2_438]) ).

cnf(c8,plain,
    ( geographicalsubregions('c$ugeoregion$ul1$ux2$uy0','c$ugeoregion$ul2$ux8$uy2')
    | ~ mtvisible('c$utptpgeo$umember2$umt') ),
    inference(clausification,[status(esa)],[ax2_1039]) ).

cnf(c10,plain,
    genlmt('c$utptpgeo$uspindleheadmt','c$uworldgeographymt'),
    inference(clausification,[status(esa)],[ax2_1111]) ).

cnf(c18,plain,
    ( inregion(X1,X0)
    | ~ geographicalsubregions(X0,X1) ),
    inference(clausification,[status(esa)],[ax2_1935]) ).

cnf(c19,plain,
    ( 'geolevel$u1'('c$ugeoregion$ul1$ux2$uy0')
    | ~ mtvisible('c$uworldgeographymt') ),
    inference(clausification,[status(esa)],[ax2_2024]) ).

cnf(c20,plain,
    genlmt('c$utptpgeo$uspindlecollectormt','c$utptpgeo$umember4$umt'),
    inference(clausification,[status(esa)],[ax2_2217]) ).

cnf(c24,plain,
    genlmt('c$utptpgeo$umember4$umt','c$utptpgeo$uspindleheadmt'),
    inference(clausification,[status(esa)],[ax2_2525]) ).

cnf(c25,plain,
    ( geographicalsubregions('c$ugeoregion$ul3$ux25$uy7','c$ugeoregion$ul4$ux76$uy23')
    | ~ mtvisible('c$utptpgeo$umember2$umt') ),
    inference(clausification,[status(esa)],[ax2_2573]) ).

cnf(c33,plain,
    ( inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul4$ux76$uy23')
    | ~ mtvisible('c$utptpgeo$umember2$umt') ),
    inference(clausification,[status(esa)],[ax2_2962]) ).

cnf(c52,plain,
    ( inregion(X0,X2)
    | ~ inregion(X1,X2)
    | ~ inregion(X0,X1) ),
    inference(clausification,[status(esa)],[ax2_7302]) ).

cnf(c72,plain,
    ( mtvisible(X1)
    | ~ genlmt(X0,X1)
    | ~ mtvisible(X0) ),
    inference(clausification,[status(esa)],[ax2_7997]) ).

cnf(c74,plain,
    mtvisible('c$utptpgeo$uspindlecollectormt'),
    inference(clausification,[status(esa)],[negated_conjecture]) ).

cnf(c75,plain,
    ( ~ 'geolevel$u1'('c$ugeoregion$ul1$ux2$uy0')
    | ~ inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul1$ux2$uy0') ),
    inference(clausification,[status(esa)],[negated_conjecture]) ).

cnf(d0,plain,
    ( ~ mtvisible('c$utptpgeo$umember2$umt')
    | inregion('c$ugeoregion$ul2$ux8$uy2','c$ugeoregion$ul1$ux2$uy0') ),
    inference(resolution,[status(thm)],[c18,c8]) ).

cnf(d1,plain,
    ( ~ inregion(X0,'c$ugeoregion$ul2$ux8$uy2')
    | inregion(X0,'c$ugeoregion$ul1$ux2$uy0')
    | ~ mtvisible('c$utptpgeo$umember2$umt') ),
    inference(resolution,[status(thm)],[d0,c52]) ).

cnf(d2,plain,
    ( ~ mtvisible('c$utptpgeo$uspindlecollectormt')
    | mtvisible('c$utptpgeo$umember2$umt') ),
    inference(resolution,[status(thm)],[c72,c3]) ).

cnf(d3,plain,
    mtvisible('c$utptpgeo$umember2$umt'),
    inference(resolution,[status(thm)],[c74,d2]) ).

cnf(d4,plain,
    ( inregion(X0,'c$ugeoregion$ul1$ux2$uy0')
    | ~ inregion(X0,'c$ugeoregion$ul2$ux8$uy2') ),
    inference(resolution,[status(thm)],[d3,d1]) ).

cnf(d5,plain,
    ( ~ mtvisible('c$utptpgeo$umember2$umt')
    | inregion('c$ugeoregion$ul3$ux25$uy7','c$ugeoregion$ul2$ux8$uy2') ),
    inference(resolution,[status(thm)],[c18,c4]) ).

cnf(d6,plain,
    ( ~ inregion(X0,'c$ugeoregion$ul3$ux25$uy7')
    | inregion(X0,'c$ugeoregion$ul2$ux8$uy2')
    | ~ mtvisible('c$utptpgeo$umember2$umt') ),
    inference(resolution,[status(thm)],[d5,c52]) ).

cnf(d7,plain,
    ( ~ inregion(X0,'c$ugeoregion$ul3$ux25$uy7')
    | inregion(X0,'c$ugeoregion$ul2$ux8$uy2') ),
    inference(resolution,[status(thm)],[d3,d6]) ).

cnf(d8,plain,
    inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul4$ux76$uy23'),
    inference(resolution,[status(thm)],[d3,c33]) ).

cnf(d9,plain,
    ( inregion('c$ugeoregion$ul4$ux76$uy23','c$ugeoregion$ul3$ux25$uy7')
    | ~ mtvisible('c$utptpgeo$umember2$umt') ),
    inference(resolution,[status(thm)],[c25,c18]) ).

cnf(d10,plain,
    ( ~ inregion(X0,'c$ugeoregion$ul4$ux76$uy23')
    | inregion(X0,'c$ugeoregion$ul3$ux25$uy7')
    | ~ mtvisible('c$utptpgeo$umember2$umt') ),
    inference(resolution,[status(thm)],[d9,c52]) ).

cnf(d11,plain,
    ( ~ inregion(X0,'c$ugeoregion$ul4$ux76$uy23')
    | inregion(X0,'c$ugeoregion$ul3$ux25$uy7') ),
    inference(resolution,[status(thm)],[d3,d10]) ).

cnf(d12,plain,
    inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul3$ux25$uy7'),
    inference(resolution,[status(thm)],[d11,d8]) ).

cnf(d13,plain,
    inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul2$ux8$uy2'),
    inference(resolution,[status(thm)],[d12,d7]) ).

cnf(d14,plain,
    inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul1$ux2$uy0'),
    inference(resolution,[status(thm)],[d13,d4]) ).

cnf(d15,plain,
    ( ~ mtvisible('c$utptpgeo$uspindleheadmt')
    | mtvisible('c$uworldgeographymt') ),
    inference(resolution,[status(thm)],[c72,c10]) ).

cnf(d16,plain,
    ( ~ mtvisible('c$utptpgeo$umember4$umt')
    | mtvisible('c$utptpgeo$uspindleheadmt') ),
    inference(resolution,[status(thm)],[c72,c24]) ).

cnf(d17,plain,
    ( ~ mtvisible('c$utptpgeo$uspindlecollectormt')
    | mtvisible('c$utptpgeo$umember4$umt') ),
    inference(resolution,[status(thm)],[c72,c20]) ).

cnf(d18,plain,
    mtvisible('c$utptpgeo$umember4$umt'),
    inference(resolution,[status(thm)],[c74,d17]) ).

cnf(d19,plain,
    mtvisible('c$utptpgeo$uspindleheadmt'),
    inference(resolution,[status(thm)],[d18,d16]) ).

cnf(d20,plain,
    mtvisible('c$uworldgeographymt'),
    inference(resolution,[status(thm)],[d19,d15]) ).

cnf(d21,plain,
    'geolevel$u1'('c$ugeoregion$ul1$ux2$uy0'),
    inference(resolution,[status(thm)],[d20,c19]) ).

cnf(d22,plain,
    ~ inregion('c$ugeolocation$ux76$uy23','c$ugeoregion$ul1$ux2$uy0'),
    inference(resolution,[status(thm)],[d21,c75]) ).

cnf(d23,plain,
    $false,
    inference(resolution,[status(thm)],[d22,d14]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03  % Problem  : CSR033+3 : TPTP v9.3.1. Released v3.4.0.
% 0.00/0.04  % Command  : casc-portfolio.sh -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.10/0.38  % Computer : n019.cluster.edu
% 0.10/0.38  % Model    : x86_64 x86_64
% 0.10/0.38  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.10/0.38  % Memory   : 8046.5625MB
% 0.10/0.38  % OS       : Linux 6.8.0-71-generic
% 0.10/0.38  % CPULimit : 300
% 0.10/0.38  % WCLimit  : 300
% 0.10/0.38  % DateTime : Sun Sep 27 00:03:48 UTC 2026
% 0.10/0.38  % CPUTime  : 
% 0.10/0.38  Running casc-portfolio.sh -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 62.76/9.11  % SZS status Theorem for theBenchmark.p
% 62.76/9.11  % SZS output start CNFRefutation for theBenchmark.p
% See solution above
%------------------------------------------------------------------------------