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Vampire-SAT---5.0.1.THM-Ref.s

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%------------------------------------------------------------------------------
% File     : Vampire-SAT---5.0.1
% Problem  : CSR033+1 : TPTP v9.3.1. Released v3.4.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 SAT

% Computer : n015.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 09:44:27 AM UTC 2026

% Result   : Theorem 0.21s 0.27s
% Output   : Refutation 0.21s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   16
%            Number of leaves      :   23
% Syntax   : Number of formulae    :  119 (  26 unt;   8 def)
%            Number of atoms       :  257 (   0 equ)
%            Maximal formula atoms :    6 (   2 avg)
%            Number of connectives :  241 ( 103   ~; 111   |;   7   &)
%                                         (   8 <=>;  12  =>;   0  <=;   0 <~>)
%            Maximal formula depth :    7 (   3 avg)
%            Maximal term depth    :    1 (   1 avg)
%            Number of predicates  :   14 (  13 usr;   9 prp; 0-2 aty)
%            Number of functors    :   10 (  10 usr;  10 con; 0-0 aty)
%            Number of variables   :   63 (   0 sgn  63   !;   0   ?)

% Comments : 
%------------------------------------------------------------------------------
fof(f5,axiom,
    ! [X0,X1] :
      ( geographicalsubregions(X0,X1)
     => inregion(X1,X0) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just5) ).

fof(f8,axiom,
    genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just8) ).

fof(f9,axiom,
    genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member2_mt),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just9) ).

fof(f10,axiom,
    genlmt(c_tptpgeo_member8_mt,c_tptpgeo_spindleheadmt),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just10) ).

fof(f11,axiom,
    genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member8_mt),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just11) ).

fof(f12,axiom,
    ( mtvisible(c_worldgeographymt)
   => geolevel_1(c_georegion_l1_x2_y0) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just12) ).

fof(f13,axiom,
    ( mtvisible(c_tptpgeo_member2_mt)
   => geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just13) ).

fof(f14,axiom,
    ( mtvisible(c_tptpgeo_member2_mt)
   => geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just14) ).

fof(f15,axiom,
    ( mtvisible(c_tptpgeo_member2_mt)
   => geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just15) ).

fof(f16,axiom,
    ( mtvisible(c_tptpgeo_member2_mt)
   => inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just16) ).

fof(f35,axiom,
    ! [X0,X1,X2] :
      ( ( geographicalsubregions(X0,X1)
        & geographicalsubregions(X1,X2) )
     => geographicalsubregions(X0,X2) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just35) ).

fof(f45,axiom,
    ! [X0,X1,X2] :
      ( ( inregion(X0,X1)
        & inregion(X1,X2) )
     => inregion(X0,X2) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just45) ).

fof(f53,axiom,
    ! [X0,X1] :
      ( ( mtvisible(X0)
        & genlmt(X0,X1) )
     => mtvisible(X1) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just53) ).

fof(f58,axiom,
    ! [X0,X1,X2] :
      ( ( genlmt(X0,X1)
        & genlmt(X1,X2) )
     => genlmt(X0,X2) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',just58) ).

fof(f62,conjecture,
    ( mtvisible(c_tptpgeo_spindlecollectormt)
   => ( inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0)
      & geolevel_1(c_georegion_l1_x2_y0) ) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',query33) ).

fof(f63,negated_conjecture,
    ~ ( mtvisible(c_tptpgeo_spindlecollectormt)
     => ( inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0)
        & geolevel_1(c_georegion_l1_x2_y0) ) ),
    inference(negated_conjecture,[status(cth)],[f62]) ).

fof(f75,plain,
    ! [X0,X1] :
      ( inregion(X1,X0)
      | ~ geographicalsubregions(X0,X1) ),
    inference(ennf_transformation,[],[f5]) ).

fof(f76,plain,
    ( geolevel_1(c_georegion_l1_x2_y0)
    | ~ mtvisible(c_worldgeographymt) ),
    inference(ennf_transformation,[],[f12]) ).

fof(f77,plain,
    ( geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2)
    | ~ mtvisible(c_tptpgeo_member2_mt) ),
    inference(ennf_transformation,[],[f13]) ).

fof(f78,plain,
    ( geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7)
    | ~ mtvisible(c_tptpgeo_member2_mt) ),
    inference(ennf_transformation,[],[f14]) ).

fof(f79,plain,
    ( geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23)
    | ~ mtvisible(c_tptpgeo_member2_mt) ),
    inference(ennf_transformation,[],[f15]) ).

fof(f80,plain,
    ( inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23)
    | ~ mtvisible(c_tptpgeo_member2_mt) ),
    inference(ennf_transformation,[],[f16]) ).

fof(f97,plain,
    ! [X0,X1,X2] :
      ( geographicalsubregions(X0,X2)
      | ~ geographicalsubregions(X0,X1)
      | ~ geographicalsubregions(X1,X2) ),
    inference(ennf_transformation,[],[f35]) ).

fof(f98,plain,
    ! [X0,X1,X2] :
      ( geographicalsubregions(X0,X2)
      | ~ geographicalsubregions(X0,X1)
      | ~ geographicalsubregions(X1,X2) ),
    inference(flattening,[],[f97]) ).

fof(f108,plain,
    ! [X0,X1,X2] :
      ( inregion(X0,X2)
      | ~ inregion(X0,X1)
      | ~ inregion(X1,X2) ),
    inference(ennf_transformation,[],[f45]) ).

fof(f109,plain,
    ! [X0,X1,X2] :
      ( inregion(X0,X2)
      | ~ inregion(X0,X1)
      | ~ inregion(X1,X2) ),
    inference(flattening,[],[f108]) ).

fof(f111,plain,
    ! [X0,X1] :
      ( mtvisible(X1)
      | ~ mtvisible(X0)
      | ~ genlmt(X0,X1) ),
    inference(ennf_transformation,[],[f53]) ).

fof(f112,plain,
    ! [X0,X1] :
      ( mtvisible(X1)
      | ~ mtvisible(X0)
      | ~ genlmt(X0,X1) ),
    inference(flattening,[],[f111]) ).

fof(f117,plain,
    ! [X0,X1,X2] :
      ( genlmt(X0,X2)
      | ~ genlmt(X0,X1)
      | ~ genlmt(X1,X2) ),
    inference(ennf_transformation,[],[f58]) ).

fof(f118,plain,
    ! [X0,X1,X2] :
      ( genlmt(X0,X2)
      | ~ genlmt(X0,X1)
      | ~ genlmt(X1,X2) ),
    inference(flattening,[],[f117]) ).

fof(f121,plain,
    ( ( ~ inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0)
      | ~ geolevel_1(c_georegion_l1_x2_y0) )
    & mtvisible(c_tptpgeo_spindlecollectormt) ),
    inference(ennf_transformation,[],[f63]) ).

fof(f126,plain,
    ! [X0,X1] :
      ( inregion(X1,X0)
      | ~ geographicalsubregions(X0,X1) ),
    inference(cnf_transformation,[],[f75]) ).

fof(f129,plain,
    genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt),
    inference(cnf_transformation,[],[f8]) ).

fof(f130,plain,
    genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member2_mt),
    inference(cnf_transformation,[],[f9]) ).

fof(f131,plain,
    genlmt(c_tptpgeo_member8_mt,c_tptpgeo_spindleheadmt),
    inference(cnf_transformation,[],[f10]) ).

fof(f132,plain,
    genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member8_mt),
    inference(cnf_transformation,[],[f11]) ).

fof(f133,plain,
    ( ~ mtvisible(c_worldgeographymt)
    | geolevel_1(c_georegion_l1_x2_y0) ),
    inference(cnf_transformation,[],[f76]) ).

fof(f134,plain,
    ( ~ mtvisible(c_tptpgeo_member2_mt)
    | geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2) ),
    inference(cnf_transformation,[],[f77]) ).

fof(f135,plain,
    ( ~ mtvisible(c_tptpgeo_member2_mt)
    | geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7) ),
    inference(cnf_transformation,[],[f78]) ).

fof(f136,plain,
    ( ~ mtvisible(c_tptpgeo_member2_mt)
    | geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23) ),
    inference(cnf_transformation,[],[f79]) ).

fof(f137,plain,
    ( ~ mtvisible(c_tptpgeo_member2_mt)
    | inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23) ),
    inference(cnf_transformation,[],[f80]) ).

fof(f152,plain,
    ! [X2,X0,X1] :
      ( ~ geographicalsubregions(X0,X1)
      | ~ geographicalsubregions(X1,X2)
      | geographicalsubregions(X0,X2) ),
    inference(cnf_transformation,[],[f98]) ).

fof(f160,plain,
    ! [X2,X0,X1] :
      ( ~ inregion(X0,X1)
      | ~ inregion(X1,X2)
      | inregion(X0,X2) ),
    inference(cnf_transformation,[],[f109]) ).

fof(f163,plain,
    ! [X0,X1] :
      ( ~ genlmt(X0,X1)
      | ~ mtvisible(X0)
      | mtvisible(X1) ),
    inference(cnf_transformation,[],[f112]) ).

fof(f168,plain,
    ! [X2,X0,X1] :
      ( ~ genlmt(X1,X2)
      | ~ genlmt(X0,X1)
      | genlmt(X0,X2) ),
    inference(cnf_transformation,[],[f118]) ).

fof(f172,plain,
    ( ~ geolevel_1(c_georegion_l1_x2_y0)
    | ~ inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0) ),
    inference(cnf_transformation,[],[f121]) ).

fof(f173,plain,
    mtvisible(c_tptpgeo_spindlecollectormt),
    inference(cnf_transformation,[],[f121]) ).

fof(f180,plain,
    ~ genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt),
    inference(consistent_polarity_flipping,[],[f129]) ).

fof(f181,plain,
    ~ genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member2_mt),
    inference(consistent_polarity_flipping,[],[f130]) ).

fof(f182,plain,
    ~ genlmt(c_tptpgeo_member8_mt,c_tptpgeo_spindleheadmt),
    inference(consistent_polarity_flipping,[],[f131]) ).

fof(f183,plain,
    ~ genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member8_mt),
    inference(consistent_polarity_flipping,[],[f132]) ).

fof(f184,plain,
    ( mtvisible(c_worldgeographymt)
    | ~ geolevel_1(c_georegion_l1_x2_y0) ),
    inference(consistent_polarity_flipping,[],[f133]) ).

fof(f185,plain,
    ( mtvisible(c_tptpgeo_member2_mt)
    | geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2) ),
    inference(consistent_polarity_flipping,[],[f134]) ).

fof(f186,plain,
    ( mtvisible(c_tptpgeo_member2_mt)
    | geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7) ),
    inference(consistent_polarity_flipping,[],[f135]) ).

fof(f187,plain,
    ( mtvisible(c_tptpgeo_member2_mt)
    | geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23) ),
    inference(consistent_polarity_flipping,[],[f136]) ).

fof(f188,plain,
    ( mtvisible(c_tptpgeo_member2_mt)
    | inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23) ),
    inference(consistent_polarity_flipping,[],[f137]) ).

fof(f207,plain,
    ! [X0,X1] :
      ( ~ mtvisible(X1)
      | mtvisible(X0)
      | genlmt(X0,X1) ),
    inference(consistent_polarity_flipping,[],[f163]) ).

fof(f212,plain,
    ! [X2,X0,X1] :
      ( ~ genlmt(X0,X2)
      | genlmt(X0,X1)
      | genlmt(X1,X2) ),
    inference(consistent_polarity_flipping,[],[f168]) ).

fof(f216,plain,
    ~ mtvisible(c_tptpgeo_spindlecollectormt),
    inference(consistent_polarity_flipping,[],[f173]) ).

fof(f217,plain,
    ( geolevel_1(c_georegion_l1_x2_y0)
    | ~ inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0) ),
    inference(consistent_polarity_flipping,[],[f172]) ).

fof(f219,definition,
    ( spl0_1
  <=> inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0) ),
    introduced(definition,[new_symbols(definition,[spl0_1])],[avatar_definition]) ).

fof(f221,plain,
    ( ~ inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0)
    | spl0_1 ),
    inference(avatar_component_clause,[],[f219]) ).

fof(f223,definition,
    ( spl0_2
  <=> geolevel_1(c_georegion_l1_x2_y0) ),
    introduced(definition,[new_symbols(definition,[spl0_2])],[avatar_definition]) ).

fof(f226,plain,
    ( ~ spl0_1
    | spl0_2 ),
    inference(avatar_split_clause,[],[f217,f223,f219]) ).

fof(f228,definition,
    ( spl0_3
  <=> inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23) ),
    introduced(definition,[new_symbols(definition,[spl0_3])],[avatar_definition]) ).

fof(f230,plain,
    ( inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23)
    | ~ spl0_3 ),
    inference(avatar_component_clause,[],[f228]) ).

fof(f232,definition,
    ( spl0_4
  <=> mtvisible(c_tptpgeo_member2_mt) ),
    introduced(definition,[new_symbols(definition,[spl0_4])],[avatar_definition]) ).

fof(f234,plain,
    ( mtvisible(c_tptpgeo_member2_mt)
    | ~ spl0_4 ),
    inference(avatar_component_clause,[],[f232]) ).

fof(f235,plain,
    ( spl0_3
    | spl0_4 ),
    inference(avatar_split_clause,[],[f188,f232,f228]) ).

fof(f237,definition,
    ( spl0_5
  <=> geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23) ),
    introduced(definition,[new_symbols(definition,[spl0_5])],[avatar_definition]) ).

fof(f239,plain,
    ( geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23)
    | ~ spl0_5 ),
    inference(avatar_component_clause,[],[f237]) ).

fof(f240,plain,
    ( spl0_5
    | spl0_4 ),
    inference(avatar_split_clause,[],[f187,f232,f237]) ).

fof(f242,definition,
    ( spl0_6
  <=> geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7) ),
    introduced(definition,[new_symbols(definition,[spl0_6])],[avatar_definition]) ).

fof(f244,plain,
    ( geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7)
    | ~ spl0_6 ),
    inference(avatar_component_clause,[],[f242]) ).

fof(f245,plain,
    ( spl0_6
    | spl0_4 ),
    inference(avatar_split_clause,[],[f186,f232,f242]) ).

fof(f247,definition,
    ( spl0_7
  <=> geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2) ),
    introduced(definition,[new_symbols(definition,[spl0_7])],[avatar_definition]) ).

fof(f249,plain,
    ( geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2)
    | ~ spl0_7 ),
    inference(avatar_component_clause,[],[f247]) ).

fof(f250,plain,
    ( spl0_7
    | spl0_4 ),
    inference(avatar_split_clause,[],[f185,f232,f247]) ).

fof(f252,definition,
    ( spl0_8
  <=> mtvisible(c_worldgeographymt) ),
    introduced(definition,[new_symbols(definition,[spl0_8])],[avatar_definition]) ).

fof(f254,plain,
    ( mtvisible(c_worldgeographymt)
    | ~ spl0_8 ),
    inference(avatar_component_clause,[],[f252]) ).

fof(f255,plain,
    ( ~ spl0_2
    | spl0_8 ),
    inference(avatar_split_clause,[],[f184,f252,f223]) ).

fof(f263,plain,
    ( ! [X0] :
        ( genlmt(X0,c_tptpgeo_member2_mt)
        | mtvisible(X0) )
    | ~ spl0_4 ),
    inference(resolution,[],[f207,f234]) ).

fof(f267,plain,
    ( mtvisible(c_tptpgeo_spindlecollectormt)
    | ~ spl0_4 ),
    inference(resolution,[],[f263,f181]) ).

fof(f268,plain,
    ( $false
    | ~ spl0_4 ),
    inference(forward_subsumption_resolution,[],[f267,f216]) ).

fof(f269,plain,
    ~ spl0_4,
    inference(avatar_contradiction_clause,[],[f268]) ).

fof(f273,plain,
    ( ! [X0] :
        ( ~ geographicalsubregions(c_georegion_l3_x25_y7,X0)
        | geographicalsubregions(c_georegion_l2_x8_y2,X0) )
    | ~ spl0_6 ),
    inference(resolution,[],[f244,f152]) ).

fof(f276,plain,
    ( ! [X0] :
        ( ~ geographicalsubregions(c_georegion_l2_x8_y2,X0)
        | geographicalsubregions(c_georegion_l1_x2_y0,X0) )
    | ~ spl0_7 ),
    inference(resolution,[],[f249,f152]) ).

fof(f281,plain,
    ( ! [X0] :
        ( inregion(c_geolocation_x76_y23,X0)
        | ~ inregion(c_georegion_l4_x76_y23,X0) )
    | ~ spl0_3 ),
    inference(resolution,[],[f160,f230]) ).

fof(f293,plain,
    ( geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l4_x76_y23)
    | ~ spl0_5
    | ~ spl0_6 ),
    inference(resolution,[],[f273,f239]) ).

fof(f299,plain,
    ( geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l4_x76_y23)
    | ~ spl0_5
    | ~ spl0_6
    | ~ spl0_7 ),
    inference(resolution,[],[f276,f293]) ).

fof(f301,plain,
    ( ~ inregion(c_georegion_l4_x76_y23,c_georegion_l1_x2_y0)
    | spl0_1
    | ~ spl0_3 ),
    inference(resolution,[],[f281,f221]) ).

fof(f303,plain,
    ( ~ geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l4_x76_y23)
    | spl0_1
    | ~ spl0_3 ),
    inference(resolution,[],[f301,f126]) ).

fof(f307,plain,
    ( $false
    | spl0_1
    | ~ spl0_3
    | ~ spl0_5
    | ~ spl0_6
    | ~ spl0_7 ),
    inference(forward_subsumption_resolution,[],[f299,f303]) ).

fof(f308,plain,
    ( spl0_1
    | ~ spl0_3
    | ~ spl0_5
    | ~ spl0_6
    | ~ spl0_7 ),
    inference(avatar_contradiction_clause,[],[f307]) ).

fof(f311,plain,
    ( ! [X0] :
        ( genlmt(X0,c_worldgeographymt)
        | mtvisible(X0) )
    | ~ spl0_8 ),
    inference(resolution,[],[f254,f207]) ).

fof(f316,plain,
    ( ! [X0,X1] :
        ( genlmt(X0,X1)
        | genlmt(X1,c_worldgeographymt)
        | mtvisible(X0) )
    | ~ spl0_8 ),
    inference(resolution,[],[f311,f212]) ).

fof(f348,plain,
    ( genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt)
    | mtvisible(c_tptpgeo_member8_mt)
    | ~ spl0_8 ),
    inference(resolution,[],[f316,f182]) ).

fof(f354,plain,
    ( mtvisible(c_tptpgeo_member8_mt)
    | ~ spl0_8 ),
    inference(forward_subsumption_resolution,[],[f348,f180]) ).

fof(f462,plain,
    ( ! [X0] :
        ( genlmt(X0,c_tptpgeo_member8_mt)
        | mtvisible(X0) )
    | ~ spl0_8 ),
    inference(resolution,[],[f354,f207]) ).

fof(f1018,plain,
    ( mtvisible(c_tptpgeo_spindlecollectormt)
    | ~ spl0_8 ),
    inference(resolution,[],[f462,f183]) ).

fof(f1019,plain,
    ( $false
    | ~ spl0_8 ),
    inference(forward_subsumption_resolution,[],[f1018,f216]) ).

fof(f1020,plain,
    ~ spl0_8,
    inference(avatar_contradiction_clause,[],[f1019]) ).

cnf(s1,plain,
    ( ~ spl0_1
    | spl0_2 ),
    inference(sat_conversion,[],[f226]) ).

cnf(s2,plain,
    ( spl0_3
    | spl0_4 ),
    inference(sat_conversion,[],[f235]) ).

cnf(s3,plain,
    ( spl0_4
    | spl0_5 ),
    inference(sat_conversion,[],[f240]) ).

cnf(s4,plain,
    ( spl0_4
    | spl0_6 ),
    inference(sat_conversion,[],[f245]) ).

cnf(s5,plain,
    ( spl0_4
    | spl0_7 ),
    inference(sat_conversion,[],[f250]) ).

cnf(s6,plain,
    ( ~ spl0_2
    | spl0_8 ),
    inference(sat_conversion,[],[f255]) ).

cnf(s7,plain,
    ~ spl0_4,
    inference(sat_conversion,[],[f269]) ).

cnf(s8,plain,
    ( spl0_1
    | ~ spl0_3
    | ~ spl0_5
    | ~ spl0_6
    | ~ spl0_7 ),
    inference(sat_conversion,[],[f308]) ).

cnf(s20,plain,
    ~ spl0_8,
    inference(sat_conversion,[],[f1020]) ).

cnf(s21,plain,
    ~ spl0_2,
    inference(rat,[],[s6,s20]) ).

cnf(s22,plain,
    spl0_7,
    inference(rat,[],[s5,s7]) ).

cnf(s23,plain,
    spl0_6,
    inference(rat,[],[s4,s7]) ).

cnf(s24,plain,
    spl0_5,
    inference(rat,[],[s3,s7]) ).

cnf(s25,plain,
    spl0_3,
    inference(rat,[],[s2,s7]) ).

cnf(s26,plain,
    spl0_1,
    inference(rat,[],[s8,s22,s23,s24,s25]) ).

cnf(s27,plain,
    $false,
    inference(rat,[],[s1,s21,s26]) ).

fof(f1021,plain,
    $false,
    inference(avatar_sat_refutation,[],[s27]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03  % Problem  : CSR033+1 : TPTP v9.3.1. Released v3.4.0.
% 0.00/0.06  % Command  : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 SAT
% 0.09/0.20  % Computer : n015.cluster.edu
% 0.09/0.20  % Model    : x86_64 x86_64
% 0.09/0.20  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.09/0.20  % Memory   : 8046.5625MB
% 0.09/0.20  % OS       : Linux 6.8.0-71-generic
% 0.09/0.20  % CPULimit : 300
% 0.09/0.20  % WCLimit  : 300
% 0.09/0.20  % DateTime : Mon Sep 28 22:15:32 UTC 2026
% 0.09/0.20  % CPUTime  : 
% 0.09/0.20  Running run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 SAT
% 0.09/0.24  Running first-order model finding
% 0.09/0.24  Running: /export/starexec/sandbox2/solver/bin/vampire-ho --input_syntax tptp --output_axiom_names on --mode casc --intent sat -m 16384 --cores 7 -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.21/0.27  % (3086880)Will run a generic schedule for satisfiability detection.
% 0.21/0.27  % (3086886)% WARNING: option uhcvi not known.
% 0.21/0.27  % (3086886)dis+11_61:31_drc=ordering:lsd=5:bsr=unit_only:rp=on:newcnf=on:random_seed=3493115614:i=135531:add=off:rawr=on_2999 on theBenchmark for (2999ds/135531Mi)
% 0.21/0.27  % (3086889)ott+31_1_sil=16000:lcm=predicate:bce=on:newcnf=on:random_seed=3587698445:i=116_2999 on theBenchmark for (2999ds/116Mi)
% 0.21/0.27  % (3086888)dis+10_1_sil=32000:sp=arity:random_seed=3962272012:i=103:fgj=on_2999 on theBenchmark for (2999ds/103Mi)
% 0.21/0.27  % (3086887)dis+10_161_sil=256000:plsq=on:plsqr=61199697,1048576:gs=on:alpa=true:sac=on:slsq=on:cn=on:random_seed=3691324272:i=88024:add=on:rawr=on_2999 on theBenchmark for (2999ds/88024Mi)
% 0.21/0.27  % (3086885)fmb+10_1_sas=cadical:bce=on:rp=on:random_seed=2965028127_2999 on theBenchmark for (2999ds/0Mi)
% 0.21/0.27  % (3086888) found proof, printing to "/export/starexec/sandbox2/tmp/vampire-proof-3086880-3086888"...
% 0.21/0.27  % (3086886) found proof, printing to "/export/starexec/sandbox2/tmp/vampire-proof-3086880-3086886"...
% 0.21/0.27  % Detected minimum model sizes of [1]
% 0.21/0.27  % Detected maximum model sizes of [18]
% 0.21/0.27  % (3086886)...printing done.
% 0.21/0.27  % (3086889) found proof, printing to "/export/starexec/sandbox2/tmp/vampire-proof-3086880-3086889"...
% 0.21/0.27  % (3086888)...printing done.
% 0.21/0.27  % (3086891)ott-3_16_to=lpo:sil=16000:sp=arity:fd=off:rp=on:random_seed=3204568250:i=159:bs=unit_only:nicw=on:fsr=off:amm=off_2999 on theBenchmark for (2999ds/159Mi)
% 0.21/0.27  % (3086886)Refutation found. Thanks to Tanya!
% 0.21/0.27  % SZS status Theorem for theBenchmark
% 0.21/0.27  % SZS output start Proof for theBenchmark
% See solution above
% 0.21/0.28  % (3086886)------------------------------
% 0.21/0.28  % (3086886)Version: Vampire 5.0.1 (Release build, commit 5ef7c2677 on 2026-07-16 16:54:09 +0200)
% 0.21/0.28  % (3086886)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 0.21/0.28  % (3086886)CaDiCaL version: 2.1.3
% 0.21/0.28  % (3086886)Termination reason: Refutation
% 0.21/0.28  % (3086886)Time elapsed: 0.013 s
% 0.21/0.28  % (3086886)Peak memory usage: 12 MB
% 0.21/0.28  % (3086886)Instructions burned: 44 (million)
% 0.21/0.28  % (3086880)Success in time 0.029 s
% 0.21/0.28  % Vampire exiting
%------------------------------------------------------------------------------