TSTP Solution File: GEG010^1 by Lash---1.13

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Lash---1.13
% Problem  : GEG010^1 : TPTP v8.1.2. Released v4.1.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : lash -P picomus -M modes -p tstp -t %d %s

% Computer : n014.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 : Wed Aug 30 22:40:30 EDT 2023

% Result   : Theorem 20.26s 20.73s
% Output   : Proof 20.26s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :    9
%            Number of leaves      :  140
% Syntax   : Number of formulae    :  153 (  60 unt;  14 typ;  43 def)
%            Number of atoms       :  445 (  48 equ;  10 cnn)
%            Maximal formula atoms :   16 (   3 avg)
%            Number of connectives :  828 ( 111   ~;  45   |;  18   &; 480   @)
%                                         (  39 <=>; 135  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   19 (   4 avg)
%            Number of types       :    3 (   1 usr)
%            Number of type conns  :   67 (  67   >;   0   *;   0   +;   0  <<)
%            Number of symbols     :   99 (  95 usr;  95 con; 0-2 aty)
%            Number of variables   :  227 (  88   ^; 130   !;   9   ?; 227   :)

% Comments : 
%------------------------------------------------------------------------------
thf(ty_reg,type,
    reg: $tType ).

thf(ty_spain,type,
    spain: reg ).

thf(ty_catalunya,type,
    catalunya: reg ).

thf(ty_paris,type,
    paris: reg ).

thf(ty_a,type,
    a: $i > $i > $o ).

thf(ty_c,type,
    c: reg > reg > $o ).

thf(ty_eigen__1,type,
    eigen__1: $i ).

thf(ty_eigen__13,type,
    eigen__13: reg ).

thf(ty_eigen__7,type,
    eigen__7: $i ).

thf(ty_france,type,
    france: reg ).

thf(ty_eigen__12,type,
    eigen__12: reg ).

thf(ty_fool,type,
    fool: $i > $i > $o ).

thf(ty_eigen__2,type,
    eigen__2: reg ).

thf(ty_eigen__0,type,
    eigen__0: $i ).

thf(h0,assumption,
    ! [X1: reg > $o,X2: reg] :
      ( ( X1 @ X2 )
     => ( X1 @ ( eps__0 @ X1 ) ) ),
    introduced(assumption,[]) ).

thf(eigendef_eigen__12,definition,
    ( eigen__12
    = ( eps__0
      @ ^ [X1: reg] :
          ~ ( ( c @ X1 @ eigen__2 )
           => ( c @ X1 @ spain ) ) ) ),
    introduced(definition,[new_symbols(definition,[eigen__12])]) ).

thf(eigendef_eigen__13,definition,
    ( eigen__13
    = ( eps__0
      @ ^ [X1: reg] :
          ~ ( ( c @ X1 @ eigen__2 )
           => ( c @ X1 @ france ) ) ) ),
    introduced(definition,[new_symbols(definition,[eigen__13])]) ).

thf(h1,assumption,
    ! [X1: $i > $o,X2: $i] :
      ( ( X1 @ X2 )
     => ( X1 @ ( eps__1 @ X1 ) ) ),
    introduced(assumption,[]) ).

thf(eigendef_eigen__7,definition,
    ( eigen__7
    = ( eps__1
      @ ^ [X1: $i] :
          ~ ~ ( fool @ eigen__0 @ X1 ) ) ),
    introduced(definition,[new_symbols(definition,[eigen__7])]) ).

thf(sP1,plain,
    ( sP1
  <=> ! [X1: reg] :
        ( ( c @ X1 @ eigen__2 )
       => ( c @ X1 @ catalunya ) ) ),
    introduced(definition,[new_symbols(definition,[sP1])]) ).

thf(sP2,plain,
    ( sP2
  <=> ( fool @ eigen__0 @ eigen__7 ) ),
    introduced(definition,[new_symbols(definition,[sP2])]) ).

thf(sP3,plain,
    ( sP3
  <=> ( ( c @ eigen__12 @ catalunya )
     => ( c @ eigen__12 @ spain ) ) ),
    introduced(definition,[new_symbols(definition,[sP3])]) ).

thf(sP4,plain,
    ( sP4
  <=> ( ~ ( ! [X1: reg] :
              ( ( c @ X1 @ paris )
             => ( c @ X1 @ france ) )
         => ! [X1: reg] :
              ( ( c @ X1 @ france )
             => ( c @ X1 @ paris ) ) )
     => ~ ! [X1: reg] :
            ( ~ ( ( c @ X1 @ paris )
               => ~ ! [X2: reg] :
                      ( ! [X3: reg] :
                          ( ( c @ X3 @ X2 )
                         => ( c @ X3 @ X1 ) )
                     => ~ ! [X3: reg] :
                            ( ( c @ X3 @ X2 )
                           => ( c @ X3 @ paris ) ) ) )
           => ( ( c @ X1 @ france )
             => ~ ! [X2: reg] :
                    ( ! [X3: reg] :
                        ( ( c @ X3 @ X2 )
                       => ( c @ X3 @ X1 ) )
                   => ~ ! [X3: reg] :
                          ( ( c @ X3 @ X2 )
                         => ( c @ X3 @ france ) ) ) ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP4])]) ).

thf(sP5,plain,
    ( sP5
  <=> ! [X1: reg] :
        ( ( c @ X1 @ eigen__2 )
       => ( c @ X1 @ spain ) ) ),
    introduced(definition,[new_symbols(definition,[sP5])]) ).

thf(sP6,plain,
    ( sP6
  <=> ( ( c @ eigen__13 @ eigen__2 )
     => ( c @ eigen__13 @ france ) ) ),
    introduced(definition,[new_symbols(definition,[sP6])]) ).

thf(sP7,plain,
    ( sP7
  <=> ( ( c @ spain @ france )
     => ~ ! [X1: reg] :
            ( ! [X2: reg] :
                ( ( c @ X2 @ X1 )
               => ( c @ X2 @ spain ) )
           => ~ ! [X2: reg] :
                  ( ( c @ X2 @ X1 )
                 => ( c @ X2 @ france ) ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP7])]) ).

thf(sP8,plain,
    ( sP8
  <=> ! [X1: $i,X2: $i] :
        ( ( fool @ X1 @ X2 )
       => ~ sP7 ) ),
    introduced(definition,[new_symbols(definition,[sP8])]) ).

thf(sP9,plain,
    ( sP9
  <=> ( ( a @ eigen__0 @ eigen__1 )
     => ~ ( ~ ( ! [X1: reg] :
                  ( ( c @ X1 @ catalunya )
                 => ( c @ X1 @ spain ) )
             => ! [X1: reg] :
                  ( ( c @ X1 @ spain )
                 => ( c @ X1 @ catalunya ) ) )
         => ! [X1: reg] :
              ( ~ ( ( c @ X1 @ catalunya )
                 => ~ ! [X2: reg] :
                        ( ! [X3: reg] :
                            ( ( c @ X3 @ X2 )
                           => ( c @ X3 @ X1 ) )
                       => ~ ! [X3: reg] :
                              ( ( c @ X3 @ X2 )
                             => ( c @ X3 @ catalunya ) ) ) )
             => ( ( c @ X1 @ spain )
               => ~ ! [X2: reg] :
                      ( ! [X3: reg] :
                          ( ( c @ X3 @ X2 )
                         => ( c @ X3 @ X1 ) )
                     => ~ ! [X3: reg] :
                            ( ( c @ X3 @ X2 )
                           => ( c @ X3 @ spain ) ) ) ) ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP9])]) ).

thf(sP10,plain,
    ( sP10
  <=> ( ( c @ eigen__12 @ eigen__2 )
     => ( c @ eigen__12 @ catalunya ) ) ),
    introduced(definition,[new_symbols(definition,[sP10])]) ).

thf(sP11,plain,
    ( sP11
  <=> ! [X1: $i] :
        ( ( fool @ eigen__0 @ X1 )
       => ~ sP7 ) ),
    introduced(definition,[new_symbols(definition,[sP11])]) ).

thf(sP12,plain,
    ( sP12
  <=> ! [X1: reg] :
        ( ( c @ X1 @ catalunya )
       => ( c @ X1 @ spain ) ) ),
    introduced(definition,[new_symbols(definition,[sP12])]) ).

thf(sP13,plain,
    ( sP13
  <=> ( ( c @ eigen__13 @ paris )
     => ( c @ eigen__13 @ france ) ) ),
    introduced(definition,[new_symbols(definition,[sP13])]) ).

thf(sP14,plain,
    ( sP14
  <=> ( c @ eigen__13 @ paris ) ),
    introduced(definition,[new_symbols(definition,[sP14])]) ).

thf(sP15,plain,
    ( sP15
  <=> ! [X1: reg] :
        ( ( c @ X1 @ paris )
       => ( c @ X1 @ france ) ) ),
    introduced(definition,[new_symbols(definition,[sP15])]) ).

thf(sP16,plain,
    ( sP16
  <=> ( sP2
     => ~ sP7 ) ),
    introduced(definition,[new_symbols(definition,[sP16])]) ).

thf(sP17,plain,
    ( sP17
  <=> ! [X1: $i,X2: $i] :
        ( ( a @ X1 @ X2 )
       => ~ ( ~ ( sP12
               => ! [X3: reg] :
                    ( ( c @ X3 @ spain )
                   => ( c @ X3 @ catalunya ) ) )
           => ! [X3: reg] :
                ( ~ ( ( c @ X3 @ catalunya )
                   => ~ ! [X4: reg] :
                          ( ! [X5: reg] :
                              ( ( c @ X5 @ X4 )
                             => ( c @ X5 @ X3 ) )
                         => ~ ! [X5: reg] :
                                ( ( c @ X5 @ X4 )
                               => ( c @ X5 @ catalunya ) ) ) )
               => ( ( c @ X3 @ spain )
                 => ~ ! [X4: reg] :
                        ( ! [X5: reg] :
                            ( ( c @ X5 @ X4 )
                           => ( c @ X5 @ X3 ) )
                       => ~ ! [X5: reg] :
                              ( ( c @ X5 @ X4 )
                             => ( c @ X5 @ spain ) ) ) ) ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP17])]) ).

thf(sP18,plain,
    ( sP18
  <=> ( sP5
     => ~ ! [X1: reg] :
            ( ( c @ X1 @ eigen__2 )
           => ( c @ X1 @ france ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP18])]) ).

thf(sP19,plain,
    ( sP19
  <=> ( c @ eigen__12 @ eigen__2 ) ),
    introduced(definition,[new_symbols(definition,[sP19])]) ).

thf(sP20,plain,
    ( sP20
  <=> ! [X1: reg] :
        ( ( c @ X1 @ eigen__2 )
       => ( c @ X1 @ france ) ) ),
    introduced(definition,[new_symbols(definition,[sP20])]) ).

thf(sP21,plain,
    ( sP21
  <=> ! [X1: $i > $o] :
        ( ! [X2: $i] :
            ( ( fool @ eigen__0 @ X2 )
           => ( X1 @ X2 ) )
       => ( X1 @ eigen__0 ) ) ),
    introduced(definition,[new_symbols(definition,[sP21])]) ).

thf(sP22,plain,
    ( sP22
  <=> ! [X1: $i] :
        ~ ( fool @ eigen__0 @ X1 ) ),
    introduced(definition,[new_symbols(definition,[sP22])]) ).

thf(sP23,plain,
    ( sP23
  <=> ( c @ eigen__12 @ catalunya ) ),
    introduced(definition,[new_symbols(definition,[sP23])]) ).

thf(sP24,plain,
    ( sP24
  <=> ( c @ eigen__13 @ eigen__2 ) ),
    introduced(definition,[new_symbols(definition,[sP24])]) ).

thf(sP25,plain,
    ( sP25
  <=> ( ( a @ eigen__0 @ eigen__1 )
     => ~ sP4 ) ),
    introduced(definition,[new_symbols(definition,[sP25])]) ).

thf(sP26,plain,
    ( sP26
  <=> ! [X1: reg] :
        ( ! [X2: reg] :
            ( ( c @ X2 @ X1 )
           => ( c @ X2 @ spain ) )
       => ~ ! [X2: reg] :
              ( ( c @ X2 @ X1 )
             => ( c @ X2 @ france ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP26])]) ).

thf(sP27,plain,
    ( sP27
  <=> ! [X1: $i,X2: $i > $o] :
        ( ! [X3: $i] :
            ( ( fool @ X1 @ X3 )
           => ( X2 @ X3 ) )
       => ( X2 @ X1 ) ) ),
    introduced(definition,[new_symbols(definition,[sP27])]) ).

thf(sP28,plain,
    ( sP28
  <=> ! [X1: $i] :
        ( ( a @ eigen__0 @ X1 )
       => ~ ( ~ ( sP12
               => ! [X2: reg] :
                    ( ( c @ X2 @ spain )
                   => ( c @ X2 @ catalunya ) ) )
           => ! [X2: reg] :
                ( ~ ( ( c @ X2 @ catalunya )
                   => ~ ! [X3: reg] :
                          ( ! [X4: reg] :
                              ( ( c @ X4 @ X3 )
                             => ( c @ X4 @ X2 ) )
                         => ~ ! [X4: reg] :
                                ( ( c @ X4 @ X3 )
                               => ( c @ X4 @ catalunya ) ) ) )
               => ( ( c @ X2 @ spain )
                 => ~ ! [X3: reg] :
                        ( ! [X4: reg] :
                            ( ( c @ X4 @ X3 )
                           => ( c @ X4 @ X2 ) )
                       => ~ ! [X4: reg] :
                              ( ( c @ X4 @ X3 )
                             => ( c @ X4 @ spain ) ) ) ) ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP28])]) ).

thf(sP29,plain,
    ( sP29
  <=> ( sP19
     => ( c @ eigen__12 @ spain ) ) ),
    introduced(definition,[new_symbols(definition,[sP29])]) ).

thf(sP30,plain,
    ( sP30
  <=> ( a @ eigen__0 @ eigen__1 ) ),
    introduced(definition,[new_symbols(definition,[sP30])]) ).

thf(sP31,plain,
    ( sP31
  <=> ! [X1: reg] :
        ( ( c @ X1 @ eigen__2 )
       => ( c @ X1 @ paris ) ) ),
    introduced(definition,[new_symbols(definition,[sP31])]) ).

thf(sP32,plain,
    ( sP32
  <=> ( sP12
     => ! [X1: reg] :
          ( ( c @ X1 @ spain )
         => ( c @ X1 @ catalunya ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP32])]) ).

thf(sP33,plain,
    ( sP33
  <=> ( c @ eigen__12 @ spain ) ),
    introduced(definition,[new_symbols(definition,[sP33])]) ).

thf(sP34,plain,
    ( sP34
  <=> ( sP24
     => sP14 ) ),
    introduced(definition,[new_symbols(definition,[sP34])]) ).

thf(sP35,plain,
    ( sP35
  <=> ( c @ eigen__13 @ france ) ),
    introduced(definition,[new_symbols(definition,[sP35])]) ).

thf(sP36,plain,
    ( sP36
  <=> ( ~ sP32
     => ! [X1: reg] :
          ( ~ ( ( c @ X1 @ catalunya )
             => ~ ! [X2: reg] :
                    ( ! [X3: reg] :
                        ( ( c @ X3 @ X2 )
                       => ( c @ X3 @ X1 ) )
                   => ~ ! [X3: reg] :
                          ( ( c @ X3 @ X2 )
                         => ( c @ X3 @ catalunya ) ) ) )
         => ( ( c @ X1 @ spain )
           => ~ ! [X2: reg] :
                  ( ! [X3: reg] :
                      ( ( c @ X3 @ X2 )
                     => ( c @ X3 @ X1 ) )
                 => ~ ! [X3: reg] :
                        ( ( c @ X3 @ X2 )
                       => ( c @ X3 @ spain ) ) ) ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP36])]) ).

thf(sP37,plain,
    ( sP37
  <=> ! [X1: $i,X2: $i] :
        ( ( a @ X1 @ X2 )
       => ~ sP4 ) ),
    introduced(definition,[new_symbols(definition,[sP37])]) ).

thf(sP38,plain,
    ( sP38
  <=> ! [X1: $i] :
        ( ( a @ eigen__0 @ X1 )
       => ~ sP4 ) ),
    introduced(definition,[new_symbols(definition,[sP38])]) ).

thf(sP39,plain,
    ( sP39
  <=> ( sP15
     => ! [X1: reg] :
          ( ( c @ X1 @ france )
         => ( c @ X1 @ paris ) ) ) ),
    introduced(definition,[new_symbols(definition,[sP39])]) ).

thf(def_meq_ind,definition,
    ( meq_ind
    = ( ^ [X1: mu,X2: mu,X3: $i] : ( X1 = X2 ) ) ) ).

thf(def_meq_prop,definition,
    ( meq_prop
    = ( ^ [X1: $i > $o,X2: $i > $o,X3: $i] :
          ( ( X1 @ X3 )
          = ( X2 @ X3 ) ) ) ) ).

thf(def_mnot,definition,
    ( mnot
    = ( ^ [X1: $i > $o,X2: $i] : ( (~) @ ( X1 @ X2 ) ) ) ) ).

thf(def_mor,definition,
    ( mor
    = ( ^ [X1: $i > $o,X2: $i > $o,X3: $i] :
          ( ( X1 @ X3 )
          | ( X2 @ X3 ) ) ) ) ).

thf(def_mand,definition,
    ( mand
    = ( ^ [X1: $i > $o,X2: $i > $o] : ( mnot @ ( mor @ ( mnot @ X1 ) @ ( mnot @ X2 ) ) ) ) ) ).

thf(def_mimplies,definition,
    ( mimplies
    = ( ^ [X1: $i > $o,X2: $i > $o] : ( mor @ ( mnot @ X1 ) @ X2 ) ) ) ).

thf(def_mimplied,definition,
    ( mimplied
    = ( ^ [X1: $i > $o,X2: $i > $o] : ( mor @ ( mnot @ X2 ) @ X1 ) ) ) ).

thf(def_mequiv,definition,
    ( mequiv
    = ( ^ [X1: $i > $o,X2: $i > $o] : ( mand @ ( mimplies @ X1 @ X2 ) @ ( mimplies @ X2 @ X1 ) ) ) ) ).

thf(def_mxor,definition,
    ( mxor
    = ( ^ [X1: $i > $o,X2: $i > $o] : ( mnot @ ( mequiv @ X1 @ X2 ) ) ) ) ).

thf(def_mforall_ind,definition,
    ( mforall_ind
    = ( ^ [X1: mu > $i > $o,X2: $i] :
        ! [X3: mu] : ( X1 @ X3 @ X2 ) ) ) ).

thf(def_mforall_prop,definition,
    ( mforall_prop
    = ( ^ [X1: ( $i > $o ) > $i > $o,X2: $i] :
        ! [X3: $i > $o] : ( X1 @ X3 @ X2 ) ) ) ).

thf(def_mexists_ind,definition,
    ( mexists_ind
    = ( ^ [X1: mu > $i > $o] :
          ( mnot
          @ ( mforall_ind
            @ ^ [X2: mu] : ( mnot @ ( X1 @ X2 ) ) ) ) ) ) ).

thf(def_mexists_prop,definition,
    ( mexists_prop
    = ( ^ [X1: ( $i > $o ) > $i > $o] :
          ( mnot
          @ ( mforall_prop
            @ ^ [X2: $i > $o] : ( mnot @ ( X1 @ X2 ) ) ) ) ) ) ).

thf(def_mtrue,definition,
    ( mtrue
    = ( ^ [X1: $i] : $true ) ) ).

thf(def_mfalse,definition,
    ( mfalse
    = ( mnot @ mtrue ) ) ).

thf(def_mbox,definition,
    ( mbox
    = ( ^ [X1: $i > $i > $o,X2: $i > $o,X3: $i] :
        ! [X4: $i] :
          ( ( (~) @ ( X1 @ X3 @ X4 ) )
          | ( X2 @ X4 ) ) ) ) ).

thf(def_mdia,definition,
    ( mdia
    = ( ^ [X1: $i > $i > $o,X2: $i > $o] : ( mnot @ ( mbox @ X1 @ ( mnot @ X2 ) ) ) ) ) ).

thf(def_mreflexive,definition,
    ( mreflexive
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i] : ( X1 @ X2 @ X2 ) ) ) ).

thf(def_msymmetric,definition,
    ( msymmetric
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i,X3: $i] :
          ( ^ [X4: $o,X5: $o] :
              ( X4
             => X5 )
          @ ( X1 @ X2 @ X3 )
          @ ( X1 @ X3 @ X2 ) ) ) ) ).

thf(def_mserial,definition,
    ( mserial
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i] :
        ? [X3: $i] : ( X1 @ X2 @ X3 ) ) ) ).

thf(def_mtransitive,definition,
    ( mtransitive
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i,X3: $i,X4: $i] :
          ( ^ [X5: $o,X6: $o] :
              ( X5
             => X6 )
          @ ( ( X1 @ X2 @ X3 )
            & ( X1 @ X3 @ X4 ) )
          @ ( X1 @ X2 @ X4 ) ) ) ) ).

thf(def_meuclidean,definition,
    ( meuclidean
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i,X3: $i,X4: $i] :
          ( ^ [X5: $o,X6: $o] :
              ( X5
             => X6 )
          @ ( ( X1 @ X2 @ X3 )
            & ( X1 @ X2 @ X4 ) )
          @ ( X1 @ X3 @ X4 ) ) ) ) ).

thf(def_mpartially_functional,definition,
    ( mpartially_functional
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i,X3: $i,X4: $i] :
          ( ^ [X5: $o,X6: $o] :
              ( X5
             => X6 )
          @ ( ( X1 @ X2 @ X3 )
            & ( X1 @ X2 @ X4 ) )
          @ ( X3 = X4 ) ) ) ) ).

thf(def_mfunctional,definition,
    ( mfunctional
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i] :
        ? [X3: $i] :
          ( ( X1 @ X2 @ X3 )
          & ! [X4: $i] :
              ( ^ [X5: $o,X6: $o] :
                  ( X5
                 => X6 )
              @ ( X1 @ X2 @ X4 )
              @ ( X3 = X4 ) ) ) ) ) ).

thf(def_mweakly_dense,definition,
    ( mweakly_dense
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i,X3: $i,X4: $i] :
          ( ^ [X5: $o,X6: $o] :
              ( X5
             => X6 )
          @ ( X1 @ X2 @ X3 )
          @ ? [X5: $i] :
              ( ( X1 @ X2 @ X5 )
              & ( X1 @ X5 @ X3 ) ) ) ) ) ).

thf(def_mweakly_connected,definition,
    ( mweakly_connected
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i,X3: $i,X4: $i] :
          ( ^ [X5: $o,X6: $o] :
              ( X5
             => X6 )
          @ ( ( X1 @ X2 @ X3 )
            & ( X1 @ X2 @ X4 ) )
          @ ( ( X1 @ X3 @ X4 )
            | ( X3 = X4 )
            | ( X1 @ X4 @ X3 ) ) ) ) ) ).

thf(def_mweakly_directed,definition,
    ( mweakly_directed
    = ( ^ [X1: $i > $i > $o] :
        ! [X2: $i,X3: $i,X4: $i] :
          ( ^ [X5: $o,X6: $o] :
              ( X5
             => X6 )
          @ ( ( X1 @ X2 @ X3 )
            & ( X1 @ X2 @ X4 ) )
          @ ? [X5: $i] :
              ( ( X1 @ X3 @ X5 )
              & ( X1 @ X4 @ X5 ) ) ) ) ) ).

thf(def_mvalid,definition,
    ( mvalid
    = ( ^ [X1: $i > $o] :
        ! [X2: $i] : ( X1 @ X2 ) ) ) ).

thf(def_minvalid,definition,
    ( minvalid
    = ( ^ [X1: $i > $o] :
        ! [X2: $i] : ( (~) @ ( X1 @ X2 ) ) ) ) ).

thf(def_msatisfiable,definition,
    ( msatisfiable
    = ( ^ [X1: $i > $o] :
        ? [X2: $i] : ( X1 @ X2 ) ) ) ).

thf(def_mcountersatisfiable,definition,
    ( mcountersatisfiable
    = ( ^ [X1: $i > $o] :
        ? [X2: $i] : ( (~) @ ( X1 @ X2 ) ) ) ) ).

thf(def_dc,definition,
    ( dc
    = ( ^ [X1: reg,X2: reg] : ( (~) @ ( c @ X1 @ X2 ) ) ) ) ).

thf(def_p,definition,
    ( p
    = ( ^ [X1: reg,X2: reg] :
        ! [X3: reg] :
          ( ^ [X4: $o,X5: $o] :
              ( X4
             => X5 )
          @ ( c @ X3 @ X1 )
          @ ( c @ X3 @ X2 ) ) ) ) ).

thf(def_eq,definition,
    ( eq
    = ( ^ [X1: reg,X2: reg] :
          ( ( p @ X1 @ X2 )
          & ( p @ X2 @ X1 ) ) ) ) ).

thf(def_o,definition,
    ( o
    = ( ^ [X1: reg,X2: reg] :
        ? [X3: reg] :
          ( ( p @ X3 @ X1 )
          & ( p @ X3 @ X2 ) ) ) ) ).

thf(def_po,definition,
    ( po
    = ( ^ [X1: reg,X2: reg] :
          ( ( o @ X1 @ X2 )
          & ( (~) @ ( p @ X1 @ X2 ) )
          & ( (~) @ ( p @ X2 @ X1 ) ) ) ) ) ).

thf(def_ec,definition,
    ( ec
    = ( ^ [X1: reg,X2: reg] :
          ( ( c @ X1 @ X2 )
          & ( (~) @ ( o @ X1 @ X2 ) ) ) ) ) ).

thf(def_pp,definition,
    ( pp
    = ( ^ [X1: reg,X2: reg] :
          ( ( p @ X1 @ X2 )
          & ( (~) @ ( p @ X2 @ X1 ) ) ) ) ) ).

thf(def_tpp,definition,
    ( tpp
    = ( ^ [X1: reg,X2: reg] :
          ( ( pp @ X1 @ X2 )
          & ? [X3: reg] :
              ( ( ec @ X3 @ X1 )
              & ( ec @ X3 @ X2 ) ) ) ) ) ).

thf(def_ntpp,definition,
    ( ntpp
    = ( ^ [X1: reg,X2: reg] :
          ( ( pp @ X1 @ X2 )
          & ( (~)
            @ ? [X3: reg] :
                ( ( ec @ X3 @ X1 )
                & ( ec @ X3 @ X2 ) ) ) ) ) ) ).

thf(con,conjecture,
    ! [X1: $i,X2: $i] :
      ( ( a @ X1 @ X2 )
     => ! [X3: reg] :
          ( ! [X4: reg] :
              ( ( c @ X4 @ X3 )
             => ( c @ X4 @ catalunya ) )
         => ~ ! [X4: reg] :
                ( ( c @ X4 @ X3 )
               => ( c @ X4 @ paris ) ) ) ) ).

thf(h2,negated_conjecture,
    ~ ! [X1: $i,X2: $i] :
        ( ( a @ X1 @ X2 )
       => ! [X3: reg] :
            ( ! [X4: reg] :
                ( ( c @ X4 @ X3 )
               => ( c @ X4 @ catalunya ) )
           => ~ ! [X4: reg] :
                  ( ( c @ X4 @ X3 )
                 => ( c @ X4 @ paris ) ) ) ),
    inference(assume_negation,[status(cth)],[con]) ).

thf(h3,assumption,
    ~ ! [X1: $i] :
        ( ( a @ eigen__0 @ X1 )
       => ! [X2: reg] :
            ( ! [X3: reg] :
                ( ( c @ X3 @ X2 )
               => ( c @ X3 @ catalunya ) )
           => ~ ! [X3: reg] :
                  ( ( c @ X3 @ X2 )
                 => ( c @ X3 @ paris ) ) ) ),
    introduced(assumption,[]) ).

thf(h4,assumption,
    ~ ( sP30
     => ! [X1: reg] :
          ( ! [X2: reg] :
              ( ( c @ X2 @ X1 )
             => ( c @ X2 @ catalunya ) )
         => ~ ! [X2: reg] :
                ( ( c @ X2 @ X1 )
               => ( c @ X2 @ paris ) ) ) ),
    introduced(assumption,[]) ).

thf(h5,assumption,
    sP30,
    introduced(assumption,[]) ).

thf(h6,assumption,
    ~ ! [X1: reg] :
        ( ! [X2: reg] :
            ( ( c @ X2 @ X1 )
           => ( c @ X2 @ catalunya ) )
       => ~ ! [X2: reg] :
              ( ( c @ X2 @ X1 )
             => ( c @ X2 @ paris ) ) ),
    introduced(assumption,[]) ).

thf(h7,assumption,
    ~ ( sP1
     => ~ sP31 ),
    introduced(assumption,[]) ).

thf(h8,assumption,
    sP1,
    introduced(assumption,[]) ).

thf(h9,assumption,
    sP31,
    introduced(assumption,[]) ).

thf(1,plain,
    ( ~ sP34
    | ~ sP24
    | sP14 ),
    inference(prop_rule,[status(thm)],]) ).

thf(2,plain,
    ( ~ sP13
    | ~ sP14
    | sP35 ),
    inference(prop_rule,[status(thm)],]) ).

thf(3,plain,
    ( ~ sP10
    | ~ sP19
    | sP23 ),
    inference(prop_rule,[status(thm)],]) ).

thf(4,plain,
    ( ~ sP3
    | ~ sP23
    | sP33 ),
    inference(prop_rule,[status(thm)],]) ).

thf(5,plain,
    ( ~ sP31
    | sP34 ),
    inference(all_rule,[status(thm)],]) ).

thf(6,plain,
    ( ~ sP15
    | sP13 ),
    inference(all_rule,[status(thm)],]) ).

thf(7,plain,
    ( ~ sP1
    | sP10 ),
    inference(all_rule,[status(thm)],]) ).

thf(8,plain,
    ( ~ sP12
    | sP3 ),
    inference(all_rule,[status(thm)],]) ).

thf(9,plain,
    ( ~ sP16
    | ~ sP2
    | ~ sP7 ),
    inference(prop_rule,[status(thm)],]) ).

thf(10,plain,
    ( ~ sP11
    | sP16 ),
    inference(all_rule,[status(thm)],]) ).

thf(11,plain,
    ( sP6
    | ~ sP35 ),
    inference(prop_rule,[status(thm)],]) ).

thf(12,plain,
    ( sP6
    | sP24 ),
    inference(prop_rule,[status(thm)],]) ).

thf(13,plain,
    ( sP29
    | ~ sP33 ),
    inference(prop_rule,[status(thm)],]) ).

thf(14,plain,
    ( sP29
    | sP19 ),
    inference(prop_rule,[status(thm)],]) ).

thf(15,plain,
    ( sP20
    | ~ sP6 ),
    inference(eigen_choice_rule,[status(thm),assumptions([h0])],[h0,eigendef_eigen__13]) ).

thf(16,plain,
    ( sP5
    | ~ sP29 ),
    inference(eigen_choice_rule,[status(thm),assumptions([h0])],[h0,eigendef_eigen__12]) ).

thf(17,plain,
    ( ~ sP18
    | ~ sP5
    | ~ sP20 ),
    inference(prop_rule,[status(thm)],]) ).

thf(18,plain,
    ( sP22
    | sP2 ),
    inference(eigen_choice_rule,[status(thm),assumptions([h1])],[h1,eigendef_eigen__7]) ).

thf(19,plain,
    ( sP32
    | sP12 ),
    inference(prop_rule,[status(thm)],]) ).

thf(20,plain,
    ( ~ sP26
    | sP18 ),
    inference(all_rule,[status(thm)],]) ).

thf(21,plain,
    ( sP39
    | sP15 ),
    inference(prop_rule,[status(thm)],]) ).

thf(22,plain,
    ( ~ sP21
    | ~ sP22 ),
    inference(all_rule,[status(thm)],]) ).

thf(23,plain,
    ( sP36
    | ~ sP32 ),
    inference(prop_rule,[status(thm)],]) ).

thf(24,plain,
    ( sP7
    | sP26 ),
    inference(prop_rule,[status(thm)],]) ).

thf(25,plain,
    ( sP4
    | ~ sP39 ),
    inference(prop_rule,[status(thm)],]) ).

thf(26,plain,
    ( ~ sP9
    | ~ sP30
    | ~ sP36 ),
    inference(prop_rule,[status(thm)],]) ).

thf(27,plain,
    ( ~ sP25
    | ~ sP30
    | ~ sP4 ),
    inference(prop_rule,[status(thm)],]) ).

thf(28,plain,
    ( ~ sP28
    | sP9 ),
    inference(all_rule,[status(thm)],]) ).

thf(29,plain,
    ( ~ sP38
    | sP25 ),
    inference(all_rule,[status(thm)],]) ).

thf(30,plain,
    ( ~ sP27
    | sP21 ),
    inference(all_rule,[status(thm)],]) ).

thf(31,plain,
    ( ~ sP17
    | sP28 ),
    inference(all_rule,[status(thm)],]) ).

thf(32,plain,
    ( ~ sP8
    | sP11 ),
    inference(all_rule,[status(thm)],]) ).

thf(33,plain,
    ( ~ sP37
    | sP38 ),
    inference(all_rule,[status(thm)],]) ).

thf(t_axiom_for_fool,axiom,
    sP27 ).

thf(ax1,axiom,
    sP17 ).

thf(ax2,axiom,
    sP8 ).

thf(ax3,axiom,
    sP37 ).

thf(34,plain,
    $false,
    inference(prop_unsat,[status(thm),assumptions([h8,h9,h7,h5,h6,h4,h3,h2,h1,h0])],[1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25,26,27,28,29,30,31,32,33,t_axiom_for_fool,ax1,ax2,ax3,h5,h8,h9]) ).

thf(35,plain,
    $false,
    inference(tab_negimp,[status(thm),assumptions([h7,h5,h6,h4,h3,h2,h1,h0]),tab_negimp(discharge,[h8,h9])],[h7,34,h8,h9]) ).

thf(36,plain,
    $false,
    inference(tab_negall,[status(thm),assumptions([h5,h6,h4,h3,h2,h1,h0]),tab_negall(discharge,[h7]),tab_negall(eigenvar,eigen__2)],[h6,35,h7]) ).

thf(37,plain,
    $false,
    inference(tab_negimp,[status(thm),assumptions([h4,h3,h2,h1,h0]),tab_negimp(discharge,[h5,h6])],[h4,36,h5,h6]) ).

thf(38,plain,
    $false,
    inference(tab_negall,[status(thm),assumptions([h3,h2,h1,h0]),tab_negall(discharge,[h4]),tab_negall(eigenvar,eigen__1)],[h3,37,h4]) ).

thf(39,plain,
    $false,
    inference(tab_negall,[status(thm),assumptions([h2,h1,h0]),tab_negall(discharge,[h3]),tab_negall(eigenvar,eigen__0)],[h2,38,h3]) ).

thf(40,plain,
    $false,
    inference(eigenvar_choice,[status(thm),assumptions([h2,h0]),eigenvar_choice(discharge,[h1])],[39,h1]) ).

thf(41,plain,
    $false,
    inference(eigenvar_choice,[status(thm),assumptions([h2]),eigenvar_choice(discharge,[h0])],[40,h0]) ).

thf(0,theorem,
    ! [X1: $i,X2: $i] :
      ( ( a @ X1 @ X2 )
     => ! [X3: reg] :
          ( ! [X4: reg] :
              ( ( c @ X4 @ X3 )
             => ( c @ X4 @ catalunya ) )
         => ~ ! [X4: reg] :
                ( ( c @ X4 @ X3 )
               => ( c @ X4 @ paris ) ) ) ),
    inference(contra,[status(thm),contra(discharge,[h2])],[39,h2]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.12  % Problem  : GEG010^1 : TPTP v8.1.2. Released v4.1.0.
% 0.00/0.13  % Command  : lash -P picomus -M modes -p tstp -t %d %s
% 0.15/0.34  % Computer : n014.cluster.edu
% 0.15/0.34  % Model    : x86_64 x86_64
% 0.15/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.15/0.34  % Memory   : 8042.1875MB
% 0.15/0.34  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.15/0.34  % CPULimit : 300
% 0.15/0.34  % WCLimit  : 300
% 0.15/0.34  % DateTime : Mon Aug 28 00:52:16 EDT 2023
% 0.15/0.34  % CPUTime  : 
% 20.26/20.73  % SZS status Theorem
% 20.26/20.73  % Mode: cade22grackle2x798d
% 20.26/20.73  % Steps: 3386
% 20.26/20.73  % SZS output start Proof
% See solution above
%------------------------------------------------------------------------------