TSTP Solution File: SEV002^5 by Zipperpin---2.1.9999

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Zipperpin---2.1.9999
% Problem  : SEV002^5 : TPTP v8.1.2. Released v4.0.0.
% Transfm  : NO INFORMATION
% Format   : NO INFORMATION
% Command  : python3 /export/starexec/sandbox/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox/tmp/tmp.Ufd0LBcsXO true

% Computer : n006.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 : Thu Aug 31 19:59:14 EDT 2023

% Result   : Theorem 1.44s 1.02s
% Output   : Refutation 1.44s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   13
%            Number of leaves      :    7
% Syntax   : Number of formulae    :   41 (  17 unt;   6 typ;   0 def)
%            Number of atoms       :  215 (  93 equ;   0 cnn)
%            Maximal formula atoms :   38 (   6 avg)
%            Number of connectives :  923 (  12   ~;   0   |;  54   &; 731   @)
%                                         (   0 <=>;   5  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   21 (   6 avg)
%            Number of types       :    1 (   1 usr)
%            Number of type conns  :   18 (  18   >;   0   *;   0   +;   0  <<)
%            Number of symbols     :    8 (   5 usr;   5 con; 0-2 aty)
%                                         ( 121  !!;   0  ??;   0 @@+;   0 @@-)
%            Number of variables   :  206 ( 121   ^;  85   !;   0   ?; 206   :)

% Comments : 
%------------------------------------------------------------------------------
thf(a_type,type,
    a: $tType ).

thf('#sk1_type',type,
    '#sk1': a > a > a ).

thf('#sk4_type',type,
    '#sk4': a ).

thf('#sk5_type',type,
    '#sk5': a ).

thf('#sk2_type',type,
    '#sk2': a > a > a ).

thf('#sk3_type',type,
    '#sk3': a ).

thf(cMODULAR_THM_DEF2_pme,conjecture,
    ! [JOIN: a > a > a,MEET: a > a > a] :
      ( ( ! [Xx: a,Xy: a,Xz: a] :
            ( ( MEET @ Xx @ ( JOIN @ Xy @ Xz ) )
            = ( JOIN @ ( MEET @ Xx @ Xy ) @ ( MEET @ Xx @ Xz ) ) )
        & ! [Xx: a,Xy: a,Xz: a] :
            ( ( JOIN @ Xx @ ( MEET @ Xy @ Xz ) )
            = ( MEET @ ( JOIN @ Xx @ Xy ) @ ( JOIN @ Xx @ Xz ) ) )
        & ! [Xx: a,Xy: a] :
            ( ( MEET @ ( JOIN @ Xx @ Xy ) @ Xy )
            = Xy )
        & ! [Xx: a,Xy: a] :
            ( ( JOIN @ ( MEET @ Xx @ Xy ) @ Xy )
            = Xy )
        & ! [Xx: a,Xy: a] :
            ( ( MEET @ Xx @ Xy )
            = ( MEET @ Xy @ Xx ) )
        & ! [Xx: a,Xy: a] :
            ( ( JOIN @ Xx @ Xy )
            = ( JOIN @ Xy @ Xx ) )
        & ! [Xx: a,Xy: a,Xz: a] :
            ( ( MEET @ ( MEET @ Xx @ Xy ) @ Xz )
            = ( MEET @ Xx @ ( MEET @ Xy @ Xz ) ) )
        & ! [Xx: a,Xy: a,Xz: a] :
            ( ( JOIN @ ( JOIN @ Xx @ Xy ) @ Xz )
            = ( JOIN @ Xx @ ( JOIN @ Xy @ Xz ) ) )
        & ! [Xx: a] :
            ( ( MEET @ Xx @ Xx )
            = Xx )
        & ! [Xx: a] :
            ( ( JOIN @ Xx @ Xx )
            = Xx ) )
     => ! [Xx: a,Xy: a,Xz: a] :
          ( ( JOIN @ Xx @ ( MEET @ Xy @ ( JOIN @ Xx @ Xz ) ) )
          = ( MEET @ ( JOIN @ Xx @ Xy ) @ ( JOIN @ Xx @ Xz ) ) ) ) ).

thf(zf_stmt_0,negated_conjecture,
    ~ ! [JOIN: a > a > a,MEET: a > a > a] :
        ( ( ! [Xx: a,Xy: a,Xz: a] :
              ( ( MEET @ Xx @ ( JOIN @ Xy @ Xz ) )
              = ( JOIN @ ( MEET @ Xx @ Xy ) @ ( MEET @ Xx @ Xz ) ) )
          & ! [Xx: a,Xy: a,Xz: a] :
              ( ( JOIN @ Xx @ ( MEET @ Xy @ Xz ) )
              = ( MEET @ ( JOIN @ Xx @ Xy ) @ ( JOIN @ Xx @ Xz ) ) )
          & ! [Xx: a,Xy: a] :
              ( ( MEET @ ( JOIN @ Xx @ Xy ) @ Xy )
              = Xy )
          & ! [Xx: a,Xy: a] :
              ( ( JOIN @ ( MEET @ Xx @ Xy ) @ Xy )
              = Xy )
          & ! [Xx: a,Xy: a] :
              ( ( MEET @ Xx @ Xy )
              = ( MEET @ Xy @ Xx ) )
          & ! [Xx: a,Xy: a] :
              ( ( JOIN @ Xx @ Xy )
              = ( JOIN @ Xy @ Xx ) )
          & ! [Xx: a,Xy: a,Xz: a] :
              ( ( MEET @ ( MEET @ Xx @ Xy ) @ Xz )
              = ( MEET @ Xx @ ( MEET @ Xy @ Xz ) ) )
          & ! [Xx: a,Xy: a,Xz: a] :
              ( ( JOIN @ ( JOIN @ Xx @ Xy ) @ Xz )
              = ( JOIN @ Xx @ ( JOIN @ Xy @ Xz ) ) )
          & ! [Xx: a] :
              ( ( MEET @ Xx @ Xx )
              = Xx )
          & ! [Xx: a] :
              ( ( JOIN @ Xx @ Xx )
              = Xx ) )
       => ! [Xx: a,Xy: a,Xz: a] :
            ( ( JOIN @ Xx @ ( MEET @ Xy @ ( JOIN @ Xx @ Xz ) ) )
            = ( MEET @ ( JOIN @ Xx @ Xy ) @ ( JOIN @ Xx @ Xz ) ) ) ),
    inference('cnf.neg',[status(esa)],[cMODULAR_THM_DEF2_pme]) ).

thf(zip_derived_cl0,plain,
    ~ ( !!
      @ ^ [Y0: a > a > a] :
          ( !!
          @ ^ [Y1: a > a > a] :
              ( ( ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( !!
                          @ ^ [Y4: a] :
                              ( ( Y1 @ Y2 @ ( Y0 @ Y3 @ Y4 ) )
                              = ( Y0 @ ( Y1 @ Y2 @ Y3 ) @ ( Y1 @ Y2 @ Y4 ) ) ) ) ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( !!
                          @ ^ [Y4: a] :
                              ( ( Y0 @ Y2 @ ( Y1 @ Y3 @ Y4 ) )
                              = ( Y1 @ ( Y0 @ Y2 @ Y3 ) @ ( Y0 @ Y2 @ Y4 ) ) ) ) ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( ( Y1 @ ( Y0 @ Y2 @ Y3 ) @ Y3 )
                          = Y3 ) ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( ( Y0 @ ( Y1 @ Y2 @ Y3 ) @ Y3 )
                          = Y3 ) ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( ( Y1 @ Y2 @ Y3 )
                          = ( Y1 @ Y3 @ Y2 ) ) ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( ( Y0 @ Y2 @ Y3 )
                          = ( Y0 @ Y3 @ Y2 ) ) ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( !!
                          @ ^ [Y4: a] :
                              ( ( Y1 @ ( Y1 @ Y2 @ Y3 ) @ Y4 )
                              = ( Y1 @ Y2 @ ( Y1 @ Y3 @ Y4 ) ) ) ) ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( !!
                          @ ^ [Y4: a] :
                              ( ( Y0 @ ( Y0 @ Y2 @ Y3 ) @ Y4 )
                              = ( Y0 @ Y2 @ ( Y0 @ Y3 @ Y4 ) ) ) ) ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( ( Y1 @ Y2 @ Y2 )
                      = Y2 ) )
                & ( !!
                  @ ^ [Y2: a] :
                      ( ( Y0 @ Y2 @ Y2 )
                      = Y2 ) ) )
             => ( !!
                @ ^ [Y2: a] :
                    ( !!
                    @ ^ [Y3: a] :
                        ( !!
                        @ ^ [Y4: a] :
                            ( ( Y0 @ Y2 @ ( Y1 @ Y3 @ ( Y0 @ Y2 @ Y4 ) ) )
                            = ( Y1 @ ( Y0 @ Y2 @ Y3 ) @ ( Y0 @ Y2 @ Y4 ) ) ) ) ) ) ) ) ),
    inference(cnf,[status(esa)],[zf_stmt_0]) ).

thf(zip_derived_cl1,plain,
    ~ ( !!
      @ ^ [Y0: a > a > a] :
          ( ( ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( ( Y0 @ Y1 @ ( '#sk1' @ Y2 @ Y3 ) )
                          = ( '#sk1' @ ( Y0 @ Y1 @ Y2 ) @ ( Y0 @ Y1 @ Y3 ) ) ) ) ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( ( '#sk1' @ Y1 @ ( Y0 @ Y2 @ Y3 ) )
                          = ( Y0 @ ( '#sk1' @ Y1 @ Y2 ) @ ( '#sk1' @ Y1 @ Y3 ) ) ) ) ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( ( Y0 @ ( '#sk1' @ Y1 @ Y2 ) @ Y2 )
                      = Y2 ) ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( ( '#sk1' @ ( Y0 @ Y1 @ Y2 ) @ Y2 )
                      = Y2 ) ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( ( Y0 @ Y1 @ Y2 )
                      = ( Y0 @ Y2 @ Y1 ) ) ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( ( '#sk1' @ Y1 @ Y2 )
                      = ( '#sk1' @ Y2 @ Y1 ) ) ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( ( Y0 @ ( Y0 @ Y1 @ Y2 ) @ Y3 )
                          = ( Y0 @ Y1 @ ( Y0 @ Y2 @ Y3 ) ) ) ) ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( !!
                      @ ^ [Y3: a] :
                          ( ( '#sk1' @ ( '#sk1' @ Y1 @ Y2 ) @ Y3 )
                          = ( '#sk1' @ Y1 @ ( '#sk1' @ Y2 @ Y3 ) ) ) ) ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( ( Y0 @ Y1 @ Y1 )
                  = Y1 ) )
            & ( !!
              @ ^ [Y1: a] :
                  ( ( '#sk1' @ Y1 @ Y1 )
                  = Y1 ) ) )
         => ( !!
            @ ^ [Y1: a] :
                ( !!
                @ ^ [Y2: a] :
                    ( !!
                    @ ^ [Y3: a] :
                        ( ( '#sk1' @ Y1 @ ( Y0 @ Y2 @ ( '#sk1' @ Y1 @ Y3 ) ) )
                        = ( Y0 @ ( '#sk1' @ Y1 @ Y2 ) @ ( '#sk1' @ Y1 @ Y3 ) ) ) ) ) ) ) ),
    inference(lazy_cnf_exists,[status(thm)],[zip_derived_cl0]) ).

thf(zip_derived_cl2,plain,
    ~ ( ( ( !!
          @ ^ [Y0: a] :
              ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( ( '#sk2' @ Y0 @ ( '#sk1' @ Y1 @ Y2 ) )
                      = ( '#sk1' @ ( '#sk2' @ Y0 @ Y1 ) @ ( '#sk2' @ Y0 @ Y2 ) ) ) ) ) )
        & ( !!
          @ ^ [Y0: a] :
              ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( ( '#sk1' @ Y0 @ ( '#sk2' @ Y1 @ Y2 ) )
                      = ( '#sk2' @ ( '#sk1' @ Y0 @ Y1 ) @ ( '#sk1' @ Y0 @ Y2 ) ) ) ) ) )
        & ( !!
          @ ^ [Y0: a] :
              ( !!
              @ ^ [Y1: a] :
                  ( ( '#sk2' @ ( '#sk1' @ Y0 @ Y1 ) @ Y1 )
                  = Y1 ) ) )
        & ( !!
          @ ^ [Y0: a] :
              ( !!
              @ ^ [Y1: a] :
                  ( ( '#sk1' @ ( '#sk2' @ Y0 @ Y1 ) @ Y1 )
                  = Y1 ) ) )
        & ( !!
          @ ^ [Y0: a] :
              ( !!
              @ ^ [Y1: a] :
                  ( ( '#sk2' @ Y0 @ Y1 )
                  = ( '#sk2' @ Y1 @ Y0 ) ) ) )
        & ( !!
          @ ^ [Y0: a] :
              ( !!
              @ ^ [Y1: a] :
                  ( ( '#sk1' @ Y0 @ Y1 )
                  = ( '#sk1' @ Y1 @ Y0 ) ) ) )
        & ( !!
          @ ^ [Y0: a] :
              ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( ( '#sk2' @ ( '#sk2' @ Y0 @ Y1 ) @ Y2 )
                      = ( '#sk2' @ Y0 @ ( '#sk2' @ Y1 @ Y2 ) ) ) ) ) )
        & ( !!
          @ ^ [Y0: a] :
              ( !!
              @ ^ [Y1: a] :
                  ( !!
                  @ ^ [Y2: a] :
                      ( ( '#sk1' @ ( '#sk1' @ Y0 @ Y1 ) @ Y2 )
                      = ( '#sk1' @ Y0 @ ( '#sk1' @ Y1 @ Y2 ) ) ) ) ) )
        & ( !!
          @ ^ [Y0: a] :
              ( ( '#sk2' @ Y0 @ Y0 )
              = Y0 ) )
        & ( !!
          @ ^ [Y0: a] :
              ( ( '#sk1' @ Y0 @ Y0 )
              = Y0 ) ) )
     => ( !!
        @ ^ [Y0: a] :
            ( !!
            @ ^ [Y1: a] :
                ( !!
                @ ^ [Y2: a] :
                    ( ( '#sk1' @ Y0 @ ( '#sk2' @ Y1 @ ( '#sk1' @ Y0 @ Y2 ) ) )
                    = ( '#sk2' @ ( '#sk1' @ Y0 @ Y1 ) @ ( '#sk1' @ Y0 @ Y2 ) ) ) ) ) ) ),
    inference(lazy_cnf_exists,[status(thm)],[zip_derived_cl1]) ).

thf(zip_derived_cl3,plain,
    ( ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( !!
              @ ^ [Y2: a] :
                  ( ( '#sk2' @ Y0 @ ( '#sk1' @ Y1 @ Y2 ) )
                  = ( '#sk1' @ ( '#sk2' @ Y0 @ Y1 ) @ ( '#sk2' @ Y0 @ Y2 ) ) ) ) ) )
    & ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( !!
              @ ^ [Y2: a] :
                  ( ( '#sk1' @ Y0 @ ( '#sk2' @ Y1 @ Y2 ) )
                  = ( '#sk2' @ ( '#sk1' @ Y0 @ Y1 ) @ ( '#sk1' @ Y0 @ Y2 ) ) ) ) ) )
    & ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( ( '#sk2' @ ( '#sk1' @ Y0 @ Y1 ) @ Y1 )
              = Y1 ) ) )
    & ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( ( '#sk1' @ ( '#sk2' @ Y0 @ Y1 ) @ Y1 )
              = Y1 ) ) )
    & ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( ( '#sk2' @ Y0 @ Y1 )
              = ( '#sk2' @ Y1 @ Y0 ) ) ) )
    & ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( ( '#sk1' @ Y0 @ Y1 )
              = ( '#sk1' @ Y1 @ Y0 ) ) ) )
    & ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( !!
              @ ^ [Y2: a] :
                  ( ( '#sk2' @ ( '#sk2' @ Y0 @ Y1 ) @ Y2 )
                  = ( '#sk2' @ Y0 @ ( '#sk2' @ Y1 @ Y2 ) ) ) ) ) )
    & ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( !!
              @ ^ [Y2: a] :
                  ( ( '#sk1' @ ( '#sk1' @ Y0 @ Y1 ) @ Y2 )
                  = ( '#sk1' @ Y0 @ ( '#sk1' @ Y1 @ Y2 ) ) ) ) ) )
    & ( !!
      @ ^ [Y0: a] :
          ( ( '#sk2' @ Y0 @ Y0 )
          = Y0 ) )
    & ( !!
      @ ^ [Y0: a] :
          ( ( '#sk1' @ Y0 @ Y0 )
          = Y0 ) ) ),
    inference(lazy_cnf_imply,[status(thm)],[zip_derived_cl2]) ).

thf(zip_derived_cl10,plain,
    ( !!
    @ ^ [Y0: a] :
        ( !!
        @ ^ [Y1: a] :
            ( ( '#sk1' @ Y0 @ Y1 )
            = ( '#sk1' @ Y1 @ Y0 ) ) ) ),
    inference(lazy_cnf_and,[status(thm)],[zip_derived_cl3]) ).

thf(zip_derived_cl21,plain,
    ! [X2: a] :
      ( !!
      @ ^ [Y0: a] :
          ( ( '#sk1' @ X2 @ Y0 )
          = ( '#sk1' @ Y0 @ X2 ) ) ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl10]) ).

thf(zip_derived_cl32,plain,
    ! [X2: a,X4: a] :
      ( ( '#sk1' @ X2 @ X4 )
      = ( '#sk1' @ X4 @ X2 ) ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl21]) ).

thf(zip_derived_cl43,plain,
    ! [X2: a,X4: a] :
      ( ( '#sk1' @ X2 @ X4 )
      = ( '#sk1' @ X4 @ X2 ) ),
    inference('simplify nested equalities',[status(thm)],[zip_derived_cl32]) ).

thf(zip_derived_cl9,plain,
    ( !!
    @ ^ [Y0: a] :
        ( !!
        @ ^ [Y1: a] :
            ( ( '#sk2' @ Y0 @ Y1 )
            = ( '#sk2' @ Y1 @ Y0 ) ) ) ),
    inference(lazy_cnf_and,[status(thm)],[zip_derived_cl3]) ).

thf(zip_derived_cl20,plain,
    ! [X2: a] :
      ( !!
      @ ^ [Y0: a] :
          ( ( '#sk2' @ X2 @ Y0 )
          = ( '#sk2' @ Y0 @ X2 ) ) ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl9]) ).

thf(zip_derived_cl31,plain,
    ! [X2: a,X4: a] :
      ( ( '#sk2' @ X2 @ X4 )
      = ( '#sk2' @ X4 @ X2 ) ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl20]) ).

thf(zip_derived_cl42,plain,
    ! [X2: a,X4: a] :
      ( ( '#sk2' @ X2 @ X4 )
      = ( '#sk2' @ X4 @ X2 ) ),
    inference('simplify nested equalities',[status(thm)],[zip_derived_cl31]) ).

thf(zip_derived_cl4,plain,
    ~ ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( !!
              @ ^ [Y2: a] :
                  ( ( '#sk1' @ Y0 @ ( '#sk2' @ Y1 @ ( '#sk1' @ Y0 @ Y2 ) ) )
                  = ( '#sk2' @ ( '#sk1' @ Y0 @ Y1 ) @ ( '#sk1' @ Y0 @ Y2 ) ) ) ) ) ),
    inference(lazy_cnf_imply,[status(thm)],[zip_derived_cl2]) ).

thf(zip_derived_cl15,plain,
    ~ ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( ( '#sk1' @ '#sk3' @ ( '#sk2' @ Y0 @ ( '#sk1' @ '#sk3' @ Y1 ) ) )
              = ( '#sk2' @ ( '#sk1' @ '#sk3' @ Y0 ) @ ( '#sk1' @ '#sk3' @ Y1 ) ) ) ) ),
    inference(lazy_cnf_exists,[status(thm)],[zip_derived_cl4]) ).

thf(zip_derived_cl26,plain,
    ~ ( !!
      @ ^ [Y0: a] :
          ( ( '#sk1' @ '#sk3' @ ( '#sk2' @ '#sk4' @ ( '#sk1' @ '#sk3' @ Y0 ) ) )
          = ( '#sk2' @ ( '#sk1' @ '#sk3' @ '#sk4' ) @ ( '#sk1' @ '#sk3' @ Y0 ) ) ) ),
    inference(lazy_cnf_exists,[status(thm)],[zip_derived_cl15]) ).

thf(zip_derived_cl37,plain,
    ( ( '#sk1' @ '#sk3' @ ( '#sk2' @ '#sk4' @ ( '#sk1' @ '#sk3' @ '#sk5' ) ) )
   != ( '#sk2' @ ( '#sk1' @ '#sk3' @ '#sk4' ) @ ( '#sk1' @ '#sk3' @ '#sk5' ) ) ),
    inference(lazy_cnf_exists,[status(thm)],[zip_derived_cl26]) ).

thf(zip_derived_cl46,plain,
    ( ( '#sk1' @ '#sk3' @ ( '#sk2' @ '#sk4' @ ( '#sk1' @ '#sk3' @ '#sk5' ) ) )
   != ( '#sk2' @ ( '#sk1' @ '#sk3' @ '#sk4' ) @ ( '#sk1' @ '#sk3' @ '#sk5' ) ) ),
    inference('simplify nested equalities',[status(thm)],[zip_derived_cl37]) ).

thf(zip_derived_cl59,plain,
    ( ( '#sk1' @ '#sk3' @ ( '#sk2' @ '#sk4' @ ( '#sk1' @ '#sk3' @ '#sk5' ) ) )
   != ( '#sk2' @ ( '#sk1' @ '#sk3' @ '#sk5' ) @ ( '#sk1' @ '#sk3' @ '#sk4' ) ) ),
    inference('sup-',[status(thm)],[zip_derived_cl42,zip_derived_cl46]) ).

thf(zip_derived_cl85,plain,
    ( ( '#sk1' @ '#sk3' @ ( '#sk2' @ '#sk4' @ ( '#sk1' @ '#sk3' @ '#sk5' ) ) )
   != ( '#sk2' @ ( '#sk1' @ '#sk5' @ '#sk3' ) @ ( '#sk1' @ '#sk3' @ '#sk4' ) ) ),
    inference('sup-',[status(thm)],[zip_derived_cl43,zip_derived_cl59]) ).

thf(zip_derived_cl7,plain,
    ( !!
    @ ^ [Y0: a] :
        ( !!
        @ ^ [Y1: a] :
            ( ( '#sk2' @ ( '#sk1' @ Y0 @ Y1 ) @ Y1 )
            = Y1 ) ) ),
    inference(lazy_cnf_and,[status(thm)],[zip_derived_cl3]) ).

thf(zip_derived_cl18,plain,
    ! [X2: a] :
      ( !!
      @ ^ [Y0: a] :
          ( ( '#sk2' @ ( '#sk1' @ X2 @ Y0 ) @ Y0 )
          = Y0 ) ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl7]) ).

thf(zip_derived_cl29,plain,
    ! [X2: a,X4: a] :
      ( ( '#sk2' @ ( '#sk1' @ X2 @ X4 ) @ X4 )
      = X4 ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl18]) ).

thf(zip_derived_cl40,plain,
    ! [X2: a,X4: a] :
      ( ( '#sk2' @ ( '#sk1' @ X2 @ X4 ) @ X4 )
      = X4 ),
    inference('simplify nested equalities',[status(thm)],[zip_derived_cl29]) ).

thf(zip_derived_cl5,plain,
    ( !!
    @ ^ [Y0: a] :
        ( !!
        @ ^ [Y1: a] :
            ( !!
            @ ^ [Y2: a] :
                ( ( '#sk2' @ Y0 @ ( '#sk1' @ Y1 @ Y2 ) )
                = ( '#sk1' @ ( '#sk2' @ Y0 @ Y1 ) @ ( '#sk2' @ Y0 @ Y2 ) ) ) ) ) ),
    inference(lazy_cnf_and,[status(thm)],[zip_derived_cl3]) ).

thf(zip_derived_cl16,plain,
    ! [X2: a] :
      ( !!
      @ ^ [Y0: a] :
          ( !!
          @ ^ [Y1: a] :
              ( ( '#sk2' @ X2 @ ( '#sk1' @ Y0 @ Y1 ) )
              = ( '#sk1' @ ( '#sk2' @ X2 @ Y0 ) @ ( '#sk2' @ X2 @ Y1 ) ) ) ) ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl5]) ).

thf(zip_derived_cl27,plain,
    ! [X2: a,X4: a] :
      ( !!
      @ ^ [Y0: a] :
          ( ( '#sk2' @ X2 @ ( '#sk1' @ X4 @ Y0 ) )
          = ( '#sk1' @ ( '#sk2' @ X2 @ X4 ) @ ( '#sk2' @ X2 @ Y0 ) ) ) ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl16]) ).

thf(zip_derived_cl38,plain,
    ! [X2: a,X4: a,X6: a] :
      ( ( '#sk2' @ X2 @ ( '#sk1' @ X4 @ X6 ) )
      = ( '#sk1' @ ( '#sk2' @ X2 @ X4 ) @ ( '#sk2' @ X2 @ X6 ) ) ),
    inference(lazy_cnf_forall,[status(thm)],[zip_derived_cl27]) ).

thf(zip_derived_cl47,plain,
    ! [X2: a,X4: a,X6: a] :
      ( ( '#sk2' @ X2 @ ( '#sk1' @ X4 @ X6 ) )
      = ( '#sk1' @ ( '#sk2' @ X2 @ X4 ) @ ( '#sk2' @ X2 @ X6 ) ) ),
    inference('simplify nested equalities',[status(thm)],[zip_derived_cl38]) ).

thf(zip_derived_cl147,plain,
    ! [X0: a,X1: a,X2: a] :
      ( ( '#sk2' @ ( '#sk1' @ X2 @ X0 ) @ ( '#sk1' @ X0 @ X1 ) )
      = ( '#sk1' @ X0 @ ( '#sk2' @ ( '#sk1' @ X2 @ X0 ) @ X1 ) ) ),
    inference('sup+',[status(thm)],[zip_derived_cl40,zip_derived_cl47]) ).

thf(zip_derived_cl42_001,plain,
    ! [X2: a,X4: a] :
      ( ( '#sk2' @ X2 @ X4 )
      = ( '#sk2' @ X4 @ X2 ) ),
    inference('simplify nested equalities',[status(thm)],[zip_derived_cl31]) ).

thf(zip_derived_cl1020,plain,
    ( ( '#sk1' @ '#sk3' @ ( '#sk2' @ '#sk4' @ ( '#sk1' @ '#sk3' @ '#sk5' ) ) )
   != ( '#sk1' @ '#sk3' @ ( '#sk2' @ '#sk4' @ ( '#sk1' @ '#sk5' @ '#sk3' ) ) ) ),
    inference(demod,[status(thm)],[zip_derived_cl85,zip_derived_cl147,zip_derived_cl42]) ).

thf(zip_derived_cl43_002,plain,
    ! [X2: a,X4: a] :
      ( ( '#sk1' @ X2 @ X4 )
      = ( '#sk1' @ X4 @ X2 ) ),
    inference('simplify nested equalities',[status(thm)],[zip_derived_cl32]) ).

thf(zip_derived_cl1021,plain,
    $false,
    inference('simplify_reflect+',[status(thm)],[zip_derived_cl1020,zip_derived_cl43]) ).


%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.13  % Problem  : SEV002^5 : TPTP v8.1.2. Released v4.0.0.
% 0.00/0.14  % Command  : python3 /export/starexec/sandbox/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox/tmp/tmp.Ufd0LBcsXO true
% 0.15/0.35  % Computer : n006.cluster.edu
% 0.15/0.35  % Model    : x86_64 x86_64
% 0.15/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.15/0.35  % Memory   : 8042.1875MB
% 0.15/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.15/0.35  % CPULimit : 300
% 0.15/0.35  % WCLimit  : 300
% 0.15/0.35  % DateTime : Thu Aug 24 03:37:38 EDT 2023
% 0.21/0.35  % CPUTime  : 
% 0.21/0.35  % Running portfolio for 300 s
% 0.21/0.35  % File         : /export/starexec/sandbox/benchmark/theBenchmark.p
% 0.21/0.36  % Number of cores: 8
% 0.21/0.36  % Python version: Python 3.6.8
% 0.21/0.36  % Running in HO mode
% 0.21/0.66  % Total configuration time : 828
% 0.21/0.66  % Estimated wc time : 1656
% 0.21/0.66  % Estimated cpu time (8 cpus) : 207.0
% 0.21/0.75  % /export/starexec/sandbox/solver/bin/lams/40_c.s.sh running for 80s
% 0.21/0.75  % /export/starexec/sandbox/solver/bin/lams/35_full_unif4.sh running for 80s
% 0.21/0.76  % /export/starexec/sandbox/solver/bin/lams/40_c_ic.sh running for 80s
% 0.21/0.77  % /export/starexec/sandbox/solver/bin/lams/40_noforms.sh running for 90s
% 0.21/0.77  % /export/starexec/sandbox/solver/bin/lams/15_e_short1.sh running for 30s
% 0.21/0.77  % /export/starexec/sandbox/solver/bin/lams/40_b.comb.sh running for 70s
% 0.96/0.83  % /export/starexec/sandbox/solver/bin/lams/20_acsne_simpl.sh running for 40s
% 0.96/0.83  % /export/starexec/sandbox/solver/bin/lams/30_sp5.sh running for 60s
% 1.44/1.02  % Solved by lams/35_full_unif4.sh.
% 1.44/1.02  % done 207 iterations in 0.240s
% 1.44/1.02  % SZS status Theorem for '/export/starexec/sandbox/benchmark/theBenchmark.p'
% 1.44/1.02  % SZS output start Refutation
% See solution above
% 1.44/1.03  
% 1.44/1.03  
% 1.44/1.03  % Terminating...
% 1.84/1.09  % Runner terminated.
% 1.84/1.09  % Zipperpin 1.5 exiting
%------------------------------------------------------------------------------