↑ Up

Zipperpin---2.1.9999.THM-Ref.s

View TPTP
Problem
Process solution in
SystemOnTSTP
Download .tgz
%------------------------------------------------------------------------------
% File     : Zipperpin---2.1.9999
% Problem  : SWX153_1 : TPTP v9.3.0. Released v9.3.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : python3 /export/starexec/sandbox2/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox2/tmp/tmp.XAItX95zH7 true

% 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 : Tue May  5 07:08:45 PM UTC 2026

% Result   : Theorem 69.77s 9.43s
% Output   : Refutation 69.77s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :    3
%            Number of leaves      :    2
% Syntax   : Number of formulae    :    6 (   4 unt;   0 typ;   0 def)
%            Number of atoms       :  255 (  81 equ;  52 cnn)
%            Maximal formula atoms :   50 (  42 avg)
%            Number of connectives :  614 ( 106   ~;  60   |;  72   &; 323   @)
%                                         (   2 <=>;   4  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   40 (  14 avg)
%            Number of types       :    5 (   3 usr)
%            Number of type conns  :  120 ( 120   >;   0   *;   0   +;   0  <<)
%            Number of symbols     :   40 (  35 usr;   6 con; 0-3 aty)
%                                         (  45  !!;   2  ??;   0 @@+;   0 @@-)
%            Number of variables   :  202 ( 155   ^;  45   !;   2   ?; 202   :)

% Comments : 
%------------------------------------------------------------------------------
thf(d_unsorted_type,type,
    d_unsorted: $tType ).

thf(mu_type,type,
    mu: $tType ).

thf(d_mu_type,type,
    d_mu: $tType ).

thf(mexists_ind_type,type,
    mexists_ind: ( mu > $i > $o ) > $i > $o ).

thf(meuclidean_type,type,
    meuclidean: ( $i > $i > $o ) > $o ).

thf(mvalid_type,type,
    mvalid: ( $i > $o ) > $o ).

thf(mnot_type,type,
    mnot: ( $i > $o ) > $i > $o ).

thf(mcountersatisfiable_type,type,
    mcountersatisfiable: ( $i > $o ) > $o ).

thf(mforall_ind_type,type,
    mforall_ind: ( mu > $i > $o ) > $i > $o ).

thf(mimplied_type,type,
    mimplied: ( $i > $o ) > ( $i > $o ) > $i > $o ).

thf(mfalse_type,type,
    mfalse: $i > $o ).

thf(mpartially_functional_type,type,
    mpartially_functional: ( $i > $i > $o ) > $o ).

thf(mtrue_type,type,
    mtrue: $i > $o ).

thf(mdia_type,type,
    mdia: ( $i > $i > $o ) > ( $i > $o ) > $i > $o ).

thf(meq_ind_type,type,
    meq_ind: mu > mu > $i > $o ).

thf(mand_type,type,
    mand: ( $i > $o ) > ( $i > $o ) > $i > $o ).

thf(mequiv_type,type,
    mequiv: ( $i > $o ) > ( $i > $o ) > $i > $o ).

thf(mserial_type,type,
    mserial: ( $i > $i > $o ) > $o ).

thf(mreflexive_type,type,
    mreflexive: ( $i > $i > $o ) > $o ).

thf(mimplies_type,type,
    mimplies: ( $i > $o ) > ( $i > $o ) > $i > $o ).

thf(d2mu_type,type,
    d2mu: d_mu > mu ).

thf(minvalid_type,type,
    minvalid: ( $i > $o ) > $o ).

thf(mweakly_directed_type,type,
    mweakly_directed: ( $i > $i > $o ) > $o ).

thf(mor_type,type,
    mor: ( $i > $o ) > ( $i > $o ) > $i > $o ).

thf(meq_prop_type,type,
    meq_prop: ( $i > $o ) > ( $i > $o ) > $i > $o ).

thf(mtransitive_type,type,
    mtransitive: ( $i > $i > $o ) > $o ).

thf(mxor_type,type,
    mxor: ( $i > $o ) > ( $i > $o ) > $i > $o ).

thf(mweakly_dense_type,type,
    mweakly_dense: ( $i > $i > $o ) > $o ).

thf(d_unsorted_0_type,type,
    d_unsorted_0: d_unsorted ).

thf(d_mu_0_type,type,
    d_mu_0: d_mu ).

thf(msymmetric_type,type,
    msymmetric: ( $i > $i > $o ) > $o ).

thf(mweakly_connected_type,type,
    mweakly_connected: ( $i > $i > $o ) > $o ).

thf(mfunctional_type,type,
    mfunctional: ( $i > $i > $o ) > $o ).

thf(mbox_type,type,
    mbox: ( $i > $i > $o ) > ( $i > $o ) > $i > $o ).

thf(mforall_prop_type,type,
    mforall_prop: ( ( $i > $o ) > $i > $o ) > $i > $o ).

thf(d2unsorted_type,type,
    d2unsorted: d_unsorted > $i ).

thf(mexists_prop_type,type,
    mexists_prop: ( ( $i > $o ) > $i > $o ) > $i > $o ).

thf(msatisfiable_type,type,
    msatisfiable: ( $i > $o ) > $o ).

thf(mequiv,conjecture,
    ( mequiv
    = ( ^ [Phi: $i > $o,Psi: $i > $o] : ( mand @ ( mimplies @ Phi @ Psi ) @ ( mimplies @ Psi @ Phi ) ) ) ) ).

thf(zf_stmt_0,negated_conjecture,
    ( mequiv
   != ( ^ [Phi: $i > $o,Psi: $i > $o] : ( mand @ ( mimplies @ Phi @ Psi ) @ ( mimplies @ Psi @ Phi ) ) ) ),
    inference('cnf.neg',[status(esa)],[mequiv]) ).

thf(zip_derived_cl1,plain,
    ( mequiv
   != ( ^ [Y0: $i > $o,Y1: $i > $o] : ( mand @ ( mimplies @ Y0 @ Y1 ) @ ( mimplies @ Y1 @ Y0 ) ) ) ),
    inference(cnf,[status(esa)],[zf_stmt_0]) ).

thf(lcl698_1,axiom,
    ( ! [U: $i] :
      ? [DU: d_unsorted] :
        ( U
        = ( d2unsorted @ DU ) )
    & ! [DU: d_unsorted] : ( DU = d_unsorted_0 )
    & ! [DU1: d_unsorted,DU2: d_unsorted] :
        ( ( ( d2unsorted @ DU1 )
          = ( d2unsorted @ DU2 ) )
       => ( DU1 = DU2 ) )
    & ! [M: mu] :
      ? [DM: d_mu] :
        ( M
        = ( d2mu @ DM ) )
    & ! [DM: d_mu] : ( DM = d_mu_0 )
    & ! [DM1: d_mu,DM2: d_mu] :
        ( ( ( d2mu @ DM1 )
          = ( d2mu @ DM2 ) )
       => ( DM1 = DM2 ) )
    & ( meq_prop
      = ( ^ [X: $i > $o,Y: $i > $o,W: $i] :
            ( ( X @ W )
          <=> ( Y @ W ) ) ) )
    & ( mnot
      = ( ^ [Phi: $i > $o,W: $i] :
            ~ ( Phi @ W ) ) )
    & ( mor
      = ( ^ [Phi: $i > $o,Psi: $i > $o,W: $i] :
            ( ( Psi @ W )
            | ( Phi @ W ) ) ) )
    & ( mand
      = ( ^ [Phi: $i > $o,Psi: $i > $o,Flatten_var_0: $i] :
            ~ ( ~ ( Psi @ Flatten_var_0 )
              | ~ ( Phi @ Flatten_var_0 ) ) ) )
    & ( mimplies
      = ( ^ [Phi: $i > $o,Psi: $i > $o,Flatten_var_0: $i] :
            ( ( Psi @ Flatten_var_0 )
            | ~ ( Phi @ Flatten_var_0 ) ) ) )
    & ( mimplied
      = ( ^ [Phi: $i > $o,Psi: $i > $o,Flatten_var_0: $i] :
            ( ( Phi @ Flatten_var_0 )
            | ~ ( Psi @ Flatten_var_0 ) ) ) )
    & ( mequiv
      = ( ^ [Phi: $i > $o,Psi: $i > $o,Flatten_var_0: $i] :
            ~ ( ~ ( ( Phi @ Flatten_var_0 )
                  | ~ ( Psi @ Flatten_var_0 ) )
              | ~ ( ( Psi @ Flatten_var_0 )
                  | ~ ( Phi @ Flatten_var_0 ) ) ) ) )
    & ( mxor
      = ( ^ [Phi: $i > $o,Psi: $i > $o,Flatten_var_0: $i] :
            ( ~ ( ( Phi @ Flatten_var_0 )
                | ~ ( Psi @ Flatten_var_0 ) )
            | ~ ( ( Psi @ Flatten_var_0 )
                | ~ ( Phi @ Flatten_var_0 ) ) ) ) )
    & ( mforall_ind
      = ( ^ [Phi: mu > $i > $o,W: $i] :
          ! [X: mu] : ( Phi @ X @ W ) ) )
    & ( mforall_prop
      = ( ^ [Phi: ( $i > $o ) > $i > $o,W: $i] :
          ! [P: $i > $o] : ( Phi @ P @ W ) ) )
    & ( mexists_ind
      = ( ^ [Phi: mu > $i > $o,Flatten_var_0: $i] :
            ~ ! [X: mu] :
                ~ ( Phi @ X @ Flatten_var_0 ) ) )
    & ( mexists_prop
      = ( ^ [Phi: ( $i > $o ) > $i > $o,Flatten_var_0: $i] :
            ~ ! [P: $i > $o] :
                ~ ( Phi @ P @ Flatten_var_0 ) ) )
    & ( mbox
      = ( ^ [R: $i > $i > $o,Phi: $i > $o,W: $i] :
          ! [V: $i] :
            ( ~ ( R @ W @ V )
            | ( Phi @ V ) ) ) )
    & ( mdia
      = ( ^ [R: $i > $i > $o,Phi: $i > $o,Flatten_var_0: $i] :
            ~ ! [V: $i] :
                ( ~ ( R @ Flatten_var_0 @ V )
                | ~ ( Phi @ V ) ) ) )
    & ( mreflexive
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i] : ( R @ S @ S ) ) )
    & ( msymmetric
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i,T: $i] :
            ( ~ ( R @ S @ T )
            | ( R @ T @ S ) ) ) )
    & ( mserial
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i] :
            ~ ! [T: $i] :
                ~ ( R @ S @ T ) ) )
    & ( mtransitive
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i,T: $i,U: $i] :
            ( ~ ( R @ S @ T )
            | ~ ( R @ T @ U )
            | ( R @ S @ U ) ) ) )
    & ( meuclidean
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i,T: $i,U: $i] :
            ( ~ ( R @ S @ T )
            | ~ ( R @ S @ U )
            | ( R @ T @ U ) ) ) )
    & ( mpartially_functional
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i,T: $i,U: $i] :
            ( ~ ( R @ S @ T )
            | ~ ( R @ S @ U )
            | ( T = U ) ) ) )
    & ( mfunctional
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i] :
            ~ ! [T: $i] :
                ( ~ ( R @ S @ T )
                | ~ ! [U: $i] :
                      ( ~ ( R @ S @ U )
                      | ( T = U ) ) ) ) )
    & ( mweakly_dense
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i,T: $i] :
            ( ~ ( R @ S @ T )
            | ~ ! [Bound_variable_953: $i] :
                  ( ~ ( R @ S @ Bound_variable_953 )
                  | ~ ( R @ Bound_variable_953 @ T ) ) ) ) )
    & ( mweakly_connected
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i,T: $i,U: $i] :
            ( ~ ( R @ S @ T )
            | ~ ( R @ S @ U )
            | ( R @ T @ U )
            | ( T = U )
            | ( R @ U @ T ) ) ) )
    & ( mweakly_directed
      = ( ^ [R: $i > $i > $o] :
          ! [S: $i,T: $i,U: $i] :
            ( ~ ( R @ S @ T )
            | ~ ( R @ S @ U )
            | ~ ! [V: $i] :
                  ( ~ ( R @ T @ V )
                  | ~ ( R @ U @ V ) ) ) ) )
    & ( mvalid
      = ( ^ [Phi: $i > $o] :
          ! [W: $i] : ( Phi @ W ) ) )
    & ( minvalid
      = ( ^ [Phi: $i > $o] :
          ! [W: $i] :
            ~ ( Phi @ W ) ) )
    & ( msatisfiable
      = ( ^ [Phi: $i > $o] :
            ~ ! [W: $i] :
                ~ ( Phi @ W ) ) )
    & ( mcountersatisfiable
      = ( ^ [Phi: $i > $o] :
            ~ ! [W: $i] : ( Phi @ W ) ) )
    & ( meq_ind @ ( d2mu @ d_mu_0 ) @ ( d2mu @ d_mu_0 ) @ ( d2unsorted @ d_unsorted_0 ) )
    & ( mtrue @ ( d2unsorted @ d_unsorted_0 ) )
    & ~ ( mfalse @ ( d2unsorted @ d_unsorted_0 ) ) ) ).

thf(zip_derived_cl0,plain,
    ( ( !!
      @ ^ [Y0: $i] :
          ( ??
          @ ^ [Y1: d_unsorted] :
              ( Y0
              = ( d2unsorted @ Y1 ) ) ) )
    & ( !!
      @ ^ [Y0: d_unsorted] : ( Y0 = d_unsorted_0 ) )
    & ( !!
      @ ^ [Y0: d_unsorted] :
          ( !!
          @ ^ [Y1: d_unsorted] :
              ( ( ( d2unsorted @ Y0 )
                = ( d2unsorted @ Y1 ) )
             => ( Y0 = Y1 ) ) ) )
    & ( !!
      @ ^ [Y0: mu] :
          ( ??
          @ ^ [Y1: d_mu] :
              ( Y0
              = ( d2mu @ Y1 ) ) ) )
    & ( !!
      @ ^ [Y0: d_mu] : ( Y0 = d_mu_0 ) )
    & ( !!
      @ ^ [Y0: d_mu] :
          ( !!
          @ ^ [Y1: d_mu] :
              ( ( ( d2mu @ Y0 )
                = ( d2mu @ Y1 ) )
             => ( Y0 = Y1 ) ) ) )
    & ( meq_prop
      = ( ^ [Y0: $i > $o,Y1: $i > $o,Y2: $i] :
            ( ( Y0 @ Y2 )
          <=> ( Y1 @ Y2 ) ) ) )
    & ( mnot
      = ( ^ [Y0: $i > $o,Y1: $i] : ( (~) @ ( Y0 @ Y1 ) ) ) )
    & ( mor
      = ( ^ [Y0: $i > $o,Y1: $i > $o,Y2: $i] :
            ( ( Y1 @ Y2 )
            | ( Y0 @ Y2 ) ) ) )
    & ( mand
      = ( ^ [Y0: $i > $o,Y1: $i > $o,Y2: $i] :
            ( (~)
            @ ( ( (~) @ ( Y1 @ Y2 ) )
              | ( (~) @ ( Y0 @ Y2 ) ) ) ) ) )
    & ( mimplies
      = ( ^ [Y0: $i > $o,Y1: $i > $o,Y2: $i] :
            ( ( Y1 @ Y2 )
            | ( (~) @ ( Y0 @ Y2 ) ) ) ) )
    & ( mimplied
      = ( ^ [Y0: $i > $o,Y1: $i > $o,Y2: $i] :
            ( ( Y0 @ Y2 )
            | ( (~) @ ( Y1 @ Y2 ) ) ) ) )
    & ( mequiv
      = ( ^ [Y0: $i > $o,Y1: $i > $o,Y2: $i] :
            ( (~)
            @ ( ( (~)
                @ ( ( Y0 @ Y2 )
                  | ( (~) @ ( Y1 @ Y2 ) ) ) )
              | ( (~)
                @ ( ( Y1 @ Y2 )
                  | ( (~) @ ( Y0 @ Y2 ) ) ) ) ) ) ) )
    & ( mxor
      = ( ^ [Y0: $i > $o,Y1: $i > $o,Y2: $i] :
            ( ( (~)
              @ ( ( Y0 @ Y2 )
                | ( (~) @ ( Y1 @ Y2 ) ) ) )
            | ( (~)
              @ ( ( Y1 @ Y2 )
                | ( (~) @ ( Y0 @ Y2 ) ) ) ) ) ) )
    & ( mforall_ind
      = ( ^ [Y0: mu > $i > $o,Y1: $i] :
            ( !!
            @ ^ [Y2: mu] : ( Y0 @ Y2 @ Y1 ) ) ) )
    & ( mforall_prop
      = ( ^ [Y0: ( $i > $o ) > $i > $o,Y1: $i] :
            ( !!
            @ ^ [Y2: $i > $o] : ( Y0 @ Y2 @ Y1 ) ) ) )
    & ( mexists_ind
      = ( ^ [Y0: mu > $i > $o,Y1: $i] :
            ( (~)
            @ ( !!
              @ ^ [Y2: mu] : ( (~) @ ( Y0 @ Y2 @ Y1 ) ) ) ) ) )
    & ( mexists_prop
      = ( ^ [Y0: ( $i > $o ) > $i > $o,Y1: $i] :
            ( (~)
            @ ( !!
              @ ^ [Y2: $i > $o] : ( (~) @ ( Y0 @ Y2 @ Y1 ) ) ) ) ) )
    & ( mbox
      = ( ^ [Y0: $i > $i > $o,Y1: $i > $o,Y2: $i] :
            ( !!
            @ ^ [Y3: $i] :
                ( ( (~) @ ( Y0 @ Y2 @ Y3 ) )
                | ( Y1 @ Y3 ) ) ) ) )
    & ( mdia
      = ( ^ [Y0: $i > $i > $o,Y1: $i > $o,Y2: $i] :
            ( (~)
            @ ( !!
              @ ^ [Y3: $i] :
                  ( ( (~) @ ( Y0 @ Y2 @ Y3 ) )
                  | ( (~) @ ( Y1 @ Y3 ) ) ) ) ) ) )
    & ( mreflexive
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] : ( Y0 @ Y1 @ Y1 ) ) ) )
    & ( msymmetric
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( !!
                @ ^ [Y2: $i] :
                    ( ( (~) @ ( Y0 @ Y1 @ Y2 ) )
                    | ( Y0 @ Y2 @ Y1 ) ) ) ) ) )
    & ( mserial
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( (~)
                @ ( !!
                  @ ^ [Y2: $i] : ( (~) @ ( Y0 @ Y1 @ Y2 ) ) ) ) ) ) )
    & ( mtransitive
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( !!
                @ ^ [Y2: $i] :
                    ( !!
                    @ ^ [Y3: $i] :
                        ( ( (~) @ ( Y0 @ Y1 @ Y2 ) )
                        | ( (~) @ ( Y0 @ Y2 @ Y3 ) )
                        | ( Y0 @ Y1 @ Y3 ) ) ) ) ) ) )
    & ( meuclidean
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( !!
                @ ^ [Y2: $i] :
                    ( !!
                    @ ^ [Y3: $i] :
                        ( ( (~) @ ( Y0 @ Y1 @ Y2 ) )
                        | ( (~) @ ( Y0 @ Y1 @ Y3 ) )
                        | ( Y0 @ Y2 @ Y3 ) ) ) ) ) ) )
    & ( mpartially_functional
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( !!
                @ ^ [Y2: $i] :
                    ( !!
                    @ ^ [Y3: $i] :
                        ( ( (~) @ ( Y0 @ Y1 @ Y2 ) )
                        | ( (~) @ ( Y0 @ Y1 @ Y3 ) )
                        | ( Y2 = Y3 ) ) ) ) ) ) )
    & ( mfunctional
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( (~)
                @ ( !!
                  @ ^ [Y2: $i] :
                      ( ( (~) @ ( Y0 @ Y1 @ Y2 ) )
                      | ( (~)
                        @ ( !!
                          @ ^ [Y3: $i] :
                              ( ( (~) @ ( Y0 @ Y1 @ Y3 ) )
                              | ( Y2 = Y3 ) ) ) ) ) ) ) ) ) )
    & ( mweakly_dense
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( !!
                @ ^ [Y2: $i] :
                    ( ( (~) @ ( Y0 @ Y1 @ Y2 ) )
                    | ( (~)
                      @ ( !!
                        @ ^ [Y3: $i] :
                            ( ( (~) @ ( Y0 @ Y1 @ Y3 ) )
                            | ( (~) @ ( Y0 @ Y3 @ Y2 ) ) ) ) ) ) ) ) ) )
    & ( mweakly_connected
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( !!
                @ ^ [Y2: $i] :
                    ( !!
                    @ ^ [Y3: $i] :
                        ( ( (~) @ ( Y0 @ Y1 @ Y2 ) )
                        | ( (~) @ ( Y0 @ Y1 @ Y3 ) )
                        | ( Y0 @ Y2 @ Y3 )
                        | ( Y2 = Y3 )
                        | ( Y0 @ Y3 @ Y2 ) ) ) ) ) ) )
    & ( mweakly_directed
      = ( ^ [Y0: $i > $i > $o] :
            ( !!
            @ ^ [Y1: $i] :
                ( !!
                @ ^ [Y2: $i] :
                    ( !!
                    @ ^ [Y3: $i] :
                        ( ( (~) @ ( Y0 @ Y1 @ Y2 ) )
                        | ( (~) @ ( Y0 @ Y1 @ Y3 ) )
                        | ( (~)
                          @ ( !!
                            @ ^ [Y4: $i] :
                                ( ( (~) @ ( Y0 @ Y2 @ Y4 ) )
                                | ( (~) @ ( Y0 @ Y3 @ Y4 ) ) ) ) ) ) ) ) ) ) )
    & ( mvalid
      = ( ^ [Y0: $i > $o] :
            ( !!
            @ ^ [Y1: $i] : ( Y0 @ Y1 ) ) ) )
    & ( minvalid
      = ( ^ [Y0: $i > $o] :
            ( !!
            @ ^ [Y1: $i] : ( (~) @ ( Y0 @ Y1 ) ) ) ) )
    & ( msatisfiable
      = ( ^ [Y0: $i > $o] :
            ( (~)
            @ ( !!
              @ ^ [Y1: $i] : ( (~) @ ( Y0 @ Y1 ) ) ) ) ) )
    & ( mcountersatisfiable
      = ( ^ [Y0: $i > $o] :
            ( (~)
            @ ( !!
              @ ^ [Y1: $i] : ( Y0 @ Y1 ) ) ) ) )
    & ( meq_ind @ ( d2mu @ d_mu_0 ) @ ( d2mu @ d_mu_0 ) @ ( d2unsorted @ d_unsorted_0 ) )
    & ( mtrue @ ( d2unsorted @ d_unsorted_0 ) )
    & ( (~) @ ( mfalse @ ( d2unsorted @ d_unsorted_0 ) ) ) ),
    inference(cnf,[status(esa)],[lcl698_1]) ).

thf(zip_derived_cl3519,plain,
    $false,
    inference(eprover,[status(thm)],[zip_derived_cl1,zip_derived_cl0]) ).


%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.12  % Problem  : SWX153_1 : TPTP v9.3.0. Released v9.3.0.
% 0.12/0.13  % Command  : python3 /export/starexec/sandbox2/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox2/tmp/tmp.XAItX95zH7 true
% 0.16/0.35  % Computer : n014.cluster.edu
% 0.16/0.35  % Model    : x86_64 x86_64
% 0.16/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.16/0.35  % Memory   : 8042.1875MB
% 0.16/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.16/0.35  % CPULimit : 300
% 0.16/0.35  % WCLimit  : 300
% 0.16/0.35  % DateTime : Tue May  5 09:28:21 EDT 2026
% 0.16/0.35  % CPUTime  : 
% 0.16/0.35  % Running portfolio for 300 s
% 0.16/0.35  % File         : /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.16/0.35  % Number of cores: 8
% 0.16/0.35  % Python version: Python 3.6.8
% 0.16/0.35  % Running in HO mode
% 0.57/0.69  % Total configuration time : 828
% 0.57/0.69  % Estimated wc time : 1656
% 0.57/0.69  % Estimated cpu time (8 cpus) : 207.0
% 0.59/0.74  % /export/starexec/sandbox2/solver/bin/lams/40_c.s.sh running for 80s
% 0.59/0.74  % /export/starexec/sandbox2/solver/bin/lams/40_c_ic.sh running for 80s
% 0.59/0.74  % /export/starexec/sandbox2/solver/bin/lams/35_full_unif4.sh running for 80s
% 0.59/0.78  % /export/starexec/sandbox2/solver/bin/lams/15_e_short1.sh running for 30s
% 0.59/0.78  % /export/starexec/sandbox2/solver/bin/lams/40_noforms.sh running for 90s
% 0.59/0.78  % /export/starexec/sandbox2/solver/bin/lams/40_b.comb.sh running for 70s
% 0.59/0.78  % /export/starexec/sandbox2/solver/bin/lams/20_acsne_simpl.sh running for 40s
% 0.61/0.80  % /export/starexec/sandbox2/solver/bin/lams/30_sp5.sh running for 60s
% 0.61/0.81  % /export/starexec/sandbox2/solver/bin/lams/30_b.l.sh running for 90s
% 69.77/9.43  % Solved by lams/15_e_short1.sh.
% 69.77/9.43  % done 91 iterations in 8.620s
% 69.77/9.43  % SZS status Theorem for '/export/starexec/sandbox2/benchmark/theBenchmark.p'
% 69.77/9.43  % SZS output start Refutation
% See solution above
% 69.77/9.43  
% 69.77/9.43  
% 69.77/9.43  % Terminating...
% 10.23/9.50  % Runner terminated.
% 10.23/9.52  % Zipperpin 1.5 exiting
%------------------------------------------------------------------------------