TSTP Solution File: GRP641+3 by E---3.1

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : E---3.1
% Problem  : GRP641+3 : TPTP v8.1.2. Released v3.4.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run_E %s %d THM

% Computer : n002.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 : 2400s
% WCLimit  : 300s
% DateTime : Tue Oct 10 17:42:27 EDT 2023

% Result   : Theorem 9.10s 4.57s
% Output   : CNFRefutation 9.10s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   10
%            Number of leaves      :    9
% Syntax   : Number of formulae    :   55 (  15 unt;   0 def)
%            Number of atoms       :  282 (  19 equ)
%            Maximal formula atoms :   38 (   5 avg)
%            Number of connectives :  354 ( 127   ~; 126   |;  66   &)
%                                         (   6 <=>;  29  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   16 (   5 avg)
%            Maximal term depth    :    3 (   1 avg)
%            Number of predicates  :   15 (  13 usr;   1 prp; 0-3 aty)
%            Number of functors    :    9 (   9 usr;   2 con; 0-2 aty)
%            Number of variables   :   61 (   0 sgn;  42   !;   0   ?)

% Comments : 
%------------------------------------------------------------------------------
fof(dt_m1_group_2,axiom,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & l1_group_1(X1) )
     => ! [X2] :
          ( m1_group_2(X2,X1)
         => ( ~ v3_struct_0(X2)
            & v3_group_1(X2)
            & l1_group_1(X2) ) ) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',dt_m1_group_2) ).

fof(t19_latsubgr,conjecture,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & v4_group_1(X1)
        & l1_group_1(X1) )
     => ! [X2] :
          ( ( v1_group_1(X2)
            & m1_group_2(X2,X1) )
         => r2_hidden(k2_group_1(X1),k1_funct_1(k1_latsubgr(X1),X2)) ) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',t19_latsubgr) ).

fof(dt_k2_group_1,axiom,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & l1_group_1(X1) )
     => m1_subset_1(k2_group_1(X1),u1_struct_0(X1)) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',dt_k2_group_1) ).

fof(d2_subset_1,axiom,
    ! [X1,X2] :
      ( ( ~ v1_xboole_0(X1)
       => ( m1_subset_1(X2,X1)
        <=> r2_hidden(X2,X1) ) )
      & ( v1_xboole_0(X1)
       => ( m1_subset_1(X2,X1)
        <=> v1_xboole_0(X2) ) ) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',d2_subset_1) ).

fof(fc1_struct_0,axiom,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & l1_struct_0(X1) )
     => ~ v1_xboole_0(u1_struct_0(X1)) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',fc1_struct_0) ).

fof(d1_latsubgr,axiom,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & v4_group_1(X1)
        & l1_group_1(X1) )
     => ! [X2] :
          ( ( v1_funct_1(X2)
            & v1_funct_2(X2,k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1)))
            & m2_relset_1(X2,k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1))) )
         => ( X2 = k1_latsubgr(X1)
          <=> ! [X3] :
                ( ( v1_group_1(X3)
                  & m1_group_2(X3,X1) )
               => k1_funct_1(X2,X3) = u1_struct_0(X3) ) ) ) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',d1_latsubgr) ).

fof(dt_k1_latsubgr,axiom,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & v4_group_1(X1)
        & l1_group_1(X1) )
     => ( v1_funct_1(k1_latsubgr(X1))
        & v1_funct_2(k1_latsubgr(X1),k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1)))
        & m2_relset_1(k1_latsubgr(X1),k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1))) ) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',dt_k1_latsubgr) ).

fof(t53_group_2,axiom,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & v4_group_1(X1)
        & l1_group_1(X1) )
     => ! [X2] :
          ( m1_group_2(X2,X1)
         => k2_group_1(X2) = k2_group_1(X1) ) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',t53_group_2) ).

fof(dt_l1_group_1,axiom,
    ! [X1] :
      ( l1_group_1(X1)
     => l1_struct_0(X1) ),
    file('/export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p',dt_l1_group_1) ).

fof(c_0_9,plain,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & l1_group_1(X1) )
     => ! [X2] :
          ( m1_group_2(X2,X1)
         => ( ~ v3_struct_0(X2)
            & v3_group_1(X2)
            & l1_group_1(X2) ) ) ),
    inference(fof_simplification,[status(thm)],[dt_m1_group_2]) ).

fof(c_0_10,negated_conjecture,
    ~ ! [X1] :
        ( ( ~ v3_struct_0(X1)
          & v3_group_1(X1)
          & v4_group_1(X1)
          & l1_group_1(X1) )
       => ! [X2] :
            ( ( v1_group_1(X2)
              & m1_group_2(X2,X1) )
           => r2_hidden(k2_group_1(X1),k1_funct_1(k1_latsubgr(X1),X2)) ) ),
    inference(fof_simplification,[status(thm)],[inference(assume_negation,[status(cth)],[t19_latsubgr])]) ).

fof(c_0_11,plain,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & l1_group_1(X1) )
     => m1_subset_1(k2_group_1(X1),u1_struct_0(X1)) ),
    inference(fof_simplification,[status(thm)],[dt_k2_group_1]) ).

fof(c_0_12,plain,
    ! [X199,X200] :
      ( ( ~ v3_struct_0(X200)
        | ~ m1_group_2(X200,X199)
        | v3_struct_0(X199)
        | ~ v3_group_1(X199)
        | ~ l1_group_1(X199) )
      & ( v3_group_1(X200)
        | ~ m1_group_2(X200,X199)
        | v3_struct_0(X199)
        | ~ v3_group_1(X199)
        | ~ l1_group_1(X199) )
      & ( l1_group_1(X200)
        | ~ m1_group_2(X200,X199)
        | v3_struct_0(X199)
        | ~ v3_group_1(X199)
        | ~ l1_group_1(X199) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_9])])])]) ).

fof(c_0_13,negated_conjecture,
    ( ~ v3_struct_0(esk1_0)
    & v3_group_1(esk1_0)
    & v4_group_1(esk1_0)
    & l1_group_1(esk1_0)
    & v1_group_1(esk2_0)
    & m1_group_2(esk2_0,esk1_0)
    & ~ r2_hidden(k2_group_1(esk1_0),k1_funct_1(k1_latsubgr(esk1_0),esk2_0)) ),
    inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_10])])]) ).

fof(c_0_14,plain,
    ! [X1,X2] :
      ( ( ~ v1_xboole_0(X1)
       => ( m1_subset_1(X2,X1)
        <=> r2_hidden(X2,X1) ) )
      & ( v1_xboole_0(X1)
       => ( m1_subset_1(X2,X1)
        <=> v1_xboole_0(X2) ) ) ),
    inference(fof_simplification,[status(thm)],[d2_subset_1]) ).

fof(c_0_15,plain,
    ! [X164] :
      ( v3_struct_0(X164)
      | ~ l1_group_1(X164)
      | m1_subset_1(k2_group_1(X164),u1_struct_0(X164)) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_11])]) ).

cnf(c_0_16,plain,
    ( l1_group_1(X1)
    | v3_struct_0(X2)
    | ~ m1_group_2(X1,X2)
    | ~ v3_group_1(X2)
    | ~ l1_group_1(X2) ),
    inference(split_conjunct,[status(thm)],[c_0_12]) ).

cnf(c_0_17,negated_conjecture,
    m1_group_2(esk2_0,esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_13]) ).

cnf(c_0_18,negated_conjecture,
    v3_group_1(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_13]) ).

cnf(c_0_19,negated_conjecture,
    l1_group_1(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_13]) ).

cnf(c_0_20,negated_conjecture,
    ~ v3_struct_0(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_13]) ).

cnf(c_0_21,plain,
    ( v3_struct_0(X2)
    | ~ v3_struct_0(X1)
    | ~ m1_group_2(X1,X2)
    | ~ v3_group_1(X2)
    | ~ l1_group_1(X2) ),
    inference(split_conjunct,[status(thm)],[c_0_12]) ).

fof(c_0_22,plain,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & l1_struct_0(X1) )
     => ~ v1_xboole_0(u1_struct_0(X1)) ),
    inference(fof_simplification,[status(thm)],[fc1_struct_0]) ).

fof(c_0_23,plain,
    ! [X28,X29] :
      ( ( ~ m1_subset_1(X29,X28)
        | r2_hidden(X29,X28)
        | v1_xboole_0(X28) )
      & ( ~ r2_hidden(X29,X28)
        | m1_subset_1(X29,X28)
        | v1_xboole_0(X28) )
      & ( ~ m1_subset_1(X29,X28)
        | v1_xboole_0(X29)
        | ~ v1_xboole_0(X28) )
      & ( ~ v1_xboole_0(X29)
        | m1_subset_1(X29,X28)
        | ~ v1_xboole_0(X28) ) ),
    inference(distribute,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_14])])]) ).

cnf(c_0_24,plain,
    ( v3_struct_0(X1)
    | m1_subset_1(k2_group_1(X1),u1_struct_0(X1))
    | ~ l1_group_1(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_15]) ).

cnf(c_0_25,negated_conjecture,
    l1_group_1(esk2_0),
    inference(sr,[status(thm)],[inference(cn,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_16,c_0_17]),c_0_18]),c_0_19])]),c_0_20]) ).

cnf(c_0_26,negated_conjecture,
    ~ v3_struct_0(esk2_0),
    inference(sr,[status(thm)],[inference(cn,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_21,c_0_17]),c_0_18]),c_0_19])]),c_0_20]) ).

fof(c_0_27,plain,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & v4_group_1(X1)
        & l1_group_1(X1) )
     => ! [X2] :
          ( ( v1_funct_1(X2)
            & v1_funct_2(X2,k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1)))
            & m2_relset_1(X2,k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1))) )
         => ( X2 = k1_latsubgr(X1)
          <=> ! [X3] :
                ( ( v1_group_1(X3)
                  & m1_group_2(X3,X1) )
               => k1_funct_1(X2,X3) = u1_struct_0(X3) ) ) ) ),
    inference(fof_simplification,[status(thm)],[d1_latsubgr]) ).

fof(c_0_28,plain,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & v4_group_1(X1)
        & l1_group_1(X1) )
     => ( v1_funct_1(k1_latsubgr(X1))
        & v1_funct_2(k1_latsubgr(X1),k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1)))
        & m2_relset_1(k1_latsubgr(X1),k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1))) ) ),
    inference(fof_simplification,[status(thm)],[dt_k1_latsubgr]) ).

fof(c_0_29,plain,
    ! [X1064] :
      ( v3_struct_0(X1064)
      | ~ l1_struct_0(X1064)
      | ~ v1_xboole_0(u1_struct_0(X1064)) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_22])]) ).

cnf(c_0_30,plain,
    ( r2_hidden(X1,X2)
    | v1_xboole_0(X2)
    | ~ m1_subset_1(X1,X2) ),
    inference(split_conjunct,[status(thm)],[c_0_23]) ).

cnf(c_0_31,negated_conjecture,
    m1_subset_1(k2_group_1(esk2_0),u1_struct_0(esk2_0)),
    inference(sr,[status(thm)],[inference(spm,[status(thm)],[c_0_24,c_0_25]),c_0_26]) ).

fof(c_0_32,plain,
    ! [X1] :
      ( ( ~ v3_struct_0(X1)
        & v3_group_1(X1)
        & v4_group_1(X1)
        & l1_group_1(X1) )
     => ! [X2] :
          ( m1_group_2(X2,X1)
         => k2_group_1(X2) = k2_group_1(X1) ) ),
    inference(fof_simplification,[status(thm)],[t53_group_2]) ).

fof(c_0_33,plain,
    ! [X147,X148,X149] :
      ( ( X148 != k1_latsubgr(X147)
        | ~ v1_group_1(X149)
        | ~ m1_group_2(X149,X147)
        | k1_funct_1(X148,X149) = u1_struct_0(X149)
        | ~ v1_funct_1(X148)
        | ~ v1_funct_2(X148,k1_group_3(X147),k1_zfmisc_1(u1_struct_0(X147)))
        | ~ m2_relset_1(X148,k1_group_3(X147),k1_zfmisc_1(u1_struct_0(X147)))
        | v3_struct_0(X147)
        | ~ v3_group_1(X147)
        | ~ v4_group_1(X147)
        | ~ l1_group_1(X147) )
      & ( v1_group_1(esk24_2(X147,X148))
        | X148 = k1_latsubgr(X147)
        | ~ v1_funct_1(X148)
        | ~ v1_funct_2(X148,k1_group_3(X147),k1_zfmisc_1(u1_struct_0(X147)))
        | ~ m2_relset_1(X148,k1_group_3(X147),k1_zfmisc_1(u1_struct_0(X147)))
        | v3_struct_0(X147)
        | ~ v3_group_1(X147)
        | ~ v4_group_1(X147)
        | ~ l1_group_1(X147) )
      & ( m1_group_2(esk24_2(X147,X148),X147)
        | X148 = k1_latsubgr(X147)
        | ~ v1_funct_1(X148)
        | ~ v1_funct_2(X148,k1_group_3(X147),k1_zfmisc_1(u1_struct_0(X147)))
        | ~ m2_relset_1(X148,k1_group_3(X147),k1_zfmisc_1(u1_struct_0(X147)))
        | v3_struct_0(X147)
        | ~ v3_group_1(X147)
        | ~ v4_group_1(X147)
        | ~ l1_group_1(X147) )
      & ( k1_funct_1(X148,esk24_2(X147,X148)) != u1_struct_0(esk24_2(X147,X148))
        | X148 = k1_latsubgr(X147)
        | ~ v1_funct_1(X148)
        | ~ v1_funct_2(X148,k1_group_3(X147),k1_zfmisc_1(u1_struct_0(X147)))
        | ~ m2_relset_1(X148,k1_group_3(X147),k1_zfmisc_1(u1_struct_0(X147)))
        | v3_struct_0(X147)
        | ~ v3_group_1(X147)
        | ~ v4_group_1(X147)
        | ~ l1_group_1(X147) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_27])])])])]) ).

fof(c_0_34,plain,
    ! [X146] :
      ( ( v1_funct_1(k1_latsubgr(X146))
        | v3_struct_0(X146)
        | ~ v3_group_1(X146)
        | ~ v4_group_1(X146)
        | ~ l1_group_1(X146) )
      & ( v1_funct_2(k1_latsubgr(X146),k1_group_3(X146),k1_zfmisc_1(u1_struct_0(X146)))
        | v3_struct_0(X146)
        | ~ v3_group_1(X146)
        | ~ v4_group_1(X146)
        | ~ l1_group_1(X146) )
      & ( m2_relset_1(k1_latsubgr(X146),k1_group_3(X146),k1_zfmisc_1(u1_struct_0(X146)))
        | v3_struct_0(X146)
        | ~ v3_group_1(X146)
        | ~ v4_group_1(X146)
        | ~ l1_group_1(X146) ) ),
    inference(distribute,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_28])])]) ).

cnf(c_0_35,plain,
    ( v3_struct_0(X1)
    | ~ l1_struct_0(X1)
    | ~ v1_xboole_0(u1_struct_0(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_29]) ).

cnf(c_0_36,negated_conjecture,
    ( v1_xboole_0(u1_struct_0(esk2_0))
    | r2_hidden(k2_group_1(esk2_0),u1_struct_0(esk2_0)) ),
    inference(spm,[status(thm)],[c_0_30,c_0_31]) ).

fof(c_0_37,plain,
    ! [X1073] :
      ( ~ l1_group_1(X1073)
      | l1_struct_0(X1073) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[dt_l1_group_1])]) ).

fof(c_0_38,plain,
    ! [X177,X178] :
      ( v3_struct_0(X177)
      | ~ v3_group_1(X177)
      | ~ v4_group_1(X177)
      | ~ l1_group_1(X177)
      | ~ m1_group_2(X178,X177)
      | k2_group_1(X178) = k2_group_1(X177) ),
    inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_32])])]) ).

cnf(c_0_39,plain,
    ( k1_funct_1(X1,X3) = u1_struct_0(X3)
    | v3_struct_0(X2)
    | X1 != k1_latsubgr(X2)
    | ~ v1_group_1(X3)
    | ~ m1_group_2(X3,X2)
    | ~ v1_funct_1(X1)
    | ~ v1_funct_2(X1,k1_group_3(X2),k1_zfmisc_1(u1_struct_0(X2)))
    | ~ m2_relset_1(X1,k1_group_3(X2),k1_zfmisc_1(u1_struct_0(X2)))
    | ~ v3_group_1(X2)
    | ~ v4_group_1(X2)
    | ~ l1_group_1(X2) ),
    inference(split_conjunct,[status(thm)],[c_0_33]) ).

cnf(c_0_40,plain,
    ( v1_funct_1(k1_latsubgr(X1))
    | v3_struct_0(X1)
    | ~ v3_group_1(X1)
    | ~ v4_group_1(X1)
    | ~ l1_group_1(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_34]) ).

cnf(c_0_41,plain,
    ( m2_relset_1(k1_latsubgr(X1),k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1)))
    | v3_struct_0(X1)
    | ~ v3_group_1(X1)
    | ~ v4_group_1(X1)
    | ~ l1_group_1(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_34]) ).

cnf(c_0_42,plain,
    ( v1_funct_2(k1_latsubgr(X1),k1_group_3(X1),k1_zfmisc_1(u1_struct_0(X1)))
    | v3_struct_0(X1)
    | ~ v3_group_1(X1)
    | ~ v4_group_1(X1)
    | ~ l1_group_1(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_34]) ).

cnf(c_0_43,negated_conjecture,
    ( r2_hidden(k2_group_1(esk2_0),u1_struct_0(esk2_0))
    | ~ l1_struct_0(esk2_0) ),
    inference(sr,[status(thm)],[inference(spm,[status(thm)],[c_0_35,c_0_36]),c_0_26]) ).

cnf(c_0_44,plain,
    ( l1_struct_0(X1)
    | ~ l1_group_1(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_37]) ).

cnf(c_0_45,plain,
    ( v3_struct_0(X1)
    | k2_group_1(X2) = k2_group_1(X1)
    | ~ v3_group_1(X1)
    | ~ v4_group_1(X1)
    | ~ l1_group_1(X1)
    | ~ m1_group_2(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_38]) ).

cnf(c_0_46,negated_conjecture,
    v4_group_1(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_13]) ).

cnf(c_0_47,plain,
    ( k1_funct_1(k1_latsubgr(X1),X2) = u1_struct_0(X2)
    | v3_struct_0(X1)
    | ~ m1_group_2(X2,X1)
    | ~ v4_group_1(X1)
    | ~ v3_group_1(X1)
    | ~ v1_group_1(X2)
    | ~ l1_group_1(X1) ),
    inference(csr,[status(thm)],[inference(csr,[status(thm)],[inference(csr,[status(thm)],[inference(er,[status(thm)],[c_0_39]),c_0_40]),c_0_41]),c_0_42]) ).

cnf(c_0_48,negated_conjecture,
    v1_group_1(esk2_0),
    inference(split_conjunct,[status(thm)],[c_0_13]) ).

cnf(c_0_49,negated_conjecture,
    r2_hidden(k2_group_1(esk2_0),u1_struct_0(esk2_0)),
    inference(cn,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_43,c_0_44]),c_0_25])]) ).

cnf(c_0_50,negated_conjecture,
    k2_group_1(esk2_0) = k2_group_1(esk1_0),
    inference(sr,[status(thm)],[inference(cn,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_45,c_0_17]),c_0_46]),c_0_18]),c_0_19])]),c_0_20]) ).

cnf(c_0_51,negated_conjecture,
    ~ r2_hidden(k2_group_1(esk1_0),k1_funct_1(k1_latsubgr(esk1_0),esk2_0)),
    inference(split_conjunct,[status(thm)],[c_0_13]) ).

cnf(c_0_52,negated_conjecture,
    k1_funct_1(k1_latsubgr(esk1_0),esk2_0) = u1_struct_0(esk2_0),
    inference(sr,[status(thm)],[inference(cn,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_47,c_0_17]),c_0_46]),c_0_18]),c_0_48]),c_0_19])]),c_0_20]) ).

cnf(c_0_53,negated_conjecture,
    r2_hidden(k2_group_1(esk1_0),u1_struct_0(esk2_0)),
    inference(rw,[status(thm)],[c_0_49,c_0_50]) ).

cnf(c_0_54,negated_conjecture,
    $false,
    inference(cn,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[c_0_51,c_0_52]),c_0_53])]),
    [proof] ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.81/0.91  % Problem    : GRP641+3 : TPTP v8.1.2. Released v3.4.0.
% 0.81/0.92  % Command    : run_E %s %d THM
% 0.93/1.13  % Computer : n002.cluster.edu
% 0.93/1.13  % Model    : x86_64 x86_64
% 0.93/1.13  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.93/1.13  % Memory   : 8042.1875MB
% 0.93/1.13  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.93/1.13  % CPULimit   : 2400
% 0.93/1.13  % WCLimit    : 300
% 0.93/1.13  % DateTime   : Tue Oct  3 03:13:47 EDT 2023
% 0.93/1.13  % CPUTime    : 
% 3.01/3.30  Running first-order theorem proving
% 3.01/3.30  Running: /export/starexec/sandbox2/solver/bin/eprover --delete-bad-limit=2000000000 --definitional-cnf=24 -s --print-statistics -R --print-version --proof-object --auto-schedule=8 --cpu-limit=300 /export/starexec/sandbox2/tmp/tmp.SUXYy44tKb/E---3.1_23423.p
% 9.10/4.57  # Version: 3.1pre001
% 9.10/4.57  # Preprocessing class: FMLLSMLLSSSNFFN.
% 9.10/4.57  # Scheduled 4 strats onto 8 cores with 300 seconds (2400 total)
% 9.10/4.57  # Starting new_bool_3 with 900s (3) cores
% 9.10/4.57  # Starting new_bool_1 with 900s (3) cores
% 9.10/4.57  # Starting sh5l with 300s (1) cores
% 9.10/4.57  # Starting G-E--_301_C18_F1_URBAN_S5PRR_RG_S0Y with 300s (1) cores
% 9.10/4.57  # new_bool_1 with pid 23512 completed with status 0
% 9.10/4.57  # Result found by new_bool_1
% 9.10/4.57  # Preprocessing class: FMLLSMLLSSSNFFN.
% 9.10/4.57  # Scheduled 4 strats onto 8 cores with 300 seconds (2400 total)
% 9.10/4.57  # Starting new_bool_3 with 900s (3) cores
% 9.10/4.57  # Starting new_bool_1 with 900s (3) cores
% 9.10/4.57  # SinE strategy is GSinE(CountFormulas,hypos,1.5,,3,20000,1.0)
% 9.10/4.57  # Search class: FGHSM-FMLM32-MFFFFFNN
% 9.10/4.57  # partial match(1): FGHSM-SMLM32-MFFFFFNN
% 9.10/4.57  # Scheduled 13 strats onto 3 cores with 900 seconds (900 total)
% 9.10/4.57  # Starting G-E--_208_C18_F1_SE_CS_SP_PS_S5PRR_S2mI with 68s (1) cores
% 9.10/4.57  # Starting new_bool_1 with 91s (1) cores
% 9.10/4.57  # Starting G-E--_208_C18_F1_SE_CS_SP_PS_S2g with 68s (1) cores
% 9.10/4.57  # G-E--_208_C18_F1_SE_CS_SP_PS_S5PRR_S2mI with pid 23516 completed with status 0
% 9.10/4.57  # Result found by G-E--_208_C18_F1_SE_CS_SP_PS_S5PRR_S2mI
% 9.10/4.57  # Preprocessing class: FMLLSMLLSSSNFFN.
% 9.10/4.57  # Scheduled 4 strats onto 8 cores with 300 seconds (2400 total)
% 9.10/4.57  # Starting new_bool_3 with 900s (3) cores
% 9.10/4.57  # Starting new_bool_1 with 900s (3) cores
% 9.10/4.57  # SinE strategy is GSinE(CountFormulas,hypos,1.5,,3,20000,1.0)
% 9.10/4.57  # Search class: FGHSM-FMLM32-MFFFFFNN
% 9.10/4.57  # partial match(1): FGHSM-SMLM32-MFFFFFNN
% 9.10/4.57  # Scheduled 13 strats onto 3 cores with 900 seconds (900 total)
% 9.10/4.57  # Starting G-E--_208_C18_F1_SE_CS_SP_PS_S5PRR_S2mI with 68s (1) cores
% 9.10/4.57  # Preprocessing time       : 0.021 s
% 9.10/4.57  # Presaturation interreduction done
% 9.10/4.57  
% 9.10/4.57  # Proof found!
% 9.10/4.57  # SZS status Theorem
% 9.10/4.57  # SZS output start CNFRefutation
% See solution above
% 9.10/4.57  # Parsed axioms                        : 13983
% 9.10/4.57  # Removed by relevancy pruning/SinE    : 13611
% 9.10/4.57  # Initial clauses                      : 884
% 9.10/4.57  # Removed in clause preprocessing      : 75
% 9.10/4.57  # Initial clauses in saturation        : 809
% 9.10/4.57  # Processed clauses                    : 5589
% 9.10/4.57  # ...of these trivial                  : 66
% 9.10/4.57  # ...subsumed                          : 1402
% 9.10/4.57  # ...remaining for further processing  : 4121
% 9.10/4.57  # Other redundant clauses eliminated   : 149
% 9.10/4.57  # Clauses deleted for lack of memory   : 0
% 9.10/4.57  # Backward-subsumed                    : 7
% 9.10/4.57  # Backward-rewritten                   : 311
% 9.10/4.57  # Generated clauses                    : 19579
% 9.10/4.57  # ...of the previous two non-redundant : 18652
% 9.10/4.57  # ...aggressively subsumed             : 0
% 9.10/4.57  # Contextual simplify-reflections      : 42
% 9.10/4.57  # Paramodulations                      : 19420
% 9.10/4.57  # Factorizations                       : 2
% 9.10/4.57  # NegExts                              : 0
% 9.10/4.57  # Equation resolutions                 : 163
% 9.10/4.57  # Total rewrite steps                  : 6724
% 9.10/4.57  # Propositional unsat checks           : 0
% 9.10/4.57  #    Propositional check models        : 0
% 9.10/4.57  #    Propositional check unsatisfiable : 0
% 9.10/4.57  #    Propositional clauses             : 0
% 9.10/4.57  #    Propositional clauses after purity: 0
% 9.10/4.57  #    Propositional unsat core size     : 0
% 9.10/4.57  #    Propositional preprocessing time  : 0.000
% 9.10/4.57  #    Propositional encoding time       : 0.000
% 9.10/4.57  #    Propositional solver time         : 0.000
% 9.10/4.57  #    Success case prop preproc time    : 0.000
% 9.10/4.57  #    Success case prop encoding time   : 0.000
% 9.10/4.57  #    Success case prop solver time     : 0.000
% 9.10/4.57  # Current number of processed clauses  : 2984
% 9.10/4.57  #    Positive orientable unit clauses  : 673
% 9.10/4.57  #    Positive unorientable unit clauses: 0
% 9.10/4.57  #    Negative unit clauses             : 570
% 9.10/4.57  #    Non-unit-clauses                  : 1741
% 9.10/4.57  # Current number of unprocessed clauses: 14566
% 9.10/4.57  # ...number of literals in the above   : 40033
% 9.10/4.57  # Current number of archived formulas  : 0
% 9.10/4.57  # Current number of archived clauses   : 1070
% 9.10/4.57  # Clause-clause subsumption calls (NU) : 900527
% 9.10/4.57  # Rec. Clause-clause subsumption calls : 292876
% 9.10/4.57  # Non-unit clause-clause subsumptions  : 648
% 9.10/4.57  # Unit Clause-clause subsumption calls : 96472
% 9.10/4.57  # Rewrite failures with RHS unbound    : 0
% 9.10/4.57  # BW rewrite match attempts            : 2137
% 9.10/4.57  # BW rewrite match successes           : 64
% 9.10/4.57  # Condensation attempts                : 0
% 9.10/4.57  # Condensation successes               : 0
% 9.10/4.57  # Termbank termtop insertions          : 711841
% 9.10/4.57  
% 9.10/4.57  # -------------------------------------------------
% 9.10/4.57  # User time                : 0.793 s
% 9.10/4.57  # System time              : 0.061 s
% 9.10/4.57  # Total time               : 0.854 s
% 9.10/4.57  # Maximum resident set size: 27100 pages
% 9.10/4.57  
% 9.10/4.57  # -------------------------------------------------
% 9.10/4.57  # User time                : 2.461 s
% 9.10/4.57  # System time              : 0.130 s
% 9.10/4.57  # Total time               : 2.591 s
% 9.10/4.57  # Maximum resident set size: 20640 pages
% 9.10/4.57  % E---3.1 exiting
% 9.10/4.57  % E---3.1 exiting
%------------------------------------------------------------------------------