TSTP Solution File: SEU315+1 by iProverMo---2.5-0.1

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : iProverMo---2.5-0.1
% Problem  : SEU315+1 : TPTP v8.1.0. Released v3.3.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : iprover_modulo %s %d

% Computer : n009.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  : 600s
% DateTime : Tue Jul 19 10:27:19 EDT 2022

% Result   : Theorem 233.15s 233.34s
% Output   : CNFRefutation 233.15s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :    8
%            Number of leaves      :   58
% Syntax   : Number of formulae    :  590 ( 103 unt;   0 def)
%            Number of atoms       : 1914 (  71 equ)
%            Maximal formula atoms :   34 (   3 avg)
%            Number of connectives : 2398 (1074   ~;1095   |; 147   &)
%                                         (   8 <=>;  74  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   20 (   4 avg)
%            Maximal term depth    :    4 (   1 avg)
%            Number of predicates  :   21 (  18 usr;   2 prp; 0-2 aty)
%            Number of functors    :   28 (  28 usr;  10 con; 0-3 aty)
%            Number of variables   :  931 (  15 sgn 157   !;  22   ?)

% Comments : 
%------------------------------------------------------------------------------
% Axioms transformation by autotheo
% Orienting (remaining) axiom formulas using strategy ClausalAll
% CNF of (remaining) axioms:
% Start CNF derivation
fof(c_0_0,axiom,
    ! [X1,X2] :
      ( ( topological_space(X1)
        & top_str(X1)
        & element(X2,powerset(the_carrier(X1))) )
     => ? [X3] :
        ! [X4] :
          ( in(X4,X3)
        <=> ( in(X4,powerset(the_carrier(X1)))
            & ? [X5] :
                ( element(X5,powerset(the_carrier(X1)))
                & X5 = X4
                & closed_subset(X5,X1)
                & subset(X2,X4) ) ) ) ),
    file('<stdin>',s1_xboole_0__e1_40__pre_topc__1) ).

fof(c_0_1,axiom,
    ! [X1,X2] :
      ( ! [X3] :
          ( in(X3,X1)
         => in(X3,X2) )
     => element(X1,powerset(X2)) ),
    file('<stdin>',l71_subset_1) ).

fof(c_0_2,axiom,
    ! [X1] :
      ( ( topological_space(X1)
        & top_str(X1) )
     => ? [X2] :
          ( element(X2,powerset(the_carrier(X1)))
          & closed_subset(X2,X1) ) ),
    file('<stdin>',rc6_pre_topc) ).

fof(c_0_3,axiom,
    ! [X1,X2] :
      ( in(X1,X2)
     => ~ in(X2,X1) ),
    file('<stdin>',antisymmetry_r2_hidden) ).

fof(c_0_4,axiom,
    ! [X1] :
      ( v5_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => ( v1_membered(X2)
            & v2_membered(X2)
            & v3_membered(X2)
            & v4_membered(X2)
            & v5_membered(X2) ) ) ),
    file('<stdin>',cc20_membered) ).

fof(c_0_5,axiom,
    ! [X1] :
      ( v4_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => ( v1_membered(X2)
            & v2_membered(X2)
            & v3_membered(X2)
            & v4_membered(X2) ) ) ),
    file('<stdin>',cc19_membered) ).

fof(c_0_6,axiom,
    ! [X1] :
      ( v3_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => ( v1_membered(X2)
            & v2_membered(X2)
            & v3_membered(X2) ) ) ),
    file('<stdin>',cc18_membered) ).

fof(c_0_7,axiom,
    ! [X1] :
      ( v2_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => ( v1_membered(X2)
            & v2_membered(X2) ) ) ),
    file('<stdin>',cc17_membered) ).

fof(c_0_8,axiom,
    ! [X1] :
      ( v1_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => v1_membered(X2) ) ),
    file('<stdin>',cc16_membered) ).

fof(c_0_9,axiom,
    ! [X1,X2] :
      ( ( ~ empty(X1)
       => ( element(X2,X1)
        <=> in(X2,X1) ) )
      & ( empty(X1)
       => ( element(X2,X1)
        <=> empty(X2) ) ) ),
    file('<stdin>',d2_subset_1) ).

fof(c_0_10,axiom,
    ! [X1] :
      ( v5_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => ( v1_xcmplx_0(X2)
            & natural(X2)
            & v1_xreal_0(X2)
            & v1_int_1(X2)
            & v1_rat_1(X2) ) ) ),
    file('<stdin>',cc14_membered) ).

fof(c_0_11,axiom,
    ! [X1] :
      ( v4_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => ( v1_xcmplx_0(X2)
            & v1_xreal_0(X2)
            & v1_int_1(X2)
            & v1_rat_1(X2) ) ) ),
    file('<stdin>',cc13_membered) ).

fof(c_0_12,axiom,
    ! [X1] :
      ( v3_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => ( v1_xcmplx_0(X2)
            & v1_xreal_0(X2)
            & v1_rat_1(X2) ) ) ),
    file('<stdin>',cc12_membered) ).

fof(c_0_13,axiom,
    ! [X1] :
      ( v2_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => ( v1_xcmplx_0(X2)
            & v1_xreal_0(X2) ) ) ),
    file('<stdin>',cc11_membered) ).

fof(c_0_14,axiom,
    ! [X1] :
      ( v1_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => v1_xcmplx_0(X2) ) ),
    file('<stdin>',cc10_membered) ).

fof(c_0_15,axiom,
    ! [X1] :
      ( ~ empty(X1)
     => ? [X2] :
          ( element(X2,powerset(X1))
          & ~ empty(X2) ) ),
    file('<stdin>',rc1_subset_1) ).

fof(c_0_16,axiom,
    ! [X1,X2] :
      ~ ( in(X1,X2)
        & empty(X2) ),
    file('<stdin>',t7_boole) ).

fof(c_0_17,axiom,
    ! [X1] :
    ? [X2] :
      ( element(X2,powerset(X1))
      & empty(X2) ),
    file('<stdin>',rc2_subset_1) ).

fof(c_0_18,axiom,
    ! [X1] :
    ? [X2] : element(X2,X1),
    file('<stdin>',existence_m1_subset_1) ).

fof(c_0_19,axiom,
    ! [X1] : ~ empty(powerset(X1)),
    file('<stdin>',fc1_subset_1) ).

fof(c_0_20,axiom,
    ! [X1,X2] :
      ~ ( empty(X1)
        & X1 != X2
        & empty(X2) ),
    file('<stdin>',t8_boole) ).

fof(c_0_21,axiom,
    ! [X1,X2] : subset(X1,X1),
    file('<stdin>',reflexivity_r1_tarski) ).

fof(c_0_22,axiom,
    ! [X1] :
      ( top_str(X1)
     => one_sorted_str(X1) ),
    file('<stdin>',dt_l1_pre_topc) ).

fof(c_0_23,axiom,
    ! [X1] :
      ( empty(X1)
     => ( v1_membered(X1)
        & v2_membered(X1)
        & v3_membered(X1)
        & v4_membered(X1)
        & v5_membered(X1) ) ),
    file('<stdin>',cc15_membered) ).

fof(c_0_24,axiom,
    ! [X1] :
      ( v2_membered(X1)
     => v1_membered(X1) ),
    file('<stdin>',cc4_membered) ).

fof(c_0_25,axiom,
    ! [X1] :
      ( v3_membered(X1)
     => v2_membered(X1) ),
    file('<stdin>',cc3_membered) ).

fof(c_0_26,axiom,
    ! [X1] :
      ( v4_membered(X1)
     => v3_membered(X1) ),
    file('<stdin>',cc2_membered) ).

fof(c_0_27,axiom,
    ! [X1] :
      ( v5_membered(X1)
     => v4_membered(X1) ),
    file('<stdin>',cc1_membered) ).

fof(c_0_28,axiom,
    ! [X1] :
      ( empty(X1)
     => X1 = empty_set ),
    file('<stdin>',t6_boole) ).

fof(c_0_29,axiom,
    ? [X1] : ~ empty(X1),
    file('<stdin>',rc2_xboole_0) ).

fof(c_0_30,axiom,
    ? [X1] :
      ( ~ empty(X1)
      & v1_membered(X1)
      & v2_membered(X1)
      & v3_membered(X1)
      & v4_membered(X1)
      & v5_membered(X1) ),
    file('<stdin>',rc1_membered) ).

fof(c_0_31,axiom,
    ? [X1] : empty(X1),
    file('<stdin>',rc1_xboole_0) ).

fof(c_0_32,axiom,
    empty(empty_set),
    file('<stdin>',fc1_xboole_0) ).

fof(c_0_33,axiom,
    $true,
    file('<stdin>',dt_k1_xboole_0) ).

fof(c_0_34,axiom,
    $true,
    file('<stdin>',dt_u1_struct_0) ).

fof(c_0_35,axiom,
    $true,
    file('<stdin>',dt_m1_subset_1) ).

fof(c_0_36,axiom,
    $true,
    file('<stdin>',dt_k1_zfmisc_1) ).

fof(c_0_37,axiom,
    $true,
    file('<stdin>',dt_l1_struct_0) ).

fof(c_0_38,axiom,
    ! [X1,X2] :
      ( ( topological_space(X1)
        & top_str(X1)
        & element(X2,powerset(the_carrier(X1))) )
     => ? [X3] :
        ! [X4] :
          ( in(X4,X3)
        <=> ( in(X4,powerset(the_carrier(X1)))
            & ? [X5] :
                ( element(X5,powerset(the_carrier(X1)))
                & X5 = X4
                & closed_subset(X5,X1)
                & subset(X2,X4) ) ) ) ),
    c_0_0 ).

fof(c_0_39,axiom,
    ! [X1,X2] :
      ( ! [X3] :
          ( in(X3,X1)
         => in(X3,X2) )
     => element(X1,powerset(X2)) ),
    c_0_1 ).

fof(c_0_40,axiom,
    ! [X1] :
      ( ( topological_space(X1)
        & top_str(X1) )
     => ? [X2] :
          ( element(X2,powerset(the_carrier(X1)))
          & closed_subset(X2,X1) ) ),
    c_0_2 ).

fof(c_0_41,plain,
    ! [X1,X2] :
      ( in(X1,X2)
     => ~ in(X2,X1) ),
    inference(fof_simplification,[status(thm)],[c_0_3]) ).

fof(c_0_42,axiom,
    ! [X1] :
      ( v5_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => ( v1_membered(X2)
            & v2_membered(X2)
            & v3_membered(X2)
            & v4_membered(X2)
            & v5_membered(X2) ) ) ),
    c_0_4 ).

fof(c_0_43,axiom,
    ! [X1] :
      ( v4_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => ( v1_membered(X2)
            & v2_membered(X2)
            & v3_membered(X2)
            & v4_membered(X2) ) ) ),
    c_0_5 ).

fof(c_0_44,axiom,
    ! [X1] :
      ( v3_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => ( v1_membered(X2)
            & v2_membered(X2)
            & v3_membered(X2) ) ) ),
    c_0_6 ).

fof(c_0_45,axiom,
    ! [X1] :
      ( v2_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => ( v1_membered(X2)
            & v2_membered(X2) ) ) ),
    c_0_7 ).

fof(c_0_46,axiom,
    ! [X1] :
      ( v1_membered(X1)
     => ! [X2] :
          ( element(X2,powerset(X1))
         => v1_membered(X2) ) ),
    c_0_8 ).

fof(c_0_47,plain,
    ! [X1,X2] :
      ( ( ~ empty(X1)
       => ( element(X2,X1)
        <=> in(X2,X1) ) )
      & ( empty(X1)
       => ( element(X2,X1)
        <=> empty(X2) ) ) ),
    inference(fof_simplification,[status(thm)],[c_0_9]) ).

fof(c_0_48,axiom,
    ! [X1] :
      ( v5_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => ( v1_xcmplx_0(X2)
            & natural(X2)
            & v1_xreal_0(X2)
            & v1_int_1(X2)
            & v1_rat_1(X2) ) ) ),
    c_0_10 ).

fof(c_0_49,axiom,
    ! [X1] :
      ( v4_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => ( v1_xcmplx_0(X2)
            & v1_xreal_0(X2)
            & v1_int_1(X2)
            & v1_rat_1(X2) ) ) ),
    c_0_11 ).

fof(c_0_50,axiom,
    ! [X1] :
      ( v3_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => ( v1_xcmplx_0(X2)
            & v1_xreal_0(X2)
            & v1_rat_1(X2) ) ) ),
    c_0_12 ).

fof(c_0_51,axiom,
    ! [X1] :
      ( v2_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => ( v1_xcmplx_0(X2)
            & v1_xreal_0(X2) ) ) ),
    c_0_13 ).

fof(c_0_52,axiom,
    ! [X1] :
      ( v1_membered(X1)
     => ! [X2] :
          ( element(X2,X1)
         => v1_xcmplx_0(X2) ) ),
    c_0_14 ).

fof(c_0_53,plain,
    ! [X1] :
      ( ~ empty(X1)
     => ? [X2] :
          ( element(X2,powerset(X1))
          & ~ empty(X2) ) ),
    inference(fof_simplification,[status(thm)],[c_0_15]) ).

fof(c_0_54,axiom,
    ! [X1,X2] :
      ~ ( in(X1,X2)
        & empty(X2) ),
    c_0_16 ).

fof(c_0_55,axiom,
    ! [X1] :
    ? [X2] :
      ( element(X2,powerset(X1))
      & empty(X2) ),
    c_0_17 ).

fof(c_0_56,axiom,
    ! [X1] :
    ? [X2] : element(X2,X1),
    c_0_18 ).

fof(c_0_57,plain,
    ! [X1] : ~ empty(powerset(X1)),
    inference(fof_simplification,[status(thm)],[c_0_19]) ).

fof(c_0_58,axiom,
    ! [X1,X2] :
      ~ ( empty(X1)
        & X1 != X2
        & empty(X2) ),
    c_0_20 ).

fof(c_0_59,axiom,
    ! [X1,X2] : subset(X1,X1),
    c_0_21 ).

fof(c_0_60,axiom,
    ! [X1] :
      ( top_str(X1)
     => one_sorted_str(X1) ),
    c_0_22 ).

fof(c_0_61,axiom,
    ! [X1] :
      ( empty(X1)
     => ( v1_membered(X1)
        & v2_membered(X1)
        & v3_membered(X1)
        & v4_membered(X1)
        & v5_membered(X1) ) ),
    c_0_23 ).

fof(c_0_62,axiom,
    ! [X1] :
      ( v2_membered(X1)
     => v1_membered(X1) ),
    c_0_24 ).

fof(c_0_63,axiom,
    ! [X1] :
      ( v3_membered(X1)
     => v2_membered(X1) ),
    c_0_25 ).

fof(c_0_64,axiom,
    ! [X1] :
      ( v4_membered(X1)
     => v3_membered(X1) ),
    c_0_26 ).

fof(c_0_65,axiom,
    ! [X1] :
      ( v5_membered(X1)
     => v4_membered(X1) ),
    c_0_27 ).

fof(c_0_66,axiom,
    ! [X1] :
      ( empty(X1)
     => X1 = empty_set ),
    c_0_28 ).

fof(c_0_67,plain,
    ? [X1] : ~ empty(X1),
    inference(fof_simplification,[status(thm)],[c_0_29]) ).

fof(c_0_68,plain,
    ? [X1] :
      ( ~ empty(X1)
      & v1_membered(X1)
      & v2_membered(X1)
      & v3_membered(X1)
      & v4_membered(X1)
      & v5_membered(X1) ),
    inference(fof_simplification,[status(thm)],[c_0_30]) ).

fof(c_0_69,axiom,
    ? [X1] : empty(X1),
    c_0_31 ).

fof(c_0_70,axiom,
    empty(empty_set),
    c_0_32 ).

fof(c_0_71,axiom,
    $true,
    c_0_33 ).

fof(c_0_72,axiom,
    $true,
    c_0_34 ).

fof(c_0_73,axiom,
    $true,
    c_0_35 ).

fof(c_0_74,axiom,
    $true,
    c_0_36 ).

fof(c_0_75,axiom,
    $true,
    c_0_37 ).

fof(c_0_76,plain,
    ! [X6,X7,X9,X11,X12] :
      ( ( in(X9,powerset(the_carrier(X6)))
        | ~ in(X9,esk5_2(X6,X7))
        | ~ topological_space(X6)
        | ~ top_str(X6)
        | ~ element(X7,powerset(the_carrier(X6))) )
      & ( element(esk6_3(X6,X7,X9),powerset(the_carrier(X6)))
        | ~ in(X9,esk5_2(X6,X7))
        | ~ topological_space(X6)
        | ~ top_str(X6)
        | ~ element(X7,powerset(the_carrier(X6))) )
      & ( esk6_3(X6,X7,X9) = X9
        | ~ in(X9,esk5_2(X6,X7))
        | ~ topological_space(X6)
        | ~ top_str(X6)
        | ~ element(X7,powerset(the_carrier(X6))) )
      & ( closed_subset(esk6_3(X6,X7,X9),X6)
        | ~ in(X9,esk5_2(X6,X7))
        | ~ topological_space(X6)
        | ~ top_str(X6)
        | ~ element(X7,powerset(the_carrier(X6))) )
      & ( subset(X7,X9)
        | ~ in(X9,esk5_2(X6,X7))
        | ~ topological_space(X6)
        | ~ top_str(X6)
        | ~ element(X7,powerset(the_carrier(X6))) )
      & ( ~ in(X11,powerset(the_carrier(X6)))
        | ~ element(X12,powerset(the_carrier(X6)))
        | X12 != X11
        | ~ closed_subset(X12,X6)
        | ~ subset(X7,X11)
        | in(X11,esk5_2(X6,X7))
        | ~ topological_space(X6)
        | ~ top_str(X6)
        | ~ element(X7,powerset(the_carrier(X6))) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_38])])])])])]) ).

fof(c_0_77,plain,
    ! [X4,X5] :
      ( ( in(esk8_2(X4,X5),X4)
        | element(X4,powerset(X5)) )
      & ( ~ in(esk8_2(X4,X5),X5)
        | element(X4,powerset(X5)) ) ),
    inference(distribute,[status(thm)],[inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_39])])])]) ).

fof(c_0_78,plain,
    ! [X3] :
      ( ( element(esk4_1(X3),powerset(the_carrier(X3)))
        | ~ topological_space(X3)
        | ~ top_str(X3) )
      & ( closed_subset(esk4_1(X3),X3)
        | ~ topological_space(X3)
        | ~ top_str(X3) ) ),
    inference(distribute,[status(thm)],[inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_40])])])]) ).

fof(c_0_79,plain,
    ! [X3,X4] :
      ( ~ in(X3,X4)
      | ~ in(X4,X3) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_41])]) ).

fof(c_0_80,plain,
    ! [X3,X4] :
      ( ( v1_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v5_membered(X3) )
      & ( v2_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v5_membered(X3) )
      & ( v3_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v5_membered(X3) )
      & ( v4_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v5_membered(X3) )
      & ( v5_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v5_membered(X3) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_42])])])]) ).

fof(c_0_81,plain,
    ! [X3,X4] :
      ( ( v1_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v4_membered(X3) )
      & ( v2_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v4_membered(X3) )
      & ( v3_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v4_membered(X3) )
      & ( v4_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v4_membered(X3) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_43])])])]) ).

fof(c_0_82,plain,
    ! [X3,X4] :
      ( ( v1_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v3_membered(X3) )
      & ( v2_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v3_membered(X3) )
      & ( v3_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v3_membered(X3) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_44])])])]) ).

fof(c_0_83,plain,
    ! [X3,X4] :
      ( ( v1_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v2_membered(X3) )
      & ( v2_membered(X4)
        | ~ element(X4,powerset(X3))
        | ~ v2_membered(X3) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_45])])])]) ).

fof(c_0_84,plain,
    ! [X3,X4] :
      ( ~ v1_membered(X3)
      | ~ element(X4,powerset(X3))
      | v1_membered(X4) ),
    inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_46])])]) ).

fof(c_0_85,plain,
    ! [X3,X4,X5,X6,X7,X8] :
      ( ( ~ element(X4,X3)
        | in(X4,X3)
        | empty(X3) )
      & ( ~ in(X5,X3)
        | element(X5,X3)
        | empty(X3) )
      & ( ~ element(X7,X6)
        | empty(X7)
        | ~ empty(X6) )
      & ( ~ empty(X8)
        | element(X8,X6)
        | ~ empty(X6) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_47])])])])]) ).

fof(c_0_86,plain,
    ! [X3,X4] :
      ( ( v1_xcmplx_0(X4)
        | ~ element(X4,X3)
        | ~ v5_membered(X3) )
      & ( natural(X4)
        | ~ element(X4,X3)
        | ~ v5_membered(X3) )
      & ( v1_xreal_0(X4)
        | ~ element(X4,X3)
        | ~ v5_membered(X3) )
      & ( v1_int_1(X4)
        | ~ element(X4,X3)
        | ~ v5_membered(X3) )
      & ( v1_rat_1(X4)
        | ~ element(X4,X3)
        | ~ v5_membered(X3) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_48])])])]) ).

fof(c_0_87,plain,
    ! [X3,X4] :
      ( ( v1_xcmplx_0(X4)
        | ~ element(X4,X3)
        | ~ v4_membered(X3) )
      & ( v1_xreal_0(X4)
        | ~ element(X4,X3)
        | ~ v4_membered(X3) )
      & ( v1_int_1(X4)
        | ~ element(X4,X3)
        | ~ v4_membered(X3) )
      & ( v1_rat_1(X4)
        | ~ element(X4,X3)
        | ~ v4_membered(X3) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_49])])])]) ).

fof(c_0_88,plain,
    ! [X3,X4] :
      ( ( v1_xcmplx_0(X4)
        | ~ element(X4,X3)
        | ~ v3_membered(X3) )
      & ( v1_xreal_0(X4)
        | ~ element(X4,X3)
        | ~ v3_membered(X3) )
      & ( v1_rat_1(X4)
        | ~ element(X4,X3)
        | ~ v3_membered(X3) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_50])])])]) ).

fof(c_0_89,plain,
    ! [X3,X4] :
      ( ( v1_xcmplx_0(X4)
        | ~ element(X4,X3)
        | ~ v2_membered(X3) )
      & ( v1_xreal_0(X4)
        | ~ element(X4,X3)
        | ~ v2_membered(X3) ) ),
    inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_51])])])]) ).

fof(c_0_90,plain,
    ! [X3,X4] :
      ( ~ v1_membered(X3)
      | ~ element(X4,X3)
      | v1_xcmplx_0(X4) ),
    inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_52])])]) ).

fof(c_0_91,plain,
    ! [X3] :
      ( ( element(esk2_1(X3),powerset(X3))
        | empty(X3) )
      & ( ~ empty(esk2_1(X3))
        | empty(X3) ) ),
    inference(distribute,[status(thm)],[inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_53])])])]) ).

fof(c_0_92,plain,
    ! [X3,X4] :
      ( ~ in(X3,X4)
      | ~ empty(X4) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_54])]) ).

fof(c_0_93,plain,
    ! [X3] :
      ( element(esk3_1(X3),powerset(X3))
      & empty(esk3_1(X3)) ),
    inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[c_0_55])]) ).

fof(c_0_94,plain,
    ! [X3] : element(esk7_1(X3),X3),
    inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[c_0_56])]) ).

fof(c_0_95,plain,
    ! [X2] : ~ empty(powerset(X2)),
    inference(variable_rename,[status(thm)],[c_0_57]) ).

fof(c_0_96,plain,
    ! [X3,X4] :
      ( ~ empty(X3)
      | X3 = X4
      | ~ empty(X4) ),
    inference(shift_quantors,[status(thm)],[inference(variable_rename,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_58])])])]) ).

fof(c_0_97,plain,
    ! [X3,X4] : subset(X3,X3),
    inference(variable_rename,[status(thm)],[c_0_59]) ).

fof(c_0_98,plain,
    ! [X2] :
      ( ~ top_str(X2)
      | one_sorted_str(X2) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_60])]) ).

fof(c_0_99,plain,
    ! [X2] :
      ( ( v1_membered(X2)
        | ~ empty(X2) )
      & ( v2_membered(X2)
        | ~ empty(X2) )
      & ( v3_membered(X2)
        | ~ empty(X2) )
      & ( v4_membered(X2)
        | ~ empty(X2) )
      & ( v5_membered(X2)
        | ~ empty(X2) ) ),
    inference(distribute,[status(thm)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_61])])]) ).

fof(c_0_100,plain,
    ! [X2] :
      ( ~ v2_membered(X2)
      | v1_membered(X2) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_62])]) ).

fof(c_0_101,plain,
    ! [X2] :
      ( ~ v3_membered(X2)
      | v2_membered(X2) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_63])]) ).

fof(c_0_102,plain,
    ! [X2] :
      ( ~ v4_membered(X2)
      | v3_membered(X2) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_64])]) ).

fof(c_0_103,plain,
    ! [X2] :
      ( ~ v5_membered(X2)
      | v4_membered(X2) ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_65])]) ).

fof(c_0_104,plain,
    ! [X2] :
      ( ~ empty(X2)
      | X2 = empty_set ),
    inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_66])]) ).

fof(c_0_105,plain,
    ~ empty(esk10_0),
    inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[c_0_67])]) ).

fof(c_0_106,plain,
    ( ~ empty(esk1_0)
    & v1_membered(esk1_0)
    & v2_membered(esk1_0)
    & v3_membered(esk1_0)
    & v4_membered(esk1_0)
    & v5_membered(esk1_0) ),
    inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[c_0_68])]) ).

fof(c_0_107,plain,
    empty(esk9_0),
    inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[c_0_69])]) ).

fof(c_0_108,axiom,
    empty(empty_set),
    c_0_70 ).

fof(c_0_109,axiom,
    $true,
    c_0_71 ).

fof(c_0_110,axiom,
    $true,
    c_0_72 ).

fof(c_0_111,axiom,
    $true,
    c_0_73 ).

fof(c_0_112,axiom,
    $true,
    c_0_74 ).

fof(c_0_113,axiom,
    $true,
    c_0_75 ).

cnf(c_0_114,plain,
    ( element(esk6_3(X2,X1,X3),powerset(the_carrier(X2)))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_76]) ).

cnf(c_0_115,plain,
    ( in(X3,esk5_2(X2,X1))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ subset(X1,X3)
    | ~ closed_subset(X4,X2)
    | X4 != X3
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(split_conjunct,[status(thm)],[c_0_76]) ).

cnf(c_0_116,plain,
    ( closed_subset(esk6_3(X2,X1,X3),X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_76]) ).

cnf(c_0_117,plain,
    ( esk6_3(X2,X1,X3) = X3
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_76]) ).

cnf(c_0_118,plain,
    ( in(X3,powerset(the_carrier(X2)))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_76]) ).

cnf(c_0_119,plain,
    ( subset(X1,X3)
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_76]) ).

cnf(c_0_120,plain,
    ( element(X1,powerset(X2))
    | ~ in(esk8_2(X1,X2),X2) ),
    inference(split_conjunct,[status(thm)],[c_0_77]) ).

cnf(c_0_121,plain,
    ( element(X1,powerset(X2))
    | in(esk8_2(X1,X2),X1) ),
    inference(split_conjunct,[status(thm)],[c_0_77]) ).

cnf(c_0_122,plain,
    ( element(esk4_1(X1),powerset(the_carrier(X1)))
    | ~ top_str(X1)
    | ~ topological_space(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_78]) ).

cnf(c_0_123,plain,
    ( ~ in(X1,X2)
    | ~ in(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_79]) ).

cnf(c_0_124,plain,
    ( v1_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_80]) ).

cnf(c_0_125,plain,
    ( v2_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_80]) ).

cnf(c_0_126,plain,
    ( v3_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_80]) ).

cnf(c_0_127,plain,
    ( v4_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_80]) ).

cnf(c_0_128,plain,
    ( v5_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_80]) ).

cnf(c_0_129,plain,
    ( v1_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_81]) ).

cnf(c_0_130,plain,
    ( v2_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_81]) ).

cnf(c_0_131,plain,
    ( v3_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_81]) ).

cnf(c_0_132,plain,
    ( v4_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_81]) ).

cnf(c_0_133,plain,
    ( v1_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_82]) ).

cnf(c_0_134,plain,
    ( v2_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_82]) ).

cnf(c_0_135,plain,
    ( v3_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_82]) ).

cnf(c_0_136,plain,
    ( v1_membered(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_83]) ).

cnf(c_0_137,plain,
    ( v2_membered(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_83]) ).

cnf(c_0_138,plain,
    ( v1_membered(X1)
    | ~ element(X1,powerset(X2))
    | ~ v1_membered(X2) ),
    inference(split_conjunct,[status(thm)],[c_0_84]) ).

cnf(c_0_139,plain,
    ( empty(X1)
    | in(X2,X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_85]) ).

cnf(c_0_140,plain,
    ( empty(X1)
    | element(X2,X1)
    | ~ in(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_85]) ).

cnf(c_0_141,plain,
    ( closed_subset(esk4_1(X1),X1)
    | ~ top_str(X1)
    | ~ topological_space(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_78]) ).

cnf(c_0_142,plain,
    ( empty(X2)
    | ~ empty(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_85]) ).

cnf(c_0_143,plain,
    ( v1_xcmplx_0(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_86]) ).

cnf(c_0_144,plain,
    ( natural(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_86]) ).

cnf(c_0_145,plain,
    ( v1_xreal_0(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_86]) ).

cnf(c_0_146,plain,
    ( v1_int_1(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_86]) ).

cnf(c_0_147,plain,
    ( v1_rat_1(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_86]) ).

cnf(c_0_148,plain,
    ( v1_xcmplx_0(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_87]) ).

cnf(c_0_149,plain,
    ( v1_xreal_0(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_87]) ).

cnf(c_0_150,plain,
    ( v1_int_1(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_87]) ).

cnf(c_0_151,plain,
    ( v1_rat_1(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_87]) ).

cnf(c_0_152,plain,
    ( v1_xcmplx_0(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_88]) ).

cnf(c_0_153,plain,
    ( v1_xreal_0(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_88]) ).

cnf(c_0_154,plain,
    ( v1_rat_1(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_88]) ).

cnf(c_0_155,plain,
    ( v1_xcmplx_0(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_89]) ).

cnf(c_0_156,plain,
    ( v1_xreal_0(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_89]) ).

cnf(c_0_157,plain,
    ( v1_xcmplx_0(X1)
    | ~ element(X1,X2)
    | ~ v1_membered(X2) ),
    inference(split_conjunct,[status(thm)],[c_0_90]) ).

cnf(c_0_158,plain,
    ( empty(X1)
    | element(esk2_1(X1),powerset(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_91]) ).

cnf(c_0_159,plain,
    ( ~ empty(X1)
    | ~ in(X2,X1) ),
    inference(split_conjunct,[status(thm)],[c_0_92]) ).

cnf(c_0_160,plain,
    ( element(X2,X1)
    | ~ empty(X1)
    | ~ empty(X2) ),
    inference(split_conjunct,[status(thm)],[c_0_85]) ).

cnf(c_0_161,plain,
    element(esk3_1(X1),powerset(X1)),
    inference(split_conjunct,[status(thm)],[c_0_93]) ).

cnf(c_0_162,plain,
    ( empty(X1)
    | ~ empty(esk2_1(X1)) ),
    inference(split_conjunct,[status(thm)],[c_0_91]) ).

cnf(c_0_163,plain,
    element(esk7_1(X1),X1),
    inference(split_conjunct,[status(thm)],[c_0_94]) ).

cnf(c_0_164,plain,
    ~ empty(powerset(X1)),
    inference(split_conjunct,[status(thm)],[c_0_95]) ).

cnf(c_0_165,plain,
    ( X2 = X1
    | ~ empty(X1)
    | ~ empty(X2) ),
    inference(split_conjunct,[status(thm)],[c_0_96]) ).

cnf(c_0_166,plain,
    subset(X1,X1),
    inference(split_conjunct,[status(thm)],[c_0_97]) ).

cnf(c_0_167,plain,
    ( one_sorted_str(X1)
    | ~ top_str(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_98]) ).

cnf(c_0_168,plain,
    ( v1_membered(X1)
    | ~ empty(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_99]) ).

cnf(c_0_169,plain,
    ( v2_membered(X1)
    | ~ empty(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_99]) ).

cnf(c_0_170,plain,
    ( v3_membered(X1)
    | ~ empty(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_99]) ).

cnf(c_0_171,plain,
    ( v4_membered(X1)
    | ~ empty(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_99]) ).

cnf(c_0_172,plain,
    ( v5_membered(X1)
    | ~ empty(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_99]) ).

cnf(c_0_173,plain,
    ( v1_membered(X1)
    | ~ v2_membered(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_100]) ).

cnf(c_0_174,plain,
    ( v2_membered(X1)
    | ~ v3_membered(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_101]) ).

cnf(c_0_175,plain,
    ( v3_membered(X1)
    | ~ v4_membered(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_102]) ).

cnf(c_0_176,plain,
    ( v4_membered(X1)
    | ~ v5_membered(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_103]) ).

cnf(c_0_177,plain,
    empty(esk3_1(X1)),
    inference(split_conjunct,[status(thm)],[c_0_93]) ).

cnf(c_0_178,plain,
    ( X1 = empty_set
    | ~ empty(X1) ),
    inference(split_conjunct,[status(thm)],[c_0_104]) ).

cnf(c_0_179,plain,
    ~ empty(esk10_0),
    inference(split_conjunct,[status(thm)],[c_0_105]) ).

cnf(c_0_180,plain,
    ~ empty(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_106]) ).

cnf(c_0_181,plain,
    empty(esk9_0),
    inference(split_conjunct,[status(thm)],[c_0_107]) ).

cnf(c_0_182,plain,
    empty(empty_set),
    inference(split_conjunct,[status(thm)],[c_0_108]) ).

cnf(c_0_183,plain,
    v1_membered(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_106]) ).

cnf(c_0_184,plain,
    v2_membered(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_106]) ).

cnf(c_0_185,plain,
    v3_membered(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_106]) ).

cnf(c_0_186,plain,
    v4_membered(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_106]) ).

cnf(c_0_187,plain,
    v5_membered(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_106]) ).

cnf(c_0_188,plain,
    $true,
    inference(split_conjunct,[status(thm)],[c_0_109]) ).

cnf(c_0_189,plain,
    $true,
    inference(split_conjunct,[status(thm)],[c_0_110]) ).

cnf(c_0_190,plain,
    $true,
    inference(split_conjunct,[status(thm)],[c_0_111]) ).

cnf(c_0_191,plain,
    $true,
    inference(split_conjunct,[status(thm)],[c_0_112]) ).

cnf(c_0_192,plain,
    $true,
    inference(split_conjunct,[status(thm)],[c_0_113]) ).

cnf(c_0_193,plain,
    ( element(esk6_3(X2,X1,X3),powerset(the_carrier(X2)))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    c_0_114,
    [final] ).

cnf(c_0_194,plain,
    ( in(X3,esk5_2(X2,X1))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ subset(X1,X3)
    | ~ closed_subset(X4,X2)
    | X4 != X3
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    c_0_115,
    [final] ).

cnf(c_0_195,plain,
    ( closed_subset(esk6_3(X2,X1,X3),X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    c_0_116,
    [final] ).

cnf(c_0_196,plain,
    ( esk6_3(X2,X1,X3) = X3
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    c_0_117,
    [final] ).

cnf(c_0_197,plain,
    ( in(X3,powerset(the_carrier(X2)))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    c_0_118,
    [final] ).

cnf(c_0_198,plain,
    ( subset(X1,X3)
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,esk5_2(X2,X1)) ),
    c_0_119,
    [final] ).

cnf(c_0_199,plain,
    ( element(X1,powerset(X2))
    | ~ in(esk8_2(X1,X2),X2) ),
    c_0_120,
    [final] ).

cnf(c_0_200,plain,
    ( element(X1,powerset(X2))
    | in(esk8_2(X1,X2),X1) ),
    c_0_121,
    [final] ).

cnf(c_0_201,plain,
    ( element(esk4_1(X1),powerset(the_carrier(X1)))
    | ~ top_str(X1)
    | ~ topological_space(X1) ),
    c_0_122,
    [final] ).

cnf(c_0_202,plain,
    ( ~ in(X1,X2)
    | ~ in(X2,X1) ),
    c_0_123,
    [final] ).

cnf(c_0_203,plain,
    ( v1_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_124,
    [final] ).

cnf(c_0_204,plain,
    ( v2_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_125,
    [final] ).

cnf(c_0_205,plain,
    ( v3_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_126,
    [final] ).

cnf(c_0_206,plain,
    ( v4_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_127,
    [final] ).

cnf(c_0_207,plain,
    ( v5_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_128,
    [final] ).

cnf(c_0_208,plain,
    ( v1_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_129,
    [final] ).

cnf(c_0_209,plain,
    ( v2_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_130,
    [final] ).

cnf(c_0_210,plain,
    ( v3_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_131,
    [final] ).

cnf(c_0_211,plain,
    ( v4_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_132,
    [final] ).

cnf(c_0_212,plain,
    ( v1_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_133,
    [final] ).

cnf(c_0_213,plain,
    ( v2_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_134,
    [final] ).

cnf(c_0_214,plain,
    ( v3_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_135,
    [final] ).

cnf(c_0_215,plain,
    ( v1_membered(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_136,
    [final] ).

cnf(c_0_216,plain,
    ( v2_membered(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    c_0_137,
    [final] ).

cnf(c_0_217,plain,
    ( v1_membered(X1)
    | ~ element(X1,powerset(X2))
    | ~ v1_membered(X2) ),
    c_0_138,
    [final] ).

cnf(c_0_218,plain,
    ( empty(X1)
    | in(X2,X1)
    | ~ element(X2,X1) ),
    c_0_139,
    [final] ).

cnf(c_0_219,plain,
    ( empty(X1)
    | element(X2,X1)
    | ~ in(X2,X1) ),
    c_0_140,
    [final] ).

cnf(c_0_220,plain,
    ( closed_subset(esk4_1(X1),X1)
    | ~ top_str(X1)
    | ~ topological_space(X1) ),
    c_0_141,
    [final] ).

cnf(c_0_221,plain,
    ( empty(X2)
    | ~ empty(X1)
    | ~ element(X2,X1) ),
    c_0_142,
    [final] ).

cnf(c_0_222,plain,
    ( v1_xcmplx_0(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    c_0_143,
    [final] ).

cnf(c_0_223,plain,
    ( natural(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    c_0_144,
    [final] ).

cnf(c_0_224,plain,
    ( v1_xreal_0(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    c_0_145,
    [final] ).

cnf(c_0_225,plain,
    ( v1_int_1(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    c_0_146,
    [final] ).

cnf(c_0_226,plain,
    ( v1_rat_1(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    c_0_147,
    [final] ).

cnf(c_0_227,plain,
    ( v1_xcmplx_0(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    c_0_148,
    [final] ).

cnf(c_0_228,plain,
    ( v1_xreal_0(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    c_0_149,
    [final] ).

cnf(c_0_229,plain,
    ( v1_int_1(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    c_0_150,
    [final] ).

cnf(c_0_230,plain,
    ( v1_rat_1(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    c_0_151,
    [final] ).

cnf(c_0_231,plain,
    ( v1_xcmplx_0(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    c_0_152,
    [final] ).

cnf(c_0_232,plain,
    ( v1_xreal_0(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    c_0_153,
    [final] ).

cnf(c_0_233,plain,
    ( v1_rat_1(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    c_0_154,
    [final] ).

cnf(c_0_234,plain,
    ( v1_xcmplx_0(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,X1) ),
    c_0_155,
    [final] ).

cnf(c_0_235,plain,
    ( v1_xreal_0(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,X1) ),
    c_0_156,
    [final] ).

cnf(c_0_236,plain,
    ( v1_xcmplx_0(X1)
    | ~ element(X1,X2)
    | ~ v1_membered(X2) ),
    c_0_157,
    [final] ).

cnf(c_0_237,plain,
    ( empty(X1)
    | element(esk2_1(X1),powerset(X1)) ),
    c_0_158,
    [final] ).

cnf(c_0_238,plain,
    ( ~ empty(X1)
    | ~ in(X2,X1) ),
    c_0_159,
    [final] ).

cnf(c_0_239,plain,
    ( element(X2,X1)
    | ~ empty(X1)
    | ~ empty(X2) ),
    c_0_160,
    [final] ).

cnf(c_0_240,plain,
    element(esk3_1(X1),powerset(X1)),
    c_0_161,
    [final] ).

cnf(c_0_241,plain,
    ( empty(X1)
    | ~ empty(esk2_1(X1)) ),
    c_0_162,
    [final] ).

cnf(c_0_242,plain,
    element(esk7_1(X1),X1),
    c_0_163,
    [final] ).

cnf(c_0_243,plain,
    ~ empty(powerset(X1)),
    c_0_164,
    [final] ).

cnf(c_0_244,plain,
    ( X2 = X1
    | ~ empty(X1)
    | ~ empty(X2) ),
    c_0_165,
    [final] ).

cnf(c_0_245,plain,
    subset(X1,X1),
    c_0_166,
    [final] ).

cnf(c_0_246,plain,
    ( one_sorted_str(X1)
    | ~ top_str(X1) ),
    c_0_167,
    [final] ).

cnf(c_0_247,plain,
    ( v1_membered(X1)
    | ~ empty(X1) ),
    c_0_168,
    [final] ).

cnf(c_0_248,plain,
    ( v2_membered(X1)
    | ~ empty(X1) ),
    c_0_169,
    [final] ).

cnf(c_0_249,plain,
    ( v3_membered(X1)
    | ~ empty(X1) ),
    c_0_170,
    [final] ).

cnf(c_0_250,plain,
    ( v4_membered(X1)
    | ~ empty(X1) ),
    c_0_171,
    [final] ).

cnf(c_0_251,plain,
    ( v5_membered(X1)
    | ~ empty(X1) ),
    c_0_172,
    [final] ).

cnf(c_0_252,plain,
    ( v1_membered(X1)
    | ~ v2_membered(X1) ),
    c_0_173,
    [final] ).

cnf(c_0_253,plain,
    ( v2_membered(X1)
    | ~ v3_membered(X1) ),
    c_0_174,
    [final] ).

cnf(c_0_254,plain,
    ( v3_membered(X1)
    | ~ v4_membered(X1) ),
    c_0_175,
    [final] ).

cnf(c_0_255,plain,
    ( v4_membered(X1)
    | ~ v5_membered(X1) ),
    c_0_176,
    [final] ).

cnf(c_0_256,plain,
    empty(esk3_1(X1)),
    c_0_177,
    [final] ).

cnf(c_0_257,plain,
    ( X1 = empty_set
    | ~ empty(X1) ),
    c_0_178,
    [final] ).

cnf(c_0_258,plain,
    ~ empty(esk10_0),
    c_0_179,
    [final] ).

cnf(c_0_259,plain,
    ~ empty(esk1_0),
    c_0_180,
    [final] ).

cnf(c_0_260,plain,
    empty(esk9_0),
    c_0_181,
    [final] ).

cnf(c_0_261,plain,
    empty(empty_set),
    c_0_182,
    [final] ).

cnf(c_0_262,plain,
    v1_membered(esk1_0),
    c_0_183,
    [final] ).

cnf(c_0_263,plain,
    v2_membered(esk1_0),
    c_0_184,
    [final] ).

cnf(c_0_264,plain,
    v3_membered(esk1_0),
    c_0_185,
    [final] ).

cnf(c_0_265,plain,
    v4_membered(esk1_0),
    c_0_186,
    [final] ).

cnf(c_0_266,plain,
    v5_membered(esk1_0),
    c_0_187,
    [final] ).

cnf(c_0_267,plain,
    $true,
    c_0_188,
    [final] ).

cnf(c_0_268,plain,
    $true,
    c_0_189,
    [final] ).

cnf(c_0_269,plain,
    $true,
    c_0_190,
    [final] ).

cnf(c_0_270,plain,
    $true,
    c_0_191,
    [final] ).

cnf(c_0_271,plain,
    $true,
    c_0_192,
    [final] ).

% End CNF derivation
% Generating one_way clauses for all literals in the CNF.
cnf(c_0_193_0,axiom,
    ( element(sk1_esk6_3(X2,X1,X3),powerset(the_carrier(X2)))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_193]) ).

cnf(c_0_193_1,axiom,
    ( ~ element(X1,powerset(the_carrier(X2)))
    | element(sk1_esk6_3(X2,X1,X3),powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_193]) ).

cnf(c_0_193_2,axiom,
    ( ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | element(sk1_esk6_3(X2,X1,X3),powerset(the_carrier(X2)))
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_193]) ).

cnf(c_0_193_3,axiom,
    ( ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | element(sk1_esk6_3(X2,X1,X3),powerset(the_carrier(X2)))
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_193]) ).

cnf(c_0_193_4,axiom,
    ( ~ in(X3,sk1_esk5_2(X2,X1))
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | element(sk1_esk6_3(X2,X1,X3),powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_193]) ).

cnf(c_0_194_0,axiom,
    ( in(X3,sk1_esk5_2(X2,X1))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ subset(X1,X3)
    | ~ closed_subset(X4,X2)
    | X4 != X3
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_194_1,axiom,
    ( ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,sk1_esk5_2(X2,X1))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ subset(X1,X3)
    | ~ closed_subset(X4,X2)
    | X4 != X3
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_194_2,axiom,
    ( ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,sk1_esk5_2(X2,X1))
    | ~ topological_space(X2)
    | ~ subset(X1,X3)
    | ~ closed_subset(X4,X2)
    | X4 != X3
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_194_3,axiom,
    ( ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,sk1_esk5_2(X2,X1))
    | ~ subset(X1,X3)
    | ~ closed_subset(X4,X2)
    | X4 != X3
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_194_4,axiom,
    ( ~ subset(X1,X3)
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,sk1_esk5_2(X2,X1))
    | ~ closed_subset(X4,X2)
    | X4 != X3
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_194_5,axiom,
    ( ~ closed_subset(X4,X2)
    | ~ subset(X1,X3)
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,sk1_esk5_2(X2,X1))
    | X4 != X3
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_194_6,axiom,
    ( X4 != X3
    | ~ closed_subset(X4,X2)
    | ~ subset(X1,X3)
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,sk1_esk5_2(X2,X1))
    | ~ element(X4,powerset(the_carrier(X2)))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_194_7,axiom,
    ( ~ element(X4,powerset(the_carrier(X2)))
    | X4 != X3
    | ~ closed_subset(X4,X2)
    | ~ subset(X1,X3)
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,sk1_esk5_2(X2,X1))
    | ~ in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_194_8,axiom,
    ( ~ in(X3,powerset(the_carrier(X2)))
    | ~ element(X4,powerset(the_carrier(X2)))
    | X4 != X3
    | ~ closed_subset(X4,X2)
    | ~ subset(X1,X3)
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_194]) ).

cnf(c_0_195_0,axiom,
    ( closed_subset(sk1_esk6_3(X2,X1,X3),X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_195]) ).

cnf(c_0_195_1,axiom,
    ( ~ element(X1,powerset(the_carrier(X2)))
    | closed_subset(sk1_esk6_3(X2,X1,X3),X2)
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_195]) ).

cnf(c_0_195_2,axiom,
    ( ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | closed_subset(sk1_esk6_3(X2,X1,X3),X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_195]) ).

cnf(c_0_195_3,axiom,
    ( ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | closed_subset(sk1_esk6_3(X2,X1,X3),X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_195]) ).

cnf(c_0_195_4,axiom,
    ( ~ in(X3,sk1_esk5_2(X2,X1))
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | closed_subset(sk1_esk6_3(X2,X1,X3),X2) ),
    inference(literals_permutation,[status(thm)],[c_0_195]) ).

cnf(c_0_196_0,axiom,
    ( sk1_esk6_3(X2,X1,X3) = X3
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_196]) ).

cnf(c_0_196_1,axiom,
    ( ~ element(X1,powerset(the_carrier(X2)))
    | sk1_esk6_3(X2,X1,X3) = X3
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_196]) ).

cnf(c_0_196_2,axiom,
    ( ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | sk1_esk6_3(X2,X1,X3) = X3
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_196]) ).

cnf(c_0_196_3,axiom,
    ( ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | sk1_esk6_3(X2,X1,X3) = X3
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_196]) ).

cnf(c_0_196_4,axiom,
    ( ~ in(X3,sk1_esk5_2(X2,X1))
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | sk1_esk6_3(X2,X1,X3) = X3 ),
    inference(literals_permutation,[status(thm)],[c_0_196]) ).

cnf(c_0_197_0,axiom,
    ( in(X3,powerset(the_carrier(X2)))
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_197]) ).

cnf(c_0_197_1,axiom,
    ( ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_197]) ).

cnf(c_0_197_2,axiom,
    ( ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,powerset(the_carrier(X2)))
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_197]) ).

cnf(c_0_197_3,axiom,
    ( ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,powerset(the_carrier(X2)))
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_197]) ).

cnf(c_0_197_4,axiom,
    ( ~ in(X3,sk1_esk5_2(X2,X1))
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | in(X3,powerset(the_carrier(X2))) ),
    inference(literals_permutation,[status(thm)],[c_0_197]) ).

cnf(c_0_198_0,axiom,
    ( subset(X1,X3)
    | ~ element(X1,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_198]) ).

cnf(c_0_198_1,axiom,
    ( ~ element(X1,powerset(the_carrier(X2)))
    | subset(X1,X3)
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_198]) ).

cnf(c_0_198_2,axiom,
    ( ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | subset(X1,X3)
    | ~ topological_space(X2)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_198]) ).

cnf(c_0_198_3,axiom,
    ( ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | subset(X1,X3)
    | ~ in(X3,sk1_esk5_2(X2,X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_198]) ).

cnf(c_0_198_4,axiom,
    ( ~ in(X3,sk1_esk5_2(X2,X1))
    | ~ topological_space(X2)
    | ~ top_str(X2)
    | ~ element(X1,powerset(the_carrier(X2)))
    | subset(X1,X3) ),
    inference(literals_permutation,[status(thm)],[c_0_198]) ).

cnf(c_0_199_0,axiom,
    ( element(X1,powerset(X2))
    | ~ in(sk1_esk8_2(X1,X2),X2) ),
    inference(literals_permutation,[status(thm)],[c_0_199]) ).

cnf(c_0_199_1,axiom,
    ( ~ in(sk1_esk8_2(X1,X2),X2)
    | element(X1,powerset(X2)) ),
    inference(literals_permutation,[status(thm)],[c_0_199]) ).

cnf(c_0_200_0,axiom,
    ( element(X1,powerset(X2))
    | in(sk1_esk8_2(X1,X2),X1) ),
    inference(literals_permutation,[status(thm)],[c_0_200]) ).

cnf(c_0_200_1,axiom,
    ( in(sk1_esk8_2(X1,X2),X1)
    | element(X1,powerset(X2)) ),
    inference(literals_permutation,[status(thm)],[c_0_200]) ).

cnf(c_0_201_0,axiom,
    ( element(sk1_esk4_1(X1),powerset(the_carrier(X1)))
    | ~ top_str(X1)
    | ~ topological_space(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_201]) ).

cnf(c_0_201_1,axiom,
    ( ~ top_str(X1)
    | element(sk1_esk4_1(X1),powerset(the_carrier(X1)))
    | ~ topological_space(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_201]) ).

cnf(c_0_201_2,axiom,
    ( ~ topological_space(X1)
    | ~ top_str(X1)
    | element(sk1_esk4_1(X1),powerset(the_carrier(X1))) ),
    inference(literals_permutation,[status(thm)],[c_0_201]) ).

cnf(c_0_202_0,axiom,
    ( ~ in(X1,X2)
    | ~ in(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_202]) ).

cnf(c_0_202_1,axiom,
    ( ~ in(X2,X1)
    | ~ in(X1,X2) ),
    inference(literals_permutation,[status(thm)],[c_0_202]) ).

cnf(c_0_203_0,axiom,
    ( v1_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_203]) ).

cnf(c_0_203_1,axiom,
    ( ~ v5_membered(X1)
    | v1_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_203]) ).

cnf(c_0_203_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v5_membered(X1)
    | v1_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_203]) ).

cnf(c_0_204_0,axiom,
    ( v2_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_204]) ).

cnf(c_0_204_1,axiom,
    ( ~ v5_membered(X1)
    | v2_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_204]) ).

cnf(c_0_204_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v5_membered(X1)
    | v2_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_204]) ).

cnf(c_0_205_0,axiom,
    ( v3_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_205]) ).

cnf(c_0_205_1,axiom,
    ( ~ v5_membered(X1)
    | v3_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_205]) ).

cnf(c_0_205_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v5_membered(X1)
    | v3_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_205]) ).

cnf(c_0_206_0,axiom,
    ( v4_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_206]) ).

cnf(c_0_206_1,axiom,
    ( ~ v5_membered(X1)
    | v4_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_206]) ).

cnf(c_0_206_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v5_membered(X1)
    | v4_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_206]) ).

cnf(c_0_207_0,axiom,
    ( v5_membered(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_207]) ).

cnf(c_0_207_1,axiom,
    ( ~ v5_membered(X1)
    | v5_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_207]) ).

cnf(c_0_207_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v5_membered(X1)
    | v5_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_207]) ).

cnf(c_0_208_0,axiom,
    ( v1_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_208]) ).

cnf(c_0_208_1,axiom,
    ( ~ v4_membered(X1)
    | v1_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_208]) ).

cnf(c_0_208_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v4_membered(X1)
    | v1_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_208]) ).

cnf(c_0_209_0,axiom,
    ( v2_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_209]) ).

cnf(c_0_209_1,axiom,
    ( ~ v4_membered(X1)
    | v2_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_209]) ).

cnf(c_0_209_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v4_membered(X1)
    | v2_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_209]) ).

cnf(c_0_210_0,axiom,
    ( v3_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_210]) ).

cnf(c_0_210_1,axiom,
    ( ~ v4_membered(X1)
    | v3_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_210]) ).

cnf(c_0_210_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v4_membered(X1)
    | v3_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_210]) ).

cnf(c_0_211_0,axiom,
    ( v4_membered(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_211]) ).

cnf(c_0_211_1,axiom,
    ( ~ v4_membered(X1)
    | v4_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_211]) ).

cnf(c_0_211_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v4_membered(X1)
    | v4_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_211]) ).

cnf(c_0_212_0,axiom,
    ( v1_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_212]) ).

cnf(c_0_212_1,axiom,
    ( ~ v3_membered(X1)
    | v1_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_212]) ).

cnf(c_0_212_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v3_membered(X1)
    | v1_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_212]) ).

cnf(c_0_213_0,axiom,
    ( v2_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_213]) ).

cnf(c_0_213_1,axiom,
    ( ~ v3_membered(X1)
    | v2_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_213]) ).

cnf(c_0_213_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v3_membered(X1)
    | v2_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_213]) ).

cnf(c_0_214_0,axiom,
    ( v3_membered(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_214]) ).

cnf(c_0_214_1,axiom,
    ( ~ v3_membered(X1)
    | v3_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_214]) ).

cnf(c_0_214_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v3_membered(X1)
    | v3_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_214]) ).

cnf(c_0_215_0,axiom,
    ( v1_membered(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_215]) ).

cnf(c_0_215_1,axiom,
    ( ~ v2_membered(X1)
    | v1_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_215]) ).

cnf(c_0_215_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v2_membered(X1)
    | v1_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_215]) ).

cnf(c_0_216_0,axiom,
    ( v2_membered(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_216]) ).

cnf(c_0_216_1,axiom,
    ( ~ v2_membered(X1)
    | v2_membered(X2)
    | ~ element(X2,powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_216]) ).

cnf(c_0_216_2,axiom,
    ( ~ element(X2,powerset(X1))
    | ~ v2_membered(X1)
    | v2_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_216]) ).

cnf(c_0_217_0,axiom,
    ( v1_membered(X1)
    | ~ element(X1,powerset(X2))
    | ~ v1_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_217]) ).

cnf(c_0_217_1,axiom,
    ( ~ element(X1,powerset(X2))
    | v1_membered(X1)
    | ~ v1_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_217]) ).

cnf(c_0_217_2,axiom,
    ( ~ v1_membered(X2)
    | ~ element(X1,powerset(X2))
    | v1_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_217]) ).

cnf(c_0_218_0,axiom,
    ( empty(X1)
    | in(X2,X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_218]) ).

cnf(c_0_218_1,axiom,
    ( in(X2,X1)
    | empty(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_218]) ).

cnf(c_0_218_2,axiom,
    ( ~ element(X2,X1)
    | in(X2,X1)
    | empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_218]) ).

cnf(c_0_219_0,axiom,
    ( empty(X1)
    | element(X2,X1)
    | ~ in(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_219]) ).

cnf(c_0_219_1,axiom,
    ( element(X2,X1)
    | empty(X1)
    | ~ in(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_219]) ).

cnf(c_0_219_2,axiom,
    ( ~ in(X2,X1)
    | element(X2,X1)
    | empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_219]) ).

cnf(c_0_220_0,axiom,
    ( closed_subset(sk1_esk4_1(X1),X1)
    | ~ top_str(X1)
    | ~ topological_space(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_220]) ).

cnf(c_0_220_1,axiom,
    ( ~ top_str(X1)
    | closed_subset(sk1_esk4_1(X1),X1)
    | ~ topological_space(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_220]) ).

cnf(c_0_220_2,axiom,
    ( ~ topological_space(X1)
    | ~ top_str(X1)
    | closed_subset(sk1_esk4_1(X1),X1) ),
    inference(literals_permutation,[status(thm)],[c_0_220]) ).

cnf(c_0_221_0,axiom,
    ( empty(X2)
    | ~ empty(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_221]) ).

cnf(c_0_221_1,axiom,
    ( ~ empty(X1)
    | empty(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_221]) ).

cnf(c_0_221_2,axiom,
    ( ~ element(X2,X1)
    | ~ empty(X1)
    | empty(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_221]) ).

cnf(c_0_222_0,axiom,
    ( v1_xcmplx_0(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_222]) ).

cnf(c_0_222_1,axiom,
    ( ~ v5_membered(X1)
    | v1_xcmplx_0(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_222]) ).

cnf(c_0_222_2,axiom,
    ( ~ element(X2,X1)
    | ~ v5_membered(X1)
    | v1_xcmplx_0(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_222]) ).

cnf(c_0_223_0,axiom,
    ( natural(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_223]) ).

cnf(c_0_223_1,axiom,
    ( ~ v5_membered(X1)
    | natural(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_223]) ).

cnf(c_0_223_2,axiom,
    ( ~ element(X2,X1)
    | ~ v5_membered(X1)
    | natural(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_223]) ).

cnf(c_0_224_0,axiom,
    ( v1_xreal_0(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_224]) ).

cnf(c_0_224_1,axiom,
    ( ~ v5_membered(X1)
    | v1_xreal_0(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_224]) ).

cnf(c_0_224_2,axiom,
    ( ~ element(X2,X1)
    | ~ v5_membered(X1)
    | v1_xreal_0(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_224]) ).

cnf(c_0_225_0,axiom,
    ( v1_int_1(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_225]) ).

cnf(c_0_225_1,axiom,
    ( ~ v5_membered(X1)
    | v1_int_1(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_225]) ).

cnf(c_0_225_2,axiom,
    ( ~ element(X2,X1)
    | ~ v5_membered(X1)
    | v1_int_1(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_225]) ).

cnf(c_0_226_0,axiom,
    ( v1_rat_1(X2)
    | ~ v5_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_226]) ).

cnf(c_0_226_1,axiom,
    ( ~ v5_membered(X1)
    | v1_rat_1(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_226]) ).

cnf(c_0_226_2,axiom,
    ( ~ element(X2,X1)
    | ~ v5_membered(X1)
    | v1_rat_1(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_226]) ).

cnf(c_0_227_0,axiom,
    ( v1_xcmplx_0(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_227]) ).

cnf(c_0_227_1,axiom,
    ( ~ v4_membered(X1)
    | v1_xcmplx_0(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_227]) ).

cnf(c_0_227_2,axiom,
    ( ~ element(X2,X1)
    | ~ v4_membered(X1)
    | v1_xcmplx_0(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_227]) ).

cnf(c_0_228_0,axiom,
    ( v1_xreal_0(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_228]) ).

cnf(c_0_228_1,axiom,
    ( ~ v4_membered(X1)
    | v1_xreal_0(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_228]) ).

cnf(c_0_228_2,axiom,
    ( ~ element(X2,X1)
    | ~ v4_membered(X1)
    | v1_xreal_0(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_228]) ).

cnf(c_0_229_0,axiom,
    ( v1_int_1(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_229]) ).

cnf(c_0_229_1,axiom,
    ( ~ v4_membered(X1)
    | v1_int_1(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_229]) ).

cnf(c_0_229_2,axiom,
    ( ~ element(X2,X1)
    | ~ v4_membered(X1)
    | v1_int_1(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_229]) ).

cnf(c_0_230_0,axiom,
    ( v1_rat_1(X2)
    | ~ v4_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_230]) ).

cnf(c_0_230_1,axiom,
    ( ~ v4_membered(X1)
    | v1_rat_1(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_230]) ).

cnf(c_0_230_2,axiom,
    ( ~ element(X2,X1)
    | ~ v4_membered(X1)
    | v1_rat_1(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_230]) ).

cnf(c_0_231_0,axiom,
    ( v1_xcmplx_0(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_231]) ).

cnf(c_0_231_1,axiom,
    ( ~ v3_membered(X1)
    | v1_xcmplx_0(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_231]) ).

cnf(c_0_231_2,axiom,
    ( ~ element(X2,X1)
    | ~ v3_membered(X1)
    | v1_xcmplx_0(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_231]) ).

cnf(c_0_232_0,axiom,
    ( v1_xreal_0(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_232]) ).

cnf(c_0_232_1,axiom,
    ( ~ v3_membered(X1)
    | v1_xreal_0(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_232]) ).

cnf(c_0_232_2,axiom,
    ( ~ element(X2,X1)
    | ~ v3_membered(X1)
    | v1_xreal_0(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_232]) ).

cnf(c_0_233_0,axiom,
    ( v1_rat_1(X2)
    | ~ v3_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_233]) ).

cnf(c_0_233_1,axiom,
    ( ~ v3_membered(X1)
    | v1_rat_1(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_233]) ).

cnf(c_0_233_2,axiom,
    ( ~ element(X2,X1)
    | ~ v3_membered(X1)
    | v1_rat_1(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_233]) ).

cnf(c_0_234_0,axiom,
    ( v1_xcmplx_0(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_234]) ).

cnf(c_0_234_1,axiom,
    ( ~ v2_membered(X1)
    | v1_xcmplx_0(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_234]) ).

cnf(c_0_234_2,axiom,
    ( ~ element(X2,X1)
    | ~ v2_membered(X1)
    | v1_xcmplx_0(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_234]) ).

cnf(c_0_235_0,axiom,
    ( v1_xreal_0(X2)
    | ~ v2_membered(X1)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_235]) ).

cnf(c_0_235_1,axiom,
    ( ~ v2_membered(X1)
    | v1_xreal_0(X2)
    | ~ element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_235]) ).

cnf(c_0_235_2,axiom,
    ( ~ element(X2,X1)
    | ~ v2_membered(X1)
    | v1_xreal_0(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_235]) ).

cnf(c_0_236_0,axiom,
    ( v1_xcmplx_0(X1)
    | ~ element(X1,X2)
    | ~ v1_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_236]) ).

cnf(c_0_236_1,axiom,
    ( ~ element(X1,X2)
    | v1_xcmplx_0(X1)
    | ~ v1_membered(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_236]) ).

cnf(c_0_236_2,axiom,
    ( ~ v1_membered(X2)
    | ~ element(X1,X2)
    | v1_xcmplx_0(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_236]) ).

cnf(c_0_237_0,axiom,
    ( empty(X1)
    | element(sk1_esk2_1(X1),powerset(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_237]) ).

cnf(c_0_237_1,axiom,
    ( element(sk1_esk2_1(X1),powerset(X1))
    | empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_237]) ).

cnf(c_0_238_0,axiom,
    ( ~ empty(X1)
    | ~ in(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_238]) ).

cnf(c_0_238_1,axiom,
    ( ~ in(X2,X1)
    | ~ empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_238]) ).

cnf(c_0_239_0,axiom,
    ( element(X2,X1)
    | ~ empty(X1)
    | ~ empty(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_239]) ).

cnf(c_0_239_1,axiom,
    ( ~ empty(X1)
    | element(X2,X1)
    | ~ empty(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_239]) ).

cnf(c_0_239_2,axiom,
    ( ~ empty(X2)
    | ~ empty(X1)
    | element(X2,X1) ),
    inference(literals_permutation,[status(thm)],[c_0_239]) ).

cnf(c_0_241_0,axiom,
    ( empty(X1)
    | ~ empty(sk1_esk2_1(X1)) ),
    inference(literals_permutation,[status(thm)],[c_0_241]) ).

cnf(c_0_241_1,axiom,
    ( ~ empty(sk1_esk2_1(X1))
    | empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_241]) ).

cnf(c_0_244_0,axiom,
    ( X2 = X1
    | ~ empty(X1)
    | ~ empty(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_244]) ).

cnf(c_0_244_1,axiom,
    ( ~ empty(X1)
    | X2 = X1
    | ~ empty(X2) ),
    inference(literals_permutation,[status(thm)],[c_0_244]) ).

cnf(c_0_244_2,axiom,
    ( ~ empty(X2)
    | ~ empty(X1)
    | X2 = X1 ),
    inference(literals_permutation,[status(thm)],[c_0_244]) ).

cnf(c_0_246_0,axiom,
    ( one_sorted_str(X1)
    | ~ top_str(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_246]) ).

cnf(c_0_246_1,axiom,
    ( ~ top_str(X1)
    | one_sorted_str(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_246]) ).

cnf(c_0_247_0,axiom,
    ( v1_membered(X1)
    | ~ empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_247]) ).

cnf(c_0_247_1,axiom,
    ( ~ empty(X1)
    | v1_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_247]) ).

cnf(c_0_248_0,axiom,
    ( v2_membered(X1)
    | ~ empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_248]) ).

cnf(c_0_248_1,axiom,
    ( ~ empty(X1)
    | v2_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_248]) ).

cnf(c_0_249_0,axiom,
    ( v3_membered(X1)
    | ~ empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_249]) ).

cnf(c_0_249_1,axiom,
    ( ~ empty(X1)
    | v3_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_249]) ).

cnf(c_0_250_0,axiom,
    ( v4_membered(X1)
    | ~ empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_250]) ).

cnf(c_0_250_1,axiom,
    ( ~ empty(X1)
    | v4_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_250]) ).

cnf(c_0_251_0,axiom,
    ( v5_membered(X1)
    | ~ empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_251]) ).

cnf(c_0_251_1,axiom,
    ( ~ empty(X1)
    | v5_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_251]) ).

cnf(c_0_252_0,axiom,
    ( v1_membered(X1)
    | ~ v2_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_252]) ).

cnf(c_0_252_1,axiom,
    ( ~ v2_membered(X1)
    | v1_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_252]) ).

cnf(c_0_253_0,axiom,
    ( v2_membered(X1)
    | ~ v3_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_253]) ).

cnf(c_0_253_1,axiom,
    ( ~ v3_membered(X1)
    | v2_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_253]) ).

cnf(c_0_254_0,axiom,
    ( v3_membered(X1)
    | ~ v4_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_254]) ).

cnf(c_0_254_1,axiom,
    ( ~ v4_membered(X1)
    | v3_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_254]) ).

cnf(c_0_255_0,axiom,
    ( v4_membered(X1)
    | ~ v5_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_255]) ).

cnf(c_0_255_1,axiom,
    ( ~ v5_membered(X1)
    | v4_membered(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_255]) ).

cnf(c_0_257_0,axiom,
    ( X1 = empty_set
    | ~ empty(X1) ),
    inference(literals_permutation,[status(thm)],[c_0_257]) ).

cnf(c_0_257_1,axiom,
    ( ~ empty(X1)
    | X1 = empty_set ),
    inference(literals_permutation,[status(thm)],[c_0_257]) ).

cnf(c_0_243_0,axiom,
    ~ empty(powerset(X1)),
    inference(literals_permutation,[status(thm)],[c_0_243]) ).

cnf(c_0_258_0,axiom,
    ~ empty(sk1_esk10_0),
    inference(literals_permutation,[status(thm)],[c_0_258]) ).

cnf(c_0_259_0,axiom,
    ~ empty(sk1_esk1_0),
    inference(literals_permutation,[status(thm)],[c_0_259]) ).

cnf(c_0_240_0,axiom,
    element(sk1_esk3_1(X1),powerset(X1)),
    inference(literals_permutation,[status(thm)],[c_0_240]) ).

cnf(c_0_242_0,axiom,
    element(sk1_esk7_1(X1),X1),
    inference(literals_permutation,[status(thm)],[c_0_242]) ).

cnf(c_0_245_0,axiom,
    subset(X1,X1),
    inference(literals_permutation,[status(thm)],[c_0_245]) ).

cnf(c_0_256_0,axiom,
    empty(sk1_esk3_1(X1)),
    inference(literals_permutation,[status(thm)],[c_0_256]) ).

cnf(c_0_260_0,axiom,
    empty(sk1_esk9_0),
    inference(literals_permutation,[status(thm)],[c_0_260]) ).

cnf(c_0_261_0,axiom,
    empty(empty_set),
    inference(literals_permutation,[status(thm)],[c_0_261]) ).

cnf(c_0_262_0,axiom,
    v1_membered(sk1_esk1_0),
    inference(literals_permutation,[status(thm)],[c_0_262]) ).

cnf(c_0_263_0,axiom,
    v2_membered(sk1_esk1_0),
    inference(literals_permutation,[status(thm)],[c_0_263]) ).

cnf(c_0_264_0,axiom,
    v3_membered(sk1_esk1_0),
    inference(literals_permutation,[status(thm)],[c_0_264]) ).

cnf(c_0_265_0,axiom,
    v4_membered(sk1_esk1_0),
    inference(literals_permutation,[status(thm)],[c_0_265]) ).

cnf(c_0_266_0,axiom,
    v5_membered(sk1_esk1_0),
    inference(literals_permutation,[status(thm)],[c_0_266]) ).

cnf(c_0_267_0,axiom,
    $true,
    inference(literals_permutation,[status(thm)],[c_0_267]) ).

cnf(c_0_268_0,axiom,
    $true,
    inference(literals_permutation,[status(thm)],[c_0_268]) ).

cnf(c_0_269_0,axiom,
    $true,
    inference(literals_permutation,[status(thm)],[c_0_269]) ).

cnf(c_0_270_0,axiom,
    $true,
    inference(literals_permutation,[status(thm)],[c_0_270]) ).

cnf(c_0_271_0,axiom,
    $true,
    inference(literals_permutation,[status(thm)],[c_0_271]) ).

% CNF of non-axioms
% Start CNF derivation
fof(c_0_0_001,conjecture,
    ! [X1,X2] :
      ( ( topological_space(X1)
        & top_str(X1)
        & element(X2,powerset(the_carrier(X1))) )
     => ? [X3] :
          ( element(X3,powerset(powerset(the_carrier(X1))))
          & ! [X4] :
              ( element(X4,powerset(the_carrier(X1)))
             => ( in(X4,X3)
              <=> ? [X5] :
                    ( element(X5,powerset(the_carrier(X1)))
                    & X5 = X4
                    & closed_subset(X5,X1)
                    & subset(X2,X4) ) ) ) ) ),
    file('<stdin>',s3_subset_1__e1_40__pre_topc) ).

fof(c_0_1_002,negated_conjecture,
    ~ ! [X1,X2] :
        ( ( topological_space(X1)
          & top_str(X1)
          & element(X2,powerset(the_carrier(X1))) )
       => ? [X3] :
            ( element(X3,powerset(powerset(the_carrier(X1))))
            & ! [X4] :
                ( element(X4,powerset(the_carrier(X1)))
               => ( in(X4,X3)
                <=> ? [X5] :
                      ( element(X5,powerset(the_carrier(X1)))
                      & X5 = X4
                      & closed_subset(X5,X1)
                      & subset(X2,X4) ) ) ) ) ),
    inference(assume_negation,[status(cth)],[c_0_0]) ).

fof(c_0_2_003,negated_conjecture,
    ! [X8,X10] :
      ( topological_space(esk1_0)
      & top_str(esk1_0)
      & element(esk2_0,powerset(the_carrier(esk1_0)))
      & ( element(esk3_1(X8),powerset(the_carrier(esk1_0)))
        | ~ element(X8,powerset(powerset(the_carrier(esk1_0)))) )
      & ( ~ in(esk3_1(X8),X8)
        | ~ element(X10,powerset(the_carrier(esk1_0)))
        | X10 != esk3_1(X8)
        | ~ closed_subset(X10,esk1_0)
        | ~ subset(esk2_0,esk3_1(X8))
        | ~ element(X8,powerset(powerset(the_carrier(esk1_0)))) )
      & ( element(esk4_1(X8),powerset(the_carrier(esk1_0)))
        | in(esk3_1(X8),X8)
        | ~ element(X8,powerset(powerset(the_carrier(esk1_0)))) )
      & ( esk4_1(X8) = esk3_1(X8)
        | in(esk3_1(X8),X8)
        | ~ element(X8,powerset(powerset(the_carrier(esk1_0)))) )
      & ( closed_subset(esk4_1(X8),esk1_0)
        | in(esk3_1(X8),X8)
        | ~ element(X8,powerset(powerset(the_carrier(esk1_0)))) )
      & ( subset(esk2_0,esk3_1(X8))
        | in(esk3_1(X8),X8)
        | ~ element(X8,powerset(powerset(the_carrier(esk1_0)))) ) ),
    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_1])])])])]) ).

cnf(c_0_3_004,negated_conjecture,
    ( ~ element(X1,powerset(powerset(the_carrier(esk1_0))))
    | ~ subset(esk2_0,esk3_1(X1))
    | ~ closed_subset(X2,esk1_0)
    | X2 != esk3_1(X1)
    | ~ element(X2,powerset(the_carrier(esk1_0)))
    | ~ in(esk3_1(X1),X1) ),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_4_005,negated_conjecture,
    ( in(esk3_1(X1),X1)
    | element(esk4_1(X1),powerset(the_carrier(esk1_0)))
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_5_006,negated_conjecture,
    ( in(esk3_1(X1),X1)
    | closed_subset(esk4_1(X1),esk1_0)
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_6_007,negated_conjecture,
    ( in(esk3_1(X1),X1)
    | subset(esk2_0,esk3_1(X1))
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_7_008,negated_conjecture,
    ( element(esk3_1(X1),powerset(the_carrier(esk1_0)))
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_8_009,negated_conjecture,
    ( in(esk3_1(X1),X1)
    | esk4_1(X1) = esk3_1(X1)
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_9_010,negated_conjecture,
    element(esk2_0,powerset(the_carrier(esk1_0))),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_10_011,negated_conjecture,
    topological_space(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_11_012,negated_conjecture,
    top_str(esk1_0),
    inference(split_conjunct,[status(thm)],[c_0_2]) ).

cnf(c_0_12_013,negated_conjecture,
    ( ~ element(X1,powerset(powerset(the_carrier(esk1_0))))
    | ~ subset(esk2_0,esk3_1(X1))
    | ~ closed_subset(X2,esk1_0)
    | X2 != esk3_1(X1)
    | ~ element(X2,powerset(the_carrier(esk1_0)))
    | ~ in(esk3_1(X1),X1) ),
    c_0_3,
    [final] ).

cnf(c_0_13_014,negated_conjecture,
    ( in(esk3_1(X1),X1)
    | element(esk4_1(X1),powerset(the_carrier(esk1_0)))
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    c_0_4,
    [final] ).

cnf(c_0_14_015,negated_conjecture,
    ( in(esk3_1(X1),X1)
    | closed_subset(esk4_1(X1),esk1_0)
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    c_0_5,
    [final] ).

cnf(c_0_15_016,negated_conjecture,
    ( in(esk3_1(X1),X1)
    | subset(esk2_0,esk3_1(X1))
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    c_0_6,
    [final] ).

cnf(c_0_16_017,negated_conjecture,
    ( element(esk3_1(X1),powerset(the_carrier(esk1_0)))
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    c_0_7,
    [final] ).

cnf(c_0_17_018,negated_conjecture,
    ( in(esk3_1(X1),X1)
    | esk4_1(X1) = esk3_1(X1)
    | ~ element(X1,powerset(powerset(the_carrier(esk1_0)))) ),
    c_0_8,
    [final] ).

cnf(c_0_18_019,negated_conjecture,
    element(esk2_0,powerset(the_carrier(esk1_0))),
    c_0_9,
    [final] ).

cnf(c_0_19_020,negated_conjecture,
    topological_space(esk1_0),
    c_0_10,
    [final] ).

cnf(c_0_20_021,negated_conjecture,
    top_str(esk1_0),
    c_0_11,
    [final] ).

% End CNF derivation

%-------------------------------------------------------------
% Proof by iprover

cnf(c_109,plain,
    ( ~ element(X0,X1)
    | in(X0,X1)
    | empty(X1) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_218_0) ).

cnf(c_442,plain,
    ( ~ element(X0,X1)
    | in(X0,X1)
    | empty(X1) ),
    inference(copy,[status(esa)],[c_109]) ).

cnf(c_10133,plain,
    ( empty(powerset(X0))
    | ~ element(X1,powerset(X0))
    | in(X1,powerset(X0)) ),
    inference(instantiation,[status(thm)],[c_442]) ).

cnf(c_28902,plain,
    ( empty(powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(the_carrier(sk2_esk1_0)))
    | in(X0,powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_10133]) ).

cnf(c_73711,plain,
    ( empty(powerset(the_carrier(sk2_esk1_0)))
    | ~ element(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | in(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_28902]) ).

cnf(c_292999,plain,
    ( empty(powerset(the_carrier(sk2_esk1_0)))
    | ~ element(sk2_esk3_1(sk1_esk5_2(X0,X1)),powerset(the_carrier(sk2_esk1_0)))
    | in(sk2_esk3_1(sk1_esk5_2(X0,X1)),powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_73711]) ).

cnf(c_388477,plain,
    ( empty(powerset(the_carrier(sk2_esk1_0)))
    | ~ element(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),powerset(the_carrier(sk2_esk1_0)))
    | in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_292999]) ).

cnf(c_169,plain,
    ( in(X0,powerset(the_carrier(X1)))
    | ~ element(X2,powerset(the_carrier(X1)))
    | ~ top_str(X1)
    | ~ topological_space(X1)
    | ~ in(X0,sk1_esk5_2(X1,X2)) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_197_4) ).

cnf(c_502,plain,
    ( in(X0,powerset(the_carrier(X1)))
    | ~ element(X2,powerset(the_carrier(X1)))
    | ~ top_str(X1)
    | ~ topological_space(X1)
    | ~ in(X0,sk1_esk5_2(X1,X2)) ),
    inference(copy,[status(esa)],[c_169]) ).

cnf(c_10164,plain,
    ( ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | in(X0,powerset(the_carrier(sk2_esk1_0)))
    | ~ in(X0,sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_502]) ).

cnf(c_294696,plain,
    ( ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | in(sk1_esk8_2(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(the_carrier(sk2_esk1_0))),powerset(the_carrier(sk2_esk1_0)))
    | ~ in(sk1_esk8_2(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(the_carrier(sk2_esk1_0))),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_10164]) ).

cnf(c_164,plain,
    ( subset(X0,X1)
    | ~ element(X0,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X1,sk1_esk5_2(X2,X0)) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_198_4) ).

cnf(c_497,plain,
    ( subset(X0,X1)
    | ~ element(X0,powerset(the_carrier(X2)))
    | ~ top_str(X2)
    | ~ topological_space(X2)
    | ~ in(X1,sk1_esk5_2(X2,X0)) ),
    inference(copy,[status(esa)],[c_164]) ).

cnf(c_10408,plain,
    ( subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(sk2_esk2_0,powerset(the_carrier(X1)))
    | ~ top_str(X1)
    | ~ in(sk2_esk3_1(X0),sk1_esk5_2(X1,sk2_esk2_0))
    | ~ topological_space(X1) ),
    inference(instantiation,[status(thm)],[c_497]) ).

cnf(c_292670,plain,
    ( subset(sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)))
    | ~ element(sk2_esk2_0,powerset(the_carrier(X0)))
    | ~ top_str(X0)
    | ~ in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(X0,sk2_esk2_0))
    | ~ topological_space(X0) ),
    inference(instantiation,[status(thm)],[c_10408]) ).

cnf(c_292672,plain,
    ( subset(sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)))
    | ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_292670]) ).

cnf(c_185,plain,
    ( ~ in(X0,powerset(the_carrier(X1)))
    | in(X0,sk1_esk5_2(X1,X2))
    | ~ element(X2,powerset(the_carrier(X1)))
    | ~ top_str(X1)
    | ~ topological_space(X1)
    | ~ subset(X2,X0)
    | ~ closed_subset(X3,X1)
    | X3 != X0
    | ~ element(X3,powerset(the_carrier(X1))) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_194_7) ).

cnf(c_518,plain,
    ( ~ in(X0,powerset(the_carrier(X1)))
    | in(X0,sk1_esk5_2(X1,X2))
    | ~ element(X2,powerset(the_carrier(X1)))
    | ~ top_str(X1)
    | ~ topological_space(X1)
    | ~ subset(X2,X0)
    | ~ closed_subset(X3,X1)
    | X3 != X0
    | ~ element(X3,powerset(the_carrier(X1))) ),
    inference(copy,[status(esa)],[c_185]) ).

cnf(c_28801,plain,
    ( ~ subset(X0,X1)
    | ~ element(sk2_esk4_1(X2),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(X1,powerset(the_carrier(sk2_esk1_0)))
    | in(X1,sk1_esk5_2(sk2_esk1_0,X0))
    | ~ topological_space(sk2_esk1_0)
    | ~ closed_subset(sk2_esk4_1(X2),sk2_esk1_0)
    | sk2_esk4_1(X2) != X1 ),
    inference(instantiation,[status(thm)],[c_518]) ).

cnf(c_154554,plain,
    ( ~ subset(X0,sk2_esk3_1(X1))
    | ~ element(sk2_esk4_1(X1),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(sk2_esk3_1(X1),powerset(the_carrier(sk2_esk1_0)))
    | in(sk2_esk3_1(X1),sk1_esk5_2(sk2_esk1_0,X0))
    | ~ topological_space(sk2_esk1_0)
    | ~ closed_subset(sk2_esk4_1(X1),sk2_esk1_0)
    | sk2_esk4_1(X1) != sk2_esk3_1(X1) ),
    inference(instantiation,[status(thm)],[c_28801]) ).

cnf(c_155224,plain,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ element(sk2_esk4_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | in(sk2_esk3_1(X0),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0)
    | ~ closed_subset(sk2_esk4_1(X0),sk2_esk1_0)
    | sk2_esk4_1(X0) != sk2_esk3_1(X0) ),
    inference(instantiation,[status(thm)],[c_154554]) ).

cnf(c_261421,plain,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)))
    | ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ element(sk2_esk4_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),powerset(the_carrier(sk2_esk1_0)))
    | in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0)
    | ~ closed_subset(sk2_esk4_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk2_esk1_0)
    | sk2_esk4_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) != sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) ),
    inference(instantiation,[status(thm)],[c_155224]) ).

cnf(c_198,negated_conjecture,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ element(X1,powerset(the_carrier(sk2_esk1_0)))
    | ~ in(sk2_esk3_1(X0),X0)
    | ~ closed_subset(X1,sk2_esk1_0)
    | X1 != sk2_esk3_1(X0) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_12) ).

cnf(c_270,negated_conjecture,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ element(X1,powerset(the_carrier(sk2_esk1_0)))
    | ~ in(sk2_esk3_1(X0),X0)
    | ~ closed_subset(X1,sk2_esk1_0)
    | X1 != sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_198]) ).

cnf(c_306,negated_conjecture,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ element(X1,powerset(the_carrier(sk2_esk1_0)))
    | ~ in(sk2_esk3_1(X0),X0)
    | ~ closed_subset(X1,sk2_esk1_0)
    | X1 != sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_270]) ).

cnf(c_323,negated_conjecture,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ element(X1,powerset(the_carrier(sk2_esk1_0)))
    | ~ in(sk2_esk3_1(X0),X0)
    | ~ closed_subset(X1,sk2_esk1_0)
    | X1 != sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_306]) ).

cnf(c_324,negated_conjecture,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ element(X1,powerset(the_carrier(sk2_esk1_0)))
    | ~ in(sk2_esk3_1(X0),X0)
    | ~ closed_subset(X1,sk2_esk1_0)
    | X1 != sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_323]) ).

cnf(c_531,negated_conjecture,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ element(X1,powerset(the_carrier(sk2_esk1_0)))
    | ~ in(sk2_esk3_1(X0),X0)
    | ~ closed_subset(X1,sk2_esk1_0)
    | X1 != sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_324]) ).

cnf(c_208234,plain,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ in(sk2_esk3_1(X0),X0)
    | ~ closed_subset(sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))),sk2_esk1_0)
    | sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))) != sk2_esk3_1(X0) ),
    inference(instantiation,[status(thm)],[c_531]) ).

cnf(c_261404,plain,
    ( ~ subset(sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)))
    | ~ element(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ element(sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))),powerset(the_carrier(sk2_esk1_0)))
    | ~ in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ closed_subset(sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))),sk2_esk1_0)
    | sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))) != sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) ),
    inference(instantiation,[status(thm)],[c_208234]) ).

cnf(c_202,negated_conjecture,
    ( element(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0)))) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_16) ).

cnf(c_278,negated_conjecture,
    ( element(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0)))) ),
    inference(copy,[status(esa)],[c_202]) ).

cnf(c_310,negated_conjecture,
    ( element(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0)))) ),
    inference(copy,[status(esa)],[c_278]) ).

cnf(c_319,negated_conjecture,
    ( element(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0)))) ),
    inference(copy,[status(esa)],[c_310]) ).

cnf(c_328,negated_conjecture,
    ( element(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0)))) ),
    inference(copy,[status(esa)],[c_319]) ).

cnf(c_535,negated_conjecture,
    ( element(sk2_esk3_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0)))) ),
    inference(copy,[status(esa)],[c_328]) ).

cnf(c_74931,plain,
    ( ~ element(sk1_esk5_2(X0,X1),powerset(powerset(the_carrier(sk2_esk1_0))))
    | element(sk2_esk3_1(sk1_esk5_2(X0,X1)),powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_535]) ).

cnf(c_208180,plain,
    ( ~ element(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(powerset(the_carrier(sk2_esk1_0))))
    | element(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_74931]) ).

cnf(c_160,plain,
    ( element(X0,powerset(X1))
    | in(sk1_esk8_2(X0,X1),X0) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_200_1) ).

cnf(c_493,plain,
    ( element(X0,powerset(X1))
    | in(sk1_esk8_2(X0,X1),X0) ),
    inference(copy,[status(esa)],[c_160]) ).

cnf(c_10137,plain,
    ( element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk1_esk8_2(X0,powerset(the_carrier(sk2_esk1_0))),X0) ),
    inference(instantiation,[status(thm)],[c_493]) ).

cnf(c_28889,plain,
    ( element(sk1_esk5_2(X0,X1),powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk1_esk8_2(sk1_esk5_2(X0,X1),powerset(the_carrier(sk2_esk1_0))),sk1_esk5_2(X0,X1)) ),
    inference(instantiation,[status(thm)],[c_10137]) ).

cnf(c_114425,plain,
    ( element(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk1_esk8_2(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(the_carrier(sk2_esk1_0))),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) ),
    inference(instantiation,[status(thm)],[c_28889]) ).

cnf(c_162,plain,
    ( element(X0,powerset(X1))
    | ~ in(sk1_esk8_2(X0,X1),X1) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_199_1) ).

cnf(c_495,plain,
    ( element(X0,powerset(X1))
    | ~ in(sk1_esk8_2(X0,X1),X1) ),
    inference(copy,[status(esa)],[c_162]) ).

cnf(c_10140,plain,
    ( element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ in(sk1_esk8_2(X0,powerset(the_carrier(sk2_esk1_0))),powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_495]) ).

cnf(c_28890,plain,
    ( element(sk1_esk5_2(X0,X1),powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ in(sk1_esk8_2(sk1_esk5_2(X0,X1),powerset(the_carrier(sk2_esk1_0))),powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_10140]) ).

cnf(c_114427,plain,
    ( element(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(powerset(the_carrier(sk2_esk1_0))))
    | ~ in(sk1_esk8_2(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(the_carrier(sk2_esk1_0))),powerset(the_carrier(sk2_esk1_0))) ),
    inference(instantiation,[status(thm)],[c_28890]) ).

cnf(c_203,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | sk2_esk4_1(X0) = sk2_esk3_1(X0) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_17) ).

cnf(c_280,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | sk2_esk4_1(X0) = sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_203]) ).

cnf(c_311,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | sk2_esk4_1(X0) = sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_280]) ).

cnf(c_318,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | sk2_esk4_1(X0) = sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_311]) ).

cnf(c_329,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | sk2_esk4_1(X0) = sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_318]) ).

cnf(c_536,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | sk2_esk4_1(X0) = sk2_esk3_1(X0) ),
    inference(copy,[status(esa)],[c_329]) ).

cnf(c_10397,plain,
    ( ~ element(sk1_esk5_2(X0,X1),powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(sk1_esk5_2(X0,X1)),sk1_esk5_2(X0,X1))
    | sk2_esk4_1(sk1_esk5_2(X0,X1)) = sk2_esk3_1(sk1_esk5_2(X0,X1)) ),
    inference(instantiation,[status(thm)],[c_536]) ).

cnf(c_73930,plain,
    ( ~ element(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | sk2_esk4_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) = sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) ),
    inference(instantiation,[status(thm)],[c_10397]) ).

cnf(c_201,negated_conjecture,
    ( subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_15) ).

cnf(c_276,negated_conjecture,
    ( subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_201]) ).

cnf(c_309,negated_conjecture,
    ( subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_276]) ).

cnf(c_320,negated_conjecture,
    ( subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_309]) ).

cnf(c_327,negated_conjecture,
    ( subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_320]) ).

cnf(c_534,negated_conjecture,
    ( subset(sk2_esk2_0,sk2_esk3_1(X0))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_327]) ).

cnf(c_10395,plain,
    ( subset(sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(X0,X1)))
    | ~ element(sk1_esk5_2(X0,X1),powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(sk1_esk5_2(X0,X1)),sk1_esk5_2(X0,X1)) ),
    inference(instantiation,[status(thm)],[c_534]) ).

cnf(c_73912,plain,
    ( subset(sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)))
    | ~ element(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) ),
    inference(instantiation,[status(thm)],[c_10395]) ).

cnf(c_200,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | closed_subset(sk2_esk4_1(X0),sk2_esk1_0) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_14) ).

cnf(c_274,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | closed_subset(sk2_esk4_1(X0),sk2_esk1_0) ),
    inference(copy,[status(esa)],[c_200]) ).

cnf(c_308,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | closed_subset(sk2_esk4_1(X0),sk2_esk1_0) ),
    inference(copy,[status(esa)],[c_274]) ).

cnf(c_321,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | closed_subset(sk2_esk4_1(X0),sk2_esk1_0) ),
    inference(copy,[status(esa)],[c_308]) ).

cnf(c_326,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | closed_subset(sk2_esk4_1(X0),sk2_esk1_0) ),
    inference(copy,[status(esa)],[c_321]) ).

cnf(c_533,negated_conjecture,
    ( ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0)
    | closed_subset(sk2_esk4_1(X0),sk2_esk1_0) ),
    inference(copy,[status(esa)],[c_326]) ).

cnf(c_10393,plain,
    ( ~ element(sk1_esk5_2(X0,X1),powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(sk1_esk5_2(X0,X1)),sk1_esk5_2(X0,X1))
    | closed_subset(sk2_esk4_1(sk1_esk5_2(X0,X1)),sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_533]) ).

cnf(c_73894,plain,
    ( ~ element(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | closed_subset(sk2_esk4_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_10393]) ).

cnf(c_199,negated_conjecture,
    ( element(sk2_esk4_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_13) ).

cnf(c_272,negated_conjecture,
    ( element(sk2_esk4_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_199]) ).

cnf(c_307,negated_conjecture,
    ( element(sk2_esk4_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_272]) ).

cnf(c_322,negated_conjecture,
    ( element(sk2_esk4_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_307]) ).

cnf(c_325,negated_conjecture,
    ( element(sk2_esk4_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_322]) ).

cnf(c_532,negated_conjecture,
    ( element(sk2_esk4_1(X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(X0,powerset(powerset(the_carrier(sk2_esk1_0))))
    | in(sk2_esk3_1(X0),X0) ),
    inference(copy,[status(esa)],[c_325]) ).

cnf(c_10389,plain,
    ( ~ element(sk1_esk5_2(X0,X1),powerset(powerset(the_carrier(sk2_esk1_0))))
    | element(sk2_esk4_1(sk1_esk5_2(X0,X1)),powerset(the_carrier(sk2_esk1_0)))
    | in(sk2_esk3_1(sk1_esk5_2(X0,X1)),sk1_esk5_2(X0,X1)) ),
    inference(instantiation,[status(thm)],[c_532]) ).

cnf(c_73856,plain,
    ( ~ element(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0),powerset(powerset(the_carrier(sk2_esk1_0))))
    | element(sk2_esk4_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),powerset(the_carrier(sk2_esk1_0)))
    | in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) ),
    inference(instantiation,[status(thm)],[c_10389]) ).

cnf(c_174,plain,
    ( sk1_esk6_3(X0,X1,X2) = X2
    | ~ element(X1,powerset(the_carrier(X0)))
    | ~ top_str(X0)
    | ~ topological_space(X0)
    | ~ in(X2,sk1_esk5_2(X0,X1)) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_196_4) ).

cnf(c_507,plain,
    ( sk1_esk6_3(X0,X1,X2) = X2
    | ~ element(X1,powerset(the_carrier(X0)))
    | ~ top_str(X0)
    | ~ topological_space(X0)
    | ~ in(X2,sk1_esk5_2(X0,X1)) ),
    inference(copy,[status(esa)],[c_174]) ).

cnf(c_10199,plain,
    ( ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(X0,sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0)
    | sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,X0) = X0 ),
    inference(instantiation,[status(thm)],[c_507]) ).

cnf(c_10407,plain,
    ( ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0)
    | sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))) = sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)) ),
    inference(instantiation,[status(thm)],[c_10199]) ).

cnf(c_193,plain,
    ( element(sk1_esk6_3(X0,X1,X2),powerset(the_carrier(X0)))
    | ~ element(X1,powerset(the_carrier(X0)))
    | ~ top_str(X0)
    | ~ topological_space(X0)
    | ~ in(X2,sk1_esk5_2(X0,X1)) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_193_4) ).

cnf(c_526,plain,
    ( element(sk1_esk6_3(X0,X1,X2),powerset(the_carrier(X0)))
    | ~ element(X1,powerset(the_carrier(X0)))
    | ~ top_str(X0)
    | ~ topological_space(X0)
    | ~ in(X2,sk1_esk5_2(X0,X1)) ),
    inference(copy,[status(esa)],[c_193]) ).

cnf(c_10263,plain,
    ( element(sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,X0),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(X0,sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_526]) ).

cnf(c_10405,plain,
    ( element(sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))),powerset(the_carrier(sk2_esk1_0)))
    | ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_10263]) ).

cnf(c_179,plain,
    ( closed_subset(sk1_esk6_3(X0,X1,X2),X0)
    | ~ element(X1,powerset(the_carrier(X0)))
    | ~ top_str(X0)
    | ~ topological_space(X0)
    | ~ in(X2,sk1_esk5_2(X0,X1)) ),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_195_4) ).

cnf(c_512,plain,
    ( closed_subset(sk1_esk6_3(X0,X1,X2),X0)
    | ~ element(X1,powerset(the_carrier(X0)))
    | ~ top_str(X0)
    | ~ topological_space(X0)
    | ~ in(X2,sk1_esk5_2(X0,X1)) ),
    inference(copy,[status(esa)],[c_179]) ).

cnf(c_10233,plain,
    ( ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(X0,sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0)
    | closed_subset(sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,X0),sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_512]) ).

cnf(c_10404,plain,
    ( ~ element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0)))
    | ~ top_str(sk2_esk1_0)
    | ~ in(sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0)),sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))
    | ~ topological_space(sk2_esk1_0)
    | closed_subset(sk1_esk6_3(sk2_esk1_0,sk2_esk2_0,sk2_esk3_1(sk1_esk5_2(sk2_esk1_0,sk2_esk2_0))),sk2_esk1_0) ),
    inference(instantiation,[status(thm)],[c_10233]) ).

cnf(c_18,plain,
    ~ empty(powerset(X0)),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_243_0) ).

cnf(c_351,plain,
    ~ empty(powerset(X0)),
    inference(copy,[status(esa)],[c_18]) ).

cnf(c_10335,plain,
    ~ empty(powerset(the_carrier(sk2_esk1_0))),
    inference(instantiation,[status(thm)],[c_351]) ).

cnf(c_204,negated_conjecture,
    element(sk2_esk2_0,powerset(the_carrier(sk2_esk1_0))),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_18) ).

cnf(c_205,negated_conjecture,
    topological_space(sk2_esk1_0),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_19) ).

cnf(c_206,negated_conjecture,
    top_str(sk2_esk1_0),
    file('/export/starexec/sandbox/tmp/iprover_modulo_818038.p',c_0_20) ).

cnf(contradiction,plain,
    $false,
    inference(minisat,[status(thm)],[c_388477,c_294696,c_292672,c_261421,c_261404,c_208180,c_114425,c_114427,c_73930,c_73912,c_73894,c_73856,c_10407,c_10405,c_10404,c_10335,c_204,c_205,c_206]) ).


%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.04/0.12  % Problem  : SEU315+1 : TPTP v8.1.0. Released v3.3.0.
% 0.04/0.13  % Command  : iprover_modulo %s %d
% 0.12/0.34  % Computer : n009.cluster.edu
% 0.12/0.34  % Model    : x86_64 x86_64
% 0.12/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.34  % Memory   : 8042.1875MB
% 0.12/0.34  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.12/0.34  % CPULimit : 300
% 0.12/0.34  % WCLimit  : 600
% 0.12/0.34  % DateTime : Sun Jun 19 05:26:37 EDT 2022
% 0.12/0.34  % CPUTime  : 
% 0.12/0.35  % Running in mono-core mode
% 0.19/0.41  % Orienting using strategy Equiv(ClausalAll)
% 0.19/0.41  % FOF problem with conjecture
% 0.19/0.41  % Executing iprover_moduloopt --modulo true --schedule none --sub_typing false --res_to_prop_solver none --res_prop_simpl_given false --res_lit_sel kbo_max --large_theory_mode false --res_time_limit 1000 --res_orphan_elimination false --prep_sem_filter none --prep_unflatten false --comb_res_mult 1000 --comb_inst_mult 300 --clausifier .//eprover --clausifier_options "--tstp-format  " --proof_out_file /export/starexec/sandbox/tmp/iprover_proof_607fcd.s --tptp_safe_out true --time_out_real 150 /export/starexec/sandbox/tmp/iprover_modulo_818038.p | tee /export/starexec/sandbox/tmp/iprover_modulo_out_b3ddbd | grep -v "SZS"
% 0.19/0.44  
% 0.19/0.44  %---------------- iProver v2.5 (CASC-J8 2016) ----------------%
% 0.19/0.44  
% 0.19/0.44  % 
% 0.19/0.44  % ------  iProver source info 
% 0.19/0.44  
% 0.19/0.44  % git: sha1: 57accf6c58032223c7708532cf852a99fa48c1b3
% 0.19/0.44  % git: non_committed_changes: true
% 0.19/0.44  % git: last_make_outside_of_git: true
% 0.19/0.44  
% 0.19/0.44  % 
% 0.19/0.44  % ------ Input Options
% 0.19/0.44  
% 0.19/0.44  % --out_options                         all
% 0.19/0.44  % --tptp_safe_out                       true
% 0.19/0.44  % --problem_path                        ""
% 0.19/0.44  % --include_path                        ""
% 0.19/0.44  % --clausifier                          .//eprover
% 0.19/0.44  % --clausifier_options                  --tstp-format  
% 0.19/0.44  % --stdin                               false
% 0.19/0.44  % --dbg_backtrace                       false
% 0.19/0.44  % --dbg_dump_prop_clauses               false
% 0.19/0.44  % --dbg_dump_prop_clauses_file          -
% 0.19/0.44  % --dbg_out_stat                        false
% 0.19/0.44  
% 0.19/0.44  % ------ General Options
% 0.19/0.44  
% 0.19/0.44  % --fof                                 false
% 0.19/0.44  % --time_out_real                       150.
% 0.19/0.44  % --time_out_prep_mult                  0.2
% 0.19/0.44  % --time_out_virtual                    -1.
% 0.19/0.44  % --schedule                            none
% 0.19/0.44  % --ground_splitting                    input
% 0.19/0.44  % --splitting_nvd                       16
% 0.19/0.44  % --non_eq_to_eq                        false
% 0.19/0.44  % --prep_gs_sim                         true
% 0.19/0.44  % --prep_unflatten                      false
% 0.19/0.44  % --prep_res_sim                        true
% 0.19/0.44  % --prep_upred                          true
% 0.19/0.44  % --res_sim_input                       true
% 0.19/0.44  % --clause_weak_htbl                    true
% 0.19/0.44  % --gc_record_bc_elim                   false
% 0.19/0.44  % --symbol_type_check                   false
% 0.19/0.44  % --clausify_out                        false
% 0.19/0.44  % --large_theory_mode                   false
% 0.19/0.44  % --prep_sem_filter                     none
% 0.19/0.44  % --prep_sem_filter_out                 false
% 0.19/0.44  % --preprocessed_out                    false
% 0.19/0.44  % --sub_typing                          false
% 0.19/0.44  % --brand_transform                     false
% 0.19/0.44  % --pure_diseq_elim                     true
% 0.19/0.44  % --min_unsat_core                      false
% 0.19/0.44  % --pred_elim                           true
% 0.19/0.44  % --add_important_lit                   false
% 0.19/0.44  % --soft_assumptions                    false
% 0.19/0.44  % --reset_solvers                       false
% 0.19/0.44  % --bc_imp_inh                          []
% 0.19/0.44  % --conj_cone_tolerance                 1.5
% 0.19/0.44  % --prolific_symb_bound                 500
% 0.19/0.44  % --lt_threshold                        2000
% 0.19/0.44  
% 0.19/0.44  % ------ SAT Options
% 0.19/0.44  
% 0.19/0.44  % --sat_mode                            false
% 0.19/0.44  % --sat_fm_restart_options              ""
% 0.19/0.44  % --sat_gr_def                          false
% 0.19/0.44  % --sat_epr_types                       true
% 0.19/0.44  % --sat_non_cyclic_types                false
% 0.19/0.44  % --sat_finite_models                   false
% 0.19/0.44  % --sat_fm_lemmas                       false
% 0.19/0.44  % --sat_fm_prep                         false
% 0.19/0.44  % --sat_fm_uc_incr                      true
% 0.19/0.44  % --sat_out_model                       small
% 0.19/0.44  % --sat_out_clauses                     false
% 0.19/0.44  
% 0.19/0.44  % ------ QBF Options
% 0.19/0.44  
% 0.19/0.44  % --qbf_mode                            false
% 0.19/0.44  % --qbf_elim_univ                       true
% 0.19/0.44  % --qbf_sk_in                           true
% 0.19/0.44  % --qbf_pred_elim                       true
% 0.19/0.44  % --qbf_split                           32
% 0.19/0.44  
% 0.19/0.44  % ------ BMC1 Options
% 0.19/0.44  
% 0.19/0.44  % --bmc1_incremental                    false
% 0.19/0.44  % --bmc1_axioms                         reachable_all
% 0.19/0.44  % --bmc1_min_bound                      0
% 0.19/0.44  % --bmc1_max_bound                      -1
% 0.19/0.44  % --bmc1_max_bound_default              -1
% 0.19/0.44  % --bmc1_symbol_reachability            true
% 0.19/0.44  % --bmc1_property_lemmas                false
% 0.19/0.44  % --bmc1_k_induction                    false
% 0.19/0.44  % --bmc1_non_equiv_states               false
% 0.19/0.44  % --bmc1_deadlock                       false
% 0.19/0.44  % --bmc1_ucm                            false
% 0.19/0.44  % --bmc1_add_unsat_core                 none
% 0.19/0.44  % --bmc1_unsat_core_children            false
% 0.19/0.44  % --bmc1_unsat_core_extrapolate_axioms  false
% 0.19/0.44  % --bmc1_out_stat                       full
% 0.19/0.44  % --bmc1_ground_init                    false
% 0.19/0.44  % --bmc1_pre_inst_next_state            false
% 0.19/0.44  % --bmc1_pre_inst_state                 false
% 0.19/0.44  % --bmc1_pre_inst_reach_state           false
% 0.19/0.44  % --bmc1_out_unsat_core                 false
% 0.19/0.44  % --bmc1_aig_witness_out                false
% 0.19/0.44  % --bmc1_verbose                        false
% 0.19/0.44  % --bmc1_dump_clauses_tptp              false
% 0.19/0.45  % --bmc1_dump_unsat_core_tptp           false
% 0.19/0.45  % --bmc1_dump_file                      -
% 0.19/0.45  % --bmc1_ucm_expand_uc_limit            128
% 0.19/0.45  % --bmc1_ucm_n_expand_iterations        6
% 0.19/0.45  % --bmc1_ucm_extend_mode                1
% 0.19/0.45  % --bmc1_ucm_init_mode                  2
% 0.19/0.45  % --bmc1_ucm_cone_mode                  none
% 0.19/0.45  % --bmc1_ucm_reduced_relation_type      0
% 0.19/0.45  % --bmc1_ucm_relax_model                4
% 0.19/0.45  % --bmc1_ucm_full_tr_after_sat          true
% 0.19/0.45  % --bmc1_ucm_expand_neg_assumptions     false
% 0.19/0.45  % --bmc1_ucm_layered_model              none
% 0.19/0.45  % --bmc1_ucm_max_lemma_size             10
% 0.19/0.45  
% 0.19/0.45  % ------ AIG Options
% 0.19/0.45  
% 0.19/0.45  % --aig_mode                            false
% 0.19/0.45  
% 0.19/0.45  % ------ Instantiation Options
% 0.19/0.45  
% 0.19/0.45  % --instantiation_flag                  true
% 0.19/0.45  % --inst_lit_sel                        [+prop;+sign;+ground;-num_var;-num_symb]
% 0.19/0.45  % --inst_solver_per_active              750
% 0.19/0.45  % --inst_solver_calls_frac              0.5
% 0.19/0.45  % --inst_passive_queue_type             priority_queues
% 0.19/0.45  % --inst_passive_queues                 [[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]
% 0.19/0.45  % --inst_passive_queues_freq            [25;2]
% 0.19/0.45  % --inst_dismatching                    true
% 0.19/0.45  % --inst_eager_unprocessed_to_passive   true
% 0.19/0.45  % --inst_prop_sim_given                 true
% 0.19/0.45  % --inst_prop_sim_new                   false
% 0.19/0.45  % --inst_orphan_elimination             true
% 0.19/0.45  % --inst_learning_loop_flag             true
% 0.19/0.45  % --inst_learning_start                 3000
% 0.19/0.45  % --inst_learning_factor                2
% 0.19/0.45  % --inst_start_prop_sim_after_learn     3
% 0.19/0.45  % --inst_sel_renew                      solver
% 0.19/0.45  % --inst_lit_activity_flag              true
% 0.19/0.45  % --inst_out_proof                      true
% 0.19/0.45  
% 0.19/0.45  % ------ Resolution Options
% 0.19/0.45  
% 0.19/0.45  % --resolution_flag                     true
% 0.19/0.45  % --res_lit_sel                         kbo_max
% 0.19/0.45  % --res_to_prop_solver                  none
% 0.19/0.45  % --res_prop_simpl_new                  false
% 0.19/0.45  % --res_prop_simpl_given                false
% 0.19/0.45  % --res_passive_queue_type              priority_queues
% 0.19/0.45  % --res_passive_queues                  [[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]
% 0.19/0.45  % --res_passive_queues_freq             [15;5]
% 0.19/0.45  % --res_forward_subs                    full
% 0.19/0.45  % --res_backward_subs                   full
% 0.19/0.45  % --res_forward_subs_resolution         true
% 0.19/0.45  % --res_backward_subs_resolution        true
% 0.19/0.45  % --res_orphan_elimination              false
% 0.19/0.45  % --res_time_limit                      1000.
% 0.19/0.45  % --res_out_proof                       true
% 0.19/0.45  % --proof_out_file                      /export/starexec/sandbox/tmp/iprover_proof_607fcd.s
% 0.19/0.45  % --modulo                              true
% 0.19/0.45  
% 0.19/0.45  % ------ Combination Options
% 0.19/0.45  
% 0.19/0.45  % --comb_res_mult                       1000
% 0.19/0.45  % --comb_inst_mult                      300
% 0.19/0.45  % ------ 
% 0.19/0.45  
% 0.19/0.45  % ------ Parsing...% successful
% 0.19/0.45  
% 0.19/0.45  % ------ Preprocessing... gs_s  sp: 0 0s  gs_e  snvd_s sp: 0 0s snvd_e  pe_s  pe_e  snvd_s sp: 0 0s snvd_e % 
% 0.19/0.45  
% 0.19/0.45  % ------ Proving...
% 0.19/0.45  % ------ Problem Properties 
% 0.19/0.45  
% 0.19/0.45  % 
% 0.19/0.45  % EPR                                   false
% 0.19/0.45  % Horn                                  false
% 0.19/0.45  % Has equality                          true
% 0.19/0.45  
% 0.19/0.45  % % ------ Input Options Time Limit: Unbounded
% 0.19/0.45  
% 0.19/0.45  
% 0.19/0.45  % % ------ Current options:
% 0.19/0.45  
% 0.19/0.45  % ------ Input Options
% 0.19/0.45  
% 0.19/0.45  % --out_options                         all
% 0.19/0.45  % --tptp_safe_out                       true
% 0.19/0.45  % --problem_path                        ""
% 0.19/0.45  % --include_path                        ""
% 0.19/0.45  % --clausifier                          .//eprover
% 0.19/0.45  % --clausifier_options                  --tstp-format  
% 0.19/0.45  % --stdin                               false
% 0.19/0.45  % --dbg_backtrace                       false
% 0.19/0.45  % --dbg_dump_prop_clauses               false
% 0.19/0.45  % --dbg_dump_prop_clauses_file          -
% 0.19/0.45  % --dbg_out_stat                        false
% 0.19/0.45  
% 0.19/0.45  % ------ General Options
% 0.19/0.45  
% 0.19/0.45  % --fof                                 false
% 0.19/0.45  % --time_out_real                       150.
% 0.19/0.45  % --time_out_prep_mult                  0.2
% 0.19/0.45  % --time_out_virtual                    -1.
% 0.19/0.45  % --schedule                            none
% 0.19/0.45  % --ground_splitting                    input
% 0.19/0.45  % --splitting_nvd                       16
% 0.19/0.45  % --non_eq_to_eq                        false
% 0.19/0.45  % --prep_gs_sim                         true
% 0.19/0.45  % --prep_unflatten                      false
% 0.19/0.45  % --prep_res_sim                        true
% 0.19/0.45  % --prep_upred                          true
% 0.19/0.45  % --res_sim_input                       true
% 0.19/0.45  % --clause_weak_htbl                    true
% 0.19/0.45  % --gc_record_bc_elim                   false
% 0.19/0.45  % --symbol_type_check                   false
% 0.19/0.45  % --clausify_out                        false
% 0.19/0.45  % --large_theory_mode                   false
% 0.19/0.45  % --prep_sem_filter                     none
% 0.19/0.45  % --prep_sem_filter_out                 false
% 0.19/0.45  % --preprocessed_out                    false
% 0.19/0.45  % --sub_typing                          false
% 0.19/0.45  % --brand_transform                     false
% 0.19/0.45  % --pure_diseq_elim                     true
% 0.19/0.45  % --min_unsat_core                      false
% 0.19/0.45  % --pred_elim                           true
% 0.19/0.45  % --add_important_lit                   false
% 0.19/0.45  % --soft_assumptions                    false
% 0.19/0.45  % --reset_solvers                       false
% 0.19/0.45  % --bc_imp_inh                          []
% 0.19/0.45  % --conj_cone_tolerance                 1.5
% 0.19/0.45  % --prolific_symb_bound                 500
% 0.19/0.45  % --lt_threshold                        2000
% 0.19/0.45  
% 0.19/0.45  % ------ SAT Options
% 0.19/0.45  
% 0.19/0.45  % --sat_mode                            false
% 0.19/0.45  % --sat_fm_restart_options              ""
% 0.19/0.45  % --sat_gr_def                          false
% 0.19/0.45  % --sat_epr_types                       true
% 0.19/0.45  % --sat_non_cyclic_types                false
% 0.19/0.45  % --sat_finite_models                   false
% 0.19/0.45  % --sat_fm_lemmas                       false
% 0.19/0.45  % --sat_fm_prep                         false
% 0.19/0.45  % --sat_fm_uc_incr                      true
% 0.19/0.45  % --sat_out_model                       small
% 0.19/0.45  % --sat_out_clauses                     false
% 0.19/0.45  
% 0.19/0.45  % ------ QBF Options
% 0.19/0.45  
% 0.19/0.45  % --qbf_mode                            false
% 0.19/0.45  % --qbf_elim_univ                       true
% 0.19/0.45  % --qbf_sk_in                           true
% 0.19/0.45  % --qbf_pred_elim                       true
% 0.19/0.45  % --qbf_split                           32
% 0.19/0.45  
% 0.19/0.45  % ------ BMC1 Options
% 0.19/0.45  
% 0.19/0.45  % --bmc1_incremental                    false
% 0.19/0.45  % --bmc1_axioms                         reachable_all
% 0.19/0.45  % --bmc1_min_bound                      0
% 0.19/0.45  % --bmc1_max_bound                      -1
% 0.19/0.45  % --bmc1_max_bound_default              -1
% 0.19/0.45  % --bmc1_symbol_reachability            true
% 0.19/0.45  % --bmc1_property_lemmas                false
% 0.19/0.45  % --bmc1_k_induction                    false
% 0.19/0.45  % --bmc1_non_equiv_states               false
% 0.19/0.45  % --bmc1_deadlock                       false
% 0.19/0.45  % --bmc1_ucm                            false
% 0.19/0.45  % --bmc1_add_unsat_core                 none
% 0.19/0.45  % --bmc1_unsat_core_children            false
% 0.19/0.45  % --bmc1_unsat_core_extrapolate_axioms  false
% 0.19/0.45  % --bmc1_out_stat                       full
% 0.19/0.45  % --bmc1_ground_init                    false
% 0.19/0.45  % --bmc1_pre_inst_next_state            false
% 0.19/0.45  % --bmc1_pre_inst_state                 false
% 0.19/0.45  % --bmc1_pre_inst_reach_state           false
% 0.19/0.45  % --bmc1_out_unsat_core                 false
% 0.19/0.45  % --bmc1_aig_witness_out                false
% 0.19/0.45  % --bmc1_verbose                        false
% 0.19/0.45  % --bmc1_dump_clauses_tptp              false
% 0.19/0.45  % --bmc1_dump_unsat_core_tptp           false
% 0.19/0.45  % --bmc1_dump_file                      -
% 0.19/0.45  % --bmc1_ucm_expand_uc_limit            128
% 0.19/0.45  % --bmc1_ucm_n_expand_iterations        6
% 0.19/0.45  % --bmc1_ucm_extend_mode                1
% 0.19/0.45  % --bmc1_ucm_init_mode                  2
% 0.19/0.45  % --bmc1_ucm_cone_mode                  none
% 0.19/0.45  % --bmc1_ucm_reduced_relation_type      0
% 0.19/0.45  % --bmc1_ucm_relax_model                4
% 0.19/0.45  % --bmc1_ucm_full_tr_after_sat          true
% 0.19/0.45  % --bmc1_ucm_expand_neg_assumptions     false
% 0.19/0.45  % --bmc1_ucm_layered_model              none
% 0.19/0.45  % --bmc1_ucm_max_lemma_size             10
% 0.19/0.45  
% 0.19/0.45  % ------ AIG Options
% 0.19/0.45  
% 0.19/0.45  % --aig_mode                            false
% 0.19/0.45  
% 0.19/0.45  % ------ Instantiation Options
% 0.19/0.45  
% 0.19/0.45  % --instantiation_flag                  true
% 0.19/0.45  % --inst_lit_sel                        [+prop;+sign;+ground;-num_var;-num_symb]
% 0.19/0.45  % --inst_solver_per_active              750
% 0.19/0.45  % --inst_solver_calls_frac              0.5
% 0.19/0.45  % --inst_passive_queue_type             priority_queues
% 0.19/0.45  % --inst_passive_queues                 [[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]
% 0.19/0.45  % --inst_passive_queues_freq            [25;2]
% 0.19/0.45  % --inst_dismatching                    true
% 0.19/0.45  % --inst_eager_unprocessed_to_passive   true
% 0.19/0.45  % --inst_prop_sim_given                 true
% 150.22/150.44  % --inst_prop_sim_new                   false
% 150.22/150.44  % --inst_orphan_elimination             true
% 150.22/150.44  % --inst_learning_loop_flag             true
% 150.22/150.44  % --inst_learning_start                 3000
% 150.22/150.44  % --inst_learning_factor                2
% 150.22/150.44  % --inst_start_prop_sim_after_learn     3
% 150.22/150.44  % --inst_sel_renew                      solver
% 150.22/150.44  % --inst_lit_activity_flag              true
% 150.22/150.44  % --inst_out_proof                      true
% 150.22/150.44  
% 150.22/150.44  % ------ Resolution Options
% 150.22/150.44  
% 150.22/150.44  % --resolution_flag                     true
% 150.22/150.44  % --res_lit_sel                         kbo_max
% 150.22/150.44  % --res_to_prop_solver                  none
% 150.22/150.44  % --res_prop_simpl_new                  false
% 150.22/150.44  % --res_prop_simpl_given                false
% 150.22/150.44  % --res_passive_queue_type              priority_queues
% 150.22/150.44  % --res_passive_queues                  [[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]
% 150.22/150.44  % --res_passive_queues_freq             [15;5]
% 150.22/150.44  % --res_forward_subs                    full
% 150.22/150.44  % --res_backward_subs                   full
% 150.22/150.44  % --res_forward_subs_resolution         true
% 150.22/150.44  % --res_backward_subs_resolution        true
% 150.22/150.44  % --res_orphan_elimination              false
% 150.22/150.44  % --res_time_limit                      1000.
% 150.22/150.44  % --res_out_proof                       true
% 150.22/150.44  % --proof_out_file                      /export/starexec/sandbox/tmp/iprover_proof_607fcd.s
% 150.22/150.44  % --modulo                              true
% 150.22/150.44  
% 150.22/150.44  % ------ Combination Options
% 150.22/150.44  
% 150.22/150.44  % --comb_res_mult                       1000
% 150.22/150.44  % --comb_inst_mult                      300
% 150.22/150.44  % ------ 
% 150.22/150.44  
% 150.22/150.44  
% 150.22/150.44  
% 150.22/150.44  % ------ Proving...
% 150.22/150.44  % 
% 150.22/150.44  
% 150.22/150.44  
% 150.22/150.44  % Time Out Real
% 150.22/150.44  
% 150.22/150.44  % ------                             Statistics
% 150.22/150.44  
% 150.22/150.44  % ------ General
% 150.22/150.44  
% 150.22/150.44  % num_of_input_clauses:                 123
% 150.22/150.44  % num_of_input_neg_conjectures:         9
% 150.22/150.44  % num_of_splits:                        0
% 150.22/150.44  % num_of_split_atoms:                   0
% 150.22/150.44  % num_of_sem_filtered_clauses:          0
% 150.22/150.44  % num_of_subtypes:                      0
% 150.22/150.44  % monotx_restored_types:                0
% 150.22/150.44  % sat_num_of_epr_types:                 0
% 150.22/150.44  % sat_num_of_non_cyclic_types:          0
% 150.22/150.44  % sat_guarded_non_collapsed_types:      0
% 150.22/150.44  % is_epr:                               0
% 150.22/150.44  % is_horn:                              0
% 150.22/150.44  % has_eq:                               1
% 150.22/150.44  % num_pure_diseq_elim:                  0
% 150.22/150.44  % simp_replaced_by:                     0
% 150.22/150.44  % res_preprocessed:                     18
% 150.22/150.44  % prep_upred:                           0
% 150.22/150.44  % prep_unflattend:                      0
% 150.22/150.44  % pred_elim_cands:                      0
% 150.22/150.44  % pred_elim:                            0
% 150.22/150.44  % pred_elim_cl:                         0
% 150.22/150.44  % pred_elim_cycles:                     0
% 150.22/150.44  % forced_gc_time:                       0
% 150.22/150.44  % gc_basic_clause_elim:                 0
% 150.22/150.44  % parsing_time:                         0.005
% 150.22/150.44  % sem_filter_time:                      0.
% 150.22/150.44  % pred_elim_time:                       0.
% 150.22/150.44  % out_proof_time:                       0.
% 150.22/150.44  % monotx_time:                          0.
% 150.22/150.44  % subtype_inf_time:                     0.
% 150.22/150.44  % unif_index_cands_time:                0.043
% 150.22/150.44  % unif_index_add_time:                  0.031
% 150.22/150.44  % total_time:                           150.016
% 150.22/150.44  % num_of_symbols:                       60
% 150.22/150.44  % num_of_terms:                         17464
% 150.22/150.44  
% 150.22/150.44  % ------ Propositional Solver
% 150.22/150.44  
% 150.22/150.44  % prop_solver_calls:                    13
% 150.22/150.44  % prop_fast_solver_calls:               69
% 150.22/150.44  % prop_num_of_clauses:                  4050
% 150.22/150.44  % prop_preprocess_simplified:           4876
% 150.22/150.44  % prop_fo_subsumed:                     0
% 150.22/150.44  % prop_solver_time:                     0.001
% 150.22/150.44  % prop_fast_solver_time:                0.
% 150.22/150.44  % prop_unsat_core_time:                 0.
% 150.22/150.44  
% 150.22/150.44  % ------ QBF 
% 150.22/150.44  
% 150.22/150.44  % qbf_q_res:                            0
% 150.22/150.44  % qbf_num_tautologies:                  0
% 150.22/150.44  % qbf_prep_cycles:                      0
% 150.22/150.44  
% 150.22/150.44  % ------ BMC1
% 150.22/150.44  
% 150.22/150.44  % bmc1_current_bound:                   -1
% 150.22/150.44  % bmc1_last_solved_bound:               -1
% 150.22/150.44  % bmc1_unsat_core_size:                 -1
% 150.22/150.44  % bmc1_unsat_core_parents_size:         -1
% 150.22/150.44  % bmc1_merge_next_fun:                  0
% 150.22/150.44  % bmc1_unsat_core_clauses_time:         0.
% 150.22/150.44  
% 150.22/150.44  % ------ Instantiation
% 150.22/150.44  
% 150.22/150.44  % inst_num_of_clauses:                  2809
% 150.22/150.44  % inst_num_in_passive:                  361
% 150.22/150.44  % inst_num_in_active:                   1805
% 150.22/150.44  % inst_num_in_unprocessed:              636
% 150.22/150.44  % inst_num_of_loops:                    2400
% 150.22/150.44  % inst_num_of_learning_restarts:        0
% 150.22/150.44  % inst_num_moves_active_passive:        586
% 150.22/150.44  % inst_lit_activity:                    341
% 150.22/150.44  % inst_lit_activity_moves:              0
% 150.22/150.44  % inst_num_tautologies:                 4
% 150.22/150.44  % inst_num_prop_implied:                0
% 150.22/150.44  % inst_num_existing_simplified:         0
% 150.22/150.44  % inst_num_eq_res_simplified:           3
% 150.22/150.44  % inst_num_child_elim:                  0
% 150.22/150.44  % inst_num_of_dismatching_blockings:    3462
% 150.22/150.44  % inst_num_of_non_proper_insts:         6684
% 150.22/150.44  % inst_num_of_duplicates:               2393
% 150.22/150.44  % inst_inst_num_from_inst_to_res:       0
% 150.22/150.44  % inst_dismatching_checking_time:       0.008
% 150.22/150.44  
% 150.22/150.44  % ------ Resolution
% 150.22/150.44  
% 150.22/150.44  % res_num_of_clauses:                   118428
% 150.22/150.44  % res_num_in_passive:                   113811
% 150.22/150.44  % res_num_in_active:                    4542
% 150.22/150.44  % res_num_of_loops:                     8662
% 150.22/150.44  % res_forward_subset_subsumed:          3880
% 150.22/150.44  % res_backward_subset_subsumed:         9
% 150.22/150.44  % res_forward_subsumed:                 4109
% 150.22/150.44  % res_backward_subsumed:                33
% 150.22/150.44  % res_forward_subsumption_resolution:   737
% 150.22/150.44  % res_backward_subsumption_resolution:  0
% 150.22/150.44  % res_clause_to_clause_subsumption:     3167554
% 150.22/150.44  % res_orphan_elimination:               0
% 150.22/150.44  % res_tautology_del:                    680
% 150.22/150.44  % res_num_eq_res_simplified:            1
% 150.22/150.44  % res_num_sel_changes:                  0
% 150.22/150.44  % res_moves_from_active_to_pass:        0
% 150.22/150.44  
% 150.22/150.44  % Status Unknown
% 150.22/150.47  % Orienting using strategy ClausalAll
% 150.22/150.47  % FOF problem with conjecture
% 150.22/150.47  % Executing iprover_moduloopt --modulo true --schedule none --sub_typing false --res_to_prop_solver none --res_prop_simpl_given false --res_lit_sel kbo_max --large_theory_mode false --res_time_limit 1000 --res_orphan_elimination false --prep_sem_filter none --prep_unflatten false --comb_res_mult 1000 --comb_inst_mult 300 --clausifier .//eprover --clausifier_options "--tstp-format  " --proof_out_file /export/starexec/sandbox/tmp/iprover_proof_607fcd.s --tptp_safe_out true --time_out_real 150 /export/starexec/sandbox/tmp/iprover_modulo_818038.p | tee /export/starexec/sandbox/tmp/iprover_modulo_out_e542ff | grep -v "SZS"
% 150.32/150.50  
% 150.32/150.50  %---------------- iProver v2.5 (CASC-J8 2016) ----------------%
% 150.32/150.50  
% 150.32/150.50  % 
% 150.32/150.50  % ------  iProver source info 
% 150.32/150.50  
% 150.32/150.50  % git: sha1: 57accf6c58032223c7708532cf852a99fa48c1b3
% 150.32/150.50  % git: non_committed_changes: true
% 150.32/150.50  % git: last_make_outside_of_git: true
% 150.32/150.50  
% 150.32/150.50  % 
% 150.32/150.50  % ------ Input Options
% 150.32/150.50  
% 150.32/150.50  % --out_options                         all
% 150.32/150.50  % --tptp_safe_out                       true
% 150.32/150.50  % --problem_path                        ""
% 150.32/150.50  % --include_path                        ""
% 150.32/150.50  % --clausifier                          .//eprover
% 150.32/150.50  % --clausifier_options                  --tstp-format  
% 150.32/150.50  % --stdin                               false
% 150.32/150.50  % --dbg_backtrace                       false
% 150.32/150.50  % --dbg_dump_prop_clauses               false
% 150.32/150.50  % --dbg_dump_prop_clauses_file          -
% 150.32/150.50  % --dbg_out_stat                        false
% 150.32/150.50  
% 150.32/150.50  % ------ General Options
% 150.32/150.50  
% 150.32/150.50  % --fof                                 false
% 150.32/150.50  % --time_out_real                       150.
% 150.32/150.50  % --time_out_prep_mult                  0.2
% 150.32/150.50  % --time_out_virtual                    -1.
% 150.32/150.50  % --schedule                            none
% 150.32/150.50  % --ground_splitting                    input
% 150.32/150.50  % --splitting_nvd                       16
% 150.32/150.50  % --non_eq_to_eq                        false
% 150.32/150.50  % --prep_gs_sim                         true
% 150.32/150.50  % --prep_unflatten                      false
% 150.32/150.50  % --prep_res_sim                        true
% 150.32/150.50  % --prep_upred                          true
% 150.32/150.50  % --res_sim_input                       true
% 150.32/150.50  % --clause_weak_htbl                    true
% 150.32/150.50  % --gc_record_bc_elim                   false
% 150.32/150.50  % --symbol_type_check                   false
% 150.32/150.50  % --clausify_out                        false
% 150.32/150.50  % --large_theory_mode                   false
% 150.32/150.50  % --prep_sem_filter                     none
% 150.32/150.50  % --prep_sem_filter_out                 false
% 150.32/150.50  % --preprocessed_out                    false
% 150.32/150.50  % --sub_typing                          false
% 150.32/150.50  % --brand_transform                     false
% 150.32/150.50  % --pure_diseq_elim                     true
% 150.32/150.50  % --min_unsat_core                      false
% 150.32/150.50  % --pred_elim                           true
% 150.32/150.50  % --add_important_lit                   false
% 150.32/150.50  % --soft_assumptions                    false
% 150.32/150.50  % --reset_solvers                       false
% 150.32/150.50  % --bc_imp_inh                          []
% 150.32/150.50  % --conj_cone_tolerance                 1.5
% 150.32/150.50  % --prolific_symb_bound                 500
% 150.32/150.50  % --lt_threshold                        2000
% 150.32/150.50  
% 150.32/150.50  % ------ SAT Options
% 150.32/150.50  
% 150.32/150.50  % --sat_mode                            false
% 150.32/150.50  % --sat_fm_restart_options              ""
% 150.32/150.50  % --sat_gr_def                          false
% 150.32/150.50  % --sat_epr_types                       true
% 150.32/150.50  % --sat_non_cyclic_types                false
% 150.32/150.50  % --sat_finite_models                   false
% 150.32/150.50  % --sat_fm_lemmas                       false
% 150.32/150.50  % --sat_fm_prep                         false
% 150.32/150.50  % --sat_fm_uc_incr                      true
% 150.32/150.50  % --sat_out_model                       small
% 150.32/150.50  % --sat_out_clauses                     false
% 150.32/150.50  
% 150.32/150.50  % ------ QBF Options
% 150.32/150.50  
% 150.32/150.50  % --qbf_mode                            false
% 150.32/150.50  % --qbf_elim_univ                       true
% 150.32/150.50  % --qbf_sk_in                           true
% 150.32/150.50  % --qbf_pred_elim                       true
% 150.32/150.50  % --qbf_split                           32
% 150.32/150.50  
% 150.32/150.50  % ------ BMC1 Options
% 150.32/150.50  
% 150.32/150.50  % --bmc1_incremental                    false
% 150.32/150.50  % --bmc1_axioms                         reachable_all
% 150.32/150.50  % --bmc1_min_bound                      0
% 150.32/150.50  % --bmc1_max_bound                      -1
% 150.32/150.50  % --bmc1_max_bound_default              -1
% 150.32/150.50  % --bmc1_symbol_reachability            true
% 150.32/150.50  % --bmc1_property_lemmas                false
% 150.32/150.50  % --bmc1_k_induction                    false
% 150.32/150.50  % --bmc1_non_equiv_states               false
% 150.32/150.50  % --bmc1_deadlock                       false
% 150.32/150.50  % --bmc1_ucm                            false
% 150.32/150.50  % --bmc1_add_unsat_core                 none
% 150.32/150.50  % --bmc1_unsat_core_children            false
% 150.32/150.50  % --bmc1_unsat_core_extrapolate_axioms  false
% 150.32/150.50  % --bmc1_out_stat                       full
% 150.32/150.50  % --bmc1_ground_init                    false
% 150.32/150.50  % --bmc1_pre_inst_next_state            false
% 150.32/150.50  % --bmc1_pre_inst_state                 false
% 150.32/150.50  % --bmc1_pre_inst_reach_state           false
% 150.32/150.50  % --bmc1_out_unsat_core                 false
% 150.32/150.50  % --bmc1_aig_witness_out                false
% 150.32/150.50  % --bmc1_verbose                        false
% 150.32/150.50  % --bmc1_dump_clauses_tptp              false
% 150.32/150.51  % --bmc1_dump_unsat_core_tptp           false
% 150.32/150.51  % --bmc1_dump_file                      -
% 150.32/150.51  % --bmc1_ucm_expand_uc_limit            128
% 150.32/150.51  % --bmc1_ucm_n_expand_iterations        6
% 150.32/150.51  % --bmc1_ucm_extend_mode                1
% 150.32/150.51  % --bmc1_ucm_init_mode                  2
% 150.32/150.51  % --bmc1_ucm_cone_mode                  none
% 150.32/150.51  % --bmc1_ucm_reduced_relation_type      0
% 150.32/150.51  % --bmc1_ucm_relax_model                4
% 150.32/150.51  % --bmc1_ucm_full_tr_after_sat          true
% 150.32/150.51  % --bmc1_ucm_expand_neg_assumptions     false
% 150.32/150.51  % --bmc1_ucm_layered_model              none
% 150.32/150.51  % --bmc1_ucm_max_lemma_size             10
% 150.32/150.51  
% 150.32/150.51  % ------ AIG Options
% 150.32/150.51  
% 150.32/150.51  % --aig_mode                            false
% 150.32/150.51  
% 150.32/150.51  % ------ Instantiation Options
% 150.32/150.51  
% 150.32/150.51  % --instantiation_flag                  true
% 150.32/150.51  % --inst_lit_sel                        [+prop;+sign;+ground;-num_var;-num_symb]
% 150.32/150.51  % --inst_solver_per_active              750
% 150.32/150.51  % --inst_solver_calls_frac              0.5
% 150.32/150.51  % --inst_passive_queue_type             priority_queues
% 150.32/150.51  % --inst_passive_queues                 [[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]
% 150.32/150.51  % --inst_passive_queues_freq            [25;2]
% 150.32/150.51  % --inst_dismatching                    true
% 150.32/150.51  % --inst_eager_unprocessed_to_passive   true
% 150.32/150.51  % --inst_prop_sim_given                 true
% 150.32/150.51  % --inst_prop_sim_new                   false
% 150.32/150.51  % --inst_orphan_elimination             true
% 150.32/150.51  % --inst_learning_loop_flag             true
% 150.32/150.51  % --inst_learning_start                 3000
% 150.32/150.51  % --inst_learning_factor                2
% 150.32/150.51  % --inst_start_prop_sim_after_learn     3
% 150.32/150.51  % --inst_sel_renew                      solver
% 150.32/150.51  % --inst_lit_activity_flag              true
% 150.32/150.51  % --inst_out_proof                      true
% 150.32/150.51  
% 150.32/150.51  % ------ Resolution Options
% 150.32/150.51  
% 150.32/150.51  % --resolution_flag                     true
% 150.32/150.51  % --res_lit_sel                         kbo_max
% 150.32/150.51  % --res_to_prop_solver                  none
% 150.32/150.51  % --res_prop_simpl_new                  false
% 150.32/150.51  % --res_prop_simpl_given                false
% 150.32/150.51  % --res_passive_queue_type              priority_queues
% 150.32/150.51  % --res_passive_queues                  [[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]
% 150.32/150.51  % --res_passive_queues_freq             [15;5]
% 150.32/150.51  % --res_forward_subs                    full
% 150.32/150.51  % --res_backward_subs                   full
% 150.32/150.51  % --res_forward_subs_resolution         true
% 150.32/150.51  % --res_backward_subs_resolution        true
% 150.32/150.51  % --res_orphan_elimination              false
% 150.32/150.51  % --res_time_limit                      1000.
% 150.32/150.51  % --res_out_proof                       true
% 150.32/150.51  % --proof_out_file                      /export/starexec/sandbox/tmp/iprover_proof_607fcd.s
% 150.32/150.51  % --modulo                              true
% 150.32/150.51  
% 150.32/150.51  % ------ Combination Options
% 150.32/150.51  
% 150.32/150.51  % --comb_res_mult                       1000
% 150.32/150.51  % --comb_inst_mult                      300
% 150.32/150.51  % ------ 
% 150.32/150.51  
% 150.32/150.51  % ------ Parsing...% successful
% 150.32/150.51  
% 150.32/150.51  % ------ Preprocessing... gs_s  sp: 0 0s  gs_e  snvd_s sp: 0 0s snvd_e  pe_s  pe_e  snvd_s sp: 0 0s snvd_e % 
% 150.32/150.51  
% 150.32/150.51  % ------ Proving...
% 150.32/150.51  % ------ Problem Properties 
% 150.32/150.51  
% 150.32/150.51  % 
% 150.32/150.51  % EPR                                   false
% 150.32/150.51  % Horn                                  false
% 150.32/150.51  % Has equality                          true
% 150.32/150.51  
% 150.32/150.51  % % ------ Input Options Time Limit: Unbounded
% 150.32/150.51  
% 150.32/150.51  
% 150.32/150.51  % % ------ Current options:
% 150.32/150.51  
% 150.32/150.51  % ------ Input Options
% 150.32/150.51  
% 150.32/150.51  % --out_options                         all
% 150.32/150.51  % --tptp_safe_out                       true
% 150.32/150.51  % --problem_path                        ""
% 150.32/150.51  % --include_path                        ""
% 150.32/150.51  % --clausifier                          .//eprover
% 150.32/150.51  % --clausifier_options                  --tstp-format  
% 150.32/150.51  % --stdin                               false
% 150.32/150.51  % --dbg_backtrace                       false
% 150.32/150.51  % --dbg_dump_prop_clauses               false
% 150.32/150.51  % --dbg_dump_prop_clauses_file          -
% 150.32/150.51  % --dbg_out_stat                        false
% 150.32/150.51  
% 150.32/150.51  % ------ General Options
% 150.32/150.51  
% 150.32/150.51  % --fof                                 false
% 150.32/150.51  % --time_out_real                       150.
% 150.32/150.51  % --time_out_prep_mult                  0.2
% 150.32/150.51  % --time_out_virtual                    -1.
% 150.32/150.51  % --schedule                            none
% 150.32/150.51  % --ground_splitting                    input
% 150.32/150.51  % --splitting_nvd                       16
% 150.32/150.51  % --non_eq_to_eq                        false
% 150.32/150.51  % --prep_gs_sim                         true
% 150.32/150.51  % --prep_unflatten                      false
% 150.32/150.51  % --prep_res_sim                        true
% 150.32/150.51  % --prep_upred                          true
% 150.32/150.51  % --res_sim_input                       true
% 150.32/150.51  % --clause_weak_htbl                    true
% 150.32/150.51  % --gc_record_bc_elim                   false
% 150.32/150.51  % --symbol_type_check                   false
% 150.32/150.51  % --clausify_out                        false
% 150.32/150.51  % --large_theory_mode                   false
% 150.32/150.51  % --prep_sem_filter                     none
% 150.32/150.51  % --prep_sem_filter_out                 false
% 150.32/150.51  % --preprocessed_out                    false
% 150.32/150.51  % --sub_typing                          false
% 150.32/150.51  % --brand_transform                     false
% 150.32/150.51  % --pure_diseq_elim                     true
% 150.32/150.51  % --min_unsat_core                      false
% 150.32/150.51  % --pred_elim                           true
% 150.32/150.51  % --add_important_lit                   false
% 150.32/150.51  % --soft_assumptions                    false
% 150.32/150.51  % --reset_solvers                       false
% 150.32/150.51  % --bc_imp_inh                          []
% 150.32/150.51  % --conj_cone_tolerance                 1.5
% 150.32/150.51  % --prolific_symb_bound                 500
% 150.32/150.51  % --lt_threshold                        2000
% 150.32/150.51  
% 150.32/150.51  % ------ SAT Options
% 150.32/150.51  
% 150.32/150.51  % --sat_mode                            false
% 150.32/150.51  % --sat_fm_restart_options              ""
% 150.32/150.51  % --sat_gr_def                          false
% 150.32/150.51  % --sat_epr_types                       true
% 150.32/150.51  % --sat_non_cyclic_types                false
% 150.32/150.51  % --sat_finite_models                   false
% 150.32/150.51  % --sat_fm_lemmas                       false
% 150.32/150.51  % --sat_fm_prep                         false
% 150.32/150.51  % --sat_fm_uc_incr                      true
% 150.32/150.51  % --sat_out_model                       small
% 150.32/150.51  % --sat_out_clauses                     false
% 150.32/150.51  
% 150.32/150.51  % ------ QBF Options
% 150.32/150.51  
% 150.32/150.51  % --qbf_mode                            false
% 150.32/150.51  % --qbf_elim_univ                       true
% 150.32/150.51  % --qbf_sk_in                           true
% 150.32/150.51  % --qbf_pred_elim                       true
% 150.32/150.51  % --qbf_split                           32
% 150.32/150.51  
% 150.32/150.51  % ------ BMC1 Options
% 150.32/150.51  
% 150.32/150.51  % --bmc1_incremental                    false
% 150.32/150.51  % --bmc1_axioms                         reachable_all
% 150.32/150.51  % --bmc1_min_bound                      0
% 150.32/150.51  % --bmc1_max_bound                      -1
% 150.32/150.51  % --bmc1_max_bound_default              -1
% 150.32/150.52  % --bmc1_symbol_reachability            true
% 150.32/150.52  % --bmc1_property_lemmas                false
% 150.32/150.52  % --bmc1_k_induction                    false
% 150.32/150.52  % --bmc1_non_equiv_states               false
% 150.32/150.52  % --bmc1_deadlock                       false
% 150.32/150.52  % --bmc1_ucm                            false
% 150.32/150.52  % --bmc1_add_unsat_core                 none
% 150.32/150.52  % --bmc1_unsat_core_children            false
% 150.32/150.52  % --bmc1_unsat_core_extrapolate_axioms  false
% 150.32/150.52  % --bmc1_out_stat                       full
% 150.32/150.52  % --bmc1_ground_init                    false
% 150.32/150.52  % --bmc1_pre_inst_next_state            false
% 150.32/150.52  % --bmc1_pre_inst_state                 false
% 150.32/150.52  % --bmc1_pre_inst_reach_state           false
% 150.32/150.52  % --bmc1_out_unsat_core                 false
% 150.32/150.52  % --bmc1_aig_witness_out                false
% 150.32/150.52  % --bmc1_verbose                        false
% 150.32/150.52  % --bmc1_dump_clauses_tptp              false
% 150.32/150.52  % --bmc1_dump_unsat_core_tptp           false
% 150.32/150.52  % --bmc1_dump_file                      -
% 150.32/150.52  % --bmc1_ucm_expand_uc_limit            128
% 150.32/150.52  % --bmc1_ucm_n_expand_iterations        6
% 150.32/150.52  % --bmc1_ucm_extend_mode                1
% 150.32/150.52  % --bmc1_ucm_init_mode                  2
% 150.32/150.52  % --bmc1_ucm_cone_mode                  none
% 150.32/150.52  % --bmc1_ucm_reduced_relation_type      0
% 150.32/150.52  % --bmc1_ucm_relax_model                4
% 150.32/150.52  % --bmc1_ucm_full_tr_after_sat          true
% 150.32/150.52  % --bmc1_ucm_expand_neg_assumptions     false
% 150.32/150.52  % --bmc1_ucm_layered_model              none
% 150.32/150.52  % --bmc1_ucm_max_lemma_size             10
% 150.32/150.52  
% 150.32/150.52  % ------ AIG Options
% 150.32/150.52  
% 150.32/150.52  % --aig_mode                            false
% 150.32/150.52  
% 150.32/150.52  % ------ Instantiation Options
% 150.32/150.52  
% 150.32/150.52  % --instantiation_flag                  true
% 150.32/150.52  % --inst_lit_sel                        [+prop;+sign;+ground;-num_var;-num_symb]
% 150.32/150.52  % --inst_solver_per_active              750
% 150.32/150.52  % --inst_solver_calls_frac              0.5
% 150.32/150.52  % --inst_passive_queue_type             priority_queues
% 150.32/150.52  % --inst_passive_queues                 [[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]
% 150.32/150.52  % --inst_passive_queues_freq            [25;2]
% 150.32/150.52  % --inst_dismatching                    true
% 150.32/150.52  % --inst_eager_unprocessed_to_passive   true
% 150.32/150.52  % --inst_prop_sim_given                 true
% 233.15/233.34  % --inst_prop_sim_new                   false
% 233.15/233.34  % --inst_orphan_elimination             true
% 233.15/233.34  % --inst_learning_loop_flag             true
% 233.15/233.34  % --inst_learning_start                 3000
% 233.15/233.34  % --inst_learning_factor                2
% 233.15/233.34  % --inst_start_prop_sim_after_learn     3
% 233.15/233.34  % --inst_sel_renew                      solver
% 233.15/233.34  % --inst_lit_activity_flag              true
% 233.15/233.34  % --inst_out_proof                      true
% 233.15/233.34  
% 233.15/233.34  % ------ Resolution Options
% 233.15/233.34  
% 233.15/233.34  % --resolution_flag                     true
% 233.15/233.34  % --res_lit_sel                         kbo_max
% 233.15/233.34  % --res_to_prop_solver                  none
% 233.15/233.34  % --res_prop_simpl_new                  false
% 233.15/233.34  % --res_prop_simpl_given                false
% 233.15/233.34  % --res_passive_queue_type              priority_queues
% 233.15/233.34  % --res_passive_queues                  [[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]
% 233.15/233.34  % --res_passive_queues_freq             [15;5]
% 233.15/233.34  % --res_forward_subs                    full
% 233.15/233.34  % --res_backward_subs                   full
% 233.15/233.34  % --res_forward_subs_resolution         true
% 233.15/233.34  % --res_backward_subs_resolution        true
% 233.15/233.34  % --res_orphan_elimination              false
% 233.15/233.34  % --res_time_limit                      1000.
% 233.15/233.34  % --res_out_proof                       true
% 233.15/233.34  % --proof_out_file                      /export/starexec/sandbox/tmp/iprover_proof_607fcd.s
% 233.15/233.34  % --modulo                              true
% 233.15/233.34  
% 233.15/233.34  % ------ Combination Options
% 233.15/233.34  
% 233.15/233.34  % --comb_res_mult                       1000
% 233.15/233.34  % --comb_inst_mult                      300
% 233.15/233.34  % ------ 
% 233.15/233.34  
% 233.15/233.34  
% 233.15/233.34  
% 233.15/233.34  % ------ Proving...
% 233.15/233.34  % 
% 233.15/233.34  
% 233.15/233.34  
% 233.15/233.34  % ------                             Statistics
% 233.15/233.34  
% 233.15/233.34  % ------ General
% 233.15/233.34  
% 233.15/233.34  % num_of_input_clauses:                 207
% 233.15/233.34  % num_of_input_neg_conjectures:         9
% 233.15/233.34  % num_of_splits:                        0
% 233.15/233.34  % num_of_split_atoms:                   0
% 233.15/233.34  % num_of_sem_filtered_clauses:          0
% 233.15/233.34  % num_of_subtypes:                      0
% 233.15/233.34  % monotx_restored_types:                0
% 233.15/233.34  % sat_num_of_epr_types:                 0
% 233.15/233.34  % sat_num_of_non_cyclic_types:          0
% 233.15/233.34  % sat_guarded_non_collapsed_types:      0
% 233.15/233.34  % is_epr:                               0
% 233.15/233.34  % is_horn:                              0
% 233.15/233.34  % has_eq:                               1
% 233.15/233.34  % num_pure_diseq_elim:                  0
% 233.15/233.34  % simp_replaced_by:                     0
% 233.15/233.34  % res_preprocessed:                     18
% 233.15/233.34  % prep_upred:                           0
% 233.15/233.34  % prep_unflattend:                      0
% 233.15/233.34  % pred_elim_cands:                      0
% 233.15/233.34  % pred_elim:                            0
% 233.15/233.34  % pred_elim_cl:                         0
% 233.15/233.34  % pred_elim_cycles:                     0
% 233.15/233.34  % forced_gc_time:                       0
% 233.15/233.34  % gc_basic_clause_elim:                 0
% 233.15/233.34  % parsing_time:                         0.006
% 233.15/233.34  % sem_filter_time:                      0.
% 233.15/233.34  % pred_elim_time:                       0.
% 233.15/233.34  % out_proof_time:                       0.003
% 233.15/233.34  % monotx_time:                          0.
% 233.15/233.34  % subtype_inf_time:                     0.
% 233.15/233.34  % unif_index_cands_time:                0.062
% 233.15/233.34  % unif_index_add_time:                  0.024
% 233.15/233.34  % total_time:                           82.856
% 233.15/233.34  % num_of_symbols:                       60
% 233.15/233.34  % num_of_terms:                         30179
% 233.15/233.34  
% 233.15/233.34  % ------ Propositional Solver
% 233.15/233.34  
% 233.15/233.34  % prop_solver_calls:                    14
% 233.15/233.34  % prop_fast_solver_calls:               69
% 233.15/233.34  % prop_num_of_clauses:                  4961
% 233.15/233.34  % prop_preprocess_simplified:           7597
% 233.15/233.34  % prop_fo_subsumed:                     0
% 233.15/233.34  % prop_solver_time:                     0.003
% 233.15/233.34  % prop_fast_solver_time:                0.
% 233.15/233.34  % prop_unsat_core_time:                 0.001
% 233.15/233.34  
% 233.15/233.34  % ------ QBF 
% 233.15/233.34  
% 233.15/233.34  % qbf_q_res:                            0
% 233.15/233.34  % qbf_num_tautologies:                  0
% 233.15/233.34  % qbf_prep_cycles:                      0
% 233.15/233.34  
% 233.15/233.34  % ------ BMC1
% 233.15/233.34  
% 233.15/233.34  % bmc1_current_bound:                   -1
% 233.15/233.34  % bmc1_last_solved_bound:               -1
% 233.15/233.34  % bmc1_unsat_core_size:                 -1
% 233.15/233.34  % bmc1_unsat_core_parents_size:         -1
% 233.15/233.34  % bmc1_merge_next_fun:                  0
% 233.15/233.34  % bmc1_unsat_core_clauses_time:         0.
% 233.15/233.34  
% 233.15/233.34  % ------ Instantiation
% 233.15/233.34  
% 233.15/233.34  % inst_num_of_clauses:                  3651
% 233.15/233.34  % inst_num_in_passive:                  1290
% 233.15/233.34  % inst_num_in_active:                   2284
% 233.15/233.34  % inst_num_in_unprocessed:              76
% 233.15/233.34  % inst_num_of_loops:                    3000
% 233.15/233.34  % inst_num_of_learning_restarts:        1
% 233.15/233.34  % inst_num_moves_active_passive:        711
% 233.15/233.34  % inst_lit_activity:                    473
% 233.15/233.34  % inst_lit_activity_moves:              0
% 233.15/233.34  % inst_num_tautologies:                 0
% 233.15/233.34  % inst_num_prop_implied:                0
% 233.15/233.34  % inst_num_existing_simplified:         0
% 233.15/233.34  % inst_num_eq_res_simplified:           1
% 233.15/233.34  % inst_num_child_elim:                  0
% 233.15/233.34  % inst_num_of_dismatching_blockings:    4500
% 233.15/233.34  % inst_num_of_non_proper_insts:         8977
% 233.15/233.34  % inst_num_of_duplicates:               4369
% 233.15/233.34  % inst_inst_num_from_inst_to_res:       0
% 233.15/233.34  % inst_dismatching_checking_time:       0.01
% 233.15/233.34  
% 233.15/233.34  % ------ Resolution
% 233.15/233.34  
% 233.15/233.34  % res_num_of_clauses:                   60877
% 233.15/233.34  % res_num_in_passive:                   54647
% 233.15/233.34  % res_num_in_active:                    5934
% 233.15/233.34  % res_num_of_loops:                     11000
% 233.15/233.34  % res_forward_subset_subsumed:          7536
% 233.15/233.34  % res_backward_subset_subsumed:         84
% 233.15/233.34  % res_forward_subsumed:                 4767
% 233.15/233.34  % res_backward_subsumed:                62
% 233.15/233.34  % res_forward_subsumption_resolution:   5157
% 233.15/233.34  % res_backward_subsumption_resolution:  6
% 233.15/233.34  % res_clause_to_clause_subsumption:     2619422
% 233.15/233.34  % res_orphan_elimination:               0
% 233.15/233.34  % res_tautology_del:                    6527
% 233.15/233.34  % res_num_eq_res_simplified:            0
% 233.15/233.34  % res_num_sel_changes:                  0
% 233.15/233.34  % res_moves_from_active_to_pass:        0
% 233.15/233.34  
% 233.15/233.34  % Status Unsatisfiable
% 233.15/233.34  % SZS status Theorem
% 233.15/233.34  % SZS output start CNFRefutation
% See solution above
%------------------------------------------------------------------------------