TSTP Solution File: NUM658^4 by Zipperpin---2.1.9999

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Zipperpin---2.1.9999
% Problem  : NUM658^4 : TPTP v8.1.2. Released v7.1.0.
% Transfm  : NO INFORMATION
% Format   : NO INFORMATION
% Command  : python3 /export/starexec/sandbox2/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox2/tmp/tmp.fDzgItdPt2 true

% Computer : n006.cluster.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory   : 8042.1875MB
% OS       : Linux 3.10.0-693.el7.x86_64
% CPULimit : 300s
% WCLimit  : 300s
% DateTime : Thu Aug 31 12:43:10 EDT 2023

% Result   : Theorem 9.57s 2.05s
% Output   : Refutation 9.57s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.13  % Problem  : NUM658^4 : TPTP v8.1.2. Released v7.1.0.
% 0.00/0.14  % Command  : python3 /export/starexec/sandbox2/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox2/tmp/tmp.fDzgItdPt2 true
% 0.18/0.35  % Computer : n006.cluster.edu
% 0.18/0.35  % Model    : x86_64 x86_64
% 0.18/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.18/0.35  % Memory   : 8042.1875MB
% 0.18/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.18/0.36  % CPULimit : 300
% 0.18/0.36  % WCLimit  : 300
% 0.18/0.36  % DateTime : Fri Aug 25 08:59:22 EDT 2023
% 0.18/0.36  % CPUTime  : 
% 0.18/0.36  % Running portfolio for 300 s
% 0.18/0.36  % File         : /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.18/0.36  % Number of cores: 8
% 0.18/0.36  % Python version: Python 3.6.8
% 0.18/0.36  % Running in HO mode
% 0.23/0.65  % Total configuration time : 828
% 0.23/0.65  % Estimated wc time : 1656
% 0.23/0.65  % Estimated cpu time (8 cpus) : 207.0
% 0.23/0.74  % /export/starexec/sandbox2/solver/bin/lams/40_c.s.sh running for 80s
% 0.23/0.76  % /export/starexec/sandbox2/solver/bin/lams/40_c_ic.sh running for 80s
% 0.23/0.76  % /export/starexec/sandbox2/solver/bin/lams/35_full_unif4.sh running for 80s
% 0.23/0.76  % /export/starexec/sandbox2/solver/bin/lams/15_e_short1.sh running for 30s
% 0.23/0.78  % /export/starexec/sandbox2/solver/bin/lams/40_noforms.sh running for 90s
% 0.23/0.78  % /export/starexec/sandbox2/solver/bin/lams/20_acsne_simpl.sh running for 40s
% 0.23/0.80  % /export/starexec/sandbox2/solver/bin/lams/40_b.comb.sh running for 70s
% 1.41/0.81  % /export/starexec/sandbox2/solver/bin/lams/30_sp5.sh running for 60s
% 3.10/1.51  % /export/starexec/sandbox2/solver/bin/lams/30_b.l.sh running for 90s
% 9.57/2.05  % Solved by lams/40_b.comb.sh.
% 9.57/2.05  % done 172 iterations in 1.194s
% 9.57/2.05  % SZS status Theorem for '/export/starexec/sandbox2/benchmark/theBenchmark.p'
% 9.57/2.05  % SZS output start Refutation
% 9.57/2.05  thf(d_29_ii_type, type, d_29_ii: $i > $i > $o).
% 9.57/2.05  thf(nat_type, type, nat: $i).
% 9.57/2.05  thf(moreis_type, type, moreis: $i > $i > $o).
% 9.57/2.05  thf(lessis_type, type, lessis: $i > $i > $o).
% 9.57/2.05  thf('#sk3_type', type, '#sk3': $i).
% 9.57/2.05  thf(is_of_type, type, is_of: $i > ($i > $o) > $o).
% 9.57/2.05  thf(in_type, type, in: $i > $i > $o).
% 9.57/2.05  thf(l_some_type, type, l_some: $i > ($i > $o) > $o).
% 9.57/2.05  thf(d_Sep_type, type, d_Sep: $i > ($i > $o) > $i).
% 9.57/2.05  thf(emptyset_type, type, emptyset: $i).
% 9.57/2.05  thf(n_is_type, type, n_is: $i > $i > $o).
% 9.57/2.05  thf(imp_type, type, imp: $o > $o > $o).
% 9.57/2.05  thf(omega_type, type, omega: $i).
% 9.57/2.05  thf(all_of_type, type, all_of: ($i > $o) > ($i > $o) > $o).
% 9.57/2.05  thf(diffprop_type, type, diffprop: $i > $i > $i > $o).
% 9.57/2.05  thf('#sk2_type', type, '#sk2': $i).
% 9.57/2.05  thf(n_some_type, type, n_some: ($i > $o) > $o).
% 9.57/2.05  thf(l_or_type, type, l_or: $o > $o > $o).
% 9.57/2.05  thf(d_not_type, type, d_not: $o > $o).
% 9.57/2.05  thf(iii_type, type, iii: $i > $i > $o).
% 9.57/2.05  thf(e_is_type, type, e_is: $i > $i > $i > $o).
% 9.57/2.05  thf(s_comb_type, type, '#S': !>[A:$tType, B:$tType, C:$tType]: ((A > B > C) > (A > B) > A > C)).
% 9.57/2.05  thf(c_comb_type, type, '#C': !>[A:$tType, B:$tType, C:$tType]: ((A > B > C) > B > A > C)).
% 9.57/2.05  thf(b_comb_type, type, '#B': !>[A:$tType, B:$tType, C:$tType]: ((A > B) > (C > A) > C > B)).
% 9.57/2.05  thf(k_comb_type, type, '#K': !>[A:$tType, B:$tType]: (B > A > B)).
% 9.57/2.05  thf(i_comb_type, type, '#I': !>[A:$tType]: (A > A)).
% 9.57/2.05  thf(satz10j, conjecture,
% 9.57/2.05    (all_of @
% 9.57/2.05     ( ^[X0:$i]: ( in @ X0 @ nat ) ) @ 
% 9.57/2.05     ( ^[X0:$i]:
% 9.57/2.05       ( all_of @
% 9.57/2.05         ( ^[X1:$i]: ( in @ X1 @ nat ) ) @ 
% 9.57/2.05         ( ^[X1:$i]: ( ( d_not @ ( moreis @ X0 @ X1 ) ) => ( iii @ X0 @ X1 ) ) ) ) ))).
% 9.57/2.05  thf(zf_stmt_0, negated_conjecture,
% 9.57/2.05    (~( all_of @
% 9.57/2.05        ( ^[X0:$i]: ( in @ X0 @ nat ) ) @ 
% 9.57/2.05        ( ^[X0:$i]:
% 9.57/2.05          ( all_of @
% 9.57/2.05            ( ^[X1:$i]: ( in @ X1 @ nat ) ) @ 
% 9.57/2.05            ( ^[X1:$i]:
% 9.57/2.05              ( ( d_not @ ( moreis @ X0 @ X1 ) ) => ( iii @ X0 @ X1 ) ) ) ) ) )),
% 9.57/2.05    inference('cnf.neg', [status(esa)], [satz10j])).
% 9.57/2.05  thf(zip_derived_cl105, plain,
% 9.57/2.05      (~ (all_of @ (^[Y0 : $i]: (in @ Y0 @ nat)) @ 
% 9.57/2.05          (^[Y0 : $i]:
% 9.57/2.05             (all_of @ (^[Y1 : $i]: (in @ Y1 @ nat)) @ 
% 9.57/2.05              (^[Y1 : $i]: (((d_not @ (moreis @ Y0 @ Y1)) => (iii @ Y0 @ Y1)))))))),
% 9.57/2.05      inference('cnf', [status(esa)], [zf_stmt_0])).
% 9.57/2.05  thf(zip_derived_cl106, plain,
% 9.57/2.05      (~ (all_of @ ((('#C') @ in @ nat)) @ 
% 9.57/2.05          ((('#B') @ (all_of @ ((('#C') @ in @ nat))) @ 
% 9.57/2.05            ((('#S') @ ((('#B') @ ('#S') @ 
% 9.57/2.05                         ((('#B') @ ((('#B') @ (=>))) @ 
% 9.57/2.05                           ((('#B') @ ((('#B') @ d_not)) @ moreis)))))) @ 
% 9.57/2.05              iii)))))),
% 9.57/2.05      inference('lams2combs', [status(thm)], [zip_derived_cl105])).
% 9.57/2.05  thf(def_nat, axiom,(( nat  ) =
% 9.57/2.05    ((d_Sep @ omega @ (^[Y0 : $i]: (((Y0) != (emptyset)))))))).
% 9.57/2.05  thf('0', plain,
% 9.57/2.05      (( nat ) = ( d_Sep @ omega @ ( ^[V_1:$i]: ( ( V_1 ) != ( emptyset ) ) ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(zip_derived_cl173, plain,
% 9.57/2.05      (~ (all_of @ 
% 9.57/2.05          ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))) @ 
% 9.57/2.05          ((('#B') @ (all_of @ 
% 9.57/2.05                      ((('#C') @ in @ 
% 9.57/2.05                        (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) @ 
% 9.57/2.05            ((('#S') @ ((('#B') @ ('#S') @ 
% 9.57/2.05                         ((('#B') @ ((('#B') @ (=>))) @ 
% 9.57/2.05                           ((('#B') @ ((('#B') @ d_not)) @ moreis)))))) @ 
% 9.57/2.05              iii)))))),
% 9.57/2.05      inference('rw', [status(thm)], [zip_derived_cl106, '0'])).
% 9.57/2.05  thf(def_all_of, axiom, ~ (all_of @ X0 @ X1) =>
% 9.57/2.05    ((((!!) @ (^[Y0 : $i]: (((is_of @ Y0 @ X0) => (X1 @ Y0)))))) != ($true))).
% 9.57/2.05  thf('1', plain,
% 9.57/2.05      (![X0:( $i > $o ),X1:( $i > $o )]:
% 9.57/2.05       ( ( ~( all_of @ X0 @ X1 ) ) <=>
% 9.57/2.05         ( ~( ![X6:$i]: ( ( is_of @ X6 @ X0 ) => ( X1 @ X6 ) ) ) ) )),
% 9.57/2.05      inference('rw.lit', [status(esa)], [def_all_of])).
% 9.57/2.05  thf(zip_derived_cl174, plain,
% 9.57/2.05      (~ (((!!) @ (^[Y0 : $i]:
% 9.57/2.05                     (((is_of @ Y0 @ 
% 9.57/2.05                       ((('#C') @ in @ 
% 9.57/2.05                         (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) =>
% 9.57/2.05                       ((('#B') @ (all_of @ 
% 9.57/2.05                                   ((('#C') @ in @ 
% 9.57/2.05                                     (d_Sep @ omega @ 
% 9.57/2.05                                      ((('#C') @ (!=) @ emptyset)))))) @ 
% 9.57/2.05                         ((('#S') @ ((('#B') @ ('#S') @ 
% 9.57/2.05                                      ((('#B') @ ((('#B') @ (=>))) @ 
% 9.57/2.05                                        ((('#B') @ ((('#B') @ d_not)) @ moreis)))))) @ 
% 9.57/2.05                           iii)) @ 
% 9.57/2.05                         Y0)))))))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl173, '1'])).
% 9.57/2.05  thf(zip_derived_cl175, plain,
% 9.57/2.05      (~ (((!!) @ ((('#S') @ ((('#B') @ (=>) @ 
% 9.57/2.05                               ((('#C') @ is_of @ 
% 9.57/2.05                                 ((('#C') @ in @ 
% 9.57/2.05                                   (d_Sep @ omega @ 
% 9.57/2.05                                    ((('#C') @ (!=) @ emptyset))))))))) @ 
% 9.57/2.05                    ((('#B') @ (all_of @ 
% 9.57/2.05                                ((('#C') @ in @ 
% 9.57/2.05                                  (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) @ 
% 9.57/2.05                      ((('#S') @ ((('#B') @ ('#S') @ 
% 9.57/2.05                                   ((('#B') @ ((('#B') @ (=>))) @ 
% 9.57/2.05                                     ((('#B') @ ((('#B') @ d_not)) @ moreis)))))) @ 
% 9.57/2.05                        iii))))))))),
% 9.57/2.05      inference('comb-normalize', [status(thm)], [zip_derived_cl174])).
% 9.57/2.05  thf(zip_derived_cl176, plain,
% 9.57/2.05      (~ (((is_of @ '#sk2' @ 
% 9.57/2.05           ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) =>
% 9.57/2.05           (all_of @ 
% 9.57/2.05           ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))) @ 
% 9.57/2.05           ((('#S') @ ((('#B') @ (=>) @ ((('#B') @ d_not @ (moreis @ '#sk2'))))) @ 
% 9.57/2.05             (iii @ '#sk2'))))))),
% 9.57/2.05      inference('lazy_cnf_exists', [status(thm)], [zip_derived_cl175])).
% 9.57/2.05  thf(def_is_of, axiom,(( is_of @ (X1)@ (X0)) = ((X0 @ X1)))).
% 9.57/2.05  thf('2', plain,
% 9.57/2.05      (![X0:( $i > $o ),X1:$i]: ( ( is_of @ X1 @ X0 ) = ( X0 @ X1 ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(zip_derived_cl177, plain,
% 9.57/2.05      (~ (((in @ '#sk2' @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))) =>
% 9.57/2.05           (all_of @ 
% 9.57/2.05           ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))) @ 
% 9.57/2.05           ((('#S') @ ((('#B') @ (=>) @ ((('#B') @ d_not @ (moreis @ '#sk2'))))) @ 
% 9.57/2.05             (iii @ '#sk2'))))))),
% 9.57/2.05      inference('rw', [status(thm)], [zip_derived_cl176, '2'])).
% 9.57/2.05  thf(zip_derived_cl179, plain,
% 9.57/2.05      (~ (all_of @ 
% 9.57/2.05          ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))) @ 
% 9.57/2.05          ((('#S') @ ((('#B') @ (=>) @ ((('#B') @ d_not @ (moreis @ '#sk2'))))) @ 
% 9.57/2.05            (iii @ '#sk2'))))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl177])).
% 9.57/2.05  thf(zip_derived_cl180, plain,
% 9.57/2.05      (~ (((!!) @ (^[Y0 : $i]:
% 9.57/2.05                     (((is_of @ Y0 @ 
% 9.57/2.05                       ((('#C') @ in @ 
% 9.57/2.05                         (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) =>
% 9.57/2.05                       ((('#S') @ ((('#B') @ (=>) @ 
% 9.57/2.05                                    ((('#B') @ d_not @ (moreis @ '#sk2'))))) @ 
% 9.57/2.05                         (iii @ '#sk2') @ Y0)))))))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl179, '1'])).
% 9.57/2.05  thf(zip_derived_cl181, plain,
% 9.57/2.05      (~ (((!!) @ ((('#S') @ ((('#B') @ (=>) @ 
% 9.57/2.05                               ((('#C') @ is_of @ 
% 9.57/2.05                                 ((('#C') @ in @ 
% 9.57/2.05                                   (d_Sep @ omega @ 
% 9.57/2.05                                    ((('#C') @ (!=) @ emptyset))))))))) @ 
% 9.57/2.05                    ((('#S') @ ((('#B') @ (=>) @ 
% 9.57/2.05                                 ((('#B') @ d_not @ (moreis @ '#sk2'))))) @ 
% 9.57/2.05                      (iii @ '#sk2')))))))),
% 9.57/2.05      inference('comb-normalize', [status(thm)], [zip_derived_cl180])).
% 9.57/2.05  thf(zip_derived_cl182, plain,
% 9.57/2.05      (~ (((is_of @ '#sk3' @ 
% 9.57/2.05           ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) =>
% 9.57/2.05           (((d_not @ (moreis @ '#sk2' @ '#sk3')) => (iii @ '#sk2' @ '#sk3')))))),
% 9.57/2.05      inference('lazy_cnf_exists', [status(thm)], [zip_derived_cl181])).
% 9.57/2.05  thf(def_d_not, axiom,(( d_not @ (X0)) = ((imp @ X0 @ ($false))))).
% 9.57/2.05  thf('3', plain, (![X0:$o]: ( ( d_not @ X0 ) = ( imp @ X0 @ $false ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(def_l_or, axiom,(( l_or @ (X0)@ (X1)) = ((imp @ (d_not @ X0) @ X1)))).
% 9.57/2.05  thf('4', plain,
% 9.57/2.05      (![X1:$o,X0:$o]: ( ( l_or @ X0 @ X1 ) = ( imp @ ( d_not @ X0 ) @ X1 ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(def_e_is, axiom,(( e_is @ (X2)@ (X0)@ (X1)) = ((((X0) = (X1)))))).
% 9.57/2.05  thf('5', plain,
% 9.57/2.05      (![X2:$i,X1:$i,X0:$i]: ( ( e_is @ X2 @ X0 @ X1 ) = ( ( X0 ) = ( X1 ) ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(def_n_is, axiom,(( n_is @ (X0)@ (X1)) = ((e_is @ nat @ X0 @ X1)))).
% 9.57/2.05  thf('6', plain,
% 9.57/2.05      (![X1:$i,X0:$i]: ( ( n_is @ X0 @ X1 ) = ( e_is @ nat @ X0 @ X1 ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(def_n_some, axiom,(( n_some @ (X0)) = ((l_some @ nat @ X0)))).
% 9.57/2.05  thf('7', plain,
% 9.57/2.05      (![X0:( $i > $o )]: ( ( n_some @ X0 ) = ( l_some @ nat @ X0 ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(def_d_29_ii, axiom,(( d_29_ii @ (X0)@ (X1)) =
% 9.57/2.05    ((n_some @ (diffprop @ X0 @ X1))))).
% 9.57/2.05  thf('8', plain,
% 9.57/2.05      (![X1:$i,X0:$i]:
% 9.57/2.05       ( ( d_29_ii @ X0 @ X1 ) = ( n_some @ ( diffprop @ X0 @ X1 ) ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(def_iii, axiom,(( iii @ (X1)@ (X0)) = ((n_some @ (diffprop @ X0 @ X1))))).
% 9.57/2.05  thf('9', plain,
% 9.57/2.05      (![X1:$i,X0:$i]:
% 9.57/2.05       ( ( iii @ X1 @ X0 ) = ( n_some @ ( diffprop @ X0 @ X1 ) ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(def_moreis, axiom,(( moreis @ (X0)@ (X1)) =
% 9.57/2.05    ((l_or @ (d_29_ii @ X0 @ X1) @ (n_is @ X0 @ X1))))).
% 9.57/2.05  thf('10', plain,
% 9.57/2.05      (![X1:$i,X0:$i]:
% 9.57/2.05       ( ( moreis @ X0 @ X1 ) =
% 9.57/2.05         ( l_or @ ( d_29_ii @ X0 @ X1 ) @ ( n_is @ X0 @ X1 ) ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(zip_derived_cl183, plain,
% 9.57/2.05      (~ (((in @ '#sk3' @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))) =>
% 9.57/2.05           (((imp @ 
% 9.57/2.05             (imp @ 
% 9.57/2.05              (imp @ 
% 9.57/2.05               (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                (diffprop @ '#sk2' @ '#sk3')) @ 
% 9.57/2.05               ($false)) @ 
% 9.57/2.05              ((('#sk2') = ('#sk3')))) @ 
% 9.57/2.05             ($false)) => (l_some @ 
% 9.57/2.05             (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05             (diffprop @ '#sk3' @ '#sk2'))))))),
% 9.57/2.05      inference('rw', [status(thm)],
% 9.57/2.05                [zip_derived_cl182, '2', '3', '3', '4', '5', '0', '6', '7', 
% 9.57/2.05                 '7', '8', '9', '10'])).
% 9.57/2.05  thf(zip_derived_cl185, plain,
% 9.57/2.05      (~ (((imp @ 
% 9.57/2.05           (imp @ 
% 9.57/2.05            (imp @ 
% 9.57/2.05             (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ '#sk2' @ '#sk3')) @ 
% 9.57/2.05             ($false)) @ 
% 9.57/2.05            ((('#sk2') = ('#sk3')))) @ 
% 9.57/2.05           ($false)) => (l_some @ 
% 9.57/2.05           (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05           (diffprop @ '#sk3' @ '#sk2'))))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl183])).
% 9.57/2.05  thf(zip_derived_cl187, plain,
% 9.57/2.05      (~ (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05          (diffprop @ '#sk3' @ '#sk2'))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl185])).
% 9.57/2.05  thf(zip_derived_cl186, plain,
% 9.57/2.05      ( (imp @ 
% 9.57/2.05         (imp @ 
% 9.57/2.05          (imp @ 
% 9.57/2.05           (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05            (diffprop @ '#sk2' @ '#sk3')) @ 
% 9.57/2.05           ($false)) @ 
% 9.57/2.05          ((('#sk2') = ('#sk3')))) @ 
% 9.57/2.05         ($false))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl185])).
% 9.57/2.05  thf(def_imp, axiom, (imp @ X0 @ X1) => ((((X0) => (X1))) = ($true))).
% 9.57/2.05  thf('11', plain,
% 9.57/2.05      (![X0:$o,X1:$o]: ( ( imp @ X0 @ X1 ) <=> ( ( X0 ) => ( X1 ) ) )),
% 9.57/2.05      inference('rw.lit', [status(esa)], [def_imp])).
% 9.57/2.05  thf(zip_derived_cl188, plain,
% 9.57/2.05      ( (((imp @ 
% 9.57/2.05          (imp @ 
% 9.57/2.05           (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05            (diffprop @ '#sk2' @ '#sk3')) @ 
% 9.57/2.05           ($false)) @ 
% 9.57/2.05          ((('#sk2') = ('#sk3')))) => ($false)))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl186, '11'])).
% 9.57/2.05  thf(zip_derived_cl189, plain,
% 9.57/2.05      ( (((~) @ (imp @ 
% 9.57/2.05                 (imp @ 
% 9.57/2.05                  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                   (diffprop @ '#sk2' @ '#sk3')) @ 
% 9.57/2.05                  ($false)) @ 
% 9.57/2.05                 ((('#sk2') = ('#sk3'))))))),
% 9.57/2.05      inference('simplify boolean subterms', [status(thm)], [zip_derived_cl188])).
% 9.57/2.05  thf(zip_derived_cl190, plain,
% 9.57/2.05      (~ (imp @ 
% 9.57/2.05          (imp @ 
% 9.57/2.05           (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05            (diffprop @ '#sk2' @ '#sk3')) @ 
% 9.57/2.05           ($false)) @ 
% 9.57/2.05          ((('#sk2') = ('#sk3'))))),
% 9.57/2.05      inference('simplify nested equalities', [status(thm)],
% 9.57/2.05                [zip_derived_cl189])).
% 9.57/2.05  thf(def_imp, axiom, ~ (imp @ X0 @ X1) => ((((X0) => (X1))) != ($true))).
% 9.57/2.05  thf('12', plain,
% 9.57/2.05      (![X0:$o,X1:$o]: ( ( ~( imp @ X0 @ X1 ) ) <=> ( ~( ( X0 ) => ( X1 ) ) ) )),
% 9.57/2.05      inference('rw.lit', [status(esa)], [def_imp])).
% 9.57/2.05  thf(zip_derived_cl191, plain,
% 9.57/2.05      (~ (((imp @ 
% 9.57/2.05           (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05            (diffprop @ '#sk2' @ '#sk3')) @ 
% 9.57/2.05           ($false)) => ((('#sk2') = ('#sk3')))))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl190, '12'])).
% 9.57/2.05  thf(zip_derived_cl192, plain,
% 9.57/2.05      ( (imp @ 
% 9.57/2.05         (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05          (diffprop @ '#sk2' @ '#sk3')) @ 
% 9.57/2.05         ($false))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl191])).
% 9.57/2.05  thf(zip_derived_cl194, plain,
% 9.57/2.05      ( (((l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05          (diffprop @ '#sk2' @ '#sk3')) => ($false)))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl192, '11'])).
% 9.57/2.05  thf(zip_derived_cl196, plain,
% 9.57/2.05      ( (((~) @ (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                 (diffprop @ '#sk2' @ '#sk3'))))),
% 9.57/2.05      inference('simplify boolean subterms', [status(thm)], [zip_derived_cl194])).
% 9.57/2.05  thf(zip_derived_cl197, plain,
% 9.57/2.05      (~ (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05          (diffprop @ '#sk2' @ '#sk3'))),
% 9.57/2.05      inference('simplify nested equalities', [status(thm)],
% 9.57/2.05                [zip_derived_cl196])).
% 9.57/2.05  thf(satz10e, axiom,
% 9.57/2.05    (all_of @
% 9.57/2.05     ( ^[X0:$i]: ( in @ X0 @ nat ) ) @ 
% 9.57/2.05     ( ^[X0:$i]:
% 9.57/2.05       ( all_of @
% 9.57/2.05         ( ^[X1:$i]: ( in @ X1 @ nat ) ) @ 
% 9.57/2.05         ( ^[X1:$i]:
% 9.57/2.05           ( ( d_not @ ( d_29_ii @ X0 @ X1 ) ) => ( lessis @ X0 @ X1 ) ) ) ) ))).
% 9.57/2.05  thf(zip_derived_cl97, plain,
% 9.57/2.05      ( (all_of @ (^[Y0 : $i]: (in @ Y0 @ nat)) @ 
% 9.57/2.05         (^[Y0 : $i]:
% 9.57/2.05            (all_of @ (^[Y1 : $i]: (in @ Y1 @ nat)) @ 
% 9.57/2.05             (^[Y1 : $i]:
% 9.57/2.05                (((d_not @ (d_29_ii @ Y0 @ Y1)) => (lessis @ Y0 @ Y1)))))))),
% 9.57/2.05      inference('cnf', [status(esa)], [satz10e])).
% 9.57/2.05  thf(zip_derived_cl98, plain,
% 9.57/2.05      ( (all_of @ ((('#C') @ in @ nat)) @ 
% 9.57/2.05         ((('#B') @ (all_of @ ((('#C') @ in @ nat))) @ 
% 9.57/2.05           ((('#S') @ ((('#B') @ ('#S') @ 
% 9.57/2.05                        ((('#B') @ ((('#B') @ (=>))) @ 
% 9.57/2.05                          ((('#B') @ ((('#B') @ d_not)) @ d_29_ii)))))) @ 
% 9.57/2.05             lessis)))))),
% 9.57/2.05      inference('lams2combs', [status(thm)], [zip_derived_cl97])).
% 9.57/2.05  thf(zip_derived_cl370, plain,
% 9.57/2.05      ( (all_of @ 
% 9.57/2.05         ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))) @ 
% 9.57/2.05         ((('#B') @ (all_of @ 
% 9.57/2.05                     ((('#C') @ in @ 
% 9.57/2.05                       (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) @ 
% 9.57/2.05           ((('#S') @ ((('#B') @ ('#S') @ 
% 9.57/2.05                        ((('#B') @ ((('#B') @ (=>))) @ 
% 9.57/2.05                          ((('#B') @ ((('#B') @ d_not)) @ d_29_ii)))))) @ 
% 9.57/2.05             lessis)))))),
% 9.57/2.05      inference('rw', [status(thm)], [zip_derived_cl98, '0'])).
% 9.57/2.05  thf(def_all_of, axiom, (all_of @ X0 @ X1) =>
% 9.57/2.05    ((((!!) @ (^[Y0 : $i]: (((is_of @ Y0 @ X0) => (X1 @ Y0)))))) = ($true))).
% 9.57/2.05  thf('13', plain,
% 9.57/2.05      (![X0:( $i > $o ),X1:( $i > $o )]:
% 9.57/2.05       ( ( all_of @ X0 @ X1 ) <=>
% 9.57/2.05         ( ![X6:$i]: ( ( is_of @ X6 @ X0 ) => ( X1 @ X6 ) ) ) )),
% 9.57/2.05      inference('rw.lit', [status(esa)], [def_all_of])).
% 9.57/2.05  thf(zip_derived_cl371, plain,
% 9.57/2.05      ( (((!!) @ (^[Y0 : $i]:
% 9.57/2.05                    (((is_of @ Y0 @ 
% 9.57/2.05                      ((('#C') @ in @ 
% 9.57/2.05                        (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) =>
% 9.57/2.05                      ((('#B') @ (all_of @ 
% 9.57/2.05                                  ((('#C') @ in @ 
% 9.57/2.05                                    (d_Sep @ omega @ 
% 9.57/2.05                                     ((('#C') @ (!=) @ emptyset)))))) @ 
% 9.57/2.05                        ((('#S') @ ((('#B') @ ('#S') @ 
% 9.57/2.05                                     ((('#B') @ ((('#B') @ (=>))) @ 
% 9.57/2.05                                       ((('#B') @ ((('#B') @ d_not)) @ d_29_ii)))))) @ 
% 9.57/2.05                          lessis)) @ 
% 9.57/2.05                        Y0)))))))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl370, '13'])).
% 9.57/2.05  thf(zip_derived_cl372, plain,
% 9.57/2.05      ( (((!!) @ ((('#S') @ ((('#B') @ (=>) @ 
% 9.57/2.05                              ((('#C') @ is_of @ 
% 9.57/2.05                                ((('#C') @ in @ 
% 9.57/2.05                                  (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))))))) @ 
% 9.57/2.05                   ((('#B') @ (all_of @ 
% 9.57/2.05                               ((('#C') @ in @ 
% 9.57/2.05                                 (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) @ 
% 9.57/2.05                     ((('#S') @ ((('#B') @ ('#S') @ 
% 9.57/2.05                                  ((('#B') @ ((('#B') @ (=>))) @ 
% 9.57/2.05                                    ((('#B') @ ((('#B') @ d_not)) @ d_29_ii)))))) @ 
% 9.57/2.05                       lessis))))))))),
% 9.57/2.05      inference('comb-normalize', [status(thm)], [zip_derived_cl371])).
% 9.57/2.05  thf(zip_derived_cl373, plain,
% 9.57/2.05      (![X2 : $i]:
% 9.57/2.05          (((is_of @ X2 @ 
% 9.57/2.05            ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) =>
% 9.57/2.05            (all_of @ 
% 9.57/2.05            ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))) @ 
% 9.57/2.05            ((('#S') @ ((('#B') @ (=>) @ ((('#B') @ d_not @ (d_29_ii @ X2))))) @ 
% 9.57/2.05              (lessis @ X2))))))),
% 9.57/2.05      inference('lazy_cnf_forall', [status(thm)], [zip_derived_cl372])).
% 9.57/2.05  thf(zip_derived_cl374, plain,
% 9.57/2.05      (![X2 : $i]:
% 9.57/2.05          (((in @ X2 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))) =>
% 9.57/2.05            (all_of @ 
% 9.57/2.05            ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))) @ 
% 9.57/2.05            ((('#S') @ ((('#B') @ (=>) @ ((('#B') @ d_not @ (d_29_ii @ X2))))) @ 
% 9.57/2.05              (lessis @ X2))))))),
% 9.57/2.05      inference('rw', [status(thm)], [zip_derived_cl373, '2'])).
% 9.57/2.05  thf(zip_derived_cl375, plain,
% 9.57/2.05      (![X2 : $i]:
% 9.57/2.05         (~ (in @ X2 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (all_of @ 
% 9.57/2.05              ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))) @ 
% 9.57/2.05              ((('#S') @ ((('#B') @ (=>) @ ((('#B') @ d_not @ (d_29_ii @ X2))))) @ 
% 9.57/2.05                (lessis @ X2)))))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl374])).
% 9.57/2.05  thf(zip_derived_cl376, plain,
% 9.57/2.05      (![X0 : $i]:
% 9.57/2.05         ( (((!!) @ (^[Y0 : $i]:
% 9.57/2.05                       (((is_of @ Y0 @ 
% 9.57/2.05                         ((('#C') @ in @ 
% 9.57/2.05                           (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) =>
% 9.57/2.05                         ((('#S') @ ((('#B') @ (=>) @ 
% 9.57/2.05                                      ((('#B') @ d_not @ (d_29_ii @ X0))))) @ 
% 9.57/2.05                           (lessis @ X0) @ Y0)))))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl375, '13'])).
% 9.57/2.05  thf(zip_derived_cl377, plain,
% 9.57/2.05      (![X0 : $i]:
% 9.57/2.05         ( (((!!) @ ((('#S') @ ((('#B') @ (=>) @ 
% 9.57/2.05                                 ((('#C') @ is_of @ 
% 9.57/2.05                                   ((('#C') @ in @ 
% 9.57/2.05                                     (d_Sep @ omega @ 
% 9.57/2.05                                      ((('#C') @ (!=) @ emptyset))))))))) @ 
% 9.57/2.05                      ((('#S') @ ((('#B') @ (=>) @ 
% 9.57/2.05                                   ((('#B') @ d_not @ (d_29_ii @ X0))))) @ 
% 9.57/2.05                        (lessis @ X0)))))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('comb-normalize', [status(thm)], [zip_derived_cl376])).
% 9.57/2.05  thf(zip_derived_cl378, plain,
% 9.57/2.05      (![X0 : $i, X2 : $i]:
% 9.57/2.05         ( (((is_of @ X2 @ 
% 9.57/2.05             ((('#C') @ in @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))) =>
% 9.57/2.05             (((d_not @ (d_29_ii @ X0 @ X2)) => (lessis @ X0 @ X2)))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('lazy_cnf_forall', [status(thm)], [zip_derived_cl377])).
% 9.57/2.05  thf(def_lessis, axiom,(( lessis @ (X0)@ (X1)) =
% 9.57/2.05    ((l_or @ (iii @ X0 @ X1) @ (n_is @ X0 @ X1))))).
% 9.57/2.05  thf('14', plain,
% 9.57/2.05      (![X1:$i,X0:$i]:
% 9.57/2.05       ( ( lessis @ X0 @ X1 ) =
% 9.57/2.05         ( l_or @ ( iii @ X0 @ X1 ) @ ( n_is @ X0 @ X1 ) ) )),
% 9.57/2.05      define([status(thm)])).
% 9.57/2.05  thf(zip_derived_cl379, plain,
% 9.57/2.05      (![X0 : $i, X2 : $i]:
% 9.57/2.05         ( (((in @ X2 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))) =>
% 9.57/2.05             (((imp @ 
% 9.57/2.05               (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                (diffprop @ X0 @ X2)) @ 
% 9.57/2.05               ($false)) => (imp @ 
% 9.57/2.05               (imp @ 
% 9.57/2.05                (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                 (diffprop @ X2 @ X0)) @ 
% 9.57/2.05                ($false)) @ 
% 9.57/2.05               (((X0) = (X2))))))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('rw', [status(thm)],
% 9.57/2.05                [zip_derived_cl378, '2', '3', '3', '4', '5', '0', '6', '7', 
% 9.57/2.05                 '7', '8', '9', '14'])).
% 9.57/2.05  thf(zip_derived_cl380, plain,
% 9.57/2.05      (![X0 : $i, X2 : $i]:
% 9.57/2.05         (~ (in @ X2 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (((imp @ 
% 9.57/2.05               (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                (diffprop @ X0 @ X2)) @ 
% 9.57/2.05               ($false)) => (imp @ 
% 9.57/2.05               (imp @ 
% 9.57/2.05                (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                 (diffprop @ X2 @ X0)) @ 
% 9.57/2.05                ($false)) @ 
% 9.57/2.05               (((X0) = (X2))))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl379])).
% 9.57/2.05  thf(zip_derived_cl381, plain,
% 9.57/2.05      (![X0 : $i, X2 : $i]:
% 9.57/2.05         (~ (imp @ 
% 9.57/2.05             (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X0 @ X2)) @ 
% 9.57/2.05             ($false))
% 9.57/2.05          |  (imp @ 
% 9.57/2.05              (imp @ 
% 9.57/2.05               (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                (diffprop @ X2 @ X0)) @ 
% 9.57/2.05               ($false)) @ 
% 9.57/2.05              (((X0) = (X2))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X2 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl380])).
% 9.57/2.05  thf(zip_derived_cl382, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         (~ (((l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X1 @ X0)) => ($false)))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (imp @ 
% 9.57/2.05              (imp @ 
% 9.57/2.05               (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                (diffprop @ X0 @ X1)) @ 
% 9.57/2.05               ($false)) @ 
% 9.57/2.05              (((X1) = (X0)))))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl381, '12'])).
% 9.57/2.05  thf(zip_derived_cl383, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         (~ (((~) @ (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                     (diffprop @ X1 @ X0))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (imp @ 
% 9.57/2.05              (imp @ 
% 9.57/2.05               (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                (diffprop @ X0 @ X1)) @ 
% 9.57/2.05               ($false)) @ 
% 9.57/2.05              (((X1) = (X0)))))),
% 9.57/2.05      inference('simplify boolean subterms', [status(thm)], [zip_derived_cl382])).
% 9.57/2.05  thf(zip_derived_cl384, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         ( (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05            (diffprop @ X1 @ X0))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (imp @ 
% 9.57/2.05              (imp @ 
% 9.57/2.05               (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                (diffprop @ X0 @ X1)) @ 
% 9.57/2.05               ($false)) @ 
% 9.57/2.05              (((X1) = (X0)))))),
% 9.57/2.05      inference('simplify nested equalities', [status(thm)],
% 9.57/2.05                [zip_derived_cl383])).
% 9.57/2.05  thf(zip_derived_cl385, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         ( (((imp @ 
% 9.57/2.05             (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X1 @ X0)) @ 
% 9.57/2.05             ($false)) => (((X0) = (X1)))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X0 @ X1)))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl384, '11'])).
% 9.57/2.05  thf(zip_derived_cl386, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         (~ (imp @ 
% 9.57/2.05             (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X1 @ X0)) @ 
% 9.57/2.05             ($false))
% 9.57/2.05          |  (((X0) = (X1)))
% 9.57/2.05          |  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X0 @ X1))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl385])).
% 9.57/2.05  thf(zip_derived_cl387, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         (~ (imp @ 
% 9.57/2.05             (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X1 @ X0)) @ 
% 9.57/2.05             ($false))
% 9.57/2.05          | ((X0) = (X1))
% 9.57/2.05          |  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X0 @ X1))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('simplify nested equalities', [status(thm)],
% 9.57/2.05                [zip_derived_cl386])).
% 9.57/2.05  thf(zip_derived_cl388, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         (~ (((l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X1 @ X0)) => ($false)))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X0 @ X1))
% 9.57/2.05          | ((X0) = (X1)))),
% 9.57/2.05      inference('rw_clause', [status(thm)], [zip_derived_cl387, '12'])).
% 9.57/2.05  thf(zip_derived_cl389, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         (~ (((~) @ (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05                     (diffprop @ X1 @ X0))))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X0 @ X1))
% 9.57/2.05          | ((X0) = (X1)))),
% 9.57/2.05      inference('simplify boolean subterms', [status(thm)], [zip_derived_cl388])).
% 9.57/2.05  thf(zip_derived_cl390, plain,
% 9.57/2.05      (![X0 : $i, X1 : $i]:
% 9.57/2.05         ( (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05            (diffprop @ X1 @ X0))
% 9.57/2.05          | ~ (in @ X0 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          | ~ (in @ X1 @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05          |  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05              (diffprop @ X0 @ X1))
% 9.57/2.05          | ((X0) = (X1)))),
% 9.57/2.05      inference('simplify nested equalities', [status(thm)],
% 9.57/2.05                [zip_derived_cl389])).
% 9.57/2.05  thf(zip_derived_cl1911, plain,
% 9.57/2.05      (((('#sk3') = ('#sk2'))
% 9.57/2.05        |  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05            (diffprop @ '#sk3' @ '#sk2'))
% 9.57/2.05        | ~ (in @ '#sk2' @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))
% 9.57/2.05        | ~ (in @ '#sk3' @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset)))))),
% 9.57/2.05      inference('sup+', [status(thm)], [zip_derived_cl197, zip_derived_cl390])).
% 9.57/2.05  thf(zip_derived_cl178, plain,
% 9.57/2.05      ( (in @ '#sk2' @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl177])).
% 9.57/2.05  thf(zip_derived_cl184, plain,
% 9.57/2.05      ( (in @ '#sk3' @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl183])).
% 9.57/2.05  thf(zip_derived_cl1931, plain,
% 9.57/2.05      (((('#sk3') = ('#sk2'))
% 9.57/2.05        |  (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05            (diffprop @ '#sk3' @ '#sk2')))),
% 9.57/2.05      inference('demod', [status(thm)],
% 9.57/2.05                [zip_derived_cl1911, zip_derived_cl178, zip_derived_cl184])).
% 9.57/2.05  thf(zip_derived_cl193, plain, (~ ((('#sk2') = ('#sk3')))),
% 9.57/2.05      inference('lazy_cnf_imply', [status(thm)], [zip_derived_cl191])).
% 9.57/2.05  thf(zip_derived_cl195, plain, ((('#sk2') != ('#sk3'))),
% 9.57/2.05      inference('simplify nested equalities', [status(thm)],
% 9.57/2.05                [zip_derived_cl193])).
% 9.57/2.05  thf(zip_derived_cl1932, plain,
% 9.57/2.05      ( (l_some @ (d_Sep @ omega @ ((('#C') @ (!=) @ emptyset))) @ 
% 9.57/2.05         (diffprop @ '#sk3' @ '#sk2'))),
% 9.57/2.05      inference('simplify_reflect-', [status(thm)],
% 9.57/2.06                [zip_derived_cl1931, zip_derived_cl195])).
% 9.57/2.06  thf(zip_derived_cl1974, plain, ($false),
% 9.57/2.06      inference('demod', [status(thm)], [zip_derived_cl187, zip_derived_cl1932])).
% 9.57/2.06  
% 9.57/2.06  % SZS output end Refutation
% 9.57/2.06  
% 9.57/2.06  
% 9.57/2.06  % Terminating...
% 9.95/2.20  % Runner terminated.
% 9.95/2.22  % Zipperpin 1.5 exiting
%------------------------------------------------------------------------------