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cvc5---1.3.4.THM-Prf.s

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%------------------------------------------------------------------------------
% File     : cvc5---1.3.4
% Problem  : NUM620+1 : TPTP v9.2.1. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : /export/starexec/sandbox2/solver/bin/do_cvc5 /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM

% Computer : n007.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 : Wed Jun  3 08:40:02 AM UTC 2026

% Result   : Theorem 39.03s 39.25s
% Output   : Proof 39.03s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.12  % Problem  : NUM620+1 : TPTP v9.2.1. Released v4.0.0.
% 0.12/0.13  % Command  : /export/starexec/sandbox2/solver/bin/do_cvc5 /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% 0.17/0.34  % Computer : n007.cluster.edu
% 0.17/0.34  % Model    : x86_64 x86_64
% 0.17/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.17/0.34  % Memory   : 8042.1875MB
% 0.17/0.34  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.17/0.34  % CPULimit : 300
% 0.17/0.34  % WCLimit  : 300
% 0.17/0.34  % DateTime : Tue Jun  2 11:36:26 EDT 2026
% 0.17/0.34  % CPUTime  : 
% 0.26/0.52  %----Proving TF0_NAR, FOF, or CNF
% 39.03/39.25  --- Run --decision=internal --simplification=none --no-inst-no-entail --no-cbqi --full-saturate-quant at 15...
% 39.03/39.25  --- Run --no-e-matching --full-saturate-quant at 6...
% 39.03/39.25  --- Run --no-e-matching --enum-inst-sum --full-saturate-quant at 6...
% 39.03/39.25  --- Run --finite-model-find --uf-ss=no-minimal at 6...
% 39.03/39.25  --- Run --multi-trigger-when-single --full-saturate-quant at 30...
% 39.03/39.25  % SZS status Theorem
% 39.03/39.25  % SZS output start Proof
% 39.03/39.25  (
% 39.03/39.25  (declare-sort $$unsorted 0)
% 39.03/39.25  (declare-const tptp.xx $$unsorted)
% 39.03/39.25  (declare-const tptp.xn $$unsorted)
% 39.03/39.25  (declare-const tptp.xp $$unsorted)
% 39.03/39.25  (declare-const tptp.xQ $$unsorted)
% 39.03/39.25  (declare-const tptp.xe $$unsorted)
% 39.03/39.25  (declare-const tptp.xP $$unsorted)
% 39.03/39.25  (declare-const tptp.xC $$unsorted)
% 39.03/39.25  (declare-const tptp.xN $$unsorted)
% 39.03/39.25  (declare-const tptp.sz00 $$unsorted)
% 39.03/39.25  (declare-const tptp.xc $$unsorted)
% 39.03/39.25  (declare-const tptp.aFunction0 (-> $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.szNzAzT0 $$unsorted)
% 39.03/39.25  (declare-const tptp.aElementOf0 (-> $$unsorted $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.xd $$unsorted)
% 39.03/39.25  (declare-const tptp.xk $$unsorted)
% 39.03/39.25  (declare-const tptp.sdtmndt0 (-> $$unsorted $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.sdtexdt0 (-> $$unsorted $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.sdtlseqdt0 (-> $$unsorted $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.sdtpldt0 (-> $$unsorted $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.isCountable0 (-> $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.isFinite0 (-> $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.aElement0 (-> $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.aSet0 (-> $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.iLess0 (-> $$unsorted $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.sbrdtbr0 (-> $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.szmzizndt0 (-> $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.sdtlpdtrp0 (-> $$unsorted $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.szszuzczcdt0 (-> $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.aSubsetOf0 (-> $$unsorted $$unsorted Bool))
% 39.03/39.25  (declare-const tptp.szDzizrdt0 (-> $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.xm $$unsorted)
% 39.03/39.25  (declare-const tptp.xK $$unsorted)
% 39.03/39.25  (declare-const tptp.szmzazxdt0 (-> $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.xT $$unsorted)
% 39.03/39.25  (declare-const tptp.slbdtrb0 (-> $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.xO $$unsorted)
% 39.03/39.25  (declare-const tptp.slbdtsldtrb0 (-> $$unsorted $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.xS $$unsorted)
% 39.03/39.25  (declare-const tptp.szDzozmdt0 (-> $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.slcrc0 $$unsorted)
% 39.03/39.25  (declare-const tptp.sdtlbdtrb0 (-> $$unsorted $$unsorted $$unsorted))
% 39.03/39.25  (declare-const tptp.sdtlcdtrc0 (-> $$unsorted $$unsorted $$unsorted))
% 39.03/39.25  (define @t1 () (@var "W0" $$unsorted))
% 39.03/39.25  (define @t2 () (tptp.aSet0 @t1))
% 39.03/39.25  (define @t3 () (@list @t1))
% 39.03/39.25  (define @t4 () (tptp.aElement0 @t1))
% 39.03/39.25  (define @t5 () (@var "W1" $$unsorted))
% 39.03/39.25  (define @t6 () (tptp.aElement0 @t5))
% 39.03/39.25  (define @t7 () (tptp.aElementOf0 @t5 @t1))
% 39.03/39.25  (define @t8 () (@list @t5))
% 39.03/39.25  (define @t9 () (tptp.isFinite0 @t1))
% 39.03/39.25  (define @t10 () (exists @t8 @t7))
% 39.03/39.25  (define @t11 () (not @t10))
% 39.03/39.25  (define @t12 () (and @t2 @t11))
% 39.03/39.25  (define @t13 () (= @t1 tptp.slcrc0))
% 39.03/39.25  (define @t14 () (= @t13 @t12))
% 39.03/39.25  (define @t15 () (forall @t3 @t14))
% 39.03/39.25  (define @t16 () (tptp.isCountable0 @t1))
% 39.03/39.25  (define @t17 () (not @t9))
% 39.03/39.25  (define @t18 () (and @t2 @t16))
% 39.03/39.25  (define @t19 () (not @t13))
% 39.03/39.25  (define @t20 () (forall @t3 (=> @t18 @t19)))
% 39.03/39.25  (define @t21 () (@var "W2" $$unsorted))
% 39.03/39.25  (define @t22 () (tptp.aElementOf0 @t21 @t1))
% 39.03/39.25  (define @t23 () (tptp.aElementOf0 @t21 @t5))
% 39.03/39.25  (define @t24 () (@list @t21))
% 39.03/39.25  (define @t25 () (forall @t24 (=> @t23 @t22)))
% 39.03/39.25  (define @t26 () (tptp.aSet0 @t5))
% 39.03/39.25  (define @t27 () (and @t26 @t25))
% 39.03/39.25  (define @t28 () (tptp.aSubsetOf0 @t5 @t1))
% 39.03/39.25  (define @t29 () (= @t28 @t27))
% 39.03/39.25  (define @t30 () (forall @t8 @t29))
% 39.03/39.25  (define @t31 () (=> @t2 @t30))
% 39.03/39.25  (define @t32 () (forall @t3 @t31))
% 39.03/39.25  (define @t33 () (tptp.isFinite0 @t5))
% 39.03/39.25  (define @t34 () (and @t2 @t9))
% 39.03/39.25  (define @t35 () (= @t1 @t5))
% 39.03/39.25  (define @t36 () (tptp.aSubsetOf0 @t1 @t5))
% 39.03/39.25  (define @t37 () (@list @t1 @t5))
% 39.03/39.25  (define @t38 () (tptp.aSubsetOf0 @t5 @t21))
% 39.03/39.25  (define @t39 () (tptp.aSet0 @t21))
% 39.03/39.25  (define @t40 () (@list @t1 @t5 @t21))
% 39.03/39.25  (define @t41 () (@var "W3" $$unsorted))
% 39.03/39.25  (define @t42 () (= @t41 @t5))
% 39.03/39.25  (define @t43 () (tptp.aElementOf0 @t41 @t1))
% 39.03/39.25  (define @t44 () (tptp.aElement0 @t41))
% 39.03/39.25  (define @t45 () (tptp.aElementOf0 @t41 @t21))
% 39.03/39.25  (define @t46 () (@list @t41))
% 39.03/39.25  (define @t47 () (tptp.sdtpldt0 @t1 @t5))
% 39.03/39.25  (define @t48 () (and @t2 @t6))
% 39.03/39.25  (define @t49 () (tptp.sdtmndt0 @t1 @t5))
% 39.03/39.25  (define @t50 () (tptp.sdtpldt0 @t5 @t1))
% 39.03/39.25  (define @t51 () (tptp.isCountable0 @t5))
% 39.03/39.25  (define @t52 () (and @t26 @t51))
% 39.03/39.25  (define @t53 () (tptp.sdtmndt0 @t5 @t1))
% 39.03/39.25  (define @t54 () (and @t26 @t33))
% 39.03/39.25  (define @t55 () (tptp.aSet0 tptp.szNzAzT0))
% 39.03/39.25  (define @t56 () (tptp.szszuzczcdt0 @t1))
% 39.03/39.25  (define @t57 () (not (= @t56 tptp.sz00)))
% 39.03/39.25  (define @t58 () (tptp.aElementOf0 @t56 tptp.szNzAzT0))
% 39.03/39.25  (define @t59 () (and @t58 @t57))
% 39.03/39.25  (define @t60 () (tptp.aElementOf0 @t1 tptp.szNzAzT0))
% 39.03/39.25  (define @t61 () (=> @t60 @t59))
% 39.03/39.25  (define @t62 () (forall @t3 @t61))
% 39.03/39.25  (define @t63 () (tptp.szszuzczcdt0 @t5))
% 39.03/39.25  (define @t64 () (tptp.aElementOf0 @t5 tptp.szNzAzT0))
% 39.03/39.25  (define @t65 () (and @t60 @t64))
% 39.03/39.25  (define @t66 () (= @t1 tptp.sz00))
% 39.03/39.25  (define @t67 () (tptp.sdtlseqdt0 @t1 @t5))
% 39.03/39.25  (define @t68 () (tptp.sdtlseqdt0 @t5 @t1))
% 39.03/39.25  (define @t69 () (tptp.sdtlseqdt0 @t5 @t21))
% 39.03/39.25  (define @t70 () (tptp.aElementOf0 @t21 tptp.szNzAzT0))
% 39.03/39.25  (define @t71 () (tptp.sbrdtbr0 @t1))
% 39.03/39.25  (define @t72 () (not @t7))
% 39.03/39.25  (define @t73 () (and @t2 @t64))
% 39.03/39.25  (define @t74 () (forall @t24 (=> @t22 @t69)))
% 39.03/39.25  (define @t75 () (and @t7 @t74))
% 39.03/39.25  (define @t76 () (tptp.szmzizndt0 @t1))
% 39.03/39.25  (define @t77 () (= @t5 @t76))
% 39.03/39.25  (define @t78 () (= @t77 @t75))
% 39.03/39.25  (define @t79 () (forall @t8 @t78))
% 39.03/39.25  (define @t80 () (tptp.aSubsetOf0 @t1 tptp.szNzAzT0))
% 39.03/39.25  (define @t81 () (and @t80 @t19))
% 39.03/39.25  (define @t82 () (=> @t81 @t79))
% 39.03/39.25  (define @t83 () (forall @t3 @t82))
% 39.03/39.25  (define @t84 () (tptp.szmzizndt0 @t5))
% 39.03/39.25  (define @t85 () (tptp.aSubsetOf0 @t5 tptp.szNzAzT0))
% 39.03/39.25  (define @t86 () (tptp.slbdtrb0 @t1))
% 39.03/39.25  (define @t87 () (tptp.slbdtrb0 tptp.sz00))
% 39.03/39.25  (define @t88 () (tptp.slbdtrb0 @t5))
% 39.03/39.25  (define @t89 () (tptp.aSubsetOf0 @t41 @t1))
% 39.03/39.25  (define @t90 () (tptp.slbdtsldtrb0 @t1 @t5))
% 39.03/39.25  (define @t91 () (tptp.slbdtsldtrb0 @t5 @t1))
% 39.03/39.25  (define @t92 () (tptp.aFunction0 @t1))
% 39.03/39.25  (define @t93 () (tptp.szDzozmdt0 @t1))
% 39.03/39.25  (define @t94 () (tptp.sdtlpdtrp0 @t1 @t5))
% 39.03/39.25  (define @t95 () (tptp.aElementOf0 @t5 @t93))
% 39.03/39.25  (define @t96 () (tptp.sdtlpdtrp0 @t1 @t41))
% 39.03/39.25  (define @t97 () (tptp.aElementOf0 @t41 @t93))
% 39.03/39.25  (define @t98 () (tptp.sdtlbdtrb0 @t1 @t5))
% 39.03/39.25  (define @t99 () (and @t92 @t6))
% 39.03/39.25  (define @t100 () (@var "W4" $$unsorted))
% 39.03/39.25  (define @t101 () (@list @t100))
% 39.03/39.25  (define @t102 () (tptp.sdtlcdtrc0 @t1 @t5))
% 39.03/39.25  (define @t103 () (tptp.aSubsetOf0 @t5 @t93))
% 39.03/39.25  (define @t104 () (tptp.sdtlcdtrc0 @t1 @t93))
% 39.03/39.25  (define @t105 () (tptp.szDzozmdt0 @t21))
% 39.03/39.25  (define @t106 () (tptp.aFunction0 @t21))
% 39.03/39.25  (define @t107 () (tptp.szDzizrdt0 @t1))
% 39.03/39.25  (define @t108 () (tptp.szDzozmdt0 tptp.xc))
% 39.03/39.25  (define @t109 () (tptp.slbdtsldtrb0 tptp.xS tptp.xK))
% 39.03/39.25  (define @t110 () (@var "W5" $$unsorted))
% 39.03/39.25  (define @t111 () (tptp.sdtlpdtrp0 tptp.xN @t56))
% 39.03/39.25  (define @t112 () (tptp.sdtlpdtrp0 tptp.xN @t1))
% 39.03/39.25  (define @t113 () (tptp.szmzizndt0 @t112))
% 39.03/39.25  (define @t114 () (tptp.sdtmndt0 @t112 @t113))
% 39.03/39.25  (define @t115 () (tptp.isCountable0 @t112))
% 39.03/39.25  (define @t116 () (tptp.aSubsetOf0 @t112 tptp.szNzAzT0))
% 39.03/39.25  (define @t117 () (and @t116 @t115))
% 39.03/39.25  (define @t118 () (tptp.szDzozmdt0 tptp.xN))
% 39.03/39.25  (define @t119 () (forall @t3 (=> @t60 @t117)))
% 39.03/39.25  (define @t120 () (tptp.sdtlpdtrp0 tptp.xN @t5))
% 39.03/39.25  (define @t121 () (tptp.sdtpldt0 @t5 @t113))
% 39.03/39.25  (define @t122 () (tptp.slbdtsldtrb0 @t114 tptp.xk))
% 39.03/39.25  (define @t123 () (and @t26 (tptp.aElementOf0 @t5 @t122)))
% 39.03/39.25  (define @t124 () (tptp.sdtlpdtrp0 tptp.xC @t1))
% 39.03/39.25  (define @t125 () (tptp.sdtlpdtrp0 @t124 @t5))
% 39.03/39.25  (define @t126 () (tptp.szDzozmdt0 @t124))
% 39.03/39.25  (define @t127 () (tptp.aElementOf0 @t5 tptp.xT))
% 39.03/39.25  (define @t128 () (tptp.slbdtsldtrb0 @t111 tptp.xk))
% 39.03/39.25  (define @t129 () (tptp.szDzozmdt0 tptp.xd))
% 39.03/39.25  (define @t130 () (tptp.szDzizrdt0 tptp.xd))
% 39.03/39.25  (define @t131 () (tptp.sdtlbdtrb0 tptp.xd @t130))
% 39.03/39.25  (define @t132 () (tptp.aSet0 tptp.xO))
% 39.03/39.25  (define @t133 () (tptp.szmzizndt0 tptp.xQ))
% 39.03/39.25  (define @t134 () (tptp.aElementOf0 tptp.xn tptp.szNzAzT0))
% 39.03/39.25  (define @t135 () (tptp.sdtlpdtrp0 tptp.xe tptp.xm))
% 39.03/39.25  (define @t136 () (tptp.aElementOf0 tptp.xm tptp.szNzAzT0))
% 39.03/39.25  (define @t137 () (tptp.sdtlpdtrp0 tptp.xN tptp.xm))
% 39.03/39.25  (define @t138 () (tptp.szmzizndt0 @t137))
% 39.03/39.25  (define @t139 () (= tptp.xx @t138))
% 39.03/39.25  (define @t140 () (tptp.szszuzczcdt0 tptp.xn))
% 39.03/39.25  (define @t141 () (tptp.sdtlpdtrp0 tptp.xN @t140))
% 39.03/39.25  (define @t142 () (tptp.aElementOf0 tptp.xx @t141))
% 39.03/39.25  (define @t143 () (tptp.aSubsetOf0 @t137 @t141))
% 39.03/39.25  (define @t144 () (=> @t143 @t142))
% 39.03/39.25  (define @t145 () (not @t144))
% 39.03/39.25  (define @t146 () (not @t60))
% 39.03/39.25  (define @t147 () (or @t146 @t117))
% 39.03/39.25  (define @t148 () (tptp.isCountable0 @t137))
% 39.03/39.25  (define @t149 () (tptp.aSubsetOf0 @t137 @t118))
% 39.03/39.25  (define @t150 () (and @t149 @t148))
% 39.03/39.25  (define @t151 () (tptp.aElementOf0 tptp.xm @t118))
% 39.03/39.25  (define @t152 () (not @t151))
% 39.03/39.25  (define @t153 () (or @t152 @t150))
% 39.03/39.25  (define @t154 () (@list false false))
% 39.03/39.25  (define @t155 () (not @t150))
% 39.03/39.25  (define @t156 () (@list false))
% 39.03/39.25  (define @t157 () (@list @t150))
% 39.03/39.25  (define @t158 () (= @t1 @t87))
% 39.03/39.25  (define @t159 () (forall @t8 @t72))
% 39.03/39.25  (define @t160 () (and @t2 @t159))
% 39.03/39.25  (define @t161 () (= @t13 @t160))
% 39.03/39.25  (define @t162 () (tptp.aSet0 @t87))
% 39.03/39.25  (define @t163 () (and @t162 (forall @t8 (not (tptp.aElementOf0 @t5 @t87)))))
% 39.03/39.25  (define @t164 () (= @t87 @t87))
% 39.03/39.25  (define @t165 () (forall @t3 (= @t160 @t158)))
% 39.03/39.25  (define @t166 () (= @t163 @t164))
% 39.03/39.25  (define @t167 () (tptp.isCountable0 tptp.slcrc0))
% 39.03/39.25  (define @t168 () (not @t167))
% 39.03/39.25  (define @t169 () (tptp.aSet0 tptp.slcrc0))
% 39.03/39.25  (define @t170 () (not @t169))
% 39.03/39.25  (define @t171 () (or @t170 @t168))
% 39.03/39.25  (define @t172 () (not (= tptp.slcrc0 tptp.slcrc0)))
% 39.03/39.25  (define @t173 () (or @t170 @t168 @t172))
% 39.03/39.25  (define @t174 () (not @t16))
% 39.03/39.25  (define @t175 () (not @t2))
% 39.03/39.25  (define @t176 () (or @t19 @t175 @t174 @t19))
% 39.03/39.25  (define @t177 () (or @t175 @t174 @t19))
% 39.03/39.25  (define @t178 () (tptp.isCountable0 @t87))
% 39.03/39.25  (define @t179 () (not @t178))
% 39.03/39.25  (define @t180 () (not @t148))
% 39.03/39.25  (define @t181 () (= @t87 @t137))
% 39.03/39.25  (define @t182 () (not @t181))
% 39.03/39.25  (define @t183 () (@list true false))
% 39.03/39.25  (define @t184 () (@var "BOUND_VARIABLE_8718" $$unsorted))
% 39.03/39.25  (define @t185 () (= @t76 @t184))
% 39.03/39.25  (define @t186 () (not @t22))
% 39.03/39.25  (define @t187 () (and (tptp.aElementOf0 @t184 @t1) (forall @t24 (or @t186 (tptp.sdtlseqdt0 @t184 @t21)))))
% 39.03/39.25  (define @t188 () (= @t187 @t185))
% 39.03/39.25  (define @t189 () (not @t80))
% 39.03/39.25  (define @t190 () (or @t189 @t13 @t188))
% 39.03/39.25  (define @t191 () (@list @t1 @t184))
% 39.03/39.25  (define @t192 () (= (= @t184 @t76) @t187))
% 39.03/39.25  (define @t193 () (or @t189 @t13 @t192))
% 39.03/39.25  (define @t194 () (forall @t191 @t193))
% 39.03/39.25  (define @t195 () (@list @t184))
% 39.03/39.25  (define @t196 () (forall @t195 @t193))
% 39.03/39.25  (define @t197 () (forall @t195 @t192))
% 39.03/39.25  (define @t198 () (@list @t5))
% 39.03/39.25  (define @t199 () (or @t189 @t13 @t197))
% 39.03/39.25  (define @t200 () (forall @t8 (= @t77 (and @t7 (forall @t24 (or @t186 @t69))))))
% 39.03/39.25  (define @t201 () (or @t189 @t13 @t200))
% 39.03/39.25  (define @t202 () (not (tptp.aElementOf0 @t21 @t137)))
% 39.03/39.25  (define @t203 () (tptp.aElementOf0 @t135 @t137))
% 39.03/39.25  (define @t204 () (and @t203 (forall @t24 (or @t202 (tptp.sdtlseqdt0 @t135 @t21)))))
% 39.03/39.25  (define @t205 () (= @t135 @t138))
% 39.03/39.25  (define @t206 () (= @t204 (= @t138 @t135)))
% 39.03/39.25  (define @t207 () (not @t149))
% 39.03/39.25  (define @t208 () (or @t207 (= @t137 @t87) @t206))
% 39.03/39.25  (define @t209 () (forall @t191 (or (not (tptp.aSubsetOf0 @t1 @t118)) @t158 @t188)))
% 39.03/39.25  (define @t210 () (= @t205 @t204))
% 39.03/39.25  (define @t211 () (or @t207 @t181 @t210))
% 39.03/39.25  (define @t212 () (@var "BOUND_VARIABLE_8264" $$unsorted))
% 39.03/39.25  (define @t213 () (= (tptp.aSubsetOf0 @t212 @t1) (and (tptp.aSet0 @t212) (forall @t24 (or (not (tptp.aElementOf0 @t21 @t212)) @t22)))))
% 39.03/39.25  (define @t214 () (or @t175 @t213))
% 39.03/39.25  (define @t215 () (@list @t212))
% 39.03/39.25  (define @t216 () (forall @t215 @t214))
% 39.03/39.25  (define @t217 () (forall @t215 @t213))
% 39.03/39.25  (define @t218 () (or @t175 @t217))
% 39.03/39.25  (define @t219 () (forall @t8 (= @t28 (and @t26 (forall @t24 (or (not @t23) @t22))))))
% 39.03/39.25  (define @t220 () (tptp.aElementOf0 @t21 @t141))
% 39.03/39.25  (define @t221 () (tptp.aSet0 @t141))
% 39.03/39.25  (define @t222 () (and @t221 (forall @t24 (or (not @t220) (tptp.aElementOf0 @t21 @t118)))))
% 39.03/39.25  (define @t223 () (tptp.aSubsetOf0 @t141 @t118))
% 39.03/39.25  (define @t224 () (= @t223 @t222))
% 39.03/39.25  (define @t225 () (tptp.aSet0 @t118))
% 39.03/39.25  (define @t226 () (not @t225))
% 39.03/39.25  (define @t227 () (or @t226 @t224))
% 39.03/39.25  (define @t228 () (not (= tptp.sz00 @t56)))
% 39.03/39.25  (define @t229 () (and @t58 @t228))
% 39.03/39.25  (define @t230 () (or @t146 @t229))
% 39.03/39.25  (define @t231 () (tptp.aElementOf0 @t140 @t118))
% 39.03/39.25  (define @t232 () (and @t231 (not (= tptp.sz00 @t140))))
% 39.03/39.25  (define @t233 () (tptp.aElementOf0 tptp.xn @t118))
% 39.03/39.25  (define @t234 () (not @t233))
% 39.03/39.25  (define @t235 () (or @t234 @t232))
% 39.03/39.25  (define @t236 () (and @t223 (tptp.isCountable0 @t141)))
% 39.03/39.25  (define @t237 () (not @t231))
% 39.03/39.25  (define @t238 () (or @t237 @t236))
% 39.03/39.25  (define @t239 () (forall @t24 (or @t202 @t220)))
% 39.03/39.25  (define @t240 () (and (tptp.aSet0 @t137) @t239))
% 39.03/39.25  (define @t241 () (= @t143 @t240))
% 39.03/39.25  (define @t242 () (not @t221))
% 39.03/39.25  (define @t243 () (or @t242 @t241))
% 39.03/39.25  (define @t244 () (tptp.aElementOf0 @t135 @t141))
% 39.03/39.25  (define @t245 () (not @t203))
% 39.03/39.25  (define @t246 () (or @t245 @t244))
% 39.03/39.25  (define @t247 () (not @t204))
% 39.03/39.25  (define @t248 () (not @t210))
% 39.03/39.25  (assume @p1 (forall @t3 (=> @t2 true)))
% 39.03/39.25  (assume @p2 (forall @t3 (=> @t4 true)))
% 39.03/39.25  (assume @p3 (forall @t3 (=> @t2 (forall @t8 (=> @t7 @t6)))))
% 39.03/39.25  (assume @p4 (forall @t3 (=> @t2 (=> @t9 true))))
% 39.03/39.25  (assume @p5 @t15)
% 39.03/39.25  (assume @p6 (tptp.isFinite0 tptp.slcrc0))
% 39.03/39.25  (assume @p7 (forall @t3 (=> @t2 (=> @t16 true))))
% 39.03/39.25  (assume @p8 (forall @t3 (=> @t18 @t17)))
% 39.03/39.25  (assume @p9 @t20)
% 39.03/39.25  (assume @p10 @t32)
% 39.03/39.25  (assume @p11 (forall @t3 (=> @t34 (forall @t8 (=> @t28 @t33)))))
% 39.03/39.25  (assume @p12 (forall @t3 (=> @t2 (tptp.aSubsetOf0 @t1 @t1))))
% 39.03/39.25  (assume @p13 (forall @t37 (=> (and @t2 @t26) (=> (and @t36 @t28) @t35))))
% 39.03/39.25  (assume @p14 (forall @t40 (=> (and @t2 @t26 @t39) (=> (and @t36 @t38) (tptp.aSubsetOf0 @t1 @t21)))))
% 39.03/39.25  (assume @p15 (forall @t37 (=> @t48 (forall @t24 (= (= @t21 @t47) (and @t39 (forall @t46 (= @t45 (and @t44 (or @t43 @t42))))))))))
% 39.03/39.25  (assume @p16 (forall @t37 (=> @t48 (forall @t24 (= (= @t21 @t49) (and @t39 (forall @t46 (= @t45 (and @t44 @t43 (not @t42))))))))))
% 39.03/39.25  (assume @p17 (forall @t3 (=> @t2 (forall @t8 (=> @t7 (= (tptp.sdtpldt0 @t49 @t5) @t1))))))
% 39.03/39.25  (assume @p18 (forall @t37 (=> (and @t4 @t26) (=> (not (tptp.aElementOf0 @t1 @t5)) (= (tptp.sdtmndt0 @t50 @t1) @t5)))))
% 39.03/39.25  (assume @p19 (forall @t3 (=> @t4 (forall @t8 (=> @t52 (tptp.isCountable0 @t50))))))
% 39.03/39.25  (assume @p20 (forall @t3 (=> @t4 (forall @t8 (=> @t52 (tptp.isCountable0 @t53))))))
% 39.03/39.25  (assume @p21 (forall @t3 (=> @t4 (forall @t8 (=> @t54 (tptp.isFinite0 @t50))))))
% 39.03/39.25  (assume @p22 (forall @t3 (=> @t4 (forall @t8 (=> @t54 (tptp.isFinite0 @t53))))))
% 39.03/39.25  (assume @p23 (and @t55 (tptp.isCountable0 tptp.szNzAzT0)))
% 39.03/39.25  (assume @p24 (tptp.aElementOf0 tptp.sz00 tptp.szNzAzT0))
% 39.03/39.25  (assume @p25 @t62)
% 39.03/39.25  (assume @p26 (forall @t37 (=> @t65 (=> (= @t56 @t63) @t35))))
% 39.03/39.25  (assume @p27 (forall @t3 (=> @t60 (or @t66 (exists @t8 (and @t64 (= @t1 @t63)))))))
% 39.03/39.25  (assume @p28 (forall @t3 (=> @t60 (not (= @t1 @t56)))))
% 39.03/39.25  (assume @p29 (forall @t37 (=> @t65 (=> @t67 true))))
% 39.03/39.25  (assume @p30 (forall @t3 (=> @t60 (tptp.sdtlseqdt0 tptp.sz00 @t1))))
% 39.03/39.25  (assume @p31 (forall @t3 (=> @t60 (not (tptp.sdtlseqdt0 @t56 tptp.sz00)))))
% 39.03/39.25  (assume @p32 (forall @t37 (=> @t65 (= @t67 (tptp.sdtlseqdt0 @t56 @t63)))))
% 39.03/39.25  (assume @p33 (forall @t3 (=> @t60 (tptp.sdtlseqdt0 @t1 @t56))))
% 39.03/39.25  (assume @p34 (forall @t3 (=> @t60 (tptp.sdtlseqdt0 @t1 @t1))))
% 39.03/39.25  (assume @p35 (forall @t37 (=> @t65 (=> (and @t67 @t68) @t35))))
% 39.03/39.25  (assume @p36 (forall @t40 (=> (and @t60 @t64 @t70) (=> (and @t67 @t69) (tptp.sdtlseqdt0 @t1 @t21)))))
% 39.03/39.25  (assume @p37 (forall @t37 (=> @t65 (or @t67 (tptp.sdtlseqdt0 @t63 @t1)))))
% 39.03/39.25  (assume @p38 (forall @t37 (=> @t65 (=> (tptp.iLess0 @t1 @t5) true))))
% 39.03/39.25  (assume @p39 (forall @t3 (=> @t60 (tptp.iLess0 @t1 @t56))))
% 39.03/39.25  (assume @p40 (forall @t3 (=> @t2 (tptp.aElement0 @t71))))
% 39.03/39.25  (assume @p41 (forall @t3 (=> @t2 (= (tptp.aElementOf0 @t71 tptp.szNzAzT0) @t9))))
% 39.03/39.25  (assume @p42 (forall @t3 (=> @t2 (= (= @t71 tptp.sz00) @t13))))
% 39.03/39.25  (assume @p43 (forall @t3 (=> @t34 (forall @t8 (=> @t6 (=> @t72 (= (tptp.sbrdtbr0 @t47) (tptp.szszuzczcdt0 @t71))))))))
% 39.03/39.25  (assume @p44 (forall @t3 (=> @t2 (forall @t8 (=> (and @t9 @t7) (= (tptp.szszuzczcdt0 (tptp.sbrdtbr0 @t49)) @t71))))))
% 39.03/39.25  (assume @p45 (forall @t3 (=> @t2 (forall @t8 (=> (and @t9 @t28) (tptp.sdtlseqdt0 (tptp.sbrdtbr0 @t5) @t71))))))
% 39.03/39.25  (assume @p46 (forall @t37 (=> @t73 (=> (and @t9 (tptp.sdtlseqdt0 @t5 @t71)) (exists @t24 (and (tptp.aSubsetOf0 @t21 @t1) (= (tptp.sbrdtbr0 @t21) @t5)))))))
% 39.03/39.25  (assume @p47 @t83)
% 39.03/39.25  (assume @p48 (forall @t3 (=> (and @t80 @t9 @t19) (forall @t8 (= (= @t5 (tptp.szmzazxdt0 @t1)) (and @t7 (forall @t24 (=> @t22 (tptp.sdtlseqdt0 @t21 @t5)))))))))
% 39.03/39.25  (assume @p49 (forall @t37 (=> (and @t80 @t85 @t19 (not (= @t5 tptp.slcrc0))) (=> (and (tptp.aElementOf0 @t76 @t5) (tptp.aElementOf0 @t84 @t1)) (= @t76 @t84)))))
% 39.03/39.25  (assume @p50 (forall @t3 (=> @t60 (forall @t8 (= (= @t5 @t86) (and @t26 (forall @t24 (= @t23 (and @t70 (tptp.sdtlseqdt0 (tptp.szszuzczcdt0 @t21) @t1))))))))))
% 39.03/39.25  (assume @p51 (forall @t3 (=> @t60 (tptp.isFinite0 @t86))))
% 39.03/39.25  (assume @p52 (= @t87 tptp.slcrc0))
% 39.03/39.25  (assume @p53 (forall @t37 (=> @t65 (= (tptp.aElementOf0 @t1 (tptp.slbdtrb0 @t63)) (or (tptp.aElementOf0 @t1 @t88) @t35)))))
% 39.03/39.25  (assume @p54 (forall @t37 (=> @t65 (= @t67 (tptp.aSubsetOf0 @t86 @t88)))))
% 39.03/39.25  (assume @p55 (forall @t3 (=> (and @t80 @t9) (exists @t8 (and @t64 (tptp.aSubsetOf0 @t1 @t88))))))
% 39.03/39.25  (assume @p56 (forall @t3 (=> @t60 (= (tptp.sbrdtbr0 @t86) @t1))))
% 39.03/39.25  (assume @p57 (forall @t37 (=> @t73 (forall @t24 (= (= @t21 @t90) (and @t39 (forall @t46 (= @t45 (and @t89 (= (tptp.sbrdtbr0 @t41) @t5))))))))))
% 39.03/39.25  (assume @p58 (forall @t3 (=> @t34 (forall @t8 (=> @t64 (tptp.isFinite0 @t90))))))
% 39.03/39.25  (assume @p59 (forall @t3 (=> (and @t2 @t17) (forall @t8 (=> @t64 (not (= @t90 tptp.slcrc0)))))))
% 39.03/39.25  (assume @p60 (forall @t3 (=> @t18 (forall @t8 (=> (and @t64 (not (= @t5 tptp.sz00))) (tptp.isCountable0 @t90))))))
% 39.03/39.25  (assume @p61 (forall @t3 (=> @t60 (forall (@list @t5 @t21) (=> (and @t26 @t39 (not @t66)) (=> (and (tptp.aSubsetOf0 @t91 (tptp.slbdtsldtrb0 @t21 @t1)) (not (= @t91 tptp.slcrc0))) @t38))))))
% 39.03/39.25  (assume @p62 (forall @t37 (=> @t73 (forall @t24 (=> (and (tptp.aSubsetOf0 @t21 @t90) (tptp.isFinite0 @t21)) (exists @t46 (and @t89 (tptp.isFinite0 @t41) (tptp.aSubsetOf0 @t21 (tptp.slbdtsldtrb0 @t41 @t5)))))))))
% 39.03/39.25  (assume @p63 (forall @t3 (=> @t92 true)))
% 39.03/39.25  (assume @p64 (forall @t3 (=> @t92 (tptp.aSet0 @t93))))
% 39.03/39.25  (assume @p65 (forall @t3 (=> @t92 (forall @t8 (=> @t95 (tptp.aElement0 @t94))))))
% 39.03/39.25  (assume @p66 (forall @t37 (=> @t99 (forall @t24 (= (= @t21 @t98) (and @t39 (forall @t46 (= @t45 (and @t97 (= @t96 @t5))))))))))
% 39.03/39.25  (assume @p67 (forall @t37 (=> @t99 (tptp.aSubsetOf0 @t98 @t93))))
% 39.03/39.25  (assume @p68 (forall @t3 (=> @t92 (forall @t8 (=> @t103 (forall @t24 (= (= @t21 @t102) (and @t39 (forall @t46 (= @t45 (exists @t101 (and (tptp.aElementOf0 @t100 @t5) (= (tptp.sdtlpdtrp0 @t1 @t100) @t41)))))))))))))
% 39.03/39.25  (assume @p69 (forall @t3 (=> @t92 (forall @t8 (=> @t95 (tptp.aElementOf0 @t94 @t104))))))
% 39.03/39.25  (assume @p70 (forall @t3 (=> @t92 (forall @t8 (=> @t103 (forall @t24 (= (= @t21 (tptp.sdtexdt0 @t1 @t5)) (and @t106 (= @t105 @t5) (forall @t46 (=> (tptp.aElementOf0 @t41 @t5) (= (tptp.sdtlpdtrp0 @t21 @t41) @t96)))))))))))
% 39.03/39.25  (assume @p71 (forall @t3 (=> @t92 (forall @t8 (=> (and @t103 @t51) (=> (forall (@list @t21 @t41) (=> (and (tptp.aElementOf0 @t21 @t93) @t97 (not (= @t21 @t41))) (not (= (tptp.sdtlpdtrp0 @t1 @t21) @t96)))) (tptp.isCountable0 @t102)))))))
% 39.03/39.25  (assume @p72 (forall @t3 (=> @t92 (=> (and (tptp.isCountable0 @t93) (tptp.isFinite0 @t104)) (and (tptp.aElement0 @t107) (tptp.isCountable0 (tptp.sdtlbdtrb0 @t1 @t107)))))))
% 39.03/39.25  (assume @p73 (and (tptp.aSet0 tptp.xT) (tptp.isFinite0 tptp.xT)))
% 39.03/39.25  (assume @p74 (tptp.aElementOf0 tptp.xK tptp.szNzAzT0))
% 39.03/39.25  (assume @p75 (and (tptp.aSubsetOf0 tptp.xS tptp.szNzAzT0) (tptp.isCountable0 tptp.xS)))
% 39.03/39.25  (assume @p76 (and (tptp.aFunction0 tptp.xc) (= @t108 @t109) (tptp.aSubsetOf0 (tptp.sdtlcdtrc0 tptp.xc @t108) tptp.xT)))
% 39.03/39.25  (assume @p77 (forall @t3 (=> @t60 (forall @t8 (=> (and @t85 @t51) (forall @t24 (=> (and @t106 (= @t105 @t91) (tptp.aSubsetOf0 (tptp.sdtlcdtrc0 @t21 @t105) tptp.xT)) (=> (tptp.iLess0 @t1 tptp.xK) (exists @t46 (and (tptp.aElementOf0 @t41 tptp.xT) (exists @t101 (and (tptp.aSubsetOf0 @t100 @t5) (tptp.isCountable0 @t100) (forall (@list @t110) (=> (tptp.aElementOf0 @t110 (tptp.slbdtsldtrb0 @t100 @t1)) (= (tptp.sdtlpdtrp0 @t21 @t110) @t41)))))))))))))))
% 39.03/39.25  (assume @p78 (not (= tptp.xK tptp.sz00)))
% 39.03/39.25  (assume @p79 (and (tptp.aElementOf0 tptp.xk tptp.szNzAzT0) (= (tptp.szszuzczcdt0 tptp.xk) tptp.xK)))
% 39.03/39.25  (assume @p80 (and (tptp.aFunction0 tptp.xN) (= @t118 tptp.szNzAzT0) (= (tptp.sdtlpdtrp0 tptp.xN tptp.sz00) tptp.xS) (forall @t3 (=> @t60 (=> @t117 (and (tptp.aSubsetOf0 @t111 @t114) (tptp.isCountable0 @t111)))))))
% 39.03/39.25  (assume @p81 @t119)
% 39.03/39.25  (assume @p82 (forall @t37 (=> @t65 (=> @t68 (tptp.aSubsetOf0 @t112 @t120)))))
% 39.03/39.25  (assume @p83 (forall @t37 (=> (and @t60 @t64 (not @t35)) (not (= @t113 (tptp.szmzizndt0 @t120))))))
% 39.03/39.25  (assume @p84 (forall @t3 (=> @t60 (forall @t8 (=> @t123 (tptp.aElementOf0 @t121 @t109))))))
% 39.03/39.25  (assume @p85 (and (tptp.aFunction0 tptp.xC) (= (tptp.szDzozmdt0 tptp.xC) tptp.szNzAzT0) (forall @t3 (=> @t60 (and (tptp.aFunction0 @t124) (= @t126 @t122) (forall @t8 (=> @t123 (= @t125 (tptp.sdtlpdtrp0 tptp.xc @t121)))))))))
% 39.03/39.25  (assume @p86 (forall @t3 (=> @t60 (tptp.aSubsetOf0 (tptp.sdtlcdtrc0 @t124 @t126) tptp.xT))))
% 39.03/39.25  (assume @p87 (forall @t3 (=> @t60 (forall @t8 (=> (and (tptp.aSubsetOf0 @t5 @t114) @t51) (forall @t24 (=> (and @t39 (tptp.aElementOf0 @t21 (tptp.slbdtsldtrb0 @t5 tptp.xk))) (tptp.aElementOf0 @t21 @t122))))))))
% 39.03/39.25  (assume @p88 (forall @t3 (=> @t60 (exists @t8 (and @t127 (exists @t24 (and (tptp.aSubsetOf0 @t21 @t114) (tptp.isCountable0 @t21) (forall @t46 (=> (and (tptp.aSet0 @t41) (tptp.aElementOf0 @t41 (tptp.slbdtsldtrb0 @t21 tptp.xk))) (= (tptp.sdtlpdtrp0 @t124 @t41) @t5))))))))))
% 39.03/39.25  (assume @p89 (forall @t3 (=> @t60 (exists @t8 (and @t127 (forall @t24 (=> (and @t39 (tptp.aElementOf0 @t21 @t128)) (= (tptp.sdtlpdtrp0 @t124 @t21) @t5))))))))
% 39.03/39.25  (assume @p90 (and (tptp.aFunction0 tptp.xe) (= (tptp.szDzozmdt0 tptp.xe) tptp.szNzAzT0) (forall @t3 (=> @t60 (= (tptp.sdtlpdtrp0 tptp.xe @t1) @t113)))))
% 39.03/39.25  (assume @p91 (and (tptp.aFunction0 tptp.xd) (= @t129 tptp.szNzAzT0) (forall @t3 (=> @t60 (forall @t8 (=> (and @t26 (tptp.aElementOf0 @t5 @t128)) (= (tptp.sdtlpdtrp0 tptp.xd @t1) @t125)))))))
% 39.03/39.25  (assume @p92 (tptp.aSubsetOf0 (tptp.sdtlcdtrc0 tptp.xd @t129) tptp.xT))
% 39.03/39.25  (assume @p93 (and (tptp.aElementOf0 @t130 tptp.xT) (tptp.isCountable0 @t131)))
% 39.03/39.25  (assume @p94 (and @t132 (= tptp.xO (tptp.sdtlcdtrc0 tptp.xe @t131))))
% 39.03/39.25  (assume @p95 (and @t132 (tptp.isCountable0 tptp.xO)))
% 39.03/39.25  (assume @p96 (forall @t3 (=> (tptp.aElementOf0 @t1 tptp.xO) (exists @t8 (and @t64 (tptp.aElementOf0 @t5 @t131) (= (tptp.sdtlpdtrp0 tptp.xe @t5) @t1))))))
% 39.03/39.25  (assume @p97 (tptp.aSubsetOf0 tptp.xO tptp.xS))
% 39.03/39.25  (assume @p98 (tptp.aElementOf0 tptp.xQ (tptp.slbdtsldtrb0 tptp.xO tptp.xK)))
% 39.03/39.25  (assume @p99 (and (tptp.aSubsetOf0 tptp.xQ tptp.xO) (not (= tptp.xQ tptp.slcrc0))))
% 39.03/39.25  (assume @p100 (tptp.aSubsetOf0 tptp.xQ tptp.szNzAzT0))
% 39.03/39.25  (assume @p101 (tptp.aElementOf0 tptp.xQ @t108))
% 39.03/39.25  (assume @p102 (= tptp.xp @t133))
% 39.03/39.25  (assume @p103 (and (tptp.aSet0 tptp.xP) (= tptp.xP (tptp.sdtmndt0 tptp.xQ @t133))))
% 39.03/39.25  (assume @p104 (tptp.aElementOf0 tptp.xp tptp.xQ))
% 39.03/39.25  (assume @p105 (tptp.aElementOf0 tptp.xp tptp.xO))
% 39.03/39.25  (assume @p106 (tptp.aSubsetOf0 tptp.xP tptp.xQ))
% 39.03/39.25  (assume @p107 (tptp.aSubsetOf0 tptp.xP tptp.xO))
% 39.03/39.25  (assume @p108 (= (tptp.sbrdtbr0 tptp.xP) tptp.xk))
% 39.03/39.25  (assume @p109 (tptp.aElementOf0 tptp.xP (tptp.slbdtsldtrb0 tptp.xO tptp.xk)))
% 39.03/39.25  (assume @p110 (and (tptp.aElementOf0 tptp.xn @t131) @t134 (= (tptp.sdtlpdtrp0 tptp.xe tptp.xn) tptp.xp)))
% 39.03/39.25  (assume @p111 (= (tptp.sdtlpdtrp0 tptp.xd tptp.xn) @t130))
% 39.03/39.25  (assume @p112 (tptp.aElementOf0 tptp.xx tptp.xP))
% 39.03/39.25  (assume @p113 (and (tptp.aElementOf0 tptp.xx tptp.szNzAzT0) (tptp.aElementOf0 tptp.xx tptp.xO)))
% 39.03/39.25  (assume @p114 (and @t136 (= tptp.xx @t135)))
% 39.03/39.25  (assume @p115 @t139)
% 39.03/39.25  (assume @p116 @t145)
% 39.03/39.25  (assume @p117 true)
% 39.03/39.25  (step @p118 :rule refl :args (@t115))
% 39.03/39.25  (step @p119 :rule and_elim :premises (@p80) :args (1))
% 39.03/39.25  (step @p120 :rule symm :premises (@p119))
% 39.03/39.25  (step @p121 :rule refl :args (@t112))
% 39.03/39.25  (step @p122 :rule cong :premises (@p121 @p120) :args (@t116))
% 39.03/39.25  (step @p123 :rule nary_cong :premises (@p122 @p118) :args (@t117))
% 39.03/39.25  (step @p124 :rule refl :args (@t1))
% 39.03/39.25  (step @p125 :rule cong :premises (@p124 @p120) :args (@t60))
% 39.03/39.25  (step @p126 :rule cong :premises (@p125) :args (@t146))
% 39.03/39.25  (step @p127 :rule nary_cong :premises (@p126 @p123) :args (@t147))
% 39.03/39.25  (step @p128 :rule cong :premises (@p127) :args ((forall @t3 @t147)))
% 39.03/39.25  (step @p129 :rule bool-impl-elim :args (@t60 @t117))
% 39.03/39.25  (step @p130 :rule cong :premises (@p129) :args (@t119))
% 39.03/39.25  (step @p131 :rule trans :premises (@p130 @p128))
% 39.03/39.25  (step @p132 :rule eq_resolve :premises (@p81 @p131))
% 39.03/39.25  (step @p133 :rule instantiate :premises (@p132) :args ((@list tptp.xm)))
% 39.03/39.25  (step @p134 :rule refl :args (tptp.xm))
% 39.03/39.25  (step @p135 :rule cong :premises (@p134 @p120) :args (@t136))
% 39.03/39.25  (step @p136 :rule and_elim :premises (@p114) :args (0))
% 39.03/39.25  (step @p137 :rule eq_resolve :premises (@p136 @p135))
% 39.03/39.25  (step @p138 :rule cnf_or_pos :args (@t153))
% 39.03/39.25  (step @p139 :rule reordering :premises (@p138) :args ((or @t152 @t150 (not @t153))))
% 39.03/39.25  (step @p140 :rule chain_m_resolution :premises (@p139 @p137 @p133) :args (@t150 @t154 (@list @t151 @t153)))
% 39.03/39.25  (step @p141 :rule cnf_and_pos :args (@t150 0))
% 39.03/39.25  (step @p142 :rule reordering :premises (@p141) :args ((or @t149 @t155)))
% 39.03/39.25  (step @p143 :rule chain_m_resolution :premises (@p142 @p140) :args (@t149 @t156 @t157))
% 39.03/39.25  (step @p144 :rule cnf_and_pos :args (@t150 1))
% 39.03/39.25  (step @p145 :rule reordering :premises (@p144) :args ((or @t148 @t155)))
% 39.03/39.25  (step @p146 :rule chain_m_resolution :premises (@p145 @p140) :args (@t148 @t156 @t157))
% 39.03/39.25  (step @p147 :rule eq-symm :args (@t158 @t160))
% 39.03/39.25  (step @p148 :rule cong :premises (@p147) :args ((forall @t3 (= @t158 @t160))))
% 39.03/39.25  (step @p149 :rule refl :args (@t160))
% 39.03/39.25  (step @p150 :rule symm :premises (@p52))
% 39.03/39.25  (step @p151 :rule cong :premises (@p124 @p150) :args (@t13))
% 39.03/39.25  (step @p152 :rule cong :premises (@p151 @p149) :args (@t161))
% 39.03/39.25  (step @p153 :rule cong :premises (@p152) :args ((forall @t3 @t161)))
% 39.03/39.25  (step @p154 :rule trans :premises (@p153 @p148))
% 39.03/39.25  (step @p155 :rule bool-double-not-elim :args (@t159))
% 39.03/39.25  (step @p156 :rule exists-elim :args ((= @t10 (not @t159))))
% 39.03/39.25  (step @p157 :rule cong :premises (@p156) :args (@t11))
% 39.03/39.25  (step @p158 :rule trans :premises (@p157 @p155))
% 39.03/39.25  (step @p159 :rule refl :args (@t2))
% 39.03/39.25  (step @p160 :rule nary_cong :premises (@p159 @p158) :args (@t12))
% 39.03/39.25  (step @p161 :rule refl :args (@t13))
% 39.03/39.25  (step @p162 :rule cong :premises (@p161 @p160) :args (@t14))
% 39.03/39.25  (step @p163 :rule cong :premises (@p162) :args (@t15))
% 39.03/39.25  (step @p164 :rule trans :premises (@p163 @p154))
% 39.03/39.25  (step @p165 :rule eq_resolve :premises (@p5 @p164))
% 39.03/39.25  (step @p166 :rule bool-eq-true :args (@t163))
% 39.03/39.25  (step @p167 :rule eq-symm :args (true @t163))
% 39.03/39.25  (step @p168 :rule trans :premises (@p167 @p166))
% 39.03/39.25  (step @p169 :rule refl :args (@t163))
% 39.03/39.25  (step @p170 :rule eq-refl :args (@t87))
% 39.03/39.25  (step @p171 :rule cong :premises (@p170 @p169) :args ((= @t164 @t163)))
% 39.03/39.25  (step @p172 :rule trans :premises (@p171 @p168))
% 39.03/39.25  (step @p173 :rule eq-symm :args (@t163 @t164))
% 39.03/39.25  (step @p174 :rule trans :premises (@p173 @p172))
% 39.03/39.25  (step @p175 :rule refl :args (@t165))
% 39.03/39.25  (step @p176 :rule cong :premises (@p175 @p174) :args ((=> @t165 @t166)))
% 39.03/39.25  (assume-push @p415 @t165)
% 39.03/39.25  (step @p178 :rule instantiate :premises (@p165) :args ((@list @t87)))
% 39.03/39.25  (step-pop @p416 :rule scope :premises (@p178))
% 39.03/39.25  (step @p179 :rule process_scope :premises (@p416) :args (@t166))
% 39.03/39.25  (step @p181 :rule eq_resolve :premises (@p179 @p176))
% 39.03/39.25  (step @p182 :rule implies_elim :premises (@p181))
% 39.03/39.25  (step @p183 :rule chain_m_resolution :premises (@p182 @p165) :args (@t163 @t156 (@list @t165)))
% 39.03/39.25  (step @p184 :rule cnf_and_pos :args (@t163 0))
% 39.03/39.25  (step @p185 :rule reordering :premises (@p184) :args ((or @t162 (not @t163))))
% 39.03/39.25  (step @p186 :rule chain_m_resolution :premises (@p185 @p183) :args (@t162 @t156 (@list @t163)))
% 39.03/39.25  (step @p187 :rule cong :premises (@p150) :args (@t167))
% 39.03/39.25  (step @p188 :rule cong :premises (@p187) :args (@t168))
% 39.03/39.25  (step @p189 :rule cong :premises (@p150) :args (@t169))
% 39.03/39.25  (step @p190 :rule cong :premises (@p189) :args (@t170))
% 39.03/39.25  (step @p191 :rule nary_cong :premises (@p190 @p188) :args (@t171))
% 39.03/39.25  (step @p192 :rule aci_norm :args ((= (or @t170 @t168 false) @t171)))
% 39.03/39.25  (step @p193 :rule evaluate :args ((not true)))
% 39.03/39.25  (step @p194 :rule eq-refl :args (tptp.slcrc0))
% 39.03/39.25  (step @p195 :rule cong :premises (@p194) :args (@t172))
% 39.03/39.25  (step @p196 :rule trans :premises (@p195 @p193))
% 39.03/39.25  (step @p197 :rule refl :args (@t168))
% 39.03/39.25  (step @p198 :rule refl :args (@t170))
% 39.03/39.25  (step @p199 :rule nary_cong :premises (@p198 @p197 @p196) :args (@t173))
% 39.03/39.25  (step @p200 :rule trans :premises (@p199 @p192))
% 39.03/39.25  (step @p201 :rule quant-var-elim-eq :args ((= (forall @t3 @t176) @t173)))
% 39.03/39.25  (step @p202 :rule aci_norm :args ((= @t177 @t176)))
% 39.03/39.25  (step @p203 :rule cong :premises (@p202) :args ((forall @t3 @t177)))
% 39.03/39.25  (step @p204 :rule trans :premises (@p203 @p201))
% 39.03/39.25  (step @p205 :rule trans :premises (@p204 @p200))
% 39.03/39.25  (step @p206 :rule aci_norm :args ((= (or (or @t175 @t174) @t19) @t177)))
% 39.03/39.25  (step @p207 :rule refl :args (@t19))
% 39.03/39.25  (step @p208 :rule bool-and-de-morgan :args (@t2 @t16 true))
% 39.03/39.25  (step @p209 :rule nary_cong :premises (@p208 @p207) :args ((or (not @t18) @t19)))
% 39.03/39.25  (step @p210 :rule trans :premises (@p209 @p206))
% 39.03/39.25  (step @p211 :rule bool-impl-elim :args (@t18 @t19))
% 39.03/39.25  (step @p212 :rule trans :premises (@p211 @p210))
% 39.03/39.25  (step @p213 :rule cong :premises (@p212) :args (@t20))
% 39.03/39.25  (step @p214 :rule trans :premises (@p213 @p205))
% 39.03/39.25  (step @p215 :rule trans :premises (@p214 @p191))
% 39.03/39.25  (step @p216 :rule eq_resolve :premises (@p9 @p215))
% 39.03/39.25  (step @p217 :rule reordering :premises (@p216) :args ((or @t179 (not @t162))))
% 39.03/39.25  (step @p218 :rule chain_m_resolution :premises (@p217 @p186) :args (@t179 @t156 (@list @t162)))
% 39.03/39.25  (step @p219 :rule refl :args (@t180))
% 39.03/39.25  (step @p220 :rule refl :args (@t182))
% 39.03/39.25  (step @p221 :rule bool-double-not-elim :args (@t178))
% 39.03/39.25  (step @p222 :rule nary_cong :premises (@p221 @p220 @p219) :args ((or (not @t179) @t182 @t180)))
% 39.03/39.25  (assume-push @p417 @t179)
% 39.03/39.25  (assume-push @p418 @t181)
% 39.03/39.25  (assume-push @p419 @t148)
% 39.03/39.25  (step @p226 :rule evaluate :args ((= true false)))
% 39.03/39.25  (step @p227 :rule false_intro :premises (@p218))
% 39.03/39.25  (step @p228 :rule symm :premises (@p418))
% 39.03/39.25  (step @p229 :rule cong :premises (@p228) :args (@t148))
% 39.03/39.25  (step @p230 :rule true_intro :premises (@p146))
% 39.03/39.25  (step @p231 :rule symm :premises (@p230))
% 39.03/39.25  (step @p232 :rule trans :premises (@p231 @p229 @p227))
% 39.03/39.25  (step @p233 false :rule eq_resolve :premises (@p232 @p226))
% 39.03/39.25  (step-pop @p420 :rule scope :premises (@p233))
% 39.03/39.25  (step-pop @p421 :rule scope :premises (@p420))
% 39.03/39.25  (step-pop @p422 :rule scope :premises (@p421))
% 39.03/39.25  (step @p234 :rule process_scope :premises (@p422) :args (false))
% 39.03/39.25  (step @p238 :rule not_and :premises (@p234))
% 39.03/39.25  (step @p239 :rule eq_resolve :premises (@p238 @p222))
% 39.03/39.25  (step @p240 :rule reordering :premises (@p239) :args ((or @t178 @t180 @t182)))
% 39.03/39.25  (step @p241 :rule chain_m_resolution :premises (@p240 @p218 @p146) :args (@t182 @t183 (@list @t178 @t148)))
% 39.03/39.25  (step @p242 :rule refl :args (@t188))
% 39.03/39.25  (step @p243 :rule cong :premises (@p124 @p120) :args (@t80))
% 39.03/39.25  (step @p244 :rule cong :premises (@p243) :args (@t189))
% 39.03/39.25  (step @p245 :rule nary_cong :premises (@p244 @p151 @p242) :args (@t190))
% 39.03/39.25  (step @p246 :rule cong :premises (@p245) :args ((forall @t191 @t190)))
% 39.03/39.25  (step @p247 :rule eq-symm :args (@t185 @t187))
% 39.03/39.25  (step @p248 :rule refl :args (@t187))
% 39.03/39.25  (step @p249 :rule eq-symm :args (@t184 @t76))
% 39.03/39.25  (step @p250 :rule cong :premises (@p249 @p248) :args (@t192))
% 39.03/39.25  (step @p251 :rule trans :premises (@p250 @p247))
% 39.03/39.25  (step @p252 :rule refl :args (@t189))
% 39.03/39.25  (step @p253 :rule nary_cong :premises (@p252 @p161 @p251) :args (@t193))
% 39.03/39.25  (step @p254 :rule cong :premises (@p253) :args (@t194))
% 39.03/39.25  (step @p255 :rule quant-merge-prenex :args ((= (forall @t3 @t196) @t194)))
% 39.03/39.25  (step @p256 :rule alpha_equiv :args (@t197 (@list @t184) @t198))
% 39.03/39.25  (step @p257 :rule refl :args (@t13))
% 39.03/39.25  (step @p258 :rule refl :args (@t189))
% 39.03/39.25  (step @p259 :rule nary_cong :premises (@p258 @p257 @p256) :args (@t199))
% 39.03/39.25  (step @p260 :rule quant-miniscope-or :args ((= @t196 @t199)))
% 39.03/39.25  (step @p261 :rule trans :premises (@p260 @p259))
% 39.03/39.25  (step @p262 :rule symm :premises (@p261))
% 39.03/39.25  (step @p263 :rule cong :premises (@p262) :args ((forall @t3 @t201)))
% 39.03/39.25  (step @p264 :rule trans :premises (@p263 @p255))
% 39.03/39.25  (step @p265 :rule trans :premises (@p264 @p254))
% 39.03/39.25  (step @p266 :rule aci_norm :args ((= (or (or @t189 @t13) @t200) @t201)))
% 39.03/39.25  (step @p267 :rule refl :args (@t200))
% 39.03/39.25  (step @p268 :rule bool-double-not-elim :args (@t13))
% 39.03/39.25  (step @p269 :rule nary_cong :premises (@p258 @p268) :args ((or @t189 (not @t19))))
% 39.03/39.25  (step @p270 :rule bool-and-de-morgan :args (@t80 @t19 true))
% 39.03/39.25  (step @p271 :rule trans :premises (@p270 @p269))
% 39.03/39.25  (step @p272 :rule nary_cong :premises (@p271 @p267) :args ((or (not @t81) @t200)))
% 39.03/39.25  (step @p273 :rule trans :premises (@p272 @p266))
% 39.03/39.25  (step @p274 :rule bool-impl-elim :args (@t81 @t200))
% 39.03/39.25  (step @p275 :rule trans :premises (@p274 @p273))
% 39.03/39.25  (step @p276 :rule cong :premises (@p275) :args ((forall @t3 (=> @t81 @t200))))
% 39.03/39.25  (step @p277 :rule trans :premises (@p276 @p265))
% 39.03/39.25  (step @p278 :rule bool-impl-elim :args (@t22 @t69))
% 39.03/39.25  (step @p279 :rule cong :premises (@p278) :args (@t74))
% 39.03/39.25  (step @p280 :rule refl :args (@t7))
% 39.03/39.25  (step @p281 :rule nary_cong :premises (@p280 @p279) :args (@t75))
% 39.03/39.25  (step @p282 :rule refl :args (@t77))
% 39.03/39.25  (step @p283 :rule cong :premises (@p282 @p281) :args (@t78))
% 39.03/39.25  (step @p284 :rule cong :premises (@p283) :args (@t79))
% 39.03/39.25  (step @p285 :rule refl :args (@t81))
% 39.03/39.25  (step @p286 :rule cong :premises (@p285 @p284) :args (@t82))
% 39.03/39.25  (step @p287 :rule cong :premises (@p286) :args (@t83))
% 39.03/39.25  (step @p288 :rule trans :premises (@p287 @p277))
% 39.03/39.25  (step @p289 :rule trans :premises (@p288 @p246))
% 39.03/39.25  (step @p290 :rule eq_resolve :premises (@p47 @p289))
% 39.03/39.25  (step @p291 :rule eq-symm :args (@t204 @t205))
% 39.03/39.25  (step @p292 :rule eq-symm :args (@t138 @t135))
% 39.03/39.25  (step @p293 :rule refl :args (@t204))
% 39.03/39.25  (step @p294 :rule cong :premises (@p293 @p292) :args (@t206))
% 39.03/39.25  (step @p295 :rule trans :premises (@p294 @p291))
% 39.03/39.25  (step @p296 :rule eq-symm :args (@t137 @t87))
% 39.03/39.25  (step @p297 :rule refl :args (@t207))
% 39.03/39.25  (step @p298 :rule nary_cong :premises (@p297 @p296 @p295) :args (@t208))
% 39.03/39.25  (step @p299 :rule refl :args (@t209))
% 39.03/39.25  (step @p300 :rule cong :premises (@p299 @p298) :args ((=> @t209 @t208)))
% 39.03/39.25  (assume-push @p423 @t209)
% 39.03/39.25  (step @p302 :rule instantiate :premises (@p290) :args ((@list @t137 @t135)))
% 39.03/39.25  (step-pop @p424 :rule scope :premises (@p302))
% 39.03/39.25  (step @p303 :rule process_scope :premises (@p424) :args (@t208))
% 39.03/39.25  (step @p305 :rule eq_resolve :premises (@p303 @p300))
% 39.03/39.25  (step @p306 :rule implies_elim :premises (@p305))
% 39.03/39.25  (step @p307 :rule chain_m_resolution :premises (@p306 @p290) :args (@t211 @t156 (@list @t209)))
% 39.03/39.25  (step @p308 :rule quant-merge-prenex :args ((= (forall @t3 @t216) (forall (@list @t1 @t212) @t214))))
% 39.03/39.25  (step @p309 :rule alpha_equiv :args (@t217 (@list @t212) @t198))
% 39.03/39.25  (step @p310 :rule refl :args (@t175))
% 39.03/39.25  (step @p311 :rule nary_cong :premises (@p310 @p309) :args (@t218))
% 39.03/39.25  (step @p312 :rule quant-miniscope-or :args ((= @t216 @t218)))
% 39.03/39.25  (step @p313 :rule trans :premises (@p312 @p311))
% 39.03/39.25  (step @p314 :rule symm :premises (@p313))
% 39.03/39.25  (step @p315 :rule cong :premises (@p314) :args ((forall @t3 (or @t175 @t219))))
% 39.03/39.25  (step @p316 :rule trans :premises (@p315 @p308))
% 39.03/39.25  (step @p317 :rule bool-impl-elim :args (@t2 @t219))
% 39.03/39.25  (step @p318 :rule cong :premises (@p317) :args ((forall @t3 (=> @t2 @t219))))
% 39.03/39.25  (step @p319 :rule trans :premises (@p318 @p316))
% 39.03/39.25  (step @p320 :rule bool-impl-elim :args (@t23 @t22))
% 39.03/39.25  (step @p321 :rule cong :premises (@p320) :args (@t25))
% 39.03/39.25  (step @p322 :rule refl :args (@t26))
% 39.03/39.25  (step @p323 :rule nary_cong :premises (@p322 @p321) :args (@t27))
% 39.03/39.25  (step @p324 :rule refl :args (@t28))
% 39.03/39.25  (step @p325 :rule cong :premises (@p324 @p323) :args (@t29))
% 39.03/39.25  (step @p326 :rule cong :premises (@p325) :args (@t30))
% 39.03/39.25  (step @p327 :rule cong :premises (@p159 @p326) :args (@t31))
% 39.03/39.25  (step @p328 :rule cong :premises (@p327) :args (@t32))
% 39.03/39.25  (step @p329 :rule trans :premises (@p328 @p319))
% 39.03/39.25  (step @p330 :rule eq_resolve :premises (@p10 @p329))
% 39.03/39.25  (step @p331 :rule instantiate :premises (@p330) :args ((@list @t141 @t137)))
% 39.03/39.25  (step @p332 :rule instantiate :premises (@p330) :args ((@list @t118 @t141)))
% 39.03/39.25  (step @p333 :rule cong :premises (@p120) :args (@t55))
% 39.03/39.25  (step @p334 :rule and_elim :premises (@p23) :args (0))
% 39.03/39.25  (step @p335 :rule eq_resolve :premises (@p334 @p333))
% 39.03/39.25  (step @p336 :rule cnf_or_pos :args (@t227))
% 39.03/39.25  (step @p337 :rule reordering :premises (@p336) :args ((or @t226 @t224 (not @t227))))
% 39.03/39.25  (step @p338 :rule chain_m_resolution :premises (@p337 @p335 @p332) :args (@t224 @t154 (@list @t225 @t227)))
% 39.03/39.25  (step @p339 :rule instantiate :premises (@p132) :args ((@list @t140)))
% 39.03/39.25  (step @p340 :rule refl :args (@t228))
% 39.03/39.25  (step @p341 :rule refl :args (@t56))
% 39.03/39.25  (step @p342 :rule cong :premises (@p341 @p120) :args (@t58))
% 39.03/39.25  (step @p343 :rule nary_cong :premises (@p342 @p340) :args (@t229))
% 39.03/39.25  (step @p344 :rule nary_cong :premises (@p126 @p343) :args (@t230))
% 39.03/39.25  (step @p345 :rule cong :premises (@p344) :args ((forall @t3 @t230)))
% 39.03/39.25  (step @p346 :rule bool-impl-elim :args (@t60 @t229))
% 39.03/39.25  (step @p347 :rule cong :premises (@p346) :args ((forall @t3 (=> @t60 @t229))))
% 39.03/39.25  (step @p348 :rule eq-symm :args (@t56 tptp.sz00))
% 39.03/39.25  (step @p349 :rule cong :premises (@p348) :args (@t57))
% 39.03/39.25  (step @p350 :rule refl :args (@t58))
% 39.03/39.25  (step @p351 :rule nary_cong :premises (@p350 @p349) :args (@t59))
% 39.03/39.25  (step @p352 :rule refl :args (@t60))
% 39.03/39.25  (step @p353 :rule cong :premises (@p352 @p351) :args (@t61))
% 39.03/39.25  (step @p354 :rule cong :premises (@p353) :args (@t62))
% 39.03/39.25  (step @p355 :rule trans :premises (@p354 @p347))
% 39.03/39.25  (step @p356 :rule trans :premises (@p355 @p345))
% 39.03/39.25  (step @p357 :rule eq_resolve :premises (@p25 @p356))
% 39.03/39.25  (step @p358 :rule instantiate :premises (@p357) :args ((@list tptp.xn)))
% 39.03/39.25  (step @p359 :rule refl :args (tptp.xn))
% 39.03/39.25  (step @p360 :rule cong :premises (@p359 @p120) :args (@t134))
% 39.03/39.25  (step @p361 :rule and_elim :premises (@p110) :args (1))
% 39.03/39.25  (step @p362 :rule eq_resolve :premises (@p361 @p360))
% 39.03/39.25  (step @p363 :rule cnf_or_pos :args (@t235))
% 39.03/39.25  (step @p364 :rule reordering :premises (@p363) :args ((or @t234 @t232 (not @t235))))
% 39.03/39.25  (step @p365 :rule chain_m_resolution :premises (@p364 @p362 @p358) :args (@t232 @t154 (@list @t233 @t235)))
% 39.03/39.25  (step @p366 :rule cnf_and_pos :args (@t232 0))
% 39.03/39.25  (step @p367 :rule reordering :premises (@p366) :args ((or @t231 (not @t232))))
% 39.03/39.25  (step @p368 :rule chain_m_resolution :premises (@p367 @p365) :args (@t231 @t156 (@list @t232)))
% 39.03/39.25  (step @p369 :rule cnf_or_pos :args (@t238))
% 39.03/39.25  (step @p370 :rule reordering :premises (@p369) :args ((or @t237 @t236 (not @t238))))
% 39.03/39.25  (step @p371 :rule chain_m_resolution :premises (@p370 @p368 @p339) :args (@t236 @t154 (@list @t231 @t238)))
% 39.03/39.25  (step @p372 :rule cnf_and_pos :args (@t236 0))
% 39.03/39.25  (step @p373 :rule reordering :premises (@p372) :args ((or @t223 (not @t236))))
% 39.03/39.25  (step @p374 :rule chain_m_resolution :premises (@p373 @p371) :args (@t223 @t156 (@list @t236)))
% 39.03/39.25  (step @p375 :rule cnf_equiv_pos1 :args (@t224))
% 39.03/39.25  (step @p376 :rule reordering :premises (@p375) :args ((or (not @t223) @t222 (not @t224))))
% 39.03/39.25  (step @p377 :rule chain_m_resolution :premises (@p376 @p374 @p338) :args (@t222 @t154 (@list @t223 @t224)))
% 39.03/39.25  (step @p378 :rule cnf_and_pos :args (@t222 0))
% 39.03/39.25  (step @p379 :rule reordering :premises (@p378) :args ((or @t221 (not @t222))))
% 39.03/39.25  (step @p380 :rule chain_m_resolution :premises (@p379 @p377) :args (@t221 @t156 (@list @t222)))
% 39.03/39.25  (step @p381 :rule cnf_or_pos :args (@t243))
% 39.03/39.25  (step @p382 :rule reordering :premises (@p381) :args ((or @t242 @t241 (not @t243))))
% 39.03/39.25  (step @p383 :rule chain_m_resolution :premises (@p382 @p380 @p331) :args (@t241 @t154 (@list @t221 @t243)))
% 39.03/39.25  (step @p384 :rule refl :args (@t141))
% 39.03/39.25  (step @p385 :rule and_elim :premises (@p114) :args (1))
% 39.03/39.25  (step @p386 :rule cong :premises (@p385 @p384) :args (@t142))
% 39.03/39.25  (step @p387 :rule refl :args (@t143))
% 39.03/39.25  (step @p388 :rule cong :premises (@p387 @p386) :args (@t144))
% 39.03/39.25  (step @p389 :rule cong :premises (@p388) :args (@t145))
% 39.03/39.25  (step @p390 :rule eq_resolve :premises (@p116 @p389))
% 39.03/39.25  (step @p391 :rule not_implies_elim1 :premises (@p390))
% 39.03/39.25  (step @p392 :rule cnf_equiv_pos1 :args (@t241))
% 39.03/39.25  (step @p393 :rule reordering :premises (@p392) :args ((or (not @t143) @t240 (not @t241))))
% 39.03/39.25  (step @p394 :rule chain_m_resolution :premises (@p393 @p391 @p383) :args (@t240 @t154 (@list @t143 @t241)))
% 39.03/39.25  (step @p395 :rule cnf_and_pos :args (@t240 1))
% 39.03/39.25  (step @p396 :rule reordering :premises (@p395) :args ((or @t239 (not @t240))))
% 39.03/39.25  (step @p397 :rule chain_m_resolution :premises (@p396 @p394) :args (@t239 @t156 (@list @t240)))
% 39.03/39.25  (step @p398 :rule instantiate :premises (@p397) :args ((@list @t135)))
% 39.03/39.25  (step @p399 :rule not_implies_elim2 :premises (@p390))
% 39.03/39.25  (step @p400 :rule cnf_or_pos :args (@t246))
% 39.03/39.25  (step @p401 :rule reordering :premises (@p400) :args ((or @t244 @t245 (not @t246))))
% 39.03/39.25  (step @p402 :rule chain_m_resolution :premises (@p401 @p399 @p398) :args (@t245 @t183 (@list @t244 @t246)))
% 39.03/39.25  (step @p403 :rule cnf_and_pos :args (@t204 0))
% 39.03/39.25  (step @p404 :rule reordering :premises (@p403) :args ((or @t203 @t247)))
% 39.03/39.25  (step @p405 :rule chain_m_resolution :premises (@p404 @p402) :args (@t247 (@list true) (@list @t203)))
% 39.03/39.25  (step @p406 :rule refl :args (@t138))
% 39.03/39.25  (step @p407 :rule cong :premises (@p385 @p406) :args (@t139))
% 39.03/39.25  (step @p408 :rule eq_resolve :premises (@p115 @p407))
% 39.03/39.25  (step @p409 :rule cnf_equiv_pos1 :args (@t210))
% 39.03/39.25  (step @p410 :rule reordering :premises (@p409) :args ((or (not @t205) @t204 @t248)))
% 39.03/39.25  (step @p411 :rule chain_m_resolution :premises (@p410 @p408 @p405) :args (@t248 (@list false true) (@list @t205 @t204)))
% 39.03/39.25  (step @p412 :rule cnf_or_pos :args (@t211))
% 39.03/39.25  (step @p413 :rule reordering :premises (@p412) :args ((or @t207 @t181 @t210 (not @t211))))
% 39.03/39.25  (step @p414 false :rule chain_m_resolution :premises (@p413 @p411 @p307 @p241 @p143) :args (false (@list true false true false) (@list @t210 @t211 @t181 @t149)))
% 39.03/39.26  )
% 39.03/39.26  % SZS output end Proof
% 39.03/39.26  % cvc5 exiting
%------------------------------------------------------------------------------