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cvc5---1.3.4.THM-Prf.s

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%------------------------------------------------------------------------------
% File     : cvc5---1.3.4
% Problem  : SWW665_2 : TPTP v9.2.1. Released v6.1.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : /export/starexec/sandbox2/solver/bin/do_cvc5 /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM

% Computer : n028.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 09:05:26 AM UTC 2026

% Result   : Theorem 48.60s 48.82s
% Output   : Proof 48.60s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.12  % Problem  : SWW665_2 : TPTP v9.2.1. Released v6.1.0.
% 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 : n028.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 22:22:20 EDT 2026
% 0.17/0.34  % CPUTime  : 
% 0.29/0.51  %----Proving TF0_ARI
% 48.60/48.82  --- Run --finite-model-find --decision=internal at 45...
% 48.60/48.82  --- Run --decision=internal --simplification=none --no-inst-no-entail --no-cbqi --full-saturate-quant at 60...
% 48.60/48.82  % SZS status Theorem
% 48.60/48.82  % SZS output start Proof
% 48.60/48.82  (
% 48.60/48.82  (declare-sort tptp.map_int_int 0)
% 48.60/48.82  (declare-sort tptp.array_int 0)
% 48.60/48.82  (declare-sort tptp.tuple02 0)
% 48.60/48.82  (declare-sort tptp.bool1 0)
% 48.60/48.82  (declare-sort tptp.ty 0)
% 48.60/48.82  (declare-sort tptp.uni 0)
% 48.60/48.82  (declare-const tptp.go_left1 (-> Int Int Int))
% 48.60/48.82  (declare-const tptp.is_power_of_21 (-> Int Bool))
% 48.60/48.82  (declare-const tptp.go_right1 (-> Int Int Int))
% 48.60/48.82  (declare-const tptp.map (-> tptp.ty tptp.ty tptp.ty))
% 48.60/48.82  (declare-const tptp.t2tb2 (-> tptp.array_int tptp.uni))
% 48.60/48.82  (declare-const tptp.set (-> tptp.ty tptp.ty tptp.uni tptp.uni tptp.uni tptp.uni))
% 48.60/48.82  (declare-const tptp.get (-> tptp.ty tptp.ty tptp.uni tptp.uni tptp.uni))
% 48.60/48.82  (declare-const tptp.power1 (-> Int Int Int))
% 48.60/48.82  (declare-const tptp.tuple03 tptp.tuple02)
% 48.60/48.82  (declare-const tptp.div1 (-> Int Int Int))
% 48.60/48.82  (declare-const tptp.make1 (-> tptp.ty Int tptp.uni tptp.uni))
% 48.60/48.82  (declare-const tptp.sum3 (-> tptp.array_int Int Int Int))
% 48.60/48.82  (declare-const tptp.mod1 (-> Int Int Int))
% 48.60/48.82  (declare-const tptp.tb2t1 (-> tptp.uni tptp.map_int_int))
% 48.60/48.82  (declare-const tptp.mk_array1 (-> tptp.ty Int tptp.uni tptp.uni))
% 48.60/48.82  (declare-const tptp.false1 tptp.bool1)
% 48.60/48.82  (declare-const tptp.true1 tptp.bool1)
% 48.60/48.82  (declare-const tptp.abs1 (-> Int Int))
% 48.60/48.82  (declare-const tptp.sum2 (-> tptp.map_int_int Int Int Int))
% 48.60/48.82  (declare-const tptp.phase11 (-> Int Int tptp.array_int tptp.array_int Bool))
% 48.60/48.82  (declare-const tptp.witness1 (-> tptp.ty tptp.uni))
% 48.60/48.82  (declare-const tptp.get2 (-> tptp.ty tptp.uni Int tptp.uni))
% 48.60/48.82  (declare-const tptp.int tptp.ty)
% 48.60/48.82  (declare-const tptp.const (-> tptp.ty tptp.ty tptp.uni tptp.uni))
% 48.60/48.82  (declare-const tptp.t2tb1 (-> tptp.map_int_int tptp.uni))
% 48.60/48.82  (declare-const tptp.array (-> tptp.ty tptp.ty))
% 48.60/48.82  (declare-const tptp.tb2t2 (-> tptp.uni tptp.array_int))
% 48.60/48.82  (declare-const tptp.sort1 (-> tptp.ty tptp.uni Bool))
% 48.60/48.82  (declare-const tptp.length1 (-> tptp.ty tptp.uni Int))
% 48.60/48.82  (declare-const tptp.elts (-> tptp.ty tptp.uni tptp.uni))
% 48.60/48.82  (declare-const tptp.match_bool1 (-> tptp.ty tptp.bool1 tptp.uni tptp.uni tptp.uni))
% 48.60/48.82  (declare-const tptp.t2tb (-> Int tptp.uni))
% 48.60/48.82  (declare-const tptp.tb2t (-> tptp.uni Int))
% 48.60/48.82  (declare-const tptp.set2 (-> tptp.ty tptp.uni Int tptp.uni tptp.uni))
% 48.60/48.82  (define @t1 () (@var "A" tptp.ty))
% 48.60/48.82  (define @t2 () (@var "X2" tptp.uni))
% 48.60/48.82  (define @t3 () (@var "X1" tptp.uni))
% 48.60/48.82  (define @t4 () (@var "X" tptp.bool1))
% 48.60/48.82  (define @t5 () (@var "Z" tptp.uni))
% 48.60/48.82  (define @t6 () (@var "Z1" tptp.uni))
% 48.60/48.82  (define @t7 () (@list @t1 @t5 @t6))
% 48.60/48.82  (define @t8 () (@var "U" tptp.bool1))
% 48.60/48.82  (define @t9 () (@var "U" tptp.tuple02))
% 48.60/48.82  (define @t10 () (@var "Z" Int))
% 48.60/48.82  (define @t11 () (@var "Y" Int))
% 48.60/48.82  (define @t12 () (@var "X" Int))
% 48.60/48.82  (define @t13 () (<= 0 @t10))
% 48.60/48.82  (define @t14 () (<= @t12 @t11))
% 48.60/48.82  (define @t15 () (@list @t12 @t11 @t10))
% 48.60/48.82  (define @t16 () (tptp.abs1 @t12))
% 48.60/48.82  (define @t17 () (<= 0 @t12))
% 48.60/48.82  (define @t18 () (@list @t12))
% 48.60/48.82  (define @t19 () (@list @t12 @t11))
% 48.60/48.82  (define @t20 () (tptp.mod1 @t12 @t11))
% 48.60/48.82  (define @t21 () (tptp.div1 @t12 @t11))
% 48.60/48.82  (define @t22 () (* @t11 @t21))
% 48.60/48.82  (define @t23 () (+ @t22 @t20))
% 48.60/48.82  (define @t24 () (= @t12 @t23))
% 48.60/48.82  (define @t25 () (= @t11 0))
% 48.60/48.82  (define @t26 () (not @t25))
% 48.60/48.82  (define @t27 () (=> @t26 @t24))
% 48.60/48.82  (define @t28 () (forall @t19 @t27))
% 48.60/48.82  (define @t29 () (<= 0 @t21))
% 48.60/48.82  (define @t30 () (< 0 @t11))
% 48.60/48.82  (define @t31 () (and @t17 @t30))
% 48.60/48.82  (define @t32 () (tptp.abs1 @t11))
% 48.60/48.82  (define @t33 () (<= @t12 0))
% 48.60/48.82  (define @t34 () (and @t17 @t26))
% 48.60/48.82  (define @t35 () (=> @t34 (<= 0 @t20)))
% 48.60/48.82  (define @t36 () (forall @t19 @t35))
% 48.60/48.82  (define @t37 () (and @t17 (< @t12 @t11)))
% 48.60/48.82  (define @t38 () (* @t12 @t11))
% 48.60/48.82  (define @t39 () (+ @t38 @t10))
% 48.60/48.82  (define @t40 () (and (< 0 @t12) (<= 0 @t11) @t13))
% 48.60/48.82  (define @t41 () (@var "N" Int))
% 48.60/48.82  (define @t42 () (tptp.power1 @t12 @t41))
% 48.60/48.82  (define @t43 () (<= 0 @t41))
% 48.60/48.82  (define @t44 () (@list @t12 @t41))
% 48.60/48.82  (define @t45 () (@var "M" Int))
% 48.60/48.82  (define @t46 () (<= 0 @t45))
% 48.60/48.82  (define @t47 () (@list @t12 @t41 @t45))
% 48.60/48.82  (define @t48 () (@var "X" tptp.uni))
% 48.60/48.82  (define @t49 () (@var "B" tptp.ty))
% 48.60/48.82  (define @t50 () (tptp.map @t1 @t49))
% 48.60/48.82  (define @t51 () (@var "B1" tptp.uni))
% 48.60/48.82  (define @t52 () (@var "A2" tptp.uni))
% 48.60/48.82  (define @t53 () (@var "A1" tptp.uni))
% 48.60/48.82  (define @t54 () (@var "M" tptp.uni))
% 48.60/48.82  (define @t55 () (tptp.get @t49 @t1 (tptp.set @t49 @t1 @t54 @t53 @t51) @t52))
% 48.60/48.82  (define @t56 () (= @t53 @t52))
% 48.60/48.82  (define @t57 () (tptp.sort1 @t49 @t51))
% 48.60/48.82  (define @t58 () (tptp.array @t1))
% 48.60/48.82  (define @t59 () (@list @t1 @t12 @t3))
% 48.60/48.82  (define @t60 () (@var "U" Int))
% 48.60/48.82  (define @t61 () (@var "U1" tptp.uni))
% 48.60/48.82  (define @t62 () (tptp.mk_array1 @t1 @t60 @t61))
% 48.60/48.82  (define @t63 () (tptp.length1 @t1 @t62))
% 48.60/48.82  (define @t64 () (= @t63 @t60))
% 48.60/48.82  (define @t65 () (@list @t1 @t60 @t61))
% 48.60/48.82  (define @t66 () (forall @t65 @t64))
% 48.60/48.82  (define @t67 () (tptp.map tptp.int @t1))
% 48.60/48.82  (define @t68 () (tptp.elts @t1 @t62))
% 48.60/48.82  (define @t69 () (tptp.sort1 @t67 @t61))
% 48.60/48.82  (define @t70 () (=> @t69 (= @t68 @t61)))
% 48.60/48.82  (define @t71 () (forall @t65 @t70))
% 48.60/48.82  (define @t72 () (@var "U" tptp.uni))
% 48.60/48.82  (define @t73 () (@var "X1" Int))
% 48.60/48.82  (define @t74 () (@var "I" Int))
% 48.60/48.82  (define @t75 () (tptp.t2tb @t74))
% 48.60/48.82  (define @t76 () (@list @t74))
% 48.60/48.82  (define @t77 () (@var "J" tptp.uni))
% 48.60/48.82  (define @t78 () (@list @t77))
% 48.60/48.82  (define @t79 () (tptp.elts @t1 @t53))
% 48.60/48.82  (define @t80 () (@var "V" tptp.uni))
% 48.60/48.82  (define @t81 () (@var "J" Int))
% 48.60/48.82  (define @t82 () (@var "C" tptp.map_int_int))
% 48.60/48.82  (define @t83 () (tptp.sum2 @t82 @t74 @t81))
% 48.60/48.82  (define @t84 () (@list @t82 @t74 @t81))
% 48.60/48.82  (define @t85 () (@var "X" tptp.map_int_int))
% 48.60/48.82  (define @t86 () (tptp.map tptp.int tptp.int))
% 48.60/48.82  (define @t87 () (@var "I" tptp.map_int_int))
% 48.60/48.82  (define @t88 () (tptp.t2tb1 @t82))
% 48.60/48.82  (define @t89 () (< @t74 @t81))
% 48.60/48.82  (define @t90 () (- @t81 1))
% 48.60/48.82  (define @t91 () (@var "K" Int))
% 48.60/48.82  (define @t92 () (<= @t74 @t91))
% 48.60/48.82  (define @t93 () (@var "C2" tptp.map_int_int))
% 48.60/48.82  (define @t94 () (@var "C1" tptp.map_int_int))
% 48.60/48.82  (define @t95 () (tptp.t2tb @t91))
% 48.60/48.82  (define @t96 () (@list @t91))
% 48.60/48.82  (define @t97 () (@var "X" tptp.array_int))
% 48.60/48.82  (define @t98 () (@var "I" tptp.array_int))
% 48.60/48.82  (define @t99 () (tptp.t2tb2 (tptp.tb2t2 @t77)))
% 48.60/48.82  (define @t100 () (forall @t78 (= @t99 @t77)))
% 48.60/48.82  (define @t101 () (@var "H" Int))
% 48.60/48.82  (define @t102 () (@var "L" Int))
% 48.60/48.82  (define @t103 () (@var "A" tptp.array_int))
% 48.60/48.82  (define @t104 () (tptp.t2tb2 @t103))
% 48.60/48.82  (define @t105 () (* 2 (tptp.div1 @t12 2)))
% 48.60/48.82  (define @t106 () (tptp.is_power_of_21 @t12))
% 48.60/48.82  (define @t107 () (@var "Left" Int))
% 48.60/48.82  (define @t108 () (@var "Right" Int))
% 48.60/48.82  (define @t109 () (- @t108 @t107))
% 48.60/48.82  (define @t110 () (tptp.div1 @t109 2))
% 48.60/48.82  (define @t111 () (- @t107 @t110))
% 48.60/48.82  (define @t112 () (tptp.go_left1 @t107 @t108))
% 48.60/48.82  (define @t113 () (@list @t107 @t108))
% 48.60/48.82  (define @t114 () (- @t108 @t110))
% 48.60/48.82  (define @t115 () (tptp.go_right1 @t107 @t108))
% 48.60/48.82  (define @t116 () (@var "A0" tptp.array_int))
% 48.60/48.82  (define @t117 () (tptp.phase11 @t107 @t108 @t116 @t103))
% 48.60/48.82  (define @t118 () (tptp.t2tb2 @t116))
% 48.60/48.82  (define @t119 () (tptp.tb2t (tptp.get2 tptp.int @t104 @t107)))
% 48.60/48.82  (define @t120 () (= @t119 (tptp.tb2t (tptp.get2 tptp.int @t118 @t107))))
% 48.60/48.82  (define @t121 () (+ @t107 1))
% 48.60/48.82  (define @t122 () (@list @t107 @t108 @t116 @t103))
% 48.60/48.82  (define @t123 () (- @t107 @t109))
% 48.60/48.82  (define @t124 () (= @t119 (tptp.sum3 @t116 (+ @t123 1) @t121)))
% 48.60/48.82  (define @t125 () (tptp.phase11 @t115 @t108 @t116 @t103))
% 48.60/48.82  (define @t126 () (tptp.phase11 @t112 @t107 @t116 @t103))
% 48.60/48.82  (define @t127 () (< @t121 @t108))
% 48.60/48.82  (define @t128 () (@var "Z3" tptp.array_int))
% 48.60/48.82  (define @t129 () (= @t128 @t103))
% 48.60/48.82  (define @t130 () (@var "Z2" tptp.array_int))
% 48.60/48.82  (define @t131 () (= @t130 @t116))
% 48.60/48.82  (define @t132 () (@var "Z1" Int))
% 48.60/48.82  (define @t133 () (= @t10 @t107))
% 48.60/48.82  (define @t134 () (@var "Aqt" tptp.array_int))
% 48.60/48.82  (define @t135 () (tptp.phase11 @t107 @t108 @t116 @t134))
% 48.60/48.82  (define @t136 () (tptp.t2tb2 @t134))
% 48.60/48.82  (define @t137 () (= (tptp.tb2t (tptp.get2 tptp.int @t104 @t74)) (tptp.tb2t (tptp.get2 tptp.int @t136 @t74))))
% 48.60/48.82  (define @t138 () (and (< @t123 @t74) (< @t74 @t108)))
% 48.60/48.82  (define @t139 () (=> @t138 @t137))
% 48.60/48.82  (define @t140 () (forall @t76 @t139))
% 48.60/48.82  (define @t141 () (tptp.length1 tptp.int @t136))
% 48.60/48.82  (define @t142 () (tptp.length1 tptp.int @t104))
% 48.60/48.82  (define @t143 () (<= 0 @t142))
% 48.60/48.82  (define @t144 () (tptp.length1 tptp.int @t118))
% 48.60/48.82  (define @t145 () (<= 0 @t144))
% 48.60/48.82  (define @t146 () (and @t145 @t143 (<= 0 @t141) @t140 @t117))
% 48.60/48.82  (define @t147 () (=> @t146 @t135))
% 48.60/48.82  (define @t148 () (@list @t107 @t108 @t116 @t103 @t134))
% 48.60/48.82  (define @t149 () (forall @t148 @t147))
% 48.60/48.82  (define @t150 () (@var "A0qt" tptp.array_int))
% 48.60/48.82  (define @t151 () (tptp.t2tb2 @t150))
% 48.60/48.82  (define @t152 () (@var "A3" tptp.map_int_int))
% 48.60/48.82  (define @t153 () (tptp.t2tb1 @t152))
% 48.60/48.82  (define @t154 () (@var "A" Int))
% 48.60/48.82  (define @t155 () (tptp.tb2t2 (tptp.mk_array1 tptp.int @t154 @t153)))
% 48.60/48.82  (define @t156 () (@var "A1" tptp.map_int_int))
% 48.60/48.82  (define @t157 () (tptp.t2tb1 @t156))
% 48.60/48.82  (define @t158 () (tptp.tb2t2 (tptp.mk_array1 tptp.int @t154 @t157)))
% 48.60/48.82  (define @t159 () (tptp.phase11 @t111 @t107 @t158 @t155))
% 48.60/48.82  (define @t160 () (@var "A2" tptp.map_int_int))
% 48.60/48.82  (define @t161 () (tptp.t2tb1 @t160))
% 48.60/48.82  (define @t162 () (tptp.tb2t (tptp.get tptp.int tptp.int @t161 @t75)))
% 48.60/48.82  (define @t163 () (tptp.tb2t (tptp.get tptp.int tptp.int @t153 @t75)))
% 48.60/48.82  (define @t164 () (= @t163 @t162))
% 48.60/48.82  (define @t165 () (=> (< @t108 @t74) @t164))
% 48.60/48.82  (define @t166 () (forall @t76 @t165))
% 48.60/48.82  (define @t167 () (- @t108 @t114))
% 48.60/48.82  (define @t168 () (- @t114 @t167))
% 48.60/48.82  (define @t169 () (<= @t74 @t168))
% 48.60/48.82  (define @t170 () (=> @t169 @t164))
% 48.60/48.82  (define @t171 () (forall @t76 @t170))
% 48.60/48.82  (define @t172 () (+ @t108 1))
% 48.60/48.82  (define @t173 () (+ @t168 1))
% 48.60/48.82  (define @t174 () (tptp.sum2 @t160 @t173 @t172))
% 48.60/48.82  (define @t175 () (tptp.t2tb @t108))
% 48.60/48.82  (define @t176 () (tptp.tb2t (tptp.get tptp.int tptp.int @t153 @t175)))
% 48.60/48.82  (define @t177 () (= @t176 @t174))
% 48.60/48.82  (define @t178 () (tptp.tb2t2 (tptp.mk_array1 tptp.int @t154 @t161)))
% 48.60/48.82  (define @t179 () (tptp.phase11 @t114 @t108 @t178 @t155))
% 48.60/48.82  (define @t180 () (<= 0 @t154))
% 48.60/48.82  (define @t181 () (and @t180 @t179 @t177 @t171 @t166))
% 48.60/48.82  (define @t182 () (=> @t181 @t159))
% 48.60/48.82  (define @t183 () (@list @t152))
% 48.60/48.82  (define @t184 () (forall @t183 @t182))
% 48.60/48.82  (define @t185 () (tptp.is_power_of_21 @t167))
% 48.60/48.82  (define @t186 () (- 1))
% 48.60/48.82  (define @t187 () (<= @t186 @t168))
% 48.60/48.82  (define @t188 () (< @t108 @t154))
% 48.60/48.82  (define @t189 () (<= 0 @t114))
% 48.60/48.82  (define @t190 () (and @t189 (< @t114 @t108) @t188 @t187 @t185))
% 48.60/48.82  (define @t191 () (=> @t190 @t184))
% 48.60/48.82  (define @t192 () (tptp.tb2t (tptp.get tptp.int tptp.int @t157 @t75)))
% 48.60/48.82  (define @t193 () (= @t162 @t192))
% 48.60/48.82  (define @t194 () (=> (< @t107 @t74) @t193))
% 48.60/48.82  (define @t195 () (forall @t76 @t194))
% 48.60/48.82  (define @t196 () (- @t107 @t111))
% 48.60/48.82  (define @t197 () (- @t111 @t196))
% 48.60/48.82  (define @t198 () (<= @t74 @t197))
% 48.60/48.82  (define @t199 () (=> @t198 @t193))
% 48.60/48.82  (define @t200 () (forall @t76 @t199))
% 48.60/48.82  (define @t201 () (+ @t197 1))
% 48.60/48.82  (define @t202 () (tptp.sum2 @t156 @t201 @t121))
% 48.60/48.82  (define @t203 () (tptp.t2tb @t107))
% 48.60/48.82  (define @t204 () (tptp.tb2t (tptp.get tptp.int tptp.int @t161 @t203)))
% 48.60/48.82  (define @t205 () (= @t204 @t202))
% 48.60/48.82  (define @t206 () (tptp.phase11 @t111 @t107 @t158 @t178))
% 48.60/48.82  (define @t207 () (and @t180 @t206 @t205 @t200 @t195))
% 48.60/48.82  (define @t208 () (=> @t207 @t191))
% 48.60/48.82  (define @t209 () (@list @t160))
% 48.60/48.82  (define @t210 () (forall @t209 @t208))
% 48.60/48.82  (define @t211 () (tptp.is_power_of_21 @t196))
% 48.60/48.82  (define @t212 () (<= @t186 @t197))
% 48.60/48.82  (define @t213 () (<= 0 @t111))
% 48.60/48.82  (define @t214 () (and @t213 (< @t111 @t107) (< @t107 @t154) @t212 @t211))
% 48.60/48.82  (define @t215 () (=> @t214 @t210))
% 48.60/48.82  (define @t216 () (=> @t127 @t215))
% 48.60/48.82  (define @t217 () (tptp.is_power_of_21 @t109))
% 48.60/48.82  (define @t218 () (<= @t186 @t123))
% 48.60/48.82  (define @t219 () (and @t180 (<= 0 @t107) (< @t107 @t108) @t188 @t218 @t217))
% 48.60/48.82  (define @t220 () (=> @t219 @t216))
% 48.60/48.82  (define @t221 () (@list @t107 @t108 @t154 @t156))
% 48.60/48.82  (define @t222 () (forall @t221 @t220))
% 48.60/48.82  (define @t223 () (not @t222))
% 48.60/48.82  (define @t224 () (* @t11 @t21))
% 48.60/48.82  (define @t225 () (+ @t20 @t224))
% 48.60/48.82  (define @t226 () (= @t12 @t225))
% 48.60/48.82  (define @t227 () (not @t26))
% 48.60/48.82  (define @t228 () (@var "BOUND_VARIABLE_9097" tptp.map_int_int))
% 48.60/48.82  (define @t229 () (tptp.t2tb1 @t228))
% 48.60/48.82  (define @t230 () (tptp.tb2t2 (tptp.mk_array1 tptp.int @t154 @t229)))
% 48.60/48.82  (define @t231 () (* -1 @t107))
% 48.60/48.82  (define @t232 () (+ @t231 @t108))
% 48.60/48.82  (define @t233 () (tptp.div1 @t232 2))
% 48.60/48.82  (define @t234 () (* -1 @t233))
% 48.60/48.82  (define @t235 () (+ @t107 @t234))
% 48.60/48.82  (define @t236 () (tptp.phase11 @t235 @t107 @t158 @t230))
% 48.60/48.82  (define @t237 () (@var "BOUND_VARIABLE_9095" tptp.map_int_int))
% 48.60/48.82  (define @t238 () (tptp.t2tb1 @t237))
% 48.60/48.82  (define @t239 () (tptp.tb2t (tptp.get tptp.int tptp.int @t238 @t75)))
% 48.60/48.82  (define @t240 () (= @t239 (tptp.tb2t (tptp.get tptp.int tptp.int @t229 @t75))))
% 48.60/48.82  (define @t241 () (* -1 @t108))
% 48.60/48.82  (define @t242 () (+ @t74 @t241))
% 48.60/48.82  (define @t243 () (>= @t242 1))
% 48.60/48.82  (define @t244 () (not @t243))
% 48.60/48.82  (define @t245 () (not (forall @t76 (or @t244 @t240))))
% 48.60/48.82  (define @t246 () (* 2 @t233))
% 48.60/48.82  (define @t247 () (+ @t74 @t241 @t246))
% 48.60/48.82  (define @t248 () (>= @t247 1))
% 48.60/48.82  (define @t249 () (not (forall @t76 (or @t248 @t240))))
% 48.60/48.82  (define @t250 () (+ 1 @t108))
% 48.60/48.82  (define @t251 () (* -2 @t233))
% 48.60/48.82  (define @t252 () (+ 1 @t108 @t251))
% 48.60/48.82  (define @t253 () (not (= (tptp.sum2 @t237 @t252 @t250) (tptp.tb2t (tptp.get tptp.int tptp.int @t229 @t175)))))
% 48.60/48.82  (define @t254 () (tptp.tb2t2 (tptp.mk_array1 tptp.int @t154 @t238)))
% 48.60/48.82  (define @t255 () (+ @t108 @t234))
% 48.60/48.82  (define @t256 () (not (tptp.phase11 @t255 @t108 @t254 @t230)))
% 48.60/48.82  (define @t257 () (= @t192 @t239))
% 48.60/48.82  (define @t258 () (+ @t74 @t231))
% 48.60/48.82  (define @t259 () (>= @t258 1))
% 48.60/48.82  (define @t260 () (not @t259))
% 48.60/48.82  (define @t261 () (+ @t74 @t231 @t246))
% 48.60/48.82  (define @t262 () (>= @t261 1))
% 48.60/48.82  (define @t263 () (tptp.tb2t (tptp.get tptp.int tptp.int @t238 @t203)))
% 48.60/48.82  (define @t264 () (+ 1 @t107))
% 48.60/48.82  (define @t265 () (+ 1 @t107 @t251))
% 48.60/48.82  (define @t266 () (tptp.sum2 @t156 @t265 @t264))
% 48.60/48.82  (define @t267 () (= @t266 @t263))
% 48.60/48.82  (define @t268 () (not (tptp.phase11 @t235 @t107 @t158 @t254)))
% 48.60/48.82  (define @t269 () (+ @t108 @t251))
% 48.60/48.82  (define @t270 () (>= @t269 -1))
% 48.60/48.82  (define @t271 () (not @t270))
% 48.60/48.82  (define @t272 () (>= @t255 0))
% 48.60/48.82  (define @t273 () (not @t272))
% 48.60/48.82  (define @t274 () (tptp.is_power_of_21 @t233))
% 48.60/48.82  (define @t275 () (not @t274))
% 48.60/48.82  (define @t276 () (+ @t107 @t251))
% 48.60/48.82  (define @t277 () (>= @t276 -1))
% 48.60/48.82  (define @t278 () (not @t277))
% 48.60/48.82  (define @t279 () (* -1 @t154))
% 48.60/48.82  (define @t280 () (+ @t107 @t279))
% 48.60/48.82  (define @t281 () (>= @t280 0))
% 48.60/48.82  (define @t282 () (>= @t233 1))
% 48.60/48.82  (define @t283 () (not @t282))
% 48.60/48.82  (define @t284 () (>= @t235 0))
% 48.60/48.82  (define @t285 () (not @t284))
% 48.60/48.82  (define @t286 () (+ @t107 @t241))
% 48.60/48.82  (define @t287 () (>= @t286 -1))
% 48.60/48.82  (define @t288 () (tptp.is_power_of_21 @t232))
% 48.60/48.82  (define @t289 () (not @t288))
% 48.60/48.82  (define @t290 () (+ (* 2 @t107) @t241))
% 48.60/48.82  (define @t291 () (>= @t290 -1))
% 48.60/48.82  (define @t292 () (not @t291))
% 48.60/48.82  (define @t293 () (+ @t108 @t279))
% 48.60/48.82  (define @t294 () (>= @t293 0))
% 48.60/48.82  (define @t295 () (>= @t286 0))
% 48.60/48.82  (define @t296 () (>= @t107 0))
% 48.60/48.82  (define @t297 () (not @t296))
% 48.60/48.82  (define @t298 () (>= @t154 0))
% 48.60/48.82  (define @t299 () (not @t298))
% 48.60/48.82  (define @t300 () (@list @t107 @t108 @t154 @t156 @t237 @t228))
% 48.60/48.82  (define @t301 () (forall @t300 (or @t299 @t297 @t295 @t294 @t292 @t289 @t287 @t285 @t283 @t281 @t278 @t275 @t273 @t271 @t268 (not @t267) (not (forall @t76 (or @t262 @t257))) (not (forall @t76 (or @t260 @t257))) @t256 @t253 @t249 @t245 @t236)))
% 48.60/48.82  (define @t302 () (@quantifiers_skolemize @t301 1))
% 48.60/48.82  (define @t303 () (@quantifiers_skolemize @t301 0))
% 48.60/48.82  (define @t304 () (* -1 @t303))
% 48.60/48.82  (define @t305 () (+ @t304 @t302))
% 48.60/48.82  (define @t306 () (tptp.mod1 @t305 2))
% 48.60/48.82  (define @t307 () (* -1 @t306))
% 48.60/48.82  (define @t308 () (tptp.div1 @t305 2))
% 48.60/48.82  (define @t309 () (* -2 @t308))
% 48.60/48.82  (define @t310 () (+ @t302 @t309 @t307))
% 48.60/48.82  (define @t311 () (= @t303 @t310))
% 48.60/48.82  (define @t312 () (- @t303 @t310))
% 48.60/48.82  (define @t313 () (* 2 @t308))
% 48.60/48.82  (define @t314 () (+ @t313 @t306))
% 48.60/48.82  (define @t315 () (* 2 @t308))
% 48.60/48.82  (define @t316 () (+ @t306 @t315))
% 48.60/48.82  (define @t317 () (= @t305 @t316))
% 48.60/48.82  (define @t318 () (= 2 0))
% 48.60/48.82  (define @t319 () (or @t318 @t317))
% 48.60/48.82  (define @t320 () (forall @t19 (or @t25 @t226)))
% 48.60/48.82  (define @t321 () (@list @t305 2))
% 48.60/48.82  (define @t322 () (@list false))
% 48.60/48.82  (define @t323 () (>= @t20 0))
% 48.60/48.82  (define @t324 () (>= @t12 0))
% 48.60/48.82  (define @t325 () (not @t324))
% 48.60/48.82  (define @t326 () (or @t325 @t25 @t323))
% 48.60/48.82  (define @t327 () (and @t324 @t26))
% 48.60/48.82  (define @t328 () (>= @t306 0))
% 48.60/48.82  (define @t329 () (* -1 @t302))
% 48.60/48.82  (define @t330 () (+ @t303 @t329))
% 48.60/48.82  (define @t331 () (>= @t330 1))
% 48.60/48.82  (define @t332 () (or @t331 @t328))
% 48.60/48.82  (define @t333 () (+ @t330 1))
% 48.60/48.82  (define @t334 () (>= @t305 0))
% 48.60/48.82  (define @t335 () (not @t334))
% 48.60/48.82  (define @t336 () (or @t335 @t318 @t328))
% 48.60/48.82  (define @t337 () (forall @t19 @t326))
% 48.60/48.82  (define @t338 () (= @t239 @t192))
% 48.60/48.82  (define @t339 () (or @t260 @t338))
% 48.60/48.82  (define @t340 () (forall @t76 @t339))
% 48.60/48.82  (define @t341 () (not @t340))
% 48.60/48.82  (define @t342 () (or @t262 @t338))
% 48.60/48.82  (define @t343 () (forall @t76 @t342))
% 48.60/48.82  (define @t344 () (not @t343))
% 48.60/48.82  (define @t345 () (= @t263 @t266))
% 48.60/48.82  (define @t346 () (not @t345))
% 48.60/48.82  (define @t347 () (or @t299 @t297 @t295 @t294 @t292 @t289 @t287 @t285 @t283 @t281 @t278 @t275 @t273 @t271 @t268 @t346 @t344 @t341 @t256 @t253 @t249 @t245 @t236))
% 48.60/48.82  (define @t348 () (or @t268 @t346 @t344 @t341 @t256 @t253 @t249 @t245 @t236))
% 48.60/48.82  (define @t349 () (or @t299 @t297 @t295 @t294 @t292 @t289 @t287 @t285 @t283 @t281 @t278 @t275 @t273 @t271 @t348))
% 48.60/48.82  (define @t350 () (forall @t300 @t349))
% 48.60/48.82  (define @t351 () (@list @t237 @t228))
% 48.60/48.82  (define @t352 () (forall @t351 @t349))
% 48.60/48.82  (define @t353 () (forall @t351 @t348))
% 48.60/48.82  (define @t354 () (@var "BOUND_VARIABLE_9047" tptp.map_int_int))
% 48.60/48.82  (define @t355 () (or @t299 @t297 @t295 @t294 @t292 @t289 @t287 @t285 @t283 @t281 @t278 @t275 @t273 @t271 @t353))
% 48.60/48.82  (define @t356 () (tptp.t2tb1 @t354))
% 48.60/48.82  (define @t357 () (tptp.tb2t2 (tptp.mk_array1 tptp.int @t154 @t356)))
% 48.60/48.82  (define @t358 () (tptp.phase11 @t235 @t107 @t158 @t357))
% 48.60/48.82  (define @t359 () (= @t162 (tptp.tb2t (tptp.get tptp.int tptp.int @t356 @t75))))
% 48.60/48.82  (define @t360 () (not (forall @t76 (or @t244 @t359))))
% 48.60/48.82  (define @t361 () (not (forall @t76 (or @t248 @t359))))
% 48.60/48.82  (define @t362 () (tptp.tb2t (tptp.get tptp.int tptp.int @t356 @t175)))
% 48.60/48.82  (define @t363 () (tptp.sum2 @t160 @t252 @t250))
% 48.60/48.82  (define @t364 () (= @t363 @t362))
% 48.60/48.82  (define @t365 () (not (tptp.phase11 @t255 @t108 @t178 @t357)))
% 48.60/48.82  (define @t366 () (forall @t76 (or @t260 @t193)))
% 48.60/48.82  (define @t367 () (not @t366))
% 48.60/48.82  (define @t368 () (forall @t76 (or @t262 @t193)))
% 48.60/48.82  (define @t369 () (not @t368))
% 48.60/48.82  (define @t370 () (= @t204 @t266))
% 48.60/48.82  (define @t371 () (not @t370))
% 48.60/48.82  (define @t372 () (tptp.phase11 @t235 @t107 @t158 @t178))
% 48.60/48.82  (define @t373 () (not @t372))
% 48.60/48.82  (define @t374 () (@list @t160 @t354))
% 48.60/48.82  (define @t375 () (forall @t374 (or @t373 @t371 @t369 @t367 @t365 (not @t364) @t361 @t360 @t358)))
% 48.60/48.82  (define @t376 () (or @t299 @t297 @t295 @t294 @t292 @t289 @t287 @t285 @t283 @t281 @t278 @t275 @t273 @t271 @t375))
% 48.60/48.82  (define @t377 () (or @t287 @t285 @t283 @t281 @t278 @t275 @t299 @t273 @t294 @t271 @t375))
% 48.60/48.82  (define @t378 () (or @t285 @t283 @t281 @t278 @t275 @t299 @t273 @t294 @t271 @t375))
% 48.60/48.82  (define @t379 () (or @t299 @t273 @t283 @t294 @t271 @t275 @t375))
% 48.60/48.82  (define @t380 () (not @t281))
% 48.60/48.82  (define @t381 () (not @t380))
% 48.60/48.82  (define @t382 () (or @t285 @t283 @t381 @t278 @t275))
% 48.60/48.82  (define @t383 () (and @t284 @t282 @t380 @t277 @t274))
% 48.60/48.82  (define @t384 () (=> @t383 @t379))
% 48.60/48.82  (define @t385 () (not @t287))
% 48.60/48.82  (define @t386 () (not @t294))
% 48.60/48.82  (define @t387 () (not @t386))
% 48.60/48.82  (define @t388 () (not @t295))
% 48.60/48.82  (define @t389 () (not @t388))
% 48.60/48.82  (define @t390 () (or @t299 @t297 @t389 @t387 @t292 @t289))
% 48.60/48.82  (define @t391 () (=> @t385 @t384))
% 48.60/48.82  (define @t392 () (and @t298 @t296 @t388 @t386 @t291 @t288))
% 48.60/48.82  (define @t393 () (= @t362 @t363))
% 48.60/48.82  (define @t394 () (not @t393))
% 48.60/48.82  (define @t395 () (or @t373 @t371 @t369 @t367 @t365 @t394 @t361 @t360 @t358))
% 48.60/48.82  (define @t396 () (or @t365 @t394 @t361 @t360 @t358))
% 48.60/48.82  (define @t397 () (or @t373 @t371 @t369 @t367 @t396))
% 48.60/48.82  (define @t398 () (forall @t374 @t397))
% 48.60/48.82  (define @t399 () (@list @t354))
% 48.60/48.82  (define @t400 () (forall @t399 @t397))
% 48.60/48.82  (define @t401 () (forall @t399 @t396))
% 48.60/48.82  (define @t402 () (or @t373 @t371 @t369 @t367 @t401))
% 48.60/48.82  (define @t403 () (tptp.phase11 @t235 @t107 @t158 @t155))
% 48.60/48.82  (define @t404 () (= @t162 @t163))
% 48.60/48.82  (define @t405 () (forall @t76 (or @t244 @t404)))
% 48.60/48.82  (define @t406 () (not @t405))
% 48.60/48.82  (define @t407 () (forall @t76 (or @t248 @t404)))
% 48.60/48.82  (define @t408 () (not @t407))
% 48.60/48.82  (define @t409 () (= @t176 @t363))
% 48.60/48.82  (define @t410 () (not @t409))
% 48.60/48.82  (define @t411 () (tptp.phase11 @t255 @t108 @t178 @t155))
% 48.60/48.82  (define @t412 () (not @t411))
% 48.60/48.82  (define @t413 () (or @t412 @t410 @t408 @t406 @t403))
% 48.60/48.82  (define @t414 () (forall @t183 @t413))
% 48.60/48.82  (define @t415 () (or @t373 @t371 @t369 @t367 @t414))
% 48.60/48.82  (define @t416 () (forall @t209 @t415))
% 48.60/48.82  (define @t417 () (or @t299 @t273 @t283 @t294 @t271 @t275 @t416))
% 48.60/48.82  (define @t418 () (or @t299 @t273 @t283 @t294 @t271 @t275 @t415))
% 48.60/48.82  (define @t419 () (or @t299 @t373 @t371 @t369 @t367 @t273 @t283 @t294 @t271 @t275 @t414))
% 48.60/48.82  (define @t420 () (or @t273 @t283 @t294 @t271 @t275 @t299 @t414))
% 48.60/48.82  (define @t421 () (or @t299 @t373 @t371 @t369 @t367))
% 48.60/48.82  (define @t422 () (or @t299 @t414))
% 48.60/48.82  (define @t423 () (or @t273 @t283 @t387 @t271 @t275))
% 48.60/48.82  (define @t424 () (and @t272 @t282 @t386 @t270 @t274))
% 48.60/48.82  (define @t425 () (=> @t424 @t422))
% 48.60/48.82  (define @t426 () (and @t298 @t372 @t370 @t368 @t366))
% 48.60/48.82  (define @t427 () (or @t299 @t413))
% 48.60/48.82  (define @t428 () (or @t299 @t412 @t410 @t408 @t406 @t403))
% 48.60/48.82  (define @t429 () (or @t299 @t412 @t410 @t408 @t406))
% 48.60/48.82  (define @t430 () (and @t298 @t411 @t409 @t407 @t405))
% 48.60/48.82  (define @t431 () (+ @t108 @t231))
% 48.60/48.82  (define @t432 () (* -1 @t110))
% 48.60/48.82  (define @t433 () (+ @t107 @t432))
% 48.60/48.82  (define @t434 () (+ @t242 1))
% 48.60/48.82  (define @t435 () (>= @t108 @t74))
% 48.60/48.82  (define @t436 () (not @t248))
% 48.60/48.82  (define @t437 () (+ @t269 1))
% 48.60/48.82  (define @t438 () (>= @t74 @t437))
% 48.60/48.82  (define @t439 () (+ @t241 @t233))
% 48.60/48.82  (define @t440 () (+ @t108 @t432))
% 48.60/48.82  (define @t441 () (* -1 @t114))
% 48.60/48.82  (define @t442 () (+ @t108 @t441))
% 48.60/48.82  (define @t443 () (* -1 @t167))
% 48.60/48.82  (define @t444 () (+ @t114 @t443))
% 48.60/48.82  (define @t445 () (>= @t108 @t154))
% 48.60/48.82  (define @t446 () (+ @t233 1))
% 48.60/48.82  (define @t447 () (* -1 (- 1 @t446)))
% 48.60/48.82  (define @t448 () (>= 1 @t446))
% 48.60/48.82  (define @t449 () (>= @t114 @t108))
% 48.60/48.82  (define @t450 () (+ @t258 1))
% 48.60/48.82  (define @t451 () (>= @t107 @t74))
% 48.60/48.82  (define @t452 () (not @t262))
% 48.60/48.82  (define @t453 () (+ @t276 1))
% 48.60/48.82  (define @t454 () (>= @t74 @t453))
% 48.60/48.82  (define @t455 () (+ @t231 @t233))
% 48.60/48.82  (define @t456 () (* -1 @t111))
% 48.60/48.82  (define @t457 () (+ @t107 @t456))
% 48.60/48.82  (define @t458 () (* -1 @t196))
% 48.60/48.82  (define @t459 () (+ @t111 @t458))
% 48.60/48.82  (define @t460 () (>= @t107 @t154))
% 48.60/48.82  (define @t461 () (>= @t111 @t107))
% 48.60/48.82  (define @t462 () (>= @t121 @t108))
% 48.60/48.82  (define @t463 () (* -1 @t109))
% 48.60/48.82  (define @t464 () (+ @t107 @t463))
% 48.60/48.82  (define @t465 () (>= @t107 @t108))
% 48.60/48.82  (define @t466 () (@quantifiers_skolemize @t301 5))
% 48.60/48.82  (define @t467 () (tptp.t2tb1 @t466))
% 48.60/48.82  (define @t468 () (@quantifiers_skolemize @t301 2))
% 48.60/48.82  (define @t469 () (tptp.mk_array1 tptp.int @t468 @t467))
% 48.60/48.82  (define @t470 () (tptp.tb2t2 @t469))
% 48.60/48.82  (define @t471 () (@quantifiers_skolemize @t301 3))
% 48.60/48.82  (define @t472 () (tptp.t2tb1 @t471))
% 48.60/48.82  (define @t473 () (tptp.mk_array1 tptp.int @t468 @t472))
% 48.60/48.82  (define @t474 () (tptp.tb2t2 @t473))
% 48.60/48.82  (define @t475 () (* -1 @t308))
% 48.60/48.82  (define @t476 () (+ @t303 @t475))
% 48.60/48.82  (define @t477 () (tptp.phase11 @t476 @t303 @t474 @t470))
% 48.60/48.82  (define @t478 () (@quantifiers_skolemize @t301 4))
% 48.60/48.82  (define @t479 () (tptp.t2tb1 @t478))
% 48.60/48.82  (define @t480 () (tptp.tb2t (tptp.get tptp.int tptp.int @t479 @t75)))
% 48.60/48.82  (define @t481 () (= @t480 (tptp.tb2t (tptp.get tptp.int tptp.int @t467 @t75))))
% 48.60/48.82  (define @t482 () (forall @t76 (or (>= (+ @t74 @t329 @t313) 1) @t481)))
% 48.60/48.82  (define @t483 () (not @t482))
% 48.60/48.82  (define @t484 () (tptp.mk_array1 tptp.int @t468 @t479))
% 48.60/48.82  (define @t485 () (tptp.tb2t2 @t484))
% 48.60/48.82  (define @t486 () (+ @t302 @t475))
% 48.60/48.82  (define @t487 () (= (tptp.tb2t (tptp.get tptp.int tptp.int @t472 @t75)) @t480))
% 48.60/48.82  (define @t488 () (+ @t74 @t304))
% 48.60/48.82  (define @t489 () (+ @t74 @t304 @t313))
% 48.60/48.82  (define @t490 () (>= @t489 1))
% 48.60/48.82  (define @t491 () (tptp.phase11 @t476 @t303 @t474 @t485))
% 48.60/48.82  (define @t492 () (not @t491))
% 48.60/48.82  (define @t493 () (* -1 @t468))
% 48.60/48.82  (define @t494 () (>= @t308 1))
% 48.60/48.82  (define @t495 () (not @t494))
% 48.60/48.82  (define @t496 () (>= @t476 0))
% 48.60/48.82  (define @t497 () (not @t496))
% 48.60/48.82  (define @t498 () (>= @t330 -1))
% 48.60/48.82  (define @t499 () (+ @t302 @t493))
% 48.60/48.82  (define @t500 () (>= @t499 0))
% 48.60/48.82  (define @t501 () (or (not (>= @t468 0)) (not (>= @t303 0)) (>= @t330 0) @t500 (not (>= (+ (* 2 @t303) @t329) -1)) (not (tptp.is_power_of_21 @t305)) @t498 @t497 @t495 (>= (+ @t303 @t493) 0) (not (>= (+ @t303 @t309) -1)) (not (tptp.is_power_of_21 @t308)) (not (>= @t486 0)) (not (>= (+ @t302 @t309) -1)) @t492 (not (= (tptp.sum2 @t471 (+ 1 @t303 @t309) (+ 1 @t303)) (tptp.tb2t (tptp.get tptp.int tptp.int @t479 (tptp.t2tb @t303))))) (not (forall @t76 (or @t490 @t487))) (not (forall @t76 (or (not (>= @t488 1)) @t487))) (not (tptp.phase11 @t486 @t302 @t485 @t470)) (not (= (tptp.sum2 @t478 (+ 1 @t302 @t309) (+ 1 @t302)) (tptp.tb2t (tptp.get tptp.int tptp.int @t467 (tptp.t2tb @t302))))) @t483 (not (forall @t76 (or (not (>= (+ @t74 @t329) 1)) @t481))) @t477))
% 48.60/48.82  (define @t502 () (not @t498))
% 48.60/48.82  (define @t503 () (@list true))
% 48.60/48.82  (define @t504 () (@list @t501))
% 48.60/48.82  (define @t505 () (not @t331))
% 48.60/48.82  (define @t506 () (* -1 1))
% 48.60/48.82  (define @t507 () (+ @t506 -2))
% 48.60/48.82  (define @t508 () (* 0 @t303))
% 48.60/48.82  (define @t509 () (= @t508 0))
% 48.60/48.82  (define @t510 () (* 0 @t302))
% 48.60/48.82  (define @t511 () (+ @t510 @t508))
% 48.60/48.82  (define @t512 () (+ (* -1 @t330) @t330))
% 48.60/48.82  (define @t513 () (< -1 0))
% 48.60/48.82  (define @t514 () (and @t331 @t502))
% 48.60/48.82  (define @t515 () (@list true false))
% 48.60/48.82  (define @t516 () (not @t117))
% 48.60/48.82  (define @t517 () (>= @t242 0))
% 48.60/48.82  (define @t518 () (+ @t74 (* -2 @t107) @t108))
% 48.60/48.82  (define @t519 () (>= @t518 1))
% 48.60/48.82  (define @t520 () (not @t519))
% 48.60/48.82  (define @t521 () (or @t520 @t517 @t137))
% 48.60/48.82  (define @t522 () (forall @t76 @t521))
% 48.60/48.82  (define @t523 () (not @t522))
% 48.60/48.82  (define @t524 () (>= @t141 0))
% 48.60/48.82  (define @t525 () (not @t524))
% 48.60/48.82  (define @t526 () (>= @t142 0))
% 48.60/48.82  (define @t527 () (not @t526))
% 48.60/48.82  (define @t528 () (>= @t144 0))
% 48.60/48.82  (define @t529 () (not @t528))
% 48.60/48.82  (define @t530 () (or @t529 @t527 @t525 @t523 @t516 @t135))
% 48.60/48.82  (define @t531 () (or @t529 @t527 @t525 @t523 @t516))
% 48.60/48.82  (define @t532 () (and @t528 @t526 @t524 @t522 @t117))
% 48.60/48.82  (define @t533 () (not @t517))
% 48.60/48.82  (define @t534 () (and @t519 @t533))
% 48.60/48.82  (define @t535 () (>= @t74 @t108))
% 48.60/48.82  (define @t536 () (+ @t518 1))
% 48.60/48.82  (define @t537 () (>= @t123 @t74))
% 48.60/48.82  (define @t538 () (tptp.t2tb2 @t470))
% 48.60/48.82  (define @t539 () (tptp.t2tb2 @t485))
% 48.60/48.82  (define @t540 () (= (tptp.tb2t (tptp.get2 tptp.int @t539 @t74)) (tptp.tb2t (tptp.get2 tptp.int @t538 @t74))))
% 48.60/48.82  (define @t541 () (>= @t488 0))
% 48.60/48.82  (define @t542 () (+ (* -2 @t303) @t313))
% 48.60/48.82  (define @t543 () (* -2 @t476))
% 48.60/48.82  (define @t544 () (+ @t74 @t543 @t303))
% 48.60/48.82  (define @t545 () (>= @t544 1))
% 48.60/48.82  (define @t546 () (not @t545))
% 48.60/48.82  (define @t547 () (or @t546 @t541 @t540))
% 48.60/48.82  (define @t548 () (forall @t76 @t547))
% 48.60/48.82  (define @t549 () (not @t548))
% 48.60/48.82  (define @t550 () (tptp.length1 tptp.int @t538))
% 48.60/48.82  (define @t551 () (>= @t550 0))
% 48.60/48.82  (define @t552 () (not @t551))
% 48.60/48.82  (define @t553 () (tptp.length1 tptp.int @t539))
% 48.60/48.82  (define @t554 () (>= @t553 0))
% 48.60/48.82  (define @t555 () (not @t554))
% 48.60/48.82  (define @t556 () (tptp.t2tb2 @t474))
% 48.60/48.82  (define @t557 () (tptp.length1 tptp.int @t556))
% 48.60/48.82  (define @t558 () (>= @t557 0))
% 48.60/48.82  (define @t559 () (not @t558))
% 48.60/48.82  (define @t560 () (or @t559 @t555 @t552 @t549 @t492 @t477))
% 48.60/48.82  (define @t561 () (forall @t148 @t530))
% 48.60/48.82  (define @t562 () (forall @t76 (or (not @t490) @t541 @t540)))
% 48.60/48.82  (define @t563 () (not @t562))
% 48.60/48.82  (define @t564 () (or @t559 @t555 @t552 @t563 @t492 @t477))
% 48.60/48.82  (define @t565 () (@list tptp.int @t468 @t467))
% 48.60/48.82  (define @t566 () (>= @t308 0))
% 48.60/48.82  (define @t567 () (not @t566))
% 48.60/48.82  (define @t568 () (+ -1 1))
% 48.60/48.82  (define @t569 () (>= @t308 @t568))
% 48.60/48.82  (define @t570 () (<= @t308 -1))
% 48.60/48.82  (define @t571 () (+ -1 @t506))
% 48.60/48.82  (define @t572 () (+ @t308 @t475))
% 48.60/48.82  (define @t573 () (and @t567 @t494))
% 48.60/48.82  (define @t574 () (not @t500))
% 48.60/48.82  (define @t575 () (= @t469 @t538))
% 48.60/48.82  (define @t576 () (not @t575))
% 48.60/48.82  (define @t577 () (tptp.length1 tptp.int @t469))
% 48.60/48.82  (define @t578 () (= @t468 @t577))
% 48.60/48.82  (define @t579 () (not @t578))
% 48.60/48.82  (define @t580 () (not @t505))
% 48.60/48.82  (define @t581 () (not @t574))
% 48.60/48.82  (define @t582 () (= @t468 @t550))
% 48.60/48.82  (define @t583 () (* -1 @t550))
% 48.60/48.82  (define @t584 () (+ @t468 @t583))
% 48.60/48.82  (define @t585 () (= @t584 0))
% 48.60/48.82  (define @t586 () (not true))
% 48.60/48.82  (define @t587 () (>= 0 0))
% 48.60/48.82  (define @t588 () (+ 0 0 0 1 0 -1))
% 48.60/48.82  (define @t589 () (* -1 0))
% 48.60/48.82  (define @t590 () (+ 0 @t589 0 1 @t589 -1))
% 48.60/48.82  (define @t591 () (* 0 @t308))
% 48.60/48.82  (define @t592 () (= @t591 0))
% 48.60/48.82  (define @t593 () (+ @t583 @t550 @t591 @t493 @t329 @t468 @t302 @t508))
% 48.60/48.82  (define @t594 () (* -1 @t476))
% 48.60/48.82  (define @t595 () (+ @t584 @t475 @t499 @t330 @t594 @t550))
% 48.60/48.82  (define @t596 () (>= @t595 @t590))
% 48.60/48.82  (define @t597 () (and @t552 @t496 @t505 @t574 @t566 @t582))
% 48.60/48.82  (define @t598 () (@list true false true false false false))
% 48.60/48.82  (define @t599 () (@list tptp.int @t468 @t479))
% 48.60/48.82  (define @t600 () (= @t484 @t539))
% 48.60/48.82  (define @t601 () (not @t600))
% 48.60/48.82  (define @t602 () (tptp.length1 tptp.int @t484))
% 48.60/48.82  (define @t603 () (= @t468 @t602))
% 48.60/48.82  (define @t604 () (not @t603))
% 48.60/48.82  (define @t605 () (= @t468 @t553))
% 48.60/48.82  (define @t606 () (* -1 @t553))
% 48.60/48.82  (define @t607 () (+ @t468 @t606))
% 48.60/48.82  (define @t608 () (= @t607 0))
% 48.60/48.82  (define @t609 () (+ @t606 @t553 @t591 @t493 @t329 @t468 @t302 @t508))
% 48.60/48.82  (define @t610 () (+ @t607 @t475 @t499 @t330 @t594 @t553))
% 48.60/48.82  (define @t611 () (>= @t610 @t590))
% 48.60/48.82  (define @t612 () (and @t555 @t496 @t505 @t574 @t566 @t605))
% 48.60/48.82  (define @t613 () (@list tptp.int @t468 @t472))
% 48.60/48.82  (define @t614 () (= @t473 @t556))
% 48.60/48.82  (define @t615 () (not @t614))
% 48.60/48.82  (define @t616 () (tptp.length1 tptp.int @t473))
% 48.60/48.82  (define @t617 () (= @t468 @t616))
% 48.60/48.82  (define @t618 () (not @t617))
% 48.60/48.82  (define @t619 () (= @t468 @t557))
% 48.60/48.82  (define @t620 () (* -1 @t557))
% 48.60/48.82  (define @t621 () (+ @t468 @t620))
% 48.60/48.82  (define @t622 () (= @t621 0))
% 48.60/48.82  (define @t623 () (+ @t620 @t557 @t591 @t493 @t329 @t468 @t302 @t508))
% 48.60/48.82  (define @t624 () (+ @t621 @t475 @t499 @t330 @t594 @t557))
% 48.60/48.82  (define @t625 () (>= @t624 @t590))
% 48.60/48.82  (define @t626 () (and @t559 @t496 @t505 @t574 @t566 @t619))
% 48.60/48.82  (define @t627 () (@quantifiers_skolemize @t562 0))
% 48.60/48.82  (define @t628 () (tptp.get2 tptp.int @t538 @t627))
% 48.60/48.82  (define @t629 () (tptp.tb2t @t628))
% 48.60/48.82  (define @t630 () (tptp.get2 tptp.int @t539 @t627))
% 48.60/48.82  (define @t631 () (tptp.tb2t @t630))
% 48.60/48.82  (define @t632 () (= @t631 @t629))
% 48.60/48.82  (define @t633 () (* -1 @t627))
% 48.60/48.82  (define @t634 () (+ @t303 @t633))
% 48.60/48.82  (define @t635 () (>= @t634 1))
% 48.60/48.82  (define @t636 () (not @t635))
% 48.60/48.82  (define @t637 () (+ @t303 @t633 @t309))
% 48.60/48.82  (define @t638 () (>= @t637 0))
% 48.60/48.82  (define @t639 () (or @t638 @t636 @t632))
% 48.60/48.82  (define @t640 () (not @t639))
% 48.60/48.82  (define @t641 () (+ @t304 @t627))
% 48.60/48.82  (define @t642 () (+ @t634 1))
% 48.60/48.82  (define @t643 () (+ @t627 @t304))
% 48.60/48.82  (define @t644 () (>= @t643 0))
% 48.60/48.82  (define @t645 () (+ @t304 @t627 @t313))
% 48.60/48.82  (define @t646 () (+ @t637 1))
% 48.60/48.82  (define @t647 () (+ @t627 @t304 @t313))
% 48.60/48.82  (define @t648 () (>= @t647 1))
% 48.60/48.82  (define @t649 () (not @t648))
% 48.60/48.82  (define @t650 () (or @t649 @t644 @t632))
% 48.60/48.82  (define @t651 () (not @t650))
% 48.60/48.82  (define @t652 () (@list @t639))
% 48.60/48.82  (define @t653 () (tptp.t2tb @t627))
% 48.60/48.82  (define @t654 () (tptp.tb2t (tptp.get tptp.int tptp.int @t467 @t653)))
% 48.60/48.82  (define @t655 () (tptp.tb2t (tptp.get tptp.int tptp.int @t479 @t653)))
% 48.60/48.82  (define @t656 () (= @t655 @t654))
% 48.60/48.82  (define @t657 () (+ @t329 @t627 @t313))
% 48.60/48.82  (define @t658 () (+ @t302 @t633 @t309))
% 48.60/48.82  (define @t659 () (+ @t658 1))
% 48.60/48.82  (define @t660 () (+ @t627 @t329 @t313))
% 48.60/48.82  (define @t661 () (>= @t660 1))
% 48.60/48.82  (define @t662 () (or @t661 @t656))
% 48.60/48.82  (define @t663 () (>= @t658 0))
% 48.60/48.82  (define @t664 () (not @t663))
% 48.60/48.82  (define @t665 () (or @t664 @t656))
% 48.60/48.82  (define @t666 () (not @t632))
% 48.60/48.82  (define @t667 () (= @t61 @t68))
% 48.60/48.82  (define @t668 () (= @t467 (tptp.elts tptp.int @t469)))
% 48.60/48.82  (define @t669 () (tptp.sort1 @t86 @t467))
% 48.60/48.82  (define @t670 () (not @t669))
% 48.60/48.82  (define @t671 () (or @t670 @t668))
% 48.60/48.82  (define @t672 () (@list false false))
% 48.60/48.82  (define @t673 () (= @t479 (tptp.elts tptp.int @t484)))
% 48.60/48.82  (define @t674 () (tptp.sort1 @t86 @t479))
% 48.60/48.82  (define @t675 () (not @t674))
% 48.60/48.82  (define @t676 () (or @t675 @t673))
% 48.60/48.82  (define @t677 () (not @t656))
% 48.60/48.82  (define @t678 () (tptp.elts tptp.int @t538))
% 48.60/48.82  (define @t679 () (tptp.get tptp.int tptp.int @t678 @t653))
% 48.60/48.82  (define @t680 () (= @t628 @t679))
% 48.60/48.82  (define @t681 () (not @t680))
% 48.60/48.82  (define @t682 () (tptp.elts tptp.int @t539))
% 48.60/48.82  (define @t683 () (tptp.get tptp.int tptp.int @t682 @t653))
% 48.60/48.82  (define @t684 () (= @t630 @t683))
% 48.60/48.82  (define @t685 () (not @t684))
% 48.60/48.82  (define @t686 () (not @t668))
% 48.60/48.82  (define @t687 () (not @t673))
% 48.60/48.82  (define @t688 () (and @t673 @t668 @t600 @t575 @t666 @t684 @t680))
% 48.60/48.82  (define @t689 () (not @t328))
% 48.60/48.82  (define @t690 () (not @t311))
% 48.60/48.82  (define @t691 () (+ @t506 0 @t589 0))
% 48.60/48.82  (define @t692 () (* 0 @t627))
% 48.60/48.82  (define @t693 () (+ @t692 @t307 @t306 @t313 @t309 @t329 @t302 @t508))
% 48.60/48.82  (define @t694 () (+ @t303 @t329 @t313 @t306))
% 48.60/48.82  (define @t695 () (+ (* -1 @t634) @t694 @t307 @t658))
% 48.60/48.82  (define @t696 () (>= @t695 @t691))
% 48.60/48.82  (define @t697 () (and @t664 @t328 @t311 @t635))
% 48.60/48.82  (assume @p1 (forall (@list @t1) (tptp.sort1 @t1 (tptp.witness1 @t1))))
% 48.60/48.82  (assume @p2 (forall (@list @t1 @t4 @t3 @t2) (tptp.sort1 @t1 (tptp.match_bool1 @t1 @t4 @t3 @t2))))
% 48.60/48.82  (assume @p3 (forall @t7 (=> (tptp.sort1 @t1 @t5) (= (tptp.match_bool1 @t1 tptp.true1 @t5 @t6) @t5))))
% 48.60/48.82  (assume @p4 (forall @t7 (=> (tptp.sort1 @t1 @t6) (= (tptp.match_bool1 @t1 tptp.false1 @t5 @t6) @t6))))
% 48.60/48.82  (assume @p5 (not (= tptp.true1 tptp.false1)))
% 48.60/48.82  (assume @p6 (forall (@list @t8) (or (= @t8 tptp.true1) (= @t8 tptp.false1))))
% 48.60/48.82  (assume @p7 (forall (@list @t9) (= @t9 tptp.tuple03)))
% 48.60/48.82  (assume @p8 (forall @t15 (=> @t14 (=> @t13 (<= (* @t12 @t10) (* @t11 @t10))))))
% 48.60/48.82  (assume @p9 (forall @t18 (and (=> @t17 (= @t16 @t12)) (=> (not @t17) (= @t16 (- @t12))))))
% 48.60/48.82  (assume @p10 (forall @t19 (= (<= @t16 @t11) (and (<= (- @t11) @t12) @t14))))
% 48.60/48.82  (assume @p11 (forall @t18 (<= 0 @t16)))
% 48.60/48.82  (assume @p12 @t28)
% 48.60/48.82  (assume @p13 (forall @t19 (=> @t31 (and @t29 (<= @t21 @t12)))))
% 48.60/48.82  (assume @p14 (forall @t19 (=> @t26 (and (< (- @t32) @t20) (< @t20 @t32)))))
% 48.60/48.82  (assume @p15 (forall @t19 (=> @t31 @t29)))
% 48.60/48.82  (assume @p16 (forall @t19 (=> (and @t33 @t30) (<= @t21 0))))
% 48.60/48.82  (assume @p17 @t36)
% 48.60/48.82  (assume @p18 (forall @t19 (=> (and @t33 @t26) (<= @t20 0))))
% 48.60/48.82  (assume @p19 (forall @t19 (=> @t26 (<= (tptp.abs1 (* @t21 @t11)) @t16))))
% 48.60/48.82  (assume @p20 (forall @t18 (= (tptp.div1 @t12 1) @t12)))
% 48.60/48.82  (assume @p21 (forall @t18 (= (tptp.mod1 @t12 1) 0)))
% 48.60/48.82  (assume @p22 (forall @t19 (=> @t37 (= @t21 0))))
% 48.60/48.82  (assume @p23 (forall @t19 (=> @t37 (= @t20 @t12))))
% 48.60/48.82  (assume @p24 (forall @t15 (=> @t40 (= (tptp.div1 @t39 @t12) (+ @t11 (tptp.div1 @t10 @t12))))))
% 48.60/48.82  (assume @p25 (forall @t15 (=> @t40 (= (tptp.mod1 @t39 @t12) (tptp.mod1 @t10 @t12)))))
% 48.60/48.82  (assume @p26 (forall @t18 (= (tptp.power1 @t12 0) 1)))
% 48.60/48.82  (assume @p27 (forall @t44 (=> @t43 (= (tptp.power1 @t12 (+ @t41 1)) (* @t12 @t42)))))
% 48.60/48.82  (assume @p28 (forall @t44 (=> (< 0 @t41) (= @t42 (* @t12 (tptp.power1 @t12 (- @t41 1)))))))
% 48.60/48.82  (assume @p29 (forall @t18 (= (tptp.power1 @t12 1) @t12)))
% 48.60/48.82  (assume @p30 (forall @t47 (=> @t43 (=> @t46 (= (tptp.power1 @t12 (+ @t41 @t45)) (* @t42 (tptp.power1 @t12 @t45)))))))
% 48.60/48.82  (assume @p31 (forall @t47 (=> @t43 (=> @t46 (= (tptp.power1 @t12 (* @t41 @t45)) (tptp.power1 @t42 @t45))))))
% 48.60/48.82  (assume @p32 (forall (@list @t12 @t11 @t41) (=> @t43 (= (tptp.power1 @t38 @t41) (* @t42 (tptp.power1 @t11 @t41))))))
% 48.60/48.82  (assume @p33 (forall (@list @t1 @t49 @t48 @t3) (tptp.sort1 @t49 (tptp.get @t49 @t1 @t48 @t3))))
% 48.60/48.82  (assume @p34 (forall (@list @t1 @t49 @t48 @t3 @t2) (tptp.sort1 @t50 (tptp.set @t49 @t1 @t48 @t3 @t2))))
% 48.60/48.82  (assume @p35 (forall (@list @t1 @t49 @t54 @t53 @t52 @t51) (=> @t57 (=> @t56 (= @t55 @t51)))))
% 48.60/48.82  (assume @p36 (forall (@list @t1 @t49 @t54 @t53 @t52) (=> (tptp.sort1 @t1 @t53) (=> (tptp.sort1 @t1 @t52) (forall (@list @t51) (=> (not @t56) (= @t55 (tptp.get @t49 @t1 @t54 @t52))))))))
% 48.60/48.82  (assume @p37 (forall (@list @t1 @t49 @t48) (tptp.sort1 @t50 (tptp.const @t49 @t1 @t48))))
% 48.60/48.82  (assume @p38 (forall (@list @t1 @t49 @t51 @t53) (=> @t57 (= (tptp.get @t49 @t1 (tptp.const @t49 @t1 @t51) @t53) @t51))))
% 48.60/48.82  (assume @p39 (forall @t59 (tptp.sort1 @t58 (tptp.mk_array1 @t1 @t12 @t3))))
% 48.60/48.82  (assume @p40 @t66)
% 48.60/48.82  (assume @p41 (forall (@list @t1 @t48) (tptp.sort1 @t67 (tptp.elts @t1 @t48))))
% 48.60/48.82  (assume @p42 @t71)
% 48.60/48.82  (assume @p43 (forall (@list @t1 @t72) (= @t72 (tptp.mk_array1 @t1 (tptp.length1 @t1 @t72) (tptp.elts @t1 @t72)))))
% 48.60/48.82  (assume @p44 (forall (@list @t1 @t48 @t73) (tptp.sort1 @t1 (tptp.get2 @t1 @t48 @t73))))
% 48.60/48.82  (assume @p45 (forall @t18 (tptp.sort1 tptp.int (tptp.t2tb @t12))))
% 48.60/48.82  (assume @p46 (forall @t76 (= (tptp.tb2t @t75) @t74)))
% 48.60/48.82  (assume @p47 (forall @t78 (= (tptp.t2tb (tptp.tb2t @t77)) @t77)))
% 48.60/48.82  (assume @p48 (forall (@list @t1 @t53 @t74) (= (tptp.get2 @t1 @t53 @t74) (tptp.get @t1 tptp.int @t79 @t75))))
% 48.60/48.82  (assume @p49 (forall (@list @t1 @t48 @t73 @t2) (tptp.sort1 @t58 (tptp.set2 @t1 @t48 @t73 @t2))))
% 48.60/48.82  (assume @p50 (forall (@list @t1 @t53 @t74 @t80) (= (tptp.set2 @t1 @t53 @t74 @t80) (tptp.mk_array1 @t1 (tptp.length1 @t1 @t53) (tptp.set @t1 tptp.int @t79 @t75 @t80)))))
% 48.60/48.82  (assume @p51 (forall @t59 (tptp.sort1 @t58 (tptp.make1 @t1 @t12 @t3))))
% 48.60/48.82  (assume @p52 (forall (@list @t1 @t41 @t80) (= (tptp.make1 @t1 @t41 @t80) (tptp.mk_array1 @t1 @t41 (tptp.const @t1 tptp.int @t80)))))
% 48.60/48.82  (assume @p53 (forall @t84 (=> (<= @t81 @t74) (= @t83 0))))
% 48.60/48.82  (assume @p54 (forall (@list @t85) (tptp.sort1 @t86 (tptp.t2tb1 @t85))))
% 48.60/48.82  (assume @p55 (forall (@list @t87) (= (tptp.tb2t1 (tptp.t2tb1 @t87)) @t87)))
% 48.60/48.82  (assume @p56 (forall @t78 (= (tptp.t2tb1 (tptp.tb2t1 @t77)) @t77)))
% 48.60/48.82  (assume @p57 (forall @t84 (=> @t89 (= @t83 (+ (tptp.tb2t (tptp.get tptp.int tptp.int @t88 @t75)) (tptp.sum2 @t82 (+ @t74 1) @t81))))))
% 48.60/48.82  (assume @p58 (forall @t84 (=> @t89 (= @t83 (+ (tptp.sum2 @t82 @t74 @t90) (tptp.tb2t (tptp.get tptp.int tptp.int @t88 (tptp.t2tb @t90))))))))
% 48.60/48.82  (assume @p59 (forall (@list @t82 @t74 @t91 @t81) (=> (and @t92 (<= @t91 @t81)) (= @t83 (+ (tptp.sum2 @t82 @t74 @t91) (tptp.sum2 @t82 @t91 @t81))))))
% 48.60/48.82  (assume @p60 (forall (@list @t94 @t93 @t74 @t81) (=> (forall @t96 (=> (and @t92 (< @t91 @t81)) (= (tptp.tb2t (tptp.get tptp.int tptp.int (tptp.t2tb1 @t94) @t95)) (tptp.tb2t (tptp.get tptp.int tptp.int (tptp.t2tb1 @t93) @t95))))) (= (tptp.sum2 @t94 @t74 @t81) (tptp.sum2 @t93 @t74 @t81)))))
% 48.60/48.82  (assume @p61 (forall (@list @t97) (tptp.sort1 (tptp.array tptp.int) (tptp.t2tb2 @t97))))
% 48.60/48.82  (assume @p62 (forall (@list @t98) (= (tptp.tb2t2 (tptp.t2tb2 @t98)) @t98)))
% 48.60/48.82  (assume @p63 @t100)
% 48.60/48.82  (assume @p64 (forall (@list @t103 @t102 @t101) (= (tptp.sum3 @t103 @t102 @t101) (tptp.sum2 (tptp.tb2t1 (tptp.elts tptp.int @t104)) @t102 @t101))))
% 48.60/48.82  (assume @p65 (forall @t18 (=> @t17 (and (<= @t105 @t12) (<= (- @t12 1) @t105)))))
% 48.60/48.82  (assume @p66 (forall @t18 (= @t106 (exists @t96 (and (<= 0 @t91) (= @t12 (tptp.power1 2 @t91)))))))
% 48.60/48.82  (assume @p67 (forall @t18 (=> @t106 (=> (< 1 @t12) (= @t105 @t12)))))
% 48.60/48.82  (assume @p68 (forall @t113 (= @t112 @t111)))
% 48.60/48.82  (assume @p69 (forall @t113 (= @t115 @t114)))
% 48.60/48.82  (assume @p70 (forall @t122 (=> (= @t108 @t121) (=> @t120 @t117))))
% 48.60/48.82  (assume @p71 (forall @t122 (=> @t127 (=> @t126 (=> @t125 (=> @t124 @t117))))))
% 48.60/48.82  (assume @p72 (forall (@list @t10 @t132 @t130 @t128) (=> (tptp.phase11 @t10 @t132 @t130 @t128) (or (exists (@list @t107 @t116 @t103) (and @t120 @t133 (= @t132 @t121) @t131 @t129)) (exists @t122 (and @t127 @t126 @t125 @t124 @t133 (= @t132 @t108) @t131 @t129))))))
% 48.60/48.82  (assume @p73 @t149)
% 48.60/48.82  (assume @p74 (forall (@list @t107 @t108 @t116 @t150 @t103) (=> (and @t145 (<= 0 (tptp.length1 tptp.int @t151)) @t143 (forall @t76 (=> @t138 (= (tptp.tb2t (tptp.get2 tptp.int @t118 @t74)) (tptp.tb2t (tptp.get2 tptp.int @t151 @t74))))) @t117) (tptp.phase11 @t107 @t108 @t150 @t103))))
% 48.60/48.82  (assume @p75 @t223)
% 48.60/48.82  (assume @p76 true)
% 48.60/48.82  (step @p77 :rule refl :args (@t226))
% 48.60/48.82  (step @p78 :rule bool-double-not-elim :args (@t25))
% 48.60/48.82  (step @p79 :rule nary_cong :premises (@p78 @p77) :args ((or @t227 @t226)))
% 48.60/48.82  (step @p80 :rule bool-impl-elim :args (@t26 @t226))
% 48.60/48.82  (step @p81 :rule trans :premises (@p80 @p79))
% 48.60/48.82  (step @p82 :rule cong :premises (@p81) :args ((forall @t19 (=> @t26 @t226))))
% 48.60/48.82  (step @p83 :rule arith_poly_norm :args ((= (+ @t224 @t20) @t225)))
% 48.60/48.82  (step @p84 :rule refl :args (@t20))
% 48.60/48.82  (step @p85 :rule arith_poly_norm :args ((= @t22 @t224)))
% 48.60/48.82  (step @p86 :rule nary_cong :premises (@p85 @p84) :args (@t23))
% 48.60/48.82  (step @p87 :rule trans :premises (@p86 @p83))
% 48.60/48.82  (step @p88 :rule refl :args (@t12))
% 48.60/48.82  (step @p89 :rule cong :premises (@p88 @p87) :args (@t24))
% 48.60/48.82  (step @p90 :rule refl :args (@t26))
% 48.60/48.82  (step @p91 :rule cong :premises (@p90 @p89) :args (@t27))
% 48.60/48.82  (step @p92 :rule cong :premises (@p91) :args (@t28))
% 48.60/48.82  (step @p93 :rule trans :premises (@p92 @p82))
% 48.60/48.82  (step @p94 :rule eq_resolve :premises (@p12 @p93))
% 48.60/48.82  (step @p95 :rule aci_norm :args ((= (or false @t311) @t311)))
% 48.60/48.82  (step @p96 :rule arith_poly_norm :args ((= (* 1 (- @t305 @t314)) (* -1 @t312))))
% 48.60/48.82  (step @p97 :rule arith_poly_norm_rel :premises (@p96) :args ((= (= @t305 @t314) @t311)))
% 48.60/48.82  (step @p98 :rule arith_poly_norm :args ((= (+ @t306 @t313) @t314)))
% 48.60/48.82  (step @p99 :rule arith_poly_norm :args ((= @t315 @t313)))
% 48.60/48.82  (step @p100 :rule refl :args (@t306))
% 48.60/48.82  (step @p101 :rule nary_cong :premises (@p100 @p99) :args (@t316))
% 48.60/48.82  (step @p102 :rule trans :premises (@p101 @p98))
% 48.60/48.82  (step @p103 :rule refl :args (@t305))
% 48.60/48.82  (step @p104 :rule cong :premises (@p103 @p102) :args (@t317))
% 48.60/48.82  (step @p105 :rule trans :premises (@p104 @p97))
% 48.60/48.82  (step @p106 :rule evaluate :args (@t318))
% 48.60/48.82  (step @p107 :rule nary_cong :premises (@p106 @p105) :args (@t319))
% 48.60/48.82  (step @p108 :rule trans :premises (@p107 @p95))
% 48.60/48.82  (step @p109 :rule refl :args (@t320))
% 48.60/48.82  (step @p110 :rule cong :premises (@p109 @p108) :args ((=> @t320 @t319)))
% 48.60/48.82  (assume-push @p1317 @t320)
% 48.60/48.82  (step @p112 :rule instantiate :premises (@p94) :args (@t321))
% 48.60/48.82  (step-pop @p1318 :rule scope :premises (@p112))
% 48.60/48.82  (step @p113 :rule process_scope :premises (@p1318) :args (@t319))
% 48.60/48.82  (step @p115 :rule eq_resolve :premises (@p113 @p110))
% 48.60/48.82  (step @p116 :rule implies_elim :premises (@p115))
% 48.60/48.82  (step @p117 :rule chain_m_resolution :premises (@p116 @p94) :args (@t311 @t322 (@list @t320)))
% 48.60/48.82  (step @p118 :rule aci_norm :args ((= (or (or @t325 @t25) @t323) @t326)))
% 48.60/48.82  (step @p119 :rule refl :args (@t323))
% 48.60/48.82  (step @p120 :rule refl :args (@t325))
% 48.60/48.82  (step @p121 :rule nary_cong :premises (@p120 @p78) :args ((or @t325 @t227)))
% 48.60/48.82  (step @p122 :rule bool-and-de-morgan :args (@t324 @t26 true))
% 48.60/48.82  (step @p123 :rule trans :premises (@p122 @p121))
% 48.60/48.82  (step @p124 :rule nary_cong :premises (@p123 @p119) :args ((or (not @t327) @t323)))
% 48.60/48.82  (step @p125 :rule trans :premises (@p124 @p118))
% 48.60/48.82  (step @p126 :rule bool-impl-elim :args (@t327 @t323))
% 48.60/48.82  (step @p127 :rule trans :premises (@p126 @p125))
% 48.60/48.82  (step @p128 :rule cong :premises (@p127) :args ((forall @t19 (=> @t327 @t323))))
% 48.60/48.82  (step @p129 :rule arith-elim-leq :args (0 @t20))
% 48.60/48.82  (step @p130 :rule arith-elim-leq :args (0 @t12))
% 48.60/48.82  (step @p131 :rule nary_cong :premises (@p130 @p90) :args (@t34))
% 48.60/48.82  (step @p132 :rule cong :premises (@p131 @p129) :args (@t35))
% 48.60/48.82  (step @p133 :rule cong :premises (@p132) :args (@t36))
% 48.60/48.82  (step @p134 :rule trans :premises (@p133 @p128))
% 48.60/48.82  (step @p135 :rule eq_resolve :premises (@p17 @p134))
% 48.60/48.82  (step @p136 :rule aci_norm :args ((= (or @t331 false @t328) @t332)))
% 48.60/48.82  (step @p137 :rule refl :args (@t328))
% 48.60/48.82  (step @p138 :rule bool-double-not-elim :args (@t331))
% 48.60/48.82  (step @p139 :rule arith_poly_norm :args ((= (* -1 (- 1 @t333)) (* -1 (- @t305 0)))))
% 48.60/48.82  (step @p140 :rule arith_poly_norm_rel :premises (@p139) :args ((= (>= 1 @t333) @t334)))
% 48.60/48.82  (step @p141 :rule arith-geq-tighten :args (@t330 1))
% 48.60/48.82  (step @p142 :rule trans :premises (@p141 @p140))
% 48.60/48.82  (step @p143 :rule symm :premises (@p142))
% 48.60/48.82  (step @p144 :rule cong :premises (@p143) :args (@t335))
% 48.60/48.82  (step @p145 :rule trans :premises (@p144 @p138))
% 48.60/48.82  (step @p146 :rule nary_cong :premises (@p145 @p106 @p137) :args (@t336))
% 48.60/48.82  (step @p147 :rule trans :premises (@p146 @p136))
% 48.60/48.82  (step @p148 :rule refl :args (@t337))
% 48.60/48.82  (step @p149 :rule cong :premises (@p148 @p147) :args ((=> @t337 @t336)))
% 48.60/48.82  (assume-push @p1319 @t337)
% 48.60/48.82  (step @p151 :rule instantiate :premises (@p135) :args (@t321))
% 48.60/48.82  (step-pop @p1320 :rule scope :premises (@p151))
% 48.60/48.82  (step @p152 :rule process_scope :premises (@p1320) :args (@t336))
% 48.60/48.82  (step @p154 :rule eq_resolve :premises (@p152 @p149))
% 48.60/48.82  (step @p155 :rule implies_elim :premises (@p154))
% 48.60/48.82  (step @p156 :rule chain_m_resolution :premises (@p155 @p135) :args (@t332 @t322 (@list @t337)))
% 48.60/48.82  (step @p157 :rule refl :args (@t236))
% 48.60/48.82  (step @p158 :rule refl :args (@t245))
% 48.60/48.82  (step @p159 :rule refl :args (@t249))
% 48.60/48.82  (step @p160 :rule refl :args (@t253))
% 48.60/48.82  (step @p161 :rule refl :args (@t256))
% 48.60/48.82  (step @p162 :rule arith_poly_norm :args ((= (* 1 (- @t239 @t192)) (* -1 (- @t192 @t239)))))
% 48.60/48.82  (step @p163 :rule arith_poly_norm_rel :premises (@p162) :args ((= @t338 @t257)))
% 48.60/48.82  (step @p164 :rule refl :args (@t260))
% 48.60/48.82  (step @p165 :rule nary_cong :premises (@p164 @p163) :args (@t339))
% 48.60/48.82  (step @p166 :rule cong :premises (@p165) :args (@t340))
% 48.60/48.82  (step @p167 :rule cong :premises (@p166) :args (@t341))
% 48.60/48.82  (step @p168 :rule refl :args (@t262))
% 48.60/48.82  (step @p169 :rule nary_cong :premises (@p168 @p163) :args (@t342))
% 48.60/48.82  (step @p170 :rule cong :premises (@p169) :args (@t343))
% 48.60/48.82  (step @p171 :rule cong :premises (@p170) :args (@t344))
% 48.60/48.82  (step @p172 :rule arith_poly_norm :args ((= (* 1 (- @t263 @t266)) (* -1 (- @t266 @t263)))))
% 48.60/48.82  (step @p173 :rule arith_poly_norm_rel :premises (@p172) :args ((= @t345 @t267)))
% 48.60/48.82  (step @p174 :rule cong :premises (@p173) :args (@t346))
% 48.60/48.82  (step @p175 :rule refl :args (@t268))
% 48.60/48.82  (step @p176 :rule refl :args (@t271))
% 48.60/48.82  (step @p177 :rule refl :args (@t273))
% 48.60/48.82  (step @p178 :rule refl :args (@t275))
% 48.60/48.82  (step @p179 :rule refl :args (@t278))
% 48.60/48.82  (step @p180 :rule refl :args (@t281))
% 48.60/48.82  (step @p181 :rule refl :args (@t283))
% 48.60/48.82  (step @p182 :rule refl :args (@t285))
% 48.60/48.82  (step @p183 :rule refl :args (@t287))
% 48.60/48.82  (step @p184 :rule refl :args (@t289))
% 48.60/48.82  (step @p185 :rule refl :args (@t292))
% 48.60/48.82  (step @p186 :rule refl :args (@t294))
% 48.60/48.82  (step @p187 :rule refl :args (@t295))
% 48.60/48.82  (step @p188 :rule refl :args (@t297))
% 48.60/48.82  (step @p189 :rule refl :args (@t299))
% 48.60/48.82  (step @p190 :rule nary_cong :premises (@p189 @p188 @p187 @p186 @p185 @p184 @p183 @p182 @p181 @p180 @p179 @p178 @p177 @p176 @p175 @p174 @p171 @p167 @p161 @p160 @p159 @p158 @p157) :args (@t347))
% 48.60/48.82  (step @p191 :rule aci_norm :args ((= @t349 @t347)))
% 48.60/48.82  (step @p192 :rule trans :premises (@p191 @p190))
% 48.60/48.82  (step @p193 :rule cong :premises (@p192) :args (@t350))
% 48.60/48.82  (step @p194 :rule quant-merge-prenex :args ((= (forall @t221 @t352) @t350)))
% 48.60/48.82  (step @p195 :rule alpha_equiv :args (@t353 (@list @t237 @t228) (@list @t160 @t354)))
% 48.60/48.82  (step @p196 :rule refl :args (@t271))
% 48.60/48.82  (step @p197 :rule refl :args (@t273))
% 48.60/48.82  (step @p198 :rule refl :args (@t275))
% 48.60/48.82  (step @p199 :rule refl :args (@t278))
% 48.60/48.82  (step @p200 :rule refl :args (@t281))
% 48.60/48.82  (step @p201 :rule refl :args (@t283))
% 48.60/48.82  (step @p202 :rule refl :args (@t285))
% 48.60/48.82  (step @p203 :rule refl :args (@t287))
% 48.60/48.82  (step @p204 :rule refl :args (@t289))
% 48.60/48.82  (step @p205 :rule refl :args (@t292))
% 48.60/48.82  (step @p206 :rule refl :args (@t294))
% 48.60/48.82  (step @p207 :rule refl :args (@t295))
% 48.60/48.82  (step @p208 :rule refl :args (@t297))
% 48.60/48.82  (step @p209 :rule refl :args (@t299))
% 48.60/48.82  (step @p210 :rule nary_cong :premises (@p209 @p208 @p207 @p206 @p205 @p204 @p203 @p202 @p201 @p200 @p199 @p198 @p197 @p196 @p195) :args (@t355))
% 48.60/48.82  (step @p211 :rule quant-miniscope-or :args ((= @t352 @t355)))
% 48.60/48.82  (step @p212 :rule trans :premises (@p211 @p210))
% 48.60/48.82  (step @p213 :rule symm :premises (@p212))
% 48.60/48.82  (step @p214 :rule cong :premises (@p213) :args ((forall @t221 @t376)))
% 48.60/48.82  (step @p215 :rule trans :premises (@p214 @p194))
% 48.60/48.82  (step @p216 :rule trans :premises (@p215 @p193))
% 48.60/48.82  (step @p217 :rule aci_norm :args ((= (or (or @t299 @t297 @t295 @t294 @t292 @t289) @t377) @t376)))
% 48.60/48.82  (step @p218 :rule aci_norm :args ((= (or @t287 @t378) @t377)))
% 48.60/48.82  (step @p219 :rule aci_norm :args ((= (or (or @t285 @t283 @t281 @t278 @t275) @t379) @t378)))
% 48.60/48.82  (step @p220 :rule refl :args (@t379))
% 48.60/48.82  (step @p221 :rule bool-double-not-elim :args (@t281))
% 48.60/48.82  (step @p222 :rule nary_cong :premises (@p202 @p201 @p221 @p199 @p198) :args (@t382))
% 48.60/48.82  (step @p223 :rule aci_norm :args ((= (or @t285 (or @t283 (or @t381 (or @t278 @t275)))) @t382)))
% 48.60/48.82  (step @p224 :rule trans :premises (@p223 @p222))
% 48.60/48.82  (step @p225 :rule bool-and-de-morgan :args (@t277 @t274 true))
% 48.60/48.82  (step @p226 :rule refl :args (@t381))
% 48.60/48.82  (step @p227 :rule nary_cong :premises (@p226 @p225) :args ((or @t381 (not (and @t277 @t274)))))
% 48.60/48.82  (step @p228 :rule bool-and-de-morgan :args (@t380 @t277 (and @t274)))
% 48.60/48.82  (step @p229 :rule trans :premises (@p228 @p227))
% 48.60/48.82  (step @p230 :rule nary_cong :premises (@p201 @p229) :args ((or @t283 (not (and @t380 @t277 @t274)))))
% 48.60/48.82  (step @p231 :rule bool-and-de-morgan :args (@t282 @t380 (and @t277 @t274)))
% 48.60/48.82  (step @p232 :rule trans :premises (@p231 @p230))
% 48.60/48.82  (step @p233 :rule nary_cong :premises (@p202 @p232) :args ((or @t285 (not (and @t282 @t380 @t277 @t274)))))
% 48.60/48.82  (step @p234 :rule bool-and-de-morgan :args (@t284 @t282 (and @t380 @t277 @t274)))
% 48.60/48.82  (step @p235 :rule trans :premises (@p234 @p233))
% 48.60/48.82  (step @p236 :rule trans :premises (@p235 @p224))
% 48.60/48.82  (step @p237 :rule nary_cong :premises (@p236 @p220) :args ((or (not @t383) @t379)))
% 48.60/48.82  (step @p238 :rule trans :premises (@p237 @p219))
% 48.60/48.82  (step @p239 :rule bool-impl-elim :args (@t383 @t379))
% 48.60/48.82  (step @p240 :rule trans :premises (@p239 @p238))
% 48.60/48.82  (step @p241 :rule nary_cong :premises (@p203 @p240) :args ((or @t287 @t384)))
% 48.60/48.82  (step @p242 :rule trans :premises (@p241 @p218))
% 48.60/48.82  (step @p243 :rule refl :args (@t384))
% 48.60/48.82  (step @p244 :rule bool-double-not-elim :args (@t287))
% 48.60/48.82  (step @p245 :rule nary_cong :premises (@p244 @p243) :args ((or (not @t385) @t384)))
% 48.60/48.82  (step @p246 :rule bool-impl-elim :args (@t385 @t384))
% 48.60/48.82  (step @p247 :rule trans :premises (@p246 @p245))
% 48.60/48.82  (step @p248 :rule trans :premises (@p247 @p242))
% 48.60/48.82  (step @p249 :rule bool-double-not-elim :args (@t294))
% 48.60/48.82  (step @p250 :rule bool-double-not-elim :args (@t295))
% 48.60/48.82  (step @p251 :rule nary_cong :premises (@p209 @p208 @p250 @p249 @p205 @p204) :args (@t390))
% 48.60/48.82  (step @p252 :rule aci_norm :args ((= (or @t299 (or @t297 (or @t389 (or @t387 (or @t292 @t289))))) @t390)))
% 48.60/48.82  (step @p253 :rule trans :premises (@p252 @p251))
% 48.60/48.82  (step @p254 :rule bool-and-de-morgan :args (@t291 @t288 true))
% 48.60/48.82  (step @p255 :rule refl :args (@t387))
% 48.60/48.82  (step @p256 :rule nary_cong :premises (@p255 @p254) :args ((or @t387 (not (and @t291 @t288)))))
% 48.60/48.82  (step @p257 :rule bool-and-de-morgan :args (@t386 @t291 (and @t288)))
% 48.60/48.82  (step @p258 :rule trans :premises (@p257 @p256))
% 48.60/48.82  (step @p259 :rule refl :args (@t389))
% 48.60/48.82  (step @p260 :rule nary_cong :premises (@p259 @p258) :args ((or @t389 (not (and @t386 @t291 @t288)))))
% 48.60/48.82  (step @p261 :rule bool-and-de-morgan :args (@t388 @t386 (and @t291 @t288)))
% 48.60/48.82  (step @p262 :rule trans :premises (@p261 @p260))
% 48.60/48.82  (step @p263 :rule nary_cong :premises (@p208 @p262) :args ((or @t297 (not (and @t388 @t386 @t291 @t288)))))
% 48.60/48.82  (step @p264 :rule bool-and-de-morgan :args (@t296 @t388 (and @t386 @t291 @t288)))
% 48.60/48.82  (step @p265 :rule trans :premises (@p264 @p263))
% 48.60/48.82  (step @p266 :rule nary_cong :premises (@p209 @p265) :args ((or @t299 (not (and @t296 @t388 @t386 @t291 @t288)))))
% 48.60/48.82  (step @p267 :rule bool-and-de-morgan :args (@t298 @t296 (and @t388 @t386 @t291 @t288)))
% 48.60/48.82  (step @p268 :rule trans :premises (@p267 @p266))
% 48.60/48.82  (step @p269 :rule trans :premises (@p268 @p253))
% 48.60/48.82  (step @p270 :rule nary_cong :premises (@p269 @p248) :args ((or (not @t392) @t391)))
% 48.60/48.82  (step @p271 :rule trans :premises (@p270 @p217))
% 48.60/48.82  (step @p272 :rule bool-impl-elim :args (@t392 @t391))
% 48.60/48.82  (step @p273 :rule trans :premises (@p272 @p271))
% 48.60/48.82  (step @p274 :rule cong :premises (@p273) :args ((forall @t221 (=> @t392 @t391))))
% 48.60/48.82  (step @p275 :rule trans :premises (@p274 @p216))
% 48.60/48.82  (step @p276 :rule refl :args (@t358))
% 48.60/48.82  (step @p277 :rule refl :args (@t360))
% 48.60/48.82  (step @p278 :rule refl :args (@t361))
% 48.60/48.82  (step @p279 :rule arith_poly_norm :args ((= (* 1 (- @t362 @t363)) (* -1 (- @t363 @t362)))))
% 48.60/48.82  (step @p280 :rule arith_poly_norm_rel :premises (@p279) :args ((= @t393 @t364)))
% 48.60/48.82  (step @p281 :rule cong :premises (@p280) :args (@t394))
% 48.60/48.82  (step @p282 :rule refl :args (@t365))
% 48.60/48.82  (step @p283 :rule refl :args (@t367))
% 48.60/48.82  (step @p284 :rule refl :args (@t369))
% 48.60/48.82  (step @p285 :rule refl :args (@t371))
% 48.60/48.82  (step @p286 :rule refl :args (@t373))
% 48.60/48.82  (step @p287 :rule nary_cong :premises (@p286 @p285 @p284 @p283 @p282 @p281 @p278 @p277 @p276) :args (@t395))
% 48.60/48.82  (step @p288 :rule aci_norm :args ((= @t397 @t395)))
% 48.60/48.82  (step @p289 :rule trans :premises (@p288 @p287))
% 48.60/48.82  (step @p290 :rule cong :premises (@p289) :args (@t398))
% 48.60/48.82  (step @p291 :rule quant-merge-prenex :args ((= (forall @t209 @t400) @t398)))
% 48.60/48.82  (step @p292 :rule alpha_equiv :args (@t401 (@list @t354) (@list @t152)))
% 48.60/48.82  (step @p293 :rule refl :args (@t367))
% 48.60/48.82  (step @p294 :rule refl :args (@t369))
% 48.60/48.82  (step @p295 :rule refl :args (@t371))
% 48.60/48.82  (step @p296 :rule refl :args (@t373))
% 48.60/48.82  (step @p297 :rule nary_cong :premises (@p296 @p295 @p294 @p293 @p292) :args (@t402))
% 48.60/48.82  (step @p298 :rule quant-miniscope-or :args ((= @t400 @t402)))
% 48.60/48.82  (step @p299 :rule trans :premises (@p298 @p297))
% 48.60/48.82  (step @p300 :rule symm :premises (@p299))
% 48.60/48.82  (step @p301 :rule cong :premises (@p300) :args (@t416))
% 48.60/48.82  (step @p302 :rule trans :premises (@p301 @p291))
% 48.60/48.82  (step @p303 :rule trans :premises (@p302 @p290))
% 48.60/48.82  (step @p304 :rule nary_cong :premises (@p189 @p177 @p181 @p186 @p176 @p178 @p303) :args (@t417))
% 48.60/48.82  (step @p305 :rule quant-miniscope-or :args ((= (forall @t209 @t418) @t417)))
% 48.60/48.82  (step @p306 :rule aci_norm :args ((= @t419 @t418)))
% 48.60/48.82  (step @p307 :rule cong :premises (@p306) :args ((forall @t209 @t419)))
% 48.60/48.82  (step @p308 :rule trans :premises (@p307 @p305))
% 48.60/48.82  (step @p309 :rule trans :premises (@p308 @p304))
% 48.60/48.82  (step @p310 :rule aci_norm :args ((= (or @t421 @t420) @t419)))
% 48.60/48.82  (step @p311 :rule aci_norm :args ((= (or (or @t273 @t283 @t294 @t271 @t275) @t422) @t420)))
% 48.60/48.82  (step @p312 :rule refl :args (@t422))
% 48.60/48.82  (step @p313 :rule nary_cong :premises (@p197 @p201 @p249 @p196 @p198) :args (@t423))
% 48.60/48.82  (step @p314 :rule aci_norm :args ((= (or @t273 (or @t283 (or @t387 (or @t271 @t275)))) @t423)))
% 48.60/48.82  (step @p315 :rule trans :premises (@p314 @p313))
% 48.60/48.82  (step @p316 :rule bool-and-de-morgan :args (@t270 @t274 true))
% 48.60/48.82  (step @p317 :rule nary_cong :premises (@p255 @p316) :args ((or @t387 (not (and @t270 @t274)))))
% 48.60/48.82  (step @p318 :rule bool-and-de-morgan :args (@t386 @t270 (and @t274)))
% 48.60/48.82  (step @p319 :rule trans :premises (@p318 @p317))
% 48.60/48.82  (step @p320 :rule nary_cong :premises (@p201 @p319) :args ((or @t283 (not (and @t386 @t270 @t274)))))
% 48.60/48.82  (step @p321 :rule bool-and-de-morgan :args (@t282 @t386 (and @t270 @t274)))
% 48.60/48.82  (step @p322 :rule trans :premises (@p321 @p320))
% 48.60/48.82  (step @p323 :rule nary_cong :premises (@p197 @p322) :args ((or @t273 (not (and @t282 @t386 @t270 @t274)))))
% 48.60/48.82  (step @p324 :rule bool-and-de-morgan :args (@t272 @t282 (and @t386 @t270 @t274)))
% 48.60/48.82  (step @p325 :rule trans :premises (@p324 @p323))
% 48.60/48.82  (step @p326 :rule trans :premises (@p325 @p315))
% 48.60/48.82  (step @p327 :rule nary_cong :premises (@p326 @p312) :args ((or (not @t424) @t422)))
% 48.60/48.82  (step @p328 :rule trans :premises (@p327 @p311))
% 48.60/48.82  (step @p329 :rule bool-impl-elim :args (@t424 @t422))
% 48.60/48.82  (step @p330 :rule trans :premises (@p329 @p328))
% 48.60/48.82  (step @p331 :rule aci_norm :args ((= (or @t299 (or @t373 (or @t371 (or @t369 @t367)))) @t421)))
% 48.60/48.82  (step @p332 :rule bool-and-de-morgan :args (@t368 @t366 true))
% 48.60/48.82  (step @p333 :rule nary_cong :premises (@p295 @p332) :args ((or @t371 (not (and @t368 @t366)))))
% 48.60/48.82  (step @p334 :rule bool-and-de-morgan :args (@t370 @t368 (and @t366)))
% 48.60/48.82  (step @p335 :rule trans :premises (@p334 @p333))
% 48.60/48.82  (step @p336 :rule nary_cong :premises (@p296 @p335) :args ((or @t373 (not (and @t370 @t368 @t366)))))
% 48.60/48.82  (step @p337 :rule bool-and-de-morgan :args (@t372 @t370 (and @t368 @t366)))
% 48.60/48.82  (step @p338 :rule trans :premises (@p337 @p336))
% 48.60/48.82  (step @p339 :rule nary_cong :premises (@p209 @p338) :args ((or @t299 (not (and @t372 @t370 @t368 @t366)))))
% 48.60/48.82  (step @p340 :rule bool-and-de-morgan :args (@t298 @t372 (and @t370 @t368 @t366)))
% 48.60/48.82  (step @p341 :rule trans :premises (@p340 @p339))
% 48.60/48.82  (step @p342 :rule trans :premises (@p341 @p331))
% 48.60/48.82  (step @p343 :rule nary_cong :premises (@p342 @p330) :args ((or (not @t426) @t425)))
% 48.60/48.82  (step @p344 :rule trans :premises (@p343 @p310))
% 48.60/48.82  (step @p345 :rule bool-impl-elim :args (@t426 @t425))
% 48.60/48.82  (step @p346 :rule trans :premises (@p345 @p344))
% 48.60/48.82  (step @p347 :rule cong :premises (@p346) :args ((forall @t209 (=> @t426 @t425))))
% 48.60/48.82  (step @p348 :rule trans :premises (@p347 @p309))
% 48.60/48.82  (step @p349 :rule quant-miniscope-or :args ((= (forall @t183 @t427) @t422)))
% 48.60/48.82  (step @p350 :rule aci_norm :args ((= @t428 @t427)))
% 48.60/48.82  (step @p351 :rule cong :premises (@p350) :args ((forall @t183 @t428)))
% 48.60/48.82  (step @p352 :rule trans :premises (@p351 @p349))
% 48.60/48.82  (step @p353 :rule aci_norm :args ((= (or @t429 @t403) @t428)))
% 48.60/48.82  (step @p354 :rule refl :args (@t403))
% 48.60/48.82  (step @p355 :rule aci_norm :args ((= (or @t299 (or @t412 (or @t410 (or @t408 @t406)))) @t429)))
% 48.60/48.82  (step @p356 :rule bool-and-de-morgan :args (@t407 @t405 true))
% 48.60/48.82  (step @p357 :rule refl :args (@t410))
% 48.60/48.82  (step @p358 :rule nary_cong :premises (@p357 @p356) :args ((or @t410 (not (and @t407 @t405)))))
% 48.60/48.82  (step @p359 :rule bool-and-de-morgan :args (@t409 @t407 (and @t405)))
% 48.60/48.82  (step @p360 :rule trans :premises (@p359 @p358))
% 48.60/48.82  (step @p361 :rule refl :args (@t412))
% 48.60/48.82  (step @p362 :rule nary_cong :premises (@p361 @p360) :args ((or @t412 (not (and @t409 @t407 @t405)))))
% 48.60/48.82  (step @p363 :rule bool-and-de-morgan :args (@t411 @t409 (and @t407 @t405)))
% 48.60/48.82  (step @p364 :rule trans :premises (@p363 @p362))
% 48.60/48.82  (step @p365 :rule nary_cong :premises (@p209 @p364) :args ((or @t299 (not (and @t411 @t409 @t407 @t405)))))
% 48.60/48.82  (step @p366 :rule bool-and-de-morgan :args (@t298 @t411 (and @t409 @t407 @t405)))
% 48.60/48.82  (step @p367 :rule trans :premises (@p366 @p365))
% 48.60/48.82  (step @p368 :rule trans :premises (@p367 @p355))
% 48.60/48.82  (step @p369 :rule nary_cong :premises (@p368 @p354) :args ((or (not @t430) @t403)))
% 48.60/48.82  (step @p370 :rule trans :premises (@p369 @p353))
% 48.60/48.82  (step @p371 :rule bool-impl-elim :args (@t430 @t403))
% 48.60/48.82  (step @p372 :rule trans :premises (@p371 @p370))
% 48.60/48.82  (step @p373 :rule cong :premises (@p372) :args ((forall @t183 (=> @t430 @t403))))
% 48.60/48.82  (step @p374 :rule trans :premises (@p373 @p352))
% 48.60/48.82  (step @p375 :rule refl :args (@t155))
% 48.60/48.82  (step @p376 :rule refl :args (@t158))
% 48.60/48.82  (step @p377 :rule refl :args (@t107))
% 48.60/48.82  (step @p378 :rule refl :args (2))
% 48.60/48.82  (step @p379 :rule arith_poly_norm :args ((= @t431 @t232)))
% 48.60/48.82  (step @p380 :rule arith_poly_norm :args ((= @t109 @t431)))
% 48.60/48.82  (step @p381 :rule trans :premises (@p380 @p379))
% 48.60/48.82  (step @p382 :rule cong :premises (@p381 @p378) :args (@t110))
% 48.60/48.82  (step @p383 :rule refl :args (-1))
% 48.60/48.82  (step @p384 :rule nary_cong :premises (@p383 @p382) :args (@t432))
% 48.60/48.82  (step @p385 :rule nary_cong :premises (@p377 @p384) :args (@t433))
% 48.60/48.82  (step @p386 :rule arith_poly_norm :args ((= @t111 @t433)))
% 48.60/48.82  (step @p387 :rule trans :premises (@p386 @p385))
% 48.60/48.82  (step @p388 :rule cong :premises (@p387 @p377 @p376 @p375) :args (@t159))
% 48.60/48.82  (step @p389 :rule bool-impl-elim :args (@t243 @t404))
% 48.60/48.82  (step @p390 :rule cong :premises (@p389) :args ((forall @t76 (=> @t243 @t404))))
% 48.60/48.82  (step @p391 :rule arith_poly_norm :args ((= (* 1 (- @t163 @t162)) (* -1 (- @t162 @t163)))))
% 48.60/48.82  (step @p392 :rule arith_poly_norm_rel :premises (@p391) :args ((= @t164 @t404)))
% 48.60/48.82  (step @p393 :rule bool-double-not-elim :args (@t243))
% 48.60/48.82  (step @p394 :rule arith_poly_norm :args ((= (* -1 (- 1 @t434)) (* -1 (- @t108 @t74)))))
% 48.60/48.82  (step @p395 :rule arith_poly_norm_rel :premises (@p394) :args ((= (>= 1 @t434) @t435)))
% 48.60/48.82  (step @p396 :rule arith-geq-tighten :args (@t242 1))
% 48.60/48.82  (step @p397 :rule trans :premises (@p396 @p395))
% 48.60/48.82  (step @p398 :rule symm :premises (@p397))
% 48.60/48.82  (step @p399 :rule cong :premises (@p398) :args ((not @t435)))
% 48.60/48.82  (step @p400 :rule trans :premises (@p399 @p393))
% 48.60/48.82  (step @p401 :rule arith-elim-lt :args (@t108 @t74))
% 48.60/48.82  (step @p402 :rule trans :premises (@p401 @p400))
% 48.60/48.82  (step @p403 :rule cong :premises (@p402 @p392) :args (@t165))
% 48.60/48.82  (step @p404 :rule cong :premises (@p403) :args (@t166))
% 48.60/48.82  (step @p405 :rule trans :premises (@p404 @p390))
% 48.60/48.82  (step @p406 :rule refl :args (@t404))
% 48.60/48.82  (step @p407 :rule bool-double-not-elim :args (@t248))
% 48.60/48.82  (step @p408 :rule nary_cong :premises (@p407 @p406) :args ((or (not @t436) @t404)))
% 48.60/48.82  (step @p409 :rule bool-impl-elim :args (@t436 @t404))
% 48.60/48.82  (step @p410 :rule trans :premises (@p409 @p408))
% 48.60/48.82  (step @p411 :rule cong :premises (@p410) :args ((forall @t76 (=> @t436 @t404))))
% 48.60/48.82  (step @p412 :rule arith_poly_norm :args ((= (* -1 (- @t74 @t437)) (* -1 (- @t247 1)))))
% 48.60/48.82  (step @p413 :rule arith_poly_norm_rel :premises (@p412) :args ((= @t438 @t248)))
% 48.60/48.82  (step @p414 :rule cong :premises (@p413) :args ((not @t438)))
% 48.60/48.82  (step @p415 :rule arith-leq-norm :args (@t74 @t269))
% 48.60/48.82  (step @p416 :rule trans :premises (@p415 @p414))
% 48.60/48.82  (step @p417 :rule arith_poly_norm :args ((= (+ @t255 @t234) @t269)))
% 48.60/48.82  (step @p418 :rule arith_poly_norm :args ((= (+ @t108 @t439) @t233)))
% 48.60/48.82  (step @p419 :rule arith_poly_norm :args ((= (* -1 @t255) @t439)))
% 48.60/48.82  (step @p420 :rule refl :args (@t108))
% 48.60/48.82  (step @p421 :rule nary_cong :premises (@p420 @p384) :args (@t440))
% 48.60/48.82  (step @p422 :rule arith_poly_norm :args ((= @t114 @t440)))
% 48.60/48.82  (step @p423 :rule trans :premises (@p422 @p421))
% 48.60/48.82  (step @p424 :rule nary_cong :premises (@p383 @p423) :args (@t441))
% 48.60/48.82  (step @p425 :rule trans :premises (@p424 @p419))
% 48.60/48.82  (step @p426 :rule nary_cong :premises (@p420 @p425) :args (@t442))
% 48.60/48.82  (step @p427 :rule trans :premises (@p426 @p418))
% 48.60/48.82  (step @p428 :rule arith_poly_norm :args ((= @t167 @t442)))
% 48.60/48.82  (step @p429 :rule trans :premises (@p428 @p427))
% 48.60/48.82  (step @p430 :rule nary_cong :premises (@p383 @p429) :args (@t443))
% 48.60/48.82  (step @p431 :rule nary_cong :premises (@p423 @p430) :args (@t444))
% 48.60/48.82  (step @p432 :rule trans :premises (@p431 @p417))
% 48.60/48.82  (step @p433 :rule arith_poly_norm :args ((= @t168 @t444)))
% 48.60/48.82  (step @p434 :rule trans :premises (@p433 @p432))
% 48.60/48.82  (step @p435 :rule refl :args (@t74))
% 48.60/48.82  (step @p436 :rule cong :premises (@p435 @p434) :args (@t169))
% 48.60/48.82  (step @p437 :rule trans :premises (@p436 @p416))
% 48.60/48.82  (step @p438 :rule cong :premises (@p437 @p392) :args (@t170))
% 48.60/48.82  (step @p439 :rule cong :premises (@p438) :args (@t171))
% 48.60/48.82  (step @p440 :rule trans :premises (@p439 @p411))
% 48.60/48.82  (step @p441 :rule arith_poly_norm :args ((= @t172 @t250)))
% 48.60/48.82  (step @p442 :rule arith_poly_norm :args ((= @t437 @t252)))
% 48.60/48.82  (step @p443 :rule refl :args (1))
% 48.60/48.82  (step @p444 :rule nary_cong :premises (@p434 @p443) :args (@t173))
% 48.60/48.82  (step @p445 :rule trans :premises (@p444 @p442))
% 48.60/48.82  (step @p446 :rule refl :args (@t160))
% 48.60/48.82  (step @p447 :rule cong :premises (@p446 @p445 @p441) :args (@t174))
% 48.60/48.82  (step @p448 :rule refl :args (@t176))
% 48.60/48.82  (step @p449 :rule cong :premises (@p448 @p447) :args (@t177))
% 48.60/48.82  (step @p450 :rule refl :args (@t178))
% 48.60/48.82  (step @p451 :rule cong :premises (@p423 @p420 @p450 @p375) :args (@t179))
% 48.60/48.82  (step @p452 :rule arith-elim-leq :args (0 @t154))
% 48.60/48.82  (step @p453 :rule nary_cong :premises (@p452 @p451 @p449 @p440 @p405) :args (@t181))
% 48.60/48.82  (step @p454 :rule cong :premises (@p453 @p388) :args (@t182))
% 48.60/48.82  (step @p455 :rule cong :premises (@p454) :args (@t184))
% 48.60/48.82  (step @p456 :rule trans :premises (@p455 @p374))
% 48.60/48.82  (step @p457 :rule cong :premises (@p429) :args (@t185))
% 48.60/48.82  (step @p458 :rule arith-elim-leq :args (-1 @t269))
% 48.60/48.82  (step @p459 :rule evaluate :args (@t186))
% 48.60/48.82  (step @p460 :rule cong :premises (@p459 @p434) :args (@t187))
% 48.60/48.82  (step @p461 :rule trans :premises (@p460 @p458))
% 48.60/48.82  (step @p462 :rule arith_poly_norm :args ((= (* 1 (- @t108 @t154)) (* 1 (- @t293 0)))))
% 48.60/48.82  (step @p463 :rule arith_poly_norm_rel :premises (@p462) :args ((= @t445 @t294)))
% 48.60/48.82  (step @p464 :rule cong :premises (@p463) :args ((not @t445)))
% 48.60/48.82  (step @p465 :rule arith-elim-lt :args (@t108 @t154))
% 48.60/48.82  (step @p466 :rule trans :premises (@p465 @p464))
% 48.60/48.82  (step @p467 :rule bool-double-not-elim :args (@t282))
% 48.60/48.82  (step @p468 :rule arith_poly_norm :args ((= @t447 (* -1 (- @t255 @t108)))))
% 48.60/48.82  (step @p469 :rule arith_poly_norm_rel :premises (@p468) :args ((= @t448 (>= @t255 @t108))))
% 48.60/48.82  (step @p470 :rule arith-geq-tighten :args (@t233 1))
% 48.60/48.82  (step @p471 :rule trans :premises (@p470 @p469))
% 48.60/48.82  (step @p472 :rule symm :premises (@p471))
% 48.60/48.82  (step @p473 :rule cong :premises (@p423 @p420) :args (@t449))
% 48.60/48.82  (step @p474 :rule trans :premises (@p473 @p472))
% 48.60/48.82  (step @p475 :rule cong :premises (@p474) :args ((not @t449)))
% 48.60/48.82  (step @p476 :rule trans :premises (@p475 @p467))
% 48.60/48.82  (step @p477 :rule arith-elim-lt :args (@t114 @t108))
% 48.60/48.82  (step @p478 :rule trans :premises (@p477 @p476))
% 48.60/48.82  (step @p479 :rule arith-elim-leq :args (0 @t255))
% 48.60/48.82  (step @p480 :rule refl :args (0))
% 48.60/48.82  (step @p481 :rule cong :premises (@p480 @p423) :args (@t189))
% 48.60/48.82  (step @p482 :rule trans :premises (@p481 @p479))
% 48.60/48.82  (step @p483 :rule nary_cong :premises (@p482 @p478 @p466 @p461 @p457) :args (@t190))
% 48.60/48.82  (step @p484 :rule cong :premises (@p483 @p456) :args (@t191))
% 48.60/48.82  (step @p485 :rule bool-impl-elim :args (@t259 @t193))
% 48.60/48.82  (step @p486 :rule cong :premises (@p485) :args ((forall @t76 (=> @t259 @t193))))
% 48.60/48.82  (step @p487 :rule refl :args (@t193))
% 48.60/48.82  (step @p488 :rule bool-double-not-elim :args (@t259))
% 48.60/48.82  (step @p489 :rule arith_poly_norm :args ((= (* -1 (- 1 @t450)) (* -1 (- @t107 @t74)))))
% 48.60/48.82  (step @p490 :rule arith_poly_norm_rel :premises (@p489) :args ((= (>= 1 @t450) @t451)))
% 48.60/48.82  (step @p491 :rule arith-geq-tighten :args (@t258 1))
% 48.60/48.82  (step @p492 :rule trans :premises (@p491 @p490))
% 48.60/48.82  (step @p493 :rule symm :premises (@p492))
% 48.60/48.82  (step @p494 :rule cong :premises (@p493) :args ((not @t451)))
% 48.60/48.82  (step @p495 :rule trans :premises (@p494 @p488))
% 48.60/48.82  (step @p496 :rule arith-elim-lt :args (@t107 @t74))
% 48.60/48.82  (step @p497 :rule trans :premises (@p496 @p495))
% 48.60/48.82  (step @p498 :rule cong :premises (@p497 @p487) :args (@t194))
% 48.60/48.82  (step @p499 :rule cong :premises (@p498) :args (@t195))
% 48.60/48.82  (step @p500 :rule trans :premises (@p499 @p486))
% 48.60/48.82  (step @p501 :rule refl :args (@t193))
% 48.60/48.82  (step @p502 :rule bool-double-not-elim :args (@t262))
% 48.60/48.82  (step @p503 :rule nary_cong :premises (@p502 @p501) :args ((or (not @t452) @t193)))
% 48.60/48.82  (step @p504 :rule bool-impl-elim :args (@t452 @t193))
% 48.60/48.82  (step @p505 :rule trans :premises (@p504 @p503))
% 48.60/48.82  (step @p506 :rule cong :premises (@p505) :args ((forall @t76 (=> @t452 @t193))))
% 48.60/48.82  (step @p507 :rule arith_poly_norm :args ((= (* -1 (- @t74 @t453)) (* -1 (- @t261 1)))))
% 48.60/48.82  (step @p508 :rule arith_poly_norm_rel :premises (@p507) :args ((= @t454 @t262)))
% 48.60/48.82  (step @p509 :rule cong :premises (@p508) :args ((not @t454)))
% 48.60/48.82  (step @p510 :rule arith-leq-norm :args (@t74 @t276))
% 48.60/48.82  (step @p511 :rule trans :premises (@p510 @p509))
% 48.60/48.82  (step @p512 :rule arith_poly_norm :args ((= (+ @t235 @t234) @t276)))
% 48.60/48.82  (step @p513 :rule arith_poly_norm :args ((= (+ @t107 @t455) @t233)))
% 48.60/48.82  (step @p514 :rule arith_poly_norm :args ((= (* -1 @t235) @t455)))
% 48.60/48.82  (step @p515 :rule nary_cong :premises (@p383 @p387) :args (@t456))
% 48.60/48.82  (step @p516 :rule trans :premises (@p515 @p514))
% 48.60/48.82  (step @p517 :rule nary_cong :premises (@p377 @p516) :args (@t457))
% 48.60/48.82  (step @p518 :rule trans :premises (@p517 @p513))
% 48.60/48.82  (step @p519 :rule arith_poly_norm :args ((= @t196 @t457)))
% 48.60/48.82  (step @p520 :rule trans :premises (@p519 @p518))
% 48.60/48.82  (step @p521 :rule nary_cong :premises (@p383 @p520) :args (@t458))
% 48.60/48.82  (step @p522 :rule nary_cong :premises (@p387 @p521) :args (@t459))
% 48.60/48.82  (step @p523 :rule trans :premises (@p522 @p512))
% 48.60/48.82  (step @p524 :rule arith_poly_norm :args ((= @t197 @t459)))
% 48.60/48.82  (step @p525 :rule trans :premises (@p524 @p523))
% 48.60/48.82  (step @p526 :rule cong :premises (@p435 @p525) :args (@t198))
% 48.60/48.82  (step @p527 :rule trans :premises (@p526 @p511))
% 48.60/48.82  (step @p528 :rule cong :premises (@p527 @p487) :args (@t199))
% 48.60/48.82  (step @p529 :rule cong :premises (@p528) :args (@t200))
% 48.60/48.82  (step @p530 :rule trans :premises (@p529 @p506))
% 48.60/48.82  (step @p531 :rule arith_poly_norm :args ((= @t121 @t264)))
% 48.60/48.82  (step @p532 :rule arith_poly_norm :args ((= @t453 @t265)))
% 48.60/48.82  (step @p533 :rule nary_cong :premises (@p525 @p443) :args (@t201))
% 48.60/48.82  (step @p534 :rule trans :premises (@p533 @p532))
% 48.60/48.82  (step @p535 :rule refl :args (@t156))
% 48.60/48.82  (step @p536 :rule cong :premises (@p535 @p534 @p531) :args (@t202))
% 48.60/48.82  (step @p537 :rule refl :args (@t204))
% 48.60/48.82  (step @p538 :rule cong :premises (@p537 @p536) :args (@t205))
% 48.60/48.82  (step @p539 :rule cong :premises (@p387 @p377 @p376 @p450) :args (@t206))
% 48.60/48.82  (step @p540 :rule nary_cong :premises (@p452 @p539 @p538 @p530 @p500) :args (@t207))
% 48.60/48.82  (step @p541 :rule cong :premises (@p540 @p484) :args (@t208))
% 48.60/48.82  (step @p542 :rule cong :premises (@p541) :args (@t210))
% 48.60/48.82  (step @p543 :rule trans :premises (@p542 @p348))
% 48.60/48.82  (step @p544 :rule cong :premises (@p520) :args (@t211))
% 48.60/48.82  (step @p545 :rule arith-elim-leq :args (-1 @t276))
% 48.60/48.82  (step @p546 :rule cong :premises (@p459 @p525) :args (@t212))
% 48.60/48.82  (step @p547 :rule trans :premises (@p546 @p545))
% 48.60/48.82  (step @p548 :rule arith_poly_norm :args ((= (* 1 (- @t107 @t154)) (* 1 (- @t280 0)))))
% 48.60/48.82  (step @p549 :rule arith_poly_norm_rel :premises (@p548) :args ((= @t460 @t281)))
% 48.60/48.82  (step @p550 :rule cong :premises (@p549) :args ((not @t460)))
% 48.60/48.82  (step @p551 :rule arith-elim-lt :args (@t107 @t154))
% 48.60/48.82  (step @p552 :rule trans :premises (@p551 @p550))
% 48.60/48.82  (step @p553 :rule arith_poly_norm :args ((= @t447 (* -1 (- @t235 @t107)))))
% 48.60/48.82  (step @p554 :rule arith_poly_norm_rel :premises (@p553) :args ((= @t448 (>= @t235 @t107))))
% 48.60/48.82  (step @p555 :rule trans :premises (@p470 @p554))
% 48.60/48.82  (step @p556 :rule symm :premises (@p555))
% 48.60/48.82  (step @p557 :rule cong :premises (@p387 @p377) :args (@t461))
% 48.60/48.82  (step @p558 :rule trans :premises (@p557 @p556))
% 48.60/48.82  (step @p559 :rule cong :premises (@p558) :args ((not @t461)))
% 48.60/48.82  (step @p560 :rule trans :premises (@p559 @p467))
% 48.60/48.82  (step @p561 :rule arith-elim-lt :args (@t111 @t107))
% 48.60/48.82  (step @p562 :rule trans :premises (@p561 @p560))
% 48.60/48.82  (step @p563 :rule arith-elim-leq :args (0 @t235))
% 48.60/48.82  (step @p564 :rule cong :premises (@p480 @p387) :args (@t213))
% 48.60/48.82  (step @p565 :rule trans :premises (@p564 @p563))
% 48.60/48.82  (step @p566 :rule nary_cong :premises (@p565 @p562 @p552 @p547 @p544) :args (@t214))
% 48.60/48.82  (step @p567 :rule cong :premises (@p566 @p543) :args (@t215))
% 48.60/48.82  (step @p568 :rule arith_poly_norm :args ((= (* 1 (- @t264 @t108)) (* 1 (- @t286 -1)))))
% 48.60/48.82  (step @p569 :rule arith_poly_norm_rel :premises (@p568) :args ((= (>= @t264 @t108) @t287)))
% 48.60/48.82  (step @p570 :rule cong :premises (@p531 @p420) :args (@t462))
% 48.60/48.82  (step @p571 :rule trans :premises (@p570 @p569))
% 48.60/48.82  (step @p572 :rule cong :premises (@p571) :args ((not @t462)))
% 48.60/48.82  (step @p573 :rule arith-elim-lt :args (@t121 @t108))
% 48.60/48.82  (step @p574 :rule trans :premises (@p573 @p572))
% 48.60/48.82  (step @p575 :rule cong :premises (@p574 @p567) :args (@t216))
% 48.60/48.82  (step @p576 :rule cong :premises (@p381) :args (@t217))
% 48.60/48.82  (step @p577 :rule arith-elim-leq :args (-1 @t290))
% 48.60/48.82  (step @p578 :rule arith_poly_norm :args ((= (+ @t107 @t286) @t290)))
% 48.60/48.82  (step @p579 :rule arith_poly_norm :args ((= (* -1 @t232) @t286)))
% 48.60/48.82  (step @p580 :rule nary_cong :premises (@p383 @p381) :args (@t463))
% 48.60/48.82  (step @p581 :rule trans :premises (@p580 @p579))
% 48.60/48.82  (step @p582 :rule nary_cong :premises (@p377 @p581) :args (@t464))
% 48.60/48.82  (step @p583 :rule trans :premises (@p582 @p578))
% 48.60/48.82  (step @p584 :rule arith_poly_norm :args ((= @t123 @t464)))
% 48.60/48.82  (step @p585 :rule trans :premises (@p584 @p583))
% 48.60/48.82  (step @p586 :rule cong :premises (@p459 @p585) :args (@t218))
% 48.60/48.82  (step @p587 :rule trans :premises (@p586 @p577))
% 48.60/48.82  (step @p588 :rule arith_poly_norm :args ((= (* 1 (- @t107 @t108)) (* 1 (- @t286 0)))))
% 48.60/48.82  (step @p589 :rule arith_poly_norm_rel :premises (@p588) :args ((= @t465 @t295)))
% 48.60/48.82  (step @p590 :rule cong :premises (@p589) :args ((not @t465)))
% 48.60/48.82  (step @p591 :rule arith-elim-lt :args (@t107 @t108))
% 48.60/48.82  (step @p592 :rule trans :premises (@p591 @p590))
% 48.60/48.82  (step @p593 :rule arith-elim-leq :args (0 @t107))
% 48.60/48.82  (step @p594 :rule nary_cong :premises (@p452 @p593 @p592 @p466 @p587 @p576) :args (@t219))
% 48.60/48.82  (step @p595 :rule cong :premises (@p594 @p575) :args (@t220))
% 48.60/48.82  (step @p596 :rule cong :premises (@p595) :args (@t222))
% 48.60/48.82  (step @p597 :rule trans :premises (@p596 @p275))
% 48.60/48.82  (step @p598 :rule cong :premises (@p597) :args (@t223))
% 48.60/48.82  (step @p599 :rule eq_resolve :premises (@p75 @p598))
% 48.60/48.82  (step @p600 :rule skolemize :premises (@p599))
% 48.60/48.82  (step @p601 :rule cnf_or_neg :args (@t501 6))
% 48.60/48.82  (step @p602 :rule chain_m_resolution :premises (@p601 @p600) :args (@t502 @t503 @t504))
% 48.60/48.82  (step @p603 :rule refl :args (@t505))
% 48.60/48.82  (step @p604 :rule bool-double-not-elim :args (@t498))
% 48.60/48.82  (step @p605 :rule nary_cong :premises (@p604 @p603) :args ((or (not @t502) @t505)))
% 48.60/48.82  (assume-push @p1321 @t331)
% 48.60/48.82  (assume-push @p1322 @t502)
% 48.60/48.82  (step @p608 :rule arith-elim-lt :args (@t330 1))
% 48.60/48.82  (step @p609 :rule cong :premises (@p608) :args ((not (< @t330 1))))
% 48.60/48.82  (step @p610 :rule trans :premises (@p609 @p138))
% 48.60/48.82  (step @p611 :rule symm :premises (@p610))
% 48.60/48.82  (step @p612 :rule eq_resolve :premises (@p1321 @p611))
% 48.60/48.82  (step @p613 :rule symm :premises (@p608))
% 48.60/48.82  (assume-push @p1323 @t331)
% 48.60/48.82  (step @p615 :rule evaluate :args ((<= 0 -3)))
% 48.60/48.82  (step @p616 :rule evaluate :args ((+ -1 -2)))
% 48.60/48.82  (step @p617 :rule refl :args (-2))
% 48.60/48.82  (step @p618 :rule evaluate :args (@t506))
% 48.60/48.82  (step @p619 :rule nary_cong :premises (@p618 @p617) :args (@t507))
% 48.60/48.82  (step @p620 :rule trans :premises (@p619 @p616))
% 48.60/48.82  (step @p621 :rule evaluate :args ((+ 0 0)))
% 48.60/48.82  (step @p622 :rule arith_poly_norm :args (@t509))
% 48.60/48.82  (step @p623 :rule arith_poly_norm :args ((= @t510 0)))
% 48.60/48.82  (step @p624 :rule nary_cong :premises (@p623 @p622) :args (@t511))
% 48.60/48.82  (step @p625 :rule trans :premises (@p624 @p621))
% 48.60/48.82  (step @p626 :rule arith_poly_norm :args ((= @t512 @t511)))
% 48.60/48.82  (step @p627 :rule trans :premises (@p626 @p625))
% 48.60/48.82  (step @p628 :rule cong :premises (@p627 @p620) :args ((<= @t512 @t507)))
% 48.60/48.82  (step @p629 :rule trans :premises (@p628 @p615))
% 48.60/48.82  (step @p630 :rule arith-elim-lt :args (@t330 -1))
% 48.60/48.82  (step @p631 :rule symm :premises (@p630))
% 48.60/48.82  (step @p632 :rule eq_resolve :premises (@p602 @p631))
% 48.60/48.82  (step @p633 :rule int_tight_ub :premises (@p632))
% 48.60/48.82  (step @p634 :rule arith_mult_neg :args (-1 @t331))
% 48.60/48.82  (step @p635 :rule evaluate :args (@t513))
% 48.60/48.82  (step @p636 :rule true_elim :premises (@p635))
% 48.60/48.82  (step @p637 :rule and_intro :premises (@p636 @p1321))
% 48.60/48.82  (step @p638 :rule modus_ponens :premises (@p637 @p634))
% 48.60/48.82  (step @p639 :rule arith_sum_ub :premises (@p638 @p633))
% 48.60/48.82  (step @p640 false :rule eq_resolve :premises (@p639 @p629))
% 48.60/48.82  (step-pop @p1324 :rule scope :premises (@p640))
% 48.60/48.82  (step @p641 :rule process_scope :premises (@p1324) :args (false))
% 48.60/48.82  (step @p643 :rule eq_resolve :premises (@p641 @p613))
% 48.60/48.82  (step @p644 false :rule contra :premises (@p643 @p612))
% 48.60/48.82  (step-pop @p1325 :rule scope :premises (@p644))
% 48.60/48.82  (step-pop @p1326 :rule scope :premises (@p1325))
% 48.60/48.82  (step @p645 :rule process_scope :premises (@p1326) :args (false))
% 48.60/48.82  (assume-push @p1327 @t502)
% 48.60/48.82  (assume-push @p1328 @t331)
% 48.60/48.82  (step @p650 :rule and_intro :premises (@p1328 @p602))
% 48.60/48.82  (step-pop @p1329 :rule scope :premises (@p650))
% 48.60/48.82  (step-pop @p1330 :rule scope :premises (@p1329))
% 48.60/48.82  (step @p651 :rule process_scope :premises (@p1330) :args (@t514))
% 48.60/48.82  (step @p654 :rule implies_elim :premises (@p651))
% 48.60/48.82  (step @p655 :rule resolution :premises (@p654 @p645) :args (true @t514))
% 48.60/48.82  (step @p656 :rule not_and :premises (@p655))
% 48.60/48.82  (step @p657 :rule eq_resolve :premises (@p656 @p605))
% 48.60/48.82  (step @p658 :rule chain_m_resolution :premises (@p657 @p602) :args (@t505 @t503 (@list @t498)))
% 48.60/48.82  (step @p659 :rule cnf_or_pos :args (@t332))
% 48.60/48.82  (step @p660 :rule reordering :premises (@p659) :args ((or @t331 @t328 (not @t332))))
% 48.60/48.82  (step @p661 :rule chain_m_resolution :premises (@p660 @p658 @p156) :args (@t328 @t515 (@list @t331 @t332)))
% 48.60/48.82  (step @p662 :rule aci_norm :args ((= (or @t531 @t135) @t530)))
% 48.60/48.82  (step @p663 :rule refl :args (@t135))
% 48.60/48.82  (step @p664 :rule aci_norm :args ((= (or @t529 (or @t527 (or @t525 (or @t523 @t516)))) @t531)))
% 48.60/48.82  (step @p665 :rule bool-and-de-morgan :args (@t522 @t117 true))
% 48.60/48.82  (step @p666 :rule refl :args (@t525))
% 48.60/48.82  (step @p667 :rule nary_cong :premises (@p666 @p665) :args ((or @t525 (not (and @t522 @t117)))))
% 48.60/48.82  (step @p668 :rule bool-and-de-morgan :args (@t524 @t522 (and @t117)))
% 48.60/48.82  (step @p669 :rule trans :premises (@p668 @p667))
% 48.60/48.82  (step @p670 :rule refl :args (@t527))
% 48.60/48.82  (step @p671 :rule nary_cong :premises (@p670 @p669) :args ((or @t527 (not (and @t524 @t522 @t117)))))
% 48.60/48.82  (step @p672 :rule bool-and-de-morgan :args (@t526 @t524 (and @t522 @t117)))
% 48.60/48.82  (step @p673 :rule trans :premises (@p672 @p671))
% 48.60/48.82  (step @p674 :rule refl :args (@t529))
% 48.60/48.82  (step @p675 :rule nary_cong :premises (@p674 @p673) :args ((or @t529 (not (and @t526 @t524 @t522 @t117)))))
% 48.60/48.82  (step @p676 :rule bool-and-de-morgan :args (@t528 @t526 (and @t524 @t522 @t117)))
% 48.60/48.82  (step @p677 :rule trans :premises (@p676 @p675))
% 48.60/48.82  (step @p678 :rule trans :premises (@p677 @p664))
% 48.60/48.82  (step @p679 :rule nary_cong :premises (@p678 @p663) :args ((or (not @t532) @t135)))
% 48.60/48.82  (step @p680 :rule trans :premises (@p679 @p662))
% 48.60/48.82  (step @p681 :rule bool-impl-elim :args (@t532 @t135))
% 48.60/48.82  (step @p682 :rule trans :premises (@p681 @p680))
% 48.60/48.82  (step @p683 :rule cong :premises (@p682) :args ((forall @t148 (=> @t532 @t135))))
% 48.60/48.82  (step @p684 :rule refl :args (@t135))
% 48.60/48.82  (step @p685 :rule refl :args (@t117))
% 48.60/48.82  (step @p686 :rule aci_norm :args ((= (or (or @t520 @t517) @t137) @t521)))
% 48.60/48.82  (step @p687 :rule refl :args (@t137))
% 48.60/48.82  (step @p688 :rule bool-double-not-elim :args (@t517))
% 48.60/48.82  (step @p689 :rule refl :args (@t520))
% 48.60/48.82  (step @p690 :rule nary_cong :premises (@p689 @p688) :args ((or @t520 (not @t533))))
% 48.60/48.82  (step @p691 :rule bool-and-de-morgan :args (@t519 @t533 true))
% 48.60/48.82  (step @p692 :rule trans :premises (@p691 @p690))
% 48.60/48.82  (step @p693 :rule nary_cong :premises (@p692 @p687) :args ((or (not @t534) @t137)))
% 48.60/48.82  (step @p694 :rule trans :premises (@p693 @p686))
% 48.60/48.82  (step @p695 :rule bool-impl-elim :args (@t534 @t137))
% 48.60/48.82  (step @p696 :rule trans :premises (@p695 @p694))
% 48.60/48.82  (step @p697 :rule cong :premises (@p696) :args ((forall @t76 (=> @t534 @t137))))
% 48.60/48.82  (step @p698 :rule refl :args (@t137))
% 48.60/48.82  (step @p699 :rule arith_poly_norm :args ((= (* 1 (- @t74 @t108)) (* 1 (- @t242 0)))))
% 48.60/48.82  (step @p700 :rule arith_poly_norm_rel :premises (@p699) :args ((= @t535 @t517)))
% 48.60/48.82  (step @p701 :rule cong :premises (@p700) :args ((not @t535)))
% 48.60/48.82  (step @p702 :rule arith-elim-lt :args (@t74 @t108))
% 48.60/48.82  (step @p703 :rule trans :premises (@p702 @p701))
% 48.60/48.82  (step @p704 :rule bool-double-not-elim :args (@t519))
% 48.60/48.82  (step @p705 :rule arith_poly_norm :args ((= (* -1 (- 1 @t536)) (* -1 (- @t290 @t74)))))
% 48.60/48.82  (step @p706 :rule arith_poly_norm_rel :premises (@p705) :args ((= (>= 1 @t536) (>= @t290 @t74))))
% 48.60/48.82  (step @p707 :rule arith-geq-tighten :args (@t518 1))
% 48.60/48.82  (step @p708 :rule trans :premises (@p707 @p706))
% 48.60/48.82  (step @p709 :rule symm :premises (@p708))
% 48.60/48.82  (step @p710 :rule cong :premises (@p585 @p435) :args (@t537))
% 48.60/48.82  (step @p711 :rule trans :premises (@p710 @p709))
% 48.60/48.82  (step @p712 :rule cong :premises (@p711) :args ((not @t537)))
% 48.60/48.82  (step @p713 :rule trans :premises (@p712 @p704))
% 48.60/48.82  (step @p714 :rule arith-elim-lt :args (@t123 @t74))
% 48.60/48.82  (step @p715 :rule trans :premises (@p714 @p713))
% 48.60/48.82  (step @p716 :rule nary_cong :premises (@p715 @p703) :args (@t138))
% 48.60/48.82  (step @p717 :rule cong :premises (@p716 @p698) :args (@t139))
% 48.60/48.82  (step @p718 :rule cong :premises (@p717) :args (@t140))
% 48.60/48.82  (step @p719 :rule trans :premises (@p718 @p697))
% 48.60/48.82  (step @p720 :rule arith-elim-leq :args (0 @t141))
% 48.60/48.82  (step @p721 :rule arith-elim-leq :args (0 @t142))
% 48.60/48.82  (step @p722 :rule arith-elim-leq :args (0 @t144))
% 48.60/48.82  (step @p723 :rule nary_cong :premises (@p722 @p721 @p720 @p719 @p685) :args (@t146))
% 48.60/48.82  (step @p724 :rule cong :premises (@p723 @p684) :args (@t147))
% 48.60/48.82  (step @p725 :rule cong :premises (@p724) :args (@t149))
% 48.60/48.82  (step @p726 :rule trans :premises (@p725 @p683))
% 48.60/48.82  (step @p727 :rule eq_resolve :premises (@p73 @p726))
% 48.60/48.82  (step @p728 :rule refl :args (@t477))
% 48.60/48.82  (step @p729 :rule refl :args (@t492))
% 48.60/48.82  (step @p730 :rule refl :args (@t540))
% 48.60/48.82  (step @p731 :rule refl :args (@t541))
% 48.60/48.82  (step @p732 :rule arith_poly_norm :args ((= (+ @t74 @t542 @t303) @t489)))
% 48.60/48.82  (step @p733 :rule refl :args (@t303))
% 48.60/48.82  (step @p734 :rule arith_poly_norm :args ((= @t543 @t542)))
% 48.60/48.82  (step @p735 :rule nary_cong :premises (@p435 @p734 @p733) :args (@t544))
% 48.60/48.82  (step @p736 :rule trans :premises (@p735 @p732))
% 48.60/48.82  (step @p737 :rule cong :premises (@p736 @p443) :args (@t545))
% 48.60/48.82  (step @p738 :rule cong :premises (@p737) :args (@t546))
% 48.60/48.82  (step @p739 :rule nary_cong :premises (@p738 @p731 @p730) :args (@t547))
% 48.60/48.82  (step @p740 :rule cong :premises (@p739) :args (@t548))
% 48.60/48.82  (step @p741 :rule cong :premises (@p740) :args (@t549))
% 48.60/48.82  (step @p742 :rule refl :args (@t552))
% 48.60/48.82  (step @p743 :rule refl :args (@t555))
% 48.60/48.82  (step @p744 :rule refl :args (@t559))
% 48.60/48.82  (step @p745 :rule nary_cong :premises (@p744 @p743 @p742 @p741 @p729 @p728) :args (@t560))
% 48.60/48.82  (step @p746 :rule refl :args (@t561))
% 48.60/48.82  (step @p747 :rule cong :premises (@p746 @p745) :args ((=> @t561 @t560)))
% 48.60/48.82  (assume-push @p1331 @t561)
% 48.60/48.82  (step @p749 :rule instantiate :premises (@p727) :args ((@list @t476 @t303 @t474 @t485 @t470)))
% 48.60/48.82  (step-pop @p1332 :rule scope :premises (@p749))
% 48.60/48.82  (step @p750 :rule process_scope :premises (@p1332) :args (@t560))
% 48.60/48.82  (step @p752 :rule eq_resolve :premises (@p750 @p747))
% 48.60/48.82  (step @p753 :rule implies_elim :premises (@p752))
% 48.60/48.82  (step @p754 :rule chain_m_resolution :premises (@p753 @p727) :args (@t564 @t322 (@list @t561)))
% 48.60/48.82  (step @p755 :rule eq-symm :args (@t99 @t77))
% 48.60/48.82  (step @p756 :rule cong :premises (@p755) :args (@t100))
% 48.60/48.82  (step @p757 :rule eq_resolve :premises (@p63 @p756))
% 48.60/48.82  (step @p758 :rule instantiate :premises (@p757) :args ((@list @t469)))
% 48.60/48.82  (step @p759 :rule arith_poly_norm :args ((= (* 1 (- @t63 @t60)) (* -1 (- @t60 @t63)))))
% 48.60/48.82  (step @p760 :rule arith_poly_norm_rel :premises (@p759) :args ((= @t64 (= @t60 @t63))))
% 48.60/48.82  (step @p761 :rule cong :premises (@p760) :args (@t66))
% 48.60/48.82  (step @p762 :rule eq_resolve :premises (@p40 @p761))
% 48.60/48.82  (step @p763 :rule instantiate :premises (@p762) :args (@t565))
% 48.60/48.82  (step @p764 :rule bool-double-not-elim :args (@t494))
% 48.60/48.82  (step @p765 :rule refl :args (@t501))
% 48.60/48.82  (step @p766 :rule nary_cong :premises (@p765 @p764) :args ((or @t501 (not @t495))))
% 48.60/48.82  (step @p767 :rule cnf_or_neg :args (@t501 8))
% 48.60/48.82  (step @p768 :rule eq_resolve :premises (@p767 @p766))
% 48.60/48.82  (step @p769 :rule reordering :premises (@p768) :args ((or @t494 @t501)))
% 48.60/48.82  (step @p770 :rule chain_m_resolution :premises (@p769 @p600) :args (@t494 @t503 @t504))
% 48.60/48.82  (step @p771 :rule bool-double-not-elim :args (@t566))
% 48.60/48.82  (step @p772 :rule refl :args (@t495))
% 48.60/48.82  (step @p773 :rule nary_cong :premises (@p772 @p771) :args ((or @t495 (not @t567))))
% 48.60/48.82  (assume-push @p1333 @t567)
% 48.60/48.82  (assume-push @p1334 @t494)
% 48.60/48.82  (step @p776 :rule evaluate :args (@t568))
% 48.60/48.82  (step @p777 :rule refl :args (@t308))
% 48.60/48.82  (step @p778 :rule cong :premises (@p777 @p776) :args (@t569))
% 48.60/48.82  (step @p779 :rule cong :premises (@p778) :args ((not @t569)))
% 48.60/48.82  (step @p780 :rule arith-leq-norm :args (@t308 -1))
% 48.60/48.82  (step @p781 :rule trans :premises (@p780 @p779))
% 48.60/48.82  (step @p782 :rule cong :premises (@p781) :args ((not @t570)))
% 48.60/48.82  (step @p783 :rule trans :premises (@p782 @p771))
% 48.60/48.82  (step @p784 :rule arith-elim-leq :args (@t308 -1))
% 48.60/48.82  (step @p785 :rule symm :premises (@p784))
% 48.60/48.82  (step @p786 :rule cong :premises (@p785) :args ((not (>= -1 @t308))))
% 48.60/48.82  (step @p787 :rule arith-elim-gt :args (@t308 -1))
% 48.60/48.82  (step @p788 :rule trans :premises (@p787 @p786))
% 48.60/48.82  (step @p789 :rule trans :premises (@p788 @p783))
% 48.60/48.82  (step @p790 :rule cong :premises (@p789) :args ((not (> @t308 -1))))
% 48.60/48.82  (step @p791 :rule symm :premises (@p790))
% 48.60/48.82  (step @p792 :rule trans :premises (@p781 @p791))
% 48.60/48.82  (step @p793 :rule arith-elim-lt :args (@t308 0))
% 48.60/48.82  (step @p794 :rule symm :premises (@p793))
% 48.60/48.82  (step @p795 :rule eq_resolve :premises (@p1333 @p794))
% 48.60/48.82  (step @p796 :rule int_tight_ub :premises (@p795))
% 48.60/48.82  (step @p797 :rule eq_resolve :premises (@p796 @p792))
% 48.60/48.82  (step @p798 :rule symm :premises (@p789))
% 48.60/48.82  (step @p799 :rule trans :premises (@p783 @p798))
% 48.60/48.82  (assume-push @p1335 @t570)
% 48.60/48.82  (step @p801 :rule evaluate :args ((<= 0 -2)))
% 48.60/48.82  (step @p802 :rule evaluate :args ((+ -1 -1)))
% 48.60/48.82  (step @p618 :rule evaluate :args (@t506))
% 48.60/48.82  (step @p803 :rule nary_cong :premises (@p383 @p618) :args (@t571))
% 48.60/48.82  (step @p804 :rule trans :premises (@p803 @p802))
% 48.60/48.82  (step @p805 :rule arith_poly_norm :args ((= @t572 0)))
% 48.60/48.82  (step @p806 :rule cong :premises (@p805 @p804) :args ((<= @t572 @t571)))
% 48.60/48.82  (step @p807 :rule trans :premises (@p806 @p801))
% 48.60/48.82  (step @p808 :rule arith_mult_neg :args (-1 @t494))
% 48.60/48.82  (step @p635 :rule evaluate :args (@t513))
% 48.60/48.82  (step @p636 :rule true_elim :premises (@p635))
% 48.60/48.82  (step @p809 :rule and_intro :premises (@p636 @p770))
% 48.60/48.82  (step @p810 :rule modus_ponens :premises (@p809 @p808))
% 48.60/48.82  (step @p811 :rule arith_sum_ub :premises (@p1335 @p810))
% 48.60/48.82  (step @p812 false :rule eq_resolve :premises (@p811 @p807))
% 48.60/48.82  (step-pop @p1336 :rule scope :premises (@p812))
% 48.60/48.82  (step @p813 :rule process_scope :premises (@p1336) :args (false))
% 48.60/48.82  (step @p815 :rule eq_resolve :premises (@p813 @p799))
% 48.60/48.82  (step @p816 false :rule contra :premises (@p815 @p797))
% 48.60/48.82  (step-pop @p1337 :rule scope :premises (@p816))
% 48.60/48.82  (step-pop @p1338 :rule scope :premises (@p1337))
% 48.60/48.82  (step @p817 :rule process_scope :premises (@p1338) :args (false))
% 48.60/48.82  (assume-push @p1339 @t494)
% 48.60/48.82  (assume-push @p1340 @t567)
% 48.60/48.82  (step @p822 :rule and_intro :premises (@p1340 @p770))
% 48.60/48.82  (step-pop @p1341 :rule scope :premises (@p822))
% 48.60/48.82  (step-pop @p1342 :rule scope :premises (@p1341))
% 48.60/48.82  (step @p823 :rule process_scope :premises (@p1342) :args (@t573))
% 48.60/48.82  (step @p826 :rule implies_elim :premises (@p823))
% 48.60/48.82  (step @p827 :rule resolution :premises (@p826 @p817) :args (true @t573))
% 48.60/48.82  (step @p828 :rule not_and :premises (@p827))
% 48.60/48.82  (step @p829 :rule eq_resolve :premises (@p828 @p773))
% 48.60/48.82  (step @p830 :rule chain_m_resolution :premises (@p829 @p770) :args (@t566 @t322 (@list @t494)))
% 48.60/48.82  (step @p831 :rule bool-double-not-elim :args (@t496))
% 48.60/48.82  (step @p832 :rule nary_cong :premises (@p765 @p831) :args ((or @t501 (not @t497))))
% 48.60/48.82  (step @p833 :rule cnf_or_neg :args (@t501 7))
% 48.60/48.82  (step @p834 :rule eq_resolve :premises (@p833 @p832))
% 48.60/48.82  (step @p835 :rule reordering :premises (@p834) :args ((or @t496 @t501)))
% 48.60/48.82  (step @p836 :rule chain_m_resolution :premises (@p835 @p600) :args (@t496 @t503 @t504))
% 48.60/48.82  (step @p837 :rule cnf_or_neg :args (@t501 3))
% 48.60/48.82  (step @p838 :rule chain_m_resolution :premises (@p837 @p600) :args (@t574 @t503 @t504))
% 48.60/48.82  (step @p839 :rule bool-double-not-elim :args (@t551))
% 48.60/48.82  (step @p840 :rule refl :args (@t576))
% 48.60/48.82  (step @p841 :rule refl :args (@t579))
% 48.60/48.82  (step @p842 :rule refl :args (@t567))
% 48.60/48.82  (step @p843 :rule bool-double-not-elim :args (@t500))
% 48.60/48.82  (step @p844 :rule refl :args (@t497))
% 48.60/48.82  (step @p845 :rule nary_cong :premises (@p844 @p843 @p138 @p842 @p841 @p840 @p839) :args ((or @t497 @t581 @t580 @t567 @t579 @t576 (not @t552))))
% 48.60/48.82  (assume-push @p1343 @t552)
% 48.60/48.82  (assume-push @p1344 @t496)
% 48.60/48.82  (assume-push @p1345 @t505)
% 48.60/48.82  (assume-push @p1346 @t574)
% 48.60/48.82  (assume-push @p1347 @t566)
% 48.60/48.82  (assume-push @p1348 @t582)
% 48.60/48.82  (assume-push @p1349 @t585)
% 48.60/48.82  (step @p853 :rule evaluate :args (@t586))
% 48.60/48.82  (step @p854 :rule evaluate :args (@t587))
% 48.60/48.82  (step @p855 :rule evaluate :args (@t588))
% 48.60/48.82  (step @p856 :rule evaluate :args (@t589))
% 48.60/48.82  (step @p857 :rule nary_cong :premises (@p480 @p856 @p480 @p443 @p856 @p383) :args (@t590))
% 48.60/48.82  (step @p858 :rule trans :premises (@p857 @p855))
% 48.60/48.82  (step @p859 :rule arith_poly_norm :args ((= (+ @t583 @t550 0 @t493 @t329 @t468 @t302 0) 0)))
% 48.60/48.82  (step @p622 :rule arith_poly_norm :args (@t509))
% 48.60/48.82  (step @p860 :rule refl :args (@t302))
% 48.60/48.82  (step @p861 :rule refl :args (@t468))
% 48.60/48.82  (step @p862 :rule refl :args (@t329))
% 48.60/48.82  (step @p863 :rule refl :args (@t493))
% 48.60/48.82  (step @p864 :rule arith_poly_norm :args (@t592))
% 48.60/48.82  (step @p865 :rule refl :args (@t550))
% 48.60/48.82  (step @p866 :rule refl :args (@t583))
% 48.60/48.82  (step @p867 :rule nary_cong :premises (@p866 @p865 @p864 @p863 @p862 @p861 @p860 @p622) :args (@t593))
% 48.60/48.82  (step @p868 :rule trans :premises (@p867 @p859))
% 48.60/48.82  (step @p869 :rule arith_poly_norm :args ((= @t595 @t593)))
% 48.60/48.82  (step @p870 :rule trans :premises (@p869 @p868))
% 48.60/48.82  (step @p871 :rule cong :premises (@p870 @p858) :args (@t596))
% 48.60/48.82  (step @p872 :rule trans :premises (@p871 @p854))
% 48.60/48.82  (step @p873 :rule cong :premises (@p872) :args ((not @t596)))
% 48.60/48.82  (step @p874 :rule trans :premises (@p873 @p853))
% 48.60/48.82  (step @p875 :rule arith-elim-lt :args (@t595 @t590))
% 48.60/48.82  (step @p876 :rule trans :premises (@p875 @p874))
% 48.60/48.82  (step @p877 :rule arith-elim-lt :args (@t550 0))
% 48.60/48.82  (step @p878 :rule symm :premises (@p877))
% 48.60/48.82  (step @p879 :rule eq_resolve :premises (@p1343 @p878))
% 48.60/48.82  (step @p880 :rule int_tight_ub :premises (@p879))
% 48.60/48.82  (step @p881 :rule arith_mult_neg :args (-1 @t496))
% 48.60/48.82  (step @p635 :rule evaluate :args (@t513))
% 48.60/48.82  (step @p636 :rule true_elim :premises (@p635))
% 48.60/48.82  (step @p882 :rule and_intro :premises (@p636 @p836))
% 48.60/48.82  (step @p883 :rule modus_ponens :premises (@p882 @p881))
% 48.60/48.82  (step @p608 :rule arith-elim-lt :args (@t330 1))
% 48.60/48.82  (step @p613 :rule symm :premises (@p608))
% 48.60/48.82  (step @p884 :rule eq_resolve :premises (@p1345 @p613))
% 48.60/48.82  (step @p885 :rule arith-elim-lt :args (@t499 0))
% 48.60/48.82  (step @p886 :rule symm :premises (@p885))
% 48.60/48.82  (step @p887 :rule eq_resolve :premises (@p838 @p886))
% 48.60/48.82  (step @p888 :rule arith_mult_neg :args (-1 @t566))
% 48.60/48.82  (step @p889 :rule and_intro :premises (@p636 @p1347))
% 48.60/48.82  (step @p890 :rule modus_ponens :premises (@p889 @p888))
% 48.60/48.82  (step @p891 :rule arith_sum_ub :premises (@p1349 @p890 @p887 @p884 @p883 @p880))
% 48.60/48.82  (step @p892 false :rule eq_resolve :premises (@p891 @p876))
% 48.60/48.82  (step-pop @p1350 :rule scope :premises (@p892))
% 48.60/48.82  (step @p893 :rule process_scope :premises (@p1350) :args (false))
% 48.60/48.82  (step @p895 :rule arith_poly_norm :args ((= (* 1 (- @t584 0)) (* 1 (- @t468 @t550)))))
% 48.60/48.82  (step @p896 :rule arith_poly_norm_rel :premises (@p895) :args ((= @t585 @t582)))
% 48.60/48.82  (step @p897 :rule symm :premises (@p896))
% 48.60/48.82  (step @p898 :rule refl :args (tptp.int))
% 48.60/48.82  (step @p899 :rule cong :premises (@p898 @p758) :args (@t577))
% 48.60/48.82  (step @p900 :rule instantiate :premises (@p762) :args (@t565))
% 48.60/48.82  (step @p901 :rule trans :premises (@p900 @p899))
% 48.60/48.82  (step @p902 :rule eq_resolve :premises (@p901 @p897))
% 48.60/48.82  (step @p903 false :rule contra :premises (@p902 @p893))
% 48.60/48.82  (step-pop @p1351 :rule scope :premises (@p903))
% 48.60/48.82  (step-pop @p1352 :rule scope :premises (@p1351))
% 48.60/48.82  (step-pop @p1353 :rule scope :premises (@p1352))
% 48.60/48.82  (step-pop @p1354 :rule scope :premises (@p1353))
% 48.60/48.82  (step-pop @p1355 :rule scope :premises (@p1354))
% 48.60/48.82  (step-pop @p1356 :rule scope :premises (@p1355))
% 48.60/48.82  (step @p904 :rule process_scope :premises (@p1356) :args (false))
% 48.60/48.82  (assume-push @p1357 @t496)
% 48.60/48.82  (assume-push @p1358 @t574)
% 48.60/48.82  (assume-push @p1359 @t505)
% 48.60/48.82  (assume-push @p1360 @t566)
% 48.60/48.82  (assume-push @p1361 @t578)
% 48.60/48.82  (assume-push @p1362 @t575)
% 48.60/48.82  (assume-push @p1363 @t552)
% 48.60/48.82  (step @p898 :rule refl :args (tptp.int))
% 48.60/48.82  (step @p899 :rule cong :premises (@p898 @p758) :args (@t577))
% 48.60/48.82  (step @p918 :rule trans :premises (@p763 @p899))
% 48.60/48.82  (step @p919 :rule and_intro :premises (@p1363 @p836 @p1359 @p838 @p1360 @p918))
% 48.60/48.82  (step-pop @p1364 :rule scope :premises (@p919))
% 48.60/48.82  (step-pop @p1365 :rule scope :premises (@p1364))
% 48.60/48.82  (step-pop @p1366 :rule scope :premises (@p1365))
% 48.60/48.82  (step-pop @p1367 :rule scope :premises (@p1366))
% 48.60/48.82  (step-pop @p1368 :rule scope :premises (@p1367))
% 48.60/48.82  (step-pop @p1369 :rule scope :premises (@p1368))
% 48.60/48.82  (step-pop @p1370 :rule scope :premises (@p1369))
% 48.60/48.82  (step @p920 :rule process_scope :premises (@p1370) :args (@t597))
% 48.60/48.82  (step @p928 :rule implies_elim :premises (@p920))
% 48.60/48.82  (step @p929 :rule resolution :premises (@p928 @p904) :args (true @t597))
% 48.60/48.82  (step @p930 :rule not_and :premises (@p929))
% 48.60/48.82  (step @p931 :rule eq_resolve :premises (@p930 @p845))
% 48.60/48.82  (step @p932 :rule reordering :premises (@p931) :args ((or @t500 @t497 @t331 @t567 @t579 @t576 @t551)))
% 48.60/48.82  (step @p933 :rule chain_m_resolution :premises (@p932 @p838 @p836 @p658 @p830 @p763 @p758) :args (@t551 @t598 (@list @t500 @t496 @t331 @t566 @t578 @t575)))
% 48.60/48.82  (step @p934 :rule instantiate :premises (@p757) :args ((@list @t484)))
% 48.60/48.82  (step @p935 :rule instantiate :premises (@p762) :args (@t599))
% 48.60/48.82  (step @p936 :rule bool-double-not-elim :args (@t554))
% 48.60/48.82  (step @p937 :rule refl :args (@t601))
% 48.60/48.82  (step @p938 :rule refl :args (@t604))
% 48.60/48.82  (step @p939 :rule nary_cong :premises (@p844 @p843 @p138 @p842 @p938 @p937 @p936) :args ((or @t497 @t581 @t580 @t567 @t604 @t601 (not @t555))))
% 48.60/48.82  (assume-push @p1371 @t555)
% 48.60/48.82  (assume-push @p1372 @t496)
% 48.60/48.82  (assume-push @p1373 @t505)
% 48.60/48.82  (assume-push @p1374 @t574)
% 48.60/48.82  (assume-push @p1375 @t566)
% 48.60/48.82  (assume-push @p1376 @t605)
% 48.60/48.82  (assume-push @p1377 @t608)
% 48.60/48.82  (step @p853 :rule evaluate :args (@t586))
% 48.60/48.82  (step @p854 :rule evaluate :args (@t587))
% 48.60/48.82  (step @p855 :rule evaluate :args (@t588))
% 48.60/48.82  (step @p856 :rule evaluate :args (@t589))
% 48.60/48.82  (step @p857 :rule nary_cong :premises (@p480 @p856 @p480 @p443 @p856 @p383) :args (@t590))
% 48.60/48.82  (step @p858 :rule trans :premises (@p857 @p855))
% 48.60/48.82  (step @p947 :rule arith_poly_norm :args ((= (+ @t606 @t553 0 @t493 @t329 @t468 @t302 0) 0)))
% 48.60/48.82  (step @p622 :rule arith_poly_norm :args (@t509))
% 48.60/48.82  (step @p860 :rule refl :args (@t302))
% 48.60/48.82  (step @p861 :rule refl :args (@t468))
% 48.60/48.82  (step @p862 :rule refl :args (@t329))
% 48.60/48.82  (step @p863 :rule refl :args (@t493))
% 48.60/48.82  (step @p864 :rule arith_poly_norm :args (@t592))
% 48.60/48.82  (step @p948 :rule refl :args (@t553))
% 48.60/48.82  (step @p949 :rule refl :args (@t606))
% 48.60/48.82  (step @p950 :rule nary_cong :premises (@p949 @p948 @p864 @p863 @p862 @p861 @p860 @p622) :args (@t609))
% 48.60/48.82  (step @p951 :rule trans :premises (@p950 @p947))
% 48.60/48.82  (step @p952 :rule arith_poly_norm :args ((= @t610 @t609)))
% 48.60/48.82  (step @p953 :rule trans :premises (@p952 @p951))
% 48.60/48.82  (step @p954 :rule cong :premises (@p953 @p858) :args (@t611))
% 48.60/48.82  (step @p955 :rule trans :premises (@p954 @p854))
% 48.60/48.82  (step @p956 :rule cong :premises (@p955) :args ((not @t611)))
% 48.60/48.82  (step @p957 :rule trans :premises (@p956 @p853))
% 48.60/48.82  (step @p958 :rule arith-elim-lt :args (@t610 @t590))
% 48.60/48.82  (step @p959 :rule trans :premises (@p958 @p957))
% 48.60/48.82  (step @p960 :rule arith-elim-lt :args (@t553 0))
% 48.60/48.82  (step @p961 :rule symm :premises (@p960))
% 48.60/48.82  (step @p962 :rule eq_resolve :premises (@p1371 @p961))
% 48.60/48.82  (step @p963 :rule int_tight_ub :premises (@p962))
% 48.60/48.82  (step @p881 :rule arith_mult_neg :args (-1 @t496))
% 48.60/48.82  (step @p635 :rule evaluate :args (@t513))
% 48.60/48.82  (step @p636 :rule true_elim :premises (@p635))
% 48.60/48.82  (step @p882 :rule and_intro :premises (@p636 @p836))
% 48.60/48.82  (step @p883 :rule modus_ponens :premises (@p882 @p881))
% 48.60/48.82  (step @p608 :rule arith-elim-lt :args (@t330 1))
% 48.60/48.82  (step @p613 :rule symm :premises (@p608))
% 48.60/48.82  (step @p964 :rule eq_resolve :premises (@p1373 @p613))
% 48.60/48.82  (step @p885 :rule arith-elim-lt :args (@t499 0))
% 48.60/48.82  (step @p886 :rule symm :premises (@p885))
% 48.60/48.82  (step @p887 :rule eq_resolve :premises (@p838 @p886))
% 48.60/48.82  (step @p888 :rule arith_mult_neg :args (-1 @t566))
% 48.60/48.82  (step @p965 :rule and_intro :premises (@p636 @p1375))
% 48.60/48.82  (step @p966 :rule modus_ponens :premises (@p965 @p888))
% 48.60/48.82  (step @p967 :rule arith_sum_ub :premises (@p1377 @p966 @p887 @p964 @p883 @p963))
% 48.60/48.82  (step @p968 false :rule eq_resolve :premises (@p967 @p959))
% 48.60/48.82  (step-pop @p1378 :rule scope :premises (@p968))
% 48.60/48.82  (step @p969 :rule process_scope :premises (@p1378) :args (false))
% 48.60/48.82  (step @p971 :rule arith_poly_norm :args ((= (* 1 (- @t607 0)) (* 1 (- @t468 @t553)))))
% 48.60/48.82  (step @p972 :rule arith_poly_norm_rel :premises (@p971) :args ((= @t608 @t605)))
% 48.60/48.82  (step @p973 :rule symm :premises (@p972))
% 48.60/48.82  (step @p898 :rule refl :args (tptp.int))
% 48.60/48.82  (step @p974 :rule cong :premises (@p898 @p934) :args (@t602))
% 48.60/48.82  (step @p975 :rule instantiate :premises (@p762) :args (@t599))
% 48.60/48.82  (step @p976 :rule trans :premises (@p975 @p974))
% 48.60/48.82  (step @p977 :rule eq_resolve :premises (@p976 @p973))
% 48.60/48.82  (step @p978 false :rule contra :premises (@p977 @p969))
% 48.60/48.82  (step-pop @p1379 :rule scope :premises (@p978))
% 48.60/48.82  (step-pop @p1380 :rule scope :premises (@p1379))
% 48.60/48.82  (step-pop @p1381 :rule scope :premises (@p1380))
% 48.60/48.82  (step-pop @p1382 :rule scope :premises (@p1381))
% 48.60/48.82  (step-pop @p1383 :rule scope :premises (@p1382))
% 48.60/48.82  (step-pop @p1384 :rule scope :premises (@p1383))
% 48.60/48.82  (step @p979 :rule process_scope :premises (@p1384) :args (false))
% 48.60/48.82  (assume-push @p1385 @t496)
% 48.60/48.82  (assume-push @p1386 @t574)
% 48.60/48.82  (assume-push @p1387 @t505)
% 48.60/48.82  (assume-push @p1388 @t566)
% 48.60/48.82  (assume-push @p1389 @t603)
% 48.60/48.82  (assume-push @p1390 @t600)
% 48.60/48.82  (assume-push @p1391 @t555)
% 48.60/48.82  (step @p898 :rule refl :args (tptp.int))
% 48.60/48.82  (step @p974 :rule cong :premises (@p898 @p934) :args (@t602))
% 48.60/48.82  (step @p993 :rule trans :premises (@p935 @p974))
% 48.60/48.82  (step @p994 :rule and_intro :premises (@p1391 @p836 @p1387 @p838 @p1388 @p993))
% 48.60/48.82  (step-pop @p1392 :rule scope :premises (@p994))
% 48.60/48.82  (step-pop @p1393 :rule scope :premises (@p1392))
% 48.60/48.82  (step-pop @p1394 :rule scope :premises (@p1393))
% 48.60/48.82  (step-pop @p1395 :rule scope :premises (@p1394))
% 48.60/48.82  (step-pop @p1396 :rule scope :premises (@p1395))
% 48.60/48.82  (step-pop @p1397 :rule scope :premises (@p1396))
% 48.60/48.82  (step-pop @p1398 :rule scope :premises (@p1397))
% 48.60/48.82  (step @p995 :rule process_scope :premises (@p1398) :args (@t612))
% 48.60/48.82  (step @p1003 :rule implies_elim :premises (@p995))
% 48.60/48.82  (step @p1004 :rule resolution :premises (@p1003 @p979) :args (true @t612))
% 48.60/48.82  (step @p1005 :rule not_and :premises (@p1004))
% 48.60/48.82  (step @p1006 :rule eq_resolve :premises (@p1005 @p939))
% 48.60/48.82  (step @p1007 :rule reordering :premises (@p1006) :args ((or @t500 @t497 @t331 @t567 @t604 @t601 @t554)))
% 48.60/48.82  (step @p1008 :rule chain_m_resolution :premises (@p1007 @p838 @p836 @p658 @p830 @p935 @p934) :args (@t554 @t598 (@list @t500 @t496 @t331 @t566 @t603 @t600)))
% 48.60/48.82  (step @p1009 :rule instantiate :premises (@p757) :args ((@list @t473)))
% 48.60/48.82  (step @p1010 :rule instantiate :premises (@p762) :args (@t613))
% 48.60/48.82  (step @p1011 :rule bool-double-not-elim :args (@t558))
% 48.60/48.82  (step @p1012 :rule refl :args (@t615))
% 48.60/48.82  (step @p1013 :rule refl :args (@t618))
% 48.60/48.82  (step @p1014 :rule nary_cong :premises (@p844 @p843 @p138 @p842 @p1013 @p1012 @p1011) :args ((or @t497 @t581 @t580 @t567 @t618 @t615 (not @t559))))
% 48.60/48.82  (assume-push @p1399 @t559)
% 48.60/48.82  (assume-push @p1400 @t496)
% 48.60/48.82  (assume-push @p1401 @t505)
% 48.60/48.82  (assume-push @p1402 @t574)
% 48.60/48.82  (assume-push @p1403 @t566)
% 48.60/48.82  (assume-push @p1404 @t619)
% 48.60/48.82  (assume-push @p1405 @t622)
% 48.60/48.82  (step @p853 :rule evaluate :args (@t586))
% 48.60/48.82  (step @p854 :rule evaluate :args (@t587))
% 48.60/48.82  (step @p855 :rule evaluate :args (@t588))
% 48.60/48.82  (step @p856 :rule evaluate :args (@t589))
% 48.60/48.82  (step @p857 :rule nary_cong :premises (@p480 @p856 @p480 @p443 @p856 @p383) :args (@t590))
% 48.60/48.82  (step @p858 :rule trans :premises (@p857 @p855))
% 48.60/48.82  (step @p1022 :rule arith_poly_norm :args ((= (+ @t620 @t557 0 @t493 @t329 @t468 @t302 0) 0)))
% 48.60/48.82  (step @p622 :rule arith_poly_norm :args (@t509))
% 48.60/48.82  (step @p860 :rule refl :args (@t302))
% 48.60/48.82  (step @p861 :rule refl :args (@t468))
% 48.60/48.82  (step @p862 :rule refl :args (@t329))
% 48.60/48.82  (step @p863 :rule refl :args (@t493))
% 48.60/48.82  (step @p864 :rule arith_poly_norm :args (@t592))
% 48.60/48.82  (step @p1023 :rule refl :args (@t557))
% 48.60/48.82  (step @p1024 :rule refl :args (@t620))
% 48.60/48.82  (step @p1025 :rule nary_cong :premises (@p1024 @p1023 @p864 @p863 @p862 @p861 @p860 @p622) :args (@t623))
% 48.60/48.82  (step @p1026 :rule trans :premises (@p1025 @p1022))
% 48.60/48.82  (step @p1027 :rule arith_poly_norm :args ((= @t624 @t623)))
% 48.60/48.82  (step @p1028 :rule trans :premises (@p1027 @p1026))
% 48.60/48.82  (step @p1029 :rule cong :premises (@p1028 @p858) :args (@t625))
% 48.60/48.82  (step @p1030 :rule trans :premises (@p1029 @p854))
% 48.60/48.82  (step @p1031 :rule cong :premises (@p1030) :args ((not @t625)))
% 48.60/48.82  (step @p1032 :rule trans :premises (@p1031 @p853))
% 48.60/48.82  (step @p1033 :rule arith-elim-lt :args (@t624 @t590))
% 48.60/48.82  (step @p1034 :rule trans :premises (@p1033 @p1032))
% 48.60/48.82  (step @p1035 :rule arith-elim-lt :args (@t557 0))
% 48.60/48.82  (step @p1036 :rule symm :premises (@p1035))
% 48.60/48.82  (step @p1037 :rule eq_resolve :premises (@p1399 @p1036))
% 48.60/48.82  (step @p1038 :rule int_tight_ub :premises (@p1037))
% 48.60/48.82  (step @p881 :rule arith_mult_neg :args (-1 @t496))
% 48.60/48.82  (step @p635 :rule evaluate :args (@t513))
% 48.60/48.82  (step @p636 :rule true_elim :premises (@p635))
% 48.60/48.82  (step @p882 :rule and_intro :premises (@p636 @p836))
% 48.60/48.82  (step @p883 :rule modus_ponens :premises (@p882 @p881))
% 48.60/48.82  (step @p608 :rule arith-elim-lt :args (@t330 1))
% 48.60/48.82  (step @p613 :rule symm :premises (@p608))
% 48.60/48.82  (step @p1039 :rule eq_resolve :premises (@p1401 @p613))
% 48.60/48.82  (step @p885 :rule arith-elim-lt :args (@t499 0))
% 48.60/48.82  (step @p886 :rule symm :premises (@p885))
% 48.60/48.82  (step @p887 :rule eq_resolve :premises (@p838 @p886))
% 48.60/48.82  (step @p888 :rule arith_mult_neg :args (-1 @t566))
% 48.60/48.82  (step @p1040 :rule and_intro :premises (@p636 @p1403))
% 48.60/48.82  (step @p1041 :rule modus_ponens :premises (@p1040 @p888))
% 48.60/48.82  (step @p1042 :rule arith_sum_ub :premises (@p1405 @p1041 @p887 @p1039 @p883 @p1038))
% 48.60/48.82  (step @p1043 false :rule eq_resolve :premises (@p1042 @p1034))
% 48.60/48.82  (step-pop @p1406 :rule scope :premises (@p1043))
% 48.60/48.82  (step @p1044 :rule process_scope :premises (@p1406) :args (false))
% 48.60/48.82  (step @p1046 :rule arith_poly_norm :args ((= (* 1 (- @t621 0)) (* 1 (- @t468 @t557)))))
% 48.60/48.82  (step @p1047 :rule arith_poly_norm_rel :premises (@p1046) :args ((= @t622 @t619)))
% 48.60/48.82  (step @p1048 :rule symm :premises (@p1047))
% 48.60/48.82  (step @p898 :rule refl :args (tptp.int))
% 48.60/48.82  (step @p1049 :rule cong :premises (@p898 @p1009) :args (@t616))
% 48.60/48.82  (step @p1050 :rule instantiate :premises (@p762) :args (@t613))
% 48.60/48.82  (step @p1051 :rule trans :premises (@p1050 @p1049))
% 48.60/48.82  (step @p1052 :rule eq_resolve :premises (@p1051 @p1048))
% 48.60/48.82  (step @p1053 false :rule contra :premises (@p1052 @p1044))
% 48.60/48.82  (step-pop @p1407 :rule scope :premises (@p1053))
% 48.60/48.82  (step-pop @p1408 :rule scope :premises (@p1407))
% 48.60/48.82  (step-pop @p1409 :rule scope :premises (@p1408))
% 48.60/48.82  (step-pop @p1410 :rule scope :premises (@p1409))
% 48.60/48.82  (step-pop @p1411 :rule scope :premises (@p1410))
% 48.60/48.82  (step-pop @p1412 :rule scope :premises (@p1411))
% 48.60/48.82  (step @p1054 :rule process_scope :premises (@p1412) :args (false))
% 48.60/48.82  (assume-push @p1413 @t496)
% 48.60/48.82  (assume-push @p1414 @t574)
% 48.60/48.82  (assume-push @p1415 @t505)
% 48.60/48.82  (assume-push @p1416 @t566)
% 48.60/48.82  (assume-push @p1417 @t617)
% 48.60/48.82  (assume-push @p1418 @t614)
% 48.60/48.82  (assume-push @p1419 @t559)
% 48.60/48.82  (step @p898 :rule refl :args (tptp.int))
% 48.60/48.82  (step @p1049 :rule cong :premises (@p898 @p1009) :args (@t616))
% 48.60/48.82  (step @p1068 :rule trans :premises (@p1010 @p1049))
% 48.60/48.82  (step @p1069 :rule and_intro :premises (@p1419 @p836 @p1415 @p838 @p1416 @p1068))
% 48.60/48.82  (step-pop @p1420 :rule scope :premises (@p1069))
% 48.60/48.82  (step-pop @p1421 :rule scope :premises (@p1420))
% 48.60/48.82  (step-pop @p1422 :rule scope :premises (@p1421))
% 48.60/48.82  (step-pop @p1423 :rule scope :premises (@p1422))
% 48.60/48.82  (step-pop @p1424 :rule scope :premises (@p1423))
% 48.60/48.82  (step-pop @p1425 :rule scope :premises (@p1424))
% 48.60/48.82  (step-pop @p1426 :rule scope :premises (@p1425))
% 48.60/48.82  (step @p1070 :rule process_scope :premises (@p1426) :args (@t626))
% 48.60/48.82  (step @p1078 :rule implies_elim :premises (@p1070))
% 48.60/48.82  (step @p1079 :rule resolution :premises (@p1078 @p1054) :args (true @t626))
% 48.60/48.82  (step @p1080 :rule not_and :premises (@p1079))
% 48.60/48.82  (step @p1081 :rule eq_resolve :premises (@p1080 @p1014))
% 48.60/48.82  (step @p1082 :rule reordering :premises (@p1081) :args ((or @t500 @t497 @t331 @t567 @t618 @t615 @t558)))
% 48.60/48.82  (step @p1083 :rule chain_m_resolution :premises (@p1082 @p838 @p836 @p658 @p830 @p1010 @p1009) :args (@t558 @t598 (@list @t500 @t496 @t331 @t566 @t617 @t614)))
% 48.60/48.82  (step @p1084 :rule cnf_or_neg :args (@t501 22))
% 48.60/48.82  (step @p1085 :rule chain_m_resolution :premises (@p1084 @p600) :args ((not @t477) @t503 @t504))
% 48.60/48.82  (step @p1086 :rule bool-double-not-elim :args (@t491))
% 48.60/48.82  (step @p1087 :rule nary_cong :premises (@p765 @p1086) :args ((or @t501 (not @t492))))
% 48.60/48.82  (step @p1088 :rule cnf_or_neg :args (@t501 14))
% 48.60/48.82  (step @p1089 :rule eq_resolve :premises (@p1088 @p1087))
% 48.60/48.82  (step @p1090 :rule reordering :premises (@p1089) :args ((or @t491 @t501)))
% 48.60/48.82  (step @p1091 :rule chain_m_resolution :premises (@p1090 @p600) :args (@t491 @t503 @t504))
% 48.60/48.82  (step @p1092 :rule cnf_or_pos :args (@t564))
% 48.60/48.82  (step @p1093 :rule reordering :premises (@p1092) :args ((or @t492 @t477 @t559 @t555 @t552 @t563 (not @t564))))
% 48.60/48.82  (step @p1094 :rule chain_m_resolution :premises (@p1093 @p1091 @p1085 @p1083 @p1008 @p933 @p754) :args (@t563 (@list false true false false false false) (@list @t491 @t477 @t558 @t554 @t551 @t564)))
% 48.60/48.82  (step @p1095 :rule refl :args (@t640))
% 48.60/48.82  (step @p1096 :rule bool-double-not-elim :args (@t562))
% 48.60/48.82  (step @p1097 :rule nary_cong :premises (@p1096 @p1095) :args ((or (not @t563) @t640)))
% 48.60/48.82  (step @p1098 :rule refl :args (@t632))
% 48.60/48.82  (step @p1099 :rule arith_poly_norm :args ((= (* -1 (- 1 @t642)) (* -1 (- @t641 0)))))
% 48.60/48.82  (step @p1100 :rule arith_poly_norm_rel :premises (@p1099) :args ((= (>= 1 @t642) (>= @t641 0))))
% 48.60/48.82  (step @p1101 :rule arith-geq-tighten :args (@t634 1))
% 48.60/48.82  (step @p1102 :rule trans :premises (@p1101 @p1100))
% 48.60/48.82  (step @p1103 :rule symm :premises (@p1102))
% 48.60/48.82  (step @p1104 :rule arith_poly_norm :args ((= @t643 @t641)))
% 48.60/48.82  (step @p1105 :rule cong :premises (@p1104 @p480) :args (@t644))
% 48.60/48.82  (step @p1106 :rule trans :premises (@p1105 @p1103))
% 48.60/48.82  (step @p1107 :rule bool-double-not-elim :args (@t638))
% 48.60/48.82  (step @p1108 :rule arith_poly_norm :args ((= (* -1 (- 0 @t646)) (* -1 (- @t645 1)))))
% 48.60/48.82  (step @p1109 :rule arith_poly_norm_rel :premises (@p1108) :args ((= (>= 0 @t646) (>= @t645 1))))
% 48.60/48.82  (step @p1110 :rule arith-geq-tighten :args (@t637 0))
% 48.60/48.82  (step @p1111 :rule trans :premises (@p1110 @p1109))
% 48.60/48.82  (step @p1112 :rule symm :premises (@p1111))
% 48.60/48.82  (step @p1113 :rule arith_poly_norm :args ((= @t647 @t645)))
% 48.60/48.82  (step @p1114 :rule cong :premises (@p1113 @p443) :args (@t648))
% 48.60/48.82  (step @p1115 :rule trans :premises (@p1114 @p1112))
% 48.60/48.82  (step @p1116 :rule cong :premises (@p1115) :args (@t649))
% 48.60/48.82  (step @p1117 :rule trans :premises (@p1116 @p1107))
% 48.60/48.82  (step @p1118 :rule nary_cong :premises (@p1117 @p1106 @p1098) :args (@t650))
% 48.60/48.82  (step @p1119 :rule cong :premises (@p1118) :args (@t651))
% 48.60/48.82  (step @p1120 :rule refl :args (@t563))
% 48.60/48.82  (step @p1121 :rule cong :premises (@p1120 @p1119) :args ((=> @t563 @t651)))
% 48.60/48.82  (assume-push @p1427 @t563)
% 48.60/48.82  (step @p1123 :rule skolemize :premises (@p1427))
% 48.60/48.82  (step-pop @p1428 :rule scope :premises (@p1123))
% 48.60/48.82  (step @p1124 :rule process_scope :premises (@p1428) :args (@t651))
% 48.60/48.82  (step @p1126 :rule eq_resolve :premises (@p1124 @p1121))
% 48.60/48.82  (step @p1127 :rule implies_elim :premises (@p1126))
% 48.60/48.82  (step @p1128 :rule eq_resolve :premises (@p1127 @p1097))
% 48.60/48.82  (step @p1129 :rule chain_m_resolution :premises (@p1128 @p1094) :args (@t640 @t503 (@list @t562)))
% 48.60/48.82  (step @p1130 :rule bool-double-not-elim :args (@t635))
% 48.60/48.82  (step @p1131 :rule refl :args (@t639))
% 48.60/48.82  (step @p1132 :rule nary_cong :premises (@p1131 @p1130) :args ((or @t639 (not @t636))))
% 48.60/48.82  (step @p1133 :rule cnf_or_neg :args (@t639 1))
% 48.60/48.82  (step @p1134 :rule eq_resolve :premises (@p1133 @p1132))
% 48.60/48.82  (step @p1135 :rule reordering :premises (@p1134) :args ((or @t635 @t639)))
% 48.60/48.82  (step @p1136 :rule chain_m_resolution :premises (@p1135 @p1129) :args (@t635 @t503 @t652))
% 48.60/48.82  (step @p1137 :rule bool-double-not-elim :args (@t482))
% 48.60/48.82  (step @p1138 :rule nary_cong :premises (@p765 @p1137) :args ((or @t501 (not @t483))))
% 48.60/48.82  (step @p1139 :rule cnf_or_neg :args (@t501 20))
% 48.60/48.82  (step @p1140 :rule eq_resolve :premises (@p1139 @p1138))
% 48.60/48.82  (step @p1141 :rule reordering :premises (@p1140) :args ((or @t482 @t501)))
% 48.60/48.82  (step @p1142 :rule chain_m_resolution :premises (@p1141 @p600) :args (@t482 @t503 @t504))
% 48.60/48.82  (step @p1143 :rule refl :args (@t656))
% 48.60/48.82  (step @p1144 :rule arith_poly_norm :args ((= (* -1 (- 0 @t659)) (* -1 (- @t657 1)))))
% 48.60/48.82  (step @p1145 :rule arith_poly_norm_rel :premises (@p1144) :args ((= (>= 0 @t659) (>= @t657 1))))
% 48.60/48.82  (step @p1146 :rule arith-geq-tighten :args (@t658 0))
% 48.60/48.82  (step @p1147 :rule trans :premises (@p1146 @p1145))
% 48.60/48.82  (step @p1148 :rule symm :premises (@p1147))
% 48.60/48.82  (step @p1149 :rule arith_poly_norm :args ((= @t660 @t657)))
% 48.60/48.82  (step @p1150 :rule cong :premises (@p1149 @p443) :args (@t661))
% 48.60/48.82  (step @p1151 :rule trans :premises (@p1150 @p1148))
% 48.60/48.82  (step @p1152 :rule nary_cong :premises (@p1151 @p1143) :args (@t662))
% 48.60/48.82  (step @p1153 :rule refl :args (@t482))
% 48.60/48.82  (step @p1154 :rule cong :premises (@p1153 @p1152) :args ((=> @t482 @t662)))
% 48.60/48.82  (assume-push @p1429 @t482)
% 48.60/48.82  (step @p1156 :rule instantiate :premises (@p1142) :args ((@list @t627)))
% 48.60/48.82  (step-pop @p1430 :rule scope :premises (@p1156))
% 48.60/48.82  (step @p1157 :rule process_scope :premises (@p1430) :args (@t662))
% 48.60/48.82  (step @p1159 :rule eq_resolve :premises (@p1157 @p1154))
% 48.60/48.82  (step @p1160 :rule implies_elim :premises (@p1159))
% 48.60/48.82  (step @p1161 :rule chain_m_resolution :premises (@p1160 @p1142) :args (@t665 @t322 (@list @t482)))
% 48.60/48.82  (step @p1162 :rule instantiate :premises (@p48) :args ((@list tptp.int @t538 @t627)))
% 48.60/48.82  (step @p1163 :rule instantiate :premises (@p48) :args ((@list tptp.int @t539 @t627)))
% 48.60/48.82  (step @p1164 :rule cnf_or_neg :args (@t639 2))
% 48.60/48.82  (step @p1165 :rule chain_m_resolution :premises (@p1164 @p1129) :args (@t666 @t503 @t652))
% 48.60/48.82  (step @p1166 :rule bool-impl-elim :args (@t69 @t667))
% 48.60/48.82  (step @p1167 :rule cong :premises (@p1166) :args ((forall @t65 (=> @t69 @t667))))
% 48.60/48.82  (step @p1168 :rule eq-symm :args (@t68 @t61))
% 48.60/48.82  (step @p1169 :rule refl :args (@t69))
% 48.60/48.82  (step @p1170 :rule cong :premises (@p1169 @p1168) :args (@t70))
% 48.60/48.82  (step @p1171 :rule cong :premises (@p1170) :args (@t71))
% 48.60/48.82  (step @p1172 :rule trans :premises (@p1171 @p1167))
% 48.60/48.82  (step @p1173 :rule eq_resolve :premises (@p42 @p1172))
% 48.60/48.82  (step @p1174 :rule instantiate :premises (@p1173) :args (@t565))
% 48.60/48.82  (step @p1175 :rule instantiate :premises (@p54) :args ((@list @t466)))
% 48.60/48.82  (step @p1176 :rule cnf_or_pos :args (@t671))
% 48.60/48.82  (step @p1177 :rule reordering :premises (@p1176) :args ((or @t670 @t668 (not @t671))))
% 48.60/48.82  (step @p1178 :rule chain_m_resolution :premises (@p1177 @p1175 @p1174) :args (@t668 @t672 (@list @t669 @t671)))
% 48.60/48.82  (step @p1179 :rule instantiate :premises (@p1173) :args (@t599))
% 48.60/48.82  (step @p1180 :rule instantiate :premises (@p54) :args ((@list @t478)))
% 48.60/48.82  (step @p1181 :rule cnf_or_pos :args (@t676))
% 48.60/48.82  (step @p1182 :rule reordering :premises (@p1181) :args ((or @t675 @t673 (not @t676))))
% 48.60/48.82  (step @p1183 :rule chain_m_resolution :premises (@p1182 @p1180 @p1179) :args (@t673 @t672 (@list @t674 @t676)))
% 48.60/48.82  (step @p1184 :rule refl :args (@t677))
% 48.60/48.82  (step @p1185 :rule refl :args (@t681))
% 48.60/48.82  (step @p1186 :rule refl :args (@t685))
% 48.60/48.82  (step @p1187 :rule bool-double-not-elim :args (@t632))
% 48.60/48.82  (step @p1188 :rule refl :args (@t686))
% 48.60/48.82  (step @p1189 :rule refl :args (@t687))
% 48.60/48.82  (step @p1190 :rule nary_cong :premises (@p1189 @p1188 @p937 @p840 @p1187 @p1186 @p1185 @p1184) :args ((or @t687 @t686 @t601 @t576 (not @t666) @t685 @t681 @t677)))
% 48.60/48.82  (assume-push @p1431 @t673)
% 48.60/48.82  (assume-push @p1432 @t668)
% 48.60/48.82  (assume-push @p1433 @t600)
% 48.60/48.82  (assume-push @p1434 @t575)
% 48.60/48.82  (assume-push @p1435 @t666)
% 48.60/48.82  (assume-push @p1436 @t684)
% 48.60/48.82  (assume-push @p1437 @t680)
% 48.60/48.82  (assume-push @p1438 @t666)
% 48.60/48.82  (assume-push @p1439 (= @t631 @t655))
% 48.60/48.82  (assume-push @p1440 (= @t629 @t654))
% 48.60/48.82  (step @p1201 :rule false_intro :premises (@p1435))
% 48.60/48.82  (step @p1202 :rule refl :args (@t653))
% 48.60/48.82  (step @p1203 :rule symm :premises (@p1178))
% 48.60/48.82  (step @p1204 :rule symm :premises (@p758))
% 48.60/48.82  (step @p898 :rule refl :args (tptp.int))
% 48.60/48.82  (step @p1205 :rule cong :premises (@p898 @p1204) :args (@t678))
% 48.60/48.82  (step @p1206 :rule trans :premises (@p1205 @p1203))
% 48.60/48.82  (step @p1207 :rule cong :premises (@p898 @p898 @p1206 @p1202) :args (@t679))
% 48.60/48.82  (step @p1208 :rule trans :premises (@p1162 @p1207))
% 48.60/48.82  (step @p1209 :rule cong :premises (@p1208) :args (@t629))
% 48.60/48.82  (step @p1210 :rule symm :premises (@p1209))
% 48.60/48.82  (step @p1211 :rule symm :premises (@p1183))
% 48.60/48.82  (step @p1212 :rule symm :premises (@p934))
% 48.60/48.82  (step @p1213 :rule cong :premises (@p898 @p1212) :args (@t682))
% 48.60/48.82  (step @p1214 :rule trans :premises (@p1213 @p1211))
% 48.60/48.82  (step @p1215 :rule cong :premises (@p898 @p898 @p1214 @p1202) :args (@t683))
% 48.60/48.82  (step @p1216 :rule trans :premises (@p1163 @p1215))
% 48.60/48.82  (step @p1217 :rule cong :premises (@p1216) :args (@t631))
% 48.60/48.82  (step @p1218 :rule symm :premises (@p1217))
% 48.60/48.82  (step @p1219 :rule cong :premises (@p1218 @p1210) :args (@t656))
% 48.60/48.82  (step @p1220 :rule trans :premises (@p1219 @p1201))
% 48.60/48.82  (step @p1221 :rule false_elim :premises (@p1220))
% 48.60/48.82  (step-pop @p1441 :rule scope :premises (@p1221))
% 48.60/48.82  (step-pop @p1442 :rule scope :premises (@p1441))
% 48.60/48.82  (step-pop @p1443 :rule scope :premises (@p1442))
% 48.60/48.82  (step @p1222 :rule process_scope :premises (@p1443) :args (@t677))
% 48.60/48.82  (step @p1202 :rule refl :args (@t653))
% 48.60/48.82  (step @p1203 :rule symm :premises (@p1178))
% 48.60/48.82  (step @p1204 :rule symm :premises (@p758))
% 48.60/48.82  (step @p898 :rule refl :args (tptp.int))
% 48.60/48.82  (step @p1205 :rule cong :premises (@p898 @p1204) :args (@t678))
% 48.60/48.82  (step @p1206 :rule trans :premises (@p1205 @p1203))
% 48.60/48.82  (step @p1207 :rule cong :premises (@p898 @p898 @p1206 @p1202) :args (@t679))
% 48.60/48.82  (step @p1208 :rule trans :premises (@p1162 @p1207))
% 48.60/48.82  (step @p1226 :rule cong :premises (@p1208) :args (@t629))
% 48.60/48.82  (step @p1211 :rule symm :premises (@p1183))
% 48.60/48.82  (step @p1212 :rule symm :premises (@p934))
% 48.60/48.82  (step @p1213 :rule cong :premises (@p898 @p1212) :args (@t682))
% 48.60/48.82  (step @p1214 :rule trans :premises (@p1213 @p1211))
% 48.60/48.82  (step @p1215 :rule cong :premises (@p898 @p898 @p1214 @p1202) :args (@t683))
% 48.60/48.82  (step @p1216 :rule trans :premises (@p1163 @p1215))
% 48.60/48.82  (step @p1227 :rule cong :premises (@p1216) :args (@t631))
% 48.60/48.82  (step @p1228 :rule and_intro :premises (@p1435 @p1227 @p1226))
% 48.60/48.82  (step @p1229 :rule modus_ponens :premises (@p1228 @p1222))
% 48.60/48.82  (step-pop @p1444 :rule scope :premises (@p1229))
% 48.60/48.82  (step-pop @p1445 :rule scope :premises (@p1444))
% 48.60/48.82  (step-pop @p1446 :rule scope :premises (@p1445))
% 48.60/48.82  (step-pop @p1447 :rule scope :premises (@p1446))
% 48.60/48.82  (step-pop @p1448 :rule scope :premises (@p1447))
% 48.60/48.82  (step-pop @p1449 :rule scope :premises (@p1448))
% 48.60/48.82  (step-pop @p1450 :rule scope :premises (@p1449))
% 48.60/48.82  (step @p1230 :rule process_scope :premises (@p1450) :args (@t677))
% 48.60/48.82  (step @p1238 :rule implies_elim :premises (@p1230))
% 48.60/48.82  (step @p1239 :rule cnf_and_neg :args (@t688))
% 48.60/48.82  (step @p1240 :rule resolution :premises (@p1239 @p1238) :args (true @t688))
% 48.60/48.82  (step @p1241 :rule eq_resolve :premises (@p1240 @p1190))
% 48.60/48.82  (step @p1242 :rule chain_m_resolution :premises (@p1241 @p1183 @p1178 @p934 @p758 @p1165 @p1163 @p1162) :args (@t677 (@list false false false false true false false) (@list @t673 @t668 @t600 @t575 @t632 @t684 @t680)))
% 48.60/48.82  (step @p1243 :rule cnf_or_pos :args (@t665))
% 48.60/48.82  (step @p1244 :rule reordering :premises (@p1243) :args ((or @t656 @t664 (not @t665))))
% 48.60/48.82  (step @p1245 :rule chain_m_resolution :premises (@p1244 @p1242 @p1161) :args (@t664 @t515 (@list @t656 @t665)))
% 48.60/48.82  (step @p1246 :rule bool-double-not-elim :args (@t663))
% 48.60/48.82  (step @p1247 :rule refl :args (@t636))
% 48.60/48.82  (step @p1248 :rule refl :args (@t689))
% 48.60/48.82  (step @p1249 :rule refl :args (@t690))
% 48.60/48.82  (step @p1250 :rule nary_cong :premises (@p1249 @p1248 @p1247 @p1246) :args ((or @t690 @t689 @t636 (not @t664))))
% 48.60/48.82  (assume-push @p1451 @t664)
% 48.60/48.82  (assume-push @p1452 @t328)
% 48.60/48.82  (assume-push @p1453 @t311)
% 48.60/48.82  (assume-push @p1454 @t635)
% 48.60/48.82  (step @p1255 :rule arith-elim-lt :args (@t634 1))
% 48.60/48.82  (step @p1256 :rule symm :premises (@p1255))
% 48.60/48.82  (assume-push @p1455 @t635)
% 48.60/48.82  (step @p853 :rule evaluate :args (@t586))
% 48.60/48.82  (step @p1258 :rule evaluate :args ((>= 0 -1)))
% 48.60/48.82  (step @p1259 :rule evaluate :args ((+ -1 0 0 0)))
% 48.60/48.82  (step @p856 :rule evaluate :args (@t589))
% 48.60/48.82  (step @p618 :rule evaluate :args (@t506))
% 48.60/48.82  (step @p1260 :rule nary_cong :premises (@p618 @p480 @p856 @p480) :args (@t691))
% 48.60/48.82  (step @p1261 :rule trans :premises (@p1260 @p1259))
% 48.60/48.82  (step @p1262 :rule arith_poly_norm :args ((= (+ 0 @t307 @t306 @t313 @t309 @t329 @t302 0) 0)))
% 48.60/48.82  (step @p622 :rule arith_poly_norm :args (@t509))
% 48.60/48.82  (step @p860 :rule refl :args (@t302))
% 48.60/48.82  (step @p862 :rule refl :args (@t329))
% 48.60/48.82  (step @p1263 :rule refl :args (@t309))
% 48.60/48.82  (step @p1264 :rule refl :args (@t313))
% 48.60/48.82  (step @p1265 :rule refl :args (@t307))
% 48.60/48.82  (step @p1266 :rule arith_poly_norm :args ((= @t692 0)))
% 48.60/48.82  (step @p1267 :rule nary_cong :premises (@p1266 @p1265 @p100 @p1264 @p1263 @p862 @p860 @p622) :args (@t693))
% 48.60/48.82  (step @p1268 :rule trans :premises (@p1267 @p1262))
% 48.60/48.82  (step @p1269 :rule arith_poly_norm :args ((= @t695 @t693)))
% 48.60/48.82  (step @p1270 :rule trans :premises (@p1269 @p1268))
% 48.60/48.82  (step @p1271 :rule cong :premises (@p1270 @p1261) :args (@t696))
% 48.60/48.82  (step @p1272 :rule trans :premises (@p1271 @p1258))
% 48.60/48.82  (step @p1273 :rule cong :premises (@p1272) :args ((not @t696)))
% 48.60/48.82  (step @p1274 :rule trans :premises (@p1273 @p853))
% 48.60/48.82  (step @p1275 :rule arith-elim-lt :args (@t695 @t691))
% 48.60/48.82  (step @p1276 :rule trans :premises (@p1275 @p1274))
% 48.60/48.82  (step @p1277 :rule arith-elim-lt :args (@t658 0))
% 48.60/48.82  (step @p1278 :rule symm :premises (@p1277))
% 48.60/48.82  (step @p1279 :rule eq_resolve :premises (@p1451 @p1278))
% 48.60/48.82  (step @p1280 :rule arith_mult_neg :args (-1 @t328))
% 48.60/48.82  (step @p635 :rule evaluate :args (@t513))
% 48.60/48.82  (step @p636 :rule true_elim :premises (@p635))
% 48.60/48.82  (step @p1281 :rule and_intro :premises (@p636 @p1452))
% 48.60/48.82  (step @p1282 :rule modus_ponens :premises (@p1281 @p1280))
% 48.60/48.82  (step @p1283 :rule arith_poly_norm :args ((= (* 1 (- @t694 0)) (* 1 @t312))))
% 48.60/48.82  (step @p1284 :rule arith_poly_norm_rel :premises (@p1283) :args ((= (= @t694 0) @t311)))
% 48.60/48.82  (step @p1285 :rule symm :premises (@p1284))
% 48.60/48.82  (step @p1286 :rule eq_resolve :premises (@p117 @p1285))
% 48.60/48.82  (step @p1287 :rule arith_mult_neg :args (-1 @t635))
% 48.60/48.82  (step @p1288 :rule and_intro :premises (@p636 @p1454))
% 48.60/48.82  (step @p1289 :rule modus_ponens :premises (@p1288 @p1287))
% 48.60/48.82  (step @p1290 :rule arith_sum_ub :premises (@p1289 @p1286 @p1282 @p1279))
% 48.60/48.82  (step @p1291 false :rule eq_resolve :premises (@p1290 @p1276))
% 48.60/48.82  (step-pop @p1456 :rule scope :premises (@p1291))
% 48.60/48.82  (step @p1292 :rule process_scope :premises (@p1456) :args (false))
% 48.60/48.82  (step @p1294 :rule eq_resolve :premises (@p1292 @p1256))
% 48.60/48.82  (step @p1295 :rule eq_resolve :premises (@p1294 @p1255))
% 48.60/48.82  (step @p1296 false :rule contra :premises (@p1454 @p1295))
% 48.60/48.82  (step-pop @p1457 :rule scope :premises (@p1296))
% 48.60/48.82  (step-pop @p1458 :rule scope :premises (@p1457))
% 48.60/48.82  (step-pop @p1459 :rule scope :premises (@p1458))
% 48.60/48.82  (step-pop @p1460 :rule scope :premises (@p1459))
% 48.60/48.82  (step @p1297 :rule process_scope :premises (@p1460) :args (false))
% 48.60/48.82  (assume-push @p1461 @t311)
% 48.60/48.82  (assume-push @p1462 @t328)
% 48.60/48.82  (assume-push @p1463 @t635)
% 48.60/48.82  (assume-push @p1464 @t664)
% 48.60/48.82  (step @p1306 :rule and_intro :premises (@p1464 @p1462 @p117 @p1463))
% 48.60/48.82  (step-pop @p1465 :rule scope :premises (@p1306))
% 48.60/48.82  (step-pop @p1466 :rule scope :premises (@p1465))
% 48.60/48.82  (step-pop @p1467 :rule scope :premises (@p1466))
% 48.60/48.82  (step-pop @p1468 :rule scope :premises (@p1467))
% 48.60/48.82  (step @p1307 :rule process_scope :premises (@p1468) :args (@t697))
% 48.60/48.82  (step @p1312 :rule implies_elim :premises (@p1307))
% 48.60/48.82  (step @p1313 :rule resolution :premises (@p1312 @p1297) :args (true @t697))
% 48.60/48.82  (step @p1314 :rule not_and :premises (@p1313))
% 48.60/48.82  (step @p1315 :rule eq_resolve :premises (@p1314 @p1250))
% 48.60/48.82  (step @p1316 false :rule chain_m_resolution :premises (@p1315 @p1245 @p1136 @p661 @p117) :args (false (@list true false false false) (@list @t663 @t635 @t328 @t311)))
% 48.60/48.82  )
% 48.60/48.82  % SZS output end Proof
% 48.60/48.82  % cvc5 exiting
%------------------------------------------------------------------------------