TSTP Solution File: MGT036-2 by Z3---4.8.9.0

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Z3---4.8.9.0
% Problem  : MGT036-2 : TPTP v8.1.0. Released v2.4.0.
% Transfm  : none
% Format   : tptp
% Command  : z3_tptp -proof -model -t:%d -file:%s

% Computer : n001.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 : Sun Sep 18 05:22:04 EDT 2022

% Result   : Unsatisfiable 0.18s 0.38s
% Output   : Proof 0.18s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :    9
%            Number of leaves      :   62
% Syntax   : Number of formulae    :  124 (  26 unt;  13 typ;   0 def)
%            Number of atoms       :  813 (   0 equ)
%            Maximal formula atoms :   20 (   7 avg)
%            Number of connectives : 1292 ( 626   ~; 599   |;   0   &)
%                                         (  67 <=>;   0  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   13 (   7 avg)
%            Maximal term depth    :    2 (   1 avg)
%            Number of FOOLs       :   36 (  36 fml;   0 var)
%            Number of types       :    2 (   0 usr)
%            Number of type conns  :   17 (   8   >;   9   *;   0   +;   0  <<)
%            Number of predicates  :   11 (  10 usr;   1 prp; 0-4 aty)
%            Number of functors    :    7 (   7 usr;   5 con; 0-2 aty)
%            Number of variables   :  412 ( 372   !;   0   ?; 412   :)

% Comments : 
%------------------------------------------------------------------------------
tff(greater_or_equal_type,type,
    greater_or_equal: ( $i * $i ) > $o ).

tff(zero_type,type,
    zero: $i ).

tff(growth_rate_type,type,
    growth_rate: ( $i * $i ) > $i ).

tff(sk2_type,type,
    sk2: $i ).

tff(first_movers_type,type,
    first_movers: $i ).

tff(subpopulations_type,type,
    subpopulations: ( $i * $i * $i * $i ) > $o ).

tff(sk1_type,type,
    sk1: $i ).

tff(efficient_producers_type,type,
    efficient_producers: $i ).

tff(environment_type,type,
    environment: $i > $o ).

tff(outcompetes_type,type,
    outcompetes: ( $i * $i * $i ) > $o ).

tff(greater_type,type,
    greater: ( $i * $i ) > $o ).

tff(in_environment_type,type,
    in_environment: ( $i * $i ) > $o ).

tff(resilience_type,type,
    resilience: $i > $i ).

tff(1,plain,
    ( subpopulations(first_movers,efficient_producers,sk1,sk2)
  <=> subpopulations(first_movers,efficient_producers,sk1,sk2) ),
    inference(rewrite,[status(thm)],]) ).

tff(2,axiom,
    subpopulations(first_movers,efficient_producers,sk1,sk2),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',prove_t5_13) ).

tff(3,plain,
    subpopulations(first_movers,efficient_producers,sk1,sk2),
    inference(modus_ponens,[status(thm)],[2,1]) ).

tff(4,plain,
    ( environment(sk1)
  <=> environment(sk1) ),
    inference(rewrite,[status(thm)],]) ).

tff(5,axiom,
    environment(sk1),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',prove_t5_12) ).

tff(6,plain,
    environment(sk1),
    inference(modus_ponens,[status(thm)],[5,4]) ).

tff(7,plain,
    ^ [B: $i,D: $i,A: $i,C: $i] :
      refl(
        ( ( subpopulations(C,B,A,D)
          | ~ subpopulations(B,C,A,D)
          | ~ environment(A) )
      <=> ( subpopulations(C,B,A,D)
          | ~ subpopulations(B,C,A,D)
          | ~ environment(A) ) )),
    inference(bind,[status(th)],]) ).

tff(8,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( subpopulations(C,B,A,D)
        | ~ subpopulations(B,C,A,D)
        | ~ environment(A) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( subpopulations(C,B,A,D)
        | ~ subpopulations(B,C,A,D)
        | ~ environment(A) ) ),
    inference(quant_intro,[status(thm)],[7]) ).

tff(9,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( subpopulations(C,B,A,D)
        | ~ subpopulations(B,C,A,D)
        | ~ environment(A) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( subpopulations(C,B,A,D)
        | ~ subpopulations(B,C,A,D)
        | ~ environment(A) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(10,plain,
    ^ [B: $i,D: $i,A: $i,C: $i] :
      rewrite(
        ( ( ~ environment(A)
          | ~ subpopulations(B,C,A,D)
          | subpopulations(C,B,A,D) )
      <=> ( subpopulations(C,B,A,D)
          | ~ subpopulations(B,C,A,D)
          | ~ environment(A) ) )),
    inference(bind,[status(th)],]) ).

tff(11,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ subpopulations(B,C,A,D)
        | subpopulations(C,B,A,D) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( subpopulations(C,B,A,D)
        | ~ subpopulations(B,C,A,D)
        | ~ environment(A) ) ),
    inference(quant_intro,[status(thm)],[10]) ).

tff(12,axiom,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ environment(A)
      | ~ subpopulations(B,C,A,D)
      | subpopulations(C,B,A,D) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',mp_symmetry_of_subpopulations_1) ).

tff(13,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( subpopulations(C,B,A,D)
      | ~ subpopulations(B,C,A,D)
      | ~ environment(A) ),
    inference(modus_ponens,[status(thm)],[12,11]) ).

tff(14,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( subpopulations(C,B,A,D)
      | ~ subpopulations(B,C,A,D)
      | ~ environment(A) ),
    inference(modus_ponens,[status(thm)],[13,9]) ).

tff(15,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( subpopulations(C,B,A,D)
      | ~ subpopulations(B,C,A,D)
      | ~ environment(A) ),
    inference(skolemize,[status(sab)],[14]) ).

tff(16,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( subpopulations(C,B,A,D)
      | ~ subpopulations(B,C,A,D)
      | ~ environment(A) ),
    inference(modus_ponens,[status(thm)],[15,8]) ).

tff(17,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( subpopulations(C,B,A,D)
            | ~ subpopulations(B,C,A,D)
            | ~ environment(A) )
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | subpopulations(efficient_producers,first_movers,sk1,sk2) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( subpopulations(C,B,A,D)
            | ~ subpopulations(B,C,A,D)
            | ~ environment(A) )
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | subpopulations(efficient_producers,first_movers,sk1,sk2) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(18,plain,
    ( ( subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1) )
  <=> ( ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | subpopulations(efficient_producers,first_movers,sk1,sk2) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(19,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( subpopulations(C,B,A,D)
            | ~ subpopulations(B,C,A,D)
            | ~ environment(A) )
      | subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( subpopulations(C,B,A,D)
            | ~ subpopulations(B,C,A,D)
            | ~ environment(A) )
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | subpopulations(efficient_producers,first_movers,sk1,sk2) ) ),
    inference(monotonicity,[status(thm)],[18]) ).

tff(20,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( subpopulations(C,B,A,D)
            | ~ subpopulations(B,C,A,D)
            | ~ environment(A) )
      | subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( subpopulations(C,B,A,D)
            | ~ subpopulations(B,C,A,D)
            | ~ environment(A) )
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | subpopulations(efficient_producers,first_movers,sk1,sk2) ) ),
    inference(transitivity,[status(thm)],[19,17]) ).

tff(21,plain,
    ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
          ( subpopulations(C,B,A,D)
          | ~ subpopulations(B,C,A,D)
          | ~ environment(A) )
    | subpopulations(efficient_producers,first_movers,sk1,sk2)
    | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
    | ~ environment(sk1) ),
    inference(quant_inst,[status(thm)],]) ).

tff(22,plain,
    ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
          ( subpopulations(C,B,A,D)
          | ~ subpopulations(B,C,A,D)
          | ~ environment(A) )
    | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
    | ~ environment(sk1)
    | subpopulations(efficient_producers,first_movers,sk1,sk2) ),
    inference(modus_ponens,[status(thm)],[21,20]) ).

tff(23,plain,
    subpopulations(efficient_producers,first_movers,sk1,sk2),
    inference(unit_resolution,[status(thm)],[22,16,6,3]) ).

tff(24,plain,
    ( outcompetes(first_movers,efficient_producers,sk2)
  <=> outcompetes(first_movers,efficient_producers,sk2) ),
    inference(rewrite,[status(thm)],]) ).

tff(25,axiom,
    outcompetes(first_movers,efficient_producers,sk2),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',prove_t5_14) ).

tff(26,plain,
    outcompetes(first_movers,efficient_producers,sk2),
    inference(modus_ponens,[status(thm)],[25,24]) ).

tff(27,plain,
    ^ [B: $i,D: $i,A: $i,C: $i] :
      refl(
        ( ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater_or_equal(growth_rate(C,D),zero) )
      <=> ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater_or_equal(growth_rate(C,D),zero) ) )),
    inference(bind,[status(th)],]) ).

tff(28,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater_or_equal(growth_rate(C,D),zero) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater_or_equal(growth_rate(C,D),zero) ) ),
    inference(quant_intro,[status(thm)],[27]) ).

tff(29,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater_or_equal(growth_rate(C,D),zero) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater_or_equal(growth_rate(C,D),zero) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(30,plain,
    ^ [B: $i,D: $i,A: $i,C: $i] :
      trans(
        monotonicity(
          rewrite(
            ( ( ~ environment(A)
              | ~ subpopulations(B,C,A,D)
              | ~ outcompetes(C,B,D) )
          <=> ( ~ subpopulations(B,C,A,D)
              | ~ environment(A)
              | ~ outcompetes(C,B,D) ) )),
          ( ( ~ environment(A)
            | ~ subpopulations(B,C,A,D)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) )
        <=> ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) ) )),
        rewrite(
          ( ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) )
        <=> ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) ) )),
        ( ( ~ environment(A)
          | ~ subpopulations(B,C,A,D)
          | ~ outcompetes(C,B,D)
          | greater_or_equal(growth_rate(C,D),zero) )
      <=> ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater_or_equal(growth_rate(C,D),zero) ) )),
    inference(bind,[status(th)],]) ).

tff(31,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ subpopulations(B,C,A,D)
        | ~ outcompetes(C,B,D)
        | greater_or_equal(growth_rate(C,D),zero) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater_or_equal(growth_rate(C,D),zero) ) ),
    inference(quant_intro,[status(thm)],[30]) ).

tff(32,axiom,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ environment(A)
      | ~ subpopulations(B,C,A,D)
      | ~ outcompetes(C,B,D)
      | greater_or_equal(growth_rate(C,D),zero) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',d2_8) ).

tff(33,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ subpopulations(B,C,A,D)
      | ~ environment(A)
      | ~ outcompetes(C,B,D)
      | greater_or_equal(growth_rate(C,D),zero) ),
    inference(modus_ponens,[status(thm)],[32,31]) ).

tff(34,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ subpopulations(B,C,A,D)
      | ~ environment(A)
      | ~ outcompetes(C,B,D)
      | greater_or_equal(growth_rate(C,D),zero) ),
    inference(modus_ponens,[status(thm)],[33,29]) ).

tff(35,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ subpopulations(B,C,A,D)
      | ~ environment(A)
      | ~ outcompetes(C,B,D)
      | greater_or_equal(growth_rate(C,D),zero) ),
    inference(skolemize,[status(sab)],[34]) ).

tff(36,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ subpopulations(B,C,A,D)
      | ~ environment(A)
      | ~ outcompetes(C,B,D)
      | greater_or_equal(growth_rate(C,D),zero) ),
    inference(modus_ponens,[status(thm)],[35,28]) ).

tff(37,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) )
      | ~ environment(sk1)
      | greater_or_equal(growth_rate(first_movers,sk2),zero)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) )
      | ~ environment(sk1)
      | greater_or_equal(growth_rate(first_movers,sk2),zero)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(38,plain,
    ( ( ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ environment(sk1)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater_or_equal(growth_rate(first_movers,sk2),zero) )
  <=> ( ~ environment(sk1)
      | greater_or_equal(growth_rate(first_movers,sk2),zero)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(39,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) )
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ environment(sk1)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater_or_equal(growth_rate(first_movers,sk2),zero) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) )
      | ~ environment(sk1)
      | greater_or_equal(growth_rate(first_movers,sk2),zero)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2) ) ),
    inference(monotonicity,[status(thm)],[38]) ).

tff(40,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) )
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ environment(sk1)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater_or_equal(growth_rate(first_movers,sk2),zero) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater_or_equal(growth_rate(C,D),zero) )
      | ~ environment(sk1)
      | greater_or_equal(growth_rate(first_movers,sk2),zero)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2) ) ),
    inference(transitivity,[status(thm)],[39,37]) ).

tff(41,plain,
    ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
          ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater_or_equal(growth_rate(C,D),zero) )
    | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
    | ~ environment(sk1)
    | ~ outcompetes(first_movers,efficient_producers,sk2)
    | greater_or_equal(growth_rate(first_movers,sk2),zero) ),
    inference(quant_inst,[status(thm)],]) ).

tff(42,plain,
    ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
          ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater_or_equal(growth_rate(C,D),zero) )
    | ~ environment(sk1)
    | greater_or_equal(growth_rate(first_movers,sk2),zero)
    | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
    | ~ outcompetes(first_movers,efficient_producers,sk2) ),
    inference(modus_ponens,[status(thm)],[41,40]) ).

tff(43,plain,
    greater_or_equal(growth_rate(first_movers,sk2),zero),
    inference(unit_resolution,[status(thm)],[42,36,6,26,23]) ).

tff(44,plain,
    ^ [B: $i,D: $i,A: $i,C: $i] :
      refl(
        ( ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater(zero,growth_rate(B,D)) )
      <=> ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater(zero,growth_rate(B,D)) ) )),
    inference(bind,[status(th)],]) ).

tff(45,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater(zero,growth_rate(B,D)) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater(zero,growth_rate(B,D)) ) ),
    inference(quant_intro,[status(thm)],[44]) ).

tff(46,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater(zero,growth_rate(B,D)) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater(zero,growth_rate(B,D)) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(47,plain,
    ^ [B: $i,D: $i,A: $i,C: $i] :
      trans(
        monotonicity(
          rewrite(
            ( ( ~ environment(A)
              | ~ subpopulations(B,C,A,D)
              | ~ outcompetes(C,B,D) )
          <=> ( ~ subpopulations(B,C,A,D)
              | ~ environment(A)
              | ~ outcompetes(C,B,D) ) )),
          ( ( ~ environment(A)
            | ~ subpopulations(B,C,A,D)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) )
        <=> ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) ) )),
        rewrite(
          ( ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) )
        <=> ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) ) )),
        ( ( ~ environment(A)
          | ~ subpopulations(B,C,A,D)
          | ~ outcompetes(C,B,D)
          | greater(zero,growth_rate(B,D)) )
      <=> ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater(zero,growth_rate(B,D)) ) )),
    inference(bind,[status(th)],]) ).

tff(48,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ subpopulations(B,C,A,D)
        | ~ outcompetes(C,B,D)
        | greater(zero,growth_rate(B,D)) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ subpopulations(B,C,A,D)
        | ~ environment(A)
        | ~ outcompetes(C,B,D)
        | greater(zero,growth_rate(B,D)) ) ),
    inference(quant_intro,[status(thm)],[47]) ).

tff(49,axiom,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ environment(A)
      | ~ subpopulations(B,C,A,D)
      | ~ outcompetes(C,B,D)
      | greater(zero,growth_rate(B,D)) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',d2_9) ).

tff(50,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ subpopulations(B,C,A,D)
      | ~ environment(A)
      | ~ outcompetes(C,B,D)
      | greater(zero,growth_rate(B,D)) ),
    inference(modus_ponens,[status(thm)],[49,48]) ).

tff(51,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ subpopulations(B,C,A,D)
      | ~ environment(A)
      | ~ outcompetes(C,B,D)
      | greater(zero,growth_rate(B,D)) ),
    inference(modus_ponens,[status(thm)],[50,46]) ).

tff(52,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ subpopulations(B,C,A,D)
      | ~ environment(A)
      | ~ outcompetes(C,B,D)
      | greater(zero,growth_rate(B,D)) ),
    inference(skolemize,[status(sab)],[51]) ).

tff(53,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ subpopulations(B,C,A,D)
      | ~ environment(A)
      | ~ outcompetes(C,B,D)
      | greater(zero,growth_rate(B,D)) ),
    inference(modus_ponens,[status(thm)],[52,45]) ).

tff(54,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) )
      | ~ environment(sk1)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater(zero,growth_rate(efficient_producers,sk2)) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) )
      | ~ environment(sk1)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater(zero,growth_rate(efficient_producers,sk2)) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(55,plain,
    ( ( ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ environment(sk1)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater(zero,growth_rate(efficient_producers,sk2)) )
  <=> ( ~ environment(sk1)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater(zero,growth_rate(efficient_producers,sk2)) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(56,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) )
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ environment(sk1)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater(zero,growth_rate(efficient_producers,sk2)) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) )
      | ~ environment(sk1)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater(zero,growth_rate(efficient_producers,sk2)) ) ),
    inference(monotonicity,[status(thm)],[55]) ).

tff(57,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) )
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ environment(sk1)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater(zero,growth_rate(efficient_producers,sk2)) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ subpopulations(B,C,A,D)
            | ~ environment(A)
            | ~ outcompetes(C,B,D)
            | greater(zero,growth_rate(B,D)) )
      | ~ environment(sk1)
      | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
      | ~ outcompetes(first_movers,efficient_producers,sk2)
      | greater(zero,growth_rate(efficient_producers,sk2)) ) ),
    inference(transitivity,[status(thm)],[56,54]) ).

tff(58,plain,
    ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
          ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater(zero,growth_rate(B,D)) )
    | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
    | ~ environment(sk1)
    | ~ outcompetes(first_movers,efficient_producers,sk2)
    | greater(zero,growth_rate(efficient_producers,sk2)) ),
    inference(quant_inst,[status(thm)],]) ).

tff(59,plain,
    ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
          ( ~ subpopulations(B,C,A,D)
          | ~ environment(A)
          | ~ outcompetes(C,B,D)
          | greater(zero,growth_rate(B,D)) )
    | ~ environment(sk1)
    | ~ subpopulations(efficient_producers,first_movers,sk1,sk2)
    | ~ outcompetes(first_movers,efficient_producers,sk2)
    | greater(zero,growth_rate(efficient_producers,sk2)) ),
    inference(modus_ponens,[status(thm)],[58,57]) ).

tff(60,plain,
    greater(zero,growth_rate(efficient_producers,sk2)),
    inference(unit_resolution,[status(thm)],[59,53,6,26,23]) ).

tff(61,plain,
    ^ [B: $i,A: $i] :
      refl(
        ( ( in_environment(A,B)
          | ~ subpopulations(first_movers,efficient_producers,A,B)
          | ~ environment(A) )
      <=> ( in_environment(A,B)
          | ~ subpopulations(first_movers,efficient_producers,A,B)
          | ~ environment(A) ) )),
    inference(bind,[status(th)],]) ).

tff(62,plain,
    ( ! [B: $i,A: $i] :
        ( in_environment(A,B)
        | ~ subpopulations(first_movers,efficient_producers,A,B)
        | ~ environment(A) )
  <=> ! [B: $i,A: $i] :
        ( in_environment(A,B)
        | ~ subpopulations(first_movers,efficient_producers,A,B)
        | ~ environment(A) ) ),
    inference(quant_intro,[status(thm)],[61]) ).

tff(63,plain,
    ( ! [B: $i,A: $i] :
        ( in_environment(A,B)
        | ~ subpopulations(first_movers,efficient_producers,A,B)
        | ~ environment(A) )
  <=> ! [B: $i,A: $i] :
        ( in_environment(A,B)
        | ~ subpopulations(first_movers,efficient_producers,A,B)
        | ~ environment(A) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(64,plain,
    ^ [B: $i,A: $i] :
      rewrite(
        ( ( ~ environment(A)
          | ~ subpopulations(first_movers,efficient_producers,A,B)
          | in_environment(A,B) )
      <=> ( in_environment(A,B)
          | ~ subpopulations(first_movers,efficient_producers,A,B)
          | ~ environment(A) ) )),
    inference(bind,[status(th)],]) ).

tff(65,plain,
    ( ! [B: $i,A: $i] :
        ( ~ environment(A)
        | ~ subpopulations(first_movers,efficient_producers,A,B)
        | in_environment(A,B) )
  <=> ! [B: $i,A: $i] :
        ( in_environment(A,B)
        | ~ subpopulations(first_movers,efficient_producers,A,B)
        | ~ environment(A) ) ),
    inference(quant_intro,[status(thm)],[64]) ).

tff(66,axiom,
    ! [B: $i,A: $i] :
      ( ~ environment(A)
      | ~ subpopulations(first_movers,efficient_producers,A,B)
      | in_environment(A,B) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',mp_time_point_occur_2) ).

tff(67,plain,
    ! [B: $i,A: $i] :
      ( in_environment(A,B)
      | ~ subpopulations(first_movers,efficient_producers,A,B)
      | ~ environment(A) ),
    inference(modus_ponens,[status(thm)],[66,65]) ).

tff(68,plain,
    ! [B: $i,A: $i] :
      ( in_environment(A,B)
      | ~ subpopulations(first_movers,efficient_producers,A,B)
      | ~ environment(A) ),
    inference(modus_ponens,[status(thm)],[67,63]) ).

tff(69,plain,
    ! [B: $i,A: $i] :
      ( in_environment(A,B)
      | ~ subpopulations(first_movers,efficient_producers,A,B)
      | ~ environment(A) ),
    inference(skolemize,[status(sab)],[68]) ).

tff(70,plain,
    ! [B: $i,A: $i] :
      ( in_environment(A,B)
      | ~ subpopulations(first_movers,efficient_producers,A,B)
      | ~ environment(A) ),
    inference(modus_ponens,[status(thm)],[69,62]) ).

tff(71,plain,
    ( ( ~ ! [B: $i,A: $i] :
            ( in_environment(A,B)
            | ~ subpopulations(first_movers,efficient_producers,A,B)
            | ~ environment(A) )
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | in_environment(sk1,sk2) )
  <=> ( ~ ! [B: $i,A: $i] :
            ( in_environment(A,B)
            | ~ subpopulations(first_movers,efficient_producers,A,B)
            | ~ environment(A) )
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | in_environment(sk1,sk2) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(72,plain,
    ( ( in_environment(sk1,sk2)
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1) )
  <=> ( ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | in_environment(sk1,sk2) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(73,plain,
    ( ( ~ ! [B: $i,A: $i] :
            ( in_environment(A,B)
            | ~ subpopulations(first_movers,efficient_producers,A,B)
            | ~ environment(A) )
      | in_environment(sk1,sk2)
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1) )
  <=> ( ~ ! [B: $i,A: $i] :
            ( in_environment(A,B)
            | ~ subpopulations(first_movers,efficient_producers,A,B)
            | ~ environment(A) )
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | in_environment(sk1,sk2) ) ),
    inference(monotonicity,[status(thm)],[72]) ).

tff(74,plain,
    ( ( ~ ! [B: $i,A: $i] :
            ( in_environment(A,B)
            | ~ subpopulations(first_movers,efficient_producers,A,B)
            | ~ environment(A) )
      | in_environment(sk1,sk2)
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1) )
  <=> ( ~ ! [B: $i,A: $i] :
            ( in_environment(A,B)
            | ~ subpopulations(first_movers,efficient_producers,A,B)
            | ~ environment(A) )
      | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
      | ~ environment(sk1)
      | in_environment(sk1,sk2) ) ),
    inference(transitivity,[status(thm)],[73,71]) ).

tff(75,plain,
    ( ~ ! [B: $i,A: $i] :
          ( in_environment(A,B)
          | ~ subpopulations(first_movers,efficient_producers,A,B)
          | ~ environment(A) )
    | in_environment(sk1,sk2)
    | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
    | ~ environment(sk1) ),
    inference(quant_inst,[status(thm)],]) ).

tff(76,plain,
    ( ~ ! [B: $i,A: $i] :
          ( in_environment(A,B)
          | ~ subpopulations(first_movers,efficient_producers,A,B)
          | ~ environment(A) )
    | ~ subpopulations(first_movers,efficient_producers,sk1,sk2)
    | ~ environment(sk1)
    | in_environment(sk1,sk2) ),
    inference(modus_ponens,[status(thm)],[75,74]) ).

tff(77,plain,
    in_environment(sk1,sk2),
    inference(unit_resolution,[status(thm)],[76,70,6,3]) ).

tff(78,plain,
    ^ [B: $i,D: $i,A: $i,C: $i] :
      refl(
        ( ( ~ environment(A)
          | ~ greater(zero,growth_rate(D,B))
          | ~ greater(resilience(D),resilience(C))
          | greater(zero,growth_rate(C,B))
          | ~ in_environment(A,B) )
      <=> ( ~ environment(A)
          | ~ greater(zero,growth_rate(D,B))
          | ~ greater(resilience(D),resilience(C))
          | greater(zero,growth_rate(C,B))
          | ~ in_environment(A,B) ) )),
    inference(bind,[status(th)],]) ).

tff(79,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ greater(zero,growth_rate(D,B))
        | ~ greater(resilience(D),resilience(C))
        | greater(zero,growth_rate(C,B))
        | ~ in_environment(A,B) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ greater(zero,growth_rate(D,B))
        | ~ greater(resilience(D),resilience(C))
        | greater(zero,growth_rate(C,B))
        | ~ in_environment(A,B) ) ),
    inference(quant_intro,[status(thm)],[78]) ).

tff(80,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ greater(zero,growth_rate(D,B))
        | ~ greater(resilience(D),resilience(C))
        | greater(zero,growth_rate(C,B))
        | ~ in_environment(A,B) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ greater(zero,growth_rate(D,B))
        | ~ greater(resilience(D),resilience(C))
        | greater(zero,growth_rate(C,B))
        | ~ in_environment(A,B) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(81,plain,
    ^ [B: $i,D: $i,A: $i,C: $i] :
      trans(
        monotonicity(
          trans(
            monotonicity(
              rewrite(
                ( ( ~ environment(A)
                  | ~ in_environment(A,B)
                  | greater(zero,growth_rate(C,B)) )
              <=> ( ~ environment(A)
                  | greater(zero,growth_rate(C,B))
                  | ~ in_environment(A,B) ) )),
              ( ( ~ environment(A)
                | ~ in_environment(A,B)
                | greater(zero,growth_rate(C,B))
                | ~ greater(resilience(D),resilience(C)) )
            <=> ( ~ environment(A)
                | greater(zero,growth_rate(C,B))
                | ~ in_environment(A,B)
                | ~ greater(resilience(D),resilience(C)) ) )),
            rewrite(
              ( ( ~ environment(A)
                | greater(zero,growth_rate(C,B))
                | ~ in_environment(A,B)
                | ~ greater(resilience(D),resilience(C)) )
            <=> ( ~ environment(A)
                | ~ greater(resilience(D),resilience(C))
                | greater(zero,growth_rate(C,B))
                | ~ in_environment(A,B) ) )),
            ( ( ~ environment(A)
              | ~ in_environment(A,B)
              | greater(zero,growth_rate(C,B))
              | ~ greater(resilience(D),resilience(C)) )
          <=> ( ~ environment(A)
              | ~ greater(resilience(D),resilience(C))
              | greater(zero,growth_rate(C,B))
              | ~ in_environment(A,B) ) )),
          ( ( ~ environment(A)
            | ~ in_environment(A,B)
            | greater(zero,growth_rate(C,B))
            | ~ greater(resilience(D),resilience(C))
            | ~ greater(zero,growth_rate(D,B)) )
        <=> ( ~ environment(A)
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B)
            | ~ greater(zero,growth_rate(D,B)) ) )),
        rewrite(
          ( ( ~ environment(A)
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B)
            | ~ greater(zero,growth_rate(D,B)) )
        <=> ( ~ environment(A)
            | ~ greater(zero,growth_rate(D,B))
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B) ) )),
        ( ( ~ environment(A)
          | ~ in_environment(A,B)
          | greater(zero,growth_rate(C,B))
          | ~ greater(resilience(D),resilience(C))
          | ~ greater(zero,growth_rate(D,B)) )
      <=> ( ~ environment(A)
          | ~ greater(zero,growth_rate(D,B))
          | ~ greater(resilience(D),resilience(C))
          | greater(zero,growth_rate(C,B))
          | ~ in_environment(A,B) ) )),
    inference(bind,[status(th)],]) ).

tff(82,plain,
    ( ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ in_environment(A,B)
        | greater(zero,growth_rate(C,B))
        | ~ greater(resilience(D),resilience(C))
        | ~ greater(zero,growth_rate(D,B)) )
  <=> ! [B: $i,D: $i,A: $i,C: $i] :
        ( ~ environment(A)
        | ~ greater(zero,growth_rate(D,B))
        | ~ greater(resilience(D),resilience(C))
        | greater(zero,growth_rate(C,B))
        | ~ in_environment(A,B) ) ),
    inference(quant_intro,[status(thm)],[81]) ).

tff(83,axiom,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ environment(A)
      | ~ in_environment(A,B)
      | greater(zero,growth_rate(C,B))
      | ~ greater(resilience(D),resilience(C))
      | ~ greater(zero,growth_rate(D,B)) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',a13_11) ).

tff(84,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ environment(A)
      | ~ greater(zero,growth_rate(D,B))
      | ~ greater(resilience(D),resilience(C))
      | greater(zero,growth_rate(C,B))
      | ~ in_environment(A,B) ),
    inference(modus_ponens,[status(thm)],[83,82]) ).

tff(85,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ environment(A)
      | ~ greater(zero,growth_rate(D,B))
      | ~ greater(resilience(D),resilience(C))
      | greater(zero,growth_rate(C,B))
      | ~ in_environment(A,B) ),
    inference(modus_ponens,[status(thm)],[84,80]) ).

tff(86,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ environment(A)
      | ~ greater(zero,growth_rate(D,B))
      | ~ greater(resilience(D),resilience(C))
      | greater(zero,growth_rate(C,B))
      | ~ in_environment(A,B) ),
    inference(skolemize,[status(sab)],[85]) ).

tff(87,plain,
    ! [B: $i,D: $i,A: $i,C: $i] :
      ( ~ environment(A)
      | ~ greater(zero,growth_rate(D,B))
      | ~ greater(resilience(D),resilience(C))
      | greater(zero,growth_rate(C,B))
      | ~ in_environment(A,B) ),
    inference(modus_ponens,[status(thm)],[86,79]) ).

tff(88,plain,
    ( greater(resilience(efficient_producers),resilience(first_movers))
  <=> greater(resilience(efficient_producers),resilience(first_movers)) ),
    inference(rewrite,[status(thm)],]) ).

tff(89,axiom,
    greater(resilience(efficient_producers),resilience(first_movers)),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',a2_10) ).

tff(90,plain,
    greater(resilience(efficient_producers),resilience(first_movers)),
    inference(modus_ponens,[status(thm)],[89,88]) ).

tff(91,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ environment(A)
            | ~ greater(zero,growth_rate(D,B))
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B) )
      | ~ environment(sk1)
      | greater(zero,growth_rate(first_movers,sk2))
      | ~ greater(zero,growth_rate(efficient_producers,sk2))
      | ~ greater(resilience(efficient_producers),resilience(first_movers))
      | ~ in_environment(sk1,sk2) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ environment(A)
            | ~ greater(zero,growth_rate(D,B))
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B) )
      | ~ environment(sk1)
      | greater(zero,growth_rate(first_movers,sk2))
      | ~ greater(zero,growth_rate(efficient_producers,sk2))
      | ~ greater(resilience(efficient_producers),resilience(first_movers))
      | ~ in_environment(sk1,sk2) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(92,plain,
    ( ( ~ environment(sk1)
      | ~ greater(zero,growth_rate(efficient_producers,sk2))
      | ~ greater(resilience(efficient_producers),resilience(first_movers))
      | greater(zero,growth_rate(first_movers,sk2))
      | ~ in_environment(sk1,sk2) )
  <=> ( ~ environment(sk1)
      | greater(zero,growth_rate(first_movers,sk2))
      | ~ greater(zero,growth_rate(efficient_producers,sk2))
      | ~ greater(resilience(efficient_producers),resilience(first_movers))
      | ~ in_environment(sk1,sk2) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(93,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ environment(A)
            | ~ greater(zero,growth_rate(D,B))
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B) )
      | ~ environment(sk1)
      | ~ greater(zero,growth_rate(efficient_producers,sk2))
      | ~ greater(resilience(efficient_producers),resilience(first_movers))
      | greater(zero,growth_rate(first_movers,sk2))
      | ~ in_environment(sk1,sk2) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ environment(A)
            | ~ greater(zero,growth_rate(D,B))
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B) )
      | ~ environment(sk1)
      | greater(zero,growth_rate(first_movers,sk2))
      | ~ greater(zero,growth_rate(efficient_producers,sk2))
      | ~ greater(resilience(efficient_producers),resilience(first_movers))
      | ~ in_environment(sk1,sk2) ) ),
    inference(monotonicity,[status(thm)],[92]) ).

tff(94,plain,
    ( ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ environment(A)
            | ~ greater(zero,growth_rate(D,B))
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B) )
      | ~ environment(sk1)
      | ~ greater(zero,growth_rate(efficient_producers,sk2))
      | ~ greater(resilience(efficient_producers),resilience(first_movers))
      | greater(zero,growth_rate(first_movers,sk2))
      | ~ in_environment(sk1,sk2) )
  <=> ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
            ( ~ environment(A)
            | ~ greater(zero,growth_rate(D,B))
            | ~ greater(resilience(D),resilience(C))
            | greater(zero,growth_rate(C,B))
            | ~ in_environment(A,B) )
      | ~ environment(sk1)
      | greater(zero,growth_rate(first_movers,sk2))
      | ~ greater(zero,growth_rate(efficient_producers,sk2))
      | ~ greater(resilience(efficient_producers),resilience(first_movers))
      | ~ in_environment(sk1,sk2) ) ),
    inference(transitivity,[status(thm)],[93,91]) ).

tff(95,plain,
    ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
          ( ~ environment(A)
          | ~ greater(zero,growth_rate(D,B))
          | ~ greater(resilience(D),resilience(C))
          | greater(zero,growth_rate(C,B))
          | ~ in_environment(A,B) )
    | ~ environment(sk1)
    | ~ greater(zero,growth_rate(efficient_producers,sk2))
    | ~ greater(resilience(efficient_producers),resilience(first_movers))
    | greater(zero,growth_rate(first_movers,sk2))
    | ~ in_environment(sk1,sk2) ),
    inference(quant_inst,[status(thm)],]) ).

tff(96,plain,
    ( ~ ! [B: $i,D: $i,A: $i,C: $i] :
          ( ~ environment(A)
          | ~ greater(zero,growth_rate(D,B))
          | ~ greater(resilience(D),resilience(C))
          | greater(zero,growth_rate(C,B))
          | ~ in_environment(A,B) )
    | ~ environment(sk1)
    | greater(zero,growth_rate(first_movers,sk2))
    | ~ greater(zero,growth_rate(efficient_producers,sk2))
    | ~ greater(resilience(efficient_producers),resilience(first_movers))
    | ~ in_environment(sk1,sk2) ),
    inference(modus_ponens,[status(thm)],[95,94]) ).

tff(97,plain,
    greater(zero,growth_rate(first_movers,sk2)),
    inference(unit_resolution,[status(thm)],[96,90,87,6,77,60]) ).

tff(98,plain,
    ^ [B: $i,A: $i] :
      refl(
        ( ( ~ greater(zero,growth_rate(A,B))
          | ~ greater_or_equal(growth_rate(A,B),zero) )
      <=> ( ~ greater(zero,growth_rate(A,B))
          | ~ greater_or_equal(growth_rate(A,B),zero) ) )),
    inference(bind,[status(th)],]) ).

tff(99,plain,
    ( ! [B: $i,A: $i] :
        ( ~ greater(zero,growth_rate(A,B))
        | ~ greater_or_equal(growth_rate(A,B),zero) )
  <=> ! [B: $i,A: $i] :
        ( ~ greater(zero,growth_rate(A,B))
        | ~ greater_or_equal(growth_rate(A,B),zero) ) ),
    inference(quant_intro,[status(thm)],[98]) ).

tff(100,plain,
    ( ! [B: $i,A: $i] :
        ( ~ greater(zero,growth_rate(A,B))
        | ~ greater_or_equal(growth_rate(A,B),zero) )
  <=> ! [B: $i,A: $i] :
        ( ~ greater(zero,growth_rate(A,B))
        | ~ greater_or_equal(growth_rate(A,B),zero) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(101,plain,
    ^ [B: $i,A: $i] :
      rewrite(
        ( ( ~ greater_or_equal(growth_rate(A,B),zero)
          | ~ greater(zero,growth_rate(A,B)) )
      <=> ( ~ greater(zero,growth_rate(A,B))
          | ~ greater_or_equal(growth_rate(A,B),zero) ) )),
    inference(bind,[status(th)],]) ).

tff(102,plain,
    ( ! [B: $i,A: $i] :
        ( ~ greater_or_equal(growth_rate(A,B),zero)
        | ~ greater(zero,growth_rate(A,B)) )
  <=> ! [B: $i,A: $i] :
        ( ~ greater(zero,growth_rate(A,B))
        | ~ greater_or_equal(growth_rate(A,B),zero) ) ),
    inference(quant_intro,[status(thm)],[101]) ).

tff(103,axiom,
    ! [B: $i,A: $i] :
      ( ~ greater_or_equal(growth_rate(A,B),zero)
      | ~ greater(zero,growth_rate(A,B)) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',mp_growth_rate_relationships_5) ).

tff(104,plain,
    ! [B: $i,A: $i] :
      ( ~ greater(zero,growth_rate(A,B))
      | ~ greater_or_equal(growth_rate(A,B),zero) ),
    inference(modus_ponens,[status(thm)],[103,102]) ).

tff(105,plain,
    ! [B: $i,A: $i] :
      ( ~ greater(zero,growth_rate(A,B))
      | ~ greater_or_equal(growth_rate(A,B),zero) ),
    inference(modus_ponens,[status(thm)],[104,100]) ).

tff(106,plain,
    ! [B: $i,A: $i] :
      ( ~ greater(zero,growth_rate(A,B))
      | ~ greater_or_equal(growth_rate(A,B),zero) ),
    inference(skolemize,[status(sab)],[105]) ).

tff(107,plain,
    ! [B: $i,A: $i] :
      ( ~ greater(zero,growth_rate(A,B))
      | ~ greater_or_equal(growth_rate(A,B),zero) ),
    inference(modus_ponens,[status(thm)],[106,99]) ).

tff(108,plain,
    ( ( ~ ! [B: $i,A: $i] :
            ( ~ greater(zero,growth_rate(A,B))
            | ~ greater_or_equal(growth_rate(A,B),zero) )
      | ~ greater(zero,growth_rate(first_movers,sk2))
      | ~ greater_or_equal(growth_rate(first_movers,sk2),zero) )
  <=> ( ~ ! [B: $i,A: $i] :
            ( ~ greater(zero,growth_rate(A,B))
            | ~ greater_or_equal(growth_rate(A,B),zero) )
      | ~ greater(zero,growth_rate(first_movers,sk2))
      | ~ greater_or_equal(growth_rate(first_movers,sk2),zero) ) ),
    inference(rewrite,[status(thm)],]) ).

tff(109,plain,
    ( ~ ! [B: $i,A: $i] :
          ( ~ greater(zero,growth_rate(A,B))
          | ~ greater_or_equal(growth_rate(A,B),zero) )
    | ~ greater(zero,growth_rate(first_movers,sk2))
    | ~ greater_or_equal(growth_rate(first_movers,sk2),zero) ),
    inference(quant_inst,[status(thm)],]) ).

tff(110,plain,
    ( ~ ! [B: $i,A: $i] :
          ( ~ greater(zero,growth_rate(A,B))
          | ~ greater_or_equal(growth_rate(A,B),zero) )
    | ~ greater(zero,growth_rate(first_movers,sk2))
    | ~ greater_or_equal(growth_rate(first_movers,sk2),zero) ),
    inference(modus_ponens,[status(thm)],[109,108]) ).

tff(111,plain,
    $false,
    inference(unit_resolution,[status(thm)],[110,107,97,43]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.11  % Problem  : MGT036-2 : TPTP v8.1.0. Released v2.4.0.
% 0.11/0.12  % Command  : z3_tptp -proof -model -t:%d -file:%s
% 0.12/0.33  % Computer : n001.cluster.edu
% 0.12/0.33  % Model    : x86_64 x86_64
% 0.12/0.33  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.33  % Memory   : 8042.1875MB
% 0.12/0.33  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.12/0.33  % CPULimit : 300
% 0.12/0.33  % WCLimit  : 300
% 0.12/0.33  % DateTime : Fri Sep  2 03:08:52 EDT 2022
% 0.12/0.33  % CPUTime  : 
% 0.18/0.33  Z3tptp [4.8.9.0] (c) 2006-20**. Microsoft Corp.
% 0.18/0.33  Usage: tptp [options] [-file:]file
% 0.18/0.33    -h, -?       prints this message.
% 0.18/0.33    -smt2        print SMT-LIB2 benchmark.
% 0.18/0.33    -m, -model   generate model.
% 0.18/0.33    -p, -proof   generate proof.
% 0.18/0.33    -c, -core    generate unsat core of named formulas.
% 0.18/0.33    -st, -statistics display statistics.
% 0.18/0.33    -t:timeout   set timeout (in second).
% 0.18/0.33    -smt2status  display status in smt2 format instead of SZS.
% 0.18/0.33    -check_status check the status produced by Z3 against annotation in benchmark.
% 0.18/0.33    -<param>:<value> configuration parameter and value.
% 0.18/0.33    -o:<output-file> file to place output in.
% 0.18/0.38  % SZS status Unsatisfiable
% 0.18/0.38  % SZS output start Proof
% See solution above
%------------------------------------------------------------------------------