TSTP Solution File: MGT021+1 by nanoCoP---2.0

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : nanoCoP---2.0
% Problem  : MGT021+1 : TPTP v8.1.2. Released v2.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : nanocop.sh %s %d

% Computer : n021.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 : Fri May 19 11:35:36 EDT 2023

% Result   : Theorem 0.33s 1.38s
% Output   : Proof 0.33s
% Verified : 
% SZS Type : -

% Comments : 
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%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.03/0.12  % Problem  : MGT021+1 : TPTP v8.1.2. Released v2.0.0.
% 0.03/0.13  % Command  : nanocop.sh %s %d
% 0.12/0.34  % Computer : n021.cluster.edu
% 0.12/0.34  % Model    : x86_64 x86_64
% 0.12/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.34  % Memory   : 8042.1875MB
% 0.12/0.34  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.12/0.34  % CPULimit : 300
% 0.12/0.34  % WCLimit  : 300
% 0.12/0.34  % DateTime : Thu May 18 23:39:57 EDT 2023
% 0.12/0.34  % CPUTime  : 
% 0.33/1.38  
% 0.33/1.38  /export/starexec/sandbox2/benchmark/theBenchmark.p is a Theorem
% 0.33/1.38  Start of proof for /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.33/1.38  %-----------------------------------------------------
% 0.33/1.38  ncf(matrix, plain, [(252 ^ _39839) ^ [] : [-(environment(249 ^ []))], (254 ^ _39839) ^ [] : [-(subpopulations(first_movers, efficient_producers, 249 ^ [], 250 ^ []))], (256 ^ _39839) ^ [] : [-(decreases(difference(disbanding_rate(first_movers, 250 ^ []), disbanding_rate(efficient_producers, 250 ^ []))))], (170 ^ _39839) ^ [_45561, _45563] : [-(in_environment(_45563, _45561)), environment(_45563), subpopulations(first_movers, efficient_producers, _45563, _45561)], (180 ^ _39839) ^ [_45862, _45864] : [-(greater(number_of_organizations(_45864, _45862), zero)), environment(_45864), subpopulations(first_movers, efficient_producers, _45864, _45862)], (190 ^ _39839) ^ [_46155] : [increases(_46155), decreases(_46155)], (196 ^ _39839) ^ [_46356, _46358] : [greater_or_equal(_46358, _46356), -(greater(_46358, _46356)), -(_46358 = _46356)], (230 ^ _39839) ^ [_47304, _47306] : [environment(_47306), subpopulations(first_movers, efficient_producers, _47306, _47304), 237 ^ _39839 : [(238 ^ _39839) ^ [] : [decreases(resources(_47306, _47304)), -(increases(difference(disbanding_rate(first_movers, _47304), disbanding_rate(efficient_producers, _47304))))], (244 ^ _39839) ^ [] : [constant(resources(_47306, _47304)), decreases(difference(disbanding_rate(first_movers, _47304), disbanding_rate(efficient_producers, _47304)))]]], (206 ^ _39839) ^ [_46656, _46658] : [environment(_46658), in_environment(_46658, _46656), greater(number_of_organizations(_46658, _46656), zero), 217 ^ _39839 : [(218 ^ _39839) ^ [] : [greater(equilibrium(_46658), _46656), -(decreases(resources(_46658, _46656)))], (224 ^ _39839) ^ [] : [-(greater(equilibrium(_46658), _46656)), -(constant(resources(_46658, _46656)))]]], (124 ^ _39839) ^ [_43937, _43939, _43941, _43943] : [-(number_of_organizations(_43943, _43939) = number_of_organizations(_43941, _43937)), _43943 = _43941, _43939 = _43937], (134 ^ _39839) ^ [_44268, _44270] : [_44270 = _44268, -(equilibrium(_44270) = equilibrium(_44268))], (140 ^ _39839) ^ [_44514, _44516, _44518, _44520] : [-(resources(_44520, _44516) = resources(_44518, _44514)), _44520 = _44518, _44516 = _44514], (150 ^ _39839) ^ [_44873, _44875, _44877, _44879] : [-(difference(_44879, _44875) = difference(_44877, _44873)), _44879 = _44877, _44875 = _44873], (160 ^ _39839) ^ [_45212, _45214, _45216, _45218] : [-(disbanding_rate(_45218, _45214) = disbanding_rate(_45216, _45212)), _45218 = _45216, _45214 = _45212], (2 ^ _39839) ^ [_39983] : [-(_39983 = _39983)], (4 ^ _39839) ^ [_40090, _40092] : [_40092 = _40090, -(_40090 = _40092)], (10 ^ _39839) ^ [_40294, _40296, _40298] : [-(_40298 = _40294), _40298 = _40296, _40296 = _40294], (20 ^ _39839) ^ [_40635, _40637, _40639, _40641] : [-(greater_or_equal(_40639, _40635)), greater_or_equal(_40641, _40637), _40641 = _40639, _40637 = _40635], (34 ^ _39839) ^ [_41079, _41081, _41083, _41085] : [-(in_environment(_41083, _41079)), in_environment(_41085, _41081), _41085 = _41083, _41081 = _41079], (48 ^ _39839) ^ [_41523, _41525, _41527, _41529] : [-(greater(_41527, _41523)), greater(_41529, _41525), _41529 = _41527, _41525 = _41523], (62 ^ _39839) ^ [_41939, _41941] : [-(increases(_41939)), _41941 = _41939, increases(_41941)], (72 ^ _39839) ^ [_42234, _42236] : [-(constant(_42234)), _42236 = _42234, constant(_42236)], (82 ^ _39839) ^ [_42529, _42531] : [-(environment(_42529)), _42531 = _42529, environment(_42531)], (114 ^ _39839) ^ [_43594, _43596] : [-(decreases(_43594)), _43596 = _43594, decreases(_43596)], (92 ^ _39839) ^ [_42908, _42910, _42912, _42914, _42916, _42918, _42920, _42922] : [-(subpopulations(_42920, _42916, _42912, _42908)), subpopulations(_42922, _42918, _42914, _42910), _42922 = _42920, _42918 = _42916, _42914 = _42912, _42910 = _42908]], input).
% 0.33/1.38  ncf('1',plain,[increases(difference(disbanding_rate(first_movers, 250 ^ []), disbanding_rate(efficient_producers, 250 ^ []))), decreases(difference(disbanding_rate(first_movers, 250 ^ []), disbanding_rate(efficient_producers, 250 ^ [])))],start(190 ^ 0,bind([[_46155], [difference(disbanding_rate(first_movers, 250 ^ []), disbanding_rate(efficient_producers, 250 ^ []))]]))).
% 0.33/1.38  ncf('1.1',plain,[-(increases(difference(disbanding_rate(first_movers, 250 ^ []), disbanding_rate(efficient_producers, 250 ^ [])))), 238 : decreases(resources(249 ^ [], 250 ^ [])), 238 : environment(249 ^ []), 238 : subpopulations(first_movers, efficient_producers, 249 ^ [], 250 ^ [])],extension(230 ^ 1,bind([[_47304, _47306], [250 ^ [], 249 ^ []]]))).
% 0.33/1.38  ncf('1.1.1',plain,[-(decreases(resources(249 ^ [], 250 ^ []))), 218 : greater(equilibrium(249 ^ []), 250 ^ []), 218 : environment(249 ^ []), 218 : in_environment(249 ^ [], 250 ^ []), 218 : greater(number_of_organizations(249 ^ [], 250 ^ []), zero)],extension(206 ^ 4,bind([[_46656, _46658], [250 ^ [], 249 ^ []]]))).
% 0.33/1.38  ncf('1.1.1.1',plain,[-(greater(equilibrium(249 ^ []), 250 ^ [])), -(constant(resources(249 ^ [], 250 ^ [])))],extension(224 ^ 7)).
% 0.33/1.38  ncf('1.1.1.1.1',plain,[constant(resources(249 ^ [], 250 ^ [])), decreases(difference(disbanding_rate(first_movers, 250 ^ []), disbanding_rate(efficient_producers, 250 ^ [])))],extension(244 ^ 8)).
% 0.33/1.38  ncf('1.1.1.1.1.1',plain,[-(decreases(difference(disbanding_rate(first_movers, 250 ^ []), disbanding_rate(efficient_producers, 250 ^ []))))],extension(256 ^ 9)).
% 0.33/1.38  ncf('1.1.1.2',plain,[-(environment(249 ^ []))],extension(252 ^ 5)).
% 0.33/1.38  ncf('1.1.1.3',plain,[-(in_environment(249 ^ [], 250 ^ [])), environment(249 ^ []), subpopulations(first_movers, efficient_producers, 249 ^ [], 250 ^ [])],extension(170 ^ 5,bind([[_45561, _45563], [250 ^ [], 249 ^ []]]))).
% 0.33/1.38  ncf('1.1.1.3.1',plain,[-(environment(249 ^ []))],lemmata('[1, 1].x')).
% 0.33/1.38  ncf('1.1.1.3.2',plain,[-(subpopulations(first_movers, efficient_producers, 249 ^ [], 250 ^ []))],extension(254 ^ 6)).
% 0.33/1.38  ncf('1.1.1.4',plain,[-(greater(number_of_organizations(249 ^ [], 250 ^ []), zero)), environment(249 ^ []), subpopulations(first_movers, efficient_producers, 249 ^ [], 250 ^ [])],extension(180 ^ 5,bind([[_45862, _45864], [250 ^ [], 249 ^ []]]))).
% 0.33/1.38  ncf('1.1.1.4.1',plain,[-(environment(249 ^ []))],lemmata('[1, 1].x')).
% 0.33/1.38  ncf('1.1.1.4.2',plain,[-(subpopulations(first_movers, efficient_producers, 249 ^ [], 250 ^ []))],extension(254 ^ 6)).
% 0.33/1.38  ncf('1.1.2',plain,[-(environment(249 ^ []))],extension(252 ^ 2)).
% 0.33/1.38  ncf('1.1.3',plain,[-(subpopulations(first_movers, efficient_producers, 249 ^ [], 250 ^ []))],extension(254 ^ 2)).
% 0.33/1.38  ncf('1.2',plain,[-(decreases(difference(disbanding_rate(first_movers, 250 ^ []), disbanding_rate(efficient_producers, 250 ^ []))))],extension(256 ^ 1)).
% 0.33/1.38  %-----------------------------------------------------
% 0.33/1.38  End of proof for /export/starexec/sandbox2/benchmark/theBenchmark.p
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