↑ Up

Twee---2.7.UNS-Prf.s

View TPTP
Problem
Process solution in
SystemOnTSTP
Download .tgz
%------------------------------------------------------------------------------
% File     : Twee---2.7
% Problem  : CAT005-1 : TPTP v9.3.1. Released v1.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run_twee /export/starexec/sandbox2/benchmark/theBenchmark.p

% Computer : n012.cluster.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory   : 8046.5625MB
% OS       : Linux 6.8.0-71-generic
% CPULimit : 300s
% WCLimit  : 300s
% DateTime : Tue Sep 29 09:36:22 AM UTC 2026

% Result   : Unsatisfiable 0.08s 0.16s
% Output   : Proof 0.08s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.01  % Problem  : CAT005-1 : TPTP v9.3.1. Released v1.0.0.
% 0.00/0.02  % Command  : run_twee /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.00/0.09  % Computer : n012.cluster.edu
% 0.00/0.09  % Model    : x86_64 x86_64
% 0.00/0.09  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.00/0.09  % Memory   : 8046.5625MB
% 0.00/0.09  % OS       : Linux 6.8.0-71-generic
% 0.00/0.09  % CPULimit : 300
% 0.00/0.09  % WCLimit  : 300
% 0.00/0.09  % DateTime : Mon Sep 28 21:12:33 UTC 2026
% 0.00/0.09  % CPUTime  : 
% 0.00/0.09  Running run_twee /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.08/0.16  Command-line arguments: --lhs-weight 9 --flip-ordering --complete-subsets --normalise-queue-percent 10 --cp-renormalise-threshold 10
% 0.08/0.16  
% 0.08/0.16  % SZS status Unsatisfiable
% 0.08/0.16  
% 0.08/0.16  % SZS output start Proof
% 0.08/0.16  Axiom 1 (d_is_identity_map): identity_map(d) = true.
% 0.08/0.16  Axiom 2 (domain_is_an_identity_map): identity_map(domain(X)) = true.
% 0.08/0.16  Axiom 3 (ad_defined): defined(a, d) = true.
% 0.08/0.16  Axiom 4 (ifeq_axiom): ifeq(X, X, Y, Z) = Y.
% 0.08/0.16  Axiom 5 (product_on_domain): product(X, domain(X), X) = true.
% 0.08/0.16  Axiom 6 (ifeq_axiom): ifeq2(X, X, Y, Z) = Y.
% 0.08/0.16  Axiom 7 (identity1): ifeq(identity_map(X), true, ifeq(defined(X, Y), true, product(X, Y, Y), true), true) = true.
% 0.08/0.16  Axiom 8 (identity2): ifeq(identity_map(X), true, ifeq(defined(Y, X), true, product(Y, X, Y), true), true) = true.
% 0.08/0.16  Axiom 9 (composition_is_well_defined): ifeq2(product(X, Y, Z), true, ifeq2(product(X, Y, W), true, W, Z), Z) = Z.
% 0.08/0.16  Axiom 10 (associative_property2): ifeq(product(X, Y, Z), true, ifeq(defined(Z, W), true, defined(Y, W), true), true) = true.
% 0.08/0.16  
% 0.08/0.16  Goal 1 (prove_domain_of_a_is_d): domain(a) = d.
% 0.08/0.16  Proof:
% 0.08/0.16    domain(a)
% 0.08/0.16  = { by axiom 9 (composition_is_well_defined) R->L }
% 0.08/0.16    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(product(domain(a), d, d), true, d, domain(a)), domain(a))
% 0.08/0.16  = { by axiom 4 (ifeq_axiom) R->L }
% 0.08/0.16    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(ifeq(true, true, product(domain(a), d, d), true), true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 4 (ifeq_axiom) R->L }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(ifeq(true, true, ifeq(true, true, product(domain(a), d, d), true), true), true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 2 (domain_is_an_identity_map) R->L }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(ifeq(identity_map(domain(a)), true, ifeq(true, true, product(domain(a), d, d), true), true), true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 10 (associative_property2) R->L }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(ifeq(identity_map(domain(a)), true, ifeq(ifeq(product(a, domain(a), a), true, ifeq(defined(a, d), true, defined(domain(a), d), true), true), true, product(domain(a), d, d), true), true), true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 5 (product_on_domain) }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(ifeq(identity_map(domain(a)), true, ifeq(ifeq(true, true, ifeq(defined(a, d), true, defined(domain(a), d), true), true), true, product(domain(a), d, d), true), true), true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 4 (ifeq_axiom) }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(ifeq(identity_map(domain(a)), true, ifeq(ifeq(defined(a, d), true, defined(domain(a), d), true), true, product(domain(a), d, d), true), true), true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 3 (ad_defined) }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(ifeq(identity_map(domain(a)), true, ifeq(ifeq(true, true, defined(domain(a), d), true), true, product(domain(a), d, d), true), true), true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 4 (ifeq_axiom) }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(ifeq(identity_map(domain(a)), true, ifeq(defined(domain(a), d), true, product(domain(a), d, d), true), true), true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 7 (identity1) }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, ifeq2(true, true, d, domain(a)), domain(a))
% 0.08/0.17  = { by axiom 6 (ifeq_axiom) }
% 0.08/0.17    ifeq2(product(domain(a), d, domain(a)), true, d, domain(a))
% 0.08/0.17  = { by axiom 4 (ifeq_axiom) R->L }
% 0.08/0.17    ifeq2(ifeq(true, true, product(domain(a), d, domain(a)), true), true, d, domain(a))
% 0.08/0.17  = { by axiom 4 (ifeq_axiom) R->L }
% 0.08/0.17    ifeq2(ifeq(true, true, ifeq(true, true, product(domain(a), d, domain(a)), true), true), true, d, domain(a))
% 0.08/0.17  = { by axiom 1 (d_is_identity_map) R->L }
% 0.08/0.17    ifeq2(ifeq(identity_map(d), true, ifeq(true, true, product(domain(a), d, domain(a)), true), true), true, d, domain(a))
% 0.08/0.17  = { by axiom 10 (associative_property2) R->L }
% 0.08/0.17    ifeq2(ifeq(identity_map(d), true, ifeq(ifeq(product(a, domain(a), a), true, ifeq(defined(a, d), true, defined(domain(a), d), true), true), true, product(domain(a), d, domain(a)), true), true), true, d, domain(a))
% 0.08/0.17  = { by axiom 5 (product_on_domain) }
% 0.08/0.17    ifeq2(ifeq(identity_map(d), true, ifeq(ifeq(true, true, ifeq(defined(a, d), true, defined(domain(a), d), true), true), true, product(domain(a), d, domain(a)), true), true), true, d, domain(a))
% 0.08/0.17  = { by axiom 4 (ifeq_axiom) }
% 0.08/0.17    ifeq2(ifeq(identity_map(d), true, ifeq(ifeq(defined(a, d), true, defined(domain(a), d), true), true, product(domain(a), d, domain(a)), true), true), true, d, domain(a))
% 0.08/0.17  = { by axiom 3 (ad_defined) }
% 0.08/0.17    ifeq2(ifeq(identity_map(d), true, ifeq(ifeq(true, true, defined(domain(a), d), true), true, product(domain(a), d, domain(a)), true), true), true, d, domain(a))
% 0.08/0.17  = { by axiom 4 (ifeq_axiom) }
% 0.08/0.17    ifeq2(ifeq(identity_map(d), true, ifeq(defined(domain(a), d), true, product(domain(a), d, domain(a)), true), true), true, d, domain(a))
% 0.08/0.17  = { by axiom 8 (identity2) }
% 0.08/0.17    ifeq2(true, true, d, domain(a))
% 0.08/0.17  = { by axiom 6 (ifeq_axiom) }
% 0.08/0.17    d
% 0.08/0.17  % SZS output end Proof
% 0.08/0.17  
% 0.08/0.17  RESULT: Unsatisfiable (the axioms are contradictory).
%------------------------------------------------------------------------------