TSTP Solution File: SYN549+1 by SuperZenon---0.0.1

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : SuperZenon---0.0.1
% Problem  : SYN549+1 : TPTP v8.1.0. Released v2.2.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run_super_zenon -p0 -itptp -om -max-time %d %s

% Computer : n015.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  : 600s
% DateTime : Thu Jul 21 12:45:06 EDT 2022

% Result   : Theorem 0.20s 0.41s
% Output   : Proof 0.20s
% Verified : 
% SZS Type : -

% Comments : 
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%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.04/0.12  % Problem  : SYN549+1 : TPTP v8.1.0. Released v2.2.0.
% 0.04/0.12  % Command  : run_super_zenon -p0 -itptp -om -max-time %d %s
% 0.12/0.33  % Computer : n015.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  : 600
% 0.12/0.33  % DateTime : Mon Jul 11 19:37:54 EDT 2022
% 0.12/0.34  % CPUTime  : 
% 0.20/0.41  % SZS status Theorem
% 0.20/0.41  (* PROOF-FOUND *)
% 0.20/0.41  (* BEGIN-PROOF *)
% 0.20/0.41  % SZS output start Proof
% 0.20/0.41  1. (-. (reachable (initial_world) (initial_world)))   ### Refl(reachable)
% 0.20/0.41  2. (reachable T_0 T_1) (-. (reachable T_0 T_1))   ### Axiom
% 0.20/0.41  3. (p T_1) (-. (p T_1))   ### Axiom
% 0.20/0.41  4. (-. ((p T_1) \/ (Ex V, ((reachable T_1 V) /\ (q V))))) (p T_1)   ### NotOr 3
% 0.20/0.41  5. (-. ((reachable T_0 T_1) /\ ((p T_1) \/ (Ex V, ((reachable T_1 V) /\ (q V)))))) (p T_1) (reachable T_0 T_1)   ### NotAnd 2 4
% 0.20/0.41  6. (-. (Ex Z, ((reachable T_0 Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V))))))) (reachable T_0 T_1) (p T_1)   ### NotExists 5
% 0.20/0.41  7. ((reachable T_0 T_1) /\ (p T_1)) (-. (Ex Z, ((reachable T_0 Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))))   ### And 6
% 0.20/0.41  8. (Ex W, ((reachable T_0 W) /\ (p W))) (-. (Ex Z, ((reachable T_0 Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))))   ### Exists 7
% 0.20/0.41  9. (-. (reachable T_0 T_0))   ### Refl(reachable)
% 0.20/0.41  10. (Ex W, ((reachable T_0 W) /\ (q W))) (-. (Ex W, ((reachable T_0 W) /\ (q W))))   ### Axiom
% 0.20/0.41  11. (-. ((p T_0) \/ (Ex W, ((reachable T_0 W) /\ (q W))))) (Ex W, ((reachable T_0 W) /\ (q W)))   ### NotOr 10
% 0.20/0.41  12. (-. ((reachable T_0 T_0) /\ ((p T_0) \/ (Ex W, ((reachable T_0 W) /\ (q W)))))) (Ex W, ((reachable T_0 W) /\ (q W)))   ### NotAnd 9 11
% 0.20/0.41  13. (-. (Ex Z, ((reachable T_0 Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V))))))) (Ex W, ((reachable T_0 W) /\ (q W)))   ### NotExists 12
% 0.20/0.41  14. ((Ex W, ((reachable T_0 W) /\ (p W))) \/ (Ex W, ((reachable T_0 W) /\ (q W)))) (-. (Ex Z, ((reachable T_0 Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))))   ### Or 8 13
% 0.20/0.41  15. (reachable T_0 T_2) (-. (reachable T_0 T_2))   ### Axiom
% 0.20/0.41  16. (p T_2) (-. (p T_2))   ### Axiom
% 0.20/0.41  17. (-. ((reachable T_0 T_2) /\ (p T_2))) (p T_2) (reachable T_0 T_2)   ### NotAnd 15 16
% 0.20/0.41  18. (-. (Ex W, ((reachable T_0 W) /\ (p W)))) (reachable T_0 T_2) (p T_2)   ### NotExists 17
% 0.20/0.41  19. (reachable T_0 T_2) (-. (reachable T_0 T_2))   ### Axiom
% 0.20/0.41  20. (T_3 != T_3)   ### Refl(=)
% 0.20/0.41  21. (-. (reachable T_0 T_3)) (reachable T_2 T_3) (reachable T_0 T_2)   ### Trans 19 20
% 0.20/0.41  22. (q T_3) (-. (q T_3))   ### Axiom
% 0.20/0.41  23. (-. ((reachable T_0 T_3) /\ (q T_3))) (q T_3) (reachable T_0 T_2) (reachable T_2 T_3)   ### NotAnd 21 22
% 0.20/0.41  24. (-. (Ex W, ((reachable T_0 W) /\ (q W)))) (reachable T_2 T_3) (reachable T_0 T_2) (q T_3)   ### NotExists 23
% 0.20/0.41  25. ((reachable T_2 T_3) /\ (q T_3)) (reachable T_0 T_2) (-. (Ex W, ((reachable T_0 W) /\ (q W))))   ### And 24
% 0.20/0.41  26. (Ex V, ((reachable T_2 V) /\ (q V))) (-. (Ex W, ((reachable T_0 W) /\ (q W)))) (reachable T_0 T_2)   ### Exists 25
% 0.20/0.41  27. ((p T_2) \/ (Ex V, ((reachable T_2 V) /\ (q V)))) (-. (Ex W, ((reachable T_0 W) /\ (q W)))) (reachable T_0 T_2) (-. (Ex W, ((reachable T_0 W) /\ (p W))))   ### Or 18 26
% 0.20/0.41  28. (-. ((Ex W, ((reachable T_0 W) /\ (p W))) \/ (Ex W, ((reachable T_0 W) /\ (q W))))) (reachable T_0 T_2) ((p T_2) \/ (Ex V, ((reachable T_2 V) /\ (q V))))   ### NotOr 27
% 0.20/0.41  29. ((reachable T_0 T_2) /\ ((p T_2) \/ (Ex V, ((reachable T_2 V) /\ (q V))))) (-. ((Ex W, ((reachable T_0 W) /\ (p W))) \/ (Ex W, ((reachable T_0 W) /\ (q W)))))   ### And 28
% 0.20/0.41  30. (Ex Z, ((reachable T_0 Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))) (-. ((Ex W, ((reachable T_0 W) /\ (p W))) \/ (Ex W, ((reachable T_0 W) /\ (q W)))))   ### Exists 29
% 0.20/0.41  31. (-. ((Ex Z, ((reachable T_0 Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))) <=> ((Ex W, ((reachable T_0 W) /\ (p W))) \/ (Ex W, ((reachable T_0 W) /\ (q W))))))   ### NotEquiv 14 30
% 0.20/0.41  32. (-. ((reachable (initial_world) T_0) => ((Ex Z, ((reachable T_0 Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))) <=> ((Ex W, ((reachable T_0 W) /\ (p W))) \/ (Ex W, ((reachable T_0 W) /\ (q W)))))))   ### NotImply 31
% 0.20/0.41  33. (-. (All Y, ((reachable (initial_world) Y) => ((Ex Z, ((reachable Y Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))) <=> ((Ex W, ((reachable Y W) /\ (p W))) \/ (Ex W, ((reachable Y W) /\ (q W))))))))   ### NotAllEx 32
% 0.20/0.41  34. (-. ((reachable (initial_world) (initial_world)) /\ (All Y, ((reachable (initial_world) Y) => ((Ex Z, ((reachable Y Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))) <=> ((Ex W, ((reachable Y W) /\ (p W))) \/ (Ex W, ((reachable Y W) /\ (q W)))))))))   ### NotAnd 1 33
% 0.20/0.41  35. (-. (Ex X, ((reachable (initial_world) X) /\ (All Y, ((reachable X Y) => ((Ex Z, ((reachable Y Z) /\ ((p Z) \/ (Ex V, ((reachable Z V) /\ (q V)))))) <=> ((Ex W, ((reachable Y W) /\ (p W))) \/ (Ex W, ((reachable Y W) /\ (q W))))))))))   ### NotExists 34
% 0.20/0.41  % SZS output end Proof
% 0.20/0.41  (* END-PROOF *)
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