%------------------------------------------------------------------------------ % File : Zenon---0.7.1 % Problem : CSR062+1 : TPTP v8.1.0. Released v3.4.0. % Transfm : none % Format : tptp:raw % Command : run_zenon %s %d % 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 : 600s % DateTime : Sat Jul 16 00:02:23 EDT 2022 % Result : Theorem 0.46s 0.65s % Output : Proof 0.46s % Verified : % SZS Type : - % Comments : %------------------------------------------------------------------------------ %----WARNING: Could not form TPTP format derivation %------------------------------------------------------------------------------ %----ORIGINAL SYSTEM OUTPUT % 0.07/0.12 % Problem : CSR062+1 : TPTP v8.1.0. Released v3.4.0. % 0.07/0.13 % Command : run_zenon %s %d % 0.12/0.33 % Computer : n028.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 : Thu Jun 9 17:59:18 EDT 2022 % 0.12/0.34 % CPUTime : % 0.46/0.65 (* PROOF-FOUND *) % 0.46/0.65 % SZS status Theorem % 0.46/0.65 (* BEGIN-PROOF *) % 0.46/0.65 % SZS output start Proof % 0.46/0.65 Theorem query62 : (exists ARG1 : zenon_U, ((mtvisible (c_tptp_member3205_mt))->(tptptypes_5_387 ARG1 (c_pushingwithfingers)))). % 0.46/0.65 Proof. % 0.46/0.65 apply NNPP. intro zenon_G. % 0.46/0.65 elim (classic (forall x : zenon_U, (forall y : zenon_U, (forall z : zenon_U, ((genlmt x y)->((genlmt y z)->(genlmt x z))))))); [ zenon_intro zenon_H37 | zenon_intro zenon_H38 ]. % 0.46/0.65 apply (zenon_imply_s _ _ just14); [ zenon_intro zenon_H3a | zenon_intro zenon_H39 ]. % 0.46/0.65 apply zenon_G. exists zenon_E. apply NNPP. zenon_intro zenon_H3b. % 0.46/0.65 apply (zenon_notimply_s _ _ zenon_H3b). zenon_intro zenon_H3d. zenon_intro zenon_H3c. % 0.46/0.65 generalize (just53 (c_tptp_member3205_mt)). zenon_intro zenon_H3e. % 0.46/0.65 generalize (zenon_H3e (c_cyclistsmt)). zenon_intro zenon_H3f. % 0.46/0.65 apply (zenon_imply_s _ _ zenon_H3f); [ zenon_intro zenon_H41 | zenon_intro zenon_H40 ]. % 0.46/0.65 apply (zenon_notand_s _ _ zenon_H41); [ zenon_intro zenon_H43 | zenon_intro zenon_H42 ]. % 0.46/0.65 exact (zenon_H43 zenon_H3d). % 0.46/0.65 elim (classic ((~((c_tptp_member3205_mt) = (c_tptp_spindleheadmt)))/\(~(genlmt (c_tptp_member3205_mt) (c_tptp_spindleheadmt))))); [ zenon_intro zenon_H44 | zenon_intro zenon_H45 ]. % 0.46/0.65 apply (zenon_and_s _ _ zenon_H44). zenon_intro zenon_H47. zenon_intro zenon_H46. % 0.46/0.65 exact (zenon_H46 just13). % 0.46/0.65 cut ((genlmt (c_tptp_spindleheadmt) (c_cyclistsmt)) = (genlmt (c_tptp_member3205_mt) (c_cyclistsmt))). % 0.46/0.65 intro zenon_D_pnotp. % 0.46/0.65 apply zenon_H42. % 0.46/0.65 rewrite <- zenon_D_pnotp. % 0.46/0.65 exact just12. % 0.46/0.65 cut (((c_cyclistsmt) = (c_cyclistsmt))); [idtac | apply NNPP; zenon_intro zenon_H48]. % 0.46/0.65 cut (((c_tptp_spindleheadmt) = (c_tptp_member3205_mt))); [idtac | apply NNPP; zenon_intro zenon_H49]. % 0.46/0.65 congruence. % 0.46/0.65 apply (zenon_notand_s _ _ zenon_H45); [ zenon_intro zenon_H4b | zenon_intro zenon_H4a ]. % 0.46/0.65 apply zenon_H4b. zenon_intro zenon_H4c. % 0.46/0.65 elim (classic ((c_tptp_member3205_mt) = (c_tptp_member3205_mt))); [ zenon_intro zenon_H4d | zenon_intro zenon_H4e ]. % 0.46/0.65 cut (((c_tptp_member3205_mt) = (c_tptp_member3205_mt)) = ((c_tptp_spindleheadmt) = (c_tptp_member3205_mt))). % 0.46/0.65 intro zenon_D_pnotp. % 0.46/0.65 apply zenon_H49. % 0.46/0.65 rewrite <- zenon_D_pnotp. % 0.46/0.65 exact zenon_H4d. % 0.46/0.65 cut (((c_tptp_member3205_mt) = (c_tptp_member3205_mt))); [idtac | apply NNPP; zenon_intro zenon_H4e]. % 0.46/0.65 cut (((c_tptp_member3205_mt) = (c_tptp_spindleheadmt))); [idtac | apply NNPP; zenon_intro zenon_H47]. % 0.46/0.65 congruence. % 0.46/0.65 exact (zenon_H47 zenon_H4c). % 0.46/0.65 apply zenon_H4e. apply refl_equal. % 0.46/0.65 apply zenon_H4e. apply refl_equal. % 0.46/0.65 apply zenon_H4a. zenon_intro just13. % 0.46/0.65 generalize (zenon_H37 (c_tptp_member3205_mt)). zenon_intro zenon_H4f. % 0.46/0.65 generalize (zenon_H4f (c_tptp_spindleheadmt)). zenon_intro zenon_H50. % 0.46/0.65 generalize (zenon_H50 (c_cyclistsmt)). zenon_intro zenon_H51. % 0.46/0.65 apply (zenon_imply_s _ _ zenon_H51); [ zenon_intro zenon_H46 | zenon_intro zenon_H52 ]. % 0.46/0.65 exact (zenon_H46 just13). % 0.46/0.65 apply (zenon_imply_s _ _ zenon_H52); [ zenon_intro zenon_H54 | zenon_intro zenon_H53 ]. % 0.46/0.65 exact (zenon_H54 just12). % 0.46/0.65 exact (zenon_H42 zenon_H53). % 0.46/0.65 apply zenon_H48. apply refl_equal. % 0.46/0.65 exact (zenon_H3a zenon_H40). % 0.46/0.65 generalize (just9 (c_pushingwithfingers)). zenon_intro zenon_H55. % 0.46/0.65 generalize (just7 (c_tptpcol_15_4027)). zenon_intro zenon_H56. % 0.46/0.65 generalize (zenon_H56 (c_pushingwithfingers)). zenon_intro zenon_H57. % 0.46/0.65 apply (zenon_imply_s _ _ zenon_H57); [ zenon_intro zenon_H59 | zenon_intro zenon_H58 ]. % 0.46/0.65 generalize (zenon_H55 (c_tptpcol_15_4027)). zenon_intro zenon_H5a. % 0.46/0.65 apply (zenon_imply_s _ _ zenon_H5a); [ zenon_intro zenon_H5c | zenon_intro zenon_H5b ]. % 0.46/0.65 generalize (just11 (c_pushingwithfingers)). zenon_intro zenon_H5d. % 0.46/0.65 generalize (zenon_H5d (c_tptpcol_15_4027)). zenon_intro zenon_H5e. % 0.46/0.65 apply (zenon_imply_s _ _ zenon_H5e); [ zenon_intro zenon_H60 | zenon_intro zenon_H5f ]. % 0.46/0.65 exact (zenon_H60 zenon_H39). % 0.46/0.65 exact (zenon_H5c zenon_H5f). % 0.46/0.65 exact (zenon_H59 zenon_H5b). % 0.46/0.65 apply zenon_G. exists (c_tptpcol_15_4027). apply NNPP. zenon_intro zenon_H61. % 0.46/0.65 apply (zenon_notimply_s _ _ zenon_H61). zenon_intro zenon_H3d. zenon_intro zenon_H62. % 0.46/0.65 exact (zenon_H62 zenon_H58). % 0.46/0.65 apply zenon_H38. zenon_intro zenon_Tx_dv. apply NNPP. zenon_intro zenon_H64. % 0.46/0.65 apply zenon_H64. zenon_intro zenon_Ty_dx. apply NNPP. zenon_intro zenon_H66. % 0.46/0.65 apply zenon_H66. zenon_intro zenon_Tz_dz. apply NNPP. zenon_intro zenon_H68. % 0.46/0.65 apply (zenon_notimply_s _ _ zenon_H68). zenon_intro zenon_H6a. zenon_intro zenon_H69. % 0.46/0.65 apply (zenon_notimply_s _ _ zenon_H69). zenon_intro zenon_H6c. zenon_intro zenon_H6b. % 0.46/0.65 generalize (just58 zenon_Tx_dv). zenon_intro zenon_H6d. % 0.46/0.65 generalize (zenon_H6d zenon_Ty_dx). zenon_intro zenon_H6e. % 0.46/0.65 generalize (zenon_H6e zenon_Tz_dz). zenon_intro zenon_H6f. % 0.46/0.65 apply (zenon_imply_s _ _ zenon_H6f); [ zenon_intro zenon_H71 | zenon_intro zenon_H70 ]. % 0.46/0.65 apply (zenon_notand_s _ _ zenon_H71); [ zenon_intro zenon_H73 | zenon_intro zenon_H72 ]. % 0.46/0.65 exact (zenon_H73 zenon_H6a). % 0.46/0.65 exact (zenon_H72 zenon_H6c). % 0.46/0.65 exact (zenon_H6b zenon_H70). % 0.46/0.65 Qed. % 0.46/0.65 % SZS output end Proof % 0.46/0.65 (* END-PROOF *) % 0.46/0.65 nodes searched: 10407 % 0.46/0.65 max branch formulas: 1157 % 0.46/0.65 proof nodes created: 405 % 0.46/0.65 formulas created: 15944 % 0.46/0.65 %------------------------------------------------------------------------------