Suchergebnisse - "ACM: D.: Software/D.3: PROGRAMMING LANGUAGES/D.3.1: Formal Definitions and Theory"

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    Weitere Verfasser: Mercadal, Julien Drey, Zoé Consel, Charles et al.

    Quelle: Electronic Proceedings in Theoretical Computer Science, Vol 129, Iss Festschrift for Dave Schmidt, Pp 229-249 (2013)

    Dateibeschreibung: application/pdf

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    Quelle: Theoretical Computer Science. 398:243-260

    Dateibeschreibung: application/pdf

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    Quelle: ACM Transactions on Programming Languages and Systems. 30:1-32

    Dateibeschreibung: application/pdf

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    Quelle: Third International Conference on Language and Automata Theory and Applications - LATA 2009 ; https://inria.hal.science/inria-00428679 ; Third International Conference on Language and Automata Theory and Applications - LATA 2009, Apr 2009, Tarragona, Spain. pp.386-397, ⟨10.1007/978-3-642-00982-2_33⟩

    Schlagwörter: abstraction, ordering constraint, innermost, narrowing, mechanical verification, mathematical induction, priority rewriting, termination, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.2: Logics of programs, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.3: Mechanical verification, ACM: F.: Theory of Computation/F.4: MATHEMATICAL LOGIC AND FORMAL LANGUAGES/F.4.3: Formal Languages/F.4.3.0: Algebraic language theory, ACM: I.: Computing Methodologies/I.1: SYMBOLIC AND ALGEBRAIC MANIPULATION/I.1.3: Languages and Systems/I.1.3.0: Evaluation strategies, ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.1: Deduction (e.g., natural, rule-based), ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.2: Inference engines, ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.4: Mathematical induction, ACM: D.: Software/D.3: PROGRAMMING LANGUAGES/D.3.1: Formal Definitions and Theory, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.2: Correctness proofs, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.3: Formal methods, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.8: Validation, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.5: Specification techniques, ACM: F.: Theory of Computation/F.4: MATHEMATICAL LOGIC AND FORMAL LANGUAGES/F.4.2: Grammars and Other Rewriting Systems, [INFO.INFO-LO]Computer Science [cs]/Logic in Computer Science [cs.LO]

    Geographisches Schlagwort: Tarragona, Spain

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    Quelle: PPDP 2007 - 9th ACM-SIGPLAN International Symposium on Principles and Practice of Declarative Programming ; https://inria.hal.science/inria-00182435 ; PPDP 2007 - 9th ACM-SIGPLAN International Symposium on Principles and Practice of Declarative Programming, Jul 2007, Wroclaw, Poland. pp.167-177

    Schlagwörter: Algorithms, Languages, Verification, Abstraction, Constraint, Narrowing, Probability, Termination, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.2: Logics of programs, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.3: Mechanical verification, ACM: F.: Theory of Computation/F.4: MATHEMATICAL LOGIC AND FORMAL LANGUAGES/F.4.2: Grammars and Other Rewriting Systems, ACM: F.: Theory of Computation/F.4: MATHEMATICAL LOGIC AND FORMAL LANGUAGES/F.4.3: Formal Languages/F.4.3.0: Algebraic language theory, ACM: I.: Computing Methodologies/I.1: SYMBOLIC AND ALGEBRAIC MANIPULATION/I.1.3: Languages and Systems/I.1.3.0: Evaluation strategies, ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.1: Deduction (e.g., natural, rule-based), ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.2: Inference engines, ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.4: Mathematical induction, ACM: D.: Software/D.3: PROGRAMMING LANGUAGES/D.3.1: Formal Definitions and Theory, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.2: Correctness proofs, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.3: Formal methods, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.8: Validation, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.5: Specification techniques, [INFO.INFO-LO]Computer Science [cs]/Logic in Computer Science [cs.LO]

    Geographisches Schlagwort: Wroclaw, Poland

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    Quelle: Symposium on Principles and Practice of Declarative Programming - PPDP'06 ; https://inria.hal.science/inria-00112083 ; Symposium on Principles and Practice of Declarative Programming - PPDP'06, Jul 2006, Venise/Italie

    Schlagwörter: Sufficient Completeness, Constructor, Abstraction, Narrowing, Ordering Constraint, Termination, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.2: Logics of programs, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.3: Mechanical verification, ACM: D.: Software/D.3: PROGRAMMING LANGUAGES/D.3.1: Formal Definitions and Theory, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.2: Correctness proofs, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.3: Formal methods, ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.4: Software/Program Verification/D.2.4.8: Validation, ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs/F.3.1.5: Specification techniques, ACM: F.: Theory of Computation/F.4: MATHEMATICAL LOGIC AND FORMAL LANGUAGES/F.4.2: Grammars and Other Rewriting Systems, ACM: F.: Theory of Computation/F.4: MATHEMATICAL LOGIC AND FORMAL LANGUAGES/F.4.3: Formal Languages/F.4.3.0: Algebraic language theory, ACM: I.: Computing Methodologies/I.1: SYMBOLIC AND ALGEBRAIC MANIPULATION/I.1.3: Languages and Systems/I.1.3.0: Evaluation strategies, ACM: I.: Computing Methodologies/I.1: SYMBOLIC AND ALGEBRAIC MANIPULATION/I.1.3: Languages and Systems/I.1.3.4: Substitution mechanisms, ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.1: Deduction (e.g., natural, rule-based), ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.2: Inference engines, ACM: I.: Computing Methodologies/I.2: ARTIFICIAL INTELLIGENCE/I.2.3: Deduction and Theorem Proving/I.2.3.4: Mathematical induction, [INFO.INFO-LO]Computer Science [cs]/Logic in Computer Science [cs.LO]

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    Quelle: Proceedings of the 6th ACM SIGPLAN International Conference on Principles and Practice of Declarative Programming (PPDP) ; https://inria.hal.science/hal-01149659 ; Proceedings of the 6th ACM SIGPLAN International Conference on Principles and Practice of Declarative Programming (PPDP), Aug 2004, Verona, Italy. pp.167-178, ⟨10.1145/1013963.1013983⟩

    Geographisches Schlagwort: Verona, Italy

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    Quelle: Proceedings of the 30th ACM SIGPLAN-SIGACT Symposium on Principles of Programming Languages, POPL, New Orleans, LA, USA — January 15 - 17, 2003 ; https://inria.hal.science/inria-00099463 ; Proceedings of the 30th ACM SIGPLAN-SIGACT Symposium on Principles of Programming Languages, POPL, New Orleans, LA, USA — January 15 - 17, 2003, Jan 2003, New Orleans, United States. pp.250 - 261, ⟨10.1145/604131.604152⟩

    Geographisches Schlagwort: New Orleans, United States

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