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  1. Annals of Mathematics and Artificial Intelligence
  2. Annals of Mathematics and Artificial Intelligence : Volume 46
  3. Annals of Mathematics and Artificial Intelligence : Volume 46, Issue 3, March 2006
  4. A clausal resolution method for branching-time logic ECTL+
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Annals of Mathematics and Artificial Intelligence : Volume 47
Annals of Mathematics and Artificial Intelligence : Volume 46
Annals of Mathematics and Artificial Intelligence : Volume 46, Issue 4, April 2006
Annals of Mathematics and Artificial Intelligence : Volume 46, Issue 3, March 2006
Guest editorial: Temporal representation and reasoning
A clausal resolution method for branching-time logic ECTL+
Reasoning on temporal class diagrams: Undecidability results
Tableau-based automata construction for dynamic linear time temporal logic*
A mathematical framework for the semantics of symbolic languages representing periodic time
An algebraic framework for temporal attribute characteristics
Annals of Mathematics and Artificial Intelligence : Volume 46, Issue 1-2, February 2006
Annals of Mathematics and Artificial Intelligence : Volume 45
Annals of Mathematics and Artificial Intelligence : Volume 44
Annals of Mathematics and Artificial Intelligence : Volume 43
Annals of Mathematics and Artificial Intelligence : Volume 42
Annals of Mathematics and Artificial Intelligence : Volume 41
Annals of Mathematics and Artificial Intelligence : Volume 40
Annals of Mathematics and Artificial Intelligence : Volume 39
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Annals of Mathematics and Artificial Intelligence : Volume 37
Annals of Mathematics and Artificial Intelligence : Volume 36
Annals of Mathematics and Artificial Intelligence : Volume 35
Annals of Mathematics and Artificial Intelligence : Volume 34
Annals of Mathematics and Artificial Intelligence : Volume 33
Annals of Mathematics and Artificial Intelligence : Volume 32
Annals of Mathematics and Artificial Intelligence : Volume 31
Annals of Mathematics and Artificial Intelligence : Volume 30
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Annals of Mathematics and Artificial Intelligence : Volume 27
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Annals of Mathematics and Artificial Intelligence : Volume 25
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Annals of Mathematics and Artificial Intelligence : Volume 23
Annals of Mathematics and Artificial Intelligence : Volume 22
Annals of Mathematics and Artificial Intelligence : Volume 21
Annals of Mathematics and Artificial Intelligence : Volume 20
Annals of Mathematics and Artificial Intelligence : Volume 19

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A clausal resolution method for branching-time logic ECTL+

Content Provider Springer Nature Link
Author Bolotov, Alexander Basukoski, Artie
Copyright Year 2006
Abstract We expand the applicability of the clausal resolution technique to the branching-time temporal logic ECTL+. ECTL+ is strictly more expressive than the basic computation tree logic CTL and its extension, ECTL, as it allows Boolean combinations of fairness and single temporal operators. We show how any ECTL+ formula can be translated to a normal form the structure of which was initially defined for CTL and then used for ECTL. This enables us to apply to ECTL+ a resolution technique defined over the set of clauses. Both correctness of the method and complexity of the transformation procedure are given.
Ending Page 263
Page Count 29
Starting Page 235
File Format PDF
ISSN 10122443
e-ISSN 15737470
Journal Annals of Mathematics and Artificial Intelligence
Issue Number 3
Volume Number 46
Language English
Publisher Kluwer Academic Publishers
Publisher Date 2006-03-24
Publisher Place Dordrecht
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Specification and verification (program logics, model checking, etc.) Models and methods for concurrent and distributed computing (process algebras, bisimulation, transition nets, etc.) Mechanization of proofs and logical operations Mathematical aspects of software engineering (specification, verification, metrics, requirements, etc.) program specification and verification automated deduction branching-time logic Theorem proving (deduction, resolution, etc.) resolution Temporal logic
Content Type Text
Resource Type Article
Subject Applied Mathematics Artificial Intelligence
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