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Unifying Theories of Programming [electronic resource] : First International Symposium, UTP 2006, Walworth Castle, County Durham, UK, February 5-7, 2006, Revised Selected Papers / edited by Steve Dunne, Bill Stoddart.

Contributor(s): Series: Lecture Notes in Computer Science ; 4010Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2006Description: VIII, 264 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540347521
Subject(s): Genre/Form: Additional physical formats: Printed edition:: No titleDDC classification:
  • 005.1 23
LOC classification:
  • QA76.758
Online resources:
Contents:
Retrospective and Prospective for Unifying Theories of Programming -- Object-Orientation in the UTP -- CSP Is a Retract of CCS -- A Design-Based Model of Reversible Computation -- An Operational Semantics in UTP for a Language of Reactive Designs (Abstract) -- Constructing Property-Oriented Models for Verification -- A Relational Investigation of UTP Designs and Prescriptions -- Unifying Theories in ProofPower-Z -- Termination of Real-Time Programs: Definitely, Definitely Not, or Maybe -- Hierarchical Organisation of Predicate-Semantic Models -- Unifying Probability -- Pointers and Records in the Unifying Theories of Programming -- Mechanising a Unifying Theory -- Modal Design Algebra.
In: Springer eBooks
Item type: eBooks
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Retrospective and Prospective for Unifying Theories of Programming -- Object-Orientation in the UTP -- CSP Is a Retract of CCS -- A Design-Based Model of Reversible Computation -- An Operational Semantics in UTP for a Language of Reactive Designs (Abstract) -- Constructing Property-Oriented Models for Verification -- A Relational Investigation of UTP Designs and Prescriptions -- Unifying Theories in ProofPower-Z -- Termination of Real-Time Programs: Definitely, Definitely Not, or Maybe -- Hierarchical Organisation of Predicate-Semantic Models -- Unifying Probability -- Pointers and Records in the Unifying Theories of Programming -- Mechanising a Unifying Theory -- Modal Design Algebra.

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