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Titlebook: Computer Aided Verification; 17th International C Kousha Etessami,Sriram K. Rajamani Conference proceedings 2005 Springer-Verlag Berlin Hei

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Predicate Abstraction via Symbolic Decision Proceduresrather than exponential) time. We then provide a method to construct .’s for simple mixed theories (including EUF + DIF) using an extension of the Nelson-Oppen combination method. We present preliminary evaluation of our procedure on predicate abstraction benchmarks from device driver verification in SLAM.
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Ethernetbasierte Feldbusse und Bussysteme,lgorithms. We discuss the power and limitations of the framework we propose and we suggest several possible extensions. We briefly show an application to the study of the Delta-Notch protein signaling system in biology.
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https://doi.org/10.1007/978-3-662-66085-0kes . much faster, as indicated by our experiments. . is also used for generating refinements in the Proof-Based Refinement (.) framework. We show that our technique unifies . and . into an abstraction-refinement framework that can balance the model checking and refinement efforts.
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https://doi.org/10.34157/978-3-648-17447-0xperiences in the formal verification of key parts of the Intel IA-32 Pentium ® 4 microprocessor designs. We discuss it the context of two case studies: Pentium 4 register renaming mechanism and BUS recycle logic.
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Algorithmic Algebraic Model Checking I: Challenges from Systems Biologylgorithms. We discuss the power and limitations of the framework we propose and we suggest several possible extensions. We briefly show an application to the study of the Delta-Notch protein signaling system in biology.
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Wolf – Bug Hunter for Concurrent Software Using Formal Methodsn directly from the C code. Currently, Wolf uses BDD-based symbolic methods integrated with a guided search framework. According to our experiments, these methods complement explicit exploration methods of software model checking.
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