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Specifying and executing requirements: the play-in/play-out approach.

, , and . OOPSLA Companion, page 84-85. ACM, (2002)

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Supporting UML-based development of embedded systems by formal techniques., , , , and . Softw. Syst. Model., 7 (2): 131-155 (2008)SMT-Based Analysis of Biological Computation., , , and . NASA Formal Methods, volume 7871 of Lecture Notes in Computer Science, page 78-92. Springer, (2013)Formal Modeling of C. elegans Development: A Scenario-Based Approach., , , , , , and . CMSB, volume 2602 of Lecture Notes in Computer Science, page 4-20. Springer, (2003)Testing Scenario-Based Models., , and . FASE, volume 4422 of Lecture Notes in Computer Science, page 306-320. Springer, (2007)Temporal Logic for Scenario-Based Specifications., , , , and . TACAS, volume 3440 of Lecture Notes in Computer Science, page 445-460. Springer, (2005)Specifying and executing requirements: the play-in/play-out approach., , and . OOPSLA Companion, page 84-85. ACM, (2002)Formal Semantics and Verification of Network-Based Biocomputation Circuits., , , , and . VMCAI, volume 12597 of Lecture Notes in Computer Science, page 464-485. Springer, (2021)Formal Verification for Natural and Engineered Biological Systems.. FMCAD, page 1. IEEE, (2020)Symbolic Approximation of the Bounded Reachability Probability in Large Markov Chains., , , , and . QEST, volume 8657 of Lecture Notes in Computer Science, page 388-403. Springer, (2014)Modeling and Verification of a Telecommunication Application Using Live Sequence Charts and the Play-Engine Tool., , and . ATVA, volume 3707 of Lecture Notes in Computer Science, page 414-428. Springer, (2005)