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Titlebook: Regulatory Toxicology; Franz-Xaver Reichl,Michael Schwenk Reference work 20141st edition Springer-Verlag Berlin Heidelberg 2014 environmen

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Mathias Lochert corrective action. The core of our approach is an impact model language equipped with a formal semantics defined in terms of Discrete Time Markov Chains. To validate our approach, we show how employing our language can improve the accuracy of predictions used for decision-making in the Rainbow fra
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Karl Georg Heimann,Kevin Doughtyt corrective action. The core of our approach is an impact model language equipped with a formal semantics defined in terms of Discrete Time Markov Chains. To validate our approach, we show how employing our language can improve the accuracy of predictions used for decision-making in the Rainbow fra
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Eckhard von Keutzt corrective action. The core of our approach is an impact model language equipped with a formal semantics defined in terms of Discrete Time Markov Chains. To validate our approach, we show how employing our language can improve the accuracy of predictions used for decision-making in the Rainbow fra
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Thomas Steger-Hartmann,Scott Boyers. Currently, . can decide bounded-phase reachability problem for three types of channel semantics, namely lossy, stuttering and unordered channels. Messages inside these channels can be lost, duplicated and re-arranged, respectively. . efficiently and uniformly reduces the bounded-phase reachabilit
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Gert Ulrich Kuerzel,Christine Mauriacns. To allow genericity of specifications, we study first-order and second-order extensions of the propositional logic. We provide examples illustrating the application of the results to the characterization of architecture styles. Finally, we provide an experimental evaluation using the Maude rewri
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