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Titlebook: Computer Safety, Reliability, and Security; SAFECOMP 2016 Worksh Amund Skavhaug,Jérémie Guiochet,Friedemann Bitsch Conference proceedings 2

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Information Sources on and Around S-Plus,nt amount of time and efforts to be produced. Moreover, safety critical systems are expected to operate for a long period of time and constantly subject to changes during both development and operational phases. Hence, safety cases are built as living documents that should always be maintained to ju
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Information Sources on and Around S-Plus,y critical context. One reason for this is that model checkers often provide only incomplete results when used on real code due to restrictions placed on the environment of the system in order to facilitate the verification. In order to use these results as evidence in an assurance case, one needs t
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Information Sources on and Around S-Plus, design. In the context of safety-critical systems, their use for reuse of safety assurance efforts has encountered some challenges: the need for evidence supporting the confidence in the contracts; and the challenge of context, where contracts need to impose different requirements on different syst
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Information Sources on and Around S-Plus,the systems involves various stakeholders including professionals, governments, and ordinary citizens. Therefore, for the safety of systems and the environments, consensus building among various stakeholders (e.g., professionals, developers, government, citizens) is crucial. However, ordinary citize
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Information Sources on and Around S-Plus,per we present a method of safety case integration with hazard tables based on the use of parametrized argument patterns. We describe a hazard table metamodel, a safety argument pattern and a mechanism of pattern instantiation using a linking table which represents references to system lifecycle art
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