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Titlebook: Efficient Solving of Large Arithmetic Constraint Systems with Complex Boolean Structure; Proof Engines for th Christian Herde Book 2011 Vie

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https://doi.org/10.1007/978-3-662-34644-0 of . arithmetic constraints which may contain transcendental functions, like sine, cosine, and the exponential function. This gives rise to a plethora of problems, in particular (a) how to efficiently and sufficiently completely solve conjunctive combinations of constraints in the undecidable domai
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https://doi.org/10.1007/978-3-662-34644-0a of problems, in particular (a) how to efficiently and sufficiently completely solve conjunctive combinations of constraints in the undecidable domain of nonlinear constraints involving transcendental functions and (b) how to efficiently maneuver the large search spaces arising from the potentially rich Boolean structure of the overall formula.
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https://doi.org/10.1007/978-3-322-92232-8 arithmetic over the reals) in order to solve arbitrary Boolean combinations of such constraints. SAT solvers thus take a key role in technologies which help to master the complexity of ever larger circuits and ever more refined embedded software, which has sparked much research on enhancing their capabilities.
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Extending DPLL for Pseudo-Boolean Constraints, arithmetic over the reals) in order to solve arbitrary Boolean combinations of such constraints. SAT solvers thus take a key role in technologies which help to master the complexity of ever larger circuits and ever more refined embedded software, which has sparked much research on enhancing their capabilities.
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Introduction,y delegating more and more safety-critical functions to computers is only acceptable if computing science manages to come up with new methods and tools which help to master the complexity of such systems and thus ensure their safety.
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Der Krieg als autopoietisches Systemy delegating more and more safety-critical functions to computers is only acceptable if computing science manages to come up with new methods and tools which help to master the complexity of such systems and thus ensure their safety.
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