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Titlebook: Automated Deduction - CADE-18; 18th International C Andrei Voronkov Conference proceedings 2002 Springer-Verlag Berlin Heidelberg 2002 Auto

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DDDLIB: A Library for Solving Quantified Difference Inequalities provide efficient algorithms for constructing formulae with the standard Boolean operators (conjunction, disjunction, negation, etc.), eliminating quantifiers, and deciding functional properties (satisfiability, validity and equivalence). The library is written in C and has interfaces for C++, Standard ML and Objective Caml.
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An LCF-Style Interface between HOL and First-Order Logiche ability to translate proofs to higher-order logic. This was integrated as a HOL tactic in 1996, and has since become a standard workhorse of interactive proof. Today, building all the theories in the most recent distribution of HOL relies on MESON to prove 1726 subgoals.
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A Note on Symmetry Heuristics in SEM especially through group actions. Both heuristics can be seen as computationally efficient ways of applying a general symmetry pruning theorem. Moreover, simple combinatorics provide some insight into the relative performances of these heuristics. We finally expose a fundamental difficulty in making SEM symmetry efficient by symmetry pruning.
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BDD-Based Decision Procedures for ,ion. Our algorithms compute the fixpoint of a set of types, which are sets of formulas satisfying some consistency conditions. We use BDDs to represent and manipulate such sets. Experimental results show that our algorithms are competitive with contemporary methods using benchmarks from TANCS 98 and TANCS 2000.
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https://doi.org/10.1007/978-3-540-68927-0The . proof development system [.] is the core of several related and well integrated research projects of the . research group.
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