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|a 9783642141867
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|a 10.1007/978-3-642-14186-7
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|a QA76.9.A43
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|a COM051300
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|a 005.1
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|a Theory and Applications of Satisfiability Testing – SAT 2010
|h [electronic resource] :
|b 13th International Conference, SAT 2010, Edinburgh, UK, July 11-14, 2010. Proceedings /
|c edited by Ofer Strichman, Stefan Szeider.
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|a Berlin, Heidelberg :
|b Springer Berlin Heidelberg,
|c 2010.
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|a XIII, 400 p. 74 illus.
|b online resource.
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|a text
|b txt
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|a computer
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|a online resource
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|a text file
|b PDF
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|a Lecture Notes in Computer Science,
|x 0302-9743 ;
|v 6175
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|a 1. Invited Talks -- The Big Deal: Applying Constraint Satisfaction Technologies Where It Makes the Difference -- Exact Algorithms and Complexity -- 2. Regular Papers -- Improving Stochastic Local Search for SAT with a New Probability Distribution -- Lower Bounds for Width-Restricted Clause Learning on Small Width Formulas -- Proof Complexity of Propositional Default Logic -- Automated Testing and Debugging of SAT and QBF Solvers -- Rewriting (Dependency-)Quantified 2-CNF with Arbitrary Free Literals into Existential 2-HORN -- Synthesizing Shortest Linear Straight-Line Programs over GF(2) Using SAT -- sQueezeBF: An Effective Preprocessor for QBFs Based on Equivalence Reasoning -- Non Uniform Selection of Solutions for Upper Bounding the 3-SAT Threshold -- Symmetry and Satisfiability: An Update -- A Non-prenex, Non-clausal QBF Solver with Game-State Learning -- SAT Solving with Reference Points -- Integrating Dependency Schemes in Search-Based QBF Solvers -- An Exact Algorithm for the Boolean Connectivity Problem for k-CNF -- Improving Unsatisfiability-Based Algorithms for Boolean Optimization -- Encoding Techniques, Craig Interpolants and Bounded Model Checking for Incomplete Designs -- Statistical Methodology for Comparison of SAT Solvers -- On the Relative Merits of Simple Local Search Methods for the MAX-SAT Problem -- The Seventh QBF Solvers Evaluation (QBFEVAL’10) -- Complexity Results for Linear XSAT-Problems -- Bounds on Threshold of Regular Random k-SAT -- Dynamic Scoring Functions with Variable Expressions: New SLS Methods for Solving SAT -- 3. Short Papers -- Improved Local Search for Circuit Satisfiability -- A System for Solving Constraint Satisfaction Problems with SMT -- Two Techniques for Minimizing Resolution Proofs -- On Moderately Exponential Time for SAT -- Minimising Deterministic Büchi Automata Precisely Using SAT Solving -- Exploiting Circuit Representations in QBF Solving -- Reconstructing Solutions after Blocked Clause Elimination -- An Empirical Study of Optimal Noise and Runtime Distributions in Local Search -- Green-Tao Numbers and SAT -- Exact MinSAT Solving -- Uniquely Satisfiable k-SAT Instances with Almost Minimal Occurrences of Each Variable -- Assignment Stack Shrinking -- Simple but Hard Mixed Horn Formulas -- Zero-One Designs Produce Small Hard SAT Instances.
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|a Computer science.
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|a Computer programming.
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|a Software engineering.
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|a Algorithms.
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|a Computer logic.
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|a Mathematical logic.
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|a Computer science
|x Mathematics.
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|a Computer Science.
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|a Algorithm Analysis and Problem Complexity.
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|a Software Engineering.
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|a Programming Techniques.
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|a Logics and Meanings of Programs.
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|a Mathematical Logic and Formal Languages.
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|a Mathematics of Computing.
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|a Strichman, Ofer.
|e editor.
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|a Szeider, Stefan.
|e editor.
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|a SpringerLink (Online service)
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|t Springer eBooks
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|i Printed edition:
|z 9783642141850
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|a Lecture Notes in Computer Science,
|x 0302-9743 ;
|v 6175
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|u http://dx.doi.org/10.1007/978-3-642-14186-7
|z Full Text via HEAL-Link
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|a ZDB-2-SCS
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|a ZDB-2-LNC
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|a Computer Science (Springer-11645)
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