Search Results - "formal methods"
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The Essence of Software Engineering
Published 2018Table of Contents: “…1 The Leading Role of Software and Systems Architecture in the Age of Digitization -- 2 Formal Methods and Agile Development: Towards a Happy Marriage -- 3 Escaping Method Prison - On the Road to Real Software Engineering -- 4 What is software?…”
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Tools and Algorithms for the Construction and Analysis of Systems 25 Years of TACAS: TOOLympics, Held as Part of ETAPS 2019, Prague, Czech Republic, April 6-11, 2019, Proceedings,...
Published 2019Table of Contents: “…TOOLympics 2019: An Overview of Competitions in Formal Methods -- Confluence Competion 2019 -- International Competition on Runtime Verification (CRV) -- The Model Checking Contest (2019) -- The 2019 Comparison of Tools for the Analysis of Quantitative Formal Models -- The Rewrite Engines Competitions: A RECtrospective -- RERS 2019: Combining Synthesis with Real-World Models -- SL-COMP: Competition of Solvers for Separation Logic -- Automatic Verification of C and Java Programs: SV-COMP 2019 -- The Termination and Complexity Competition -- Competition on Software Testing (Test-Comp) -- VerifyThis - Verification Competition with a Human Factor -- SV-COMP 2019 -- CBMC Path: A Symbolic Execution Retrofit of the C Bounded Model Checker (Competition Contribution) -- Extending DIVINE with Symbolic Verification using SMT (Competition Contribution) -- ESBMC v6.0: Verifying C Programs using k-Induction and Invariant Inference (Competition Contribution) -- JBMC: Bounded Model Checking for Java Bytecode (Competition Contribution) -- JayHorn: A Java Model Checker (Competition Contribution) -- Java Pathfinder at SV-COMP 2019 -- Pinaka: Symbolic Execution meets Incremental Solving (Competition Contribution) -- PeSCo: Predicting Sequential Combinations of Verifiers (Competition Contribution) -- Symbolic Pathfinder for SV-COMP -- VeriFuzz: Program Aware Fuzzing -- VIAP 1.1 (Competition Contribution).…”
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Introduction to Logic and Critical Thinking
Published 2016Table of Contents: “…-- 1.2 Identifying arguments -- 1.3 Arguments vs. explanations -- 1.4 More complex argument structures -- 1.5 Using your own paraphrases of premises and conclusions to reconstruct arguments in standard form -- 1.6 Validity -- 1.7 Soundness -- 1.8 Deductive vs. inductive arguments -- 1.9 Arguments with missing premises -- 1.10 Assuring, guarding, and discounting -- 1.11 Evaluative language -- 1.12 Evaluating a real-life argument -- Chapter 2: Formal methods of evaluating arguments -- 2.1 What is a formal method of evaluation and why do we need them? …”
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Computer Aided Verification 31st International Conference, CAV 2019, New York City, NY, USA, July 15-18, 2019, Proceedings, Part I /
Published 2019Table of Contents: “…Automata and Timed Systems -- Symbolic Register Automata -- Abstraction Refinement Algorithms for Timed Automata -- Fast Algorithms for Handling Diagonal Constraints in Timed Automata -- Safety and co-safety comparator automata for discounted-sum inclusion -- Clock Bound Repair for Timed Systems -- Verifying Asynchronous Interactions via Communicating Session Automata -- Security and Hyperproperties -- Verifying Hyperliveness -- Quantitative Mitigation of Timing Side Channels -- Property Directed Self Composition -- Security-Aware Synthesis Using Delayed-Action Games -- Automated Hypersafety Verification -- Automated Synthesis of Secure Platform Mappings -- Synthesis -- Synthesizing Approximate Implementations for Unrealizable Specifications -- Quantified Invariants via Syntax-Guided Synthesis -- Efficient Synthesis with Probabilistic Constraints -- Membership-based Synthesis of Linear Hybrid Automata -- Overfitting in Synthesis: Theory and Practice -- Proving Unrealizability for Syntax-Guided Synthesis -- Model Checking -- BMC for Weak Memory Models: Relation Analysis for Compact SMT Encodings -- When Human Intuition Fails: Using Formal Methods to Find an Error in the "Proof" of a Multi-Agent Protocol -- Extending NUXMV with Timed Transition Systems and Timed Temporal Properties -- Cerberus-BMC: a Principled Reference Semantics and Exploration Tool for Concurrent and Sequential C -- Cyber-physical Systems and Machine Learning -- Multi-Armed Bandits for Boolean Connectives in Hybrid System Falsification -- StreamLAB: Stream-based Monitoring of Cyber-Physical Systems -- VerifAI: A Toolkit for the Formal Design and Analysis of Artificial Intelligence-Based Systems -- The Marabou Framework for Verification and Analysis of Deep Neural Networks -- Probabilistic Systems, Runtime Techniques -- Probabilistic Bisimulation for Parameterized Systems -- Semi-Quantitative Abstraction and Analysis of Chemical Reaction Networks -- PAC Statistical Model Checking for Markov Decision Processes and Stochastic Games -- Symbolic Monitoring against Specifications Parametric in Time and Data -- STAMINA: STochastic Approximate Model-checker for INfinite-state Analysis -- Dynamical, Hybrid, and Reactive Systems -- Local and Compositional Reasoning For Optimized Reactive Systems -- Robust Controller Synthesis in Timed Büchi Automata: A Symbolic Approach -- Flexible Computational Pipelines for Robust Abstraction-based Control Synthesis -- Temporal Stream Logic: Synthesis beyond the Bools -- Run-Time Optimization for Learned Controllers through Quantitative Games -- Taming Delays in Dynamical Systems: Unbounded Verification of Delay Differential Equations.…”
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Structure and Interpretation of Classical Mechanics
Published 2015OAPEN Library: download the publication
OAPEN Library: description of the publication
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