<p><p>As computer software becomes more complex, the question of how its correctness can be assured grows ever more critical. Formal logic embodied in computer programs is an important part of the answer to this problem.</p><p>This must-read text presents the pioneering work of the late Professor Ja
Computational Logic and Set Theory: Applying Formalized Logic to Analysis
β Scribed by Jacob T. Schwartz, Domenico Cantone, Eugenio G. Omodeo (auth.)
- Publisher
- Springer-Verlag London
- Year
- 2011
- Tongue
- English
- Leaves
- 435
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
As computer software becomes more complex, the question of how its correctness can be assured grows ever more critical. Formal logic embodied in computer programs is an important part of the answer to this problem.
This must-read text presents the pioneering work of the late Professor Jacob (Jack) T. Schwartz on computational logic and set theory and its application to proof verification techniques, culminating in the ΓtnaNova system, a prototype computer program designed to verify the correctness of mathematical proofs presented in the language of set theory. Taking a systematic approach, the book begins with a survey of traditional branches of logic before describing in detail the underlying design of the ΓtnaNova system. Major classical results on undecidability and unsolvability are then recast for this system. Readers do not require great knowledge of formal logic in order to follow the text, but a good understanding of standard programming techniques, and a familiarity with mathematical definitions and proofs reflecting the usual levels of rigor is assumed.
Topics and features:
- With a Foreword by Dr. Martin Davis, Professor Emeritus of the Courant Institute of Mathematical Sciences, New York University
- Describes in depth how a specific first-order theory can be exploited to model and carry out reasoning in branches of computer science and mathematics
- Presents an unique system for automated proof verification on the large scale
- Integrates important proof-engineering issues, reflecting the goals of large-scale verifiers
- Includes an appendix showing formalized proofs of ordinals, of various properties of the transitive closure operation, of finite and transfinite induction principles, and of Zornβs lemma
This ground-breaking work is essential reading for researchers and advanced graduates of computer science.
β¦ Table of Contents
Front Matter....Pages I-XVII
Introduction....Pages 1-35
Propositional- and Predicate-Calculus Preliminaries....Pages 37-91
A Survey of Inference Mechanisms....Pages 93-203
More on the Structure of the Verifier System....Pages 205-255
A Closer Examination of the Sequence of Definitions and Theorems Presented in this Book....Pages 257-311
Undecidability and Unsolvability....Pages 313-371
A Self-contained Beginning for Refβs Main Proof Scenario....Pages 373-409
Back Matter....Pages 411-416
β¦ Subjects
Computer Science, general; Computation by Abstract Devices; Mathematical Logic and Formal Languages
π SIMILAR VOLUMES
<p><p>As computer software becomes more complex, the question of how its correctness can be assured grows ever more critical. Formal logic embodied in computer programs is an important part of the answer to this problem.</p><p>This must-read text presents the pioneering work of the late Professor Ja
<p><p>As computer software becomes more complex, the question of how its correctness can be assured grows ever more critical. Formal logic embodied in computer programs is an important part of the answer to this problem.</p><p>This must-read text presents the pioneering work of the late Professor Ja