Introduction to Mathematical Logic

Introduction to Mathematical Logic

Einband:
Kartonierter Einband
EAN:
9789814343879
Untertitel:
Englisch
Genre:
Mathematik
Autor:
Michal Walicki
Herausgeber:
World Scientific Publishing Company
Anzahl Seiten:
280
Erscheinungsdatum:
15.12.2011
ISBN:
978-981-4343-87-9

Klappentext
This is a systematic and well-paced introduction to mathematical logic. Excellent as a course text, the book does not presuppose any previous knowledge and can be used also for self-study by more ambitious students. Starting with the basics of set theory, induction and computability, it covers propositional and first-order logic their syntax, reasoning systems and semantics. Soundness and completeness results for Hilbert's and Gentzen's systems are presented, along with simple decidability arguments. The general applicability of various concepts and techniques is demonstrated by highlighting their consistent reuse in different contexts. Unlike in most comparable texts, presentation of syntactic reasoning systems precedes the semantic explanations. The simplicity of syntactic constructions and rules of a high, though often neglected, pedagogical value aids students in approaching more complex semantic issues. This order of presentation also brings forth the relative independence of syntax from the semantics, helping to appreciate the importance of the purely symbolic systems, like those underlying computers. An overview of the history of logic precedes the main text, in which careful presentation of concepts, results and examples is accompanied by the informal analogies and illustrations. These informal aspects are kept clearly apart from the technical ones. Together, they form a unique text which may be appreciated equally by lecturers and students occupied with mathematical precision, as well as those interested in the relations of logical formalisms to the problems of computability and the philosophy of mathematical logic.

Inhalt
History of Logic; Basic Set Theory and Induction; Turing Machines and Computability; Propositional Logic: Hilbert's and Gentzen's Proof Systems; Boolean and Set-Valued Semantics; DNF and CNF; Soundness and Completeness; First-Order Logic: Hilbert's and Gentzen's Proof Systems; Tarski's Semantics; Prenex NF; Term Models and Prolog; Soundness and Completeness; Exercises to Each Topic.


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