Topology (classic Version)

Paperback | March 10, 2017

byJames Munkres

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For a senior undergraduate or first year graduate-level course in Introduction to Topology. Appropriate for a one-semester course on both general and algebraic topology or separate courses treating each topic separately.


This title is part of the Pearson Modern Classics series. Pearson Modern Classics are acclaimed titles at a value price. Please visit www.pearsonhighered.com/math-classics-series for a complete list of titles.


This text is designed to provide instructors with a convenient single text resource for bridging between general and algebraic topology courses. Two separate, distinct sections (one on general, point set topology, the other on algebraic topology) are each suitable for a one-semester course and are based around the same set of basic, core topics. Optional, independent topics and applications can be studied and developed in depth depending on course needs and preferences.

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For a senior undergraduate or first year graduate-level course in Introduction to Topology. Appropriate for a one-semester course on both general and algebraic topology or separate courses treating each topic separately. This title is part of the Pearson Modern Classics series. Pearson Modern Classics are acclaimed tit...

Format:PaperbackDimensions:560 pages, 8.9 × 7 × 1.5 inPublished:March 10, 2017Publisher:Pearson EducationLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0134689518

ISBN - 13:9780134689517

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Table of Contents

I. GENERAL TOPOLOGY.

 1. Set Theory and Logic.

 2. Topological Spaces and Continuous Functions.

 3. Connectedness and Compactness.

 4. Countability and Separation Axioms.

 5. The Tychonoff Theorem.

 6. Metrization Theorems and Paracompactness.

 7. Complete Metric Spaces and Function Spaces.

 8. Baire Spaces and Dimension Theory.

II. ALGEBRAIC TOPOLOGY.

 9. The Fundamental Group.

10. Separation Theorems in the Plane.

11. The Seifert-van Kampen Theorem.

12. Classification of Surfaces.

13. Classification of Covering Spaces.

14. Applications to Group Theory.

Index.