Our systems are now restored following recent technical disruption, and we’re working hard to catch up on publishing. We apologise for the inconvenience caused. Find out more

Recommended product

Popular links

Popular links


Manifolds, Tensors, and Forms

Manifolds, Tensors, and Forms

Manifolds, Tensors, and Forms

An Introduction for Mathematicians and Physicists
Paul Renteln, California State University, San Bernardino
November 2013
Hardback
9781107042193
NZD$125.95
inc GST
Hardback
USD
eBook

    Providing a succinct yet comprehensive treatment of the essentials of modern differential geometry and topology, this book's clear prose and informal style make it accessible to advanced undergraduate and graduate students in mathematics and the physical sciences. The text covers the basics of multilinear algebra, differentiation and integration on manifolds, Lie groups and Lie algebras, homotopy and de Rham cohomology, homology, vector bundles, Riemannian and pseudo-Riemannian geometry, and degree theory. It also features over 250 detailed exercises, and a variety of applications revealing fundamental connections to classical mechanics, electromagnetism (including circuit theory), general relativity and gauge theory. Solutions to the problems are available for instructors at www.cambridge.org/9781107042193.

    • Demonstrates how to use tensors and forms and how to apply them to problems in mathematics and physics
    • Bridges the gap between pure mathematics and applied science by explaining in detail the relationship between abstract and concrete approaches (theory and computations)
    • Requires minimal prerequisites and explains advanced concepts not usually taught at this level, providing an easier route to these subjects for mathematicians and scientists who are not experts in the field

    Product details

    No date available
    Adobe eBook Reader
    9781107597075
    0 pages
    0kg
    61 b/w illus. 271 exercises
    This ISBN is for an eBook version which is distributed on our behalf by a third party.

    Table of Contents

    • Preface
    • 1. Linear algebra
    • 2. Multilinear algebra
    • 3. Differentiation on manifolds
    • 4. Homotopy and de Rham cohomology
    • 5. Elementary homology theory
    • 6. Integration on manifolds
    • 7. Vector bundles
    • 8. Geometric manifolds
    • 9. The degree of a smooth map
    • Appendixes
    • References
    • Index.
    Resources for
    Type
    Errata
    Size: 177.89 KB
    Type: application/pdf
    Symbol Table
    Size: 199.05 KB
    Type: application/pdf
    Solutions_manual.pdf
    Size: 1.32 MB
    Type: application/pdf
    Sign inThis resource is locked and access is given only to lecturers adopting the textbook for their class. We need to enforce this strictly so that solutions are not made available to students. To gain access to locked resources you either need first to sign in or register for an account.