Theodore Frankel explains those parts of exterior differential forms, differential geometry, algebraic and differential topology, Lie groups, vector bundles and Chern forms essential to a better understanding of classical and modern physics and engineering. Key highlights of his new edition are the
The Geometry of Physics: An Introduction , Second Edition
โ Scribed by Theodore Frankel
- Publisher
- Cambridge University Press
- Year
- 2003
- Tongue
- English
- Leaves
- 721
- Edition
- 2
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Theodore Frankel explains those parts of exterior differential forms, differential geometry, algebraic and differential topology, Lie groups, vector bundles and Chern forms essential to a better understanding of classical and modern physics and engineering. Key highlights of his new edition are the inclusion of three new appendices that cover symmetries, quarks, and meson masses; representations and hyperelastic bodies; and orbits and Morse-Bott Theory in compact Lie groups. Geometric intuition is developed through a rather extensive introduction to the study of surfaces in ordinary space. First Edition Hb (1997): 0-521-38334-X First Edition Pb (1999): 0-521-38753-1
๐ SIMILAR VOLUMES
Theodore Frankel explains those parts of exterior differential forms, differential geometry, algebraic and differential topology, Lie groups, vector bundles and Chern forms essential to a better understanding of classical and modern physics and engineering. Key highlights of his new edition are the
<p><em>"The book contains a very large amount of material and is useful for students and specialists as a reference book."</em></p><p><em>Zentralblatt MATH</em></p><p>ย </p><p>This book focuses on the unifying power of the geometrical language in bringing together concepts from many different areas o
A very good book: buy it. But only if you are a scientist or student of physics/mathematics. This is not popular-science-common-public level.
Theodore Frankel explains those parts of exterior differential forms, differential geometry, algebraic and differential topology, Lie groups, vector bundles and Chern forms essential to a better understanding of classical and modern physics and engineering. Key highlights of his new edition are the