Classical Field Theory
This text concerns continuum mechanics, electrodynamics and the mechanics of electrically polarized media, and gravity. Geared toward advanced undergraduates and graduate students, it offers an accessible approach that formulates theories according to the principle of least action. The chief advantage of this formulation is its simplicity and ease, making the physical content of classical subjects available to students of physics in a concise form.
Author Davison E. Soper, a Professor of Physics at the University of Oregon, intended this treatment as a primary text for courses in classical field theory as well as a supplement for courses in classical mechanics or classical electrodynamics. Topics include fields and transformation laws, the principle of stationary action, general features of classical field theory, the mechanics of fluids and elastic solids, special types of solids, nonrelativistic approximations, and the electromagnetic field. Additional subjects include electromagnetically polarized materials, gravity, momentum conservation in general relativity, and dissipative processes.
1000947101
Classical Field Theory
This text concerns continuum mechanics, electrodynamics and the mechanics of electrically polarized media, and gravity. Geared toward advanced undergraduates and graduate students, it offers an accessible approach that formulates theories according to the principle of least action. The chief advantage of this formulation is its simplicity and ease, making the physical content of classical subjects available to students of physics in a concise form.
Author Davison E. Soper, a Professor of Physics at the University of Oregon, intended this treatment as a primary text for courses in classical field theory as well as a supplement for courses in classical mechanics or classical electrodynamics. Topics include fields and transformation laws, the principle of stationary action, general features of classical field theory, the mechanics of fluids and elastic solids, special types of solids, nonrelativistic approximations, and the electromagnetic field. Additional subjects include electromagnetically polarized materials, gravity, momentum conservation in general relativity, and dissipative processes.
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Classical Field Theory

Classical Field Theory

by Davison E. Soper
Classical Field Theory

Classical Field Theory

by Davison E. Soper

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$15.95 
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Overview

This text concerns continuum mechanics, electrodynamics and the mechanics of electrically polarized media, and gravity. Geared toward advanced undergraduates and graduate students, it offers an accessible approach that formulates theories according to the principle of least action. The chief advantage of this formulation is its simplicity and ease, making the physical content of classical subjects available to students of physics in a concise form.
Author Davison E. Soper, a Professor of Physics at the University of Oregon, intended this treatment as a primary text for courses in classical field theory as well as a supplement for courses in classical mechanics or classical electrodynamics. Topics include fields and transformation laws, the principle of stationary action, general features of classical field theory, the mechanics of fluids and elastic solids, special types of solids, nonrelativistic approximations, and the electromagnetic field. Additional subjects include electromagnetically polarized materials, gravity, momentum conservation in general relativity, and dissipative processes.

Product Details

ISBN-13: 9780486462608
Publisher: Dover Publications
Publication date: 02/04/2008
Series: Dover Books on Physics
Pages: 272
Product dimensions: 6.14(w) x 9.21(h) x (d)

About the Author

Davison E. Soper is Professor of Physics at the University of Oregon.

Table of Contents

1. Fields and Transformation Laws
2. The Principle of Stationary Action
3. Some General Features of Classical Field Theory
4. The Mechanics of Fluids
5. The Mechanics of Elastic Solids
6. Special Types of Solids
7. The Nonrelativistic Approximation
8. The Electromagnetic Field
9. Further General Properties of Field Theories
10. Electromagnetically Polarized Materials
11. Gravity
12. Momentum Conservation in General Relativity
13. Dissipative Processes
Index
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