Classical Electrodynamics
Elsevier (Publisher)
Published in April 1985
Book
Hardback
362 pages
978-0-444-99604-6 (ISBN)
Description
This is an elementary introduction to the modern approach to classical electrodynamics using the language of differential forms, which will familiarize the reader with the modern mathematical methods used in electromagnetism. The book is self-contained and provides problems with solutions for self-education and teaching. Primarily a textbook for undergraduate students, it will also be useful for higher level students and research workers interested in modern methods of physics.
This is an elementary introduction to the modern approach to classical electrodynamics using the language of differential forms, which will familiarize the reader with the modern mathematical methods used in electromagnetism. The book is self-contained and provides problems with solutions for self-education and teaching. Primarily a textbook for undergraduate students, it will also be useful for higher level students and research workers interested in modern methods of physics.
This is an elementary introduction to the modern approach to classical electrodynamics using the language of differential forms, which will familiarize the reader with the modern mathematical methods used in electromagnetism. The book is self-contained and provides problems with solutions for self-education and teaching. Primarily a textbook for undergraduate students, it will also be useful for higher level students and research workers interested in modern methods of physics.
More details
Series
Language
English
Other
Place of publication
Oxford
United Kingdom
Publishing group
Elsevier Science & Technology
Target group
College/higher education
Professional and scholarly
Illustrations
Illustrations
Dimensions
Height: 230 mm
Width: 150 mm
ISBN-13
978-0-444-99604-6 (9780444996046)
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Schweitzer Classification
Content
1. Geometric Notions. 2. Maxwell's Equations. 3. Relativistic Formulation of Electrodynamics. 4. Time-Independent Electromagnetic Field. 5. Time-Dependent Electromagnetic Fields. Index.