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Product Description This textbook is intended for undergraduate and graduate students taking an intermediate or advanced course in electromagnetism. It presents electromagnetism as a classical theory, based, like mechanics, on principles that are independent of the atomic constitution of matter. This book is unique among electrodynamics texts in its treatment of the precise manner in which electromagnetism is linked to mechanics and thermodynamics. A clear distinction is maintained between such concepts as field and force, or radiation and heat. Applications include radiation from charged particles, electromagnetic wave propagation and guided waves, thermoelectricity, magnetohydrodynamics, piezoelectricity, ferroelectricity, paramagnetic cooling, ferromagnetism and superconductivity. There are 225 worked examples of dynamical and thermal effects of electromagnetic fields, and of effects resulting from the motion of bodies. The concise, methodological approach of this book will be valuable to students and will make it of special interest to tutors and lecturers. About the Author Professor Attay Kovetz, School of Physics and Astronomy, Tel Aviv University, Ramat Aviv 69978, Israel
This text investigates the fundamental principles of classical electromagnetism and its intricate connections to mechanics and thermodynamics. Author Attay Kovetz, a professor at Tel Aviv University, utilizes a methodological framework to present electromagnetism as a theory independent of atomic structure. By emphasizing the distinction between fields, forces, radiation, and heat, the book provides a rigorous foundation for students and researchers to analyze complex physical phenomena.
What You Will Find
Experts and educators recognize this text as a specialized resource for bridging the gap between electromagnetism and classical mechanics. Readers frequently note the technical density of the prose, which serves as a valuable reference for advanced undergraduate and graduate physics curricula.
Page Count:
351
Publication Date:
2000-05-15
Publisher:
Oxford University Press
ISBN-10:
019850604X
ISBN-13:
9780198506041
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