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Introduction to electromagnetic theo...
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Papachristou, Costas J.
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Introduction to electromagnetic theory and the physics of conducting solids
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Introduction to electromagnetic theory and the physics of conducting solids/ by Costas J. Papachristou.
作者:
Papachristou, Costas J.
出版者:
Cham :Springer International Publishing : : 2020.,
面頁冊數:
xii, 246 p. :ill., digital ;24 cm.
內容註:
Part A: The physics of conducting solids -- Atoms, molecules, and crystals -- Electrical conductivity of solids -- Distribution of energy -- Part B: Electromagnetic fields and waves -- Elements of field theory -- Static electric fields -- Electric current -- Static magnetic fields -- Static electric and magnetic fields in matter -- Time-dependent electromagnetic fields -- Electromagnetic waves -- Appendix A -- Appendix B -- Bibliography -- Index.
Contained By:
Springer eBooks
標題:
Electromagnetic theory. -
電子資源:
https://doi.org/10.1007/978-3-030-30996-1
ISBN:
9783030309961
Introduction to electromagnetic theory and the physics of conducting solids
Papachristou, Costas J.
Introduction to electromagnetic theory and the physics of conducting solids
[electronic resource] /by Costas J. Papachristou. - Cham :Springer International Publishing :2020. - xii, 246 p. :ill., digital ;24 cm.
Part A: The physics of conducting solids -- Atoms, molecules, and crystals -- Electrical conductivity of solids -- Distribution of energy -- Part B: Electromagnetic fields and waves -- Elements of field theory -- Static electric fields -- Electric current -- Static magnetic fields -- Static electric and magnetic fields in matter -- Time-dependent electromagnetic fields -- Electromagnetic waves -- Appendix A -- Appendix B -- Bibliography -- Index.
This book consists of two parts. Part A (Chapters 1-3) is an introduction to the physics of conducting solids, while Part B (Chapters 4-10) is an introduction to the theory of electromagnetic fields and waves. The book is intended to introduce the student to classical electrodynamics and, at the same time, to explain in simple terms the quantum theory of conducting substances - in particular, the solid ones. Excessive mathematical proof is avoided as much as possible, in favor of pedagogical efficiency at an introductory level. The theory of vector fields is briefly discussed in a separate chapter, helping the student cope with the mathematical challenges of Maxwell's theory. The book serves as a primary source for a sophomore-level electromagnetics course in an electronics-oriented engineering program, but it can also be used as a secondary (tutorial) source for an intermediate-level course in electrodynamics for physicists and engineers. The content is based on the author's lecture notes for his sophomore-level Physics course at the Hellenic Naval Academy.
ISBN: 9783030309961
Standard No.: 10.1007/978-3-030-30996-1doiSubjects--Topical Terms:
526478
Electromagnetic theory.
LC Class. No.: QC670 / .P373 2020
Dewey Class. No.: 530.141
Introduction to electromagnetic theory and the physics of conducting solids
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This book consists of two parts. Part A (Chapters 1-3) is an introduction to the physics of conducting solids, while Part B (Chapters 4-10) is an introduction to the theory of electromagnetic fields and waves. The book is intended to introduce the student to classical electrodynamics and, at the same time, to explain in simple terms the quantum theory of conducting substances - in particular, the solid ones. Excessive mathematical proof is avoided as much as possible, in favor of pedagogical efficiency at an introductory level. The theory of vector fields is briefly discussed in a separate chapter, helping the student cope with the mathematical challenges of Maxwell's theory. The book serves as a primary source for a sophomore-level electromagnetics course in an electronics-oriented engineering program, but it can also be used as a secondary (tutorial) source for an intermediate-level course in electrodynamics for physicists and engineers. The content is based on the author's lecture notes for his sophomore-level Physics course at the Hellenic Naval Academy.
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