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Problems and Solutions on Electromagnetism

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Preface
Introduction
Electrostatics
Basic Laws of Electrostatics (1001-1023)p. 3
Electrostatic Field in a Conductor (1024-1042)p. 26
Electrostatic Field in a Dielectric Medium (1043-1061)p. 48
Typical Methods for Solution of Electrostatic Problems - Separation of Variables, Methods of Images, Green's Function and Multipole Expansion (1062-1095)p. 72
Miscellaneous Applications (1096-1108)p. 120
Magnetostatic Field and Quasi-Stationary Electromagnetic Fields
Magnetic Field of Currents (2001-2038)p. 147
Electromagnetic Induction (2039-2063)p. 193
Action of Electromagnetic Field on Current-Carrying Conductors and Charged Particles (2064-2090)p. 220
Miscellaneous Applications (2091-2119)p. 260
Circuit Analysis
Basic Circuit Analysis (3001-3026)p. 315
Electric and Magnetic Circuits (3027-3044)p. 350
Analog Circuits (3045-3057)p. 367
Digital Circuits (3058-3065)p. 379
Nuclear Electronics (3066-3082)p. 385
Miscellaneous Problems (3083-3090)p. 404
Electromagnetic Waves
Plane Electromagnetic Waves (4001-4009)p. 423
Reflection and Refraction of Electromagnetic Waves on Interface between Two Media (4010-4024)p. 439
Propagation of Electromagnetic Waves in a Medium (4025-4045)p. 472
Electromagnetic Radiation and Radiating Systems (4046-4067)p. 511
Relativity, Particle-Field Interactions
The Lorentz Transformation (5001-5017)p. 553
Electromagnetic Field of a Charged Particle (5018-5025)p. 580
Motion of a Charged Particle in Electromagnetic Field (5026-5039)p. 598
Scattering and Dispersion of Electromagnetic Waves (5040-5056)p. 630
Index to Problemsp. 659
Table of Contents provided by Blackwell. All Rights Reserved.

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The material for these volumes has been selected from the past twenty years' examination questions for graduate students at University of California at Berkeley, Columbia University, the University of Chicago, MIT, State University of New York at Buffalo, Princeton University and University of Wisconsin.
This volume comprises 440 problems and is divided into five parts:

(I) Electrostatics;

(II) Magnetostatic Field and Quasi-Stationary Electromagnetic Field;

(III) Circuit Analysis;

(IV) Electromagnetic Waves;

(V) Relativistic Particle-Field Interactions.

-Field Interactions.

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