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Titlebook: Electrodynamics: A Concise Introduction; James Blake Westgard Textbook 1997 Springer-Verlag New York, Inc. 1997 Electromagnetism.Magnetic

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Introduction to Electrodynamics,ry in general. It is convenient to distinguish three periods in the history which we might call ., and ., each initiated by certain clusters of critical, distinguishing discoveries. Curiously, these clusters occurred around the centennial years 1600, 1800, and 1900.
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Beyond the Classical Theory,chemistry. The electron was the first elementary particle to be discovered, and the practical applications of electronics are virtually innumerable. On the other hand, investigations of its properties and interactions was a major factor in the demise of classical physics and its replacement by quantum physics.
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Claudia de Witt,Christina GloerfeldEinstein’s paper, “On the Electrodynamics of Moving Bodies” published in 1905, was the first of a series of papers revolutionizing our understanding of space and time and the kinematics of particles. It is interesting that relativity, which is often treated primarily as a theory of mechanics, has electromagnetism as its primary source.
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,Ästhetische Theorie und American Studies,The motion of charged particles moving in an electromagnetic field are determined by the Lorentz force. In this chapter we consider some special applications: uniform fields, electric and magnetic lenses, scattering, and a kinetic field formulation of the equations.
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Particle Motion in Electromagnetic Fields,The motion of charged particles moving in an electromagnetic field are determined by the Lorentz force. In this chapter we consider some special applications: uniform fields, electric and magnetic lenses, scattering, and a kinetic field formulation of the equations.
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ing material. In organizing the text, I have taken care to give explicit cross references, to show the intermediate steps in calculations, and to give many examples. Provided they are within the mathematical scope of this book, I have preferred elegant mathematical treatments over more ad hoc ones, not only f978-1-4612-7514-5978-1-4612-2356-6
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Stefan Süß,Elena Gesang,Sascha Ruhlethese topics requires detailed knowledge of condensed matter physics, including quantum theory, and is beyond the scope of this book. Instead, this chapter is limited to an empirical, mostly macroscopic, treatment of Maxwell’s equations applied to dielectric and magnetic materials. We will restrict
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