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Titlebook: Engineering Electromagnetics; Nathan Ida Textbook 20001st edition Springer-Verlag New York 2000 Coulomb.Electromagnetism.Electrostatics.Mo

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发表于 2025-3-21 16:47:19 | 显示全部楼层 |阅读模式
书目名称Engineering Electromagnetics
编辑Nathan Ida
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概述Includes supplementary material:
图书封面Titlebook: Engineering Electromagnetics;  Nathan Ida Textbook 20001st edition Springer-Verlag New York 2000 Coulomb.Electromagnetism.Electrostatics.Mo
描述The applications involving electromagnetic fields are so pervasive that it is difficult to estimate their contribution to the industrial output: generation of electricity, power transmission lines, electric motors, actuators, relays, radio, TV and microwave transmission and reception, magnetic storage, and even the mundane little magnet used to hold a paper note on the refrigerator are all electromagnetic in nature. One would be hard pressed to find a device that works without relaying on any electromagnetic principle or effect. This text provides a good theoretical understanding of the electromagnetic field equations but also treats a large number of applications. In fact, no topic is presented unless it is directly applicable to engineering design or unless it is needed for the understanding of another topic. In electrostatics, for example, the text includes discussions of photocopying, ink-jet printing, electrostatic separation and deposition, sandpaper production, paint spraying, and powder coating. In magnetics, the applications discussed include electric motors, implantable magnets, nuclear magnetic resonance, magnetic stirring of molten materials, and electromagnetic braking
出版日期Textbook 20001st edition
关键词Coulomb; Electromagnetism; Electrostatics; Motor; Natur; Potential; algebra; design; distribution; electric m
版次1
doihttps://doi.org/10.1007/978-1-4757-3287-0
isbn_ebook978-1-4757-3287-0
copyrightSpringer-Verlag New York 2000
The information of publication is updating

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Vector Calculus,ons that use integrals and derivatives. The rules needed for these evaluations constitute vector calculus. In particular, line, volume, and surface integration are important, as are directional derivatives.
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,Coulomb’s Law and the Electric Field, start looking into the physical phenomena of electromagnetics. It will be useful to keep this in mind: The study of electromagnetics is the study of natural phenomena. There are two reasons why it is important to emphasize electromagnetics as an applied science. First, it shows that it is a useful
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,Gauss’s Law and the Electric Potential,er, we address two issues: One is to formalize some of the results obtained in the previous chapter and the second is to expand on the ideas of electric field intensity, electric flux density, and the relation between the electric field and material properties.
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Boundary Value Problems: Numerical (Approximate) Methods,act and in the form of a mathematical relation. On the other hand, only certain classes of problems could be solved. In the case of the method of images, the question was one of finding the correct system of images, a requirement that meant, almost always, that a constant potential surface exists or
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,Maxwell’s Equations, electromagnetic phenomena.” However, it is not always clear what exactly do we mean by these equations. How are they any different from what we have studied in the previous chapters? We recall discussing static and time-dependent fields and in the process, discussed many applications. To do so, we
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Reflection and Transmission of Plane Waves,pagate through different materials and changes in their amplitudes and directions as they propagate through the interfaces between materials. This aspect of the propagation of waves is fundamental and many of the properties of waves are defined by materials and their interfaces. As an example, waves
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