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Titlebook: Computational Electromagnetics; Thomas Rylander,Par Ingelström,Anders Bondeson Textbook 2013Latest edition Springer Science+Business Media

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Steuerung des Markentransfererfolgstion systems, radar systems, electrical motors, electrical generators, computers, microwave filters, lasers, industrial heating devices, medical imaging systems, electrical power networks, transformers and many more. Each of these examples is used in a broad range of situations. Radar, for example,
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Harmonie Sauer,Antoinette Weibelcurl and divergence operators) and derivatives with respect to time. The sought electromagnetic field is a function of space and time that must satisfy Maxwell’s equations. A rather simple way to pursue a numerical solution is to represent the electromagnetic field by its function values at a (finit
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https://doi.org/10.1007/978-3-658-28886-0l mechanics, fluid dynamics, acoustics, and thermal conduction. Jin [40, 41] and Peterson [54] give good accounts of the FEM for electromagnetics. More mathematical treatments of the same topic are given in [12, 48]. This chapter gives an introduction to FEM in general and FEM for Maxwell’s equation
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Steuerung ereignisdiskreter Prozesseost in terms of computational time and memory requirements. However, there may also be a considerable effort associated with other issues such as the programming of the numerical algorithm or the construction of geometrical descriptions suitable for the the computations at hand.
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Summary and Overview,ost in terms of computational time and memory requirements. However, there may also be a considerable effort associated with other issues such as the programming of the numerical algorithm or the construction of geometrical descriptions suitable for the the computations at hand.
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