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Titlebook: Computational Electromagnetics and Its Applications; Thomas G. Campbell,R. A. Nicolaides,Manuel D. Sala Book 1997 Kluwer Academic Publishe

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Problemstellung und Zielsetzung,as well as future research opportunities in computational electromagnetics (CEM) applications. A description of EM test facilities and laboratories, including measurement capabilities is presented. Also, current and anticipated CEM research in scattering, radiation, field penetration, and interferen
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https://doi.org/10.1007/978-3-322-99258-1ndent on the availability of a new generation of simulators which are able to model distributed electromagnetic effects and which exhibit the computation efficiency necessary for computer-aided design purposes. Except for very simple systems, such distributed electromagnetic analysis is hindered by
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Technik der Turboflugtriebwerkeppearance of spurious solutions (although of another kind from that referred to in the titles of [1]–[2]). This is because second order wave equations with interior divergence constraints and second order wave equations with divergence boundary conditions are not always equivalent. Discretizations (
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https://doi.org/10.1007/978-3-663-11509-0f 0.1–10 .m. A detailed understanding of the electrodynamics of microlaser cavities is required in order to understand their operation and optimize their design. The finite-difference time-domain (FDTD) Maxwell’s equations solution method holds much promise for this application. This paper reviews t
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https://doi.org/10.1007/978-3-663-11509-0 review of the methodology with particular emphasis on new developments over the past five years relating to feed modeling, parallelization and mesh truncation. New applications which illustrate the method’s capabilities, versatility and utility for general purpose applications are discussed. Specif
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