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Titlebook: Electromagnetic Field Computation by Network Methods; Peter Russer,Mauro Mongiardo,Leopold B. Felsen Book 2009 Springer-Verlag Berlin Heid

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Electromagnetic Field Computation by Network Methods978-3-540-93946-7
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Book 2009ecture suggested in this book accommodates use of different numerical methods as well as alternative Green‘s function representations in each of the subdomains resulting from a partitioning of the overall problem. The subdomains are regions of space where electromagnetic energy is stored and are des
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cture to solve many classes of computational problems.Includ.In this monograph, the authors propose a systematic and rigorous treatment of electromagnetic field representations in complex structures. The architecture suggested in this book accommodates use of different numerical methods as well as a
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Grundlagen des statistischen Schließenstic approaches based on constructible problem–matched Green’s functions (GF) [1–3]. A model SD Green’s function that is . to the actual SD problem configuration can serve as an efficient . in the integral equation formulation for the . SD–GF.
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Die Sinnesorgane, Organa sensuum,, with a limited analytical development, it is feasible to illustrate the relevant phenomenology [8–10]. These examples provide a simple yet effective introduction to the concepts that will be expressed in the next chapter, concerning the spherical wave expansion and its network interpretation.
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,Two—Dimensional Problems,, with a limited analytical development, it is feasible to illustrate the relevant phenomenology [8–10]. These examples provide a simple yet effective introduction to the concepts that will be expressed in the next chapter, concerning the spherical wave expansion and its network interpretation.
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