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Titlebook: Electromagnetic Wave Theory for Boundary-Value Problems; An Advanced Course o Hyo J. Eom Textbook 2004 Springer-Verlag Berlin Heidelberg 20

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Prussia. Ministerium für VolkswohlfahrtiaabeqaamaabaabaaGcbaGabmOsayaara% aaaa!36DB!]]
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Electromagnetic Wave Theory for Boundary-Value ProblemsAn Advanced Course o
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Waveguides,d9gzLbvyNv2CaerbuLwBLn% hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr% 4rNCHbGeaGqiVu0Je9sqqrpepC0xbbL8F4rqqrFfpeea0xe9Lq-Jc9% vqaqpepm0xbba9pwe9Q8fs0-yqaqpepae9pg0FirpepeKkFr0xfr-x% fr-xb9adbaqaaeGaciGaaiaabeqaamaabaabaaGcbaGabmOsayaara% aaaa!36DB!]]
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Propagation in Anisotropic Media,ce Format="TEX">
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https://doi.org/10.1007/978-3-642-86987-7en studied in [2, pp. 447–485] and [18]. This chapter investigates radiation from line currents and dipole sources in a half space, using a Fourier transform in the spectral domain. Some relevant discussion is available in [18].
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g.Electromagnetic wave theory is based on Maxwell‘s equations, and electromagnetic boundary-value problems must be solved to understand electromagnetic scattering, propagation, and radiation. Electromagnetic theory finds practical applications in wireless telecommunications and microwave engineering
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