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Titlebook: Electromagnetic Fields and Waves; Microwave and mmWave Eugene I. Nefyodov,Sergey M. Smolskiy Textbook 2019 Springer International Publishin

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发表于 2025-3-21 18:10:24 | 显示全部楼层 |阅读模式
书目名称Electromagnetic Fields and Waves
副标题Microwave and mmWave
编辑Eugene I. Nefyodov,Sergey M. Smolskiy
视频video
概述Provides a comprehensive treatment of electrodynamics – both theory and application – for classroom study.Includes many examples of TL and basic elements necessary for development of systems.Features
丛书名称Textbooks in Telecommunication Engineering
图书封面Titlebook: Electromagnetic Fields and Waves; Microwave and mmWave Eugene I. Nefyodov,Sergey M. Smolskiy Textbook 2019 Springer International Publishin
描述This textbook is intended for a course in electromagnetism for upper undergraduate and graduate students. The main concepts and laws of classical macroscopic electrodynamics and initial information about generalized laws of modern electromagnetics are discussed, explaining some paradoxes of the modern theory. The reader then gets acquainted with electrodynamics methods of field analysis on the basis of wave equation solution. Emission physics are considered using an example of the Huygens-Fresnel-Kirchhoff canonic principle. The representation about strict electrodynamics task statement on the base of Maxwell equations, boundary conditions, emission conditions and the condition on the edge is given. Different classes of approximate boundary conditions are presented, which essentially simplify understanding of process physics. The canonic Fresnel functions are given and their generalization on the case of anisotropic impedance. The free waves in closed waveguides and in strip-slotted and edge-dielectric transmission lines are described. A large number of Mathcad programs for illustration of field patterns and its properties in different guiding structures are provided. The material
出版日期Textbook 2019
关键词Electrodynamics; Radio wave propagation; Analysis and synthesis of complicate antenna-waveguide; Optica
版次1
doihttps://doi.org/10.1007/978-3-319-90847-2
isbn_softcover978-3-030-08114-0
isbn_ebook978-3-319-90847-2Series ISSN 2524-4345 Series E-ISSN 2524-4353
issn_series 2524-4345
copyrightSpringer International Publishing AG, part of Springer Nature 2019
The information of publication is updating

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Textbook 2019on on the case of anisotropic impedance. The free waves in closed waveguides and in strip-slotted and edge-dielectric transmission lines are described. A large number of Mathcad programs for illustration of field patterns and its properties in different guiding structures are provided. The material
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Wave Equations in Classic Electrodynamics, Electrodynamics Potentials, the Green’s Function, the Mai equations (Chap. .), it is acceptable to investigate the so-called wave equations for electrodynamics problems (Sect. 3.1.1, electromagnetic fields and waves) and for acoustics problems (Sect. 3.1.2, sound and ultrasonic acoustic fields and waves). The principal convenience for us of such a transfe
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Wave Equations of Macroscopic Generalized Electrodynamics their distinctive features compared with the classic case (described in Chap. 3). The consequence of the Stokes–Helmholtz theorem (Sect. 1.3.1) about the fact that an electric field has the vortex and potential components is a significant feature of wave equation formation in generalized electrodyn
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Plane, Cylindrical, and Spherical Electromagnetic Wavese interface presence of some media. We begin our consideration with the wave properties in the uniform infinite medium (Sect. 5.1). Plane waves are the simplest representatives of this class of waves (Sect. 5.1.1).
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