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Electromagnetic Boundary Problems


Electromagnetic Boundary Problems
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Electromagnetic Boundary Problems


Electromagnetic Boundary Problems
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Author : Edward F. Kuester
language : en
Publisher: CRC Press
Release Date : 2015-10-28

Electromagnetic Boundary Problems written by Edward F. Kuester and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015-10-28 with Technology & Engineering categories.


Electromagnetic Boundary Problems introduces the formulation and solution of Maxwell's equations describing electromagnetism. Based on a one-semester graduate-level course taught by the authors, the text covers material parameters, equivalence principles, field and source (stream) potentials, and uniqueness, as well as:Provides analytical solutions



Electromagnetic Boundary Problems


Electromagnetic Boundary Problems
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Author : Edward F. Kuester
language : en
Publisher: CRC Press
Release Date : 2015-10-28

Electromagnetic Boundary Problems written by Edward F. Kuester and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015-10-28 with Science categories.


Electromagnetic Boundary Problems introduces the formulation and solution of Maxwell's equations describing electromagnetism. Based on a one-semester graduate-level course taught by the authors, the text covers material parameters, equivalence principles, field and source (stream) potentials, and uniqueness, as well as:Provides analytical solutions



Electromagnetic Wave Theory For Boundary Value Problems


Electromagnetic Wave Theory For Boundary Value Problems
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Author : Hyo J. Eom
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-06-29

Electromagnetic Wave Theory For Boundary Value Problems written by Hyo J. Eom and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-06-29 with Science categories.


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. This book is written as a text for a two-semester graduate course on electromagnetic wave theory. As such, Electromagnetic Wave Theory for Boundary-Value Problems is intended to help students enhance analytic skills by solving pertinent boundary-value problems. In particular, the techniques of Fourier transform, mode matching, and residue calculus are utilized to solve some canonical scattering and radiation problems.



Boundary Conditions In Electromagnetics


Boundary Conditions In Electromagnetics
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Author : Ismo V. Lindell
language : en
Publisher: John Wiley & Sons
Release Date : 2019-11-26

Boundary Conditions In Electromagnetics written by Ismo V. Lindell and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-11-26 with Science categories.


A comprehensive survey of boundary conditions as applied in antenna and microwave engineering, material physics, optics, and general electromagnetics research. Boundary conditions are essential for determining electromagnetic problems. Working with engineering problems, they provide analytic assistance in mathematical handling of electromagnetic structures, and offer synthetic help for designing new electromagnetic structures. Boundary Conditions in Electromagnetics describes the most-general boundary conditions restricted by linearity and locality, and analyzes basic plane-wave reflection and matching problems associated to a planar boundary in a simple-isotropic medium. This comprehensive text first introduces known special cases of particular familiar forms of boundary conditions — perfect electromagnetic conductor, impedance, and DB boundaries — and then examines various general forms of boundary conditions. Subsequent chapters discuss sesquilinear boundary conditions and practical computations on wave scattering by objects defined by various boundary conditions. The practical applications of less-common boundary conditions, such as for metamaterial and metasurface engineering, are referred to throughout the text. This book: Describes the mathematical analysis of fields associated to given boundary conditions Provides examples of how boundary conditions affect the scattering properties of a particle Contains ample in-chapter exercises and solutions, complete references, and a detailed index Includes appendices containing electromagnetic formulas, Gibbsian 3D dyadics, and four-dimensional formalism Boundary Conditions in Electromagnetics is an authoritative text for electrical engineers and physicists working in electromagnetics research, graduate or post-graduate students studying electromagnetics, and advanced readers interested in electromagnetic theory.



Mechanics Of Electromagnetic Materials And Structures


Mechanics Of Electromagnetic Materials And Structures
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Author : J. S. Yang
language : en
Publisher: IOS Press
Release Date : 2000

Mechanics Of Electromagnetic Materials And Structures written by J. S. Yang and has been published by IOS Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2000 with Science categories.


This volume contains papers presented at the Symposium on the Mechanics of Electromagnetic Materials and Structures of the 1999 ASME Summer Meeting in Blacksburg, Virginia, USA. Topics covered include continuum modelling of deformable electromagnetic materials, magnetoelasticity and electroelasticity. Experimental, computational, and theoretical results are presented. The Symposium and the book are enriched by the participation of contributors from industries and presentations related to device applications.



Numerical Analysis Of Electromagnetic Fields


Numerical Analysis Of Electromagnetic Fields
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Author : Pei-bai Zhou
language : en
Publisher: Springer Science & Business Media
Release Date : 2012-12-06

Numerical Analysis Of Electromagnetic Fields written by Pei-bai Zhou and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-12-06 with Mathematics categories.


Numerical methods for solving boundary value problems have developed rapidly. Knowledge of these methods is important both for engineers and scientists. There are many books published that deal with various approximate methods such as the finite element method, the boundary element method and so on. However, there is no textbook that includes all of these methods. This book is intended to fill this gap. The book is designed to be suitable for graduate students in engineering science, for senior undergraduate students as well as for scientists and engineers who are interested in electromagnetic fields. Objective Numerical calculation is the combination of mathematical methods and field theory. A great number of mathematical concepts, principles and techniques are discussed and many computational techniques are considered in dealing with practical problems. The purpose of this book is to provide students with a solid background in numerical analysis of the field problems. The book emphasizes the basic theories and universal principles of different numerical methods and describes why and how different methods work. Readers will then understand any methods which have not been introduced and will be able to develop their own new methods. Organization Many of the most important numerical methods are covered in this book. All of these are discussed and compared with each other so that the reader has a clear picture of their particular advantage, disadvantage and the relation between each of them. The book is divided into four parts and twelve chapters.



Introduction To The Finite Element Method In Electromagnetics


Introduction To The Finite Element Method In Electromagnetics
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Author : Anastasis C. Polycarpou
language : en
Publisher: Springer Nature
Release Date : 2022-05-31

Introduction To The Finite Element Method In Electromagnetics written by Anastasis C. Polycarpou and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-05-31 with Technology & Engineering categories.


This series lecture is an introduction to the finite element method with applications in electromagnetics. The finite element method is a numerical method that is used to solve boundary-value problems characterized by a partial differential equation and a set of boundary conditions. The geometrical domain of a boundary-value problem is discretized using sub-domain elements, called the finite elements, and the differential equation is applied to a single element after it is brought to a “weak” integro-differential form. A set of shape functions is used to represent the primary unknown variable in the element domain. A set of linear equations is obtained for each element in the discretized domain. A global matrix system is formed after the assembly of all elements. This lecture is divided into two chapters. Chapter 1 describes one-dimensional boundary-value problems with applications to electrostatic problems described by the Poisson's equation. The accuracy of the finite element method is evaluated for linear and higher order elements by computing the numerical error based on two different definitions. Chapter 2 describes two-dimensional boundary-value problems in the areas of electrostatics and electrodynamics (time-harmonic problems). For the second category, an absorbing boundary condition was imposed at the exterior boundary to simulate undisturbed wave propagation toward infinity. Computations of the numerical error were performed in order to evaluate the accuracy and effectiveness of the method in solving electromagnetic problems. Both chapters are accompanied by a number of Matlab codes which can be used by the reader to solve one- and two-dimensional boundary-value problems. These codes can be downloaded from the publisher's URL: www.morganclaypool.com/page/polycarpou This lecture is written primarily for the nonexpert engineer or the undergraduate or graduate student who wants to learn, for the first time, the finite element method with applications to electromagnetics. It is also targeted for research engineers who have knowledge of other numerical techniques and want to familiarize themselves with the finite element method. The lecture begins with the basics of the method, including formulating a boundary-value problem using a weighted-residual method and the Galerkin approach, and continues with imposing all three types of boundary conditions including absorbing boundary conditions. Another important topic of emphasis is the development of shape functions including those of higher order. In simple words, this series lecture provides the reader with all information necessary for someone to apply successfully the finite element method to one- and two-dimensional boundary-value problems in electromagnetics. It is suitable for newcomers in the field of finite elements in electromagnetics.



Electromagnetic Fields And Waves


Electromagnetic Fields And Waves
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Author : Eugene I. Nefyodov
language : en
Publisher: Springer
Release Date : 2018-08-27

Electromagnetic Fields And Waves written by Eugene I. Nefyodov and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-08-27 with Technology & Engineering categories.


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 is organized for self-study as well as classroom use.



Electromagnetic Theory Questions And Answers Pdf


Electromagnetic Theory Questions And Answers Pdf
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Author : Arshad Iqbal
language : en
Publisher: Bushra Arshad
Release Date :

Electromagnetic Theory Questions And Answers Pdf written by Arshad Iqbal and has been published by Bushra Arshad this book supported file pdf, txt, epub, kindle and other format this book has been release on with Technology & Engineering categories.


The Electromagnetic Theory Quiz Questions and Answers PDF: Electromagnetic Theory Competitive Exam Questions & Chapter 1-4 Practice Tests (Class 8-12 Electronics Textbook Questions for Beginners) includes revision guide for problem solving with hundreds of solved questions. Electromagnetic Theory Questions and Answers PDF book covers basic concepts, analytical and practical assessment tests. "Electromagnetic Theory Quiz" PDF book helps to practice test questions from exam prep notes. The Electromagnetic Theory Quiz Questions and Answers PDF eBook includes revision guide with verbal, quantitative, and analytical past papers, solved tests. Electromagnetic Theory Questions and Answers PDF: Free download chapter 1, a book covers solved common questions and answers on chapters: Electrical properties of dielectric, electrical properties of matter, metamaterials, time varying and harmonic electromagnetic fields tests for college and university revision guide. Electronics Interview Questions and Answers PDF Download, free eBook’s sample covers beginner's solved questions, textbook's study notes to practice online tests. The Electromagnetic Theory Interview Questions Chapter 1-4 PDF book includes high school question papers to review practice tests for exams. Electromagnetic Theory Practice Tests, a textbook's revision guide with chapters' tests for NEET/Jobs/Entry Level competitive exam. Electromagnetic Theory Questions Bank Chapter 1-4 PDF covers terminology definitions in self-assessment workbook from electronics engineering textbook and practical eBook chapter-wise as: Chapter 1: Electrical Properties of Dielectric Questions Chapter 2: Electrical Properties of Matter Questions Chapter 3: Metamaterials Questions Chapter 4: Time Varying and Harmonic Electromagnetic Fields Questions The Electrical Properties of Dielectric Quiz Questions PDF e-Book: Chapter 1 interview questions and answers on Dielectric constant of dielectric materials, dielectric constitutive relationship, dielectric permittivity, dielectrics basics, electric and magnetic dipoles, electrical polarization production, electronic polarization production, examining material microscopically, ferroelectrics, ionic polarization production, nonpolar dielectric materials, oriental polarization, and polar dielectric materials. The Electrical Properties of Matter Quiz Questions PDF e-Book: Chapter 2 interview questions and answers on Introduction to matter, atoms and molecules, Bohr's model, DNG, and electromagnetic theory. The Metamaterials Quiz Questions PDF e-Book: Chapter 3 interview questions and answers on Introduction to metamaterials, base metals, chiral metamaterials, cloak devices, dilute metals, Drude model, Drude-Lorentz model, finite element method, FDTD grid truncation techniques, Fermat's principle, ferrites, FIM history, FIM structure, finite difference time domain, finite difference time domain history, finite difference time domain method, finite difference time domain popularity, harmonic plane, left hand materials, Maxwell's constitutive equation, metamaterial structure, metamaterials basics, metamaterials permittivity, metamaterials planes, metamaterials: electric and magnetic responses, monochromatic plane, noble metals, refractive index, Snell's law, split ring resonator, strengths of FDTD modeling, tunable metamaterials, types of finite element method, wave vector, and weakness of FDTD modeling. The Time Varying and Harmonic Electromagnetic Fields Quiz Questions PDF e-Book: Chapter 4 interview questions and answers on Ampere's law, boundary conditions, boundary value problems, charge density, curl operator, differential form of Maxwell's equations, displacement current density, divergence operator, electric charge density, electric field intensity, electric flux density, electromagnetic field theory, electromagnetic spectrum, Euclidean plane, gauss's law, introduction to electromagnetic fields, introduction to electromagnetic theory, Laplacian operator, Lorentz force, magnetic charge density, magnetic field intensity, magnetic flux density, Maxwell's equations, oscillations, photon energy, and surface current density.



Electromagnetic Theory For Microwaves And Optoelectronics


Electromagnetic Theory For Microwaves And Optoelectronics
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Author : Keqian Zhang
language : en
Publisher: Springer Science & Business Media
Release Date : 2007-10-16

Electromagnetic Theory For Microwaves And Optoelectronics written by Keqian Zhang and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2007-10-16 with Science categories.


A text on electromagnetic fields and waves. It is useful reference for researchers and engineers in the areas of microwaves and optoelectronics. It discusses the field analysis of electromagnetic waves confined in material boundaries, or so-called guided waves, and electromagnetic waves in the dispersive media and anisotropic media.