University Sétif 1 FERHAT ABBAS Faculty of Sciences
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Auteur Saurabh Kumar Mukerji |
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Titre : Electromagnetic Fields : Theory and Applications Type de document : document électronique Auteurs : Ahmad Shahid Khan ; Saurabh Kumar Mukerji Editeur : Boca Raton : CRC Press Année de publication : 2020 Importance : 1 vol (786 p.) ISBN/ISSN/EAN : 978-1-00-016851-8 Langues : Français (fre) Catégories : Bibliothèque numérique:Physique Mots-clés : Electromagnetic fields:Textbooks Index. décimale : 537 Électricité, électronique (physique de l'électricité et de l'électromagnétisme) Résumé :
The study of electromagnetic field theory is required for proper understanding of every device wherein electricity is used for operation. The proposed textbook on electromagnetic fields covers all the generic and unconventional topics including electrostatic boundary value problems involving two- and three-dimensional Laplacian fields and one- and two- dimensional Poissonion fields, magnetostatic boundary value problems, eddy currents, and electromagnetic compatibility. The subject matter is supported by practical applications, illustrations to supplement the theory, solved numerical problems, solutions manual and Powerpoint slides including appendices and mathematical relations. Aimed at undergraduate, senior undergraduate students of electrical and electronics engineering, it: Presents fundamental concepts of electromagnetic fields in a simplified manner Covers one two- and three-dimensional electrostatic boundary value problems involving Laplacian fields and Poissonion fields Includes exclusive chapters on eddy currents and electromagnetic compatibility Discusses important aspects of magneto static boundary value problems Explores all the basic vector algebra and vector calculus along with couple of two- and three-dimensional problemsNote de contenu :
Table of Contents
Preface
Authors
Chapter 1 Introduction
Chapter 2 Field Applications
Coordinate Systems and Vector Algebra
Chapter 4 Vector Calculus
Chapter 5 Electric Field Intensity
Chapter 6 Electric Flux Density
Chapter 7 Potential and Potential Energy
Chapter 8 Electrical Field in Materials
Chapter 9 Electrostatic Boundary Value Problems Involving Laplacian Fields
Chapter 10 Electrostatic Boundary Value Problems Involving Poisson’s Fields
Chapter 11 Steady Magnetic Fields
Chapter 12 Fields in Magnetic Materials
Chapter 13 Magnetic Circuits
Chapter 14 Magnetostatic Boundary Value Problems
Chapter 15 Time-Varying Fields
Chapter 16 Electromagnetic Waves
Chapter 17 Reflection and Refraction of Electromagnetic Waves
Chapter 18 Transmission Lines
Chapter 19 Waveguides and Cavity Resonators
Chapter 20 Radiation Mechanism
Chapter 21 Eddy Currents
Chapter 22 Electromagnetic Compatibility
IndexCôte titre : E-Fs/0022 En ligne : https://sciences-courses.univ-setif.dz/login/index.php Electromagnetic Fields : Theory and Applications [document électronique] / Ahmad Shahid Khan ; Saurabh Kumar Mukerji . - Boca Raton : CRC Press, 2020 . - 1 vol (786 p.).
ISBN : 978-1-00-016851-8
Langues : Français (fre)
Catégories : Bibliothèque numérique:Physique Mots-clés : Electromagnetic fields:Textbooks Index. décimale : 537 Électricité, électronique (physique de l'électricité et de l'électromagnétisme) Résumé :
The study of electromagnetic field theory is required for proper understanding of every device wherein electricity is used for operation. The proposed textbook on electromagnetic fields covers all the generic and unconventional topics including electrostatic boundary value problems involving two- and three-dimensional Laplacian fields and one- and two- dimensional Poissonion fields, magnetostatic boundary value problems, eddy currents, and electromagnetic compatibility. The subject matter is supported by practical applications, illustrations to supplement the theory, solved numerical problems, solutions manual and Powerpoint slides including appendices and mathematical relations. Aimed at undergraduate, senior undergraduate students of electrical and electronics engineering, it: Presents fundamental concepts of electromagnetic fields in a simplified manner Covers one two- and three-dimensional electrostatic boundary value problems involving Laplacian fields and Poissonion fields Includes exclusive chapters on eddy currents and electromagnetic compatibility Discusses important aspects of magneto static boundary value problems Explores all the basic vector algebra and vector calculus along with couple of two- and three-dimensional problemsNote de contenu :
Table of Contents
Preface
Authors
Chapter 1 Introduction
Chapter 2 Field Applications
Coordinate Systems and Vector Algebra
Chapter 4 Vector Calculus
Chapter 5 Electric Field Intensity
Chapter 6 Electric Flux Density
Chapter 7 Potential and Potential Energy
Chapter 8 Electrical Field in Materials
Chapter 9 Electrostatic Boundary Value Problems Involving Laplacian Fields
Chapter 10 Electrostatic Boundary Value Problems Involving Poisson’s Fields
Chapter 11 Steady Magnetic Fields
Chapter 12 Fields in Magnetic Materials
Chapter 13 Magnetic Circuits
Chapter 14 Magnetostatic Boundary Value Problems
Chapter 15 Time-Varying Fields
Chapter 16 Electromagnetic Waves
Chapter 17 Reflection and Refraction of Electromagnetic Waves
Chapter 18 Transmission Lines
Chapter 19 Waveguides and Cavity Resonators
Chapter 20 Radiation Mechanism
Chapter 21 Eddy Currents
Chapter 22 Electromagnetic Compatibility
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