File Name: theory and computation of electromagnetic fields .zip
This course is taught in English, but we have created a really neat overview of all of electromagnetics that introduces the concepts with graphics and animations instead of complicated math equations. This overview has been translated into different languages below.
- Theory Computation Electromagnetic Fields by Jian Ming Jin
- Theory and Computation of Electromagnetic Field
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Theory Computation Electromagnetic Fields by Jian Ming Jin
Skip to search form Skip to main content You are currently offline. Some features of the site may not work correctly. DOI: Abali and A. Abali , A. Abstract For an accurate description of electromagneto—thermomechanical systems, electromagnetic fields need to be described in a Euler ian frame, whereby the thermomechanics is solved in a Lagrange an frame.
Title page PDF. Dedication PDF. Preface PDF. Note to the student and instructor PDF. Table of contents, ix-xix PDF. Title page 2 PDF.
Computational electromagnetics has become an important field both for academic research and for the engineering design of electrical devices. It is an involved region of applied mathematics where advanced mathematical methods are applied to paritcular questions of electrical engineering. In this talk, some basic computational methods for time harmonic fields in scattering problems are discussed. The emphasis will be on wave function series and integral representations of the fields which, alone with the finite element and difference methods, still play an important role in the practical field computation. Unable to display preview. Download preview PDF.
Theory and Computation of Electromagnetic Field
An electromagnetic field also EM field is a classical i. The electromagnetic field propagates at the speed of light in fact, this field can be identified as light and interacts with charges and currents. Its quantum counterpart is one of the four fundamental forces of nature the others are gravitation , weak interaction and strong interaction. The field can be viewed as the combination of an electric field and a magnetic field. The electric field is produced by stationary charges, and the magnetic field by moving charges currents ; these two are often described as the sources of the field. The way in which charges and currents interact with the electromagnetic field is described by Maxwell's equations and the Lorentz force law.
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Theory and Computation of Electromagnetic Fields, 2nd edition. Jian-Ming Jin ,. Theory and Computation of Electromagnetic Fields, 2nd edition
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