![]() ![]() Oblique incidence on a perfect conductor transverse magnetic (TM) waves with oblique incidence on lossless media described by ε and µ reflection and transmission transverse electric (TE) waves with oblique incidence on lossless media Media: dielectric, conducting, and magnetic constitutive laws charge relaxationĭemos: H/M 6.6.1 artificial dielectric 9.4.1 measurement of B-H characteristic (magnetic hysteresis loop) Lecture 7Ĭonservation of charge boundary condition Maxwell capacitor magnetic dipoles and circuits reluctance The electric field, electric scalar potential, and the gradient Poisson’s and Laplace’s equations potential of point charge Coulomb superposition integral ISBN: 9780132490207.Ĭoulomb-Lorentz force law Maxwell’s equations in integral form simple electric and magnetic field solutions using Gauss’ and Ampere’s laws for point, line, and surface charges and currents superposition simple cylindrical and spherical source problemsĭerive boundary conditions apply boundary conditions to surface charge and surface current problemsĭivergence and Stokes’ theorems Maxwell’s equations in differential form electroquasistatics and magnetoquasistatics (MQS) potential and the gradient operatorĭemo: H/M 10.0.1 nonuniqueness of voltage in an MQS system Englewood Cliffs, NJ: Prentice-Hall, 1989. Zahn’s handwritten notes to produce them. ![]() Some of the lecture notes were prepared in LaTeX by Alan Dunn, a former MIT student. ![]()
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