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AU Electromagnetic Field Theory and Transmission Lines Sem IV
Unit 3 : Maxwells Equations(Introduction, Equation of continuity for the varying fields, Maxwells equations for time varying fields, Meaning of Maxwells equations, Conversion of differential form of Maxwells equations to integral form, Maxwells equations for static fields, Characteristics of free space, Maxwells equations for free space, The Maxwells equations for static fields in free space, Proof of Maxwells equations, Sinusoidal time varying fields, Maxwells equations in phasor form, Influence of medium on the fields, Types of media, Summary of Maxwells equations for different cases, Boundary conditions, Proof of boundary conditions on E, D, H and B, Complete boundary conditions in scalar form, Boundary conditions in vector form, Time varying potentials, Retarded potentials, Maxwells equations approach to relate potentials, Fields and their sources, Helmoltz theorem, Lorentz gauge condition)
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