Covers classical electrodynamics, emphasizing the importance of attending live sessions, the mathematical nature of the course, and upcoming topics on Maxwell equations and special relativity.
Explores Maxwell's equations in polarizable matter, including integral and differential forms, considerations for dielectric and magnetic materials, and the importance of a relativistic approach.
Covers the derivation of field-to-transmission line coupling equations and the significance of differential mode and common mode currents on radiated emissions.
Explores Maxwell equations, Faraday's law, charge conservation, and electromagnetic waves, including their computation and analysis using Fourier transforms.