Explores the theory and applications of Green functions in classical electrodynamics, emphasizing the importance of choosing the right function based on boundary conditions.
Explores vector fields, potential functions, and energy in electromagnetism, emphasizing the importance of understanding charge distributions and equi-potential lines.
Introduces magnetic materials and their critical applications in modern technologies, focusing on engineering and optimizing these materials for various uses.
Analyzes an LC resonator as a harmonic oscillator, discussing transient behavior, oscillations in charge and current, and the interplay between electrical and magnetic energy.
Covers fundamental concepts in electronics design, including Maxwell's equations, Kirchoff's equations, active components, PCB fabrication, impedance matching, and ADC architectures.
Explores energy transfer in electromagnetic waves, including momentum and radiation pressure, setting the stage for understanding light interactions with electrons.
Explores electric and magnetic properties in antennas, including dielectric and magnetic properties, power analysis, Maxwell's equations, and vector potentials.