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Lecture
Electromagnetic Waves: Maxwell's Equations
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Electromagnetic Waves: Basics and Equations
Explores electromagnetic waves, wave equations, solutions, polarization, and energy transport in waves.
Maxwell's Equations and E-M Waves in Matter
Explores the interaction between electromagnetic waves and matter, including polarization effects and energy conservation.
Antennas: Characteristics and Applications
Explores antenna characteristics, families, Maxwell's equations application, reciprocity, wave propagation, directivity, and frequency features.
Electromagnetic Waves
Covers the theory of electromagnetic waves and provides a detailed understanding of wave propagation.
Electromagnetic Waves: Properties and Polarization
Explores electromagnetic wave properties, polarization, and practical applications, emphasizing the relationship between electric field intensity and light intensity.
Maxwell's Equations and EM Waves
Explores Maxwell's equations, EM waves, the EM spectrum, and light oscillation observation challenges.
E-M Waves Interacting with Matter
Explores the interaction of electromagnetic waves with matter, including polarization and electric susceptibility.
Maxwell Equations for Antennas: Theory and Applications
Explores the application of Maxwell's equations to antennas, covering radiation, potentials, currents, waves, and polarization.
Monochromatic Plane Waves and Scalar Helmholtz Equations
Explores monochromatic plane waves and scalar Helmholtz equations in electromagnetic wave analysis.
Plasma Waves: Properties & Frequencies
Explores the properties of plasma waves, focusing on dispersion, cut-off, resonance frequencies, and wave modes.