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Lecture
Guided Propagation: Theory and Examples
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Guided Propagation: Vector Components and Boundary Conditions
Explores guided propagation modes, vector components, boundary conditions, dispersion diagrams, and electromagnetic field reconstruction.
Reflection and Refraction in Transparent Matter
Explores the laws of reflection and refraction in transparent matter, focusing on wave interaction with dielectric slabs.
Waves in Inhomogeneous Medium
Explores waves in inhomogeneous media, covering initial and boundary conditions, numerical stability, eigen modes, and propagation principles.
E-M Wave Propagation in Materials: Loss-less vs. Lossy
Explores electromagnetic wave propagation in materials, including loss-less and lossy mediums, optical constants, and dispersion in glasses.
Telegrapher's Equations: Solutions and Examples
Explores time-domain solutions for lossless lines and examples of wave propagation behavior.
Superposition and Interference in Electromagnetic Waves
Explores the superposition and interference of electromagnetic waves, discussing energy redistribution and standing waves.
Infinite Line: Non-linear Current/Voltage
Discusses the response of an infinite line to a voltage square.
Rectangular Waveguides: TE and TM Modes
Covers guided propagation in rectangular waveguides for TE and TM modes.
Transmission Line Equations: Derivation and Losses
Explores the derivation of transmission line equations and the impact of losses.
Rayleigh Waves: Properties and Applications
Covers the properties and applications of Rayleigh waves, including equations of motion, dispersion, and power flow.