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Lecture
Rectangular Waveguides: TE Modes
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Rectangular waveguides: TM Modes
Covers the propagation modes in rectangular waveguides, focusing on TM modes and discussing basic equations and solutions.
Rectangular Waveguides: TE and TM Modes
Covers guided propagation in rectangular waveguides for TE and TM modes.
Propagation Modes in Waveguides
Explores the propagation modes in waveguides, discussing TE and TM modes, field distribution, and Bessel functions.
Rectangular Waveguides: TM and TE Modes
Explains the propagation modes in rectangular waveguides for TM and TE modes.
Guided Propagation: Theory and Examples
Discusses guided propagation for waves along a structure with invariant geometry and covers examples of TEM, TE, and TM modes.
Waveguides: Modes and Propagation
Explores waveguide theory, TE and TM modes, field distributions, guided propagation, and Bessel functions.
Gravity Waves: Kinematic and Dynamic Boundary Conditions
Explores kinematic and dynamic boundary conditions, dispersion relation, and velocity differences in gravity waves.
The Free Particle
Covers the concept of the free particle in quantum mechanics and explores momentum, eigenstates, and wave packets.
Guided Propagation: Vector Components and Boundary Conditions
Explores guided propagation modes, vector components, boundary conditions, dispersion diagrams, and electromagnetic field reconstruction.
Electric Displacement in Dielectrics: Gauss's Law and Boundary Conditions
Introduces the concept of electric displacement vector D and explores boundary conditions in dielectrics.