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Transmission Line Models
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Related lectures (29)
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Electric Displacement in Dielectrics: Gauss's Law and Boundary Conditions
Introduces the concept of electric displacement vector D and explores boundary conditions in dielectrics.
Maxwell for Antennas: Electric and Magnetic Properties
Explores electric and magnetic properties in antennas, including dielectric and magnetic properties, power analysis, Maxwell's equations, and vector potentials.
Transmission Line Equations: Derivation and Losses
Explores the derivation of transmission line equations and the impact of losses.
Magnetostatics: Magnetic Field and Force
Covers magnetic fields, Ampère's law, and magnetic dipoles with examples and illustrations.
Electric Fields Boundary Conditions: Gauss's Law and Displacement Vector
Explores Gauss's law, displacement vector in dielectrics, and symmetry analysis of electric fields.
Energy in Inductance & Capacitance
Explores energy storage in coils, magnetic fields, and capacitors, emphasizing the oscillation and decay of energy in circuits.
Electromagnetism: Fundamentals and Applications
Explores the basics of electromagnetism, Ohm's law, Lenz's law, and Faraday's law, shedding light on electromagnetic devices.
Electrostatics: Basis and Applications
Explores Coulomb's law, electric fields, capacitance, conductors, and dielectrics in electrostatic systems.
MHD Equilibrium & Stability
Explores Magnetohydrodynamic equilibrium and stability, ideal MHD solutions, 'hairy ball' theorem, and boundary conditions.
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