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Lecture
Transmission Line Models
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Related lectures (29)
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Understanding Displacement Vector and Plane Waves
Explores the displacement vector D, plane waves, and magnetic vector potential, addressing student questions and clarifying key concepts.
Magnetic Fields and Currents
Explores magnetic fields, currents, Biot-Savart law, Ampère's law, and magnetic dipoles.
Maxwell's Equations in Polarized Matter: Lorentz Transformation
Explores Maxwell's equations in polarized matter and fields transformation under different frames.
Untitled
Magnetic Circuits: Understanding Inductance and Maxwell's Equations
Explains magnetic circuits, focusing on inductance and Maxwell's equations in electromechanical systems.
Rectangular Waveguides: TM and TE Modes
Explains the propagation modes in rectangular waveguides for TM and TE modes.
Untitled
Second Maxwell's equation: Magnetic dipole
Covers Maxwell's equations, magnetic dipoles, vector potential, torque, and field patterns.
Transmission Line Coupling Equations
Covers the derivation of field-to-transmission line coupling equations and the significance of differential mode and common mode currents on radiated emissions.