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Related lectures (11)
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Transmission Line Coupling Models and Solutions
Covers transmission line theory, Telegrapher's Equations, frequency domain solutions, multi-conductor lines, and load responses.
Power Flow Analysis
Covers power flow analysis, economic dispatching, and optimal power flow in electrical networks.
Electrical Networks: Stability and Phenomena
Explores electrical network stability, phenomena, components, and financial impacts.
Power Systems Dynamics
Explores power systems elements, load flow calculations, and iterative solution methods.
Transmission Line Theory: Frequency Solutions
Explores frequency solutions for transmission lines, including voltage reflection coefficients and the Blumer index.
Maxwell's Equations and Induction Phenomenon
Explores Maxwell's equations, induction in moving conductors, electromotive force, and electrical fields.
Transmission Lines: Solutions and Equations
Explores time-domain and frequency-domain solutions for transmission lines, including the Bergeron Method and input impedance.
Electrostatic Induction in Conductors
Explores electrostatic induction in conductors, charge redistribution, and behavior of loaded conductors.
Lightning-induced Voltages: FDTD Dispersion
Covers lightning-induced voltages, FDTD dispersion, and surge arrester applications.
Transmission Line Networks and Multiconductor Lines
Explores transmission line networks and multiconductor lines, discussing wave propagation and complex network examples.
Parallel Flow Concepts: Mixing Layers
Explores parallel flow concepts, focusing on mixing layers, dispersion relations, and stability analysis through eigenvalues.
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