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Lecture
Transmission Lines Theory
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Related lectures (31)
Transmission Line Networks and Multiconductor Lines
Explores transmission line networks and multiconductor lines, discussing wave propagation and complex network examples.
Multiconductor Transmission Lines
Explores solutions and examples for multiconductor transmission lines, covering line parameters, wave propagation, inductance, capacitance matrices, and modal wave equations.
Telegrapher's Equations: Solutions and Examples
Explores time-domain solutions for lossless lines and examples of wave propagation behavior.
Transmission Line Equations: Derivation and Losses
Explores the derivation of transmission line equations and the impact of losses.
Transmission Line Theory: Frequency Solutions
Explores frequency solutions for transmission lines, including voltage reflection coefficients and the Blumer index.
Transmission Line Theory: Wave Propagation
Explores transmission line theory, telegrapher's equations, and frequency-domain solutions for lossless and lossy lines.
Transmission Line Networks: Analysis and Wave Propagation
Covers the analysis of transmission line networks and wave propagation.
Emission of EM waves
Explores the emission of electromagnetic waves, focusing on the role of alternating current in producing them using LC circuits.
Electromagnetic Waves: Theory & Applications
Explores electromagnetic waves, Maxwell's equations, circuits, and wave propagation through different media.
Transmission Lines: Solutions and Equations
Explores time-domain and frequency-domain solutions for transmission lines, including the Bergeron Method and input impedance.
Short-Circuited or Open Lines (C40)
Explores the behavior of short-circuited and open lines as reactive components.
Delay Effects in Transmission Lines
Explores delay effects in transmission lines, analyzing the time response to a step voltage.
Energy in Inductance & Capacitance
Explores energy storage in coils, magnetic fields, and capacitors, emphasizing the oscillation and decay of energy in circuits.
Electrical Circuits Basics
Introduces the basics of electrical circuits, covering elements, laws, Ohm's law, and series/parallel connections.
Basic Concepts: Electric Circuits
Introduces the fundamental concepts of electric circuits, including basic elements and Kirchhoff's laws.
Circuit Characterization: Microwave Components and Impedance Matrix
Explores microwave circuit characterization, impedance matrices, and transmission line T circuits.
Fundamental Theorems: Linear Circuits
Covers fundamental theorems in linear circuits, including superposition and source conversion.
Transmission Lines: Solutions and Reflections
Explores solutions to transmission line problems and the impact of discontinuities in digital circuits.
Apparent and True Power: Transformer
Explains apparent and true power in circuits, power factor, transformers without load resistors, and transformers with load resistors.
Acoustic Equations and Propagation
Explores acoustic quantities, wave propagation, and analogies with electrical systems in 1D mediums.
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