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Lecture
Transmission Lines Theory
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Related lectures (31)
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AC Circuits: Reactances and Complex Impedances
Explores AC circuits, Ohm's law, Kirchhoff's laws, phase shifts, filters, and power consumption in AC circuits.
Transmission Lines: Theory and Assumptions
Covers the theory and assumptions behind transmission lines, including TEM mode of propagation and antenna mode currents.
Transmission Line Models
Explores transmission line models, including Taylor et al. and Agrawal et al., discussing equations and boundary conditions.
Phasors in Electrical Circuits
Explores phasors in electrical circuits, including impedance, admittance, and application to resistance, inductance, and capacitance.
Magnetic Circuits: Understanding Inductance and Maxwell's Equations
Explains magnetic circuits, focusing on inductance and Maxwell's equations in electromechanical systems.
AC Circuits: Complex Impedance Analysis
Covers the analysis of AC circuits, focusing on complex impedance and phase differences between current and voltage.
Circuits: LC Oscillator and Filters
Explores LC oscillators, filters, resonance, and energy losses in circuits with inductors and capacitors.
Transmission Lines Theory: Maxwell Equations and Wave Connection
Explores the theory of transmission lines and their connection to wave propagation.
Microstrip Line: Characteristics and Modes
Covers the analysis and synthesis of microstrip lines, discussing effective permittivity, characteristic impedance, attenuation, and dispersion.
Coupling of Waves in Reflectors
Covers the coupling of waves in periodic structures, focusing on the reflection coefficient for one period and the limitations of the Coupling of Modes approach.