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    • https://phys.libretexts.org/Bookshelves/Electricity_and_Magnetism/Electromagnetics_and_Applications_(Staelin)/03%3A_Electromagnetic_fields_in_simple_devices_and_circuits/3.05%3A_Two-element_circuits_and_RLC_resonators
      This page covers RLC resonators' behavior, detailing the governing equations and solutions for various circuit configurations (RC, RL, LC). It introduces resonant frequency, Q factor, and energy dynam...This page covers RLC resonators' behavior, detailing the governing equations and solutions for various circuit configurations (RC, RL, LC). It introduces resonant frequency, Q factor, and energy dynamics in inductors and capacitors, emphasizing energy oscillation and exponential decay due to resistance. The text further discusses series and parallel resonators, optimal power transfer, and the significance of matching source and load resistances.
    • https://phys.libretexts.org/Bookshelves/Electricity_and_Magnetism/Electromagnetics_and_Applications_(Staelin)/03%3A_Electromagnetic_fields_in_simple_devices_and_circuits
    • https://phys.libretexts.org/Bookshelves/Electricity_and_Magnetism/Electromagnetics_and_Applications_(Staelin)/07%3A_TEM_transmission_lines/7.02%3A_TEM_lines_with_junctions
      This page covers boundary value problems in transmission lines, emphasizing the uniqueness theorem and steps to resolve these issues through wave behavior and boundary conditions. It explains lossless...This page covers boundary value problems in transmission lines, emphasizing the uniqueness theorem and steps to resolve these issues through wave behavior and boundary conditions. It explains lossless TEM transmission lines and their wave equations, introduces reflection and transmission coefficients, and examines the behavior of standing waves and load impedance.

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