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COMPLETE RESPONSE OF SIMPLE NETWORKS
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admittance algebraic amplifier amplitude angle assume behavior branch currents branch voltages called capacitor coefficients complex number connected consider constant corresponding current source curve determine devices diagram discussion electrical electrical networks elements equivalent example excitation exponential expression factor flux linkage forced response Fourier Fourier series given in Eq Hence imaginary inductor integral Kirchhoff's current law Kirchhoff's voltage law Laplace transform linear locus loop currents loop equations magnitude method multiplied natural frequencies natural response negative network of Fig network shown node equations node voltages Note obtained Ohm's law open-circuit output voltage parallel parameters periodic function physical poles problem procedure quantity ratio reactive power references represented resistance resistor resonant result short-circuit shown in Fig signal flow graph simply sinusoidal solution solve steady-state response step substitute symbol terminals theorem TheVenin's theorem tion two-port V-I relationships variables voltage and current voltage source voltage-law equations waveform write zero