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Resistors Sources and Simple Circuits
Capacitors and Inductors
12 other sections not shown
admittance Applying KVL assume capacitor circuit shown coefficients complex number connected constant current source current variables defined determine differential equation digital computer driving-point equal equivalent circuit evaluated example excitation expression farads Figure first-order circuit flow chart follows Fourier series Fourier transformation given in Eq given in Fig impedance inductor initial conditions input integral inverse matrix inverse transform Laplace transformation let us consider linear matrix mesh currents method mhos natural frequencies network elements network function network shown network variables node voltages Note obtain odd function ohms output parameters particular solution periodic function phasor plot poles polynomial port Problem quantities RC circuit readily resistance network resistor response result right member set of equations shown in Fig simultaneous equations sinusoidal steady-state solve specified stored subroutine SUMMARY techniques Thevenin time-domain tion transformed network two-port network two-terminal voltage and current voltage source waveform waveshape write