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Electric Circuit Analysis by K. S. Suresh Kumar

 
 
I.
5
impulse response of, 12.19–12.20
resonance in, 12.28–12.37
source-free response of, 12.3
step response of, 12.20–12.21
shared flux linkage, 14.2
shorted coil, 14.25
signal bypassing, 11.26
signal coupling element, 11.23–11.24
signal plane, 13.4
single-loop circuit, 2.14
single-node-pair circuit, 2.19
single-phase system, 8.2–8.6
single-tuned amplifier, 14.15
sinusoidal excitation, 7.5–7.6
sinusoidal signals, 6.3
sinusoidal source function, 6.4–6.13
sinusoidal steady-state frequency response
function, 9.4–9.7
sinusoidal steady-state, 10.28–10.29
sinusoidal steady-state response, 7.1–7.53
from phasor equivalent circuit, 7.17–7.19
using complex exponential input, 7.10–7.11
sinusoidal waveform, 6.6–6.7, 6.26–6.27
RMS value of, 6.26–6.27
sinusoids, 6.2–6.4
reasons for, 6.2–6.4
source functions, 2.14
source transformation theorem, 4.15–4.18
standard time-domain specifications for,
12.21–12.22
star-delta transformation theorem, 5.11–5.15
steady-state response, 19.4, 10.27–10.31
step response, 11.6
substitution theorem, 5.16–5.19
subtractor circuit, 2.32–2.33
summing node, 2.31–2.32
supernodes, 2.11
superposition principle, 3.19
superposition theorem, 5.3–5.7
symmetrical components, 8.24–8.29
T
temperature coefficient of resistivity, 1.12
terminal voltage, 1.6–1.7
Thevenin’s theorem, 5.21
third form of reciprocity theorem, 5.32
three-phase power, 8.6–8.11
three-phase quantity, 8.4
three-phase sources, 8.6–8.11
three-phase system, 8.2–8.6
three-wire system, 8.18
time delay, 6.10
time-differentiation theorem, 13.21–13.22
time-invariant elements, 1.41
time-shifting theorem, 13.19–13.20
time-variant elements, 1.41
time-varying current, 1.19
transfer admittance function, 13.11
transfer function, 13.10
transfer gain function, 9.5
transfer impedance function, 13.11
transformer, 14.7
trigonometric Fourier series, 9.9–9.10
two-terminal capacitance, 1.14–1.17
two-terminal capacitor, 1.15
two-terminal inductance model of circuit theory,
1.24
two-terminal inductance, 1.18–1.26
two-terminal inductance model, 1.25
two-terminal resistance element, 1.11–1.12
two-winding transformer, 14.7–14.8,
14.21
transfer function of, 14.21
U
unbalanced sources, 8.29
unbalanced three-phase circuits, 8.17–8.18
unbalanced three-phase quantity, 8.4
unbalanced Y-Y circuit, 8.17–8.18
undamped natural frequency, 12.11, 12.29
unilateral Laplace transform, 13.5
unit impulse function, 3.1
unit step function, 3.1
unit step response, 10.9
upper cut-off frequency, 11.15
V
VCCS. See Voltage-Controlled Current Source 
(VCCS)
virtual short, 2.27–2.29
virtual short principle, 2.29
voltage amplification factor, 12.32


I.6
Index
voltage drop, 1.5
voltage follower circuit, 2.30
voltage rise, 1.5
Voltage-Controlled Current Source (VCCS), 4.2

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