4 From the signals in Fig. 4 a) Write equations for each of the waveforms in Fig. 4 with the phase angle expressed in degrees. b) Find the R.M.S value for Fig. 4 (b) and (d). c) Compare Fig.4 (c) and (d), which one is leading and how much for that phase different angle 8. i (A) i=1m sin (wt 30°) -125 A (a) f= 40 Hz wt i (A) 20- t (b) T = 100 ms - wi v (V) A (c) f = 100 Hz 40 - wi v (V) -2 us 47 V (d) f = 50 kHz 1

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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4 From the signals in Fig. 4
a) Write equations for each of the waveforms in Fig. 4 with the phase angle expressed in
degrees.
b) Find the R.M.S value for Fig. 4 (b) and (d).
c) Compare Fig.4 (c) and (d), which one is leading and how much for that phase different
angle 0.
i (A)
i=1m sin (wt - 30°)
125 A
(a) f = 40 Hz
wt
i (A)
A
wi
(b) T = 100 ms.
20+
Fig. 4
v (V)
401.
#A
T
6
(c) f = 100 Hz
wi
v (V)
-2 μs
47 V
(d) f = 50 kHz
1
Transcribed Image Text:4 From the signals in Fig. 4 a) Write equations for each of the waveforms in Fig. 4 with the phase angle expressed in degrees. b) Find the R.M.S value for Fig. 4 (b) and (d). c) Compare Fig.4 (c) and (d), which one is leading and how much for that phase different angle 0. i (A) i=1m sin (wt - 30°) 125 A (a) f = 40 Hz wt i (A) A wi (b) T = 100 ms. 20+ Fig. 4 v (V) 401. #A T 6 (c) f = 100 Hz wi v (V) -2 μs 47 V (d) f = 50 kHz 1
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