2. Consider the circuit given below in Fig. 9.11. The input is a periodic sinusoidal wave given in Fig. 9.12. R = 10 k2 C = 0.1µF Vs Ve Vs(t) = 5 cos wot volts Fig. 11 2.5 2 1.5 0.5 + -Vst) -0.5 0 45 90 135 180 225 270 315 360 405 -1 -1.5 -2 -2.5 -3 Fig. 12 i. Determine the frequency wo at which woRC = 1(Note that wo =2nfo)? 6. ii. What is then e = tan(woRC)? Vsp iii. What is then Vcp= V1+(w9RC)2

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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2. Consider the circuit given below in Fig. 9.11. The input is a periodic
sinusoidal wave given in Fig. 9.12.
R
R = 10 k2
C = 0.1µF
Vs
Vc
Vs(t) = 5 cos wot volts
Fig. 11
3
2.5
2
1.5
1
0.5
VS(t)
-0.5
45
90
135
180
225
270
315
360
405
-1
-1.5
-2
-2.5
-3
Fig. 12
i. Determine the frequency wo at which woRC = 1(Note that wo=2nfo)?
ii. What is then e = tan'( wRC)?
Vsp
iii, What is then Vcp= 1+(oRC)Z
Transcribed Image Text:2. Consider the circuit given below in Fig. 9.11. The input is a periodic sinusoidal wave given in Fig. 9.12. R R = 10 k2 C = 0.1µF Vs Vc Vs(t) = 5 cos wot volts Fig. 11 3 2.5 2 1.5 1 0.5 VS(t) -0.5 45 90 135 180 225 270 315 360 405 -1 -1.5 -2 -2.5 -3 Fig. 12 i. Determine the frequency wo at which woRC = 1(Note that wo=2nfo)? ii. What is then e = tan'( wRC)? Vsp iii, What is then Vcp= 1+(oRC)Z
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