6.30 Find the equivalent capacitance with respect to the terminals a, b for the circuits shown in Fig. P6.30. salug Figure P6.30 (a) a a o (b) 8 nF H6 - 30 V + Hov 40 nF bet + 5V- 12.8 nF. boo od 12 µF HE 20 μF tt 14 μF. 36 μF 2 V + 18 nF slan HE 5.6 nF Totiongia ad mig inom 8 V el 15 V + 32 nF HE 10 V + V S10E 8 nF 24 μF sviel 10 Velgunch + HE 21 μF + 30 V 28 μF 5V Ytons doum woh +
6.30 Find the equivalent capacitance with respect to the terminals a, b for the circuits shown in Fig. P6.30. salug Figure P6.30 (a) a a o (b) 8 nF H6 - 30 V + Hov 40 nF bet + 5V- 12.8 nF. boo od 12 µF HE 20 μF tt 14 μF. 36 μF 2 V + 18 nF slan HE 5.6 nF Totiongia ad mig inom 8 V el 15 V + 32 nF HE 10 V + V S10E 8 nF 24 μF sviel 10 Velgunch + HE 21 μF + 30 V 28 μF 5V Ytons doum woh +
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Question
Circuits 1 HW 5 Q10

Transcribed Image Text:6.30 Find the equivalent capacitance with respect to the
terminals a, b for the circuits shown in Fig. P6.30.
Figure P6.30
(a)
a
a o
(b)
8 nF
H6
- 30 V +
lov 40 nF
bet
+ 5V-
12.8 nF.
mot 12 µF
HE
boo
20 μF
tt
14 uF.
36 μF
2 V
18 nF
BETT
HE
rotiveges admi: +8y=120g Inst
V
+
5.6 nF
el
15 V +
32 nF
HE
10 V +
Y 510F
HE
21 μF
8 nF
51612
sviel 10 V eni gund
+
16
24 μF
+
30 V
28 μF 5V
Ytons douth woH
+
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