C₁ 1 ΚΩ C2 · 2 ΚΩ + As shown in the figure, C1 = 1.55-μF, C2 = 2.65-μF, and V = 14.5 V. a) For the circuit shown in the figure, determine the charge on capacitor C1 when switch S has been closed for a long time. b) Determine the charge on capacitor C2 when switch S has been closed for a long time. c) Determine the charge on capacitor C1 when switch S has been open for a long time. d) Determine the charge on capacitor C2 when switch S has been open for a long time.
C₁ 1 ΚΩ C2 · 2 ΚΩ + As shown in the figure, C1 = 1.55-μF, C2 = 2.65-μF, and V = 14.5 V. a) For the circuit shown in the figure, determine the charge on capacitor C1 when switch S has been closed for a long time. b) Determine the charge on capacitor C2 when switch S has been closed for a long time. c) Determine the charge on capacitor C1 when switch S has been open for a long time. d) Determine the charge on capacitor C2 when switch S has been open for a long time.
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
Transcribed Image Text:C₁
1 ΚΩ
C2
· 2 ΚΩ
+
As shown in the figure, C1 = 1.55-μF, C2 = 2.65-μF, and V = 14.5 V.
a) For the circuit shown in the figure, determine the charge on capacitor C1 when switch S has been closed
for a long time.
b) Determine the charge on capacitor C2 when switch S has been closed for a long time.
c) Determine the charge on capacitor C1 when switch S has been open for a long time.
d) Determine the charge on capacitor C2 when switch S has been open for a long time.
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