In the circuit shown, the switch indicated is open for a very long time, and then closed at t=0. When the switch moves, there is a transient response in the capacitor voltage (indicated on the diagram as v). The component values are R1 = 4.2 k0, R2 = 12.6 k0, R3 = 12.6 k0, C = 80 nF, Vs = 3 V. Find the time constant associated with the indicated voltage v after t>0. Answer to within 1% precision. R1Q www T= is (1) ms 2 R2 Ω ww V CF HI R3 Ω www

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In the circuit shown, the switch indicated is open for a very long time, and then closed at t=0. When the switch moves, there is a transient response in the capacitor voltage (indicated on the
diagram as v). The component values are R1 = 4.2 k0, R2 = 12.6 kQ, R3 = 12.6 kQ, C = 80 nF, Vs = 3 V.
Find the time constant associated with the indicated voltage v after t>0. Answer to within 1% precision.
R1 Ω
ww
T =
is ↑
ms
20
O
1
R2 Ω
m
+ V
-
CF
R3 Ω
M
Foxe
Transcribed Image Text:In the circuit shown, the switch indicated is open for a very long time, and then closed at t=0. When the switch moves, there is a transient response in the capacitor voltage (indicated on the diagram as v). The component values are R1 = 4.2 k0, R2 = 12.6 kQ, R3 = 12.6 kQ, C = 80 nF, Vs = 3 V. Find the time constant associated with the indicated voltage v after t>0. Answer to within 1% precision. R1 Ω ww T = is ↑ ms 20 O 1 R2 Ω m + V - CF R3 Ω M Foxe
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