In the circuit shown, switch 1 has been closed and switch 2 has been open for a long time. At 0, switch 1 is opened. Then 10 ms later, 7.7 t = switch 2 is closed. Find a) v.(t) for 0 st< 0.01 s, b) v.(t) for t N 0.01 s, c) the total energy dissipated in the 25 k2 resistor, and d) the total energy dissipated in the 100 k2 resistor. t= 0 t 10 ms 60 k2 10 mA 340 kn 25 kn31µFv.() 100 kn

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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In the circuit shown, switch 1 has been closed
and switch 2 has been open for a long time. At
t = 0, switch 1 is opened. Then 10 ms later,
7.7
switch 2 is closed. Find
a) v(t) for 0 <t< 0.01 s,
b) v.(t) for t > 0.01 s,
c) the total energy dissipated in the 25 k2
resistor, and
d) the total energy dissipated in the 100 k2
resistor.
t = 0
t = 10 ms
60 kN
1
10 mA 40 kn 25 kn {1µF v(t) 100 kNg
Transcribed Image Text:In the circuit shown, switch 1 has been closed and switch 2 has been open for a long time. At t = 0, switch 1 is opened. Then 10 ms later, 7.7 switch 2 is closed. Find a) v(t) for 0 <t< 0.01 s, b) v.(t) for t > 0.01 s, c) the total energy dissipated in the 25 k2 resistor, and d) the total energy dissipated in the 100 k2 resistor. t = 0 t = 10 ms 60 kN 1 10 mA 40 kn 25 kn {1µF v(t) 100 kNg
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