The circuit shown in Figure Q3 has a DC source. For time t<0 Vin has been at 01 V DC for a long time. At time t=0 Vin suddenly changes to -0.1 V DC. a) Sketch a graph of the input voltage amplitude variation with time, showing both before and after t=0 on one graph. b) Calculate the transient response Vout(t) if C = 10 nF and R = 10 k. c) Add the sketch of the transient response to your graph from part (a). d) In your own words, explain what would happen to the voltage across the capacitor if the input voltage was switched back to 0.1 V DC after a long time. R Î ·T· Vin C Vout

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The circuit shown in Figure Q3 has a DC source. For time t<0 Vin has been at 01 V DC for
a long time. At time t=0 Vin suddenly changes to -0.1 V DC.
a) Sketch a graph of the input voltage amplitude variation with time, showing both before
and after t=0 on one graph.
b) Calculate the transient response Vout(t) if C = 10 nF and R = 10 kg.
c) Add the sketch of the transient response to your graph from part (a).
d) In your own words, explain what would happen to the voltage across the capacitor if the
input voltage was switched back to 0.1 V DC after a long time.
R
T
↑
Vin
C
Vout
Transcribed Image Text:The circuit shown in Figure Q3 has a DC source. For time t<0 Vin has been at 01 V DC for a long time. At time t=0 Vin suddenly changes to -0.1 V DC. a) Sketch a graph of the input voltage amplitude variation with time, showing both before and after t=0 on one graph. b) Calculate the transient response Vout(t) if C = 10 nF and R = 10 kg. c) Add the sketch of the transient response to your graph from part (a). d) In your own words, explain what would happen to the voltage across the capacitor if the input voltage was switched back to 0.1 V DC after a long time. R T ↑ Vin C Vout
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