Q.15: The switch has been in position "a" for a long time. At t=0 the switch is moved to position "b". Use classical method to find the voltage across and current through the capacitor as a function of time? (Ans.: Vc(t)=80[1.25-e000 (cos5000t+sin5000t)] V & ic(t)=1.6e S000 20 1000 10mH t%30S 30V 100V 42 2uF sin5000t A)

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Q.15: The switch has been in position "a" for a
long time. At t=0 the switch is moved to
position "b". Use classical method to find
the voltage across and current through the
capacitor as a function of time?
(Ans.: Vc(t)=80[1.25-e 5000t (cos5000t+sin5000t)] V & ic(t)=1.6e 5000
ww
t%=0
30V
100V
2uF
sin5000t A)
Transcribed Image Text:Q.15: The switch has been in position "a" for a long time. At t=0 the switch is moved to position "b". Use classical method to find the voltage across and current through the capacitor as a function of time? (Ans.: Vc(t)=80[1.25-e 5000t (cos5000t+sin5000t)] V & ic(t)=1.6e 5000 ww t%=0 30V 100V 2uF sin5000t A)
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