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" thit shown initially "c(1),C(2)" are u...

" thit shown initially "c_(1),C_(2)" are uncharged."

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In the circuit shown initially C_(1),C_(2) are uncharged. After closing the switch

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In the circuit shown initially C_1, C_2 are uncharged. After closing the switch

The capacitor C_1 in the figure shown initially carries a charge q_0 . When the switches S_1 and S_2 are closed,capacitor C_1 is connected in series to a resistor R and a second capacitor C_2 which is initially uncharged. The charge flown through wires as a function of time is where C=(C_1C_2)/(C_1+C_2)

The capacitor C_1 in the figure shown initially carries a charge q_0 . When the switches S_1 and S_2 are closed,capacitor C_1 is connected in series to a resistor R and a second capacitor C_2 which is initially uncharged. find the charge flown through wires as a function of time is where C=(C_1C_2)/(C_1+C_2)

The capacitor C_1 in the flgure shown initially carries a charge q_0 . When the switches S_1 and S_2 are closed,capacitor C_1 is connected in series to a resistor R and a second capacitor C_2 which is initially uncharged. the total heat dissipated in the circuit during the discharging process of C_1 is

The capacitor C_1 in the flgure shown initially carries a charge q_0 . When the switches S_1 and S_2 are closed,capacitor C_1 is connected in series to a resistor R and a second capacitor C_2 which is initially uncharged. the total head dissipated in the circuit during the discharging process of C_1 is

At t=0, switch is closed, if initially C_(1) is uncharged and C_(2) is charged to a potential difference 2epsilon then find out following (Given C_(1)=C_(2) =C ) (a) Charge on C_(1) and C_(2) as a function of time. (b) Also plot the graphs for the relations derived in part (a).