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If at t=0 the switch Sw is closed, then ...

If at t=0 the switch Sw is closed, then the charge on capacitor in the given circuit (initially uncharged) when the current through battery becomes 50% of its maximum value is (assume battery is ideal) 01 02 03 04)

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If at t = 0 the switch S_(w) is closed , then the charge on capacitor (initially unchanged)in the given circuit when the current through battery becomes 50 % of its maximum value is (assume battery is ideal)

If at t = 0 the switch S_(w) is closed , then the charge on capacitor (initially unchanged)in the given circuit when the current through battery becomes 50 % of its maximum value is (assume battery is ideal)

In the circuit shown, all the capacitors are initially uncharged. The current through the battery just after closing the switch 'S' is

In the circuit shown, all the capacitors are initially uncharged. The current through the battery just after closing the switch 'S' is

In the circuit shown, the switch 'S' is closed at t =0 . Then capacitor is initially uncharged. Then the current through the resistor R = 8Omega at t = 0.4 xx 10^(-3) sec is (Take e^(-2) = 0.135 )

In the circuit shown, the switch 'S' is closed at t =0 . Then capacitor is initially uncharged. Then the current through the resistor R = 8Omega at t = 0.4 xx 10^(-3) sec is (Take e^(-2) = 0.135 )

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In the circuit shown in figure, the capacitors are initially uncharged. The current through resistor PQ just after closing the switch is

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