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The figure below shown a battery with em...

The figure below shown a battery with emf 15 V in a circuit with `R_(1) = 30 (Omega), R_(3) = 20 (Omega and L = 3.0 H`. The switch S is initially in the open position and is then closed at time t = 0. Then the graph which shows the correct variation of current through battery after switch S is closed

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Figure shows a battery with emf 15 V in a circuit with R_1 = 30Omega, R_2 = 10 Omega, R_3 = 20 Omega and capacitance C = 10 muF . The switch S is initially in the open position and is then closed at time t= 0. What will be the fimal steady - state charge on capacitor?

Figure shows a battery with emf 15 V in a circuit with R_1 = 30Omega, R_2 = 10 Omega, R_3 = 20 Omega and capacitance C = 10 muF . The switch S is initially in the open position and is then closed at time t= 0. What will be the fimal steady - state charge on capacitor?

In the circuit diagram the current through the battery immediately after the switch S is closed is

In the circuit diagram the current through the battery immediately after the switch S is closed is

Consider the circuit shown in figure. The current through the battery a long time after the switch S is closed is:

Consider the circuit shown in figure. The current through the battery a long time after the switch S is closed is:

In the circuit shown, the switch 'S' is closed at t = 0 . Then the current through the battery steady state reached is

In the circuit shown, the switch 'S' is closed at t = 0 . Then the current through the battery steady state reached is