CELLS,KIRCHOFF'SLAW'S, WHEAT STONE BRIDGE
Current Electricity

268529 Thep.d between the terminals \(A \& B\) is

1 \(2 \mathrm{~V}\)
2 \(3 \mathrm{~V}\)
3 \(3.6 \mathrm{~V}\)
4 \(1.8 \mathrm{~V}\)
Current Electricity

268530 The energy stored in thecapcitor is

1 \(12 \mu \mathrm{~J}\)
2 \(24 \mu \mathrm{~J}\)
3 \(36 \mu \mathrm{~J}\)
4 \(48 \mu \mathrm{~J}\)
Current Electricity

268531 In the circuit shown in figure, the potentials of\(B, C\) and \(D\) are:

1 \(V_B=6 V_i V_C=9 V ; V_D=11 \mathrm{~V}\)
2 \(V_B=11 \mathrm{~V} ; V_C=9 \mathrm{~V} ; V_D=6 \mathrm{~V}\)
3 \(V_B=9 \mathrm{~V} ; V_C=11 \mathrm{~V} ; V_D=6 \mathrm{~V}\)
4 \(V_B=9 \mathrm{~V} ; V_C=6 \mathrm{~V} ; V_D=11 \mathrm{~V}\)
Current Electricity

268532 A current of 0.10 A flows through the\(25 \Omega\) resistor represented in the diagram to the right. The current through the \(80 \Omega\) resistor is:

1 \(0.10 \mathrm{~A}\)
2 \(0.20 \mathrm{~A}\)
3 \(0.30 \mathrm{~A}\)
4 \(0.40 \mathrm{~A}\)
Current Electricity

268529 Thep.d between the terminals \(A \& B\) is

1 \(2 \mathrm{~V}\)
2 \(3 \mathrm{~V}\)
3 \(3.6 \mathrm{~V}\)
4 \(1.8 \mathrm{~V}\)
Current Electricity

268530 The energy stored in thecapcitor is

1 \(12 \mu \mathrm{~J}\)
2 \(24 \mu \mathrm{~J}\)
3 \(36 \mu \mathrm{~J}\)
4 \(48 \mu \mathrm{~J}\)
Current Electricity

268531 In the circuit shown in figure, the potentials of\(B, C\) and \(D\) are:

1 \(V_B=6 V_i V_C=9 V ; V_D=11 \mathrm{~V}\)
2 \(V_B=11 \mathrm{~V} ; V_C=9 \mathrm{~V} ; V_D=6 \mathrm{~V}\)
3 \(V_B=9 \mathrm{~V} ; V_C=11 \mathrm{~V} ; V_D=6 \mathrm{~V}\)
4 \(V_B=9 \mathrm{~V} ; V_C=6 \mathrm{~V} ; V_D=11 \mathrm{~V}\)
Current Electricity

268532 A current of 0.10 A flows through the\(25 \Omega\) resistor represented in the diagram to the right. The current through the \(80 \Omega\) resistor is:

1 \(0.10 \mathrm{~A}\)
2 \(0.20 \mathrm{~A}\)
3 \(0.30 \mathrm{~A}\)
4 \(0.40 \mathrm{~A}\)
Current Electricity

268529 Thep.d between the terminals \(A \& B\) is

1 \(2 \mathrm{~V}\)
2 \(3 \mathrm{~V}\)
3 \(3.6 \mathrm{~V}\)
4 \(1.8 \mathrm{~V}\)
Current Electricity

268530 The energy stored in thecapcitor is

1 \(12 \mu \mathrm{~J}\)
2 \(24 \mu \mathrm{~J}\)
3 \(36 \mu \mathrm{~J}\)
4 \(48 \mu \mathrm{~J}\)
Current Electricity

268531 In the circuit shown in figure, the potentials of\(B, C\) and \(D\) are:

1 \(V_B=6 V_i V_C=9 V ; V_D=11 \mathrm{~V}\)
2 \(V_B=11 \mathrm{~V} ; V_C=9 \mathrm{~V} ; V_D=6 \mathrm{~V}\)
3 \(V_B=9 \mathrm{~V} ; V_C=11 \mathrm{~V} ; V_D=6 \mathrm{~V}\)
4 \(V_B=9 \mathrm{~V} ; V_C=6 \mathrm{~V} ; V_D=11 \mathrm{~V}\)
Current Electricity

268532 A current of 0.10 A flows through the\(25 \Omega\) resistor represented in the diagram to the right. The current through the \(80 \Omega\) resistor is:

1 \(0.10 \mathrm{~A}\)
2 \(0.20 \mathrm{~A}\)
3 \(0.30 \mathrm{~A}\)
4 \(0.40 \mathrm{~A}\)
Current Electricity

268529 Thep.d between the terminals \(A \& B\) is

1 \(2 \mathrm{~V}\)
2 \(3 \mathrm{~V}\)
3 \(3.6 \mathrm{~V}\)
4 \(1.8 \mathrm{~V}\)
Current Electricity

268530 The energy stored in thecapcitor is

1 \(12 \mu \mathrm{~J}\)
2 \(24 \mu \mathrm{~J}\)
3 \(36 \mu \mathrm{~J}\)
4 \(48 \mu \mathrm{~J}\)
Current Electricity

268531 In the circuit shown in figure, the potentials of\(B, C\) and \(D\) are:

1 \(V_B=6 V_i V_C=9 V ; V_D=11 \mathrm{~V}\)
2 \(V_B=11 \mathrm{~V} ; V_C=9 \mathrm{~V} ; V_D=6 \mathrm{~V}\)
3 \(V_B=9 \mathrm{~V} ; V_C=11 \mathrm{~V} ; V_D=6 \mathrm{~V}\)
4 \(V_B=9 \mathrm{~V} ; V_C=6 \mathrm{~V} ; V_D=11 \mathrm{~V}\)
Current Electricity

268532 A current of 0.10 A flows through the\(25 \Omega\) resistor represented in the diagram to the right. The current through the \(80 \Omega\) resistor is:

1 \(0.10 \mathrm{~A}\)
2 \(0.20 \mathrm{~A}\)
3 \(0.30 \mathrm{~A}\)
4 \(0.40 \mathrm{~A}\)