CELL-INTERNAL RESISTANCE EM F
Current Electricity

268230 From the following the standard cell is

1 Danid cell
2 Cadmiumcell
3 Leclanchecell
4 Lead accumulator
Current Electricity

268231 A cell is to convert

1 chervical energy into electrical energy
2 electrical energy into chemical energy
3 heat energy into potential energy
4 potential energy into heet energy
Current Electricity

268232 ' \(n\) ' identical cells, each of internal resistance (r) are first connected in parallel and then connected in series across a resistance ( \(R\) ). If the current through \(R\) is the same in both cases, then

1 \(R=r / 2\)
2 \(r=R / 2\)
3 \(R=r\)
4 \(r=0\)
Current Electricity

268233 The value of internal resistance of ideal cell is

1 Zero
2 infinite
3 \(1 \Omega\)
4 \(2 \Omega\)
Current Electricity

268230 From the following the standard cell is

1 Danid cell
2 Cadmiumcell
3 Leclanchecell
4 Lead accumulator
Current Electricity

268231 A cell is to convert

1 chervical energy into electrical energy
2 electrical energy into chemical energy
3 heat energy into potential energy
4 potential energy into heet energy
Current Electricity

268232 ' \(n\) ' identical cells, each of internal resistance (r) are first connected in parallel and then connected in series across a resistance ( \(R\) ). If the current through \(R\) is the same in both cases, then

1 \(R=r / 2\)
2 \(r=R / 2\)
3 \(R=r\)
4 \(r=0\)
Current Electricity

268233 The value of internal resistance of ideal cell is

1 Zero
2 infinite
3 \(1 \Omega\)
4 \(2 \Omega\)
Current Electricity

268230 From the following the standard cell is

1 Danid cell
2 Cadmiumcell
3 Leclanchecell
4 Lead accumulator
Current Electricity

268231 A cell is to convert

1 chervical energy into electrical energy
2 electrical energy into chemical energy
3 heat energy into potential energy
4 potential energy into heet energy
Current Electricity

268232 ' \(n\) ' identical cells, each of internal resistance (r) are first connected in parallel and then connected in series across a resistance ( \(R\) ). If the current through \(R\) is the same in both cases, then

1 \(R=r / 2\)
2 \(r=R / 2\)
3 \(R=r\)
4 \(r=0\)
Current Electricity

268233 The value of internal resistance of ideal cell is

1 Zero
2 infinite
3 \(1 \Omega\)
4 \(2 \Omega\)
Current Electricity

268230 From the following the standard cell is

1 Danid cell
2 Cadmiumcell
3 Leclanchecell
4 Lead accumulator
Current Electricity

268231 A cell is to convert

1 chervical energy into electrical energy
2 electrical energy into chemical energy
3 heat energy into potential energy
4 potential energy into heet energy
Current Electricity

268232 ' \(n\) ' identical cells, each of internal resistance (r) are first connected in parallel and then connected in series across a resistance ( \(R\) ). If the current through \(R\) is the same in both cases, then

1 \(R=r / 2\)
2 \(r=R / 2\)
3 \(R=r\)
4 \(r=0\)
Current Electricity

268233 The value of internal resistance of ideal cell is

1 Zero
2 infinite
3 \(1 \Omega\)
4 \(2 \Omega\)