356002 In an \(L-R\) circuit, the value of \(L\) is \(\left( {\frac{{0.4}}{\pi }} \right)H\) and the valueof \(R\) is \(30 \Omega\). If in the circuit, an alternating emf of \(200\;V\) at 50 cycle \(/ \mathrm{s}\) is connected, the impedance of the circuit and current will be
356002 In an \(L-R\) circuit, the value of \(L\) is \(\left( {\frac{{0.4}}{\pi }} \right)H\) and the valueof \(R\) is \(30 \Omega\). If in the circuit, an alternating emf of \(200\;V\) at 50 cycle \(/ \mathrm{s}\) is connected, the impedance of the circuit and current will be
356002 In an \(L-R\) circuit, the value of \(L\) is \(\left( {\frac{{0.4}}{\pi }} \right)H\) and the valueof \(R\) is \(30 \Omega\). If in the circuit, an alternating emf of \(200\;V\) at 50 cycle \(/ \mathrm{s}\) is connected, the impedance of the circuit and current will be
356002 In an \(L-R\) circuit, the value of \(L\) is \(\left( {\frac{{0.4}}{\pi }} \right)H\) and the valueof \(R\) is \(30 \Omega\). If in the circuit, an alternating emf of \(200\;V\) at 50 cycle \(/ \mathrm{s}\) is connected, the impedance of the circuit and current will be
356002 In an \(L-R\) circuit, the value of \(L\) is \(\left( {\frac{{0.4}}{\pi }} \right)H\) and the valueof \(R\) is \(30 \Omega\). If in the circuit, an alternating emf of \(200\;V\) at 50 cycle \(/ \mathrm{s}\) is connected, the impedance of the circuit and current will be