MHT CET · Physics · Alternating Current
In the part of an a.c. circuit as shown, the resistance \(\mathrm{R}=0.2\) \(\Omega\). At a certain instant \(\left(\mathrm{V}_{\mathrm{A}}-\mathrm{V}_{\mathrm{B}}\right)=0.5 \mathrm{~V}, \mathrm{I}=0.5 \mathrm{~A}\) and \(\frac{\Delta \mathrm{I}}{\Delta \mathrm{t}}=8 \mathrm{~A} / \mathrm{s}\). The inductance of the coil is

- A \(0.04 \mathrm{H}\)
- B \(0.02 \mathrm{H}\)
- C \(0.08 \mathrm{H}\)
- D \(0.05 \mathrm{H}\)
Answer & Solution
Correct Answer
(D) \(0.05 \mathrm{H}\)
Step-by-step Solution
Detailed explanation
In the part of an a.c. circuit
\(
\begin{aligned}
& V_A-V_B=L \frac{d I}{d t}+I R \\
& 0.5=8 L+0.5 \times 0.2 \\
& \therefore 8 L=0.4 \\
& \therefore L=\frac{0.4}{8}=0.05 \mathrm{H}
\end{aligned}
\)
\(
\begin{aligned}
& V_A-V_B=L \frac{d I}{d t}+I R \\
& 0.5=8 L+0.5 \times 0.2 \\
& \therefore 8 L=0.4 \\
& \therefore L=\frac{0.4}{8}=0.05 \mathrm{H}
\end{aligned}
\)
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