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MHT CET · Physics · Alternating Current

In an a.c. circuit \(I=100 \sin 200 \pi t\). The time required for the current to achieve its peak value will be

  1. A \(\frac{1}{100} \mathrm{~s}\)
  2. B \(\frac{1}{200} \mathrm{~s}\)
  3. C \(\frac{1}{300} \mathrm{~s}\)
  4. D \(\frac{1}{400} \mathrm{~s}\)
Verified Solution

Answer & Solution

Correct Answer

(D) \(\frac{1}{400} \mathrm{~s}\)

Step-by-step Solution

Detailed explanation

\(I=100 \sin 200 \pi t\)
Peak value \(\mathrm{I}_0=100 \mathrm{~A}\)
When \(\mathrm{I}=100 \mathrm{~A}\), we have
\(100=100 \sin 200 \pi \mathrm{t}\)
\(\therefore \quad \sin 200 \pi \mathrm{t}=1\)
\(\therefore \quad 200 \pi \mathrm{t}=\frac{\pi}{2}\)
\(\therefore \quad \mathrm{t}=\frac{1}{400} \mathrm{~s}\)