AP EAMCET · PHYSICS · Electromagnetic Induction
The total emf induced in a closely would coil of \(\mathrm{N}\) turns in which the magnetic flux linked with the coil changing at the rate \(\frac{\mathrm{d} \phi_{\mathrm{B}}}{\mathrm{dt}}\) is
- A \(-\mathrm{N} \frac{\mathrm{d} \phi_{\mathrm{B}}}{\mathrm{dt}}\)
- B \(\mathrm{N} \frac{\mathrm{d} \phi_{\mathrm{B}}}{\mathrm{dt}}\)
- C \(-\mathrm{N} \frac{\mathrm{d}^2 \phi_{\mathrm{B}}}{\mathrm{dt}^2}\)
- D \(-\frac{\mathrm{d} \phi_{\mathrm{B}}}{\mathrm{dt}}\)
Answer & Solution
Correct Answer
(A) \(-\mathrm{N} \frac{\mathrm{d} \phi_{\mathrm{B}}}{\mathrm{dt}}\)
Step-by-step Solution
Detailed explanation
For a coil of \(\mathrm{N}\) turns, the emf across the whole coil is \(\varepsilon=-\mathrm{N} \frac{\mathrm{d} \phi_{\mathrm{B}}}{\mathrm{dt}}\)
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