CUET · PHYSICS · PYQ PAPER 2025
A coil having area A is placed in a magnetic field. The field is perpendicular to the plane of the coil. When the magnetic field changes from \( B_0 \) to \( 4B_0 \) in a time interval t, the magnitude of emf induced in the coil will be :
- A \(\frac{3 A_o B_0}{t}\)
- B \(\frac{4 A_o B_0}{t}\)
- C \(\frac{3 B_0}{A_o t}\)
- D \(\frac{4 B_0}{A_o t}\)
Answer & Solution
Correct Answer
(A) \(\frac{3 A_o B_0}{t}\)
Step-by-step Solution
Detailed explanation
\( \Delta\Phi = A \Delta B \) \( \Delta B = 4B_0 - B_0 = 3B_0 \) \( \epsilon = \left| \frac{\Delta\Phi}{\Delta t} \right| = \left| \frac{A \cdot 3B_0}{t} \right| \) \( \epsilon = \frac{3AB_0}{t} \)
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