CUET · PHYSICS · PYQ PAPER 2025
The magnetic flux through a coil placed in a magnetic field is given by \( \phi = 5t^3 + 4t^2 + 2t - 5 \) Wb The resistance of the coil is 10 \( \Omega \). The induced current through the coil at \( t = 2 \) s is :
- A 7.8 A
- B 15.6 A
- C 0.78 A
- D 3.9 A
Answer & Solution
Correct Answer
(A) 7.8 A
Step-by-step Solution
Detailed explanation
\( \mathcal{E} = -\frac{d\phi}{dt} \) \( \frac{d\phi}{dt} = \frac{d}{dt}(5t^3 + 4t^2 + 2t - 5) = 15t^2 + 8t + 2 \) \( \mathcal{E} = -(15(2)^2 + 8(2) + 2) = -(60 + 16 + 2) = -78 \text{ V} \) \( I = \frac{|\mathcal{E}|}{R} = \frac{78}{10} = 7.8 \text{ A} \)
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