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COMEDK · Physics · 22. Electromagnetic Induction

A rectangular loop of resistance \(R=5 \Omega\) is placed in a uniform magnetic field such that the magnetic flux through the loop increases according to the relation \(\phi=4 t^2-2 t\) where \(\phi\) is in weber and \(t\) is in second. The current induced at \(t=3\) second is:

  1. A 24 A
  2. B 2.4 A
  3. C 4.4 A
  4. D 44 A
Verified Solution

Answer & Solution

Correct Answer

(C) 4.4 A

Step-by-step Solution

Detailed explanation

The magnetic flux through the loop is given by \(\phi = 4t^2 - 2t\). According to Faraday's law of electromagnetic induction, the induced electromotive force (emf) \(\varepsilon\) is given by the negative rate of change of magnetic flux: \(\varepsilon = -\dfrac{d\phi}{dt}\)…