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Question

A uniform magnetic field B exists in a direction perpendicular to the plane of a square loop made of a metal wire. The wire has a diameter of 4mm and a total length of 30cm. The magnetic field changes with time at a steady rate dB/dt=0.032Ts-1. The induced current in the loop is close to (Resistivity of the metal wire is 1.23×10-8Ωm


A

0.53A

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B

0.61A

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C

0.34A

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D

0.43A

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Solution

The correct option is B

0.61A


Step 1. Given data and draw a diagram:

Diameter, d=4mm=0.004m

Length, l=30cm=0.3m

Rate of change of magnetic field,dB/dt=0.032Ts-1

Resistivity of metal, ρ=1.23×10-8Ωm

Step 2. Finding resistance, R :

Area of cross-section of wire, Aw=πr2

R=ρlAw =1.28×10-8×0.33.14×(0.002)2

=3.06×10-4Ω

Step 3. Finding emf induced due to magnetic field :

Length of the side of a square, a=l4

Area of the square loop, Al=l216

Magnetic flux, ϕ=BAl

emf induced is, e=dϕdt=dBdtAl=dBdtl216

e=0.032×(0.3)216

=1.8×10-4V

Step 4. The induced current is :

i=eR=1.8×10-43.06×10-4

=0.58A0.6A

Hence, option B is correct.


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