Question:

A jet plane having a wing-span of 25 m is travelling horizontally towards east with a speed of 3600 km/hour. If the Earth?s magnetic field at the location is $4 \times 10^{-4} \, T$ and the angle of dip is $30^{\circ}$, then, the potential difference between the ends of the wing is

Updated On: May 30, 2022
  • 4 V
  • 5 V
  • 2 V
  • 2.5 V
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The Correct Option is B

Solution and Explanation

Motional emf: $e = B_v \,vl$
$B_v = B \, \sin \, \theta = 4 \times 10^{-4} \times \sin \, 30 = 2 \times 10^{-4 } \,T$
$v = 3600$ km/hour = $3600 \times \frac{5}{18} 1000 \,ms^{-1}$
$e = 2 \times 10^{-4} \times 1000 \times 25 = 5 \,V$
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Concepts Used:

Electromagnetic Induction

Electromagnetic Induction is a current produced by the voltage production due to a changing magnetic field. This happens in one of the two conditions:-

  1. When we place the conductor in a changing magnetic field.
  2. When the conductor constantly moves in a stationary field.

Formula:

The electromagnetic induction is mathematically represented as:-

e=N × d∅.dt

Where

  • e = induced voltage
  • N = number of turns in the coil
  • Φ = Magnetic flux (This is the amount of magnetic field present on the surface)
  • t = time

Applications of Electromagnetic Induction

  1. Electromagnetic induction in AC generator
  2. Electrical Transformers
  3. Magnetic Flow Meter