Question:

A plane electromagnetic wave travels in free space along the x-direction. The electric field component of the wave at a particular point of space and time is $E = 6 \; V \; m^{-1}$ along y-direction. Its corresponding magnetic field component, B would be :

Updated On: Oct 1, 2024
  • $6 \times 10^{-8} $ T along z-direction
  • $6 \times 10^{-8} $ T along x-direction
  • $2 \times 10^{-8} $ T along z-direction
  • $2 \times 10^{-8} $ T along y-direction
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The Correct Option is C

Solution and Explanation

The direction of propogation of an EM wave is direction of $\vec{E} \times \vec{B}$ .
$\hat{i} = \hat{j} \times \hat{B}$
$\Rightarrow \; \hat{B} = \hat{k}$
$C = \frac{E}{B} \; \Rightarrow B = \frac{E}{C} = \frac{6}{3 \times 10^{8}}$
$B = 2 \times 10^{-8} T$ along $z$ direction.
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Concepts Used:

Electromagnetic waves

The waves that are produced when an electric field comes into contact with a magnetic field are known as Electromagnetic Waves or EM waves. The constitution of an oscillating magnetic field and electric fields gives rise to electromagnetic waves.

Types of Electromagnetic Waves:

Electromagnetic waves can be grouped according to the direction of disturbance in them and according to the range of their frequency. Recall that a wave transfers energy from one point to another point in space. That means there are two things going on: the disturbance that defines a wave, and the propagation of wave. In this context the waves are grouped into the following two categories:

  • Longitudinal waves: A wave is called a longitudinal wave when the disturbances in the wave are parallel to the direction of propagation of the wave. For example, sound waves are longitudinal waves because the change of pressure occurs parallel to the direction of wave propagation.
  • Transverse waves: A wave is called a transverse wave when the disturbances in the wave are perpendicular (at right angles) to the direction of propagation of the wave.