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I. Multiple Choice Questions · Q8

Q.An e.m. wave is propagating in a medium with a velocity v⃗=vi^\vec{v}=v\hat{i}. The instantaneous oscillating electric field of this e.m. wave is along +y-axis, then the direction of oscillating magnetic field of the e.m. wave will be along:

(a) −y-y direction
(b) −x-x direction
(c) +z+z direction
(d) −z-z direction
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Step 1. The wave propagates with velocity v⃗=vi^\vec v=v\hat i, i.e. along the +x+x direction, and the electric field oscillates along +y+y, i.e. E⃗∝j^\vec E\propto\hat j.

Step 2. For an electromagnetic wave, the propagation direction is along E⃗×B⃗\vec E\times\vec B, so we need j^×B^dir=i^\hat j\times\hat B_{dir}=\hat i.

Step 3. Using the cyclic relation j^×k^=i^\hat j\times\hat k=\hat i, the magnetic field direction that satisfies this is k^\hat k, i.e. the +z+z direction. …

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