Q.A diver under water, looks obliquely at a fisherman standing on the bank of a lake. Would the fisherman look taller or shorter to the diver than what he actually is ? Explain. OR In a single slit diffraction experiment, the width of the slit is made double the original width. How does this affect the size and intensity of the central diffraction band ?
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Start your 14-day free trial to unlock the full solution →Because light bends towards the normal on entering the denser medium (water), the underwater diver sees the fisherman's image apparently raised/elongated — the fisherman looks taller than his actual height.
Light rays from the fisherman (in air, the rarer medium) travel down to the water surface and refract as they enter the water (denser medium) to reach the diver's eye. By Snell's law, when light passes from a rarer to a denser medium, it bends towards the normal, i.e. the angle of refraction is smaller than the angle of incidence.
When the diver looks obliquely upward, the refracted rays that reach the diver's eye appear to originate from a higher apparent position than the actual point on the fisherman, because the diver's brain (and eye) extrapolate the incoming ray backward in a straight line, ignoring the bend at the surface. This apparent shift is greater for rays coming from the higher parts of the fisherman's body (head) than the lower parts (feet) when viewed obliquely, so the whole image gets vertically stretched — the fisherman appears taller (elongated) than his actual height, when viewed by the diver looking up obliquely through …
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