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A ray of light is incident from glass on the interface between water and glass at an angle i and refracted parallel to the water surface after comming out of water, then value of μg will be

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Important Questions on Optics

MEDIUM
A vessel of depth 2h is half filled with a liquid of refractive index 22 and the upper half with another liquid of refractive index 2 . The liquids are immiscible. The apparent depth of the inner surface of the bottom of the vessel will be
MEDIUM
The angle of a prism is ‘ A ’. One of its refracting surfaces is silvered. Light rays falling at an angle of incidence 2A on the first surface returns back through the same path after suffering reflection at the silvered surface. The refractive index μ, of the prism is:
EASY
When light enters glass from vacuum, then the wavelength of light
EASY
Choose the wrong statement.
MEDIUM
Let the refractive index of a denser medium with respect to rarer medium be n12 and its critical angle be θC . At an angle of incidence A when light is travelling from denser medium to rarer medium, a part of the light is reflected and the rest is refracted and the angle between reflected and refracted rays is 90o. Angle A is given by 
MEDIUM
The reflected ray is completely polarized for certain angle of incidence in a transparent medium. If the angle of refraction is 30°, then the refractive index of the medium is
HARD
A ray of light AO in vacuum is incident on a glass slab at angle 60° and refracted at angle 30° along OB as shown in the figure. The optical path length of light ray from A to B is:
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MEDIUM
Select the correct statement about rainbow.
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Electromagnetic waves emanating from a point A (in air) are incident on a rectangular block of material M and emerge from the other side as shown below. The angles i and r are angles of incidence and refraction when the wave travels from air to the medium. Such paths for the rays are possible,

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HARD

A cubical vessel has opaque walls. An observer (dark circle in the figure below) is located, such that she can see only the wall, CD, but not the bottom. Nearly to what height should water be poured, so that she can see an object placed at the bottom at a distance of, 10 cm, from the corner, C? Refractive index of water is, 1.33.

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A diver, 30 m below water surface is trying to shine a torch light towards the point O which is horizontally 30 m away. The amount and direction in which diver has to swim (in the figure) so that the light can not travel outside the surface of water is (Refractive index of water =43)

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When the same monochromatic ray of light travels through glass slab and through water, the number of waves in glass slab of thickness 6 cm is same as in water column of height 7 cm. If refractive index of glass is 1.5 then refractive index of water is
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A glass slab of thickness 4 cm contains the same number of waves as in x cm of water column when both are traversed by the same monochromatic light. If the refractive indices of glass and water for that light are 53 and 43 respectively, the value of x will be
MEDIUM
A light wave is incident normally on a glass slab of refractive index 1.5. If 4% of light gets reflected and the amplitude of the electric field of the incident light is 30 Vm, then the amplitude of the electric field for the wave propagating in the glass medium will be:
MEDIUM
A small object is enclosed in a transparent solid sphere of radius 8 cm. The object is situated at 2 cm from the centre of the sphere. If its image appears to be at 3.2 cm from the nearest side then the refractive index of the material of the sphere is
HARD
Consider a glass cube slab of dielectric bound by the planes x=0, x=a ; y=0, y=b ; z=0, z=c ; with
b>a>c. The slab is placed in air and has a refractive index of n. The minimum value for n, such that all rays entering the dielectric at y=0 reach y=b is
MEDIUM
Frosted glass is widely used for translucent windows. The region, where a transparent adhesive tape is stuck over the frosted glass becomes transparent. The most reasonable explanation for this is
 
HARD
The angles of incidence and refraction of a monochromatic ray of light of wavelength λ at an air-glass interface are i and r, respectively. A parallel beam of light with a small spread δλ in wavelength about a mean wavelength λ is refracted at the same air-glass interface. The refractive index μ of glass depends on the wavelength λ as μλ=a+bλ2 where a and b are constants. Then the angular speed in the angle of refraction of the beam is
HARD
A girls sees through a circular glass slab (refractive index 1.5) of thickness 20 mm and diameter 60 cm to the bottom of a swimming pool. The refractive index of water is 1.33. The bottom surface of the slab is in contact with the water surface.
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The depth of the swimming pool is 6 m. The area of the bottom of the swimming pool that can be seen through the slab is approximate-
MEDIUM
A horizontal parallel beam of light passes through a vertical convex lens of focal length, 20 cm and is then reflected by a tilted plane mirror so that it converges to a point I . The distance PI is 10 cm.
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M is a point at which the axis of the lens intersects the mirror. The distance PM is 10 cm. The angle which the mirror makes with the horizontal is,