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A ray of light is incident oa a concave mirror. It is to the principal axis and its height from principal axis is equal to the focal length of the mirror. The ratio of the distance of point B to the distance of the focus from the centre of curvature is (AB is reflected ray)

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Important Questions on Ray Optics

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An infinitely long rod lies along the axis of a concave mirror of focal length f. The near end of the rod is at a distance u>f from the mirror. Its image will have a length
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JEE Main/Advance
IMPORTANT
A short linear object of length b lies along the axis of a concave mirror of focal length f,at a distance u from the mirror. The size of the image is approximately
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What is the length of the image of the rod in mirror, according to the observer in air? (refractive index of the liquid is μ)

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Two thin slabs of refractive indices μ1 and μ2 are placed parallel to each other in the x-y plane. If the direction of propagation of a ray the two media are along the unit vectors r^1=ai^+bj^ and r^2=ci^+dj^ then we have 

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A point source S is placed at the bottom of different layers as shown in the figure. The refractive index of bottommost layer is μ0. The refractive index of any other upper layer is μn=μ0+μ04n-18 A ray of light with angle i=30° start from the source S. Total internal reflection takes place at the upper surface of layer having n equal to

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A ray of light in liquid of refractive index 1.4, approaches the boundary surface between the liquid and air at an angle of incidence whose sine is 0.8. Which of the following statements is correct about the behaviour of the light?
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A ray light strikes a cubical slab surrounded by air as shown in the figure. Then the geometrical path length traversed by the light in the slab will be:

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A cubical block of glass of refractive index n1 is in contact with the surface of water of refractive index n2. A beam of light is incident on vertical face of the block (see figure). After refraction, a total internal reflection at the base and refraction at the opposite vertical face, the ray emerges out at an angle θ. The value of θ is given by-

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