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Unpolarized light of intensity I0 is incident on surface of a block of glass at Brewster's angle. In that case, which one of the following statements is true?

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Questions featured in Previous Year Papers on Optics

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Two straight and narrow slits 0.3 mm apart are illuminated by a monochromatic source of wavelength 5.9×10-7 m. Fringes are obtained at a distance of 0.30 m from the slit. The width of the fringe is
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A small angled prism of refractive index 1.6 gives a deviation of 3.6°. The angle of prism is _____
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A small coin is fixed at the center of the base of an empty cylindrical steel container having radius R=1 m and height d=4 m. At time t=0 s, the container starts getting filled with water at a flowrate of Q=0.1 m3/s without disturbing the coin. Find the approximate time when the coin will first be seen by the observer "O" from the height of H=5.75 m above and L=1.5 m radially away from the coin as shown in the figure. Refractive index of water is n=1.33.

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A refractive index of material of a prism is 2. What is the maximum possible refraction angle of the prism, so that light emerges from the prism
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In a stạck of three polarising sheets, the first and the third are crossed while the middle one has its axis at 45° to the axes of the other two. The fraction of intensity of an incident unpolarised beam of light that is transmitted by the stack is
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Letters A,B,C and D are written on a cardboard as shown in the figure below.

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The cardboard is kept at a suitable distance behind a transparent empty glass of cylindrical shape. If the glass is now filled with water, one sees an inverted image of the pattern on the cardboard when looking through the glass. Ignoring magnification effects, the image would appear as

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In Young's experiment for the interference of light, the separation between the slits is d and the distance of the screen from the slits is D. If D is increased by 0.5% and d is decreased by 0.3% then for the light of a given wavelength, which one of the following is true?

"The fringe width......

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The ratio of intensity at the centre of a bright fringe to the intensity at a point distance one-fourth of the distance between two successive bright fringes will be