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Two coherent point sources S1 and S2 are separated by a small distance d as shown in the figure. The fringes obtained on the screen will be

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Important Questions on Wave Optics

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Two coherent sources produce waves of different intensities which interfere. After interference, the ratio of the maximum intensity to the minimum intensity is 16. The intensity of the waves are in the ratio:
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In a Young's double slit experiment,16 fringes are observed in a certain segment of the screen when light of wavelength 700 nm is used. If the wavelength of light is changed to 400 nm, the number of fringes observed in the same segment of the screen would be :
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A Young double slit experimental setup is immersed in water of refractive index 1.33 . It has slit separation 1 mm and the distance between slits and screen is 1.33 m. If the wavelength of incident light on slits is 6300 A then the fringe width on screen is
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Two point sources S1 and S2 separated by a distance 10 μm emit light waves of wavelength 4 μm in phase. A circular wire of radius 40 μm is placed around the sources as shown in figure, then (O is the centre of the circle and OS1=OS2)

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Two monochromatic light waves are travelling with same frequency and constant phase difference. If both waves interfere, then
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In Young's double-slit experiment, in an interference pattern, the second minimum is observed exactly in front of one slit. The distance between the slits is d and the distance between source and screen is D. The wavelength of the light source used is
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In Young's double slit experiment using monochromatic light of wavelength λ, the intensity of light at a point on the screen where path difference is λ, is k units. The intensity of light at a point, where path difference is λ/3 is
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Newton's rings are observed normally in reflected light of wavelength 5000 A. The diameter of the 10th  dark ring is 0.005 m. The radius of curvature of the lens is