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Question
In the figure an arrangement of young's double slit experiment is shown. A parallel beam of light of wavelength (in medium ) is incident at an angle as shown. Distance . Point 'O' is the origin of the coordinate system. The medium on the left and right side of the plane of slits has refractive index and respectively. Distance between the slits is d. The distance between the screen and the plane of slits is D Using answer the following
The y-coordinate of the point where the total phase difference between the interefering waves is zero, is
- y = 0
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The correct answer is:
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Statement–1: Two point coherent sources of light S1 and S2 are placed on a line as shown. P and Q are two points on that line. If at point P maximum intensity is observed then maximum intensity should also be observed at Q
Statement–2: In the figure of statement 1, the distance |S1 P – S2 P| is equal to distance |S2Q – S1Q|.
Statement–1: Two point coherent sources of light S1 and S2 are placed on a line as shown. P and Q are two points on that line. If at point P maximum intensity is observed then maximum intensity should also be observed at Q
Statement–2: In the figure of statement 1, the distance |S1 P – S2 P| is equal to distance |S2Q – S1Q|.
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In an interfrence arrangement similar to Young's double- slit experiment, the slits are illuminated with coherent microwave sources, each of frequency 106 Hz. The sources are synchronized to have zero phase difference. The slits are separated by a distance d = 150.0 m and screen is at very large distance from slits. The intensity I(q) is measured as a function of , where is defined as shown. Screen is at a large distance. If is the maximum intensity then I () for is given by:
In an interfrence arrangement similar to Young's double- slit experiment, the slits are illuminated with coherent microwave sources, each of frequency 106 Hz. The sources are synchronized to have zero phase difference. The slits are separated by a distance d = 150.0 m and screen is at very large distance from slits. The intensity I(q) is measured as a function of , where is defined as shown. Screen is at a large distance. If is the maximum intensity then I () for is given by:
physics-General
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In an interfrence arrangement similar to Young's double- slit experiment, the slits are illuminated with coherent microwave sources, each of frequency 106 Hz. The sources are synchronized to have zero phase difference. The slits are separated by a distance d = 150.0 m and screen is at very large distance from slits. The intensity I(q) is measured as a function of , where is defined as shown. Screen is at a large distance. If is the maximum intensity then I () for is given by:
In an interfrence arrangement similar to Young's double- slit experiment, the slits are illuminated with coherent microwave sources, each of frequency 106 Hz. The sources are synchronized to have zero phase difference. The slits are separated by a distance d = 150.0 m and screen is at very large distance from slits. The intensity I(q) is measured as a function of , where is defined as shown. Screen is at a large distance. If is the maximum intensity then I () for is given by:
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