Light of wavelength 465 nm is incident on two slits separated by d = 5.75 mm, forming an interference pattern on a screen placed 2.25 m away. At what distance y from the central maximum is the intensity exactly half that of the maximum? m
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Light of wavelength 465 nm is incident on two slits separated by
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- A 518.0-nm light source illuminates two slits with a separation of 6.00 x 10-4 m, forming an interference pattern on a screen placed 3.80 m away from the slits. At a point a distance of 3.60 mm from the central maximum, what are the following? (a) the phase difference between the two waves originating at the slits (Give your answer to at least three significant figures.) rad (b) the intensity compared to that of the central maximum ImaxAnswer for B onlyA screen is placed 50.0 cm from a single slit that is illuminated with light of wavelength 680 nm. If the distance between the first and third minima in the diffraction pattern is 3.00 mm, what is the width of the slit?
- A single slit of width 4.50 x 10 ºm produces a first-order dark fringe at some angle. If the width of the slit is now changed to 3.08 × 10-ºm, a second-order dark fringe is found at three times the previous angle. What is the wavelength of the light?White light falls on two narrow slits separated by 0.48 mm. The interference pattern is observed on a screen 6.0 m away. (a) What is the separation (in mm) between the first maxima for red light (2 = 700 nm) and violet light (4 = 400 nm)? mm (b) At what point (in degrees) nearest the central maximum will a maximum for yellow light (A - 600 nm) coincide with a maximum for violet light? Identify the order for each maximum. myellow mvioletA double-slit arrangement produces bright interference fringes for sodium light (λ = 644 nm) that are angularly separated by 0.40° near the center of the pattern. What is the angular fringe separation if the entire arrangement is immersed in water, which has an index of refraction of 1.33?