Ten narrow slits are equally spaced 5.00 mm apart and illuminated with red light of wavelength 652 nm. (a) what are the angular positions (in degrées) of the second and fourth principal maxima? (Consider the central maximum to be the zeroth principal maximum second principal maximum fourth principal maximum (b) What is the separation (in m) of these maxima on a screen 2.0 m from the slits? m
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- White light is incident on a diffraction grating with 2500 lines/cm. The screen is at a distance of 3.0 m. At what point nearest the central maximum will a maximum for red light (λ=600 nm) coincide with a maximum for violet light ( λ=400nm)? Identify the order of each maximum.In your laboratory, 540nm light falls on a pinhole 0.0038mm in diameter. Diffraction maxima are observed on a screen 5.0m away. Calculate the distance from the central maximum to the first interference maximum.Intense white light is incident on a diffraction grating that has 672 lines/mm. (a) What is the highest order in which the complete visible spectrum can be seen with this grating? (Enter 1 for first order, 2 for second order, etc.) (b) What is the angular separation between the violet edge (400 nm) and the red edge (700 nm) of the first order spectrum produced by the grating? O
- Given a double slit set up with a spacing of 5.74*10-6m and the light has a wavelength of 618 nm: How far from the central maximum is the third dark fringe (m=2) when the distance between the slits and the screen is 5.00 meters? a) 1.40m b) 2.03m c) 1.30m d) 1.10m (Hint: answer is a)A diffraction grating has 8900 slits across 1.20 cm. If light with a wavelength of 500 nm is sent through it, how many orders (maxima) lie to one side of the central maximum?Intense white light is incident on a diffraction grating that has 454 lines/mm. (a) What is the highest order in which the complete visible spectrum can be seen with this grating? (Enter 1 for first order, 2 for second order, etc.) (b) What is the angular separation between the violet edge (400 nm) and the red edge (700 nm) of the first order spectrum produced by the grating? answer in °
- A monochromatic light is directed onto a single slit 9.1 x 10 -3 mm wide. If the angle between the second dark fringes (minimums) and the central maximum is 8°: a) Calculate the wavelength of light. b) Determine the angular position of the third minimum.How many dark fringes will be produced on either side of the central maximum if light (λλ = 699 nm) is incident on a single slit that is 4.84 × 10-6 m wide?slit of width 0.46 mm is illuminated with light of wavelength 534 nm, and a screen is placed 114 cm in front of the slit. Find the widths of the first and second maxima on each side of the central maximum. w1 = mm (1st maxima) w2 = mm (2nd maxima)