Red light ( λ = 71 0. nm ) illuminates double slits separated by a distance d = 0.150 mm. The screen and the slits are 3.00 m apart. (a) Find the distance on the screen between the central maximum and the third maximum. (b) What is the distance between the second and the fourth maxima?
Red light ( λ = 71 0. nm ) illuminates double slits separated by a distance d = 0.150 mm. The screen and the slits are 3.00 m apart. (a) Find the distance on the screen between the central maximum and the third maximum. (b) What is the distance between the second and the fourth maxima?
Red light
(
λ
=
71
0.
nm
)
illuminates double slits separated by a distance
d
=
0.150
mm. The screen and the slits are 3.00 m apart. (a) Find the distance on the screen between the central maximum and the third maximum. (b) What is the distance between the second and the fourth maxima?
Light of wavelength 588.0 nm illuminates a slit, of width 0.77 mm.
(a) At what distance from the slit should a screen be placed if the first minimum in the diffraction pattern is to be 0.88mm from the central maximum?m(b) Calculate the width of the central maximum.mm
In a double slit interference pattern, the intensity at the peak of the central maximum(m = 0) is I0.(a) Calculate the intensity you measure at a point P in the pattern where the phasedifference between the waves from slits S1 and S2 is 45.0◦.(b) Calculate the difference in path at point P if the frequency of the light used inthe experiment is ν = 600 THz
An object is 2.00-cm-tall and is positioned 75.0 cm to the left of lens 1. Lens 1 isa converging lens with focal length f1 = 35.0 cm. A second converging lens, lens 2,having a focal length f2 = 50.0 cm, is located 200.0 cm to the right of lens 1, along thesame optic axis, and will have the image produced by lens 1 (I1) as its object.(a) Find the location (s01) and size (y01) of the image formed by lens 1.
(b) Find the location (s02) and size (y02) of the image formed by lens 2.
(a) Young's double-slit experiment is performed with 510-nm light and a distance of 2.00 m between the slits and the screen. The tenth interference
minimum is observed 7.35 mm from the central maximum. Determine the spacing of the slits (in mm).
1.318
mm
(b) What If? What are the smallest and largest wavelengths of visible light that will also produce interference minima at this location? (Give your
answers, in nm, to at least three significant figures. Assume the visible light spectrum ranges from 400 nm to 700 nm.)
smallest wavelength
nm
largest wavelength
nm
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