In the diagram below (not to scale) a monochromatic beam of light of wavelength 500 nm is incident of a single slit of width 0.100 mm. After passing through the slit, the light projects on a screen at a distance of 1.00 m from the slit. 0.1 mm 1.0 m slit screen (a) On the axes below sketch a diagram showing how the intensity of the light varies at different points along the screen (Note that this is a sketch, no values are required). intensity distance along screen (b) Calculate the width of the central maximum in meters. (c) State two possible changes that would increase the width of the central maximum. Justify your answer. 1. 2. Justification:

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In the diagram below (not to scale) a monochromatic beam of light of wavelength
500 nm is incident of a single slit of width 0.100 mm. After passing through the slit, the light projects on
a screen at a distance of 1.00 m from the slit.
0.1 mm
1.0 m
slit
screen
(a) On the axes below sketch a diagram showing how the intensity of the light varies at different points
along the screen (Note that this is a sketch, no values are required).
intensity
P
distance along screen
(b) Calculate the width of the central maximum in meters.
(c) State two possible changes that would increase the width of the central maximum. Justify your
answer.
1.
2.
Justification:
Transcribed Image Text:In the diagram below (not to scale) a monochromatic beam of light of wavelength 500 nm is incident of a single slit of width 0.100 mm. After passing through the slit, the light projects on a screen at a distance of 1.00 m from the slit. 0.1 mm 1.0 m slit screen (a) On the axes below sketch a diagram showing how the intensity of the light varies at different points along the screen (Note that this is a sketch, no values are required). intensity P distance along screen (b) Calculate the width of the central maximum in meters. (c) State two possible changes that would increase the width of the central maximum. Justify your answer. 1. 2. Justification:
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