(a) Calculate the intensity of light at point P. (b) Calculate the angle ZP00'. (c) Calculate the location of the first three maxima with respect to point O'.
(a) Calculate the intensity of light at point P. (b) Calculate the angle ZP00'. (c) Calculate the location of the first three maxima with respect to point O'.
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
Transcribed Image Text:3. In a double slit experiment, the distance between the slits is d=1 mm. A screen is
situated at a distance of 2.5 m from the slits. Point P is at a distance of 25 cm from O',
as in Figure. O' is the orthogonal projection of the center between the slits (0) on the
screen. Monochromatic light with frequency v= 550 THz is used in this experiment.
(a) Calculate the intensity of light at point P.
(b) Calculate the angle ZP00'.
(c) Calculate the location of the first three maxima with respect to point O'.
(d) Calculate the location of the first three minima with respect to point O'.
BONUS:
You now consider that each slit has width a =0.05 mm.
Calculate the intensity of light at point P.
P.
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