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Standard XII
Physics
Angular Position of Fringes in Diffraction
30. Two slits...
Question
30. Two slits are separated by 0.32 mm. A beam of 500 nm light strikes the slits producing an interference pattern. Determine the number of maxima observed in the angular range of -30^°
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Q.
Two slits are separated by
0.32
m
m
. A beam of
500
n
m
lights strikes the slits producing an interference pattern. The number of maxima observed in the angular range
−
30
o
<
θ
<
30
o
.
Q.
Two slits are separated by
0.3
mm
. A beam of
500
nm
light strikes the slits, producing an interference pattern. The number of maxima observed in the angular range
−
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∘
<
θ
<
30
∘
.
Q.
Two slits are seperated by 0.320 mm. A beam of 500 nm light strikes the slits, producing an interference pattern. Determine the number of maxima observed in the angular range
−
30
0
<
θ
<
30.0
0
Q.
Laser light of wavelength
630
n
m
incident on a pair of slits produces an interference pattern in which the bright fringes are separated by
8.1
m
m
. A second light produces an interference pattern in which the fringes are separated by
7.2
m
m
. Then the wavelength of the second light will be
Q.
In a Young's double slit experiment, the slits are placed
0.320
mm
apart. Light of wavelength
λ
=
500
nm
is incident on the slits. The total number of bright fringes that are observed in the angular range
−
30
∘
≤
θ
≤
30
∘
is
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