Showing posts with label Question 27. Show all posts
Showing posts with label Question 27. Show all posts

Thursday, November 8, 2018

9702/May Jun/11/2011/Q27

A diffraction grating with 500 lines per mm is used to observe diffraction of monochromatic light of
wavelength 600 nm.

The light is passed through a narrow slit and the grating is placed so that its lines are parallel to
the slit. Light passes through the slit and then the grating.


An observer views the slit through the grating at different angles, moving his head from X parallel
to the grating, through Y, opposite the slit, to Z parallel to the grating on the opposite side.
How many images of the slit does he see?
A 3
B 4
C 6
D 7

Solution:
Answer: D

For diffraction grating: d sinθ = nλ

The largest value of θ is 90° on both sides of Y. We need to identify the largest order n for which an image can be seen (constructive interference).

There are 500 lines in 1×10-3m.
Slit separation, d = (1×10-3) / 500 m

Value of n = d sinθ / λ = (1×10-3) (sin90°) / (500) (600×10-9) = 3.33

Since n can only be an integer, the largest order is n = 3. So, there are 3 images on both sides of Y. An image will also be seen at Y, which is directly along the source.

Number of images = 3 + 3 + 1 = 7

Reference: PYQ - May/Jun 2011 Paper 11 Q27

Wednesday, November 7, 2018

9702/May Jun/11/2016/Q27

Fringes of separation x are observed on a screen 1.00 m from a double slit that is illuminated by
yellow light of wavelength 600 nm.

At which distance from the slits would fringes of the same separation x be observed when using
blue light of wavelength 400 nm?

A 0.33 m
B 0.67 m
C 0.75 m
D 1.50 m

Solution:
Answer: D

For double slits: Separation of slits, a = Dλ / w
where D is the distance of the slits from the screen, λ is the wavelength and w is the fringe spacing

Fringe separation = y = Dλ / a = 1.00 × 600 / a

The same Young’s slit arrangement is being used. So, the slit separation a is the same.

For the blue light,
Wavelength λ = 400nm, Fringe separation = y, Slit separation = a and D = ???
Distance D = ay / λ = a (1.00 × 600 / a) / 400 = 3/2 = 1.50m

Reference: PYQ - May/Jun 2016 Paper 11 Q27

Tuesday, November 6, 2018

9702/Oct Nov/11/2014/Q27

A diffraction grating experiment is set up using yellow light of wavelength 600 nm. The grating has
a slit separation of 2.00 μm.


What is the angular separation (θ2 – θ1) between the first and second order maxima of the yellow
light?

A 17.5°
B 19.4°
C 36.9°
D 54.3°

Solution:
Answer: B.

For a diffraction grating: d sinθ = nλ
Wavelength λ = 600nm = 600×10-9 m
Slit separation d = 2.00 μm = 2.0×10-6 m

Angle θn = sin-1 (nλ / d)
When n = 1, θ1 = sin-1 ({600×10-9} / {2.0×10-6}) = 17.458°
When n = 2, θ2 = sin-1 (2 × {600×10-9} / {2.0×10-6}) = 36.870°

Angular separation (θ2 – θ1) = 36.870 – 17.458 = 19.4°

Reference: PYQ - Oct/Nov 2014 Paper 11 Q27