Home
Class 12
PHYSICS
In a Young's double slit interference ex...

In a Young's double slit interference experiment the fringe pattern is observed on a screen placed at a distance D from the slits. The slits are separated by a distance d and are illuminated by monochromatic light of wavelength `lamda`. Find the distance from the central point where the intensity falls to (a) half the maximum, (b) one fourth of the maximum.

A

`(D lambda)/(4d), (D lambda)/(3d)`

B

`(D lambda)/(d), (D lambda)/(2d)`

C

`(D lambda)/(2d), (D lambda)/(3d)`

D

`(D lambda)/(4d), (D lambda)/(d)`

Text Solution

Verified by Experts

The correct Answer is:
A
Promotional Banner

Topper's Solved these Questions

  • WAVE OPTICS

    AAKASH SERIES|Exercise Additional Practice Exercise Level - II (Lecture Sheet (Advanced) More Than One Correct Answer Type Questions|4 Videos
  • WAVE OPTICS

    AAKASH SERIES|Exercise Additional Practice Exercise Level - II (Lecture Sheet (Advanced) Linked Comprehension Type Questions)|2 Videos
  • WAVE OPTICS

    AAKASH SERIES|Exercise Additional Practice Exercise (Level - I) (Main) Straight objective type questions|16 Videos
  • WAVE MOTION AND SOUND

    AAKASH SERIES|Exercise PROBLEMS (LEVEL - II)|97 Videos
  • WAVES

    AAKASH SERIES|Exercise EXERCISE-III (Doppler effect :)|15 Videos

Similar Questions

Explore conceptually related problems

In Young.s double slit experiment, the screen is kept at a distance of 1.2m from the plane of the slits. The two slits are separated by 5mm and illuminated with monochromatic light having wavelength 600 mm. Calculate: Distance of 10^(th) bright frings from the centre of the pattern.

In Young.s double slit experiment, the screen is kept at a distance of 1.2m from the plane of the slits. The two slits are separated by 5mm and illuminated with monochromatic light having wavelength 600 mm. Calculate: Frings width i.e., fringe separation of the interference pattern.

In Young.s double slit experiment, the screen is kept at a distance of 1.2 m from the plane of the slits. The two slits are separated by 5 mm and illuminated with monochromatic light having wavelength 60 nm. Calculate : (i) Fringe width i.e., fringe separation of the interference pattern. (ii) Distance of 10^(th) bright fringe from the cente of the pattern.

In a double slit experiment, the distance between the slits is d. The screen is at a distance D from the slits. If a bright fringe is formed opposite to one of the slits, its order is

In a Young’s double slit experiment, the separation of the two slits is doubled. To keep the same spacing of fringes, the distance D of the screen from the slits should be made

In Young's double slit experiment, the separation between the slits is halved and the distance between the slits and the screen is doubled. The fringe width is

In Young's double slit experiment the fringe are formed at a distance of 1 m from double slits of separation 0.12 mm. Calculate The distance of 3rd bright band from the centre of the screen, given lamda=6000A

In Young's double slit experiment, the sepcaration between the slits is halved and the distance between the slits and the screen is doubled. The fringe width is

In Young's double slit experiment, the sepcaration between the slits is halved and the distance between the slits and the screen is doubled. The fringe width is

In a Young's double slit experiment , the slits are Kept 2mm apart and the screen is positioned 140 cm away from the plane of the slits. The slits are illuminatedd with light of wavelength 600 nm. Find the distance of the third brite fringe. From the central maximum . in the interface pattern obtained on the screen frings from the central maximum. 3