Home
Class 12
PHYSICS
Light of wavelength 520nm passing throug...

Light of wavelength `520nm` passing through a double slit,produced interference pattern of relative intensity versus deflection angle `theta` as shown in the figure.find the separation of between the slits.

Text Solution

Verified by Experts

The correct Answer is:
`1.98xx10^(-2)mm`
Promotional Banner

Topper's Solved these Questions

  • WAVE OPTICS

    ALLEN |Exercise Exercise 4 B (Conceptual subjective Exercise)|8 Videos
  • WAVE OPTICS

    ALLEN |Exercise Exercise 5 A (Previous Years Questions)|17 Videos
  • WAVE OPTICS

    ALLEN |Exercise Exercise 3 (Miscellaneous type Questions)|27 Videos
  • UNIT & DIMENSIONS, BASIC MATHS AND VECTOR

    ALLEN |Exercise Exercise (J-A)|7 Videos

Similar Questions

Explore conceptually related problems

Laser light of wavelength 630 nmincident on a pair of slits produces as interference pattern in which the bright fringes are separated by 8.1 mm. A second light produces an interference pattern in which the fringes are separated by 7.2 mm. Calculate the wavelength of the second light.

In interference pattern if the slit widths are in the ratio 1:9 then find out the ratio of minimum and maximum intensity

State two conditions to obtain sustained interference of light. In young's double slit experiment, using light of wavelength 400 nm, interference fringes of width X are obtained. The wavelength of light is increased to 600 nm and the separation between the slits is halved. if one wants the observed fringe width on the screen to be the same in the two cases, find the ratio of the distance between the screen and the plane of the slits in the two arrangements.

In Young's double slit experiment, the distance between slits and the screen is 1.0 m and monochromatic light of 600 nm is being used. A person standing near the slits is looking at the fringe pattern. When the separation between the slits is varied, the interference pattern disappears for a particular d_(0) between the slits

The figure shows the interfernece pattern obtained in double slit experiment using light of wavelength 600 nm. Q. The third order bright fringe is

In a Young's double slit experiment, the separation between the slits is 0.15 mm. In the experiment, a source of light of wavelength 589 nm is used and the interference pattern is observed on a screen kept 1.5 m away. The separation between the successive bright fringes on the screen is

Statement-I : In Young's double slit experiment interference pattern dissappears when one of the slits is closed Statement-II : Interference is observed due to superposition of light waves from two coherent source

In double-slit experiment using light of wavelength 600 nm, the angular width of a fringe formed on a distant screen is 0.1°. What is the spacing between the two slits?