For Young's double slit experiment, two statements are given below: Statement $I$: If screen is moved away…

For Young's double slit experiment, two statements are given below: Statement $I$: If screen is moved away from the plane of slits, angular separation of the fringes remains constant. Statement $II$: If the monochromatic source is replaced by another monochromatic source of larger wavelength, the angular separation of fringes decreases. In the light of the above statements, choose the correct answer from the options given below:
  1. Statement I is false but Statement II is true.
  2. Both Statement I and Statement II are true.
  3. Both Statement I and Statement II are false.
  4. Statement I is true but Statement II false.

Solution

In Young's double slit experiment, the angular separation of the fringes \((\theta)\) is given by :
\(\theta=\frac{m \lambda}{d}\)
where m is the fringe order, \(\lambda\) is the wavelength of the light, and d is the distance between the slits.
Now, let's analyze both statements:
Statement I: If the screen is moved away from the plane of the slits, the angular separation of the fringes remains constant.
This statement is true because the angular separation of the fringes \((\theta)\) does not depend on the distance between the screen and the slits. It only depends on the fringe order (\(m\)), the wavelength of the light \((\lambda)\), and the distance between the slits (d).
Statement II: If the monochromatic source is replaced by another monochromatic source of larger wavelength, the angular separation of fringes decreases.
This statement is false because if the wavelength \((\lambda)\) increases, the angular separation of the fringes \((\theta)\) also increases according to the formula :
\(\theta=\frac{m \lambda}{d}\)
So, the correct answer is :
Option D Statement I is true but Statement II is false.

Asked in: NEET 2023 (All India)

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