Answer
Verified
492.3k+ views
Hint: In this question use the direct formula for Band width of young’s double slit experiment that is $B.W = \dfrac{D}{d}\lambda $, where D is the distance between the screen and the slits, d is the distance the slits, $\lambda $ is the wavelength. Variations of these parameters have direct influence over band width. This will help getting the answer.
Formula used – $B.W = \dfrac{D}{d}\lambda $
Complete Step-by-Step solution:
As we know in a Young’s double slit experiment the bandwidth (B.W) is calculated as:
$B.W = \dfrac{D}{d}\lambda $................. (1), where D = distance between the screen and the slits.
d = distance between the slits.
$\lambda $ = wavelength.
$\left( a \right)$ When the screen is moved away from the plane of the slits the distance between the slits is increased from equation (1).
Therefore if D is increased, and it is given that remaining parameters remain same so bandwidth (B.W) is increased.
$\left( b \right)$ When the monochromatic source is replaced by another monochromatic source of shorter wavelength, hence the bandwidth (B.W) is decreased as wavelength $\left( \lambda \right)$ is decreased from equation (1).
$\left( c \right)$ When the separation between the two slits is increased so the distance (d) between the slits is increased, hence the bandwidth (B.W) is decreased from equation (1).
$\left( d \right)$ If we increase the slit width so the separation between the slits also increases hence d is increased, so if d is increased bandwidth (B.W) is decreased from equation (1).
So this is the required answer.
Note – When monochromatic light passing through two narrow slits illuminates a distant screen, a characteristic pattern of bright and dark fringes is observed. This interference pattern is caused by the superposition of overlapping light waves originating from the two slits.
Formula used – $B.W = \dfrac{D}{d}\lambda $
Complete Step-by-Step solution:
As we know in a Young’s double slit experiment the bandwidth (B.W) is calculated as:
$B.W = \dfrac{D}{d}\lambda $................. (1), where D = distance between the screen and the slits.
d = distance between the slits.
$\lambda $ = wavelength.
$\left( a \right)$ When the screen is moved away from the plane of the slits the distance between the slits is increased from equation (1).
Therefore if D is increased, and it is given that remaining parameters remain same so bandwidth (B.W) is increased.
$\left( b \right)$ When the monochromatic source is replaced by another monochromatic source of shorter wavelength, hence the bandwidth (B.W) is decreased as wavelength $\left( \lambda \right)$ is decreased from equation (1).
$\left( c \right)$ When the separation between the two slits is increased so the distance (d) between the slits is increased, hence the bandwidth (B.W) is decreased from equation (1).
$\left( d \right)$ If we increase the slit width so the separation between the slits also increases hence d is increased, so if d is increased bandwidth (B.W) is decreased from equation (1).
So this is the required answer.
Note – When monochromatic light passing through two narrow slits illuminates a distant screen, a characteristic pattern of bright and dark fringes is observed. This interference pattern is caused by the superposition of overlapping light waves originating from the two slits.
Recently Updated Pages
Class 10 Question and Answer - Your Ultimate Solutions Guide
Master Class 10 Science: Engaging Questions & Answers for Success
Master Class 10 Maths: Engaging Questions & Answers for Success
Master Class 10 General Knowledge: Engaging Questions & Answers for Success
Master Class 10 Social Science: Engaging Questions & Answers for Success
Master Class 10 English: Engaging Questions & Answers for Success
Trending doubts
The Equation xxx + 2 is Satisfied when x is Equal to Class 10 Maths
Why is there a time difference of about 5 hours between class 10 social science CBSE
Change the following sentences into negative and interrogative class 10 english CBSE
Explain the Treaty of Vienna of 1815 class 10 social science CBSE
Write a letter to the principal requesting him to grant class 10 english CBSE
A Paragraph on Pollution in about 100-150 Words