Home
Class 12
PHYSICS
In Young's experiment interference bands...

In Young's experiment interference bands are produced on the screen placed at `1.5m` from the slits `0.15mm` apart and illuminated by light of wavelength `6000 Å`. If the screen is now taken away from the slit by 50 cm the change in the fringe width will be

A

`2xx 10^(-4)m`

B

`2xx 10^(-3)m`

C

`6xx 10^(-3)m`

D

none

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Topper's Solved these Questions

  • WAVES OPTICS

    AAKASH SERIES|Exercise EXERCISE -III (DIFFRACTION)|11 Videos
  • WAVES OPTICS

    AAKASH SERIES|Exercise EXERCISE -III (POLARISITION)|10 Videos
  • WAVES OPTICS

    AAKASH SERIES|Exercise EXERCISE -II (POLARISATION)|10 Videos
  • WAVES

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

Similar Questions

Explore conceptually related problems

Two slits, 4 mm apart, are illuminated by light of wavelength 6000 Å . What will be the fringe width on a screen placed 2 m from the slits

In Young's double slit experiment, the two slits 0.15 mm apart are illuminated by light of wavelength 450 nm . The screen is 1.0 m away from the slits. Find the distance of second bright fringe and second dark fringe from the central maximum. How will the fringe pattern change if the screen is moved away from the slits ?

In Young's double slit experiment , the two slits 0.20 mm apart are illuminated by monochromatic light of wavelength 600 nm . The screen 1.0 m away from the slits . (a) Find the distance of the second (i) bright fringe , (ii) dark fringe from the central maximum . (b) How will the fringe pattern change if the screen is moved away from the slits ?

In Young's double slit experiment the two slits 0.12 mm apart are illuminated by monochromatic light of wavelength 420 nm. The screen is 1.0 m away from the slits . (a) Find the distance of the second (i) bright fringe , (ii) dark fringe from the central maximum . (b) How will the fringe pattern change if the screen is moved away from the slits ?

Two slits are separated by a distance of 0.5mm and illuminated with light of lambda=6000Å . If the screen is placed 2.5m from the slits. The distance of the third bright image from the centre will be

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.

In young's double slit experiment with monochromic light, fringes are obtained on a screen placed at some distance from the plane of slits. If the screen is moved by 5 cm towards the slits, then the change in fringe width is 30mum if the distance between the slits is 1mm, then calculate wavelength of the light used.

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

A slit of size 0.15m is placed at 2.1m from a screen. On illuminated it by a light of wavelength 5xx10^-5cm . The width of central maxima will be

In a Young's double slit experiment, the slit separation is 1mm and the screen is 1m from the slit. For a monochromatic light of wavelength 500nm , the distance of 3rd minima from the central maxima is

AAKASH SERIES-WAVES OPTICS-EXERCISE -III (DOPPLER EFFECT IN LIGHT, INTERFERENCE)
  1. The distance between the tew slits in a Young's double slit experiment...

    Text Solution

    |

  2. Light from two coherent sources of same amplitude and same wavelength ...

    Text Solution

    |

  3. In Young's double slit experiment an interference pattern is obtained ...

    Text Solution

    |

  4. In young's double slit experiment the n^(th) red bright band coincides...

    Text Solution

    |

  5. In Young's double slit experiment, 12 fringes are observed to be forme...

    Text Solution

    |

  6. In Young.s double slit experiment the distance between the sources is ...

    Text Solution

    |

  7. In Young's experiment interference bands are produced on the screen pl...

    Text Solution

    |

  8. The two coherent sources of equal intensity produce maximum intensity ...

    Text Solution

    |

  9. The ratio of the intensities at minima to maxima in the interference p...

    Text Solution

    |

  10. Two coherent monochromatic light sources are located at two vertices o...

    Text Solution

    |

  11. In Young's double slit experiment S(1) and S(2) are two slits. Films o...

    Text Solution

    |

  12. In a Young's double slit experiment using monochromatic light, the fri...

    Text Solution

    |

  13. When a thin transparent plate of Refractive Index 1.5 is introduced in...

    Text Solution

    |

  14. Two coherent point sources S1 " and "S2 vibrating in phase light of wa...

    Text Solution

    |

  15. A transparent glass plate of thickness 0.5 mm and refractive index 1.5...

    Text Solution

    |

  16. In the Young's double slit experiment using a monochromatic light of w...

    Text Solution

    |

  17. YDSE is carried with two thin sheets of thickness 10.4mu m each and r...

    Text Solution

    |

  18. In the Young's double slit experiment, the intensity of light at a poi...

    Text Solution

    |

  19. In Young.s double slit experiment, the slits are 2mm apart and are ill...

    Text Solution

    |

  20. In a Young.s interference experimental arrangement, the yellow light i...

    Text Solution

    |