Home
Class 12
PHYSICS
In the ideal double-slit experiment, whe...

In the ideal double-slit experiment, when a glass-plate (refractive index 1.5) of thickness t is introduced in the path of one of the interfering beams (wavelength `lambda`), the intensity at the position where the central maximum occurred previously remains unchanged. The minimum thickness of the glass-plate is

A

`2lambda`

B

`(2lambda)/3`

C

`lambda/3`

D

`lambda`

Text Solution

Verified by Experts

The correct Answer is:
A

`"Shift"=((mu-1)tD)/d=omega=(lambdaD)/d`
` :. t=2lambda`
Promotional Banner

Topper's Solved these Questions

  • WAVE OPTICS

    DC PANDEY|Exercise Assertion reason|10 Videos
  • WAVE OPTICS

    DC PANDEY|Exercise match column|4 Videos
  • WAVE OPTICS

    DC PANDEY|Exercise Check point|65 Videos
  • SOLVED PAPERS 2018

    DC PANDEY|Exercise JIPMER|22 Videos

Similar Questions

Explore conceptually related problems

In YDSE, when a glass plate of refractive index 1.5 and thickness t is placed in the path of one of the intefering beams (wavelength lambda ), intensity at the position where central maximum occurred previously remains unchanged. The minimum thickness of the glass plate is

In an ideal YDSE when a glass plate ( mu =1.5) of thickness t is introduced in the path of one of the interfering beams the intensity at the position where the central maximum occured previously remains unchanged. The maximum thickness of the glass plate is:

In YDSE, when a glass plate of refractive 1.5 of thickness t is placed in the path of one of the interfering beams of wavelength lamda , intensity at the position where central maximum occurred previously remain unchanged. If the minimum thicknes of the glass plate is klamda . Find the value of k ........

In a young 's double slit experiment, a glass plate of refractive index 1.5 and thickness 5 times 10^-4 cm is kept in the path of one of the light rays. Then

A thin sheet of glass (refractive index 1.5) of thickness 6 microns, introduced in the path of one of the interfering beams in a double-slit experiment shift the central fringe to a position earlier occupied by the fifth bright fringe. The wavelength of light used is

In Young's experiment, if a slab of mica of refractive index mu and thickness of t is introduced in the path of light from one of the slits, then number of fringes formed on the screen will –

A thin glass plate of refractive index 1.5 is introduced in the path of one of the interfering beam. As a result, the central bright fringe moves to a position previously occupied by the fifth bright fringe. If the wavelength of beam is 6.2 xx 10^(-5) cm , calculate the thickness of glass plate.

In young's experiments ,the source of red light of wavelength 7xx10^(-7)m when a thin glass plate of refrative index 1.5 at this wavelength is put in thepath of one of the interfering beams,the central bright fringe shifts by 10^(-3) m to the position previously occupied by the 5th bright fringe,Find the thickness of the plates. When the sources is now change to green light of wavelenght 5xx10^(-7) m ,the central fringe shifts to a position initially occupied by the 6th bright fringe due to red light,Find the refractive index of glass for the green light .Also estimate the changes in fringe width due to the change in wavekength

In YDSE, a glass slab of refractive index, mu= 1.5 and thickness 'l' is introduced in one of the interfening beams of wavelength lambda = 5000 A . If on introducing the slab, the central fringe shift by 2 mm, then thickness of stab would be (Fringe width, beta = 0.2 mm)

DC PANDEY-WAVE OPTICS-taking it together
  1. In Young's double slit experiment the y-coordinates of central maxima ...

    Text Solution

    |

  2. In Young's double slit experiment, wavelength lambda=5000Å the distanc...

    Text Solution

    |

  3. A parallel beam of light of intensity I is incident on a glass plate. ...

    Text Solution

    |

  4. In the Young's double slit experiment, the intensities at two points P...

    Text Solution

    |

  5. A monochromatic beam of light fall on YDSE apparatus at some angle (sa...

    Text Solution

    |

  6. Figure shows a standard two slit arrangement with slits S(1), S(2). P(...

    Text Solution

    |

  7. In Young's double slit experiment, the two slits acts as coherent sour...

    Text Solution

    |

  8. In the ideal double-slit experiment, when a glass-plate (refractive in...

    Text Solution

    |

  9. In the standard Young's double slit experiment, the intensity on the s...

    Text Solution

    |

  10. In a Young's double slit experiment, D equals the distance of screen a...

    Text Solution

    |

  11. White light is used to illuminate the two slits in a Young's double sl...

    Text Solution

    |

  12. The intensity of each of the two slits in Young's double slit experime...

    Text Solution

    |

  13. In a double-slit experiment, fringes are produced using light of wavel...

    Text Solution

    |

  14. An interference is observed due to two coherent sources separated by a...

    Text Solution

    |

  15. In a Young's double slit experiment, using unequal slit widths, the in...

    Text Solution

    |

  16. Two coherent light sources A and B are at a distance 3lambda from each...

    Text Solution

    |

  17. Two coherent sources separated by distance d are radiating in phase ha...

    Text Solution

    |

  18. Consider a ray of light incident from air onto a slab of glass (refrac...

    Text Solution

    |

  19. Two ideal slits S(1) and S(2) are at a distance d apart, and illuninat...

    Text Solution

    |

  20. In the adjacent diagram, CP represents a wavefront and AO & BP, the co...

    Text Solution

    |