Home
Class 12
PHYSICS
Two point sources separated by 2.0 m are...

Two point sources separated by 2.0 m are radiating in phase with `lambda = 0.50 m`. A detector moves in a circular path around the two sources in a plane containing them. How many maxima are detected?

A

16

B

20

C

24

D

32

Text Solution

Verified by Experts

The correct Answer is:
a

Condition for maxima is
`d sin theta = n lambda`
`sin theta = (n lambda)/(d) = n ((0.50)/(2.0)) = 0.25 n`
A `sin theta` lies between -1 and 1, so we wish to find all values of n for which
`|0.25n|le 1`
These value are -4, -3, -2, -1, 0, +1, +2, +3, +4. For each of these, there are two different values of theta except for -4 and +4 A single value of `theta,-90^(@)` and `+90^(@)`, is associated with `n = -4` and `n = +4`, respectively. Thus, there are 16 different angles in all and therefore 16 maxima.
Promotional Banner

Topper's Solved these Questions

  • WAVE OPTICS

    CENGAGE PHYSICS|Exercise Multiple Correct|8 Videos
  • WAVE OPTICS

    CENGAGE PHYSICS|Exercise Assertion- Reasoning|13 Videos
  • WAVE OPTICS

    CENGAGE PHYSICS|Exercise Subjective|11 Videos
  • THERMODYNAMICS

    CENGAGE PHYSICS|Exercise QUESTION BANK|34 Videos
  • WAVES

    CENGAGE PHYSICS|Exercise QUESTION BANK|38 Videos

Similar Questions

Explore conceptually related problems

Two coherent radio-frequency point sources separated by 2.0 m are radiating in phase with lambda=0.50 m . A detector moves in a circuit of large radius around the two sources in a plane containing them as shown in figure. Find (a) the angular position of interference maxima for 0lethetale90^(@) and (b) number of maximum in the range (-pi/2)lethetalepi/2 and in one complete rotation.

Two radio frequency sources S_(1) and S_(2) , separated by distance 2.5 m emitting in phase waves of wavelength 1m. A detector moves in a large circular path around the two sources in a plane containing them. The number of maxima that will be detected by it over the complete circular path. are

Two coherent sources separated by distance d are radiating in phase having wavelength lambda . A detector moves in a big circle around the two sources in the plane of the two sources. The angular position of n=4 interference maxima is given as

Two coherent radio point sources that are separated by 2.0 m are radiating in phase with a wavelength of 0.25m. If a detector moves in a large circle around their mid-point. At how many points will the detector show a maximum signal?

Two point source separated by d=5 mu m emit light of wavelength lambda = 2 mu m in phase. A circular wire of radius 20 mu m is placed around the source as shown in figure. Which point are dark and bright.

Two point source separated by d=5mum emit light of wavelength lamda=2mum in phase A cicular wire of radius 20mum is placed aournd the source as shown in figure.

Two monochromatic (wavelength =a//5 ) and coherent sources of electromagnetic waves are placed on the x-axis at the point (2a,0) and (-a,0) . A detector moves in a circle of radius R(gt gt 2a) whose centre is at te origin. The number of maximas detected during one circular revolution by the deterctor are -

An inteference is observed due to two coherent sources A and B separated by a distance 4lambda along Y-axis, where lambda is the wavelength of light. A detector 'D' is moved alog the positive X-axis. Find the totla number of maxima observe on the X-axis excluding the points x =0 and x = oo ?

CENGAGE PHYSICS-WAVE OPTICS-Single Correct
  1. A double-slit experiment, arrangement produces interference fringes fo...

    Text Solution

    |

  2. In Young's double-slit experimetn, the intensity of light at a point o...

    Text Solution

    |

  3. Two point sources separated by 2.0 m are radiating in phase with lambd...

    Text Solution

    |

  4. In YDSE, light of wavelength lamda = 5000 Å is used, which emerges in ...

    Text Solution

    |

  5. A double-slit experiment is immersed in a liquid of refractive index 1...

    Text Solution

    |

  6. In Young's double-slit experiment, the slit separation is 0.5 mm and t...

    Text Solution

    |

  7. A light of wavelength 6000 Å shines on two narrow slits separeted by a...

    Text Solution

    |

  8. A plane wavefront travelling in a straight line in vacuum encounters a...

    Text Solution

    |

  9. In Young's double-slit experiment, the wavelength of light was changed...

    Text Solution

    |

  10. Calculate the wavelength of light used in an interference experiment f...

    Text Solution

    |

  11. In Young's double-slit experiment the angular width of a fringe formed...

    Text Solution

    |

  12. In a double-slit experiment, the slits are separated by a distance d a...

    Text Solution

    |

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

    Text Solution

    |

  14. In YDSE, find the thickness of a glass slab (mu=1.5) which should be...

    Text Solution

    |

  15. In Young's double-slit experiment, the slit are 0.5 mm apart and the i...

    Text Solution

    |

  16. Figure shows two coherent sources S(1) and S(2) emitting wavelength la...

    Text Solution

    |

  17. Two waves of light in air have the same wavelength and are intially in...

    Text Solution

    |

  18. Light from a sources emitting two wavelengths lambda(1) and lambda(2) ...

    Text Solution

    |

  19. The wavefront of a light beam is given by the equation x + 2y + 3x = c...

    Text Solution

    |

  20. As shown in figure waves with identical wavelengths and amplitudes and...

    Text Solution

    |