Home
Class 12
PHYSICS
The electron in a hydrogen atom makes a ...

The electron in a hydrogen atom makes a transition `n_(1) rarr n_(2)`, where `n_(1)` and `n_(2)` are the principle quantum numbers of the two states. Assume the Bohr model to be valid. The time period of the electron in the initial state is eight times that in the final state. the possible values of `n_(1)` and `n_(2)` are

A

`n_(1)=4,n_(2)=2`

B

`n_(1)=8,n_(2)=2`

C

`n_(1)=8,n_(2)=1`

D

`n_(1)=6,n_(2)=3`

Text Solution

Verified by Experts

The correct Answer is:
A, D
Promotional Banner

Topper's Solved these Questions

  • MODERN PHYSICS

    DC PANDEY|Exercise for JEE Advanced (More than One Options is Correct )|1 Videos
  • MODERN PHYSICS

    DC PANDEY|Exercise Metch the column|6 Videos
  • MODERN PHYSICS

    DC PANDEY|Exercise Integer Type Questions|17 Videos
  • MAGNETISM AND MATTER

    DC PANDEY|Exercise Medical gallery|1 Videos
  • MODERN PHYSICS - 1

    DC PANDEY|Exercise Level 2 Subjective|23 Videos

Similar Questions

Explore conceptually related problems

The electron in a hydrogen atom make a transtion n_(1) rarr n_(2) where n_(1) and n_(2) are the priocipal quantum number of the two states . Assume the Bohr model to be valid . The time period of the electron in the initial state is eight time that in the state . THe possible values of n_(1) and n_(2) are

The electron in a hydrogen atom makes a trapsition n_(1) to n_(2), where n_(1) and n_(2) are the principal quantum numbers of the two energy states. Assume Bohr's model to be velid. The time period of the electron in the initial state is eight time that in the final static. what are the possible value of n_(1) and n_(2) ?

The electron in a hydrogen atom makes a transition n_1 rar n_2 wher n_1 and n_2 are the principal quuantum numbers fo the two states . Assume the Bohr model to gbe veloid the time pertiod fo the electron in the initial state is eight times that tin the final state . The posible velues of n_1 and n_2 are :

The electron in hydrogen atom makes a transition n_(1)ton_(2) where n_1 and n_2 are the principal quantum number of two states. Assuming the Bohr model to be valid, the time period of the electron in the initial state is eight times that in the final state. The possible value of n_1 and n_2 are:

The electron in a hydrogen atom makes a transition n_(1) rarr n_(2) where n_(1) and n_(2) are the principal qunatum numbers of the two states. Assume the Bohr model to be valid. The frequency of orbital motion of the electron in the initial state is 1//27 of that in the final state. The possible values of n_(1) and n_(2) are

An electron in hydrogen atom makes a transition n_i to n_2 where n_1 and n_2 are principal quantum numbers of the two states. Assuming Bohr's model to be valid the time period of the electron in the initial state is eight times that in the final state. The possible values of n_1 and n_2 are

The electron in a H- atom makes a transition from n_(1) to n_(2) where n_(1) and n_(2) are the principal quantum number of the states. Assume Bohr's model to be valid. The time period of the electron in initial state is 27 times that in final state Find the possible value of n_(1) and n_(2) if only just first 10 states are in the visible range of instrument.

An electron in a hydrogen atom makes a transition n_1 to n_2 where n_1 and n_2 are principle quantum numbers of the states . Assume the Bohr's model to be valid , the frequency of revolution in initial state is eight times that of final state. The ratio n n_1/n_2 is

An electron in hydrogen atom makes a transition from n=n1 to n=n2 .The time period of the electron in the initial state is eight times that in the final state.The possible values of n1 and n2 are:

DC PANDEY-MODERN PHYSICS-for JEE Advanced (only one option is Correct)
  1. The ground state and first excited state energies of hydrogen atom are...

    Text Solution

    |

  2. An electron is excited from a lower energy state to a higher energy st...

    Text Solution

    |

  3. The electron in a hydrogen atom makes a transition n(1) rarr n(2), whe...

    Text Solution

    |

  4. An electron in hydrogen atom first jumps from second excited state to ...

    Text Solution

    |

  5. The magnitude of energy, the magnitude of linear momentum and orbital ...

    Text Solution

    |

  6. The wavelengths and frequencies of photons in transition 1,2 and 3 for...

    Text Solution

    |

  7. Which of the following transition in He^(+) ion will give rise to a sp...

    Text Solution

    |

  8. Suppose the potential energy between an electron and a proton at a dis...

    Text Solution

    |

  9. Let A(n) be the area enclosed by the n^(th) orbit in a hydrogen atom. ...

    Text Solution

    |

  10. Hydrogen atom absorbs radiations of wavelength lambda0 and consequentl...

    Text Solution

    |

  11. The threshold wavelength for photoelectric emission for a material is ...

    Text Solution

    |

  12. From the following equation pick out the possible nuclear fusion react...

    Text Solution

    |

  13. In the Bohr model of the hydrogen atgom

    Text Solution

    |

  14. The mass number of a nucleus is.

    Text Solution

    |

  15. Photoelectric effect supports quantum nature of light because

    Text Solution

    |

  16. If a nucleus .(Z)^(A)x emits one alpha-particle and one beta (negative...

    Text Solution

    |

  17. Find the half life of U^(238), if one gram of it emits 1.24xx10^4 alp...

    Text Solution

    |

  18. A nitrogen nucleus 7^(N^(14)) absorbs a neutron and can transfrom into...

    Text Solution

    |

  19. Nucleus A decays to B with decay constant lambda(1) and B decays to C ...

    Text Solution

    |

  20. An unstable nucleus X can decay into two stable nuclie Y and Z A sampl...

    Text Solution

    |