Home
Class 12
PHYSICS
The binding energy per nucleon for C^(12...

The binding energy per nucleon for `C^(12)` is 7.68 MeV and that for `C^(13)` is 7.5 MeV. The energy required to remove a neutron from `C^(13)` is

A

`5.34 Me V`

B

`5.5 Me V`

C

`9.5 Me V`

D

`9.34 Me V`

Text Solution

Verified by Experts

The correct Answer is:
A
Promotional Banner

Topper's Solved these Questions

  • RADIOACTIVITY & NUCLEAR PHYSICS

    MOTION|Exercise Exercise-2|24 Videos
  • RADIOACTIVITY & NUCLEAR PHYSICS

    MOTION|Exercise Exercise-3|81 Videos
  • RADIOACTIVITY & NUCLEAR PHYSICS

    MOTION|Exercise Questions For Practice|12 Videos
  • PROJECTILE MOTION

    MOTION|Exercise EXERCISE-3 (SECTION-B)|8 Videos
  • RAY OPTICS

    MOTION|Exercise Exercise-4|38 Videos

Similar Questions

Explore conceptually related problems

Binding energy per nucleon for C^(12) is 7.68 MeV and for C^(13) is 7.74 MeV . The energy required to remove a neutron from C^(13) is .

The binding energy per nucleon of ._(5)B^(10) is 8 MeV and that of ._(5)B^(11) is 7.5 MeV. The energy required to remove a neutron from ._(5)B^(11) is (mass of electron and proton are 9.11 xx 10^(-21) kg and 1.67 xx 10^(-27) kg respectively.

The binding energy per nucleon of O^16 is 7.97 MeV and that of O^17 is 7.75 MeV . The energy (in MeV) required to remove a neutron from O^17 is.

The binding energy per nucleon of ._(5)B^(10) is 8.0 MeV and that of ._(5)B^(11) is 7.5 MeV. The energy required to remove a neutron from ._(5)B^(11) is (mass of electron and proton are 9.11xx10^(31) kg and 1.67xx10^(27) kg, respectively)

The binding energy per nucleon for ._(6)C^(12) is 7.68 MeV//N and that for ._(6)C^(13) is 7.47MeV//N . Calculate the energy required to remove a neutron form ._(6)C^(13)

The binding energy per nucleus of ""_(8)O^(17) is 7.75 MeV. The energy required to remove one neutron from ""_(8)O^(17) is…………… MeV.

The binding energy per nucleon for ._(3)Li^(7) will be, if the mass of ._(3)Li^(7) is 7.0163 a.m.u.

In a fission reaction ._92^236 U rarr ^117 X + ^117Y + n + n , the binding energy per nucleon of X and Y is 8.5 MeV whereas of .^236 U is 7.6 MeV . The total energy liberated will be about.

MOTION-RADIOACTIVITY & NUCLEAR PHYSICS-Exercise -1
  1. The binding energies of deutron (.(1)H^(2)) and alpha - particle ...

    Text Solution

    |

  2. Deuterium is an isotope of hydrogen having a mass of 2.01470 amu. Find...

    Text Solution

    |

  3. The energy released per fission of uranium 235 is about 200 MeV. A rea...

    Text Solution

    |

  4. What is the power output of a .(92) U^(235) reactor if it is takes 30 ...

    Text Solution

    |

  5. Consider the nuclear reaction X^(200) to A^(110) + B^(9) It ...

    Text Solution

    |

  6. The binding energy per nucleon for C^(12) is 7.68 MeV and that for C^(...

    Text Solution

    |

  7. The rest mass of a deuteron is equivalent to an energy of 1876 MeV, th...

    Text Solution

    |

  8. In nuclear fission , 0.1% mass in converted into energy. The energy re...

    Text Solution

    |

  9. Which of the following materials is used for controlling the fission

    Text Solution

    |

  10. For a chain nuclear fission of U^(235) the moderation of neutron ...

    Text Solution

    |

  11. Neutron ration ("available "//"used") r per fission in atomic rea...

    Text Solution

    |

  12. In fission,the percentage of mass converted into energy is about

    Text Solution

    |

  13. Atomic reactor is based on -

    Text Solution

    |

  14. It the energy required to eject an electron from an atom is E(e...

    Text Solution

    |

  15. Thermal neutron means :

    Text Solution

    |

  16. Two lighter nuclei are fused together to form another nucleus an energ...

    Text Solution

    |

  17. 10^14 fissions per second are taking place in a nuclear reactor having...

    Text Solution

    |

  18. In an atomic reactor fast moving neutrons are slowed down to thermal e...

    Text Solution

    |

  19. Which of the following is the fusion reaction ?

    Text Solution

    |

  20. If two nuclei of mass number A(1) andA(2) fuse together to form a nucl...

    Text Solution

    |