Home
Class 12
CHEMISTRY
The actual atomic mass of .(20)Ca^(40) i...

The actual atomic mass of `._(20)Ca^(40)` is 39.96259 amu. Find the binding energy for this nuclide, using 1.008665 amu for the mass of a neutron and 1.007825 amu for the mass of atomic hydrogen. Also calculate the binding energy per nucleon.

Text Solution

Verified by Experts

Mass of `._(20)Ca^(40)` atom
= Mass of 20 atoms of hydrogen + Mass of 20 neutrons
`= 20 xx 1.007825 + 20 xx 1.008665 = 40.32980` amu
Acutal mass of `._(20)Ca^(40)` atom = 39.96259 amu (given)
`:.` Mass defect `(Delta M) = 40.32980 - 39.96259`
= 0.36259 amu
For a mass defect of 0.36721 amu, energy released
`= 931.5 xx 0.36721 MeV = 342.06 MeV`
Promotional Banner

Topper's Solved these Questions

  • NUCLEAR CHEMISTRY

    CENGAGE CHEMISTRY|Exercise Ex6.1 Objective|15 Videos
  • NUCLEAR CHEMISTRY

    CENGAGE CHEMISTRY|Exercise Ex6.2 Objective|8 Videos
  • NUCLEAR CHEMISTRY

    CENGAGE CHEMISTRY|Exercise Archives Subjective|13 Videos
  • NCERT BASED EXERCISE

    CENGAGE CHEMISTRY|Exercise Nuclear Chemistry (NCERT Exercise)|29 Videos
  • ORGANIC COMPOUNDS WITH FUNCTIONAL GROUP

    CENGAGE CHEMISTRY|Exercise Archives Analytical And Descriptive|24 Videos

Similar Questions

Explore conceptually related problems

As the mass number increase binding energy per nucleon :

The mass defect in a nucleus is 3.5 "amu" . Then the binding energy of the nucelus is

The atomic mass of ._(8)O^(16) is 16.000000 amu. Calculate the binding energy of ._(8)O^(16) in MeV per nucleon.

The mass of ._3^7Li is 0.042 amu less than the sum of masses of its constituents. The binding energy per nucleon is

If the mass defect of ""_(4)^(9)X is 0.09 a.m.u. then the binding energy per nucleon is (1 a.m.u= 931.5 MeV)

If the mass defect of ""_(4)^(9)X is 0.099 a.m.u. , then binding energy per nucelon is (1 a.m.u, 931.5 MeV)

Calculate the binding energy of a deutron. Given that mass of proton = 1.007825 amu mass of neutron = 1.008665 amu mass of deutron = 2.014103 amu

The atomic mass of B^(10) is 10.811 amu . Find the binding energy of B^(10) nucleus . The mass of electron is 0.0005498 amu. The mass of proton is m_(p) = 1.007276 amu . The mass of neutron is m_(n) = 1.008665 amu.

Find the binding energy per nucleon of _79^197Au if its atomic mass is 196.96 u.

CENGAGE CHEMISTRY-NUCLEAR CHEMISTRY-Solved Example
  1. How may alpha- and beta- particles will be emitted when .(90)Th^(232) ...

    Text Solution

    |

  2. The actual atomic mass of .(20)Ca^(40) is 39.96259 amu. Find the bindi...

    Text Solution

    |

  3. 14 g of a radioactive substance decays to 7 g in 20 min. Will the time...

    Text Solution

    |

  4. The final product of U^(238) is Pb^(206). A sample of pitchblende cont...

    Text Solution

    |

  5. An old piece of wood has 25.6T as much C^(14) as ordinary wood today h...

    Text Solution

    |

  6. The half-life of cobalt-60 is 5.26 years. Calculate the percentage act...

    Text Solution

    |

  7. The activity of 1 g radium is found to be 0.5. Calculate the half-life...

    Text Solution

    |

  8. It is found that 3.125 xx 10^(-8) g atoms of Rn exist in equilibrium w...

    Text Solution

    |

  9. What mass of C^(14) with t(1//2) = 5730 years has activity equal to cu...

    Text Solution

    |

  10. The disintegrationn rate of a certain radioactive sample at any instan...

    Text Solution

    |

  11. A radioisotope .(Z)A^(m) (t(1//2) = 10 days) decays to give .(z - 6)B^...

    Text Solution

    |

  12. At radioactive equilibrium, the ratio between two atoms of radioactive...

    Text Solution

    |

  13. The mean lives of a radioactive substance are 1620 years and 405 years...

    Text Solution

    |

  14. Calculate the effective neutron capture radius of a nucleus having a c...

    Text Solution

    |

  15. A 0.20 mL sample of a solution containing 1.0 xx 10^(-7) Ci of .(1)H^(...

    Text Solution

    |

  16. A sample of .(53)I^(131), as iodide ion, was administered to a patient...

    Text Solution

    |

  17. 1 mg of Th emits 22 alpha-particles per unit solid angle per minute. C...

    Text Solution

    |

  18. A solution contains 1 mCi of L-phenylalanine C^(14) labelled in 2.0 mL...

    Text Solution

    |