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If M(o) is the mass of an oxygen isotope...

If `M_(o)` is the mass of an oxygen isotope `._(8)O^(17), M_(p)` and `M_(N)` are the masses of a proton and neutron respectively, the nuclear binding energy of the isotope is:

A

`M_Oc^2`

B

`(M_O-17M_n)c^2`

C

`(M_O8M_n)c^2`

D

`(8M_p+9M_n-M_O)C^2`

Text Solution

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The correct Answer is:
D
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Knowledge Check

  • If M_(O) is the mass of an oxygen isotope ._(8)O^(17),M_(p) and M_(n) are the masses of a proton and a neutron, respectively, the nuclear binding energy of the isotope is

    A
    `(M_(O)-8M_(p))c^(2)`
    B
    `(M_(O)-8M_(p)-9M_(n))c^(2)`
    C
    `M_(O)c^(2)`
    D
    `(M_(O)-17M_(n))c^(2)`
  • If M _(O ) is the mass of an oxygen isotope ""_(8) O ^(17), M _(P) and M _(n) are the masses of a proton and a neutron, respectively, the nuclear binding energy of the isotope is

    A
    `M_(O ) C ^(2)`
    B
    `(M _(O ) - 17 M _(n)) c ^(2)`
    C
    `( M _(O ) - 8 M _(p)) c ^(2)`
    D
    `( 8 M_(P) + 9 M _(n) - M _(O)) c ^(2)`
  • m_(p) and m_(n) are masses of proton and neutron respectively. An element of mass M has Z protons and N neutrons then

    A
    `M gt Zm_(p)+Nm_(n)`
    B
    `M=Zm_(p)+Nm_(m)`
    C
    `M lt Zm_(p)+Nm_(n)`
    D
    M may be greater than less than or equal to `Zm_(p)+Nm_(n)` depending on nature of
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