If the mass of the iron nucleus is 55.85 u and A=56, the nuclear density of the iron is:

1. 2.27×1017 kg m3
2. 1.36×1015 kg m3
3. 3.09×1017 kg m3
4. 4.11×1015 kg m3
Subtopic:  Nuclear Binding Energy |
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The energy equivalent of 1 g of substance is:

1. 8.3×1013 J 2. 9×1013 J
3. 7.7×1013 J 4. 11×1013 J
Subtopic:  Nuclear Binding Energy |
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We are given the following atomic masses:
92238U=238.05079 u,24He=4.00260 u90234Th=234.04363 u,11H=1.00783 u91237 Pa=237.05121 u

Here the symbol Pa is for the element protactinium (Z=91).

The energy released during the alpha decay of 92238U 
is:
1. 6.14 MeV
2. 7.68 MeV
3. 4.25 MeV
4. 5.01 MeV

Subtopic:  Nuclear Binding Energy |
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We are given the following atomic masses:
92238U=238.05079 u,24He=4.00260 u90234Th=234.04363 u,11H=1.00783 u91237 Pa=237.05121 u

Here the symbol Pa is for the element protactinium (Z=91).

Then:

1. 92238U can not spontaneously emit a proton.
2. 92238U can spontaneously emit a proton.
3. The Q-value of the process is negative.
4. Both (1) and (3) are correct.
Subtopic:  Nuclear Binding Energy |
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The energy required in MeV/c2 to separate 816O into its constituents is:
(Given: mass defect for 816O=0.13691 amu)

1. 127.5 2. 120.0
3. 222.0 4. 119.0
Subtopic:  Mass-Energy Equivalent |
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Which one of the following is incorrect?

1. A chemical equation is balanced in the sense that the number of atoms of each element is the same on both sides of the equation.
2. The number of atoms of each element is not necessarily conserved in a nuclear reaction.
3. The number of protons and the number of neutrons are conserved in each nuclear reaction.
4. Mass-energy interconversion takes place only in nuclear reactions and never in the chemical reaction.

Subtopic:  Nuclear Energy |
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