Assume that protons and neutrons have equal masses. The mass of a nucleon is , and the radius of a nucleus is . The approximate ratio of nuclear density to water density is . The value of is:
JEE Physics 2023 Question with Solution
Answer
Correct answer:11
Step-by-step solution
Standard Method
Given: Mass of one nucleon is and nuclear radius is .
Find: The value of in the ratio of nuclear density to water density, written as .
The density of a nucleus is
- Mass of the nucleus:
- Volume of the nucleus:
where
So,
- Nuclear density:
The factor cancels, so density is independent of .
- Water density:
- Ratio:
Therefore, the approximate value of is .
Why the density is constant for all nuclei
Given: Nuclear radius varies as .
Find: Why the ratio comes out as a constant.
Since the mass of the nucleus is proportional to the number of nucleons,
and since
its volume is
Hence,
This is why nuclear density is nearly the same for all nuclei. Substituting the given numerical values gives
So the required approximate value is .
Common mistakes
Using the mass of only one nucleon directly as the mass of the whole nucleus without multiplying by first. This is wrong because the nucleus contains nucleons. Write mass as , and then let cancel with the coming from volume.
Ignoring the factor in the radius expression. This is wrong because the nuclear volume depends on , so missing changes the scaling completely. First cube the full radius expression before simplifying.
Comparing nuclear density directly with water density without dividing by . This is wrong because the question asks for a ratio to water density, not the nuclear density alone. After finding , compute .
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