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Nuclear energy is released in fission since binding energy per nucleon is
  • a)
    sometimes larger and sometimes smaller
  • b)
    larger for fission fragments than for parent nucleus
  • c)
    same for fission fragments and nucleus
  • d)
    smaller for fission fragments than for parent nucleus
Correct answer is option 'B'. Can you explain this answer?
Verified Answer
Nuclear energy is released in fission since binding energy per nucleon...
Nuclear energy is relased in fission because BE/nucleon is larger for fission fragments than for parent nucleus.
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Nuclear energy is released in fission since binding energy per nucleon...
Binding Energy Per Nucleon in Fission
Factors contributing to the release of nuclear energy in fission include the binding energy per nucleon.

Binding Energy Per Nucleon Comparison
- In fission reactions, the binding energy per nucleon is generally larger for the fission fragments than for the parent nucleus.
- This is because the fission process involves splitting a heavy nucleus into two or more lighter fragments, which are usually more stable due to having higher binding energy per nucleon.

Explanation
- When a heavy nucleus undergoes fission, the resulting fragments have a higher binding energy per nucleon due to the more stable configuration of the lighter nuclei.
- This increased binding energy per nucleon in the fission fragments compared to the parent nucleus results in the release of nuclear energy during the fission process.
Therefore, the binding energy per nucleon is larger for fission fragments than for the parent nucleus, leading to the release of nuclear energy in fission reactions.
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Nuclear energy is released in fission since binding energy per nucleon isa)sometimes larger and sometimes smallerb)larger for fission fragments than for parent nucleusc)same for fission fragments and nucleusd)smaller for fission fragments than for parent nucleusCorrect answer is option 'B'. Can you explain this answer?
Question Description
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