Published by:
CGP EDU Academic Team
Published on: September 12, 2026
The binding energy of a nucleon in a nucleus is of the order of a few
Text Solution
Verified by ExpertsThe correct answer is:
C
Step-by-step Explanation:
1. Definition:
The binding energy per nucleon is the average energy required to remove a single nucleon (proton or neutron) from a nucleus.
2. Experimental Values:
For most stable nuclei (mass numbers $A$ between 30 and 170), the average binding energy per nucleon is approximately $8\text{ MeV}$. For instance, the maximum binding energy per nucleon is for iron ($^{56}\text{Fe}$), which is about $8.75\text{ MeV}$.
3. Conclusion:
Therefore, the binding energy of a nucleon in a nucleus is of the order of a few MeV (Mega-electronvolts).
Thus, the correct option is C.
1. Definition:
The binding energy per nucleon is the average energy required to remove a single nucleon (proton or neutron) from a nucleus.
2. Experimental Values:
For most stable nuclei (mass numbers $A$ between 30 and 170), the average binding energy per nucleon is approximately $8\text{ MeV}$. For instance, the maximum binding energy per nucleon is for iron ($^{56}\text{Fe}$), which is about $8.75\text{ MeV}$.
3. Conclusion:
Therefore, the binding energy of a nucleon in a nucleus is of the order of a few MeV (Mega-electronvolts).
Thus, the correct option is C.
Prepare Smarter with CGP Edu
Get practice questions, solutions, and test series in one place.
Write a Review
Share your experience with this question and solution.
Commentary
Send your comment, doubt, correction, or feedback to admin.
Similar Questions
Explore conceptually related problems