Problem
Explain why both the fission of heavy nuclei (such as ) and the fusion of light nuclei (such as ) release energy. Use the binding energy per nucleon curve to help, and indicate where the two processes sit relative to the maximum.
Binding energy per nucleon curve: the peak is at iron; the arrows show the direction in which fusion and fission proceed.
Solution
The curve shows the binding energy per nucleon as a function of the mass number : it rises rapidly for light nuclei, reaches a maximum around iron (, ) and then decreases slowly for heavy nuclei.
The key point is this: a process releases energy when the products are more tightly bound than the reactants, i.e. when they have a higher . The increase in binding energy corresponds to a decrease in mass, and that missing mass is released as energy according to .
- Fusion (): the light nuclei sit on the steep branch to the left of the maximum. By fusing they climb towards the peak, increasing : so they release energy.
- Fission (): the heavy nuclei sit to the right of the maximum, at a lower . By splitting into fragments of intermediate mass they move closer to the peak, increasing : here too energy is released.
Both processes, starting from opposite extremes, “slide” towards the bottom of the energy valley represented by iron.
Links
Topics: Nuclear physics Concepts: Nuclear binding energy · Nuclear fission · Nuclear fusion Skills: Reading graphs