E.4.1—Fission energy release

Syllabus
First assessment 2025
Objective
Level
SL

Explain Fission Energy

Model fission

A heavy nucleus can split into two lighter nuclei after absorbing a neutron, or spontaneously in an unstable state. The products have a greater binding energy per nucleon than the original heavy nucleus.

Track the release

The increase in total binding energy appears as kinetic energy of the fission products, neutron energy and radiation. The mass of the products is slightly smaller, with the mass difference converted to energy.

E_{\text{released}}=B_{\text{products}}-B_{\text{reactants}}=\Delta mc^2

Worked example — use binding energy per nucleon

For 235U^{235}\mathrm{U} splitting into 89Kr^{89}\mathrm{Kr} and 144Ba^{144}\mathrm{Ba}, use B=A(B/A)B=A(B/A). With values 7.597.59, 8.728.72 and 8.27MeV8.27\,\mathrm{MeV} per nucleon, E=[89(8.72)+144(8.27)]235(7.59)=1.83×102MeVE=[89(8.72)+144(8.27)]-235(7.59)=1.83\times10^2\,\mathrm{MeV}. The products are more tightly bound, so this positive difference is released.

Understand fissile material

Enrichment increases the fraction of uranium-235 relative to uranium-238, making a sustained fission process more feasible.

Common trap

Do not say energy is created from nothing. It comes from the mass defect and the change in nuclear binding energy.

E.4.1 Exam Analysis

Assessment in practice

1–3 marks
How it is assessed

Questions estimate specific fission energy or identify what enrichment means.

Command terms

Estimate / Identify

What earns marks

Convert energy per nucleus and mass per nucleus to J kg^-1, or state explicitly that enrichment raises the U-235 fraction.

Watch for

Confusing enrichment with converting one uranium isotope into another.

Retrieve the Fission Model

Retrieve the chain

Fission converts nuclear binding and mass defect into energy. A controlled chain reaction depends on neutron energy and losses; moderator, control rods, heat exchanger and shielding perform different jobs.

Retrieve the safety boundary

Fission products can be radioactive and require containment, shielding and long-term waste management.