E.5.3—Fusion conditions
- Syllabus
- First assessment 2025
- Objective
- —
- Level
- HL
Use high temperature
Nuclei are positively charged and repel electrically. High core temperature gives them enough kinetic energy and speed to approach despite this repulsion.
Use high density
High density puts more nuclei into a given volume, increasing the collision frequency and the probability of close encounters.
Reach the strong-force range
Fusion requires nuclei to approach closely enough for the attractive strong interaction to act and for a bound product to form.
Common trap
Do not use surface temperature or star size as the direct fusion condition. The relevant evidence is high core temperature and density.
Questions explain why fusion occurs in stellar cores or identify which solar features make fusion possible.
Explain / State
Mention both temperature and density, then link each to a distinct physical role.
Giving only high temperature or citing surface temperature instead of core conditions.
Retrieve stellar balance
Fusion releases energy, outward thermal/radiation pressure balances inward gravity, and high temperature and density allow fusion in the core.
Retrieve stellar inference
Mass controls evolution; HR regions classify stars; parallax gives distance; and L=4πR2σT4 gives stellar radius from luminosity and temperature.