2.3.1—Dynamic equilibrium
- Syllabus
- First assessment 2025
- Objective
- 2.3.1
- Level
- SL
Dynamic equilibrium occurs in a closed system when the forward and reverse processes continue at equal rates. Macroscopic amounts remain constant, but reactants and products need not be equal in amount.
The same rate-balance idea applies to physical equilibria such as vaporization and condensation as well as to reversible chemical reactions.
In a sealed liquid–vapour system at equilibrium, molecules continue evaporating and condensing at equal rates, so pressure and amounts are constant on average. Equal rates do not mean equal concentrations, and opening the system can prevent equilibrium by allowing matter to escape.
Representative question
Ammonia is manufactured by the Haber process.
Outline what is meant by dynamic equilibrium.
«in a closed system» the rate of the forward reaction equals the rate of the reverse reaction.
Retrieve the route: define dynamic equilibrium, write K, interpret its magnitude, predict Le Châtelier shifts, compare Q with K, solve a RICE table, and connect K with ΔG.
Check closed-system and equal-rate language, exponents and direction, whether a change affects K, current versus equilibrium concentrations, stoichiometric x changes, and kelvin/unit consistency in ΔG calculations.