Reversible Reactions and Equilibrium
Aligned to the AQA 8462 specification
- Level
- Intermediate
- Reading time
- 6 min
- Published
- 2 July 2026
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Key takeaways
- A reversible reaction is one where the products can react to reform the reactants; it is shown with the ⇌ symbol, and the direction can be changed by changing the conditions.
- If a reversible reaction is exothermic in one direction, it is endothermic in the other, and the same amount of energy is transferred each way.
- Heating hydrated copper sulfate drives off water to give white anhydrous copper sulfate (endothermic); adding water reverses it and turns it blue (exothermic).
- In a closed system, equilibrium is reached when the forward and reverse reactions happen at exactly the same rate, so the amounts of reactants and products stay constant.
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Key terms
- Reversible reaction
- A reaction in which the products can react to reform the reactants, shown by the ⇌ symbol.
- Closed system
- A system in which no reactants or products can enter or leave, allowing equilibrium to be reached.
- Equilibrium
- The state in a closed system where the forward and reverse reactions occur at the same rate, so amounts stay constant.
- Anhydrous
- Describing a substance that contains no water; for example, white anhydrous copper sulfate.
Frequently asked questions
A reversible reaction is one in which the products can react together to reform the original reactants. It is written with a ⇌ arrow instead of a single arrow, and the direction depends on the conditions such as temperature.
Dynamic equilibrium is reached in a closed system when the forward and reverse reactions occur at exactly the same rate. The amounts of reactants and products stay constant, but both reactions are still happening.
Blue hydrated copper sulfate loses its water when heated, forming white anhydrous copper sulfate. This is endothermic. Adding water reverses the change back to blue and is exothermic, which is why it can test for water.
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