Work Done and Energy Transfer
Aligned to the AQA 8463 specification
- Topic
- Forces
- Level
- Intermediate
- Reading time
- 5 min
- Published
- 2 July 2026
On this page
Key takeaways
- Work is done whenever a force moves an object through a distance in the direction of the force; work done equals the energy transferred.
- Work done is calculated with W = Fs, where F is the force in newtons and s is the distance moved along the line of the force in metres.
- Work is measured in joules (J). One joule is the work done when a force of one newton moves an object one metre: 1 J = 1 N·m.
- Work done against friction is transferred to the thermal energy store, so the object and surroundings get warmer.
- If an object does not move, no work is done by the force no matter how large it is, because the distance moved is zero.
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Key terms
- Work done
- The energy transferred when a force moves an object through a distance in the direction of the force, measured in joules (J).
- Joule (J)
- The SI unit of energy and work done; one joule is the work done when a force of one newton moves an object one metre (1 J = 1 N·m).
- Friction
- A contact force that opposes the motion of two surfaces sliding over each other, transferring energy to thermal stores.
Frequently asked questions
Use work done = force × distance (W = Fs). Multiply the force in newtons by the distance the object moves along the direction of that force in metres. The answer is in joules (J).
Work done is measured in joules (J). One joule is the work done when a force of one newton moves an object a distance of one metre, so 1 J = 1 N·m.
Work done against friction is transferred to the thermal energy store of the object and its surroundings, so their temperature rises. This is why rubbing your hands together or braking a car makes surfaces warm.
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