Momentum and impulse Cambridge IGCSE Physics revision
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In plain words
Momentum is "mass in motion": mass × velocity. A slow lorry and a fast cricket ball can both be hard to stop. In any collision the total momentum before equals the total after, as long as nothing outside pushes on them. And the longer a force has to change something's momentum, the smaller that force needs to be, which is how airbags and crumple zones work.
Three things to know
- Momentum = mass × velocity (p = mv). Its unit is kg m/s and it has a direction.
- In a collision with no outside forces, total momentum before equals total momentum after.
- Force = change in momentum ÷ time. Making a collision last longer makes the force smaller.
Worked example
A 2 kg trolley moving at 3 m/s hits a still 1 kg trolley and sticks to it. Find their speed afterwards.
- Momentum before = (2 × 3) + (1 × 0) = 6 kg m/s.
- Afterwards the mass is 3 kg, so 3 × v = 6.
- v = 2 m/s.
Tips and tricks
- Momentum has a direction. Choose one direction as positive and give anything going the other way a minus sign.
- For safety questions give all three steps: longer time to stop → smaller rate of change of momentum → smaller force.
It lands in your notebook with its questions as flashcards.
Momentum and impulse: 6 questions and answers
These are the quiz’s questions. Do the quiz first, then come back here for the ones that got you.
What is the momentum of a 50 kg runner moving at 8 m/s?
p = mv = 50 × 8.
Two trolleys collide and stick together. What is conserved, if no outside forces act?
Momentum is always conserved when there is no resultant outside force.
Why do air bags reduce injury?
A longer stopping time means a smaller force for the same change in momentum.
A 3 kg object moving at 4 m/s hits and sticks to a 1 kg object at rest. What is their speed afterwards?
12 kg m/s shared by 4 kg gives 3 m/s.
What is the unit of momentum?
Mass in kg times velocity in m/s.
A force of 20 N acts on an object for 3 s. What is the change in momentum?
Change in momentum = force × time = 20 × 3.
Quiz
6 questions
Tap an answer and you’ll see straight away whether it’s right, and why.
Worksheet
4 questions, 11 marks. Write your answers on paper, then check them.
Momentum and impulse
Cambridge IGCSE Physics 0625 · 11 marks · papermunch.org
Name ______________________________ Date ______________
Calculate the momentum of a 0.16 kg ball moving at 25 m/s.[2]
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4.0 kg m/s. 0.16 × 25.
A 2.0 kg trolley moving at 3.0 m/s hits and sticks to a stationary 1.0 kg trolley. Calculate their speed after the collision.[4]
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2.0 m/s. Momentum before = 2.0 × 3.0 = 6.0 kg m/s; after, 3.0 kg × v = 6.0.
A 1000 kg car slows from 20 m/s to rest in 4.0 s. Calculate the average braking force.[3]
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5000 N. Change in momentum = 1000 × 20 = 20 000 kg m/s; force = 20 000 ÷ 4.0.
Explain how a crumple zone reduces injuries in a crash.[2]
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It makes the car take longer to stop, so the same change in momentum needs a smaller force.
Answers: Momentum and impulse
- 1. 4.0 kg m/s. 0.16 × 25.
- 2. 2.0 m/s. Momentum before = 2.0 × 3.0 = 6.0 kg m/s; after, 3.0 kg × v = 6.0.
- 3. 5000 N. Change in momentum = 1000 × 20 = 20 000 kg m/s; force = 20 000 ÷ 4.0.
- 4. It makes the car take longer to stop, so the same change in momentum needs a smaller force.



