Every card in Forces and motion, Year 11: momentum
The whole deck, in order — so you can read it through before your child ever sees it.
- The mass of a moving object multiplied by its velocity
Momentum
HintIt is measured in kg m/s.
WhyIn symbols, p = m v, with p in kilogram metres per second, m in kilograms and v in metres per second. AQA expects this equation to be recalled. Because velocity has a direction, this quantity is a vector too.
- A sprinter of mass 60 kg runs at 9 m/s. Calculate her momentum in kg m/s. (number only)
540
HintMultiply the two numbers you have been given.
WhyMomentum = mass × velocity, p = m v = 60 × 9. The unit comes from multiplying the units: kilograms × metres per second gives kg m/s. The equation must be recalled.
- A ball of mass 0.4 kg has a momentum of 6 kg m/s. Calculate its velocity.
15 m/s
HintRearrange the momentum equation so that velocity stands alone.
Whyp = m v rearranges to v = p ÷ m = 6 ÷ 0.4. Dividing by a number less than one makes the answer bigger: a light ball must move quickly to carry this much momentum.
- Two identical 2 kg trolleys roll towards each other, each at 3 m/s. Taking motion to the right as positive, what is the momentum of each trolley, and what is their total momentum?
+6 kg m/s and −6 kg m/s; the total is zero
HintGive the trolley moving to the left a negative velocity.
WhyMomentum is a vector, so direction matters. The trolley moving right has p = 2 × 3 = +6 kg m/s; the one moving left has p = 2 × (−3) = −6 kg m/s. Adding them gives zero, even though both trolleys are moving.
- A 20 000 kg lorry is parked at the roadside while a 0.06 kg tennis ball rolls past it. Which of the two has more momentum?
The tennis ball — the parked lorry has none
HintCheck the velocity of each before you look at the masses.
WhyMomentum = mass × velocity, so an object that is not moving has zero momentum however large its mass. Momentum is a property of moving objects only. The ball's momentum is tiny, but it is still more than nothing.
- The rule that, when no outside forces act, the combined momentum of a set of objects is the same after a collision or explosion as it was before
Conservation of momentum
HintThe rule for energy has the same first word: a total that never changes.
WhyAn 'event' is usually a collision or an explosion. Individual objects may speed up, slow down or reverse, but when every object's momentum is added together, with direction taken into account, the total is the same afterwards as before.
- Momentum is conserved in a ____ system: add up the momentum of every object before a collision, and the total is ____ to the total afterwards.
closed; equal
HintThe first describes a system that nothing outside is pushing or pulling on.
WhyA system of this kind is one on which no external forces act, so its objects affect only each other. Two trolleys on a low-friction track are close to this. If an outside force such as friction is significant, it changes the total momentum and the rule no longer holds exactly.
- A skater standing still on smooth ice throws a heavy ball forwards. Use momentum to explain why she slides backwards.
The total momentum must stay zero, so she gains momentum equal to the ball's but in the opposite direction
HintAdd up what is moving before the throw.
WhyBefore the throw neither the skater nor the ball is moving, so the total momentum is zero. Afterwards the ball has forward momentum, and the total can only still be zero if the skater has the same amount backwards. She has more mass than the ball, so she moves more slowly than it does.
- A moving trolley collides with an identical stationary trolley and the two stick together. Use momentum to explain why they move off more slowly than the first trolley was moving.
The same total momentum is now shared by twice the mass
HintAsk how much more material is moving afterwards.
WhyTotal momentum is conserved in the collision. Before, all of it belonged to one trolley; afterwards the same amount is carried by two trolleys' worth of mass. With the mass doubled and momentum unchanged, the velocity must halve.
- Just before two trolleys collide on a low-friction track, trolley A has a momentum of 8 kg m/s to the right and trolley B has a momentum of 3 kg m/s to the left. No external forces act. What is the total momentum of the two trolleys after the collision?
5 kg m/s to the right
HintFind the total before the collision, taking direction into account.
WhyTaking right as positive, the total before is 8 + (−3) = 5 kg m/s to the right. In a closed system the total momentum after an event equals the total before, so it is still 5 kg m/s to the right, however the two trolleys share it.
1★ GCSE-PHYS-FOR-0103
2★ GCSE-PHYS-FOR-0104
3★ GCSE-PHYS-FOR-0105
4★ GCSE-PHYS-FOR-0106
5★ GCSE-PHYS-FOR-0107
6★ GCSE-PHYS-FOR-0108
7★ GCSE-PHYS-FOR-0109
8★ GCSE-PHYS-FOR-0110
9★ GCSE-PHYS-FOR-0111
10★ GCSE-PHYS-FOR-0112
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