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A robotics student is investigating an autonomous planetary test rover colliding with a soft silicone buffer at the end of a guide ramp.

a.

During the collision, the rover and the buffer can be modeled as a closed system. What is meant by a 'closed system'?

[2]
b.

How does Newton’s Third Law of motion apply to the collision between the rover and the buffer?

[2]
c.

During the collision, the change in momentum of the rover is 240 kg m/s240\text{ kg m/s}240 kg m/s. The time taken for the collision is 0.48 s0.48\text{ s}0.48 s. Calculate the average force on the rover during the collision.

[2]
d.

The buffer is covered with a soft silicone gel layer. Explain how this gel layer reduces the risk of damage to the rover during the collision.

[3]
e.

Before the collision, the rover moved with an initial constant velocity and then accelerated at 1.5 m/s21.5\text{ m/s}^21.5 m/s2. While accelerating, the rover travelled a distance of 8.0 m8.0\text{ m}8.0 m. The final velocity of the rover just before impact was 7.0 m/s7.0\text{ m/s}7.0 m/s. Calculate the initial constant velocity of the rover.

[4]

Momentum (HT only) Questions

Practise AQA GCSE Physics Momentum (HT only) with exam-style questions for Foundation and Higher tier. 9 questions covering Momentum is a property of moving objects, Conservation of momentum, and Changes in momentum (physics only), matched to the AQA GCSE Physics (8463) specification and written in Paper 1 and Paper 2 style. Every question includes a full worked solution and mark scheme, so you can see where marks are awarded rather than just whether you got the answer right.

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Momentum (HT only) Questions

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