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Constant Acceleration

Constant Acceleration

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Question 2
64%

A particle moves from A to B under constant acceleration.
The distance between A and B is sss.
The speed at A is uuu. The speed at B is vvv.
The time taken is ttt.
The acceleration is aaa.

a.

Given s=50 ms = 50 \text{ m}s=50 m, u=0 ms−1u = 0 \text{ ms}^{-1}u=0 ms−1, v=20 ms−1v = 20 \text{ ms}^{-1}v=20 ms−1. Find a a\,a and ttt.

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b.

Given s=200 ms = 200 \text{ m}s=200 m, a=2 ms−2a = 2 \text{ ms}^{-2}a=2 ms−2, v=30 ms−1v = 30 \text{ ms}^{-1}v=30 ms−1. Find t t\,t and uuu.

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c.

Given s=85 ms = 85 \text{ m}s=85 m, t=5 st = 5 \text{ s}t=5 s, v=20 ms−1v = 20 \text{ ms}^{-1}v=20 ms−1. Find a a\,a and uuu.

[2]
d.

Given s=100 ms = 100 \text{ m}s=100 m, a=2 ms−2a = 2 \text{ ms}^{-2}a=2 ms−2, t=4 st = 4 \text{ s}t=4 s. Find u u\,u and vvv.

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e.

Given v=10 ms−1v = 10 \text{ ms}^{-1}v=10 ms−1, a=1.5 ms−2a = 1.5 \text{ ms}^{-2}a=1.5 ms−2, t=3 st = 3 \text{ s}t=3 s. Find s s\,s and uuu.

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Markscheme

Constant Acceleration Questions

  1. A Level
  2. /Maths
  3. /Constant Acceleration

197 exam-style questions on Edexcel A Level Maths Constant Acceleration, covering 8.2 Modelling Assumptions, 8.3 Quantities and Units, 8.4 Working with Vectors, 9.1 Displacement-Time Graphs, 9.2 Velocity-Time Graphs, 9.3 Constant Acceleration Formulae 1, 9.4 Constant Acceleration Formulae 2, and 9.5 Vertical Motion Under Gravity. Each one has a worked solution and a mark scheme showing where the marks go.

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