Candidate signature _________________________________________________________________________
I declare this is my own work.
AS
FURTHER MATHEMATICS
Paper 2 Mechanics
Time allowed: 1 hour 30 minutes
Materials For Examiner’s Use
l You must have the AQA Formulae and statistical tables booklet for A‑level
Mathematics and A‑level Further Mathematics. Question Mark
l You should have a scientific calculator that meets the requirements of the
specification. 1
l You must ensure you have the other optional Question Paper/Answer Book 2
for which you are entered (either Discrete or Statistics). You will have
1 hour 30 minutes to complete both papers. 3
Instructions 4
l Use black ink or black ball‑point pen. Pencil should only be used for drawing. 5
l Fill in the boxes at the top of this page.
l Answer all questions. 6
l You must answer each question in the space provided for that question. 7
If you require extra space for your answer(s), use the lined pages at the end of
this book. Write the question number against your answer(s). 8
l Do not write outside the box around each page or on blank pages. TOTAL
l Show all necessary working; otherwise marks for method may be lost.
l Do all rough work in this book. Cross through any work that you do not want
to be marked.
Information
l The marks for questions are shown in brackets.
l The maximum mark for this paper is 40.
Advice
l Unless stated otherwise, you may quote formulae, without proof, from the booklet.
l You do not necessarily need to use all the space provided.
(JUN2273662M01)
PB/Jun22/E3 7366/2M
, 2
Do not write
outside the
box
Answer all questions in the spaces provided.
1 A box is being pushed in a straight line along horizontal ground by a force.
The force is applied in the direction of motion and has magnitude 10 newtons.
The box moves 5 metres in 2 seconds.
Calculate the work done by the force.
Circle your answer.
[1 mark]
20 J 25 J 50 J 100 J
2 Two particles of equal mass are moving on a horizontal surface when they collide.
2 6
Immediately before the collision, their velocities are m s1 and m s1
4 2
As a result of the collision the particles coalesce to become a single particle.
Find the velocity of the single particle, immediately after the collision.
Circle your answer.
[1 mark]
4 4 8 8
m s1 m s1 m s1 m s1
1 3 2 6
(02)
Jun22/7366/2M
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