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June 2022 AQA GCSE PHYSICS 8463/1F Paper 1 Foundation Tier Question Paper + Mark scheme [MERGED] $7.99   Add to cart

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June 2022 AQA GCSE PHYSICS 8463/1F Paper 1 Foundation Tier Question Paper + Mark scheme [MERGED]

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June 2022 AQA GCSE PHYSICS 8463/1F Paper 1 Foundation Tier Question Paper + Mark scheme [MERGED]

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  • June 8, 2023
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  • 2022/2023
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AQA
GCSE

PHYSICS

8463/1F

Paper 1 Foundation Tier

Question Paper + Mark scheme [MERGED]

June 2022

, Please write clearly in block capitals.


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I declare this is my own work.



GCSE
PHYSICS
Foundation Tier Paper 1
F
Time allowed: 1 hour 45 minutes
Materials For Examiner’s Use
For this paper you must have:
• a ruler Question Mark
• a scientific calculator 1
• the Physics Equations Sheet (enclosed). 2
3
Instructions
• Use black ink or black ball-point pen. Pencil should only be used for drawing. 4
• Fill in the boxes at the top of this page. 5
• Answer all questions in the spaces provided.
6
• Do not write outside the box around each page or on blank pages.
• Do all rough work in this book. Cross through any work you do not want to 7
be marked. 8
• If you need extra space for your answer(s), use the lined pages at the end of 9
this book. Write the question number against your answer(s).
• In all calculations, show clearly how you work out your answer. 10
11
Information
TOTAL
• The maximum mark for this paper is 100.
• The marks for questions are shown in brackets.
• You are expected to use a calculator where appropriate.
• You are reminded of the need for good English and clear presentation in
your answers.




*jun2284631F01*
IB/H/Jun22/E14 8463/1F

, 2

Do not write
outside the
Answer all questions in the spaces provided. box




0 1 Figure 1 shows a boy bouncing on a trampoline.

Figure 1




0 1 . 1 The boy falls from the position in Figure 1 towards the trampoline.

Complete the sentences.

Choose answers from the box.
[2 marks]


chemical elastic potential gravitational potential
kinetic nuclear



As the boy falls, there is a decrease in his energy.


As the boy falls, there is an increase in his energy.




*02*
IB/H/Jun22/8463/1F

, 3

Do not write
outside the
0 1 . 2 As the boy lands on the trampoline, each spring stretches 0.015 m. box


spring constant of each spring = 120 000 N/m


Calculate the energy stored by each spring.

Use the equation:

elastic potential energy = 0.5 × spring constant × (extension)2
[2 marks]




Elastic potential energy = J




0 1 . 3 There are 40 springs on the trampoline.


Calculate the total energy stored by the 40 springs when each spring is stretched
by 0.015 m.

Use your answer from Question 01.2
[1 mark]




Total energy stored = J




Question 1 continues on the next page




Turn over ►

*03*
IB/H/Jun22/8463/1F

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