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AQA GCSE MAY JUNE 2025 Physics PAPER 2H question paper useful for practice

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AQA GCSE MAY JUNE 2025 Physics PAPER 2H question paper useful for practice

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H
GCSE
COMBINED SCIENCE: TRILOGY
Higher Tier
Physics Paper 2H

Monday 16 June 2025 Morning Time allowed: 1 hour 15 minutes

Materials For Examiner’s Use
For this paper you must have:
Question Mark
• a protractor
• a ruler 1
• a scientific calculator 2
• the Physics Equations Sheet (enclosed).
3

Instructions 4
• Use black ink or black ball-point pen. 5
• Pencil should only be used for drawing. 6
• Fill in the boxes at the top of this page.
• Answer all questions in the spaces provided. TOTAL
• If you need extra space for your answer(s), use the lined pages at the end of
this book. Write the question number against your answer(s).
• Do all rough work in this book. Cross through any work you do not want to be
marked.
• In all calculations, show clearly how you work out your answer.

Information
• The maximum mark for this paper is 70.
• 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.




*JUN258464P2H01*
IB/M/Jun25/G4007/E9 8464/P/2H

, 2
Do not write
outside the
0 1 In a dog-sled race, a team of dogs pull on a rope attached to a sled. box



Figure 1 shows a dog-sled team.

Figure 1




Use the Physics Equations Sheet to answer questions 01.1 and 01.2.


0 1 . 1 What equation links distance travelled, speed and time?
[1 mark]
Tick () one box.


distance travelled = speed × time


speed = time × distance travelled


time = distance travelled × speed




*02*
IB/M/Jun25/8464/P/2H

, 3
Do not write
outside the
0 1 . 2 The longest dog-sled race in the world covers a distance of 1 500 000 m. box



One team finished the race in a time of 670 000 s.


Calculate the average speed of this team during the race.
[3 marks]




Average speed = m/s




0 1 . 3 At the start of the race, 6 dogs pulled on the rope.

The average forward force on the sled from each dog was 370 N.

The backwards force on the sled from friction was 520 N.


Calculate the resultant force on the sled.
[2 marks]




Resultant force = N




Question 1 continues on the next page




Turn over ►


*03*
IB/M/Jun25/8464/P/2H

, 4
Do not write
outside the
Figure 2 shows a distance–time graph for the sled at the start of the race. box




Figure 2




0 1 . 4 What does the gradient of the graph in Figure 2 represent?
[1 mark]




*04*
IB/M/Jun25/8464/P/2H

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