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Pearson Edexcel Level 3 GCE
Monday 8 June 2026
Morning (Time: 2 hours 30 minutes) Paper
reference 9PH0/03
Physics
Advanced
PAPER 3: General and Practical Principles in Physics
You must have: Total Marks
Scientific calculator and ruler
Data, Formulae and Relationships Booklet (enclosed)
Instructions
•• Use black ink or ball‑point pen.
If pencil is used for diagrams/sketches/graphs it must be dark (HB or B).
• Fill in the boxes at the top of this page with your name,
centre number and candidate number.
•• Answer all questions.
Answer the questions in the spaces provided
– there may be more space than you need.
Information
•• The total mark for this paper is 120.
The marks for each question are shown in brackets
– use this as a guide as to how much time to spend on each question.
• structure
In questions marked with an asterisk (*), marks will be awarded for your ability to
your answer logically, showing how the points that you make are related or
follow on from each other where appropriate.
Advice
•• Read each question carefully before you start to answer it.
Try to answer every question.
•• Check your answers if you have time at the end.
You are advised to show your working in calculations including units
where appropriate.
Turn over
P79070A
©2026 Pearson Education Ltd.
P:1/1/1/
*P79070A0132*
, Answer ALL questions in the spaces provided.
1 Two trolleys, A and B, are in contact and at rest on a frictionless surface, as shown.
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A B
A spring‑loaded piston in trolley B is released, pushing the trolleys apart, as
shown below.
v 1.70 m s–1
A B
The speed of trolley B immediately after the spring-loaded piston is released is 1.70 m s–1.
(a) Calculate the energy stored in the spring‑loaded piston before it is released.
mass of trolley A = 0.625 kg
mass of trolley B = 1.150 kg
(5)
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Energy stored in spring-loaded piston = . . . . . . . . . . . . . . . . . . . . . .. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
2
*P79070A0232*
, (b) State one assumption that must be made in calculating the energy stored in the
spring‑loaded piston.
(1)
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(Total for Question 1 = 6 marks)
3
*P79070A0332* Turn over
, 2 A student used a sonometer to determine the mass per unit length µ of a guitar string.
A sonometer consists of a guitar string fixed at one end of a hollow box and passed over
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a pulley at the other end. The length L of the guitar string that can vibrate is determined
by the positions of two movable bridges, as shown.
L
movable bridges
hollow box
mass holder
The table shows values of µ for three different guitar strings, X, Y and Z.
Guitar string X Y Z
µ / kg m–1 4.44 × 10–5 1.78 × 10–4 4.36 × 10–4
The student used a total mass of 2.35 kg to place the guitar string under tension.
She set the guitar string into vibration using a tuning fork of frequency 512 Hz.
She moved a bridge until a standing wave was set up on the guitar string, as shown.
Deduce which guitar string the student used.
L = 22.5 cm
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(Total for Question 2 = 5 marks)
4
*P79070A0432*