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Examen

INTERNATIONAL A-LEVEL PHYSICS (9630) PAPER 2 Q&A MERGED

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INTERNATIONAL A-LEVEL PHYSICS (9630) PAPER 2 Q&A MERGED

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INTERNATIONAL A-LEVEL
PHYSICS
(9630)


PAPER 2


Specimen 2018 Morning Time allowed: 2 hours
Materials
For this paper you must have:
• a pencil
• a ruler
• a calculator
• a data and formula booklet.

Instructions
• use black ink or ball-point pen
• answer all questions
• show all your working.

Information
• The marks for questions are shown in brackets.
• The maximum mark for this paper is 80 marks.

Please write clearly in block capitals.

Centre number Candidate number

Surname

Forename(s)


Candidate signature




V1.1
Copyright © 2017 Oxford International AQA Examinations and its licensors. All rights reserved.

, 2


Section A

Answer all questions in this section.


0 1 Figure 1 shows a cross-section through an optical fibre used for communications.


Figure 1




0 1 . 1 Identify the part of the fibre labelled X.
[1 mark]




V1.1
Copyright © 2017 Oxford International AQA Examinations and its licensors. All rights reserved.

, 3



0 1 . 2 Calculate the critical angle for the boundary between the core and X.
[2 marks]




.

angle = degrees


0 1 . 3 The ray leaves the core at Y. At this point the fibre has been bent through an angle
of 30° as shown in Figure 1.

Calculate the value of angle i.
[1 mark]




.
angle = degrees.


0 2 . 1 A metal wire of length 1.4 m has a uniform cross-sectional area of 7.8 × 10 m .
–7 2



Calculate the resistance, R, of the wire.
Resistivity of the metal = 1.7 × 10 Ω m
–8

[2 marks]




.

resistance = Ω


0 2 . 2 The wire is now stretched to twice its original length by a process that keeps its
volume constant. The resistivity of the metal of the wire remains constant.

Show that the resistance increases to 4R.
[2 marks]




V1.1
Copyright © 2017 Oxford International AQA Examinations and its licensors. All rights reserved.

, 4


0 3 Figure 2 shows the lowest three energy levels of a hydrogen atom.

Figure 2




An electron is incident on a hydrogen atom. As a result an electron in the ground
state of the hydrogen atom is excited to the n = 2 energy level. The atom then
emits a photon of a characteristic frequency.

Explain how the electron in the ground state becomes excited to the n = 2 energy
level.
[2 marks]




0 4 A battery in a laptop computer has an electromotive force (emf) of 14.8 V and can
3
store a maximum charge of 15.5 × 10 C. The battery has negligible internal
resistance.

Calculate the maximum amount of energy this battery can deliver.
[2 marks]




maximum energy = ____ J




V1.1
Copyright © 2017 Oxford International AQA Examinations and its licensors. All rights reserved.

Información del documento

Subido en
30 de abril de 2026
Número de páginas
35
Escrito en
2025/2026
Tipo
Examen
Contiene
Preguntas y respuestas
$16.99

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