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Pearson Edexcel International GCSE (9–1) Physics Science (Double Award) 4SD0 PAPER: 1P QUESTION PAPER 2021

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Pearson Edexcel International GCSE (9–1) Physics Science (Double Award) 4SD0 PAPER: 1P QUESTION PAPER 2021

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Course

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Please check the examination details below before entering your candidate information




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Candidate surname Other names




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Centre Number Candidate Number




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Pearson Edexcel




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International GCSE (9–1)




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Paper




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Time 2 hours 4PH1/1P 4SD0/1P




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reference




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Physics
Science (Double Award) 4SD0
PAPER: 1P


You must have: Total Marks
Calculator, ruler, protractor



Instructions
• Use black ink or ball-point pen.
• centre
Fill in the boxes at the top of this page with your name,
number and candidate number.
• Answer allthequestions.
Answer
• – there may bequestions in the spaces provided
more space than you need.
• Show all the steps in any calculations and state the units.
• mind about
Some questions must be answered with a cross in a box . If you change your
an answer, put a line through the box and then mark your new
answer with a cross .

Information
• The total mark for this paper is 110.
• – usemarks
The for each question are shown in brackets
this as a guide as to how much time to spend on each question.

Advice
• Read each question carefully before you start to answer it.
• Write your answers neatly and in good English.
• Checkanswer
Try to every question.
• Good luck
your answers if you have time at the end.
• with your examination.
Turn over



*P67159A0128*
P67159A
©2021 Pearson Education Ltd.

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FORMULAE




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You may find the following formulae useful.




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energy transferred = current × voltage × time E = I×V×t




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frequency = f=




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time period T




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work done W
power = P=
time taken t
energy transferred W
power = P=
time taken t

orbital speed = v=

(final speed)2 = (initial speed)2 + (2 × acceleration × distance moved)
v2 = u2 + (2 × a × s)

pressure × volume = constant p1 × V1 = p2 × V2

pressure p1 p2
= constant =
temperature T1 T2


Where necessary, assume the acceleration of free fall, g = 10 m/s2.




2
*P67159A0228*

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BLANK PAGE




3
*P67159A0328* Turn over

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