SlideShare a Scribd company logo
1 of 16
Download to read offline
This document consists of 16 printed pages.
DC (AC/JG) 81302/5
© UCLES 2014 [Turn over
Cambridge International Examinations
Cambridge International General Certificate of Secondary Education
*6095608802*
PHYSICS 0625/21
Paper 2 Core May/June 2014
1 hour 15 minutes
Candidates answer on the Question Paper.
No Additional Materials are required.
READ THESE INSTRUCTIONS FIRST
Write your Centre number, candidate number and name on all the work you hand in.
Write in dark blue or black pen.
You may use an HB pencil for any diagrams or graphs.
Do not use staples, paper clips, glue or correction fluid.
DO NOT WRITE IN ANY BARCODES.
Answer all questions.
Electronic calculators may be used.
You may lose marks if you do not show your working or if you do not use appropriate units.
Take the weight of 1kg to be 10N (i.e. acceleration of free fall = 10m/s2).
At the end of the examination, fasten all your work securely together.
The number of marks is given in brackets [ ] at the end of each question or part question.
The syllabus is approved for use in England, Wales and Northern Ireland as a Cambridge International Level 1/Level 2 Certificate.
www.onlineexamhelp.com
www.onlineexamhelp.com
2
0625/21/M/J/14© UCLES 2014
1 A gardener studies the growth of one of his plants. At the same time each day, he measures the
height h of the top of the plant from the ground, as shown in Fig. 1.1.
h
Fig. 1.1
The table of his results is shown below.
time since first measurement/days 0 1 2 3 4 5 6 7
height h/cm 2.1 6.5 11.4 18.4 24.5 26.7 30.7 37.1
(a) From the values in the table, deduce the average speed of growth of the plant during the
7 days. Work in days and cm.
average speed = ................................... cm/day [4]
3
0625/21/M/J/14© UCLES 2014 [Turn over
(b) (i) Complete Fig. 1.2 by plotting the last three values of height h against time. Do not draw a
line through the points.
h/cm
0 2 4 6 8
0
10
20
30
40
time/days
[2]
Fig. 1.2
(ii) Describe how the graph shows that the speed of growth of the plant is not constant.
...........................................................................................................................................
.......................................................................................................................................[1]
[Total: 7]
4
0625/21/M/J/14© UCLES 2014
2 Fig. 2.1 shows a spring before and after a load is added.
load
spring
Fig. 2.1
(a) What is meant by the extension of the spring?
...................................................................................................................................................
...............................................................................................................................................[1]
(b) When the graph of extension against load is drawn for the spring, the result is the line shown
in Fig. 2.2.
extension/cm
load/N
0
0
1
2
3
1 2 3 4 5
Fig. 2.2
5
0625/21/M/J/14© UCLES 2014 [Turn over
(i) The unstretched length of the spring is 9.0cm.
1. Calculate the total length of the spring when a 5.0N load is hanging from the spring.
length = ........................................... cm [2]
2. Find the extension that will be caused by a load of 2.0N.
extension = .......................................... cm [1]
(ii) Calculate the mass of a load of weight 2.0N.
mass = ..................................................[2]
[Total: 6]
6
0625/21/M/J/14© UCLES 2014
3 The apparatus in Fig. 3.1 is being used to view the movement of some smoke particles trapped in
a box.
air molecules
and
smoke particles
microscope
light
Fig. 3.1
(a) Describe what is seen when the smoke is viewed through the microscope.
...................................................................................................................................................
...................................................................................................................................................
...............................................................................................................................................[2]
(b) In the space below, sketch how one smoke particle might move during a short interval of time.
[2]
(c) What causes the smoke particles to move?
...................................................................................................................................................
...................................................................................................................................................
...............................................................................................................................................[2]
(d) What name is used for this motion of the smoke particles? Complete the sentence.
The motion of the smoke particles is known as .................................................... motion. [1]
[Total: 7]
www.onlineexamhelp.com
www.onlineexamhelp.com
7
0625/21/M/J/14© UCLES 2014 [Turn over
4 A young boy, skating on a frozen pond, has fallen through some thin ice about 10m from the shore
of the pond. Fig. 4.1 shows the situation.
Fig. 4.1
A man, standing near the pond, hears the boy’s shouts for help.
The man weighs more than the boy.
(a) Why would it be unsafe for the man to walk on the ice to rescue the boy?
...................................................................................................................................................
...............................................................................................................................................[1]
(b) Suggest and explain what the man could do to cross the ice to reach the boy safely.
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...............................................................................................................................................[4]
[Total: 5]
8
0625/21/M/J/14© UCLES 2014
5 The thermometer in Fig. 5.1 is recording the temperature of the laboratory.
–10 0 10 20 30 40 50 60 70 80 90 100 110
°C
Fig. 5.1
(a) The bulb of the thermometer is placed in pure, boiling water at standard atmospheric pressure.
State the temperature increase.
temperature increase =.............................................°C [1]
(b) During the day, the temperature in the laboratory rises. In the late afternoon a thermometer
attached to the ceiling records a higher temperature than a thermometer placed close to the
ground.
Explain why this happens.
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...............................................................................................................................................[3]
(c) At night, the temperature in the laboratory falls.
Describe what can be seen happening to the liquid in a thermometer as the temperature falls,
and explain why this happens.
...................................................................................................................................................
...................................................................................................................................................
...............................................................................................................................................[2]
(d) On Fig. 5.1, draw an arrow to show where the end of the liquid thread might be seen when the
temperature being measured is −15°C. [1]
[Total: 7]
9
0625/21/M/J/14© UCLES 2014 [Turn over
6 (a) A periscope is an optical instrument containing two mirrors in a long tube.
Fig. 6.1 shows the path of a ray of light through a periscope, without the tube.
mirror A
mirror B
normal
normal
Fig. 6.1
(i) On Fig. 6.1,
1. use the letter i to indicate clearly the angle of incidence of the ray striking mirror A,
2. use the letter r to indicate clearly the angle of reflection of the ray leaving mirror A.
[1]
(ii) Write down the equation that links i and r.
.......................................................................................................................................[1]
(iii) Suggest a use for the periscope.
.......................................................................................................................................[1]
(iv) State what happens if mirror B is rotated through a small angle.
.......................................................................................................................................[1]
10
0625/21/M/J/14© UCLES 2014
(b) Fig. 6.2 shows a converging lens.The lens has one principal focus at F1 and the other principal
focus at F2.
F2 F1
principal
axis
Fig. 6.2
Use your ruler to help you answer this question.
(i) On Fig. 6.2, clearly mark two distances that are each the focal length of the lens. [1]
(ii) On Fig. 6.2, draw a ray on the left side of the lens, which strikes the lens, above and
parallel to the principal axis. Label this ray: ray 1.
Continue this ray to show its path through the lens and at least 6cm to the right of the
lens. [2]
(iii) On Fig. 6.2, draw a ray that emerges from the lens, below and parallel to the principal
axis. Label this ray: ray 2.
Show clearly the path of this ray before it reached the lens. [1]
[Total: 8]
11
0625/21/M/J/14© UCLES 2014 [Turn over
7 In Fig. 7.1, XY is a copper rod placed between the N and S poles of a magnet.
N S
X
Y
A B
Fig. 7.1
XY is connected to the terminals A and B of a sensitive, centre-zero instrument that measures
current.
(a) State the name of this instrument. .......................................................................................[1]
(b) When there is no current, the pointer on the instrument points half-way between A and B.
State what, if anything, is seen happening to the pointer when XY is
(i) held stationary,
.......................................................................................................................................[1]
(ii) moved horizontally at a steady speed towards the N pole,
.......................................................................................................................................[1]
(iii) moved horizontally at a steady speed towards the S pole,
.......................................................................................................................................[1]
(iv) moved repeatedly up and down at right angles to the magnetic field.
.......................................................................................................................................[2]
(c) Suggest one electrical device that makes use of the effect demonstrated in (b).
...............................................................................................................................................[1]
[Total: 7]
12
0625/21/M/J/14© UCLES 2014
8 A student connects the circuit shown in Fig. 8.1.
6.0V 10Ω
S2
S1
Fig. 8.1
When operating normally, the lamp has a resistance of 10Ω.
(a) (i) State the current in the lamp when both S1 and S2 are open.
.......................................................................................................................................[1]
(ii) The student closes switch S1.
Calculate the current in the lamp, stating the unit of your answer.
current = ................................................. [4]
(iii) The student now closes S2 as well as S1.
State the current in the lamp with both switches closed.
.......................................................................................................................................[1]
(b) The student decides that she would like to be able to vary the brightness of the lamp.
(i) Name an electrical component that she could add to the circuit to do this.
.......................................................................................................................................[1]
13
0625/21/M/J/14© UCLES 2014 [Turn over
(ii) In the space below, redraw the circuit of Fig. 8.1, including the component for varying the
lamp brightness.
[2]
[Total: 9]
14
0625/21/M/J/14© UCLES 2014
9 (a) Describe how the N pole of a bar magnet can be identified.
...................................................................................................................................................
...................................................................................................................................................
...............................................................................................................................................[2]
(b) Use words from the following list to answer the three questions below.
attractive force
repulsive force
no force
What force is there between
(i) two N poles, .......................................................................................................................
(ii) two S poles, .......................................................................................................................
(iii) a N pole and a S pole? .......................................................................................................
[3]
(c) Fig. 9.1 shows an iron bar placed close to the N pole of a bar magnet.
N
magnet iron
bar
Fig. 9.1
(i) On Fig. 9.1, write N and S, to indicate the induced poles in the iron bar. [1]
(ii) Use a word from the list in (b) to describe the force between the magnet and the iron bar.
.......................................................................................................................................[1]
(iii) The iron bar is reversed end-to-end.
Describe the force that now exists between the magnet and the iron bar.
.......................................................................................................................................[1]
[Total: 8]
15
0625/21/M/J/14© UCLES 2014 [Turn over
10 A transformer is a device for changing voltages.
Fig. 10.1 shows a transformer that has a primary coil with 1000 turns and a secondary coil with
50 turns.
primary coil
1000 turns
secondary coil
50 turns
core
Fig. 10.1
(a) State the material from which the core of the transformer is made.
...............................................................................................................................................[1]
(b) The primary coil is connected to a 240V alternating current supply.
Calculate the voltage across the secondary coil.
secondary coil voltage = .............................................. V [3]
[Total: 4]
16
0625/21/M/J/14© UCLES 2014
Permission to reproduce items where third-party owned material protected by copyright is included has been sought and cleared where possible. Every
reasonable effort has been made by the publisher (UCLES) to trace copyright holders, but if any items requiring clearance have unwittingly been included, the
publisher will be pleased to make amends at the earliest possible opportunity.
Cambridge International Examinations is part of the Cambridge Assessment Group. Cambridge Assessment is the brand name of University of Cambridge Local
Examinations Syndicate (UCLES), which is itself a department of the University of Cambridge.
11 Polonium-210 84
210
Poj` is radioactive.
(a) Name three types of emission from radioactive sources.
1. ...............................................................................................................................................
2. ...............................................................................................................................................
3. ...............................................................................................................................................
[2]
(b) State which of these radiations
(i) carries a negative charge, .................................................................................................
(ii) is most easily absorbed, ....................................................................................................
(iii) is the emitted particle in the decay
84
210Po 82
206
Pb + emitted particle. .................................................................................
[3]
(c) Polonium-210 has a half-life of 138 days.
A sample containing 8 ×1010 atoms of polonium-210 decays for 276 days.
(i) How many half-lives elapse in this time? ...........................................................................
(ii) How many atoms decay in this time?
number that decay =.......................................................
(iii) How many particles are emitted from the polonium-210 during this time?
number emitted =...................................................[4]
[Total: 9]
12 One nuclide of chlorine has 35 nucleons and the other nuclide of chlorine has 37 nucleons. The
proton number of chlorine is 17.
(a) How many protons are there in a neutral atom of chlorine-35? ................................................
(b) How many neutrons are there in a neutral atom of chlorine-37? ..............................................
(c) How many electrons are there in a neutral atom of chlorine-37? ..............................................
[3]
[Total: 3]

More Related Content

What's hot

0625 s13 qp_33
0625 s13 qp_330625 s13 qp_33
0625 s13 qp_33King Ali
 
0625 s03 qp_3
0625 s03 qp_30625 s03 qp_3
0625 s03 qp_3King Ali
 
Summer paper 2 core
Summer paper 2 coreSummer paper 2 core
Summer paper 2 coreKing Ali
 
0625_s14_qp_32
0625_s14_qp_320625_s14_qp_32
0625_s14_qp_32King Ali
 
Physics 0625 - Paper 5 version 1 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 1 - Question Paper - May Jun 2014Physics 0625 - Paper 5 version 1 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 1 - Question Paper - May Jun 2014JakKy Kitmanacharounpong
 
0625 s08 qp_3
0625 s08 qp_30625 s08 qp_3
0625 s08 qp_3King Ali
 
Physics 0625 - Paper 5 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 3 - Question Paper - May Jun 2014Physics 0625 - Paper 5 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 3 - Question Paper - May Jun 2014JakKy Kitmanacharounpong
 
0625 s13-qp-32
0625 s13-qp-320625 s13-qp-32
0625 s13-qp-32King Ali
 
0625 w09 qp_31
0625 w09 qp_310625 w09 qp_31
0625 w09 qp_31King Ali
 
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2014Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2014JakKy Kitmanacharounpong
 
Physics 0625 - Paper 2 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 2 version 3 - Question Paper - May Jun 2014Physics 0625 - Paper 2 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 2 version 3 - Question Paper - May Jun 2014JakKy Kitmanacharounpong
 
0625 s07 qp_3
0625 s07 qp_30625 s07 qp_3
0625 s07 qp_3King Ali
 
0625 s09 qp_3
0625 s09 qp_30625 s09 qp_3
0625 s09 qp_3King Ali
 
0625 m15 qp_32
0625 m15 qp_320625 m15 qp_32
0625 m15 qp_32Omniya Jay
 
Physics 0625 - Paper 5 version 2 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 2 - Question Paper - May Jun 2014Physics 0625 - Paper 5 version 2 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 2 - Question Paper - May Jun 2014JakKy Kitmanacharounpong
 
0625 w09 qp_32
0625 w09 qp_320625 w09 qp_32
0625 w09 qp_32King Ali
 
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2014
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2014Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2014
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2014JakKy Kitmanacharounpong
 
0625 s11 qp_31
0625 s11 qp_310625 s11 qp_31
0625 s11 qp_31King Ali
 
0625_s14_qp_62
0625_s14_qp_620625_s14_qp_62
0625_s14_qp_62King Ali
 
0625 w10 qp_32
0625 w10 qp_320625 w10 qp_32
0625 w10 qp_32King Ali
 

What's hot (20)

0625 s13 qp_33
0625 s13 qp_330625 s13 qp_33
0625 s13 qp_33
 
0625 s03 qp_3
0625 s03 qp_30625 s03 qp_3
0625 s03 qp_3
 
Summer paper 2 core
Summer paper 2 coreSummer paper 2 core
Summer paper 2 core
 
0625_s14_qp_32
0625_s14_qp_320625_s14_qp_32
0625_s14_qp_32
 
Physics 0625 - Paper 5 version 1 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 1 - Question Paper - May Jun 2014Physics 0625 - Paper 5 version 1 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 1 - Question Paper - May Jun 2014
 
0625 s08 qp_3
0625 s08 qp_30625 s08 qp_3
0625 s08 qp_3
 
Physics 0625 - Paper 5 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 3 - Question Paper - May Jun 2014Physics 0625 - Paper 5 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 3 - Question Paper - May Jun 2014
 
0625 s13-qp-32
0625 s13-qp-320625 s13-qp-32
0625 s13-qp-32
 
0625 w09 qp_31
0625 w09 qp_310625 w09 qp_31
0625 w09 qp_31
 
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2014Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2014
 
Physics 0625 - Paper 2 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 2 version 3 - Question Paper - May Jun 2014Physics 0625 - Paper 2 version 3 - Question Paper - May Jun 2014
Physics 0625 - Paper 2 version 3 - Question Paper - May Jun 2014
 
0625 s07 qp_3
0625 s07 qp_30625 s07 qp_3
0625 s07 qp_3
 
0625 s09 qp_3
0625 s09 qp_30625 s09 qp_3
0625 s09 qp_3
 
0625 m15 qp_32
0625 m15 qp_320625 m15 qp_32
0625 m15 qp_32
 
Physics 0625 - Paper 5 version 2 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 2 - Question Paper - May Jun 2014Physics 0625 - Paper 5 version 2 - Question Paper - May Jun 2014
Physics 0625 - Paper 5 version 2 - Question Paper - May Jun 2014
 
0625 w09 qp_32
0625 w09 qp_320625 w09 qp_32
0625 w09 qp_32
 
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2014
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2014Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2014
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2014
 
0625 s11 qp_31
0625 s11 qp_310625 s11 qp_31
0625 s11 qp_31
 
0625_s14_qp_62
0625_s14_qp_620625_s14_qp_62
0625_s14_qp_62
 
0625 w10 qp_32
0625 w10 qp_320625 w10 qp_32
0625 w10 qp_32
 

Viewers also liked

Physics 0625 - Paper 2 version 1 - Mark scheme - May Jun 2014
Physics 0625 - Paper 2 version 1 - Mark scheme - May Jun 2014Physics 0625 - Paper 2 version 1 - Mark scheme - May Jun 2014
Physics 0625 - Paper 2 version 1 - Mark scheme - May Jun 2014JakKy Kitmanacharounpong
 
Physics 0625 - Paper 1 version 1 - Question Paper - 2014
Physics 0625 - Paper 1 version 1 - Question Paper - 2014Physics 0625 - Paper 1 version 1 - Question Paper - 2014
Physics 0625 - Paper 1 version 1 - Question Paper - 2014JakKy Kitmanacharounpong
 
Physics 0625 - Paper 1 version 2 - Question Paper - May Jun 2014
Physics 0625 - Paper 1 version 2 - Question Paper - May Jun 2014Physics 0625 - Paper 1 version 2 - Question Paper - May Jun 2014
Physics 0625 - Paper 1 version 2 - Question Paper - May Jun 2014JakKy Kitmanacharounpong
 
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2013Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2013JakKy Kitmanacharounpong
 
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2013
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2013Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2013
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2013JakKy Kitmanacharounpong
 
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2014
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2014Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2014
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2014JakKy Kitmanacharounpong
 

Viewers also liked (6)

Physics 0625 - Paper 2 version 1 - Mark scheme - May Jun 2014
Physics 0625 - Paper 2 version 1 - Mark scheme - May Jun 2014Physics 0625 - Paper 2 version 1 - Mark scheme - May Jun 2014
Physics 0625 - Paper 2 version 1 - Mark scheme - May Jun 2014
 
Physics 0625 - Paper 1 version 1 - Question Paper - 2014
Physics 0625 - Paper 1 version 1 - Question Paper - 2014Physics 0625 - Paper 1 version 1 - Question Paper - 2014
Physics 0625 - Paper 1 version 1 - Question Paper - 2014
 
Physics 0625 - Paper 1 version 2 - Question Paper - May Jun 2014
Physics 0625 - Paper 1 version 2 - Question Paper - May Jun 2014Physics 0625 - Paper 1 version 2 - Question Paper - May Jun 2014
Physics 0625 - Paper 1 version 2 - Question Paper - May Jun 2014
 
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2013Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 1 - Question Paper - May Jun 2013
 
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2013
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2013Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2013
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2013
 
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2014
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2014Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2014
Physics 0625 - Paper 3 version 1 - Mark scheme - May Jun 2014
 

Similar to 0625 s14 qp_21

0625 w15 qp_32
0625 w15 qp_320625 w15 qp_32
0625 w15 qp_32Omniya Jay
 
0625_w12_qp_32
0625_w12_qp_320625_w12_qp_32
0625_w12_qp_32King Ali
 
0625 s15 qp_33
0625 s15 qp_330625 s15 qp_33
0625 s15 qp_33Omniya Jay
 
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2013Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2013JakKy Kitmanacharounpong
 
5054_s14_qp_21
5054_s14_qp_215054_s14_qp_21
5054_s14_qp_21King Ali
 
0620 w16 qp_63
0620 w16 qp_630620 w16 qp_63
0620 w16 qp_63Omniya Jay
 
0625 s09 qp_6
0625 s09 qp_60625 s09 qp_6
0625 s09 qp_6King Ali
 
0620 w14 qp_33
0620 w14 qp_330620 w14 qp_33
0620 w14 qp_33Omniya Jay
 
0625 s10 qp_31
0625 s10 qp_310625 s10 qp_31
0625 s10 qp_31King Ali
 
0625_s14_qp_33
0625_s14_qp_330625_s14_qp_33
0625_s14_qp_33King Ali
 
0620 w03 qp_3
0620 w03 qp_30620 w03 qp_3
0620 w03 qp_3King Ali
 
0625 s15 qp_31
0625 s15 qp_310625 s15 qp_31
0625 s15 qp_31Omniya Jay
 
0625 s05 qp_3
0625 s05 qp_30625 s05 qp_3
0625 s05 qp_3King Ali
 
0625 s07 qp_3
0625 s07 qp_30625 s07 qp_3
0625 s07 qp_3King Ali
 
0625 w15 qp_31
0625 w15 qp_310625 w15 qp_31
0625 w15 qp_31Omniya Jay
 
5054_s13_qp_41
5054_s13_qp_415054_s13_qp_41
5054_s13_qp_41King Ali
 
0625 s15 qp_32
0625 s15 qp_320625 s15 qp_32
0625 s15 qp_32Omniya Jay
 
Physics 0625 - Paper 3 version 2 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 2 - Question Paper - May Jun 2013Physics 0625 - Paper 3 version 2 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 2 - Question Paper - May Jun 2013JakKy Kitmanacharounpong
 
0625_s14_qp_63
0625_s14_qp_630625_s14_qp_63
0625_s14_qp_63King Ali
 
0625_s14_qp_23
0625_s14_qp_230625_s14_qp_23
0625_s14_qp_23King Ali
 

Similar to 0625 s14 qp_21 (20)

0625 w15 qp_32
0625 w15 qp_320625 w15 qp_32
0625 w15 qp_32
 
0625_w12_qp_32
0625_w12_qp_320625_w12_qp_32
0625_w12_qp_32
 
0625 s15 qp_33
0625 s15 qp_330625 s15 qp_33
0625 s15 qp_33
 
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2013Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 3 - Question Paper - May Jun 2013
 
5054_s14_qp_21
5054_s14_qp_215054_s14_qp_21
5054_s14_qp_21
 
0620 w16 qp_63
0620 w16 qp_630620 w16 qp_63
0620 w16 qp_63
 
0625 s09 qp_6
0625 s09 qp_60625 s09 qp_6
0625 s09 qp_6
 
0620 w14 qp_33
0620 w14 qp_330620 w14 qp_33
0620 w14 qp_33
 
0625 s10 qp_31
0625 s10 qp_310625 s10 qp_31
0625 s10 qp_31
 
0625_s14_qp_33
0625_s14_qp_330625_s14_qp_33
0625_s14_qp_33
 
0620 w03 qp_3
0620 w03 qp_30620 w03 qp_3
0620 w03 qp_3
 
0625 s15 qp_31
0625 s15 qp_310625 s15 qp_31
0625 s15 qp_31
 
0625 s05 qp_3
0625 s05 qp_30625 s05 qp_3
0625 s05 qp_3
 
0625 s07 qp_3
0625 s07 qp_30625 s07 qp_3
0625 s07 qp_3
 
0625 w15 qp_31
0625 w15 qp_310625 w15 qp_31
0625 w15 qp_31
 
5054_s13_qp_41
5054_s13_qp_415054_s13_qp_41
5054_s13_qp_41
 
0625 s15 qp_32
0625 s15 qp_320625 s15 qp_32
0625 s15 qp_32
 
Physics 0625 - Paper 3 version 2 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 2 - Question Paper - May Jun 2013Physics 0625 - Paper 3 version 2 - Question Paper - May Jun 2013
Physics 0625 - Paper 3 version 2 - Question Paper - May Jun 2013
 
0625_s14_qp_63
0625_s14_qp_630625_s14_qp_63
0625_s14_qp_63
 
0625_s14_qp_23
0625_s14_qp_230625_s14_qp_23
0625_s14_qp_23
 

More from King Ali

0510 w10 qp_21
0510 w10 qp_210510 w10 qp_21
0510 w10 qp_21King Ali
 
Friendship Poem by Haider Ali (1)
Friendship Poem by Haider Ali (1)Friendship Poem by Haider Ali (1)
Friendship Poem by Haider Ali (1)King Ali
 
Friendship Poem by Haider Ali (2)
Friendship Poem by Haider Ali (2)Friendship Poem by Haider Ali (2)
Friendship Poem by Haider Ali (2)King Ali
 
Hands and feet decorated paper
Hands and feet decorated paperHands and feet decorated paper
Hands and feet decorated paperKing Ali
 
Multicultural children decorated paper
Multicultural children decorated paperMulticultural children decorated paper
Multicultural children decorated paperKing Ali
 
0610_s04_qp_3
0610_s04_qp_30610_s04_qp_3
0610_s04_qp_3King Ali
 
0610_s06_qp_3
0610_s06_qp_30610_s06_qp_3
0610_s06_qp_3King Ali
 
Circular+(warning)+drinking+water
Circular+(warning)+drinking+waterCircular+(warning)+drinking+water
Circular+(warning)+drinking+waterKing Ali
 
0620_w08_qp_2
0620_w08_qp_20620_w08_qp_2
0620_w08_qp_2King Ali
 
0620_w05_qp_6
0620_w05_qp_60620_w05_qp_6
0620_w05_qp_6King Ali
 
0620_s05_qp_3
0620_s05_qp_30620_s05_qp_3
0620_s05_qp_3King Ali
 
0610_s14_qp_33
0610_s14_qp_330610_s14_qp_33
0610_s14_qp_33King Ali
 
5125_w03_qp_04
5125_w03_qp_045125_w03_qp_04
5125_w03_qp_04King Ali
 
0610_w11_qp_22
0610_w11_qp_220610_w11_qp_22
0610_w11_qp_22King Ali
 
0625_w14_qp_11
0625_w14_qp_110625_w14_qp_11
0625_w14_qp_11King Ali
 
0625_w13_qp_12
0625_w13_qp_120625_w13_qp_12
0625_w13_qp_12King Ali
 
0625_s06_qp_1
0625_s06_qp_10625_s06_qp_1
0625_s06_qp_1King Ali
 
0625_w12_qp_11
0625_w12_qp_110625_w12_qp_11
0625_w12_qp_11King Ali
 
0625_w11_qp_11
0625_w11_qp_110625_w11_qp_11
0625_w11_qp_11King Ali
 
0625_s14_qp_11
0625_s14_qp_110625_s14_qp_11
0625_s14_qp_11King Ali
 

More from King Ali (20)

0510 w10 qp_21
0510 w10 qp_210510 w10 qp_21
0510 w10 qp_21
 
Friendship Poem by Haider Ali (1)
Friendship Poem by Haider Ali (1)Friendship Poem by Haider Ali (1)
Friendship Poem by Haider Ali (1)
 
Friendship Poem by Haider Ali (2)
Friendship Poem by Haider Ali (2)Friendship Poem by Haider Ali (2)
Friendship Poem by Haider Ali (2)
 
Hands and feet decorated paper
Hands and feet decorated paperHands and feet decorated paper
Hands and feet decorated paper
 
Multicultural children decorated paper
Multicultural children decorated paperMulticultural children decorated paper
Multicultural children decorated paper
 
0610_s04_qp_3
0610_s04_qp_30610_s04_qp_3
0610_s04_qp_3
 
0610_s06_qp_3
0610_s06_qp_30610_s06_qp_3
0610_s06_qp_3
 
Circular+(warning)+drinking+water
Circular+(warning)+drinking+waterCircular+(warning)+drinking+water
Circular+(warning)+drinking+water
 
0620_w08_qp_2
0620_w08_qp_20620_w08_qp_2
0620_w08_qp_2
 
0620_w05_qp_6
0620_w05_qp_60620_w05_qp_6
0620_w05_qp_6
 
0620_s05_qp_3
0620_s05_qp_30620_s05_qp_3
0620_s05_qp_3
 
0610_s14_qp_33
0610_s14_qp_330610_s14_qp_33
0610_s14_qp_33
 
5125_w03_qp_04
5125_w03_qp_045125_w03_qp_04
5125_w03_qp_04
 
0610_w11_qp_22
0610_w11_qp_220610_w11_qp_22
0610_w11_qp_22
 
0625_w14_qp_11
0625_w14_qp_110625_w14_qp_11
0625_w14_qp_11
 
0625_w13_qp_12
0625_w13_qp_120625_w13_qp_12
0625_w13_qp_12
 
0625_s06_qp_1
0625_s06_qp_10625_s06_qp_1
0625_s06_qp_1
 
0625_w12_qp_11
0625_w12_qp_110625_w12_qp_11
0625_w12_qp_11
 
0625_w11_qp_11
0625_w11_qp_110625_w11_qp_11
0625_w11_qp_11
 
0625_s14_qp_11
0625_s14_qp_110625_s14_qp_11
0625_s14_qp_11
 

Recently uploaded

भारत-रोम व्यापार.pptx, Indo-Roman Trade,
भारत-रोम व्यापार.pptx, Indo-Roman Trade,भारत-रोम व्यापार.pptx, Indo-Roman Trade,
भारत-रोम व्यापार.pptx, Indo-Roman Trade,Virag Sontakke
 
Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Celine George
 
Alper Gobel In Media Res Media Component
Alper Gobel In Media Res Media ComponentAlper Gobel In Media Res Media Component
Alper Gobel In Media Res Media ComponentInMediaRes1
 
Interactive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationInteractive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationnomboosow
 
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfEnzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfSumit Tiwari
 
Painted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaPainted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaVirag Sontakke
 
internship ppt on smartinternz platform as salesforce developer
internship ppt on smartinternz platform as salesforce developerinternship ppt on smartinternz platform as salesforce developer
internship ppt on smartinternz platform as salesforce developerunnathinaik
 
Roles & Responsibilities in Pharmacovigilance
Roles & Responsibilities in PharmacovigilanceRoles & Responsibilities in Pharmacovigilance
Roles & Responsibilities in PharmacovigilanceSamikshaHamane
 
Capitol Tech U Doctoral Presentation - April 2024.pptx
Capitol Tech U Doctoral Presentation - April 2024.pptxCapitol Tech U Doctoral Presentation - April 2024.pptx
Capitol Tech U Doctoral Presentation - April 2024.pptxCapitolTechU
 
History Class XII Ch. 3 Kinship, Caste and Class (1).pptx
History Class XII Ch. 3 Kinship, Caste and Class (1).pptxHistory Class XII Ch. 3 Kinship, Caste and Class (1).pptx
History Class XII Ch. 3 Kinship, Caste and Class (1).pptxsocialsciencegdgrohi
 
Crayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon ACrayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon AUnboundStockton
 
CELL CYCLE Division Science 8 quarter IV.pptx
CELL CYCLE Division Science 8 quarter IV.pptxCELL CYCLE Division Science 8 quarter IV.pptx
CELL CYCLE Division Science 8 quarter IV.pptxJiesonDelaCerna
 
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxPOINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxSayali Powar
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Educationpboyjonauth
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)eniolaolutunde
 
Historical philosophical, theoretical, and legal foundations of special and i...
Historical philosophical, theoretical, and legal foundations of special and i...Historical philosophical, theoretical, and legal foundations of special and i...
Historical philosophical, theoretical, and legal foundations of special and i...jaredbarbolino94
 
MARGINALIZATION (Different learners in Marginalized Group
MARGINALIZATION (Different learners in Marginalized GroupMARGINALIZATION (Different learners in Marginalized Group
MARGINALIZATION (Different learners in Marginalized GroupJonathanParaisoCruz
 

Recently uploaded (20)

भारत-रोम व्यापार.pptx, Indo-Roman Trade,
भारत-रोम व्यापार.pptx, Indo-Roman Trade,भारत-रोम व्यापार.pptx, Indo-Roman Trade,
भारत-रोम व्यापार.pptx, Indo-Roman Trade,
 
9953330565 Low Rate Call Girls In Rohini Delhi NCR
9953330565 Low Rate Call Girls In Rohini  Delhi NCR9953330565 Low Rate Call Girls In Rohini  Delhi NCR
9953330565 Low Rate Call Girls In Rohini Delhi NCR
 
Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17
 
Alper Gobel In Media Res Media Component
Alper Gobel In Media Res Media ComponentAlper Gobel In Media Res Media Component
Alper Gobel In Media Res Media Component
 
Interactive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationInteractive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communication
 
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfEnzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
 
Painted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaPainted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of India
 
internship ppt on smartinternz platform as salesforce developer
internship ppt on smartinternz platform as salesforce developerinternship ppt on smartinternz platform as salesforce developer
internship ppt on smartinternz platform as salesforce developer
 
Model Call Girl in Bikash Puri Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Bikash Puri  Delhi reach out to us at 🔝9953056974🔝Model Call Girl in Bikash Puri  Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Bikash Puri Delhi reach out to us at 🔝9953056974🔝
 
Roles & Responsibilities in Pharmacovigilance
Roles & Responsibilities in PharmacovigilanceRoles & Responsibilities in Pharmacovigilance
Roles & Responsibilities in Pharmacovigilance
 
Capitol Tech U Doctoral Presentation - April 2024.pptx
Capitol Tech U Doctoral Presentation - April 2024.pptxCapitol Tech U Doctoral Presentation - April 2024.pptx
Capitol Tech U Doctoral Presentation - April 2024.pptx
 
TataKelola dan KamSiber Kecerdasan Buatan v022.pdf
TataKelola dan KamSiber Kecerdasan Buatan v022.pdfTataKelola dan KamSiber Kecerdasan Buatan v022.pdf
TataKelola dan KamSiber Kecerdasan Buatan v022.pdf
 
History Class XII Ch. 3 Kinship, Caste and Class (1).pptx
History Class XII Ch. 3 Kinship, Caste and Class (1).pptxHistory Class XII Ch. 3 Kinship, Caste and Class (1).pptx
History Class XII Ch. 3 Kinship, Caste and Class (1).pptx
 
Crayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon ACrayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon A
 
CELL CYCLE Division Science 8 quarter IV.pptx
CELL CYCLE Division Science 8 quarter IV.pptxCELL CYCLE Division Science 8 quarter IV.pptx
CELL CYCLE Division Science 8 quarter IV.pptx
 
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxPOINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Education
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)
 
Historical philosophical, theoretical, and legal foundations of special and i...
Historical philosophical, theoretical, and legal foundations of special and i...Historical philosophical, theoretical, and legal foundations of special and i...
Historical philosophical, theoretical, and legal foundations of special and i...
 
MARGINALIZATION (Different learners in Marginalized Group
MARGINALIZATION (Different learners in Marginalized GroupMARGINALIZATION (Different learners in Marginalized Group
MARGINALIZATION (Different learners in Marginalized Group
 

0625 s14 qp_21

  • 1. This document consists of 16 printed pages. DC (AC/JG) 81302/5 © UCLES 2014 [Turn over Cambridge International Examinations Cambridge International General Certificate of Secondary Education *6095608802* PHYSICS 0625/21 Paper 2 Core May/June 2014 1 hour 15 minutes Candidates answer on the Question Paper. No Additional Materials are required. READ THESE INSTRUCTIONS FIRST Write your Centre number, candidate number and name on all the work you hand in. Write in dark blue or black pen. You may use an HB pencil for any diagrams or graphs. Do not use staples, paper clips, glue or correction fluid. DO NOT WRITE IN ANY BARCODES. Answer all questions. Electronic calculators may be used. You may lose marks if you do not show your working or if you do not use appropriate units. Take the weight of 1kg to be 10N (i.e. acceleration of free fall = 10m/s2). At the end of the examination, fasten all your work securely together. The number of marks is given in brackets [ ] at the end of each question or part question. The syllabus is approved for use in England, Wales and Northern Ireland as a Cambridge International Level 1/Level 2 Certificate. www.onlineexamhelp.com www.onlineexamhelp.com
  • 2. 2 0625/21/M/J/14© UCLES 2014 1 A gardener studies the growth of one of his plants. At the same time each day, he measures the height h of the top of the plant from the ground, as shown in Fig. 1.1. h Fig. 1.1 The table of his results is shown below. time since first measurement/days 0 1 2 3 4 5 6 7 height h/cm 2.1 6.5 11.4 18.4 24.5 26.7 30.7 37.1 (a) From the values in the table, deduce the average speed of growth of the plant during the 7 days. Work in days and cm. average speed = ................................... cm/day [4]
  • 3. 3 0625/21/M/J/14© UCLES 2014 [Turn over (b) (i) Complete Fig. 1.2 by plotting the last three values of height h against time. Do not draw a line through the points. h/cm 0 2 4 6 8 0 10 20 30 40 time/days [2] Fig. 1.2 (ii) Describe how the graph shows that the speed of growth of the plant is not constant. ........................................................................................................................................... .......................................................................................................................................[1] [Total: 7]
  • 4. 4 0625/21/M/J/14© UCLES 2014 2 Fig. 2.1 shows a spring before and after a load is added. load spring Fig. 2.1 (a) What is meant by the extension of the spring? ................................................................................................................................................... ...............................................................................................................................................[1] (b) When the graph of extension against load is drawn for the spring, the result is the line shown in Fig. 2.2. extension/cm load/N 0 0 1 2 3 1 2 3 4 5 Fig. 2.2
  • 5. 5 0625/21/M/J/14© UCLES 2014 [Turn over (i) The unstretched length of the spring is 9.0cm. 1. Calculate the total length of the spring when a 5.0N load is hanging from the spring. length = ........................................... cm [2] 2. Find the extension that will be caused by a load of 2.0N. extension = .......................................... cm [1] (ii) Calculate the mass of a load of weight 2.0N. mass = ..................................................[2] [Total: 6]
  • 6. 6 0625/21/M/J/14© UCLES 2014 3 The apparatus in Fig. 3.1 is being used to view the movement of some smoke particles trapped in a box. air molecules and smoke particles microscope light Fig. 3.1 (a) Describe what is seen when the smoke is viewed through the microscope. ................................................................................................................................................... ................................................................................................................................................... ...............................................................................................................................................[2] (b) In the space below, sketch how one smoke particle might move during a short interval of time. [2] (c) What causes the smoke particles to move? ................................................................................................................................................... ................................................................................................................................................... ...............................................................................................................................................[2] (d) What name is used for this motion of the smoke particles? Complete the sentence. The motion of the smoke particles is known as .................................................... motion. [1] [Total: 7] www.onlineexamhelp.com www.onlineexamhelp.com
  • 7. 7 0625/21/M/J/14© UCLES 2014 [Turn over 4 A young boy, skating on a frozen pond, has fallen through some thin ice about 10m from the shore of the pond. Fig. 4.1 shows the situation. Fig. 4.1 A man, standing near the pond, hears the boy’s shouts for help. The man weighs more than the boy. (a) Why would it be unsafe for the man to walk on the ice to rescue the boy? ................................................................................................................................................... ...............................................................................................................................................[1] (b) Suggest and explain what the man could do to cross the ice to reach the boy safely. ................................................................................................................................................... ................................................................................................................................................... ................................................................................................................................................... ................................................................................................................................................... ...............................................................................................................................................[4] [Total: 5]
  • 8. 8 0625/21/M/J/14© UCLES 2014 5 The thermometer in Fig. 5.1 is recording the temperature of the laboratory. –10 0 10 20 30 40 50 60 70 80 90 100 110 °C Fig. 5.1 (a) The bulb of the thermometer is placed in pure, boiling water at standard atmospheric pressure. State the temperature increase. temperature increase =.............................................°C [1] (b) During the day, the temperature in the laboratory rises. In the late afternoon a thermometer attached to the ceiling records a higher temperature than a thermometer placed close to the ground. Explain why this happens. ................................................................................................................................................... ................................................................................................................................................... ................................................................................................................................................... ...............................................................................................................................................[3] (c) At night, the temperature in the laboratory falls. Describe what can be seen happening to the liquid in a thermometer as the temperature falls, and explain why this happens. ................................................................................................................................................... ................................................................................................................................................... ...............................................................................................................................................[2] (d) On Fig. 5.1, draw an arrow to show where the end of the liquid thread might be seen when the temperature being measured is −15°C. [1] [Total: 7]
  • 9. 9 0625/21/M/J/14© UCLES 2014 [Turn over 6 (a) A periscope is an optical instrument containing two mirrors in a long tube. Fig. 6.1 shows the path of a ray of light through a periscope, without the tube. mirror A mirror B normal normal Fig. 6.1 (i) On Fig. 6.1, 1. use the letter i to indicate clearly the angle of incidence of the ray striking mirror A, 2. use the letter r to indicate clearly the angle of reflection of the ray leaving mirror A. [1] (ii) Write down the equation that links i and r. .......................................................................................................................................[1] (iii) Suggest a use for the periscope. .......................................................................................................................................[1] (iv) State what happens if mirror B is rotated through a small angle. .......................................................................................................................................[1]
  • 10. 10 0625/21/M/J/14© UCLES 2014 (b) Fig. 6.2 shows a converging lens.The lens has one principal focus at F1 and the other principal focus at F2. F2 F1 principal axis Fig. 6.2 Use your ruler to help you answer this question. (i) On Fig. 6.2, clearly mark two distances that are each the focal length of the lens. [1] (ii) On Fig. 6.2, draw a ray on the left side of the lens, which strikes the lens, above and parallel to the principal axis. Label this ray: ray 1. Continue this ray to show its path through the lens and at least 6cm to the right of the lens. [2] (iii) On Fig. 6.2, draw a ray that emerges from the lens, below and parallel to the principal axis. Label this ray: ray 2. Show clearly the path of this ray before it reached the lens. [1] [Total: 8]
  • 11. 11 0625/21/M/J/14© UCLES 2014 [Turn over 7 In Fig. 7.1, XY is a copper rod placed between the N and S poles of a magnet. N S X Y A B Fig. 7.1 XY is connected to the terminals A and B of a sensitive, centre-zero instrument that measures current. (a) State the name of this instrument. .......................................................................................[1] (b) When there is no current, the pointer on the instrument points half-way between A and B. State what, if anything, is seen happening to the pointer when XY is (i) held stationary, .......................................................................................................................................[1] (ii) moved horizontally at a steady speed towards the N pole, .......................................................................................................................................[1] (iii) moved horizontally at a steady speed towards the S pole, .......................................................................................................................................[1] (iv) moved repeatedly up and down at right angles to the magnetic field. .......................................................................................................................................[2] (c) Suggest one electrical device that makes use of the effect demonstrated in (b). ...............................................................................................................................................[1] [Total: 7]
  • 12. 12 0625/21/M/J/14© UCLES 2014 8 A student connects the circuit shown in Fig. 8.1. 6.0V 10Ω S2 S1 Fig. 8.1 When operating normally, the lamp has a resistance of 10Ω. (a) (i) State the current in the lamp when both S1 and S2 are open. .......................................................................................................................................[1] (ii) The student closes switch S1. Calculate the current in the lamp, stating the unit of your answer. current = ................................................. [4] (iii) The student now closes S2 as well as S1. State the current in the lamp with both switches closed. .......................................................................................................................................[1] (b) The student decides that she would like to be able to vary the brightness of the lamp. (i) Name an electrical component that she could add to the circuit to do this. .......................................................................................................................................[1]
  • 13. 13 0625/21/M/J/14© UCLES 2014 [Turn over (ii) In the space below, redraw the circuit of Fig. 8.1, including the component for varying the lamp brightness. [2] [Total: 9]
  • 14. 14 0625/21/M/J/14© UCLES 2014 9 (a) Describe how the N pole of a bar magnet can be identified. ................................................................................................................................................... ................................................................................................................................................... ...............................................................................................................................................[2] (b) Use words from the following list to answer the three questions below. attractive force repulsive force no force What force is there between (i) two N poles, ....................................................................................................................... (ii) two S poles, ....................................................................................................................... (iii) a N pole and a S pole? ....................................................................................................... [3] (c) Fig. 9.1 shows an iron bar placed close to the N pole of a bar magnet. N magnet iron bar Fig. 9.1 (i) On Fig. 9.1, write N and S, to indicate the induced poles in the iron bar. [1] (ii) Use a word from the list in (b) to describe the force between the magnet and the iron bar. .......................................................................................................................................[1] (iii) The iron bar is reversed end-to-end. Describe the force that now exists between the magnet and the iron bar. .......................................................................................................................................[1] [Total: 8]
  • 15. 15 0625/21/M/J/14© UCLES 2014 [Turn over 10 A transformer is a device for changing voltages. Fig. 10.1 shows a transformer that has a primary coil with 1000 turns and a secondary coil with 50 turns. primary coil 1000 turns secondary coil 50 turns core Fig. 10.1 (a) State the material from which the core of the transformer is made. ...............................................................................................................................................[1] (b) The primary coil is connected to a 240V alternating current supply. Calculate the voltage across the secondary coil. secondary coil voltage = .............................................. V [3] [Total: 4]
  • 16. 16 0625/21/M/J/14© UCLES 2014 Permission to reproduce items where third-party owned material protected by copyright is included has been sought and cleared where possible. Every reasonable effort has been made by the publisher (UCLES) to trace copyright holders, but if any items requiring clearance have unwittingly been included, the publisher will be pleased to make amends at the earliest possible opportunity. Cambridge International Examinations is part of the Cambridge Assessment Group. Cambridge Assessment is the brand name of University of Cambridge Local Examinations Syndicate (UCLES), which is itself a department of the University of Cambridge. 11 Polonium-210 84 210 Poj` is radioactive. (a) Name three types of emission from radioactive sources. 1. ............................................................................................................................................... 2. ............................................................................................................................................... 3. ............................................................................................................................................... [2] (b) State which of these radiations (i) carries a negative charge, ................................................................................................. (ii) is most easily absorbed, .................................................................................................... (iii) is the emitted particle in the decay 84 210Po 82 206 Pb + emitted particle. ................................................................................. [3] (c) Polonium-210 has a half-life of 138 days. A sample containing 8 ×1010 atoms of polonium-210 decays for 276 days. (i) How many half-lives elapse in this time? ........................................................................... (ii) How many atoms decay in this time? number that decay =....................................................... (iii) How many particles are emitted from the polonium-210 during this time? number emitted =...................................................[4] [Total: 9] 12 One nuclide of chlorine has 35 nucleons and the other nuclide of chlorine has 37 nucleons. The proton number of chlorine is 17. (a) How many protons are there in a neutral atom of chlorine-35? ................................................ (b) How many neutrons are there in a neutral atom of chlorine-37? .............................................. (c) How many electrons are there in a neutral atom of chlorine-37? .............................................. [3] [Total: 3]