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8/7/2019 Physics:P1F4finalSBP07 & Scheme
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SEKTOR SEKOLAH BERASRAMA PENUH
BAHAGIAN SEKOLAH
KEMENTERIAN PELAJARAN MALAYSIA
PEPERIKSAAN AKHIR TAHUN (DIAGNOSTIK) TINGKATAN 4 2007
FIZIK
KERTAS 1
Satu jam lima belas minit
JANGAN BUKA KERTAS SOALAN INI SEHINGGA DIBERITAHU
1. Kertas soalan ini mengandungi 50 soalan.
2. Jawab semua soalan.
3. Jawab dengan menghitamkan ruangan yang betul pada kertas jawapan.
4. Bagi setiap soalan hitamkan satu ruangan sahaja.
5. Sekiranya anda hendak menukarkan jawapan, padamkan tanda yang telah dibuat.
6. Kemudian hitamkan jawapan yang baru.
7. Satu senarai rumus disediakan di halaman 2
8. Penggunaan kalkulator saintifik yang tidak boleh diprogramkan adalah dibenarkan
4531/1
Fizik
Kertas 1
OKTOBER
2007
1 ¼ jam
Kertas ini mengandungi 23 halaman bercetak4531/1 SULIT
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The following information may be useful. The symbols have their usual meaning.
1. v 2 = u 2 + 2as
2. a =t
uv
3. s = ut +2
1at 2
4. Momentum = mv
5. F = ma
6. Kinetic Energy = ½ mv 2
7. Gravitational Potential Energy = mgh
8. Elastic Potential Energy = 2
1
Fx
9. F = kx
10. ρ =V
m
11. Pressure in liquid, P = h g
12. Pressure, P= A
F
13. Heat, Q = mc
14. Heat, Q = m ℓ
15. P 1V 1 = P 2V 2
16.2
2
1
1
T
V
T
V
17.2
2
1
1
T
P
T
P
18.T
PV = constant
19. g = 10 ms-2
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Each question is followed by three, four or five options. Choose the best option for each question then blacken your answer the correct space on the answer sheet.
1 Which of the following is a SI base unit?
A decimeterB meterC kilometerD Megameter
2 Which of the following sets is the set of prefixes arranged in ascending order?
A nano, mega, mili, kiloB mega, kilo, nano, miliC nano, mili, kilo, megaD kilo, mili, mega, nano
3 Time, work and speed are
A base quantitiesB derived quantitiesC scalar quantitiesD vector quantities
4 Diagram 4.1 shows the existence of zero error when the gap of a micrometerscrew gauge is closed.
Diagram 4.2 shows the reading of the micrometer screw gauge after an object isplaced for the measurement of its thickness.
Diagram 4.1 Diagram 4.2
The actual reading of the thickness is
A 2.25 mmB 2.28 mmC 2.75 mmD 2.78 mm
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5 The graph in Diagram 5 shows the relationship between s and t.
Diagram 5
Which of the following equations represent the graph in Diagram 5?
A m t n
m s
B n t
n
m s
C m t n
m s
D n t m
n s
E m t m
n s
6 Diagram 6 shows a ticker tape is pulled by a trolley.
Diagram 6
The trolley acceleration ……
A decreasesB is constantC increases
s
m
0 nt
Direction of movement
1.0 cm 1.5 cm 2.0 cm 2.5 cm
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7 Diagram 7 shows a displacement – time graph for the motion of an object.
Diagram 7
The momentum of the object is zero from
A 0 s to 2 sB 2 s to 4 sC 2 s to 6 sD 6 s to 8 sE 0 s to 8 s
8 Diagram 8 shows a cat shaking its body from head to tail to shed the water whenit gets wet.
Diagram 8
The cats shakes water from its coat using
A the concept of inertiaB the concept of equilibrium of forces
C the principle of conservation of energyD the principle of conservation of momentum
Displacement (m)
10
0 2 4 6 8Time (s)
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9 Diagram 9 shows a man releases a stone into a well. If the distance between thetop of the well and the water surface is 30 m, what is the time required for thestone to reach the surface of the water?
Diagram 9
A 6.12 sB 3.65 sC 4.27 sD 2.45 s
10 Diagram 10.1 shows a frog of mass 0.1 kg stands on a stationary leaf of mass0.01 kg.
Diagram 10.1 Diagram 10.2
When it jumps out of the leaf at a velocity of 2 ms -1, calculate the velocity of theleaf as the frog jumps.
A 1 ms-1
B 2 ms-1
C 10 ms-1
D 20 ms-1
E 25 ms-1
30 m
leaf
frog
water
2 ms
-1
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11 Diagram 11 shows a trolley of mass 4.0 kg is placed on a rough table and beingpulled by a force of 4.0 N. The trolley moves at constant velocity. Calculate thefrictional force.
4.0 N
Frictional forceDiagram 11
A 2 NB 4 NC 8 ND 16 NE 40 N
12 Diagram 12.1 shows a horse pulling a carriage.Diagram 12.2 shows another horse of the same strength is added.
Diagram 12.1 Diagram 12.2
What happens to the acceleration of the carriage when two horses are pulling thesame carriage?
A It decreasesB It increasesC It is constant
13
Diagram 13
Diagrams 13 shows a karate – do presenter moves his hand so fast and stops itwhen his hand touches the brick so that
A the collision time will be longerB the impulsive force will increaseC the bricks will crack and break together
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14
Diagram 14
The front and back parts of a car are designed to crumple easily during a crashso that
A the collision time will be longerB the impulsive force will increaseC prevent the passengers from being thrown forwards
15 Diagram 15 shows a boy standing on a weighing balance in a stationary lift. Thereading of the spring balance is 600 N
Diagram 15
What is the reading of the balance when the lift moves up with an acceleration of2 ms-2?
A 300 NB 480 NC 600 ND 720 NE 1200 N
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16 Diagram 16 shows a parachutist in four positions after he jumps from a highhot air balloon.
At which position does he experience unbalanced forces?
A not yet moving hot air balloon at constant height
B accelerating
C velocity constant
D at rest
17 Diagram 17 shows two metal spheres, S and R.
4 kg2kg
Sphere S Sphere R
Diagram 17
Which of the following statements is true when S and R are in free fall?
A The velocities of S and R are the sameB The accelerations of S and R are the sameC The momentum of S and R are the sameD The gravitational forces acting on S and on R are the same
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18 Diagram 18 shows a block of mass 2 kg slides from rest through a distance of20 m down a frictionless slope.
Diagram
Diagram 18
What is the kinetic energy of the block at the bottom of the slope?
(The acceleration of free fall is 10 ms-2)
A 20 J
B 40 JC 200 JD 400 JE 2000 J
19 A ball is thrown vertically upwards.Neglecting air resistance, which statement is correct?
A The kinetic energy of the ball is greatest at the greatest height attained.B By the principle of conservation of energy, the total energy of the ball is
constant throughout its motion
C By the principle of conservation of momentum, the momentum of the ballis constant throughout its motion.
20 Diagram 20 shows a car is driven along a level road. The total energy input fromthe petrol is 60 kJ, and the car wastes 45 kJ of energy
Diagram 20
What is the efficiency of the car?
A 15 %B 25 %C 45 %D 75 %E 105 %
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21 Hydroelectric, tidal and fossil fuels are three sources of energy.
Which of these are renewable energy sources?
Hydroelectric Tidal Fossil fuelsA No Yes Yes
B No No YesC Yes No NoD Yes Yes No
22 A spring extends by 6 cm when a load of 30 N is suspended from it.
Diagram 22
Two identical springs are connected as shown in Diagram 22 to carry a 30 Nload. What is the extension of the spring system?
A 3 cmB 5 cmC 6 cmD 12 cmE 15 cm
23 Diagram 23 shows the relationship between the force applied and thecorresponding extensions of spring P and spring Q. Which of the followingstatements about spring P and Q is true?
Spring P Spring Q
Diagram 23
A Spring P is more difficult to extendB For the same extension, spring P needs a lower forceC More energy has to be used for spring Q in order to produce the same
amount of force
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24 Which diagram shows the child exerting least pressure on the ground?
A
B
C
D
25 Diagrams 25 shows two divers swimming in the sea and two divers swimming infresh water. Sea water is more dense than fresh water.
On which diver is there the greatest pressure?
Diagram 25
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26 Diagram 26 shows a manometer. Liquid B does not mix with water.
Diagram 26
Given that the density of water is 1 000 kg m-3 . What is the density
of the liquid B?
A 480 kg m-3
B 750 kg m-3
C 800 kg m-3
D 1 000 kg m-3
E 1 200 kg m-3
27 Diagram 27 shows a pin is squeezed between finger and thumb.
Diagram 27
Which statement is correct?
A The force of the pin is larger on the finger than on the thumb.B The force of the pin is larger on the thumb than on the finger.C The pressure of the pin is larger on the finger than on the thumb.D The pressure of the pin is larger on the thumb than on the finger.
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28 Diagram 28 shows the system contains an incompressible liquid.
A downward force of 80 N is exerted on the piston K.
Diagram 28
What will be the upward force on piston L?
A 1 NB 4 NC 80 ND 1600 N
29 Diagram 29 shows a boat of mass 150 kg floating on the surface of LakeTitiwangsa. Given that the density of water is 1000 kg m -3.
Diagram 29
What is the buoyant force acting on the boat?
A ZeroB 150 NC 1000 ND 1500 NE 1150 N
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30 Diagram 30 shows water rising up the tubes X, Y and Z if the air is blown.
Diagram 30
Which of the following is true regarding the water level in tube X, Y and Z?
A Water level in X < Water level in Y < Water level in ZB Water level in X < Water level in Z < Water level in YC Water level in Z < Water level in Y < Water level in XD Water level in Y < Water level in Z < Water level in X
31 Diagram 31 shows a simple mercury barometer. Which of the following cause theheight of the mercury column to vary?
Height ofmercurycolumn
mercury
reservoir
Diagram 31
A Changes in the diameter of the tubeB Changes in the size of the reservoirC Leakage of air into the tube
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32 Diagram 32 shows a manometer is connected to a gas supply.
Diagram 32
Pressure can be measured in cm of water.
What is the pressure of the gas?
A 8 cm of water more than atmospheric pressureB 12 cm of water more than atmospheric pressureC 8 cm of water less than atmospheric pressureD 12 cm of water less than atmospheric pressure
33 Diagram 33 shows condensed milk being poured from its can into a cup.
Diagram 33
The milk flows out easily from the can with two holes because
A The atmospheric pressure is the same as the air pressure inside the can.B The atmospheric pressure outside the can is greater than the air pressure
inside the can.C The atmospheric pressure outside the can is less than the air pressure
inside the can
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h
34 Diagram 34 shows a polystyrene block being pushed to a depth of h cm from thewater surface. P is the water pressure acting on surface Q.
Surface Q
Polystyrene Block
Water
Diagram 34
Which graph shows the relationship between P and h when the block is pusheddeeper into the water?
A P
h0
B P
h0
C P
h0
D P
h0
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35 Diagram 35 shows a student places his thumb firmly on the outlet of a bicyclepump, to stop the air from coming out.
Diagram 35
What happens to the pressure and to the volume of the trapped air as the pumphandle is pushed in?
Pressure VolumeA Decreases DecreasesB Decreases Remains the sameC Increases DecreasesD Increases Remains the same
36 When an ice cube, initially at 0C, is left in an area at room temperature, the icecube will melt because
A no energy is required for this process to occur
B the molecules within the ice lose kinetic energyC the molecules within the ice gain potential energy
37 Why do people feel cool if they do not dry themselves after swimming in the sea?
A Water is evaporated and causes coolingB Water insulates them from the warm airC Water is a good conductor of heatD Water is cooler than the air
38 Two objects in contact are in thermal equilibrium when
A they have the same temperatureB they have the same amount of powerC no heat flows between them
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39 Diagram 39 shows a mercury – in – glass thermometer. The distance between
the –10C and the 110C markings is 25 cm.
Diagram 39
At which temperature is the end of the mercury thread 15 cm from the –10Cmark?
A 50C
B 60CC 62C
D 72C
40 A 400 W heater is used to heat 0.4 kg of solid.Diagram 40 shows the temperature – time graph of the substance.
Diagram 40
What is the specific latent heat of fusion of the substance?
A 64 kJ kg-1
B 160 kJ kg-1
C 400 kJ kg-1
D 600 kJ kg-1
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41 Heat energy is supplied at the same rate to 100 g of paraffin and to 100 g ofwater in similar containers. Why does the temperature of the paraffin rise morequickly?
A The paraffin has a larger specific heat capacity than waterB The paraffin has a smaller specific heat capacity than water
C The paraffin is less dense than waterD The paraffin is more dense than water
42 Bubbles of gas, escaping from the mud at the bottom of a deep lake, rise to thesurface.
Diagram 42
As the bubbles rise they get larger. Why does this happen?
A The atmospheric pressure on the bubbles decreasesB The atmospheric pressure on the bubbles increasesC The water pressure on the bubbles decreasesD The water pressure on the bubbles increases
43 Diagram 43.1 shows some air is trapped in a cylinder.Diagram 43.2 shows the same air after the piston has been pushed in slowly.
Diagram 43.1 Diagram 43.2
The air in diagram 43.1 is at atmospheric pressure P A.What is the pressure of the trapped air in Diagram 43.2.
A AxP 10
6
B AP
C AxP 6
10
D AxP 60
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44 The volume of a gas is 1 cm3 at 15C. The gas is heated at fixed pressure untilthe volume becomes triple the initial volume. Calculate the final temperature ofthe gas.
A 215C
B 325CC 442C
D 485C
E 591C
45 For a fixed mass of gas at constant volume in an air tight container, which of thegraphs correctly represents the relationship between pressure and temperatureof the gas?
A P / Pa
T / C0
B P / Pa
T / C0
C P / Pa
T / C0
D P / Pa
T / C0
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46 Which of the following statements regarding a virtual image is correct?
A A virtual image cannot be projected onto a screenB A virtual image really existsC A virtual image is produced by intersecting rays
47 Diagram 47 shows a single ray of light directed at a plane mirror.
30
Diagram 47
What is the angle of incidence ray and reflection ray?
Angle of incidence ray Angle of reflection rayA 30 30B 30 60C 60 30D 60 60
48 Diagram 48 shows a convex mirror that is used on the road to help drivers viewtraffic around sharp corners.
Diagram 48
What are the characteristics of the image formed by the convex mirror?
A virtual and uprightB real and uprightC virtual and inverted
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49 Diagram 46 shows the image of a clock face as seen in a plane mirror.
Diagram 46Diagram 46
What is the actual time on the clock?
A 1.25B 1.35C 10.25D 10.35
50 A photographer wishes to take pictures without being noticed. He sets up twoplane mirrors together with his camera. Which arrangement of mirrors will allowthe photographer to take pictures of someone behind the camera?
A
B
C
D
END OF QUESTION PAPER
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SEKTOR SEKOLAH BERASRAMA PENUH
BAHAGIAN SEKOLAH
KEMENTERIAN PELAJARAN MALAYSIA
PEPERIKSAAN AKHIR TAHUN (DIAGNOSTIK) SBP
TINGKATAN 4 2007
FIZIK
PERATURAN PERMARKAHAN
KERTAS 1
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MARKING SCHEME – PAPER 1 (PHYSICS)
1 B 11 B 21 D 31 C 41 B
2 C 12 B 22 A 32 A 42 C
3 C 13 B 23 B 33 B 43 C
4 C 14 A 24 B 34 A 44 E
5 C 15 D 25 B 35 C 45 B
6 B 16 B 26 B 36 C 46 A
7 C 17 B 27 D 37 A 47 D
8 A 18 C 28 B 38 A 48 A
9 D 19 B 29 D 39 C 49 B
10 D 20 B 30 B 40 C 50 C