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LAMPIRAN 1 PHYSICS SPM PAPER 3 QUESTION ANAYLISIS SECTION B C TOPIC NO Variable Responding Manipulated Fixed FORM 4 29 EKSPERIMENT 1 INTRODUCTION 1.1 Based, Derived, Scalar &Vector Quantities 1.2 Measurement 1.3 Scientific Investigations 2 FORCES AND MOTION 2.1 Linear Motion 1 accelaration height mass 2.2 Inertia 2 period (S3-2006,S1-2007) mass length of jigsaw blade 2.3 Momentum 3 time to stop mass force applied 2.4 The Effect of a Force 4 acceleration( S2-2008) force mass 5 acceleration mass force 2.5 Impulse And Impulsive Force 6 depth height of mass mass 2.6 Gravity 7 time taken weight height 2.7 Forces In Equilibrium 8 2.8 Work, Energy, Power and Efficiency 9 work done distance mass 2.9 Elasticity 10 extension of spring (S1- 2005) force spring constant 11 extension of spring (S2- 2007) diameter spring/wire/length of spring force/weight 3 FORCE AND PRESSURE 3.1 Pressure 12 depth (2004/2008) area of metal block weight 3.2 Pressure in Liquids 13 water distance depth density of water 14 length difference depth density

Variables Experiment paper 3

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Page 1: Variables Experiment paper 3

LAMPIRAN 1PHYSICS SPM PAPER 3 QUESTION ANAYLISIS

SECTION B

C TOPIC NOVariable

Responding Manipulated Fixed

FORM 4 29 EKSPERIMENT

1

INTRODUCTION

1.1 Based, Derived, Scalar &Vector Quantities

1.2 Measurement

1.3 Scientific Investigations

2

FORCES AND MOTION

2.1 Linear Motion 1 accelaration height mass

2.2 Inertia 2 period (S3-2006,S1-2007) mass length of jigsaw blade

2.3 Momentum 3 time to stop mass force applied

2.4 The Effect of a Force 4 acceleration( S2-2008) force mass

5 acceleration mass force

2.5 Impulse And Impulsive Force

6 depth height of mass mass

2.6 Gravity 7 time taken weight height

2.7 Forces In Equilibrium 8

2.8 Work, Energy, Power and Efficiency

9 work done distance mass

2.9 Elasticity 10 extension of spring (S1-2005) force spring constant

11 extension of spring (S2-2007)diameter

spring/wire/length of spring

force/weight

3 FORCE AND PRESSURE

3.1 Pressure 12 depth (2004/2008) area of metal block weight

3.2 Pressure in Liquids 13 water distance depth density of water

14 length difference depth density

15 depth of water lavel density depth of thistle funnel

Page 2: Variables Experiment paper 3

3.3 Gas and Atm Pressure 16 pressure time density of mercury

3.4 Pascal Principle 17 height of big piston area og big piston force/area small piston

3.5 Archimedes Principle 18 weight/volume of water displace

mass/weight object density of water

19 weight/volume of water displace

density mass/weight object

3.6 Bernoulli Principle 20 water lavel speed density of water

4

HEAT

4.1 Thermal In Equilibrium 20 rise in temperature time mass of water

4.2 Specific Heat Capacity 21 rise in temperature (S2-2004) mass time

4.3 Specific Latent Heat 22 rise in temperature density material time

4.4 The Gas Laws 23 pressure(2005) volume temperature

24 pressure/volume (S1-2006: Charles Law)

temperature pressure/volume

5

LIGHT

5.1 Reflection Of Light 25 angle of reflection angle of incident light intensity

5.2 Refraction Of Light 26 angle of refraction angle of incident light intensity

27 apparent depth(2007) real depth size of an object

5.3 Total Internal Reflection

28 angle of refraction/reflection angle of incident density of block

5.4 Lenses 29 image distance object distance focal length

TOPIC NO

Variable6 Responding Manipulated Fixed

FORM FIVE

WAVES 25 EKSPERIMENT

1.1 Waves 1 frequency(2006) period size of spring

2 wavelength/time taken frequency/length of pendulum

size of spring/mass

1.2 Reflection of waves 3 same like form 4

1.2 Refraction of waves 4 wavelength depth density of water

1.3 Difraction of waves

Page 3: Variables Experiment paper 3

1.5 Interference of waves 5 x wavelength a

6 distance/x frequency a

1.6 Sound waves 7 distance/x frequency a

1.7 Electromagnetic waves 8 wavelength colour(diffraction) thickess

7

ELECTRICITY

2.1 Electric fields and charge flow

9 current(2008) speed vandegraff size vandegraff

10 temperature(2007) current voltage

2.2 Ohm Law 11 potential difference (S2-2006)

electric current length of constatant wire

12 resistance (S4-2004, S2-2005 (Diameter), S1-2007)

length/crosssectional area/temperature

length/crosssectional area/temperature

2.3 Series and parallel circuits

13 voltage across resistor no of resistor(2 ohm each)

voltage supply(Siries Circiut)

2.4 EMF and Internal Resistance

14 voltage across cell time same baterry

2.5 Electrical energy and power

15 power voltage current

current height mass load

8

ELECTROMAGNETISM

3.1 Magnetic effect of CCC 16 strength of electromagnet number of turn of coil current

17 strength of electromagnet current number of turn

3.2 The Force on a CCC in a magnetic field

18 distance travel/force magnetic strength current

19 distance travel/force(2008) current magnetic strength

3.3 Electromagnetic induction

20 current(2005) speed magnetic strength

21 current no of turn/magnetic strength

magnetic strength/ no of turn

3.4 DC and AC

3.5 Transformers 22 induced current/voltage no of turn for secondary coil

no of turn for primary coil

23 frequencyno of turn for primary/secondary coil

soft iron/seloinoid

3.6 Generation and transm

9 ELECTRONICS

Page 4: Variables Experiment paper 3

4.1 Cathode ray oscilloscope

24 angle of deflection magnetic strength voltage supply

4.2 Semiconductor diodes

4.3 Transistors

4.4 Logic gates

10

RADIOACTIVITY

5.1 Nucleus of an atom

5.2 Radioactive decay 25 thikness of aluminium count rate radioactice source

5.3 Radioisotopes

5.4 Nuclear energy

5.5 Management of radioactive