← Back to Donat Physics
Practice book · Senior 1 · REB curriculum

Senior 1 Physics practice book

All 360 quiz questions in 9 units, with the correct answer and an explanation for each. Read a unit, then test yourself in the Senior 1 quiz.

Unit 1: Introduction to Physics and Measurements of Physical Quantities

Multiple choice

1.A physical quantity is anything that:

  • AHas a colour
  • BCan be measured and expressed with a number and a unit
  • CCan only be seen
  • DHas no unit

Answer: B

Examples are length, mass and time.

Multiple choice

2.Which of these is a fundamental (base) quantity?

  • AMass
  • BDensity
  • CSpeed
  • DArea

Answer: A

Mass, length, time, temperature, current, amount of substance and luminous intensity are base quantities.

Multiple choice

3.Which of these is a derived quantity?

  • ATime
  • BLength
  • CMass
  • DVolume

Answer: D

Volume is derived from length × length × length.

Multiple choice

4.The SI unit of length is the:

  • AMetre
  • BKilometre
  • CCentimetre
  • DInch

Answer: A

The metre (m) is the SI base unit of length.

Multiple choice

5.The SI unit of mass is the:

  • AGram
  • BTonne
  • CKilogram
  • DNewton

Answer: C

The kilogram (kg) is the SI unit of mass.

Multiple choice

6.The SI unit of time is the:

  • ASecond
  • BDay
  • CMinute
  • DHour

Answer: A

The second (s) is the SI unit of time.

Multiple choice

7.The SI unit of temperature is the:

  • AKelvin
  • BDegree Celsius
  • CJoule
  • DFahrenheit

Answer: A

The kelvin (K) is the SI unit of temperature.

Multiple choice

8.How many centimetres are in 2.5 m?

  • A250 cm
  • B25 cm
  • C2500 cm
  • D0.025 cm

Answer: A

1 m = 100 cm, so 2.5 m = 250 cm.

Multiple choice

9.Convert 3500 g to kilograms.

  • A35 kg
  • B0.35 kg
  • C3.5 kg
  • D350 kg

Answer: C

1 kg = 1000 g, so 3500 g = 3.5 kg.

Multiple choice

10.How many seconds are in 5 minutes?

  • A50 s
  • B3000 s
  • C300 s
  • D500 s

Answer: C

5 × 60 = 300 s.

Multiple choice

11.The prefix 'milli' means:

  • A1 000 000
  • B1/100
  • C1/1000
  • D1000

Answer: C

1 mm = 1/1000 m.

Multiple choice

12.The prefix 'kilo' means:

  • A100
  • B1000
  • C1/1000
  • D10

Answer: B

1 km = 1000 m.

Multiple choice

13.Which instrument is best for measuring the length of a classroom?

  • ATape measure
  • BVernier caliper
  • CMeasuring cylinder
  • DMicrometer screw gauge

Answer: A

A tape measure can measure several metres.

Multiple choice

14.Which instrument measures the internal diameter of a pipe to 0.1 mm?

  • AMetre rule
  • BVernier caliper
  • CStopwatch
  • DBeam balance

Answer: B

Vernier calipers have inside jaws for internal measurements.

Multiple choice

15.Mass is measured using a:

  • AMeasuring cylinder
  • BThermometer
  • CSpring balance
  • DBeam balance or electronic balance

Answer: D

A balance compares or measures mass; a spring balance measures weight (force).

Multiple choice

16.The volume of a liquid is measured using a:

  • ABeam balance
  • BRuler
  • CVernier caliper
  • DMeasuring cylinder

Answer: D

Measuring cylinders are marked in cm³ (or mL).

Multiple choice

17.A rectangular block is 5 cm long, 4 cm wide and 2 cm high. What is its volume?

  • A10 cm³
  • B20 cm³
  • C40 cm³
  • D11 cm³

Answer: C

V = l × w × h = 5 × 4 × 2 = 40 cm³.

Multiple choice

18.A rectangle measures 8 m by 3 m. What is its area?

  • A22 m²
  • B24 m³
  • C24 m²
  • D11 m²

Answer: C

Area = 8 × 3 = 24 m².

Multiple choice

19.1 litre is equal to:

  • A100 cm³
  • B10 cm³
  • C1000 cm³
  • D1 m³

Answer: C

1 L = 1000 cm³ = 1 dm³.

Multiple choice

20.A stopwatch is used to measure:

  • ATime intervals
  • BTemperature
  • CLength
  • DMass

Answer: A

Stopwatches measure time in seconds.

Multiple choice

21.To measure the thickness of one page of a book with a ruler, you should:

  • AWeigh the book
  • BMeasure one page directly
  • CUse a thermometer
  • DMeasure the thickness of many pages and divide by the number of pages

Answer: D

Measuring many pages reduces the error for a very small length.

Multiple choice

22.200 sheets of paper are 2 cm thick. What is the thickness of one sheet?

  • A0.1 cm
  • B0.01 cm
  • C100 cm
  • D1 cm

Answer: B

2 ÷ 200 = 0.01 cm (0.1 mm).

Multiple choice

23.When reading a measuring cylinder containing water, the reading is taken at the:

  • ATop of the meniscus
  • BBottom of the meniscus with the eye level with it
  • CTop of the cylinder
  • DSide of the cylinder

Answer: B

Water forms a curved surface; read the bottom of the curve at eye level.

Multiple choice

24.Which pair is a correct quantity and its SI unit?

  • ATemperature – degree Celsius
  • BMass – gram
  • CTime – minute
  • DLength – metre

Answer: D

The SI unit of length is the metre.

Multiple choice

25.Physics is the branch of science that studies:

  • ALiving things only
  • BMatter, energy and how they interact
  • CThe history of science
  • DChemical reactions only

Answer: B

Physics explains motion, forces, energy, light, electricity and more.

Multiple choice

26.Mobile phones, solar panels and X-ray machines show that physics is closely linked to:

  • ATechnology and society
  • BOnly sport
  • COnly art
  • DNothing practical

Answer: A

Physics discoveries lead to new technologies used every day.

Multiple choice

27.Which of the following is a science process skill?

  • AIgnoring measurements
  • BMaking a hypothesis and testing it by experiment
  • CGuessing without evidence
  • DCopying results

Answer: B

Observing, measuring, hypothesising, experimenting and concluding are process skills.

Multiple choice

28.Which is the correct order of steps in a scientific investigation?

  • AConclusion → experiment → observation → hypothesis
  • BHypothesis → conclusion → observation → experiment
  • CExperiment → conclusion → hypothesis → observation
  • DObservation → hypothesis → experiment → conclusion

Answer: D

We observe, suggest an explanation, test it, then draw a conclusion.

Multiple choice

29.Which of these is a vector quantity?

  • AMass
  • BForce
  • CTemperature
  • DTime

Answer: B

Force has both magnitude and direction.

Multiple choice

30.The prefix 'micro' (μ) means:

  • A10⁻³
  • B10⁶
  • C10³
  • D10⁻⁶

Answer: D

1 μm = 10⁻⁶ m.

True or false

31.Mass and weight are measured in the same unit.

Answer: False

Mass is in kilograms; weight is a force measured in newtons.

True or false

32.Speed is a derived quantity.

Answer: True

It is derived from length and time.

True or false

33.1 kilometre is equal to 1000 metres.

Answer: True

Kilo means one thousand.

True or false

34.A spring balance measures mass directly.

Answer: False

A spring balance measures weight (force); a beam balance measures mass.

True or false

35.Physics is related to other sciences such as chemistry and biology.

Answer: True

For example, physics explains how X-rays and microscopes help biologists and doctors.

Fill in the blank

36.The SI unit of mass is the ______.

Answer: kilogram (kg)

One of the seven SI base units.

Fill in the blank

37.Quantities obtained by combining base quantities, such as area and speed, are called ______ quantities.

Answer: derived

For example, area = length × length.

Fill in the blank

38.The curved surface of a liquid in a measuring cylinder is called the ______.

Answer: meniscus

Read the bottom of the meniscus for water.

Fill in the blank

39.The prefix 'centi' means one ______ of a unit.

Answer: hundredth (1/100)

1 cm = 1/100 m.

Fill in the blank

40.A quantity that has magnitude only, such as mass or time, is called a ______ quantity.

Answer: scalar

Vectors have magnitude and direction.

Back to top ↑

Unit 2: Uniform Rectilinear Motion

Multiple choice

1.Motion is the change in ______ of an object with time.

  • ATemperature
  • BPosition
  • CMass
  • DColour

Answer: B

An object moves when its position changes.

Multiple choice

2.Distance is:

  • AThe length of the path travelled, without direction
  • BDistance in a given direction
  • CSpeed per second
  • DAlways a straight line

Answer: A

Distance is a scalar quantity.

Multiple choice

3.Displacement is:

  • ATotal path length
  • BSpeed × mass
  • CAlways larger than distance
  • DThe straight-line distance from start to finish in a stated direction

Answer: D

Displacement is a vector quantity.

Multiple choice

4.A pupil walks 3 m east and then 3 m west. What is her displacement?

  • A3 m west
  • B6 m
  • C3 m east
  • D0 m

Answer: D

She ends where she started, so displacement is zero (distance is 6 m).

Multiple choice

5.Speed is defined as:

  • AMass ÷ time
  • BDistance × time
  • CDistance ÷ time
  • DTime ÷ distance

Answer: C

Speed = distance travelled ÷ time taken.

Multiple choice

6.The SI unit of speed is:

  • Am/s
  • BN
  • Cm/s²
  • Dkm/h

Answer: A

Metres per second.

Multiple choice

7.A cyclist travels 100 m in 20 s. What is her average speed?

  • A120 m/s
  • B2000 m/s
  • C0.2 m/s
  • D5 m/s

Answer: D

Speed = 100 ÷ 20 = 5 m/s.

Multiple choice

8.A bus travels 180 km in 3 hours. What is its average speed?

  • A183 km/h
  • B0.017 km/h
  • C540 km/h
  • D60 km/h

Answer: D

180 ÷ 3 = 60 km/h.

Multiple choice

9.Velocity differs from speed because velocity:

  • AHas no unit
  • BIncludes direction
  • CIs measured in seconds
  • DIs always larger

Answer: B

Velocity is speed in a given direction.

Multiple choice

10.Which is a vector quantity?

  • ATime
  • BDistance
  • CSpeed
  • DVelocity

Answer: D

Velocity has magnitude and direction.

Multiple choice

11.Which is a scalar quantity?

  • AVelocity
  • BForce
  • CSpeed
  • DDisplacement

Answer: C

Speed has magnitude only.

Multiple choice

12.An object moving at constant speed in a straight line has:

  • AUniform velocity
  • BZero speed
  • CIncreasing velocity
  • DUniform acceleration

Answer: A

Its speed and direction stay the same.

Multiple choice

13.A car whose speed increases as it moves along a straight road is:

  • ADecelerating
  • BMoving with uniform velocity
  • CAccelerating
  • DAt rest

Answer: C

Acceleration is an increase in velocity.

Multiple choice

14.A ball rolling up a slope gradually slows down. It is:

  • AAccelerating
  • BDecelerating
  • CAt rest
  • DAt constant velocity

Answer: B

Its velocity is decreasing.

Multiple choice

15.On a distance–time graph, a horizontal line shows that the object is:

  • AMoving fast
  • BAccelerating
  • CAt rest (stationary)
  • DDecelerating

Answer: C

Its distance is not changing.

Multiple choice

16.On a distance–time graph, a steeper straight line shows:

  • ADeceleration
  • BA higher speed
  • CA lower speed
  • DThe object at rest

Answer: B

The gradient of a distance–time graph is the speed.

Multiple choice

17.On a distance–time graph, a straight sloping line shows:

  • AIncreasing speed
  • BConstant speed
  • CDecreasing speed
  • DNo motion

Answer: B

Equal distances in equal times mean constant speed.

Multiple choice

18.On a speed–time graph, a straight line sloping upwards shows:

  • AUniform acceleration
  • BConstant speed
  • CThe object at rest
  • DDeceleration

Answer: A

Speed increases by equal amounts each second.

Multiple choice

19.On a speed–time graph, a horizontal line above the time axis shows:

  • ADeceleration
  • BThe object at rest
  • CAcceleration
  • DConstant speed

Answer: D

Speed does not change.

Multiple choice

20.A ticker-tape timer prints dots on a tape pulled by a trolley. Dots that get further apart show that the trolley is:

  • AAt rest
  • BDecelerating
  • CAccelerating
  • DMoving at constant speed

Answer: C

The trolley travels further between dots each time interval.

Multiple choice

21.Evenly spaced dots on a ticker tape show that the trolley moved with:

  • AAcceleration
  • BNo motion
  • CConstant speed
  • DDeceleration

Answer: C

Equal distances in equal times.

Multiple choice

22.Convert 72 km/h to m/s.

  • A7.2 m/s
  • B20 m/s
  • C259 m/s
  • D72 m/s

Answer: B

72 × 1000 ÷ 3600 = 20 m/s.

Multiple choice

23.A runner covers 400 m in 50 s. What is his speed?

  • A0.125 m/s
  • B8 m/s
  • C20 000 m/s
  • D450 m/s

Answer: B

400 ÷ 50 = 8 m/s.

Multiple choice

24.How far does a car travel in 10 s at a constant speed of 15 m/s?

  • A25 m
  • B15 m
  • C1.5 m
  • D150 m

Answer: D

Distance = speed × time = 15 × 10 = 150 m.

Multiple choice

25.How long does it take to walk 600 m at 1.5 m/s?

  • A400 s
  • B40 s
  • C601.5 s
  • D900 s

Answer: A

Time = distance ÷ speed = 600 ÷ 1.5 = 400 s.

Multiple choice

26.The speedometer of a car shows the car's:

  • ADisplacement
  • BInstantaneous speed
  • CAverage speed
  • DAcceleration

Answer: B

It shows the speed at that moment.

Multiple choice

27.Average speed is calculated as:

  • ATotal distance ÷ total time
  • BFinal speed − initial speed
  • CHighest speed ÷ 2
  • DDistance × time

Answer: A

It is the total distance divided by the total time taken.

Multiple choice

28.A taxi travels 30 km in 1 hour, then 10 km in 0.5 hour. What is its average speed?

  • A26.7 km/h
  • B20 km/h
  • C40 km/h
  • D30 km/h

Answer: A

Total 40 km in 1.5 h = 26.7 km/h.

Multiple choice

29.A body moving in a straight line is said to be in:

  • ARotational motion
  • BOscillatory motion
  • CLinear (rectilinear) motion
  • DCircular motion

Answer: C

Linear motion is motion along a straight line.

Multiple choice

30.A swinging pendulum is an example of:

  • AOscillatory motion
  • BCircular motion only
  • CNo motion
  • DLinear motion

Answer: A

It moves back and forth about a fixed point.

True or false

31.Distance is a vector quantity.

Answer: False

Distance is scalar; displacement is the vector.

True or false

32.A horizontal line on a distance–time graph means the object is not moving.

Answer: True

Its distance stays the same.

True or false

33.Velocity is speed in a stated direction.

Answer: True

Velocity is a vector.

True or false

34.An object can have a large distance travelled but zero displacement.

Answer: True

For example, running round a track back to the start.

True or false

35.Deceleration means that an object is speeding up.

Answer: False

Deceleration means slowing down.

Fill in the blank

36.Speed = distance ÷ ______.

Answer: time

Measured in m/s.

Fill in the blank

37.Distance travelled in a specified direction is called ______.

Answer: displacement

It is a vector quantity.

Fill in the blank

38.A quantity with both magnitude and direction is called a ______ quantity.

Answer: vector

Examples: velocity, displacement, force.

Fill in the blank

39.An increase in velocity with time is called ______.

Answer: acceleration

A decrease is deceleration.

Fill in the blank

40.The gradient of a distance–time graph gives the ______.

Answer: speed

A steeper line means higher speed.

Back to top ↑

Unit 3: Force and Equilibrium of Objects

Multiple choice

1.A force is:

  • AA type of energy
  • BA unit of length
  • CA push or a pull
  • DThe mass of an object

Answer: C

A force is a push or pull acting on an object.

Multiple choice

2.The SI unit of force is the:

  • AKilogram
  • BWatt
  • CNewton
  • DJoule

Answer: C

Named after Isaac Newton.

Multiple choice

3.A force can:

  • AChange the direction of motion
  • BChange the speed of an object
  • CChange the shape of an object
  • DAll of the above

Answer: D

Forces can start, stop, speed up, slow down, turn or deform objects.

Multiple choice

4.Force is measured using a:

  • AThermometer
  • BSpring balance (newton meter)
  • CRuler
  • DBeam balance

Answer: B

A spring balance stretches in proportion to the force.

Multiple choice

5.Weight is:

  • AThe amount of matter in a body
  • BThe same everywhere in the universe
  • CThe force of gravity on a body
  • DThe volume of a body

Answer: C

W = mg, measured in newtons.

Multiple choice

6.What is the weight of a 5 kg bag on Earth (g = 10 N/kg)?

  • A50 N
  • B5 N
  • C500 N
  • D0.5 N

Answer: A

W = mg = 5 × 10 = 50 N.

Multiple choice

7.Which is a contact force?

  • AMagnetic force
  • BFriction
  • CGravitational force
  • DElectrostatic force

Answer: B

Friction acts only when surfaces touch.

Multiple choice

8.Which is a non-contact force?

  • AGravitational force
  • BFriction
  • CTension
  • DAir resistance

Answer: A

Gravity acts at a distance without contact.

Multiple choice

9.The force that keeps a book resting on a table from falling through it is the:

  • AWeight
  • BNormal reaction of the table
  • CTension
  • DFriction

Answer: B

The table pushes up on the book.

Multiple choice

10.Two forces of 6 N and 4 N act in the same direction on a box. The resultant force is:

  • A1.5 N
  • B2 N
  • C24 N
  • D10 N

Answer: D

Forces in the same direction add: 6 + 4 = 10 N.

Multiple choice

11.Two forces of 6 N and 4 N act in opposite directions on a box. The resultant force is:

  • A10 N
  • B2 N in the direction of the 6 N force
  • C2 N in the direction of the 4 N force
  • D0 N

Answer: B

6 − 4 = 2 N, in the direction of the larger force.

Multiple choice

12.When the forces on an object are balanced, the resultant force is:

  • ALarge
  • BEqual to the weight
  • CAlways upwards
  • DZero

Answer: D

Balanced forces cancel out.

Multiple choice

13.A spring stretches 2 cm when a 4 N weight hangs on it. How far will it stretch with 10 N (within the elastic limit)?

  • A20 cm
  • B8 cm
  • C5 cm
  • D4 cm

Answer: C

Extension ∝ force: 2 cm per 4 N is 0.5 cm/N, so 10 N gives 5 cm.

Multiple choice

14.On a force diagram, a force is shown by an arrow. The length of the arrow shows the force's:

  • ASize (magnitude)
  • BMass
  • CColour
  • DDirection

Answer: A

The arrow points in the force's direction; its length shows its size.

Multiple choice

15.A tug-of-war rope does not move when both teams pull with 500 N. The resultant force is:

  • A500 N
  • B1000 N
  • C0 N
  • D250 N

Answer: C

Equal and opposite forces are balanced.

Multiple choice

16.The centre of gravity of an object is the point:

  • AAt its top
  • BThrough which its whole weight appears to act
  • CWhere it touches the ground
  • DWhere it is thickest

Answer: B

The weight can be treated as acting at this single point.

Multiple choice

17.The centre of gravity of a uniform metre rule is at:

  • AThe 0 cm mark
  • BThe 25 cm mark
  • CThe 100 cm mark
  • DThe 50 cm mark

Answer: D

For a uniform object it is at the geometric centre.

Multiple choice

18.The centre of gravity of a uniform triangular sheet is at:

  • AOne corner
  • BThe point where the medians meet
  • CThe middle of the base
  • DThe top corner

Answer: B

The medians of a triangle meet at its centroid.

Multiple choice

19.The centre of gravity of an irregular flat card can be found using:

  • AA plumb line and suspending the card from different points
  • BA thermometer
  • CA measuring cylinder
  • DA magnet

Answer: A

Lines drawn along the plumb line from two or more suspension points cross at the centre of gravity.

Multiple choice

20.Can the centre of gravity lie outside the material of an object?

  • AOnly for liquids
  • BOnly for heavy objects
  • CYes, for example in a ring or a bent rod
  • DNo, never

Answer: C

A ring's centre of gravity is at its centre, where there is no material.

Multiple choice

21.An object is in stable equilibrium if, when slightly tilted, it:

  • AReturns to its original position
  • BFloats
  • CStays in its new position
  • DFalls over

Answer: A

Its centre of gravity rises when tilted, so it falls back.

Multiple choice

22.An object is in unstable equilibrium if, when slightly tilted, it:

  • AStays in its new position
  • BTopples further over
  • CReturns to its original position
  • DRises upwards

Answer: B

A pencil balanced on its point is unstable.

Multiple choice

23.A ball lying on a flat table is in:

  • ANo equilibrium
  • BNeutral equilibrium
  • CUnstable equilibrium
  • DStable equilibrium

Answer: B

When rolled, it stays in its new position; its centre of gravity height doesn't change.

Multiple choice

24.A cone resting on its base is in:

  • ANo equilibrium
  • BUnstable equilibrium
  • CNeutral equilibrium
  • DStable equilibrium

Answer: D

It returns to rest on its base when slightly tilted.

Multiple choice

25.To make an object more stable, you should:

  • ARaise its centre of gravity and narrow its base
  • BMake it taller
  • CLower its centre of gravity and widen its base
  • DMake its base smaller

Answer: C

A low centre of gravity and wide base increase stability.

Multiple choice

26.An object will topple over when:

  • AThe vertical line through its centre of gravity falls outside its base
  • BIts centre of gravity is above its base
  • CIt has a wide base
  • DIt is very light

Answer: A

The weight then produces a turning effect that tips it over.

Multiple choice

27.Why is a bus more likely to topple when its roof rack is loaded with heavy bags?

  • AThe bus becomes lighter
  • BThe base becomes wider
  • CFriction decreases
  • DThe centre of gravity is raised

Answer: D

A higher centre of gravity makes it less stable.

Multiple choice

28.Racing cars are built low and wide so that they:

  • ALook attractive
  • BGo faster in straight lines only
  • CUse less fuel
  • DAre more stable when cornering

Answer: D

A low centre of gravity and wide wheelbase resist toppling.

Multiple choice

29.Two forces of 3 N and 4 N act on a point at right angles to each other. What is the size of their resultant?

  • A5 N
  • B12 N
  • C1 N
  • D7 N

Answer: A

By Pythagoras: √(3² + 4²) = √25 = 5 N.

Multiple choice

30.The resultant of two non-parallel forces can be found by drawing a:

  • AParallelogram (or triangle) of forces
  • BCircle of forces
  • CPie chart
  • DBar graph

Answer: A

The diagonal of the parallelogram gives the resultant.

True or false

31.Mass and weight mean the same thing.

Answer: False

Mass is the amount of matter (kg); weight is the gravitational force (N).

True or false

32.Friction is a non-contact force.

Answer: False

Friction needs surfaces in contact.

True or false

33.The centre of gravity of an object always lies inside the material of the object.

Answer: False

It can lie outside, as in a ring.

True or false

34.Lowering the centre of gravity makes an object more stable.

Answer: True

It must be tilted further before toppling.

True or false

35.A pencil balanced on its point is in stable equilibrium.

Answer: False

It is in unstable equilibrium.

Fill in the blank

36.The SI unit of force is the ______.

Answer: newton (N)

1 N gives 1 kg an acceleration of 1 m/s².

Fill in the blank

37.The single force that has the same effect as all the forces acting together is called the ______ force.

Answer: resultant

Balanced forces have zero resultant.

Fill in the blank

38.The point through which the whole weight of a body appears to act is its centre of ______.

Answer: gravity

Also called the centre of mass in a uniform field.

Fill in the blank

39.An object that returns to its original position after being slightly displaced is in ______ equilibrium.

Answer: stable

Its centre of gravity rises when tilted.

Fill in the blank

40.An object that stays in its new position after being displaced is in ______ equilibrium.

Answer: neutral

Like a ball on a level surface.

Back to top ↑

Unit 4: Newton's Laws of Motion

Multiple choice

1.Newton's first law states that an object stays at rest or moves with constant velocity unless:

  • AIt is made of metal
  • BIt is very heavy
  • CIt is in space
  • DA resultant (unbalanced) force acts on it

Answer: D

This is the law of inertia.

Multiple choice

2.Inertia is the tendency of an object to:

  • AChange its motion easily
  • BResist changes to its state of rest or motion
  • CFloat in water
  • DAttract other objects

Answer: B

More mass means more inertia.

Multiple choice

3.Which has the greatest inertia?

  • AA pencil
  • BA loaded lorry
  • CA football
  • DA bicycle

Answer: B

Inertia depends on mass; the loaded lorry has the most mass.

Multiple choice

4.Passengers in a bus jerk forward when the bus stops suddenly because of:

  • AFriction
  • BGravity
  • CInertia
  • DAir resistance

Answer: C

Their bodies tend to keep moving forward.

Multiple choice

5.Seat belts protect passengers mainly because of Newton's:

  • AThird law only
  • BLaw of gravitation only
  • CLaw of cooling
  • DFirst law (inertia)

Answer: D

Without a belt, a passenger keeps moving when the car stops.

Multiple choice

6.Newton's second law states that the acceleration of an object is:

  • AIndependent of mass
  • BAlways zero
  • CInversely proportional to the force
  • DDirectly proportional to the resultant force and inversely proportional to its mass

Answer: D

F = ma.

Multiple choice

7.The equation for Newton's second law is:

  • AF = m/a
  • BF = m + a
  • CF = ma
  • DF = a/m

Answer: C

Force = mass × acceleration.

Multiple choice

8.A resultant force of 20 N acts on a 4 kg trolley. What is its acceleration?

  • A0.2 m/s²
  • B5 m/s²
  • C24 m/s²
  • D80 m/s²

Answer: B

a = F/m = 20 ÷ 4 = 5 m/s².

Multiple choice

9.What force is needed to give a 1000 kg car an acceleration of 2 m/s²?

  • A2000 N
  • B500 N
  • C1002 N
  • D200 N

Answer: A

F = ma = 1000 × 2 = 2000 N.

Multiple choice

10.A force of 30 N gives a box an acceleration of 3 m/s². What is the box's mass?

  • A10 kg
  • B33 kg
  • C0.1 kg
  • D90 kg

Answer: A

m = F/a = 30 ÷ 3 = 10 kg.

Multiple choice

11.If the same force acts on a bigger mass, the acceleration will be:

  • ASmaller
  • BLarger
  • CZero
  • DThe same

Answer: A

a = F/m; a larger mass gives a smaller acceleration.

Multiple choice

12.1 newton is the force that gives a mass of 1 kg an acceleration of:

  • A0.1 m/s²
  • B1 m/s²
  • C10 m/s²
  • D9.8 m/s²

Answer: B

1 N = 1 kg × 1 m/s².

Multiple choice

13.Newton's third law states that:

  • AEvery action has an equal and opposite reaction
  • BForce equals mass times speed
  • CHeavy objects fall faster
  • DObjects at rest stay at rest

Answer: A

Forces always come in equal and opposite pairs acting on different bodies.

Multiple choice

14.When you push against a wall, the wall:

  • ADoes nothing
  • BPulls you towards it
  • CPushes back with a bigger force
  • DPushes back on you with an equal and opposite force

Answer: D

This is Newton's third law.

Multiple choice

15.A rocket moves upwards because:

  • AHot gases are pushed out downwards, and the gases push the rocket upwards
  • BIt pushes on the air below
  • CGravity pushes it up
  • DIt is lighter than air

Answer: A

Action–reaction: the exhaust gases and rocket push on each other.

Multiple choice

16.When a gun is fired, it recoils (moves backwards). This is explained by Newton's:

  • AFirst law
  • BThird law
  • CSecond law only
  • DLaw of gravitation

Answer: B

The gun pushes the bullet forward; the bullet pushes the gun back.

Multiple choice

17.When you swim, you push water backwards. The water pushes you:

  • ABackwards
  • BNowhere
  • CForwards
  • DDownwards

Answer: C

The reaction from the water drives you forward.

Multiple choice

18.Action and reaction forces:

  • AAct on different bodies, so they do not cancel
  • BAct in the same direction
  • CAct on the same body and cancel
  • DAre unequal

Answer: A

They act on two different objects.

Multiple choice

19.A car moving at constant velocity on a straight road has:

  • AZero resultant force
  • BNo forces acting on it
  • CA resultant force backward
  • DA large resultant force forward

Answer: A

By the first law, constant velocity means balanced forces.

Multiple choice

20.The driving force on a 1200 kg car is 3000 N and the friction is 600 N. What is its acceleration?

  • A3 m/s²
  • B2 m/s²
  • C0.5 m/s²
  • D2.5 m/s²

Answer: B

Resultant = 3000 − 600 = 2400 N; a = 2400 ÷ 1200 = 2 m/s².

Multiple choice

21.A tablecloth can be pulled quickly from under dishes without moving them much because of:

  • ANewton's third law
  • BThe dishes' inertia
  • CFriction increasing
  • DGravity increasing

Answer: B

The dishes resist the sudden change in motion.

Multiple choice

22.Shaking a wet umbrella removes water because:

  • AFriction pushes the water
  • BWater is attracted to the ground
  • CThe water drops continue moving when the umbrella stops (inertia)
  • DThe umbrella becomes dry by heat

Answer: C

The drops keep moving and leave the umbrella.

Multiple choice

23.A horse pulls a cart forward. According to the third law, the cart:

  • APulls the horse with a smaller force
  • BPushes the horse forward
  • CDoes nothing
  • DPulls the horse backward with an equal force

Answer: D

The pair of forces is equal and opposite.

Multiple choice

24.In space, a spacecraft with its engines switched off and no forces acting will:

  • AKeep moving at constant velocity
  • BFall to Earth
  • CStop immediately
  • DSpeed up

Answer: A

By the first law, with no resultant force its velocity does not change.

Multiple choice

25.A 50 kg girl on roller skates pushes a wall with 100 N. Her acceleration away from the wall is:

  • A0.5 m/s²
  • B5000 m/s²
  • C2 m/s²
  • D150 m/s²

Answer: C

The wall pushes her with 100 N: a = 100 ÷ 50 = 2 m/s².

Multiple choice

26.A lorry and a car have the same engine force. The car accelerates more because it has:

  • AMore inertia
  • BMore mass
  • CBigger wheels
  • DLess mass

Answer: D

a = F/m: less mass, more acceleration.

Multiple choice

27.Which law explains why it is harder to push a full wheelbarrow than an empty one to the same acceleration?

  • AHooke's law
  • BNewton's third law
  • CNewton's second law (F = ma)
  • DNewton's first law only

Answer: C

A bigger mass needs a bigger force for the same acceleration.

Multiple choice

28.A ball is thrown in a straight line in space far from any planet. Its path will be:

  • AA curve downwards
  • BA circle
  • CIt stops after a while
  • DA straight line at constant speed

Answer: D

With no forces, it moves in a straight line at constant speed.

Multiple choice

29.An astronaut of mass 70 kg goes to the Moon, where g is about 1.6 N/kg. His mass on the Moon is:

  • A11.2 kg
  • B0 kg
  • C70 kg
  • D112 kg

Answer: C

Mass does not change from place to place.

Multiple choice

30.The astronaut above (70 kg) has a weight on the Moon (g = 1.6 N/kg) of:

  • A70 N
  • B112 N
  • C43.75 N
  • D700 N

Answer: B

W = mg = 70 × 1.6 = 112 N.

True or false

31.Newton's first law is also called the law of inertia.

Answer: True

It describes how objects resist changes in motion.

True or false

32.A heavier object has less inertia than a lighter one.

Answer: False

More mass means more inertia.

True or false

33.Action and reaction forces act on the same object.

Answer: False

They act on two different objects.

True or false

34.F = ma means a bigger force on the same mass gives a bigger acceleration.

Answer: True

Acceleration is proportional to force.

True or false

35.An object moving at constant velocity has no resultant force on it.

Answer: True

Balanced forces give constant velocity.

Fill in the blank

36.The tendency of an object to resist a change in its motion is called ______.

Answer: inertia

It depends on mass.

Fill in the blank

37.Newton's second law can be written as F = ______.

Answer: ma

Force = mass × acceleration.

Fill in the blank

38.For every action there is an equal and opposite ______.

Answer: reaction

This is Newton's third law.

Fill in the blank

39.The force of gravity acting on an object is its ______.

Answer: weight

W = mg.

Fill in the blank

40.The weight of a 1 kg mass on Earth is about 10 ______.

Answer: N (newtons)

W = mg = 1 × 10 = 10 N.

Back to top ↑

Unit 5: Work, Power and Energy

Multiple choice

1.Work is done when a force:

  • AMoves an object through a distance in its direction
  • BIs very large
  • CActs on a stationary object
  • DIs applied to a wall that does not move

Answer: A

W = F × d.

Multiple choice

2.The unit of work and energy is the:

  • AWatt
  • BJoule
  • CNewton
  • DMetre

Answer: B

1 J = 1 N × 1 m.

Multiple choice

3.A boy pushes a box with a force of 20 N for 3 m. How much work does he do?

  • A23 J
  • B6.7 J
  • C17 J
  • D60 J

Answer: D

W = F × d = 20 × 3 = 60 J.

Multiple choice

4.How much work is done lifting a 10 kg bag up 1.5 m? (g = 10 N/kg)

  • A11.5 J
  • B1500 J
  • C150 J
  • D15 J

Answer: C

W = mgh = 10 × 10 × 1.5 = 150 J.

Multiple choice

5.Energy is:

  • AThe speed of an object
  • BThe ability to do work
  • CA type of force
  • DMass per unit volume

Answer: B

Energy is measured in joules.

Multiple choice

6.The energy of a moving object is called:

  • ANuclear energy
  • BChemical energy
  • CKinetic energy
  • DPotential energy

Answer: C

KE = ½mv².

Multiple choice

7.A book on a high shelf has energy because of its position. This energy is:

  • ASound energy
  • BKinetic energy
  • CLight energy
  • DGravitational potential energy

Answer: D

PE = mgh.

Multiple choice

8.Energy stored in a battery is:

  • AKinetic energy
  • BHeat energy
  • CChemical energy
  • DLight energy

Answer: C

Chemical reactions release it as electrical energy.

Multiple choice

9.What is the kinetic energy of a 4 kg trolley moving at 2 m/s?

  • A2 J
  • B16 J
  • C8 J
  • D4 J

Answer: C

KE = ½ × 4 × 2² = 8 J.

Multiple choice

10.What is the potential energy of a 2 kg stone 10 m above the ground? (g = 10 N/kg)

  • A20 J
  • B2000 J
  • C12 J
  • D200 J

Answer: D

PE = mgh = 2 × 10 × 10 = 200 J.

Multiple choice

11.In an electric fan, electrical energy is mainly changed into:

  • ALight energy
  • BChemical energy
  • CKinetic energy
  • DNuclear energy

Answer: C

The motor turns the blades.

Multiple choice

12.In a radio, electrical energy is changed into:

  • APotential energy
  • BSound energy
  • CChemical energy
  • DNuclear energy

Answer: B

The loudspeaker produces sound.

Multiple choice

13.When you burn charcoal, chemical energy is changed into:

  • AHeat and light energy
  • BElectrical energy only
  • CKinetic energy only
  • DSound only

Answer: A

Burning releases heat and light.

Multiple choice

14.The law of conservation of energy states that energy:

  • AIs always lost
  • BCannot be created or destroyed, only changed from one form to another
  • CCan be created
  • DIs destroyed by friction

Answer: B

The total amount of energy stays the same.

Multiple choice

15.Power is:

  • AForce × mass
  • BEnergy × distance
  • CWork × time
  • DWork done per unit time

Answer: D

P = W/t.

Multiple choice

16.The unit of power is the:

  • ANewton
  • BSecond
  • CJoule
  • DWatt

Answer: D

1 W = 1 J/s.

Multiple choice

17.A machine does 1200 J of work in 4 s. What is its power?

  • A4800 W
  • B300 W
  • C0.003 W
  • D1204 W

Answer: B

P = 1200 ÷ 4 = 300 W.

Multiple choice

18.A 40 W bulb is switched on for 10 s. How much energy does it use?

  • A50 J
  • B30 J
  • C4 J
  • D400 J

Answer: D

E = Pt = 40 × 10 = 400 J.

Multiple choice

19.Which of these is a renewable energy source?

  • ASolar energy
  • BCoal
  • CPetrol
  • DNatural gas

Answer: A

Sunlight is continually replaced.

Multiple choice

20.Which of these is a non-renewable energy source?

  • ACoal
  • BHydroelectric power
  • CBiogas
  • DWind

Answer: A

Coal took millions of years to form and will run out.

Multiple choice

21.Rwanda produces much of its electricity from:

  • AHydroelectric power and methane gas from Lake Kivu
  • BWind farms only
  • CNuclear power stations
  • DCoal power stations only

Answer: A

Rivers and Lake Kivu methane are important local sources.

Multiple choice

22.Biogas is produced from:

  • ADecaying animal dung and plant waste
  • BSeawater
  • CSand
  • DMetals

Answer: A

Bacteria break down organic waste, producing methane.

Multiple choice

23.A machine that changes kinetic energy into electrical energy is a:

  • AMotor
  • BGenerator (dynamo)
  • CBulb
  • DBattery

Answer: B

A bicycle dynamo is a small generator.

Multiple choice

24.A solar panel changes:

  • ALight energy into electrical energy
  • BChemical energy into light
  • CElectrical energy into light
  • DHeat into sound

Answer: A

Solar cells convert sunlight into electricity.

Multiple choice

25.A girl does 3000 J of work climbing stairs in 10 s. What is her power?

  • A300 W
  • B0.0033 W
  • C30 000 W
  • D3010 W

Answer: A

P = 3000 ÷ 10 = 300 W.

Multiple choice

26.If no work is done on an object, the energy transferred to it is:

  • ALarge
  • BNegative always
  • CZero
  • DInfinite

Answer: C

Work done = energy transferred.

Multiple choice

27.When a ball falls from a height, its:

  • AEnergy is destroyed
  • BPotential energy changes into kinetic energy
  • CKinetic energy changes into potential energy
  • DMass increases

Answer: B

It loses height and gains speed.

Multiple choice

28.Which device changes electrical energy into heat energy?

  • AMicrophone
  • BElectric cooker
  • CDynamo
  • DSolar cell

Answer: B

Cookers, kettles and irons produce heat.

Multiple choice

29.Energy wasted in machines is mostly in the form of:

  • ALight
  • BNuclear energy
  • CHeat (due to friction)
  • DChemical energy

Answer: C

Friction converts useful energy into heat.

Multiple choice

30.A man pushes a car with 400 N but the car does not move. The work he does on the car is:

  • A400 J
  • B40 J
  • C4000 J
  • DZero

Answer: D

There is no movement, so no work is done on the car.

True or false

31.Work is done only when a force moves an object.

Answer: True

W = F × d; no distance, no work.

True or false

32.Power is measured in joules.

Answer: False

Power is measured in watts.

True or false

33.Energy can change from one form to another.

Answer: True

For example, chemical to electrical in a battery.

True or false

34.Coal is a renewable source of energy.

Answer: False

Coal is non-renewable.

True or false

35.A moving car has kinetic energy.

Answer: True

All moving objects have kinetic energy.

Fill in the blank

36.The ability to do work is called ______.

Answer: energy

Measured in joules.

Fill in the blank

37.Work done per second is called ______.

Answer: power

Measured in watts.

Fill in the blank

38.Energy due to height above the ground is called gravitational ______ energy.

Answer: potential

PE = mgh.

Fill in the blank

39.Energy sources that are naturally replaced, such as wind and sunlight, are called ______ sources.

Answer: renewable

They will not run out.

Fill in the blank

40.Work = force × ______.

Answer: distance (moved in the direction of the force)

W = F × d.

Back to top ↑

Unit 6: Temperature Measurement and Physical Properties of Matter

Multiple choice

1.Temperature is a measure of:

  • AThe size of a body
  • BThe mass of a body
  • CHow hot or cold a body is
  • DThe total heat in a body

Answer: C

Temperature shows the degree of hotness.

Multiple choice

2.Heat is:

  • AMeasured in degrees
  • BEnergy that flows from a hotter body to a colder one
  • CA type of matter
  • DThe same as temperature

Answer: B

Heat is energy in transit, measured in joules.

Multiple choice

3.The SI unit of heat is the:

  • AKelvin
  • BDegree Celsius
  • CWatt
  • DJoule

Answer: D

Heat is energy, so it is measured in joules.

Multiple choice

4.Temperature is measured with a:

  • AHydrometer
  • BBarometer
  • CThermometer
  • DAmmeter

Answer: C

Common thermometers use mercury or alcohol.

Multiple choice

5.The lower fixed point on the Celsius scale is the:

  • AMelting point of pure ice (0 °C)
  • BBoiling point of water
  • CAbsolute zero
  • DHuman body temperature

Answer: A

Pure melting ice is 0 °C.

Multiple choice

6.The upper fixed point on the Celsius scale is the:

  • A37 °C
  • BRoom temperature
  • CMelting point of ice
  • DTemperature of steam above boiling pure water at standard pressure (100 °C)

Answer: D

Steam from boiling water at standard pressure is 100 °C.

Multiple choice

7.Normal human body temperature is about:

  • A0 °C
  • B100 °C
  • C25 °C
  • D37 °C

Answer: D

A clinical thermometer is centred on about 37 °C.

Multiple choice

8.A clinical thermometer has a narrow constriction (kink) in its tube so that:

  • AThe mercury does not fall back before the reading is taken
  • BIt measures quickly
  • CIt can measure 0 °C
  • DIt holds more mercury

Answer: A

The thread stays at the highest reading until shaken down.

Multiple choice

9.Alcohol is used in thermometers for very cold places because alcohol:

  • ABoils at 100 °C
  • BHas a very low freezing point (about −115 °C)
  • CIs silver coloured
  • DDoes not expand

Answer: B

Mercury freezes at about −39 °C.

Multiple choice

10.Mercury is used in thermometers because it:

  • AIs transparent
  • BExpands evenly, is easy to see and does not wet the glass
  • CIs a poor conductor of heat
  • DFreezes at 0 °C

Answer: B

These properties give accurate readings.

Multiple choice

11.Convert 25 °C to kelvin.

  • A25 K
  • B248 K
  • C298 K
  • D273 K

Answer: C

T = 25 + 273 = 298 K.

Multiple choice

12.Most substances, when heated:

  • AContract
  • BLose mass
  • CStay the same size
  • DExpand

Answer: D

Particles move more and take up more space.

Multiple choice

13.Gaps are left between sections of railway lines to:

  • AAllow the rails to expand in hot weather
  • BSave metal
  • CDrain water
  • DMake noise

Answer: A

Without gaps the rails would buckle.

Multiple choice

14.Water is unusual because between 0 °C and 4 °C it:

  • AContracts when heated
  • BExpands when heated
  • CBecomes a gas
  • DDoes not change

Answer: A

This anomalous expansion means water is densest at 4 °C.

Multiple choice

15.The kinetic theory of matter states that matter is made of tiny particles that are:

  • AAt rest
  • BVery large
  • CAlways moving
  • DVisible to the naked eye

Answer: C

Particles are in constant motion.

Multiple choice

16.The three common states of matter are:

  • ASolid, liquid and gas
  • BHot, warm and cold
  • CHeavy, light and medium
  • DMetal, wood and plastic

Answer: A

Matter exists mainly as solid, liquid or gas.

Multiple choice

17.In a solid, the particles:

  • AMove freely and fast
  • BAre far apart
  • CVibrate about fixed positions and are closely packed
  • DDo not exist

Answer: C

Strong forces hold them in a fixed arrangement.

Multiple choice

18.In a liquid, the particles:

  • AAre close together but can slide past each other
  • BDo not move
  • CAre very far apart
  • DAre fixed in position

Answer: A

This is why liquids flow and take the shape of their container.

Multiple choice

19.In a gas, the particles:

  • AAre tightly packed
  • BAre far apart and move rapidly in all directions
  • CDo not move
  • DVibrate in fixed positions

Answer: B

Gases fill any container they are put in.

Multiple choice

20.Which state of matter has a fixed shape and a fixed volume?

  • ASolid
  • BLiquid
  • CGas
  • DAll of the above

Answer: A

Solids keep both shape and volume.

Multiple choice

21.Which state has a fixed volume but no fixed shape?

  • AGas
  • BLiquid
  • CNone
  • DSolid

Answer: B

Liquids take the shape of their container.

Multiple choice

22.Which state has neither a fixed shape nor a fixed volume?

  • ALiquid
  • BSolid
  • CIce
  • DGas

Answer: D

Gases spread out to fill the container.

Multiple choice

23.Gases can be compressed easily because:

  • ATheir particles do not move
  • BTheir particles are large
  • CThey are heavy
  • DThere are large spaces between their particles

Answer: D

Particles can be pushed closer together.

Multiple choice

24.Brownian motion is the random movement of tiny particles such as smoke or pollen grains, caused by:

  • AMagnetism
  • BCollisions with fast-moving, invisible air or water molecules
  • CWind
  • DGravity

Answer: B

It is evidence that molecules are moving.

Multiple choice

25.Diffusion is:

  • AThe spreading of particles from a region of high concentration to low concentration
  • BThe melting of solids
  • CThe cooling of liquids
  • DThe freezing of gases

Answer: A

For example, a smell spreading through a room.

Multiple choice

26.On the Fahrenheit scale, pure water boils at:

  • A32 °F
  • B180 °F
  • C212 °F
  • D100 °F

Answer: C

Water freezes at 32 °F and boils at 212 °F.

Multiple choice

27.Convert 20 °C to degrees Fahrenheit. (°F = 9/5 × °C + 32)

  • A36 °F
  • B68 °F
  • C93.6 °F
  • D52 °F

Answer: B

°F = 9/5 × 20 + 32 = 36 + 32 = 68 °F.

Multiple choice

28.On the Réaumur scale, the boiling point of pure water is:

  • A80 °Re
  • B212 °Re
  • C100 °Re
  • D273 °Re

Answer: A

Water freezes at 0 °Re and boils at 80 °Re.

Multiple choice

29.A thermometric property is a physical property that:

  • ANever changes
  • BDepends only on mass
  • CChanges steadily with temperature, so it can be used to measure temperature
  • DDepends on colour

Answer: C

Examples: expansion of a liquid, resistance of a wire.

Multiple choice

30.Matter is anything that:

  • AHas colour
  • BHas mass and occupies space
  • CIs alive
  • DCan be seen only

Answer: B

Solids, liquids and gases are all matter.

True or false

31.Heat and temperature are the same thing.

Answer: False

Heat is energy; temperature measures how hot something is.

True or false

32.Water is densest at 4 °C.

Answer: True

This is due to the anomalous expansion of water.

True or false

33.Particles in a gas are closer together than particles in a solid.

Answer: False

Gas particles are far apart; solid particles are closely packed.

True or false

34.Brownian motion is evidence that particles of matter are moving.

Answer: True

Visible particles are pushed by invisible moving molecules.

True or false

35.Liquids have a fixed shape.

Answer: False

Liquids take the shape of their container.

Fill in the blank

36.The instrument used to measure temperature is called a ______.

Answer: thermometer

Mercury and alcohol are common liquids used.

Fill in the blank

37.A strip made of two different metals that bends when heated is called a ______ strip.

Answer: bimetallic

Used in thermostats.

Fill in the blank

38.The random movement of small particles caused by collisions with molecules is called ______ motion.

Answer: Brownian

Named after Robert Brown.

Fill in the blank

39.The theory that matter is made of moving particles is called the ______ theory.

Answer: kinetic (kinetic molecular)

Kinetic means related to motion.

Fill in the blank

40.On the Fahrenheit scale, pure water freezes at ______ °F.

Answer: 32

And boils at 212 °F.

Back to top ↑

Unit 7: Electrostatics

Multiple choice

1.Electrostatics is the study of:

  • AElectric charges at rest
  • BFlowing water
  • CMoving magnets
  • DLight rays

Answer: A

Static means at rest; electrostatics deals with stationary charges.

Multiple choice

2.The two kinds of electric charge are:

  • ABig and small
  • BHot and cold
  • CPositive and negative
  • DNorth and south

Answer: C

Protons are positive and electrons are negative.

Multiple choice

3.The SI unit of electric charge is the:

  • AOhm
  • BVolt
  • CCoulomb
  • DAmpere

Answer: C

Charge is measured in coulombs (C).

Multiple choice

4.The charge on one electron is about:

  • A9 × 10⁹ C
  • B1.6 × 10⁻¹⁹ C (negative)
  • C1.6 × 10¹⁹ C
  • D1 C

Answer: B

e = 1.6 × 10⁻¹⁹ C; the electron's charge is −e.

Multiple choice

5.An atom is electrically neutral because it has:

  • AEqual numbers of protons and electrons
  • BOnly neutrons
  • CNo particles
  • DMore electrons than protons

Answer: A

The positive and negative charges cancel.

Multiple choice

6.When a plastic ruler is rubbed with a dry cloth and becomes negatively charged, it has:

  • ALost electrons
  • BGained protons
  • CLost protons
  • DGained electrons

Answer: D

Only electrons move during charging by friction.

Multiple choice

7.In the example above, the cloth becomes:

  • ANeutral
  • BPositively charged
  • CMagnetic
  • DNegatively charged

Answer: B

The cloth lost electrons to the ruler, so it is positive.

Multiple choice

8.Charging a body by rubbing it with another material is called charging by:

  • AConduction only
  • BFriction (rubbing)
  • CInduction
  • DHeating

Answer: B

Electrons are transferred from one material to the other.

Multiple choice

9.Charging by contact (conduction) happens when:

  • AA body is heated
  • BTwo bodies are kept far apart
  • CA magnet is used
  • DA charged body touches a neutral conductor and shares its charge

Answer: D

Charge flows from the charged body to the neutral one.

Multiple choice

10.Charging by induction means:

  • AHeating a body
  • BRubbing two bodies
  • CCharging a body by bringing a charged object near it, without touching
  • DTouching the body with a charged rod

Answer: C

The nearby charge separates charges in the conductor; earthing then leaves it charged.

Multiple choice

11.In charging by induction, the charge left on the conductor is:

  • AOpposite to the charge on the rod
  • BAlways zero
  • CAlways positive
  • DThe same type as the charged rod

Answer: A

Earthing removes the like charges, leaving opposite charge.

Multiple choice

12.The first law of electrostatics states that:

  • ALike charges repel and unlike charges attract
  • BLike charges attract
  • CAll charges attract
  • DCharges do not interact

Answer: A

Positive repels positive; positive attracts negative.

Multiple choice

13.A positively charged rod is brought near a negatively charged balloon. The balloon will be:

  • ARepelled
  • BAttracted
  • CUnaffected
  • DDestroyed

Answer: B

Unlike charges attract.

Multiple choice

14.Coulomb's law states that the force between two point charges is:

  • AProportional to the sum of the charges
  • BProportional to the distance between them
  • CProportional to the product of the charges and inversely proportional to the square of the distance
  • DIndependent of distance

Answer: C

F = kq₁q₂/r².

Multiple choice

15.In Coulomb's law F = kq₁q₂/r², the constant k is about:

  • A10 N m²/C²
  • B6.67 × 10⁻¹¹ N m²/C²
  • C1.6 × 10⁻¹⁹ N m²/C²
  • D9 × 10⁹ N m²/C²

Answer: D

k = 1/(4πε₀) ≈ 9 × 10⁹ N m²/C².

Multiple choice

16.If the distance between two charges is doubled, the force between them becomes:

  • AHalf as large
  • BFour times as large
  • CTwice as large
  • DOne quarter as large

Answer: D

F ∝ 1/r², so doubling r gives 1/4 of the force.

Multiple choice

17.If one of the two charges is doubled (distance unchanged), the force:

  • AQuadruples
  • BHalves
  • CStays the same
  • DDoubles

Answer: D

F is proportional to the product q₁q₂.

Multiple choice

18.Two charges of 1 × 10⁻⁶ C each are 0.1 m apart. What is the force between them? (k = 9 × 10⁹ N m²/C²)

  • A0.9 N
  • B90 N
  • C9 N
  • D0.09 N

Answer: A

F = 9 × 10⁹ × 10⁻⁶ × 10⁻⁶ ÷ 0.01 = 0.9 N.

Multiple choice

19.Which of these is a good conductor of electricity?

  • ARubber
  • BGlass
  • CCopper
  • DDry wood

Answer: C

Metals have free electrons that move easily.

Multiple choice

20.Which of these is an electrical insulator?

  • APlastic
  • BAluminium
  • CIron
  • DSilver

Answer: A

Insulators have very few free electrons.

Multiple choice

21.Conductors allow charge to flow because they have:

  • AOnly protons
  • BFree (mobile) electrons
  • CNo electrons
  • DNo atoms

Answer: B

Free electrons carry charge through the material.

Multiple choice

22.Electrical wires are covered with plastic because plastic:

  • AConducts electricity well
  • BIs an insulator that protects users from shocks
  • CMakes current flow faster
  • DIs magnetic

Answer: B

The insulation prevents contact with the live conductor.

Multiple choice

23.A charged comb picks up small pieces of paper because:

  • APaper is heavier than the comb
  • BGravity increases
  • CThe paper is magnetic
  • DThe comb induces opposite charges on the near side of the paper, causing attraction

Answer: D

Induced charges attract the paper to the comb.

Multiple choice

24.A gold-leaf electroscope is used to:

  • AMeasure temperature
  • BProduce light
  • CDetect electric charge
  • DMeasure mass

Answer: C

Its leaf rises when the instrument is charged.

Multiple choice

25.When a charged rod touches the cap of a neutral gold-leaf electroscope, the leaf rises because:

  • AAir pushes the leaf
  • BThe leaf and the stem receive the same type of charge and repel
  • CThe leaf becomes heavier
  • DThe leaf becomes magnetic

Answer: B

Like charges on the leaf and stem repel each other.

Multiple choice

26.Earthing a charged conductor means:

  • ACovering it with soil
  • BHeating it
  • CConnecting it to the ground so that its charge flows away
  • DPainting it

Answer: C

The Earth can accept or supply electrons, neutralising the conductor.

Multiple choice

27.You may feel a small shock after walking on a nylon carpet and touching a metal door handle because:

  • ACharge built up on your body by friction suddenly flows to the handle
  • BThe carpet is wet
  • CThe handle is magnetic
  • DThe handle is hot

Answer: A

This is a discharge of static electricity.

Multiple choice

28.Lightning is a large discharge of:

  • ASound energy only
  • BStatic electricity between clouds or between a cloud and the ground
  • CChemical energy
  • DMagnetic energy

Answer: B

Charge separation in clouds builds up very high voltages.

Multiple choice

29.A body that has more electrons than protons is:

  • ANegatively charged
  • BMagnetised
  • CPositively charged
  • DNeutral

Answer: A

Extra electrons give a negative charge.

Multiple choice

30.Charge is neither created nor destroyed during charging. Rubbing only:

  • ADestroys protons
  • BCreates protons
  • CCreates new electrons
  • DTransfers electrons from one body to another

Answer: D

This is the conservation of charge.

True or false

31.Like charges attract each other.

Answer: False

Like charges repel; unlike charges attract.

True or false

32.During charging by friction, it is electrons that move from one body to another.

Answer: True

Protons stay fixed in the nuclei.

True or false

33.Copper is a good insulator.

Answer: False

Copper is a good conductor.

True or false

34.The force between two charges decreases as the distance between them increases.

Answer: True

F ∝ 1/r².

True or false

35.A neutral atom has equal numbers of protons and electrons.

Answer: True

The charges balance.

Fill in the blank

36.The SI unit of electric charge is the ______.

Answer: coulomb (C)

Named after Charles-Augustin de Coulomb.

Fill in the blank

37.Charging a body by bringing a charged object near it without touching is called charging by ______.

Answer: induction

Earthing then leaves an opposite charge.

Fill in the blank

38.Materials that allow electric charge to flow easily are called ______.

Answer: conductors

Metals are good conductors.

Fill in the blank

39.An instrument used to detect electric charge using a thin metal leaf is a gold-leaf ______.

Answer: electroscope

The leaf rises when charged.

Fill in the blank

40.Coulomb's law: F = kq₁q₂ ÷ ______.

Answer: r2 (r², distance squared)

The force is inversely proportional to the square of the distance.

Back to top ↑

Unit 8: Electric Current and Ohm's Law

Multiple choice

1.Electric current is the rate of flow of:

  • AVoltage
  • BResistance
  • CHeat
  • DElectric charge

Answer: D

I = Q/t.

Multiple choice

2.The SI unit of electric current is the:

  • AAmpere
  • BVolt
  • CCoulomb
  • DOhm

Answer: A

1 A = 1 C/s.

Multiple choice

3.A charge of 60 C flows through a lamp in 20 s. What is the current?

  • A3 A
  • B1200 A
  • C0.33 A
  • D40 A

Answer: A

I = Q/t = 60 ÷ 20 = 3 A.

Multiple choice

4.Potential difference (voltage) between two points is the:

  • ACharge flowing per second
  • BWork done (energy transferred) per unit charge moving between the points
  • CCurrent × time
  • DResistance per metre

Answer: B

V = W/Q, measured in volts.

Multiple choice

5.The SI unit of potential difference is the:

  • AJoule
  • BWatt
  • CAmpere
  • DVolt

Answer: D

1 V = 1 J/C.

Multiple choice

6.In a simple electric circuit, the cell (battery) provides:

  • AThe energy that pushes charge around the circuit
  • BResistance
  • CInsulation
  • DLight

Answer: A

The cell is the source of electrical energy.

Multiple choice

7.A switch in a circuit is used to:

  • AMeasure current
  • BIncrease voltage
  • COpen or close the circuit
  • DStore charge

Answer: C

When the switch is open, no current flows.

Multiple choice

8.Current can flow in a circuit only when the circuit is:

  • AClosed (complete)
  • BBroken
  • COpen
  • DMade of plastic

Answer: A

A complete path is needed.

Multiple choice

9.In a circuit diagram, a long thin line next to a short thick line represents a:

  • AResistor
  • BSwitch
  • CCell
  • DLamp

Answer: C

The long line is the positive terminal.

Multiple choice

10.Conventional current flows from:

  • AThe negative terminal to the positive terminal
  • BEarth to the cell
  • CThe positive terminal to the negative terminal outside the cell
  • DNowhere

Answer: C

Electrons actually flow the opposite way, from negative to positive.

Multiple choice

11.Current is measured with an:

  • AVoltmeter in series
  • BAmmeter connected in parallel
  • COhmmeter in parallel
  • DAmmeter connected in series

Answer: D

The ammeter must carry the same current as the component.

Multiple choice

12.Potential difference is measured with a:

  • AThermometer
  • BVoltmeter connected in parallel
  • CAmmeter in parallel
  • DVoltmeter connected in series

Answer: B

The voltmeter is connected across the component.

Multiple choice

13.Which is a safety precaution when handling electrical appliances?

  • ATouch switches with wet hands
  • BNever overload sockets with many plugs
  • CPush metal objects into sockets
  • DUse wires with damaged insulation

Answer: B

Overloading can overheat wires and cause fires.

Multiple choice

14.Why should you never touch electrical switches with wet hands?

  • AThe switch will rust immediately
  • BIt makes the light dim
  • CWater is an insulator
  • DWater conducts electricity and you could get an electric shock

Answer: D

Wet skin lets current pass more easily through the body.

Multiple choice

15.A fuse in a plug protects the circuit by:

  • AMelting and breaking the circuit if the current becomes too large
  • BIncreasing the current
  • CStoring charge
  • DMeasuring voltage

Answer: A

It uses the heating effect of current.

Multiple choice

16.Electrical resistance is:

  • AThe energy of a cell
  • BThe speed of electrons
  • CThe opposition a material offers to the flow of electric current
  • DThe flow of charge

Answer: C

R = V/I, measured in ohms.

Multiple choice

17.The SI unit of resistance is the:

  • AVolt
  • BAmpere
  • CWatt
  • DOhm (Ω)

Answer: D

1 Ω = 1 V/A.

Multiple choice

18.The resistance of a wire increases when the wire is:

  • AColder
  • BLonger or thinner
  • CThicker
  • DShorter

Answer: B

R = ρL/A: longer wires and smaller cross-sections give more resistance.

Multiple choice

19.Resistivity of a material:

  • ADepends on the length of the wire
  • BDepends only on the type of material (at a given temperature)
  • CIs the same for all materials
  • DIs measured in amperes

Answer: B

Resistivity ρ is measured in ohm-metres (Ω m).

Multiple choice

20.The resistance R of a wire of length L, cross-sectional area A and resistivity ρ is:

  • AR = ρLA
  • BR = ρA/L
  • CR = LA/ρ
  • DR = ρL/A

Answer: D

R = ρL/A.

Multiple choice

21.A copper wire 2 m long has a cross-sectional area of 1.0 × 10⁻⁶ m². The resistivity of copper is 1.7 × 10⁻⁸ Ω m. What is its resistance?

  • A0.034 Ω
  • B3.4 Ω
  • C0.0085 Ω
  • D34 Ω

Answer: A

R = ρL/A = 1.7 × 10⁻⁸ × 2 ÷ 1.0 × 10⁻⁶ = 0.034 Ω.

Multiple choice

22.Ohm's law states that, at constant temperature:

  • AResistance equals current × voltage
  • BCurrent is inversely proportional to voltage
  • CThe current through a conductor is directly proportional to the potential difference across it
  • DVoltage is zero

Answer: C

V = IR.

Multiple choice

23.A 12 V battery drives a current of 3 A through a resistor. What is its resistance?

  • A4 Ω
  • B0.25 Ω
  • C15 Ω
  • D36 Ω

Answer: A

R = V/I = 12 ÷ 3 = 4 Ω.

Multiple choice

24.A current of 2 A flows through a 6 Ω resistor. What is the voltage across it?

  • A0.33 V
  • B12 V
  • C8 V
  • D3 V

Answer: B

V = IR = 2 × 6 = 12 V.

Multiple choice

25.A 9 V supply is connected across an 18 Ω resistor. What current flows?

  • A0.5 A
  • B27 A
  • C2 A
  • D162 A

Answer: A

I = V/R = 9 ÷ 18 = 0.5 A.

Multiple choice

26.The graph of current against voltage for a resistor that obeys Ohm's law is:

  • AA horizontal line
  • BA straight line through the origin
  • CA circle
  • DA curve

Answer: B

Current is proportional to voltage.

Multiple choice

27.An electric iron and a kettle use the:

  • AChemical effect of current
  • BHeating effect of current
  • CLight effect only
  • DMagnetic effect of current

Answer: B

The current heats the element.

Multiple choice

28.An electric bell works because of the:

  • AChemical effect of current
  • BSound effect of current
  • CMagnetic effect of current
  • DHeating effect of current

Answer: C

An electromagnet pulls the hammer onto the gong.

Multiple choice

29.Electroplating a spoon with silver uses the:

  • ALight effect of current
  • BMagnetic effect of current
  • CHeating effect of current
  • DChemical effect of current

Answer: D

Current through an electrolyte deposits metal.

Multiple choice

30.A filament lamp gives light because the current:

  • ACharges the glass
  • BCools the filament
  • CMakes the filament very hot (heating effect)
  • DMagnetises the filament

Answer: C

The white-hot filament glows.

True or false

31.An ammeter is connected in parallel with a component.

Answer: False

An ammeter is connected in series.

True or false

32.Ohm's law can be written as V = IR.

Answer: True

Voltage = current × resistance.

True or false

33.A longer wire of the same material and thickness has a greater resistance.

Answer: True

Resistance is proportional to length.

True or false

34.It is safe to repair electrical appliances while they are plugged in.

Answer: False

Always switch off and unplug first.

True or false

35.Resistivity depends on the length of the wire.

Answer: False

Resistivity depends only on the material; resistance depends on length.

Fill in the blank

36.The rate of flow of electric charge is called electric ______.

Answer: current

I = Q/t.

Fill in the blank

37.The SI unit of potential difference is the ______.

Answer: volt (V)

1 V = 1 J/C.

Fill in the blank

38.An instrument used to measure potential difference is a ______.

Answer: voltmeter

Connected in parallel.

Fill in the blank

39.The opposition to the flow of current is called ______.

Answer: resistance

Measured in ohms.

Fill in the blank

40.A safety device that melts when the current is too large is a ______.

Answer: fuse

It breaks the circuit.

Back to top ↑

Unit 9: Rectilinear Propagation of Light

Multiple choice

1.A luminous object is one that:

  • AAbsorbs all light
  • BCannot be seen
  • CProduces its own light
  • DReflects light only

Answer: C

The Sun, a candle flame and a lit bulb are luminous.

Multiple choice

2.Which of these is a natural source of light?

  • AElectric bulb
  • BTorch
  • CThe Sun
  • DCandle

Answer: C

The Sun is a natural source; the others are artificial.

Multiple choice

3.The Moon is a non-luminous object. We see it because it:

  • AIs very hot
  • BProduces its own light
  • CReflects light from the Sun
  • DIs made of glass

Answer: C

Non-luminous objects are seen by reflected light.

Multiple choice

4.A ray of light is:

  • AA shadow
  • BA group of many beams
  • CThe path along which light travels, drawn as a line with an arrow
  • DA type of mirror

Answer: C

A ray shows the direction of travel of light.

Multiple choice

5.A collection of light rays is called a:

  • AShadow
  • BMirror
  • CLens
  • DBeam

Answer: D

Beams can be parallel, converging or diverging.

Multiple choice

6.The beam of light from a car headlamp is mostly:

  • AParallel
  • BConverging
  • CAbsent
  • DDiverging from one point

Answer: A

Headlamps use curved mirrors to produce a nearly parallel beam.

Multiple choice

7.Light from a candle flame spreads out in all directions. Its rays are:

  • AConverging
  • BDiverging
  • CParallel
  • DCurved

Answer: B

Rays spread out from a point source.

Multiple choice

8.A transparent material is one that:

  • AReflects all light
  • BAllows light to pass through clearly so objects can be seen through it
  • CAllows some light through but objects look blurred
  • DAllows no light through

Answer: B

Clear glass and water are transparent.

Multiple choice

9.Frosted glass and greaseproof paper are:

  • ATranslucent
  • BLuminous
  • CTransparent
  • DOpaque

Answer: A

They let some light through but scatter it, so images are blurred.

Multiple choice

10.Wood, metal and brick are:

  • ALuminous
  • BOpaque
  • CTranslucent
  • DTransparent

Answer: B

Opaque materials do not let light through.

Multiple choice

11.Rectilinear propagation of light means that light:

  • ATravels in straight lines
  • BTravels only in water
  • CTravels in curves
  • DBends around corners

Answer: A

This explains shadows and the pinhole camera.

Multiple choice

12.Shadows are formed because:

  • ALight is a liquid
  • BLight bends around objects
  • CObjects produce darkness
  • DLight travels in straight lines and is blocked by opaque objects

Answer: D

Light cannot reach the region behind the opaque object.

Multiple choice

13.A shadow formed by a small (point) source of light is:

  • AInvisible
  • BMade of an umbra and penumbra
  • CColoured
  • DOnly a sharp umbra (total shadow)

Answer: D

A point source gives a sharp shadow with no penumbra.

Multiple choice

14.With an extended (large) light source, the shadow has a dark centre called the umbra and a partly lit edge called the:

  • APenumbra
  • BRay
  • CFocus
  • DImage

Answer: A

The penumbra receives light from part of the source.

Multiple choice

15.A solar eclipse occurs when:

  • AThe Moon comes between the Sun and the Earth
  • BThe Earth comes between the Sun and the Moon
  • CThe Sun comes between the Earth and the Moon
  • DThe Moon reflects sunlight

Answer: A

The Moon's shadow falls on the Earth.

Multiple choice

16.A lunar eclipse occurs when:

  • AThe Earth is between the Sun and the Moon
  • BThe Moon is between the Sun and the Earth
  • CThere is no Sun
  • DThe Sun is behind the Moon

Answer: A

The Earth's shadow falls on the Moon.

Multiple choice

17.The image formed by a pinhole camera is:

  • AReal and inverted (upside down)
  • BColoured differently
  • CUpright and virtual
  • DAlways magnified

Answer: A

Rays cross at the pinhole, so the image is inverted.

Multiple choice

18.The magnification of a pinhole camera is given by:

  • AObject distance × image distance
  • BImage height ÷ object height (= image distance ÷ object distance)
  • CObject height ÷ image height
  • DImage height × object height

Answer: B

m = h_i/h_o = v/u.

Multiple choice

19.A tree 10 m tall is 20 m from a pinhole camera. The screen is 10 cm (0.1 m) behind the pinhole. How tall is the image?

  • A2 cm
  • B5 cm
  • C0.5 cm
  • D50 cm

Answer: B

h_i = h_o × v/u = 10 × 0.1 ÷ 20 = 0.05 m = 5 cm.

Multiple choice

20.If the pinhole of a pinhole camera is made larger, the image becomes:

  • ABrighter but more blurred
  • BUpright
  • CSmaller
  • DSharper and dimmer

Answer: A

More light enters, but the larger hole lets many overlapping images form.

Multiple choice

21.Moving the screen of a pinhole camera further from the pinhole makes the image:

  • ADisappear
  • BSmaller
  • CUpright
  • DLarger

Answer: D

Image size is proportional to the image distance v.

Multiple choice

22.The first law of reflection states that the incident ray, the reflected ray and the normal:

  • AAre perpendicular to each other
  • BAre all parallel
  • CNever meet
  • DAll lie in the same plane

Answer: D

They lie in one plane at the point of incidence.

Multiple choice

23.The second law of reflection states that:

  • AReflected light is always brighter
  • BThe angle of incidence equals the angle of reflection
  • CLight bends towards the normal
  • DThe angle of reflection is always 90°

Answer: B

Both angles are measured from the normal.

Multiple choice

24.A ray strikes a plane mirror at 35° to the normal. What is the angle of reflection?

  • A70°
  • B90°
  • C35°
  • D55°

Answer: C

Angle of reflection = angle of incidence = 35°.

Multiple choice

25.A ray makes an angle of 30° with the surface of a plane mirror. What is the angle of incidence?

  • A90°
  • B120°
  • C60°
  • D30°

Answer: C

Angles are measured from the normal: 90° − 30° = 60°.

Multiple choice

26.Reflection from a smooth, shiny surface such as a mirror, which gives a clear image, is called:

  • ARefraction
  • BDiffuse (irregular) reflection
  • CDispersion
  • DRegular (specular) reflection

Answer: D

Parallel rays stay parallel after reflection.

Multiple choice

27.Reflection from a rough surface such as paper, which scatters light in many directions, is called:

  • ARefraction
  • BDiffuse (irregular) reflection
  • CRegular reflection
  • DTotal internal reflection

Answer: B

This is why we can see a page from any direction.

Multiple choice

28.The image formed by a plane mirror is:

  • AReal, inverted and magnified
  • BReal and diminished
  • CVirtual and inverted
  • DVirtual, upright, the same size and laterally inverted

Answer: D

It appears as far behind the mirror as the object is in front.

Multiple choice

29.A girl stands 2 m in front of a plane mirror. How far is she from her image?

  • A1 m
  • B4 m
  • C2 m
  • D0 m

Answer: B

The image is 2 m behind the mirror, so 2 + 2 = 4 m from her.

Multiple choice

30.Two plane mirrors are inclined at 60° to each other. How many images of an object between them are formed? (n = 360/θ − 1)

  • A6
  • B7
  • C5
  • D3

Answer: C

n = 360 ÷ 60 − 1 = 5.

True or false

31.Light travels in straight lines.

Answer: True

This is rectilinear propagation of light.

True or false

32.Frosted glass is a transparent material.

Answer: False

Frosted glass is translucent.

True or false

33.The image in a pinhole camera is upright.

Answer: False

It is inverted because rays cross at the pinhole.

True or false

34.The image in a plane mirror is laterally inverted.

Answer: True

Left and right appear swapped.

True or false

35.Two parallel plane mirrors facing each other can form a very large (infinite) number of images.

Answer: True

Light is reflected back and forth many times.

Fill in the blank

36.An object that produces its own light is called a ______ object.

Answer: luminous

For example, the Sun.

Fill in the blank

37.Materials that do not allow any light to pass through are called ______.

Answer: opaque

Wood and metal are opaque.

Fill in the blank

38.The region of total shadow is called the ______.

Answer: umbra

No light from the source reaches it.

Fill in the blank

39.The angle of incidence is equal to the angle of ______.

Answer: reflection

Second law of reflection.

Fill in the blank

40.A simple box with a small hole that forms an inverted image on a screen is a ______ camera.

Answer: pinhole

It shows that light travels in straight lines.

Back to top ↑