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Worksheets

M1 Recap

Total questions: 27

Worksheet time: 23mins

Name
Class
Date
1.

Match the following with their SI units

a)

Displacement

1.

Measured in metres

b)

Velocity

2.

Measured in ms1ms^{-1}

c)

Acceleration

3.

Measured in ms2ms^{-2}

d)

Time

4.

Measured in seconds

e)

Mass

5.

Measured in kg

2.

The Velocity-Time graph describes the motion of a chicken. What happens after 30 minutes?

a)

The chicken changes direction

b)

The chicken reaches its maximum speed

c)

The chicken has a displacement of zero

d)

The chicken has a drink of water

3.

When can we use the SUVAT formulae?

a)

When acceleration is constant

b)

All the time

c)

Only on this planet

d)

Only if an object is falling

4.

Match the following

a)

s

1.

ut+12at2ut+\frac{1}{2}at^2

b)

v

2.

u+atu+at

c)

v2v^2

3.

u2+2asu^2+2as

d)

KE

4.

12mv2\frac{1}{2}mv^2

e)

PE

5.

mgh

5.

Match the following

a)

Work Done

1.

FsFs

b)

PE

2.

mghmgh

c)

3.

Average Speed

d)

a

4.

(vu)t\frac{\left(v-u\right)}{t}

e)

s

5.

ut+12at2ut+\frac{1}{2}at^2

6.

What do particles connected by a light inextensible string have in common ?

a)

acceleration

b)

mass

c)

weight

d)

height

7.

What does it mean if a system is released from rest?

a)

v=0 when t=0

b)

v=0 the whole time

c)

v < 0 when t=0

d)

It needs a rest because it's tired

8.

Match the following

a)

Work Done

1.

12mv212mu2\frac{1}{2}mv^2-\frac{1}{2}mu^2

b)

Capital of Kazakhstan

2.

Astana

c)

Capital of Thailand

3.

Bangkok

d)

Force

4.

mama

e)

Friction

5.

μR\mu R

9.

What is going to happen here?

a)

The badger moves to the right

b)

The badger moves to the left

c)

The badger will not move

d)

The badger moves up

10.

What will be the acceleration of the badger?

a)

6ms26ms^{-2}

b)

18ms218ms^{-2}

c)

0ms20ms^{-2}

d)

9.33ms2 (3SF)9.33ms^{-2}\ \left(3SF\right)

11.

This system is released from rest. What is going to happen?

a)

Nothing

b)

A goes up

c)

B goes up

d)

The string breaks

12.

This system is released from rest. What is going to happen?

a)

Nothing

b)

A goes down

c)

A goes up

d)

The string breaks

13.

What do you get if you integrate velocity?

a)

Velocity

b)

Acceleration

c)

Displacement

d)

Time

14.

Match the following

a)

i2i^2

1.

-1

b)

1\sqrt[]{-1}

2.

i

c)

i+ii+i

3.

2i

d)

iii-i

4.

0

e)

(7i)2\left(7i\right)^2

5.

-49

15.

Match the following

a)

1\sqrt[]{-1}

1.

i

b)

4\sqrt[]{-4}

2.

2i

c)

9\sqrt[]{-9}

3.

3i

d)

16\sqrt[]{-16}

4.

4i

e)

16\sqrt[]{16}

5.

4

16.

Match the following

a)

1.

Scorpion

b)

2.

Shark

c)

3.

Walrus

d)

4.

Taxi

e)

5.

Turkey

17.

Match the following with their complex conjugates

a)

4+7i

1.

4-7i

b)

-4+7i

2.

-4-7i

c)

4-7i

3.

4+7i

d)

-4-7i

4.

-4+7i

e)

7+4i

5.

7-4i

18.

Match the following

a)

(2+2i)(2-2i)

1.

8

b)

(3+3i)(3-3i)

2.

18

c)

(4+4i)(4-4i)

3.

32

d)

(5+5i)(5-5i)

4.

50

e)

(6+6i)(6-6i)

5.

72

19.

What two factors affect an object's potential energy?

a)

area and volume

b)

area and height

c)

mass and height

d)

mass and velocity

20.

The least amount of potential energy is at

a)

a

b)

b

c)

c

d)

d

21.

The most potential energy is at

a)

a

b)

b

c)

c

d)

d

22.

Which object will have the largest value for its potential energy?

a)
b)
c)
d)
23.

Observe the model to answer the following question: When does the skater have the most potential energy?

a)

At the top of the ramp.

b)

At the bottom of the ramp.

24.

Observe the model to answer the following question: When does the skater have the most kinetic energy?

a)

At the top of the ramp.

b)

At the bottom of the ramp.

25.

Which has kinetic energy?

a)

a tank of gasoline

b)

a moving car

c)

a battery

d)

water in a reservoir

26.

Energy and work are measured in

a)
calories
b)
watts
c)
newtons
d)
joules
27.

If an object has zero speed, what is its kinetic energy?

a)

Equal to its mass

b)

Half its potential energy

c)

It depends on its height

d)

Zero