wayground logo

Free Printable Worksheets

NEW

Font size

S
M
L
XL
Worksheets

Motion Graphs

Total questions: 24

Worksheet time: 27mins

Name
Class
Date
1.
What does this graph represent?
a)

Constant Speed (positive linear)

b)

Acceleration

c)

Stationary

d)

Constant speed (negative linear)

2.
How long did it take this object to travel 10 m?
a)

0 s

b)

10 s

c)

15 s

d)

20 s

3.

What does this Distance-time graph represent?

a)

Constant speed

b)

Acceleration

c)

Stationary

d)

Deceleration

4.
What does this graph represent?
a)

Constant speed

b)

Acceleration

c)

Stationary

d)

Deceleration

5.

Match the description to the graph:

"The car is going back to origin/home."

a)
b)
c)
d)
6.

Match the description to the distance-time graph:

"The car is traveling at a constant speed, away from the origin (positive linear)."

a)
b)
c)
d)
7.

The distance-time graph shows Ashley riding her bike to Maria's house.  What was occurring from point B to point C?

a)

She was increasing her speed.

b)

She was stationary for 4 minutes

c)

She was decreasing in speed

d)

She moved at a constant speed

8.

Which is faster?

a)

walking

b)

skating

c)

biking

9.

What is the speed of the rabbit from point A to B?

a)

5m/s

b)

0m/s

c)

1m/s

d)

1m/s2

10.

What is the speed of the rabbit from point B to C?

a)

10m/s

b)

2m/s

c)

0.5m/s

d)

1.5m/s

11.

What is the speed of the rabbit from point C to D?

a)

35m/s

b)

5m/s

c)

20m/s

d)

10m/s

12.

What is the speed of the rabbit from point E to F?

a)

7m/s

b)

-7m/s

c)

17.5m/s

d)

-17.5m/s

13.

What is happening from Point A to B in this speed-time graph?

a)

Constant speed

b)

Acceleration

c)

Stationary

d)

Negative linear

14.

At which points is the person travelling at CONSTANT speed?

a)

From Points:

A to B

C to D

E to F

b)

From Points:

A to B

C to D

c)

From Points:

B to C

D to E

d)

Never at constant speed.

15.

What is the average acceleration rate of the Person from points A to B?

a)

2m/s

b)

2m/s2

c)

5m/s2

d)

20m/s2

16.

What is the average acceleration rate of the Person from points B to C?

a)

0m/s

b)

0m/s2

c)

20m/s2

d)

2m/s2

17.

What is the formula for calculating the average acceleration rate?

a)

a = (v-u)t\frac{\text{(v-u)}}{\text{t}}

b)

a = dt\frac{d}{t}

c)

v = dt\frac{d}{t}

d)

a = (v-u) x d

18.

What is the average acceleration rate of the Person from points C to D?

a)

0.5m/s2

b)

1.5m/s2

c)

1.67m/s2

d)

3.5m/s2

19.

What is the average acceleration rate of the Person from points D to E?

a)

0m/s2

b)

1.5m/s2

c)

0.8m/s2

d)

-0m/s2

20.

What is the average acceleration rate of the Person from points E to F?

a)

-3.5m/s2

b)

-3.5m/s

c)

3.5m/s

d)

3.5m/s2

21.

Calculate the distance travelled within the shaded section by finding the area of the shaded shape

Reminder: Area of triangle = (b×h)2\frac{\left(b\times h\right)}{2}

a)

100m

b)

200m

c)

150m

d)

0m

22.

Calculate the distance travelled within the shaded section by finding the area of the shaded shape

Reminder: Area of triangle = (b×h)2\frac{\left(b\times h\right)}{2}

a)

175m

b)

350m

c)

100m

d)

200m

23.

Calculate the distance travelled within the shaded section by finding the area of the shaded shape

Reminder: Area of rectangle = l x w

a)

200m

b)

20m

c)

100m

d)

10m

24.

Calculate the distance travelled within the shaded section by finding the area of the shaded shape

Reminder: Area of rectangle = l x w

a)

350m

b)

175m

c)

35m

d)

10m