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Chapter 1 Review Quiz

Total questions: 21

Worksheet time: 52mins

Name
Class
Date
1.
The graph respresents
a)
no motion
b)
constant velocity
c)
increasing velocity
d)
decreasing velocity
2.

The green line show

a)

A stationary object.

b)

An object with constant velocity.

c)

An object changing direction

d)

An object moving towards the origin

3.

What is happening at C?

a)

Stationary

b)

Accelerating

c)

Fast steady speed

d)

Slower steady speed

4.

What is happening at E?

a)

Accelerating away from the origin

b)

Accelerating towards the origin

c)

Constant negative velocity towards the origin

d)

Constant positive velocity towards the origin

5.
The rate at which velocity CHANGES is: 
a)
acceleration
b)
speed
c)
direction
d)
physics
6.
The graph below represents
a)
Speed
b)
Velocity
c)
Acceleration
d)
Deceleration
7.
Describe the motion
a)
Slow to fast;   Negative direction
b)
Fast to slow;   Negative direction
c)
Fast to slow;   Positive direction
d)
Slow to fast;   Positive direction
8.

Which graph is showing positive acceleration?

a)

D

b)

E

c)

both D and E

d)

neither D or E

9.

Which line(s) shows uniform motion?

a)

A, B, C, F

b)

B, C, F

c)

D, E

d)

A

10.

Calculate the acceleration for segment C.

a)

-0.5 m/s2

b)

+0.5 m/s

c)

-1 m/s2

d)

-1.5 m/s2

11.

A car is traveling to the right with a speed of 29​​m/s when the rider slams on the accelerator to pass another car. The car passes in 110 m with constant acceleration and reaches a speed of 34m/s. We want to find the acceleration of the car as it sped up. What equation should you choose?

a)

vf=vi+at

b)

d=vit+1/2at2

c)

vf2=vi2+2ad

d)

d=1/2(vf+vi)t

12.

Kinematic equation can only be used when you have a constant ....

a)

Position

b)

Velocity

c)

Acceleration

d)

Time

13.

A ball is dropped from a building. How fast is it traveling after falling for 1.77 s?

a)

14.76 m/s

b)

17.35 m/s

c)

18.91 m/s

d)

20.03 m/s

14.

A car starts from rest and accelerates uniformly over a time of 5.21 seconds for a distance of 110 m. Determine the acceleration of the car. Choose the appropriate equation.

a)

vf=vi+at

b)

d=vit+1/2at2

c)

vf2=vi2+2ad

d)

d=1/2(vf+vi)t

15.

If Michael Jordan has a vertical leap of 1.29 m, then what is his takeoff speed if his acceleration is -9.8 m/s2 and his velocity at the top of his leap i 0 m/s?

a)

vf=vi+at

b)

d=vit+1/2at2

c)

vf2=vi2+2ad

d)

d=1/2(vf+vi)t

16.

How long would it take a cyclist to accelerate at +4 m/s^2 , who is starting from rest and moves at velocity of +10 m/s?

a)

2.5

b)

.40 s

c)

4.0 s

d)

25 s

17.

Rocket-powered sleds are used to test the human response to acceleration. If a rocket-powered sled is accelerated to a speed of +444 m/s in 1.83 seconds, then what is the distance that the sled travels?

Choose the appropriate equation.

a)

vf=vi+at

b)

d=vit+1/2at2

c)

vf2=vi2+2aX

d)

d=((vf+vi)/2)t

18.
An object with an initial velocity of 3.50 m/s moves east along a straight and level path. The object then undergoes a constant acceleration of 1.80 m/s2 east for a period of 5.00 s. How far does the object move while it is accelerating?
a)
6.30 m
b)
17.5 m
c)
27.2 m
d)
40.0 m
19.

A dog runs with an initial speed of 7.5 m/s to a stop in 15 seconds. What is the dog's acceleration?

a)

-7.5 m/s

b)

-7.5 m/s2

c)

-0.5 m/s2

d)

+7.5 m/s2

20.

Explain why negative acceleration does not necessarily mean an object is slowing down. Provide an example.

4 lines
21.

Which of the following scenarios represents acceleration?

a)

Ms. Carlson releasing a snowball horizontally across the parking lot.

b)

Mr. Bourgeois driving his car around a curve on the Anthony Henday.

c)

Mr. Bunch standing in the fitness centre doing bicep curls.

d)

Mr. Laraya walking in a straight line across the COR.