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Total questions: 89

Worksheet time: 1hrs 3mins

Name
Class
Date
1.
Gravity falls at which rate
a)
9.81 meters squared
b)
9.81 meters per second squared
c)
9.87 meters per second
d)
9.81 per second
2.
Acceleration is when 
a)
A.) objects speed up
b)
B.) change direction
c)
Both A. and B. 
d)
Neither A or B
3.

What is the SI unit of acceleration?

a)

m

b)

s

c)

m/s

d)

m/s2

4.

Which of the following is a constant in uniformly accelerated motion?

a)

Displacement

b)

Acceleration

c)

Time

d)

Velocity

5.

What do velocity and acceleration have in common?

a)

They both include a direction.

b)

They have nothing in common.

c)

They both use force.

d)

They both use mass to calculate their values.

6.

If the velocity and the acceleration have opposite directions, it only means that ________.

a)

the velocity increases

b)

the velocity is constant

c)

the velocity decreases

d)

it has a null velocity

7.

If the velocity of a car is negative, it means (in the usual convention) that _________.

a)

it is moving to the left

b)

it is decreasing its velocity

c)

it is moving to the right

d)

it has a decreasing acceleration

8.

Uniformly accelerated motion is evident in our everyday living. Which scenario or object exhibits uniformly accelerated motion?

a)

A falling leaf.

b)

A ringing cellphone.

c)

A sleeping cat.

d)

A hanging wall clock.

9.

Speed limits vary with the type of road and area. Which of the following statements is NOT TRUE about speed limit?

a)

It permits vehicles to move in uniformly accelerated motion.

b)

It minimizes vehicular accidents on the road.

c)

It regulates the flow of traffic in different areas.

d)

It restricts the speed of vehicles.

10.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What is being asked from the problem?

a)

Displacement

b)

Time

c)

Velocity

d)

Acceleration

11.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What equation should be used to solve the problem?

a)

d = vit + 1/2 at2

b)

d = 1/2 (vf + vi) t

c)

vf = vi + at

d)

vf2 = vi2 + 2ad

12.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What are the given values? Select all that apply.

a)

Initial velocity

b)

time

c)

displacement

d)

final velocity

13.

What is the displacement of an object in uniformly accelerated motion if its initial velocity is 5 m/s, acceleration is 3 m/s2, and time is 4 seconds?

a)

12 m

b)

20 m

c)

32 m

d)

44 m

14.

What is the time taken by an object in uniformly accelerated motion to reach a velocity of 30 m/s if its initial velocity is 10 m/s and acceleration is 2 m/s2?

a)

10 s

b)

15 s

c)

20 s

d)

25 s

15.

What is the final velocity of an object in uniformly accelerated motion if its initial velocity is 10 m/s, acceleration is 2 m/s2, and time is 5 seconds?

a)

10 m/s

b)

20 m/s

c)

30 m/s

d)

40 m/s

16.

A bus is moving with an initial velocity of 20 m/s decelerates at a constant rate of 3 m/s2. Calculate the distance traveled by the bus before it stops.

a)

12.35 m

b)

24.56 m

c)

53.49 m

d)

66.67 m

17.

What is the final velocity of a car that accelerates at a rate of 2 m/s2 and starts at a velocity of 14 m/s for 5 seconds?

a)

10 m/s

b)

18 m/s

c)

24 m/s

d)

30 m/s

18.

What is the SI unit of acceleration?

a)

m

b)

s

c)

m/s

d)

m/s2

19.

Which of the following is a constant in uniformly accelerated motion?

a)

Displacement

b)

Acceleration

c)

Time

d)

Velocity

20.

What do velocity and acceleration have in common?

a)

They both include a direction.

b)

They have nothing in common.

c)

They both use force.

d)

They both use mass to calculate their values.

21.

If the velocity and the acceleration have opposite directions, it only means that ________.

a)

the velocity increases

b)

the velocity is constant

c)

the velocity decreases

d)

it has a null velocity

22.

If the velocity of a car is negative, it means (in the usual convention) that _________.

a)

it is moving to the left

b)

it is decreasing its velocity

c)

it is moving to the right

d)

it has a decreasing acceleration

23.

Uniformly accelerated motion is evident in our everyday living. Which scenario or object exhibits uniformly accelerated motion?

a)

A falling leaf.

b)

A ringing cellphone.

c)

A sleeping cat.

d)

A hanging wall clock.

24.

Speed limits vary with the type of road and area. Which of the following statements is NOT TRUE about speed limit?

a)

It permits vehicles to move in uniformly accelerated motion.

b)

It minimizes vehicular accidents on the road.

c)

It regulates the flow of traffic in different areas.

d)

It restricts the speed of vehicles.

25.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What is being asked from the problem?

a)

Displacement

b)

Time

c)

Velocity

d)

Acceleration

26.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What equation should be used to solve the problem?

a)

d = vit + 1/2 at2

b)

d = 1/2 (vf + vi) t

c)

vf = vi + at

d)

vf2 = vi2 + 2ad

27.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What are the given values? Select all that apply.

a)

Initial velocity

b)

time

c)

displacement

d)

final velocity

28.

What is the displacement of an object in uniformly accelerated motion if its initial velocity is 5 m/s, acceleration is 3 m/s2, and time is 4 seconds?

a)

12 m

b)

20 m

c)

32 m

d)

44 m

29.

What is the time taken by an object in uniformly accelerated motion to reach a velocity of 30 m/s if its initial velocity is 10 m/s and acceleration is 2 m/s2?

a)

10 s

b)

15 s

c)

20 s

d)

25 s

30.

What is the final velocity of an object in uniformly accelerated motion if its initial velocity is 10 m/s, acceleration is 2 m/s2, and time is 5 seconds?

a)

10 m/s

b)

20 m/s

c)

30 m/s

d)

40 m/s

31.

A bus is moving with an initial velocity of 20 m/s decelerates at a constant rate of 3 m/s2. Calculate the distance traveled by the bus before it stops.

a)

12.35 m

b)

24.56 m

c)

53.49 m

d)

66.67 m

32.

What is the final velocity of a car that accelerates at a rate of 2 m/s2 and starts at a velocity of 14 m/s for 5 seconds?

a)

10 m/s

b)

18 m/s

c)

24 m/s

d)

30 m/s

33.

What is the SI unit of acceleration?

a)

m

b)

s

c)

m/s

d)

m/s2

34.

Which of the following is a constant in uniformly accelerated motion?

a)

Displacement

b)

Acceleration

c)

Time

d)

Velocity

35.

What do velocity and acceleration have in common?

a)

They both include a direction.

b)

They have nothing in common.

c)

They both use force.

d)

They both use mass to calculate their values.

36.

If the velocity and the acceleration have opposite directions, it only means that ________.

a)

the velocity increases

b)

the velocity is constant

c)

the velocity decreases

d)

it has a null velocity

37.

If the velocity of a car is negative, it means (in the usual convention) that _________.

a)

it is moving to the left

b)

it is decreasing its velocity

c)

it is moving to the right

d)

it has a decreasing acceleration

38.

Uniformly accelerated motion is evident in our everyday living. Which scenario or object exhibits uniformly accelerated motion?

a)

A falling leaf.

b)

A ringing cellphone.

c)

A sleeping cat.

d)

A hanging wall clock.

39.

Speed limits vary with the type of road and area. Which of the following statements is NOT TRUE about speed limit?

a)

It permits vehicles to move in uniformly accelerated motion.

b)

It minimizes vehicular accidents on the road.

c)

It regulates the flow of traffic in different areas.

d)

It restricts the speed of vehicles.

40.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What is being asked from the problem?

a)

Displacement

b)

Time

c)

Velocity

d)

Acceleration

41.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What equation should be used to solve the problem?

a)

d = vit + 1/2 at2

b)

d = 1/2 (vf + vi) t

c)

vf = vi + at

d)

vf2 = vi2 + 2ad

42.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What are the given values? Select all that apply.

a)

Initial velocity

b)

time

c)

displacement

d)

final velocity

43.

What is the displacement of an object in uniformly accelerated motion if its initial velocity is 5 m/s, acceleration is 3 m/s2, and time is 4 seconds?

a)

12 m

b)

20 m

c)

32 m

d)

44 m

44.

What is the time taken by an object in uniformly accelerated motion to reach a velocity of 30 m/s if its initial velocity is 10 m/s and acceleration is 2 m/s2?

a)

10 s

b)

15 s

c)

20 s

d)

25 s

45.

What is the final velocity of an object in uniformly accelerated motion if its initial velocity is 10 m/s, acceleration is 2 m/s2, and time is 5 seconds?

a)

10 m/s

b)

20 m/s

c)

30 m/s

d)

40 m/s

46.

A bus is moving with an initial velocity of 20 m/s decelerates at a constant rate of 3 m/s2. Calculate the distance traveled by the bus before it stops.

a)

12.35 m

b)

24.56 m

c)

53.49 m

d)

66.67 m

47.

What is the final velocity of a car that accelerates at a rate of 2 m/s2 and starts at a velocity of 14 m/s for 5 seconds?

a)

10 m/s

b)

18 m/s

c)

24 m/s

d)

30 m/s

48.

What is the SI unit of acceleration?

a)

m

b)

s

c)

m/s

d)

m/s2

49.

Which of the following is a constant in uniformly accelerated motion?

a)

Displacement

b)

Acceleration

c)

Time

d)

Velocity

50.

What do velocity and acceleration have in common?

a)

They both include a direction.

b)

They have nothing in common.

c)

They both use force.

d)

They both use mass to calculate their values.

51.

If the velocity and the acceleration have opposite directions, it only means that ________.

a)

the velocity increases

b)

the velocity is constant

c)

the velocity decreases

d)

it has a null velocity

52.

If the velocity of a car is negative, it means (in the usual convention) that _________.

a)

it is moving to the left

b)

it is decreasing its velocity

c)

it is moving to the right

d)

it has a decreasing acceleration

53.

Uniformly accelerated motion is evident in our everyday living. Which scenario or object exhibits uniformly accelerated motion?

a)

A falling leaf.

b)

A ringing cellphone.

c)

A sleeping cat.

d)

A hanging wall clock.

54.

Speed limits vary with the type of road and area. Which of the following statements is NOT TRUE about speed limit?

a)

It permits vehicles to move in uniformly accelerated motion.

b)

It minimizes vehicular accidents on the road.

c)

It regulates the flow of traffic in different areas.

d)

It restricts the speed of vehicles.

55.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What is being asked from the problem?

a)

Displacement

b)

Time

c)

Velocity

d)

Acceleration

56.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What equation should be used to solve the problem?

a)

d = vit + 1/2 at2

b)

d = 1/2 (vf + vi) t

c)

vf = vi + at

d)

vf2 = vi2 + 2ad

57.

Answer the guide question that follows.

(A car accelerates from 13 m/s to 25 m/s in 6.0 seconds. What was its acceleration?)

What are the given values? Select all that apply.

a)

Initial velocity

b)

time

c)

displacement

d)

final velocity

58.

What is the displacement of an object in uniformly accelerated motion if its initial velocity is 5 m/s, acceleration is 3 m/s2, and time is 4 seconds?

a)

12 m

b)

20 m

c)

32 m

d)

44 m

59.

What is the time taken by an object in uniformly accelerated motion to reach a velocity of 30 m/s if its initial velocity is 10 m/s and acceleration is 2 m/s2?

a)

10 s

b)

15 s

c)

20 s

d)

25 s

60.

What is the final velocity of an object in uniformly accelerated motion if its initial velocity is 10 m/s, acceleration is 2 m/s2, and time is 5 seconds?

a)

10 m/s

b)

20 m/s

c)

30 m/s

d)

40 m/s

61.

A bus is moving with an initial velocity of 20 m/s decelerates at a constant rate of 3 m/s2. Calculate the distance traveled by the bus before it stops.

a)

12.35 m

b)

24.56 m

c)

53.49 m

d)

66.67 m

62.

What is the final velocity of a car that accelerates at a rate of 2 m/s2 and starts at a velocity of 14 m/s for 5 seconds?

a)

10 m/s

b)

18 m/s

c)

24 m/s

d)

30 m/s

63.

An airplane accelerates down a runway from rest at 3.20 m/s2 for 32.8 s until is finally lifts off the ground. Determine the distance traveled before takeoff.

Which equation is appropriate?

a)

vf=vi+a*t

b)

x=vi*t+1/2at2

c)

vf2=vi2+2aX

d)

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

64.
A golf ball starts with a speed of 2 m/s and slows at a constant rate of 0.5 m/s2, what is its velocity after 2 s?
a)
0 m/s
b)
0.5 m/s
c)
1 m/s
d)
1.5 m/s
65.

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)

x=vit+1/2at2

c)

vf2=vi2+2aX

d)

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

66.

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)

x=vit+1/2at2

c)

vf2=vi2+2aX

d)

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

67.
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
68.
What happens to the velocity of a ball as it is dropped off a cliff? 
a)
It decreases at a uniform rate 
b)
It increases at a uniform rate 
c)
It is constant 
d)
It increases at a non-uniform rate
69.

How long would it take a car, starting from rest and accelerating uniformly in a straight line at 5 m/s2, to cover a distance of 200m

a)

9.0s

b)

10.5s

c)

12.0s

d)

15.5s

70.
A boat travels 12.0 m while it reduces its velocity from 9.5 m/s to 5.5 m/s. What is the magnitude of the boat’s acceleration while it travels the 12.0 m?
a)
1.3 m/s2
b)
2.5 m/s2
c)
3.0 m/s2
d)
7.5 m/s2
71.

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

a)

Position

b)

Velocity

c)

Acceleration

d)

Time

72.
A golf ball accelerates off a tee at 15m/s2, changing its velocity from 0m/s to 50 m/s down the fairway. How long did it take the golf ball to accelerate?
a)
750 seconds
b)
35 seconds
c)
0.3 seconds
d)
3.3 seconds
73.

Which option shows the right substitution for this question?

A car was moving at 3 m/s.

It accelerated at 2 m/s2 over a distance of 5 m.

Calculate its velocity after the acceleration.

a)
b)
74.

A car is initially stationary. It accelerates at 6 m/s2 over a distance of 200 m.

Which substitution is correct?

a)
b)
75.

a)

You have to memorise this equation for the exam.

b)

You get given this equation in the exam on the Physics Equations Sheet.

76.

The units of velocity are...

a)

m

b)

s

c)

m/s

d)

m/s2

77.

The units of displacement are...

a)

m

b)

s

c)

m/s

d)

m/s2

78.

The units of acceleration are...

a)

m

b)

s

c)

m/s

d)

m/s2

79.

A car accelerates at 5m/s2 from an initial velocity of 13m/s over a distance of 100m. What is the final velocity?

a)

38.5 m/s

b)

34.2 m/s

c)

1.5 m/s

d)

260 m/s

80.

Calculate the height that a ball would rise to if it is thrown vertically into the air with a velocity of 5m/s. Acceleration due to gravity is 10m/s2. (answer to 2d.p)

(a)  

81.

A stuntman drops off a building 20m high and lands on cardboard boxes. What is his velocity as he hits the boxes? Acceleration due to gravity is 10m/s2

(a)  

82.

A skydiver jumps from a plane. They leave the plane at rest, and fall vertically downwards. How fast are they falling after 100m of freefall? use 9.8m/s2 as acceleration due to gravity.

a)

42 m/s

b)

44 m/s

c)

98 m/s

d)

1960 m/s

83.

A skydiver jumps from a plane. They leave the plane at rest, and fall vertically downwards. How fast are they falling after 100m of freefall?

a)

42 m/s

b)

44 m/s

c)

98 m/s

d)

1960 m/s

84.

A lunar landing module is descending to the Moon’s surface at a steady velocity of 10.0 m s-1. At a height of 120 m a small object falls from its landing gear. Assuming that the Moon’s gravitational acceleration is 1.60 m s-2, at what speed, in m s-1 does the object strike the Moon?

a)

22.0

b)

19.6

c)

16.8

d)

10.0

85.

v2 = u2 + 2as

a)

v = u2  + 2as\sqrt[]{u^2\ \ +\ 2as}  

b)

v = u2  − 2as\sqrt[]{u^2\ \ -\ 2as}

c)

v =u  − 2asv\ =\sqrt[]{u^{ }\ \ -\ 2as}

86.

v2 = u2 + 2as

a)

u = v2 − 2as\sqrt[]{v^2\ -\ 2as}  

b)

u = v2  + 2as\sqrt[]{v^2\ \ +\ 2as}  

c)

v2  + 2as2\sqrt[]{v^2\ \ +\ 2as^2}

87.

v2 = u2 + 2as

a)

a = v 2− u2 2s\frac{v\ ^2-\ u^2\ }{2s}  

b)

a = u2 − v22s\frac{u^2\ -\ v^2}{2s}  

88.

v2 = u2 + 2as

a)

s = v2 − u22a\frac{v^2\ -\ u^2}{2a}  

b)

s = u2 − v22a\frac{u^2\ -\ v^2}{2a}  

89.

a = (v − u)ta\ =\ \frac{\left(v\ -\ u\right)}{t}  

a)

v = u + atv\ =\ u\ +\ at  

b)

u = v −atu\ =\ v\ -at  

c)

v = u −atv\ =\ u\ -at  

d)

u = v + atu\ =\ v\ +\ at