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Acceleration Warm-Up #2

Total questions: 20

Worksheet time: 10mins

Name
Class
Date
1.

Vf represents the:

a)

velocity at the end of a time interval

b)

velocity at the beginning of a time interval

c)

acceleration at the end of a time interval

d)

the favorite velocity

2.

Vi represents the:

a)

velocity at the end of a time interval

b)

velocity at the beginning of a time interval

c)

acceleration at the end of a time interval

d)

the favorite velocity

3.

tf represents the:

a)

the end of a time interval

b)

the beginning of a time interval

c)

the final truth

d)

the fantastic time we all have in physics class

4.

ti represents the:

a)

the end of a time interval

b)

the beginning of a time interval

c)

the final truth

d)

the fantastic time we all have in physics class

5.

 Δ always represents:\Delta\ always\ represents:  

a)

a final measurement - an initial measurement

b)

triangular logic

c)

distance

d)

velocity

6.

 Δv\Delta v  represents the:

a)

change in velocity

b)

change in time

c)

change in veganism

d)

average velocity

7.

 Δt\Delta t  represents the:

a)

change in velocity

b)

change in time

c)

change in temperature

d)

average time

8.

Identify vi for this graph:

a)

0 seconds

b)

0 m/s

c)

5 seconds

d)

20 m/s

9.

Identify vf for this graph:

a)

0 seconds

b)

0 m/s

c)

5 seconds

d)

20 m/s

10.

Identify tf for this graph:

a)

0 seconds

b)

0 m/s

c)

5 seconds

d)

20 m/s

11.

Identify ti for this graph:

a)

0 seconds

b)

0 m/s

c)

5 seconds

d)

20 m/s

12.

What is the  Δv\Delta v  for the entire time interval represented?

a)

0 seconds

b)

-20 m/s 

c)

5 seconds

d)

+20 m/s

13.

What is the  aavga_{avg}  for the entire time interval represented?

a)

4 m/s/s

b)

5 m/s/s

c)

0.2 m/s/s

d)

+20 m/s/s

14.

How do you calculate the  aavga_{avg}  for the entire time interval?

a)

 20ms0 ms5 s  0 s=4 ms2\frac{20\frac{m}{s}-0\frac{\ m}{s}}{5\ s\ -\ 0\ s}=4\ \frac{m}{s^2}  

b)

 0ms20 ms5 s  0 s=4 ms2\frac{0\frac{m}{s}-20\frac{\ m}{s}}{5\ s\ -\ 0\ s}=-4\ \frac{m}{s^2}  

c)

 5ms0 ms20 s  0 s=0.2 ms2\frac{5\frac{m}{s}-0\frac{\ m}{s}}{20\ s\ -\ 0\ s}=0.2\ \frac{m}{s^2}  

d)

 20ms0 ms0 s  5 s=4 ms2\frac{20\frac{m}{s}-0\frac{\ m}{s}}{0\ s\ -\ 5\ s}=-4\ \frac{m}{s^2}  

15.

What is the velocity of the object at 1 second?

a)

4 m/s

b)

5 m/s

c)

1 m/s

d)

1 s

16.

What is the velocity of the object at 3 seconds?

a)

12 m/s

b)

10 m/s

c)

3 m/s

d)

3 s

17.

What is the acceleration of the object at 3 seconds?

a)

4 m/s/s

b)

12 m/s

c)

20 m/s/s

d)

3 s

18.

What is the acceleration of the object at 1 second?

a)

4 m/s/s

b)

4 m/s

c)

20 m/s/s

d)

 1 s

19.

What is the acceleration of the object at 2 seconds?

a)

4 m/s/s

b)

8 m/s

c)

20 m/s/s

d)

 2 s

20.

According to the graph, for every second that passes, the object increases its velocity by ____________ meters per second?

a)

b)

c)

20 

d)

 2