speed, velocity and acceleration unit 2: linear motion

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Speed, Velocity and Acceleration Unit 2: Linear motion

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Page 1: Speed, Velocity and Acceleration Unit 2: Linear motion

Speed, Velocity and AccelerationUnit 2:Linear motion

Page 2: Speed, Velocity and Acceleration Unit 2: Linear motion

Measuring Distance

Meter – international unit for measuring distance.

Second – unit for time

= 50 m1 mm

Page 3: Speed, Velocity and Acceleration Unit 2: Linear motion

Calculating Speed

Speed (S) = distance traveled (d) / the amount of time it took (t).

S = d/t

Page 4: Speed, Velocity and Acceleration Unit 2: Linear motion

Units for speed

Depends, but will always be a distance unit / a time unit

Ex. Cars: mi./h Jets: km/h Snails: cm/s Falling objects: m/s

Page 5: Speed, Velocity and Acceleration Unit 2: Linear motion

Calculating speed

If I travel 100 kilometer in one hour then I have a speed of…

100 km/h

If I travel 1 meter in 1 second then I have a speed of….

1 m/s

S = d/t

Page 6: Speed, Velocity and Acceleration Unit 2: Linear motion

If it is 195 miles to Grand Rapids from Petoskey, and it takes 2.9 hours to travel that distance, what is the speed of the traveling car?

Given D = 195 miles T = 2.9 hours

Formula S=d/t S=195 miles/2.9 hours S = 67 miles per hour

Page 7: Speed, Velocity and Acceleration Unit 2: Linear motion

Breaking the Law?

Did this driver really drive 67 miles/hour all the way to Grand Rapids?

Well, driving 67 mph through downtown Kalkaska would get you in a lot of trouble, so I guess not . .

Page 8: Speed, Velocity and Acceleration Unit 2: Linear motion

Three types of speed

Constant speed occurs when an object covers the same amount of distance each unit of time.

Speed is usually NOT CONSTANT Ex. Cars stop and go regularly Runners go slower uphill than downhill

Average speed = total distance traveled/total time it took.

Stopwatches, radar, and speedometers measure instantaneous speed.

Page 9: Speed, Velocity and Acceleration Unit 2: Linear motion

Calculating Average Speed

It took me 1 hour to go 40 km on the highway. Then it took me 2 more hours to go 20 km using the streets.

Total Distance: 40 km + 20 km = 60 km

Total Time: 1 h + 2 h = 3 hr

Ave. Speed: total d/total t = 60 km/3 h = 20 km/h

timeTotal

DistTotalSpeedAve

_

.__.

timeTotal

Distance TotalAve.Speed

Page 10: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

I travelled 25 km in 10 minutes. How many meters have I traveled? A) 25000 m B) .0112 m C) .025 m D) 2.5 m

25 km * 1000m/km = 25000 m

Page 11: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

I ran 1000 m in 3 minutes. Then ran another 1000 m uphill in 7 minutes. What is my average speed? A) 100 m/min B) 2000 m/min C) 10 m/min D) 200 m/min E) 20 m/min

Total Dist. = 1000 m + 1000 m = 2000 m

Total Time = 3 min + 7 min = 10 min

Ave speed = total dist/total time =

2000m/10 min = 200 m/min = D

Page 12: Speed, Velocity and Acceleration Unit 2: Linear motion

Velocity

Velocity – the SPEED and DIRECTION of an object.

Example: An airplane moving North at 500 mph A missile moving towards you at 200 m/s

Page 13: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

What is the difference between speed and velocity?

Speed is just distance/time. Velocity includes direction as well.

Page 14: Speed, Velocity and Acceleration Unit 2: Linear motion

Graphing Speed: Distance vs. Time Graphs

Phoenix

Denver

Page 15: Speed, Velocity and Acceleration Unit 2: Linear motion

Graphing Speed: Distance vs. Time Graphs

Speed = Slope = Rise/Run

Rise

Page 16: Speed, Velocity and Acceleration Unit 2: Linear motion

Graphing Speed: Distance vs. Time Graphs

Rise=?

3 h

600 km

Speed = Slope = Rise/Run

Page 17: Speed, Velocity and Acceleration Unit 2: Linear motion

Graphing Speed: Distance vs. Time Graphs

Rise=?

3 minutes

600 m

Speed = Slope = Rise/Run

Rise/Run = 600 km/3 hr = 200 km/hr

Page 18: Speed, Velocity and Acceleration Unit 2: Linear motion

Different Slopes

0

1

2

3

4

5

6

7

8

1 2 3 4 5 6 7

Time (hr)

Dis

tan

ce (

km

)

Run = 1 hr

Run = 1 hr

Run = 1 hr

Rise = 0 km

Rise = 2 km

Rise = 1 km

Slope = Rise/Run= 1 km/1 hr= 1 km/hr

Slope = Rise/Run= 0 km/1 hr= 0 km/hr

Slope = Rise/Run= 2 km/1 hr= 2 km/hr

Page 19: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

Below is a distance vs. time graph of my position during a race. What was my AVERAGE speed for the entire race?

0

2

4

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0 1 2 3 4 5 6

Time (hr)

Dis

tan

ce (

km

)

Average Speed = Total distance/Total time = 12 km/6 hr= 2 km/hr

Run = 6 hr

Rise = 12 km

Page 20: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

What does the slope of a distance vs. time graph show you about the motion of an object?

It tells you the SPEED

Page 21: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

Below is a distance vs. time graph for 3 runners. Who is the fastest?

0

1

2

3

4

5

6

7

0 1 2 3 4 5 6 35

Time (h)

Dis

tan

ce (

mi.

)

Bob

Jane

Leroy

Leroy is the fastest. He completed the race in 3 hours

Page 22: Speed, Velocity and Acceleration Unit 2: Linear motion

Acceleration

Acceleration = speeding up

Acceleration – the rate at which velocity changes Can be an:

Increase in speed Decrease in speed Change in direction

Page 23: Speed, Velocity and Acceleration Unit 2: Linear motion

Types of acceleration

Increasing speed Example: Car speeds up at green light

Decreasing speed Example: Car slows down at stop light

Changing Direction Example: Car takes turn (can be at

constant speed)

screeeeech

Page 24: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

How can a car be accelerating if its speed is a constant 65 km/h?

If it is changing directions it is accelerating

Page 25: Speed, Velocity and Acceleration Unit 2: Linear motion

Calculating Acceleration

If an object is moving in a straight line

Time

)(v velocity Initial)(v velocity FinalonAccelerati

if

Units of acceleration:m/s2

Page 26: Speed, Velocity and Acceleration Unit 2: Linear motion

Calculating Acceleration

0 s 1 s 2 s 3 s 4 s

0 m/s 4 m/s 8 m/s 12 m/s 16 m/s

2

if

/4

4

/0/16Time

)(v velocity Initial)(v velocity FinalonAccelerati

sm

s

smsm

Page 27: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

A skydiver accelerates from 20 m/s to 40 m/s in 2 seconds. What is the skydiver’s average acceleration?

2/10

2

/20

2

/20/40

__

sm

s

sm

s

smsmTime

speedInitialspeedFinalAccel

2

if

/10

2

/20

2

)/20(/40Time

)(v velocity Initial)(v velocity FinalAccel

sm

s

sm

s

smsm

Page 28: Speed, Velocity and Acceleration Unit 2: Linear motion

Graphing Acceleration

Can use 2 kinds of graphs Speed vs. time Distance vs. time

Page 29: Speed, Velocity and Acceleration Unit 2: Linear motion

Graphing Acceleration:Speed vs. Time Graphs

0

2

4

6

8

10

12

14

0 1 2 3 4 5 6

Time (s)

Sp

ee

d (

m/s

)

1)Speed is increasing with time = accelerating2)Line is straight = acceleration is constant

Page 30: Speed, Velocity and Acceleration Unit 2: Linear motion

Graphing Acceleration:Speed vs. Time Graphs

0

2

4

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8

10

12

14

0 1 2 3 4 5 6

Time (s)

Sp

ee

d (

m/s

)

1)In Speed vs. Time graphs:Acceleration = Rise/Run = 4 m/s ÷ 2 s = 2 m/s2

Run = 2 s

Rise = 4 m/s

Page 31: Speed, Velocity and Acceleration Unit 2: Linear motion

Graphing Acceleration:Distance vs. Time Graphs

0

5

10

15

20

25

30

35

0 1 2 3 4 5

Time (s)

Dis

tan

ce

(m

)

1)On Distance vs. Time graphs a curved line means the object is accelerating.

2)Curved line also means your speed is increasing. Remember slope = speed.

Page 32: Speed, Velocity and Acceleration Unit 2: Linear motion

Question

0

2

4

6

8

10

12

14

0 1 2 3 4 5 6

Time (s)

Sp

ee

d (

m/s

)

Above is a graph showing the speed of a car over time.1) How is the speed of the car changing (speeding up,

Slowing down, or staying the same)?2) What is this car’s acceleration?

1) The car is slowing down2) Acceleration = rise/run = -6m/s ÷3s = -2 m/s2

Run = 3 s

Rise = -6 m/s

Page 33: Speed, Velocity and Acceleration Unit 2: Linear motion

Question:

0

5

10

15

20

25

30

35

0 1 2 3 4 5

Time (s)

Dis

tan

ce

(m

)

1)Which line represents an object that is accelerating?

The black and red lines represent a objects that are accelerating. Black is going a greater distance each second, so it must be speeding up. Red is going less each second, so must be slowing down

Remember: in distance vs. time graphs: curved line = accelerating, flat line = constant speed

Page 34: Speed, Velocity and Acceleration Unit 2: Linear motion

Question: Hard one

0

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0 1 2 3 4 5 6

Time (s)

Sp

ee

d (

m/s

)

Above is a graph showing the speed of a car over time.1)What would a distance vs. time graph for thislook like?

05

1015202530354045

0 1 2 3 4 5 6

Time (s)

Dis

tan

ce (

m)