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Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

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Page 1: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative
Page 2: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Times Up0:010:020:030:040:050:060:070:080:090:101:002:003:004:005:00

Warm UpDescribe what the V-T graph would look like for an object with negative acceleration when it starts with

a.) no velocityb.) positive velocityc.) negative velocity

Be sure to describe what will happen as time continues.

Page 3: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative
Page 4: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Bulletin BoardReadings

◦Pages 48-51Personal Practice

◦# 1-4 on page 55

Page 5: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

The 5 Big Equations

Page 6: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

0 1 2 3 4 5 605

1015202530

Time (s)

Posit

ion

(m

)

0 1 2 3 4 5 602468

1012

Time (s)

Velo

cit

y (

m/s

)

0 1 2 3 4 5 60

0.51

1.52

2.5

Time (s)

Accele

rati

on

(m

/s2

)

Page 7: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

0 1 2 3 4 5 605

1015202530

Time (s)

Posit

ion

(m

)

0 1 2 3 4 5 602468

1012

Time (s)

Velo

cit

y (

m/s

)

0 1 2 3 4 5 60

0.51

1.52

2.5

Time (s)

Accele

rati

on

(m

/s2

)

A great graphical picture, but a lot of work to answer small questions.

Page 8: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

The 5 Big Kinematic Equations

tavv if

davv if 222

22

1tatvd f

22

1tatvd i

tvv

d if

2

Page 9: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

The 5 Big Kinematic Equations

tavv if

davv if 222

22

1tatvd f

22

1tatvd i

tvv

d if

2

These equations will help us pull the right information from our situation.

Page 10: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

A CLOSER LOOK AT EACH ONE

How did we get these equations?How do we use these equations?

Page 11: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tavv if

Page 12: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tavv if

Definition of average Acceleration: t

va

Page 13: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tavv if

Definition of average Acceleration: t

vv

t

va if

Page 14: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tavv if

Definition of average Acceleration: t

vv

t

va if

Now Rearrange!

Page 15: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tavv if

From the graph

Page 16: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tavv if

0 1 2 3 4 5 60

2

4

6

8

10

12

Time (s)

Velo

cit

y (

m/s

)

iv

Page 17: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tavv if

0 1 2 3 4 5 60

2

4

6

8

10

12

Time (s)

Velo

cit

y (

m/s

)

iv

a

t

v

Page 18: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

ExampleA car can accelerate at a rate of 5 m/s2. How long will it take for the car to reach 80 km/h?

Page 19: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

ExampleA car can accelerate at a rate of 5 m/s2. How long will it take for the car to reach 80 km/h?

sa

vvtAnalyze

tavvLook

tAsked

smhkmvvaGiven

if

if

fi

44~4.440.5

02.22:

:

?:

/2.22/80,0,0.5:

Page 20: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Now you try (in groups)!A motorcycle with an initial velocity of 6.0 m/s [E] accelerates at 4.0 m/s2 [E]. How long will it take the motorcycle to reach a final velocity of 36.0 m/s [E]?

An elk moving at a velocity of 20 km/h [N] accelerates at 1.5 m/s2 [N] for 9.3 s until it reaches its maximum velocity. Calculate its maximum velocity, in km/h.

Page 21: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Start with:

&

tvv

d if

2

2if

avg

vvv

t

dvavg

Page 22: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Start with:

&

tvv

d if

2

2if

avg

vvv

t

dvavg

Put them together! t

dvv if

2

Page 23: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Start with:

&

tvv

d if

2

2if

avg

vvv

t

dvavg

Put them together! t

dvv if

2

And Rearrange!

Page 24: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tvv

d if

2

0 1 2 3 4 5 60

2

4

6

8

10

12

Time (s)

Velo

cit

y (

m/s

)

iv

fv

Page 25: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

tvv

d if

2

0 1 2 3 4 5 60

2

4

6

8

10

12

Time (s)

Velo

cit

y (

m/s

)

avgv

Page 26: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Now you try (in groups)!A dog running at a velocity of 16 m/s [S] slows down uniformly to a velocity of 4.0 m/s [S] in 4.0 s. What is the displacement of the dog during this time?

A ball moves up a hill with an initial velocity of 3.0 m/s. Four seconds later, it is moving down the hill at 9.0 m/s. Find the displacement of the ball from its initial point of release.

Page 27: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Take what we know from the last equation:

22

1tatvd i

tvv

d if

2

Page 28: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Take what we know from the last equation:

22

1tatvd i

tvv

d if

2

Rearrange: tvvd if

2

Page 29: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Take what we know from the last equation:

22

1tatvd i

tvv

d if

2

Rearrange: tvvd if

2

Expand: tvtvd if

2

Page 30: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Expand: tvtvd if

2

Page 31: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Expand:

Use equation #1:

tvtvd if

2

tavv if

Page 32: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Expand:

Use equation #1:

tvtvd if

2

tavv if

To get: tvttavd ii

2

Page 33: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Expand:

Use equation #1:

tvtvd if

2

tavv if

To get: tvttavd ii

2

Now Expand & Rearrange!

22

1tatvd i

Page 34: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

22

1tatvd i

0 1 2 3 4 5 60

2

4

6

8

10

12

Time (s)

Velo

cit

y (

m/s

)

Page 35: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Now you try (in groups)!A skier is moving down a uniform slope with an initial speed of 3.0 m/s. If the acceleration down the hill is 4.0 m/s2, find the skier’s displacement after 5.0 s.

A motorcycle is traveling at 100 km/h on a flat road. The rider applies the brakes to slow down the motorcycle at the rate of .80 m/s2 for 30 s. How far did the motorcycle travel during this time?

Page 36: Times Up0:010:020:03 0:040:050:060:070:080:09 0:101:002:003:004:005:00 Warm Up Describe what the V-T graph would look like for an object with negative

Group Experiment:

Question: What is the acceleration due to gravity?

Procedure:1.Hold a ball 3 meter high and time

how long it takes to reach the ground.

2.With this information and using the third equation, find the acceleration that the ball experienced.