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U2C2A3 RS p 162

U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

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Page 1: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

U2C2A3 RSp 162

Page 2: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Key Question: What happens to the energy in applied, friction and drag interactions?

We Thinkpage 162

#’s 1-2

Page 3: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2
Page 4: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Explore Your Ideas

page 163

Page 5: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Explore Your Ideas

Part A: Energy Diagrams for AppliedApplied Interactions

Step 1

page 163

Page 6: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part A: #1

stored chemical motion

AppliedApplied

Page 7: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

You have You have 6 minutes6 minutes to to complete #s 2 – 4 on p 164 complete #s 2 – 4 on p 164

Read Step 2 #s 2-4

on p 164

Page 8: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part A: #2

AppliedApplied

Page 9: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part A: #3

AppliedApplied

Page 10: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part A: #4AppliedApplied

Page 11: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part B: Energy Diagrams for FrictionFriction Interactions

Step 1: Friction video

5. In both cases, what was the evidence that a friction interaction had occurred?

Page 12: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

5. In both cases, what was the evidenceevidence that a friction interaction had occurred?

Rubbing hands: There was a change in….

Wooden block rubbed along table: There was a change in….

Page 13: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Now it’s your turn!

Step 2: Rub the palms of your hands together.

6. What is the evidence that a friction interaction is occurring?

Page 14: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Step 3: Gently shove one of your books so that it moves across your desk. There is a friction interaction between the book and the desktop.

7. What do you observe?

Page 15: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

You have You have 6 minutes6 minutes to to complete #s 8 - 11complete #s 8 - 11

Read p.p. 165-166 to answer #’s 8-11 (Do Not move on to Part C.)

Page 16: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part B: #8

Page 17: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part B: #9

Page 18: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part B: #10

Page 19: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part B: #11

The source The source decreases in decreases in motion energy.motion energy.

The receiverThe receiverss increase in increase in thermal energy.thermal energy.

s

FrictionFriction

motionmotion thermalthermal

Page 20: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part B: #11

Page 21: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part C: Energy Diagrams for DragDrag Interactions

Step 1: video - drag in air (Watch, then complete #’s 12-14)

Page 22: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part C:#12DragDrag

car/parachutemechanical

energyair

decreases in motion energy

increases in motion energy

Page 23: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part C:#13DragDrag

boatmechanical

energywater

decreases in motion energy

increases in motion energy

Page 24: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part C: Energy Diagrams for DragDrag Interactions

Step 3: Think about a rider on a bicycle. Bicycle riders experience a lot of drag!

Page 25: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Part C:#14DragDrag

bike ridermechanical

energy air

decreases in motion energy

increases in motion energy

Page 26: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

You have You have 5 minutes5 minutes to to complete complete Make Sense Make Sense of Your Ideasof Your Ideas #s 1 - 3 #s 1 - 3

Page 27: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Make Sense of Your IdeasQuestion 1

1. In general, what evidence shows that an applied interaction has occurred?

The receiver

increases

in motion energy.

Page 28: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Make Sense of Your Ideas Question 2

2. In general, what evidence shows that an friction interaction has occurred?

The receivers

increase

in thermal energy.

Page 29: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Make Sense of Your Ideas Question 3

3. In general, what evidence shows that an drag interaction has occurred?

The receiver

increases

in motion energy.

Page 30: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2
Page 31: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Question 1 - Applied Interaction

motion

The source The source decreases in decreases in energy.energy.

The receiver The receiver increases in increases in motion motion energy.energy.

AppliedApplied

Page 32: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

In an applied mechanical interaction, the energy from the receiver often gets transformed into motion energy of the source.

Page 33: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Question 2 - Friction Interaction

thermal

Receivers

The source The source decreases in decreases in motion motion energy.energy.

The receiverThe receiverss increase in increase in thermal thermal energy.energy.

motion

FrictionFriction

Page 34: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Question 2

•In a friction interaction, the energy source (motion energy) gets transformed into thermal energy of the receivers (both surfaces rubbing against each other).

Page 35: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Question 3 - Drag Interaction

Re-write your answer to #3.Re-write your answer to #3.

DragDrag

Page 36: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Question 3Drag Interaction

motion

The source The source decreases in decreases in motion motion energy.energy.

The receiver The receiver increases in increases in motion motion energy.energy.

motion

Page 37: U2C2A3 RS p 162. Key Question: What happens to the energy in applied, friction and drag interactions? We Think page 162 #’s 1-2

Question 3

•In a drag interaction, the energy of the source (motion energy) gets transformed into motion energy of the receiver (the gas or liquid the source is in).