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Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Dec 14, 2015

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Page 1: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Find your group

• Take your seat

• Be friendly

Page 2: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Announcements

• Exam 1 Thursday (yes, already) • Standards covered:

– DVA: Relate distance, velocity, and acceleration mathematically, graphically, and conceptually.

– Vector ops: Carry out mathematical operations involving vectors: addition, subtraction, multiplication by a scalar, dot product, and cross product.

– N1: Relate zero net force to constant velocity.– N2: Relate net force to acceleration.– Forces: Calculate and describe the magnitude and direction of

the forces of gravity (weight), friction, support, and tension.

Page 3: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Announcements

• Quiz ½– Questions 2, 3, 4 evaluated Standard 1 (DVA)– Still need to fix if not all were correct– Mechanism TBA– I’m trying to figure how to post standards

strandings

Page 4: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Projectile Motion

Two independent dimensions

Page 5: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Objective

• Describe and explain the motion of 2-D free fall.

Page 6: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

What’s the point?

• How do things move when they are thrown?

Page 7: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Free-Fall Trajectories

• Only force is gravity (straight down)

• Acceleration is straight down with magnitude g

• No acceleration in horizontal direction

• Vertical and horizontal components of velocity are independent

Page 8: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Handout Work

1. Determine the trajectory for a projectile dropped from rest.

a. Find the velocity at the end of each second.

b. Find the average velocity each second.

c. Find the displacement each second.

d. Plot the position at the end of each second.

e. Repeat until landing.

Page 9: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Handout Work

2. Determine the trajectory for a projectile tossed at an angle.

a. Find the velocity at the end of each second.

b. Find the average velocity each second.

c. Find the displacement each second.

d. Plot the position at the end of each second.

e. Repeat until landing.

Page 10: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Air Resistance (Drag)

• Very complicated

• Depends on airspeed: faster airspeed gives greater drag

Page 11: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Poll Question

What happens to an object with zero net force acting on it?

A. It is motionless.

B. If it is moving, it soon stops.

C. It has a constant velocity.

D. It constantly accelerates.

Hint: Remember Newton’s first law. Or Newton’s second law.

Page 12: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Falling through Air

v constant

a = 0

v increasing

a decreasing

v increasing

maximum a

0g > a > 0gaccel.

mg–drag = 0mg–drag > 0mgnet force

–mg0 > drag > –mg0drag

mgmgmggravity

vT0 < v < vT0airspeed

TerminalTransitionInitial

(Here, positive = downward, negative = upward)

Page 13: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Whiteboard Work

3. For an object falling from rest to its terminal velocity:

a. Sketch an acceleration-time graph.

b. Sketch a velocity-time graph.

c. Sketch a position-time graph.

Page 14: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Force Diagrams

Forces on one object

Page 15: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Objective

• Construct an object’s force diagram from its physical circumstances.

Page 16: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

What’s the point?

• How can we inventory an object’s forces?

• How can we check that our model considers the correct forces?

Page 17: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Force diagrams

• To find net force acceleration

• Analyze individual and net forces on a body

• Analyze one body free from all others

• Diagram covers only the body and the forces acting on it

Page 18: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Force Diagrams

• Vector arrows directed outward from object

• Indicate every force!

Page 19: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Think Question

How many forces act on the anvil?

zero net force

Page 20: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Think Question

How many forces act on the table?

zero net force

Page 21: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Combining Forces

• What are the forces on the anvil? Table?

• Free-body diagrams for them?

zero net force

Page 22: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Anvil

Its weight

Support from table

Net force ∑F = 0

Page 23: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Table

its weight

support from ground

Net force ∑F = 0

anvil’s weight

Page 24: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Whiteboard Work

4. Construct force diagrams for:a) A rock falling to the surface of the moon

b) A crumpled wad of paper thrown horizontally

c) A passenger in a braking car

d) A box sliding down a ramp, slowing down

Page 25: Find your group Take your seat Be friendly. Announcements Exam 1 Thursday (yes, already) Standards covered: –DVA: Relate distance, velocity, and acceleration.

Reading for Next Time

• Momentum: the “quantity of motion”

• Big ideas:– Momentum is a vector– Momentum changes when a force acts for a

time