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FORCES 5.3

FORCES 5.3. Chapter Five: Forces 5.1 Forces 5.2 Friction 5.3 Forces and Equilibrium

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Page 1: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

FORCES 5.3

Page 2: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

Chapter Five: Forces

5.1 Forces

5.2 Friction

5.3 Forces and Equilibrium

Page 3: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

Chapter 5.3 Learning Goals

Determine the net force acting on an object.

Define equilibrium.

Draw free-body diagrams to represent all forces acting on a body.

Page 4: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

5.3 Forces and Equilibrium The sum of all the forces on an

object is called the net force.

The word net means total but also means the direction of the forces has been taken into account.

In what direction will this plane go?

Page 5: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

5.3 Adding forces To figure out if or how an object

will move, we look at ALL of the forces acting on it.

Four forces act on a plane: 1. weight2. drag (air friction)3. the thrust of the engines, and 4. the lift force caused by the flow of

air over the wings.

Page 6: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium
Page 7: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium
Page 8: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

5.3 Equilibrium

When several forces act on the same object:

1. The net force is zero, or

2. The net force is NOT zero.

Page 9: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium
Page 10: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

5.3 Normal forces

When the forces are balanced, the net force is zero.

When the net force on an object is zero, we say the object is in equilibrium.

Page 11: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

5.3 Equilibrium and normal forces A normal force is

created whenever an object is in contact with a surface.

The normal force has equal strength to the force pressing the object into the surface, which is often the object’s weight.

The normal force is sometimes called the support force.

Page 12: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

5.3 The free body diagram How do you keep

track of many forces with different directions?

Draw a free-body diagram that contains the objects, like a book on a table.

Page 13: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium
Page 14: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

5.3 Solving equilibrium problems For an object to be in

equilibrium, all the forces acting on the object must add up to zero.

Is this object in equilibrium?

Page 15: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

Solving Problems

Two chains are used to support a small boat weighing 1,500 newtons.

One chain has a tension of 600 newtons.

What is the force exerted by the other chain?

Page 16: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

1. Looking for: …tension on chain 2

2. Given …weightboat = 1,200N; tension1 = 600 N

Implied: weight and tension are forces

3. Relationships: Net force on boat = zero

Solving Problems

Page 17: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

4. Solution: Draw free body

diagram

Solving Problems

Upward force of chains = weight of boat 600 N + tension2 = 1,200 N tension2 = 900 N

Page 18: FORCES 5.3. Chapter Five: Forces  5.1 Forces  5.2 Friction  5.3 Forces and Equilibrium

Parabolic FlightsNASA has been

conducting parabolic flights since the 1950s to train astronauts. Scientists and college students have also gone on parabolic flights to perform a wide variety of chemistry, biology, and physics experiments.