Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the...

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Chapter 10 Forces

Transcript of Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the...

Page 1: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Chapter 10 Forces

Page 2: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Force and Net Force•Force is a push or

a pull on an object.•Net force is the total force on an object.

Page 3: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Unbalanced ForceBalanced Force

• Unbalanced Force can cause an object to move, stop moving, or change direction.

• The balanced forces are the forces in equal and opposite directions.

• The balanced forces are the forces in equal and opposite directions.

Page 4: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 5: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Forces change motion.

Page 6: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

• HMM…. Can you see the unbalanced force here?

• HMM…. Can you see the unbalanced force here?

Page 7: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Page 8: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Inertia –An object at rest will stay at rest unless acted upon by an outside force.

–Inertia is every objects resistance to change its motion.

Newton’s First LawNewton’s First Law

Greater mass

means

Greater inertia

Greater mass

means

Greater inertia

Page 9: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 10: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 11: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 12: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 13: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

•Take out a piece of paper

and label it “Inertia Mini

Lab”

•Take out a piece of paper

and label it “Inertia Mini

Lab”

Page 14: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Newton’s Second Law

• The acceleration of an object is directly proportional to the net force acting on the object and inversely proportional to the object’s mass.

Page 15: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Force=mass x accelerationForce=mass x accelerationF=m x aF=m x a

• Or

• a = Force/ mass

• a = F/m

• Or

• a = Force/ mass

• a = F/m

Page 16: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Equation for Newton

•Newton=m x a.•Newton=m x a.

It’s the same as the force equation!

It’s the same as the force equation!

Page 17: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Force and mass determine

acceleration.

Page 18: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Luke! Use the mass times

the acceleration!

Luke! Use the mass times

the acceleration!

Page 19: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Sometimes we might calculate mass using Force and

Acceleration

• Mass=Force/Acceleration

• m=F/a

Page 20: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

How much Force was required to make a 2000kg car accelerate at

5m/s/s?

1 2 3

33% 33%33%

1. 400N

2. 0.001N

3. 10,000N

•Force=Mass x acceleration•F=ma•F=2000kg x 5m/s/s•a= 10,000N or kgxm/s/s

Page 21: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

If you drop a 15kg bowling ball with a Force of 147N, what is it’s

acceleration?

•Acceleration=Force/Mass•a=F/m•a=147kgxm/s/s÷15kg•a= 9.8m/s/s

1 2 3

33% 33%33%

1. 9.8m/s/s

2. 0.1m/s/s

3. 2,205m/s/s

• 0• 0

• 30

• 30

Page 22: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

A person throws a baseball at an acceleration of 25m/s/s with

12.5N of Force. What’s the Mass of the ball?

1 2 3

33% 33%33%

1. 312kg

2. .5kg

3. 2kg

•Mass=Force/Acceleration•m=F/a•a=12.5kgxm/s/s÷25m/s/s•a= .5kg

Page 23: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 24: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

4 Types of Friction• The 4 types of friction are: 1. Sliding friction (strongest)2. Rolling friction 3. Fluid friction (weakest).4. Static friction

Page 25: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

• What type of friction?

Page 26: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

•What type of

friction?

•What type of

friction?

Page 27: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

•What type of friction?

•What type of friction?

Page 28: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

What type of friction?What type of friction?

Page 29: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

2 Factors of Friction

•1-Type of surface. •2-How hard the two surfaces push together.

Page 30: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Which type of hockey has more friction?

Which type of hockey has more friction?

Page 31: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 32: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Air Resistance and Weight

•Air resistance is a type of fluid friction on falling objects. Weight is the force of gravity on an object at the surface of the Earth.

Page 33: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 34: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Law of Universal Gravitation

• Gravity acts between all objects in the universe.

Page 35: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Gravity Between Objects• The force of gravity between objects

increases with greater mass and decreases with greater distance.

Page 36: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 37: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Page 38: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

•Gravity is the force that pulls objects toward the Earth- acceleration due to gravity is 9.8m/s/s.

Page 39: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 40: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Newton’s Third law• If an object exerts a force

on another object, the second object, exerts an equal force in the opposite direction.

Page 41: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 42: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 43: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 44: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 45: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Momentum• The momentum of an object is the

product of its mass and velocity.• In other words:

Momentum = mass x velocityMomentum = mass x velocity

• Kg x m/s• Kg x m/s

Page 46: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

COLLISIONS

Page 47: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 48: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.

Law of Conservation of Momentum

• The total momentum of the objects that interact does not change.

Page 49: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 50: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 51: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 52: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 53: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 54: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.
Page 55: Chapter 10 Forces. Force and Net Force Force is a push or a pull on an object. Net force is the total force on an object.