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AQA GCSE PHYSICS · PAPER 2 · FOUNDATION & HIGHER

Newton's Third Law

Forces · Lesson 16 of 20

Warm-up

Answer each one, then check.

1. What is a force?

A push or a pull

2. What are balanced forces?

Equal and opposite forces on the same object

3. Give a contact force.

Friction, tension or normal contact force

4. What is a non-contact force?

A force between objects that are not touching

5. What is weight?

The force of gravity on an object

Learning Objectives

1. State Newton's Third Law.

2. Identify pairs of forces between two interacting objects.

3. Explain why interaction pairs do not cancel each other.

4. Apply the law to objects in equilibrium.

Newton's Third Law

Whenever two objects interact, the forces they exert on each other are equal and opposite.

The two forces in an interaction pair act on different objects, are the same type of force, and are equal in size and opposite in direction.

Interaction Pairs

Each force acts on a different object.

Examples of pairs of equal and opposite forces: a book on a table, a person pushing a wall and the Earth and Moon.

Finding an Interaction Pair

A book rests on a table. The table exerts an upward force on the book. What is the other force in this interaction pair?

 

1. Type of force

A contact (normal) force

2. Acts on

The table

3. Direction

Downwards

Answer: The book pushes down on the table with an equal force.

Weight and Contact Force

A book at rest on a table has a weight of 10 N. Is the normal contact force from the table the Third-Law pair of the weight? Explain.

 

1. Weight

The Earth pulls the book down; the pair is the book pulling the Earth up

2. Normal contact force

The table pushes the book up: a different kind of force

3. So

They are equal and opposite because the book is in equilibrium, not because of the Third Law

Answer: No. The pair of the weight is the book's gravitational pull on the Earth. The contact force balances the weight (Newton's First Law).

Why Things Move

A swimmer pushes backwards on the water. Explain why the swimmer moves forwards.

 

1. Action

The swimmer pushes the water backwards

2. Reaction

The water pushes the swimmer forwards with an equal force

3. Resultant

Acts on the swimmer and causes acceleration

Answer: The water pushes back on the swimmer with an equal and opposite force.

Common Mistakes

Avoid these.

▸ Same object. Forces that cancel act on the same object; a Third-Law pair acts on different objects.

▸ Always equal. The forces in a pair are always equal, even if one object is much lighter.

▸ Same type. The pair is always the same type of force.

▸ Motion. Equal forces on different objects can give different accelerations (F = ma).

Key Terms

Newton's Third Law

The forces two interacting objects exert on each other are equal and opposite.

Interaction pair

The two forces in an interaction between two objects.

Equilibrium

When the forces on an object are balanced.

Normal contact force

The push from a surface on an object resting on it.

Reaction force

The force that forms a pair with another force.

Different objects

The two forces in a pair act on separate bodies.

Your Task: Find the Pair

10 minutes

For each, state the other force in the pair: (a) a foot pushes backwards on the ground (b) the Sun pulls the Earth (c) a rocket pushes gas out of its engine.

1. Swap the objects.

2. Keep the same type of force.

A good answer shows: (a) The ground pushes the foot forwards. (b) The Earth pulls the Sun. (c) The gas pushes the rocket forwards.

Can I...?

☐ State the third law.

☐ Name the object each force acts on.

☐ Identify a pair.

☐ Explain that pairs do not cancel.

☐ Apply it to a book on a table.

☐ Apply it to a swimmer.

☐ Apply it to gravity.

☐ Explain equilibrium.

Summary

✓ Interaction pairs: equal and opposite, on different objects.

✓ Same type of force in a pair.

✓ Weight and normal force are not a Third-Law pair.

✓ Equilibrium: balanced forces on one object.

 

EXAM FOCUS

State Newton's Third Law. (2 marks)

Forces equal in size and opposite in direction on different objects.