Mayowa Learning Foundation — Free WAEC Science Practice & Learning Biology • Physics • Chemistry • Agricultural Science

favclassic.shop

WAEC & NECO Science Portal

Newton’s Laws of Motion

Topic: Forces and Newton's Laws

Force is a push or pull that changes or tends to change the state of rest or motion of a body. It is measured in newtons (N). Sir Isaac Newton described how forces affect motion in his three laws.

Newton’s First Law (Law of Inertia)

A body remains at rest, or continues moving at constant velocity in a straight line, unless acted upon by an external force.

  • Inertia is the tendency of a body to resist a change in its state of motion.
  • Example: passengers are thrown forward when a moving vehicle stops suddenly, because their bodies tend to continue moving.

Newton’s Second Law

The rate of change of momentum of a body is directly proportional to the applied force and takes place in the direction of the force.

Formula: F = ma (Force = mass × acceleration). The unit newton is defined as 1 N = 1 kg m s⁻².

Newton’s Third Law

For every action, there is an equal and opposite reaction.

  • Example: a rocket pushes exhaust gases downward, and the gases push the rocket upward with an equal and opposite force.

Momentum

Momentum = mass × velocity (p = mv). It is a vector quantity, measured in kg m/s.

Impulse = force × time = change in momentum. Impulse explains why crumple zones and airbags reduce injury — they increase the time over which the force acts, reducing the force.

Worked Example

A force of 20 N acts on a mass of 4 kg. Find the acceleration.

F = ma → a = F/m = 20/4 = 5 m/s²

Summary

Newton’s first law describes inertia, the second gives F = ma, and the third states that forces always occur in equal and opposite pairs. Momentum (p = mv) and impulse (Ft) are key companion concepts.

Comments

Leave a comment

Your email address will not be published. Required fields are marked *