Kinetic and potential energy Edexcel International A Level Physics revision

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In plain words

A ball at the top of a hill has energy because of where it is; a ball rolling along has energy because it is moving. As it rolls down, one turns into the other. Following that swap is often the fastest way to find a speed or a height, with no need for forces or times at all.

Three things to know

  1. Kinetic energy E = ½mv². Doubling the speed gives four times the kinetic energy.
  2. Change in gravitational potential energy ΔE = mgΔh, in a uniform field such as near the Earth's surface.
  3. With no friction or air resistance, the potential energy lost equals the kinetic energy gained: mgΔh = ½mv². With resistive forces, the difference is the work done against them.

Worked example

A 60 kg skier starts from rest and drops through a vertical height of 50 m, reaching a speed of 25 m/s. Find the work done against friction and air resistance.

  1. Potential energy lost = mgΔh = 60 × 9.81 × 50 = 29 400 J.
  2. Kinetic energy gained = ½ × 60 × 25² = 18 750 J.
  3. Work done against resistive forces = 29 400 − 18 750 ≈ 1.1 × 10⁴ J.

Tips and tricks

  • For a drop with no resistive forces the mass cancels: v = √(2gh).
  • Δh is the change in vertical height, not the distance along the slope.
5 questions, about 2 minutes.

It lands in your notebook with its questions as flashcards.

Kinetic and potential energy: 5 questions and answers

These are the quiz’s questions. Do the quiz first, then come back here for the ones that got you.

  1. What is the kinetic energy of a 2.0 kg mass moving at 3.0 m/s?
    • 3.0 J
    • 6.0 J
    • 9.0 J (the answer)
    • 18 J

    ½ × 2.0 × 3.0².

  2. The speed of a car doubles. What happens to its kinetic energy?
    • It doubles.
    • It becomes four times bigger. (the answer)
    • It halves.
    • It stays the same.

    Kinetic energy depends on the speed squared.

  3. How much gravitational potential energy does a 5.0 kg mass gain when it is raised 2.0 m?
    • 10 J
    • 49 J
    • 98 J (the answer)
    • 196 J

    5.0 × 9.81 × 2.0.

  4. A ball falls from rest with no air resistance. Which is true as it falls?
    • The potential energy it loses equals the kinetic energy it gains. (the answer)
    • Its total energy increases.
    • Its kinetic energy stays the same.
    • Its potential energy increases.

    Energy is conserved, and none is transferred to the air.

  5. A pendulum bob is released from 0.20 m above its lowest point. What is its speed at the lowest point?
    • 0.63 m/s
    • 1.4 m/s
    • 2.0 m/s (the answer)
    • 3.9 m/s

    √(2 × 9.81 × 0.20).

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