Exit to G3 Physics and O-Level Work, Energy & Power Hub

Work, Energy & Efficiency Explorer

Switch between work, KE, GPE, power, and efficiency modes to choose equations, compare energy changes, and explain losses.

  • SEC G3 Physics 2027
Learning goals
  • Recognise kinetic, potential, nuclear and internal energy stores
  • Describe mechanical energy transfer by a force acting over a distance
  • Describe electrical energy transfer by an electric current
  • Describe energy transfer by heating due to a temperature difference
  • Describe energy transfer by electromagnetic and mechanical waves

Interactive stageLive model

Loading the interactive model…The interactive model did not load. Try again reloads this page; the explanation and worked content here are still available.

Change one variable at a time and watch the model respond.

Scenario setup

Core mode
12 kg
180 N
3.0 m
6.0 m s⁻¹
4.0 m
Rate and transfer controls
More controls
8 s
1200 J
720 J

Energy checkpoint

What to notice:

Prediction target:

      Practice run

      Choose a mode and checkpoint count when you want scoring.

      Run mode

      Choose your checkpoint count for guided or challenge mode.

      Study lensChoose between work done, kinetic energy, GPE, power, and efficiency equations from the scenario shown.11 min activity

      Try this

      Pick the energy story first, then decide whether the question is asking for energy, rate, or efficiency.

      Learn to

      • Choose between work done, kinetic energy, GPE, power, and efficiency equations from the scenario shown.
      • Compare energy-store changes and explain where useful output and wasted energy go.
      • Handle short O Level calculations without mixing force with energy or power with energy.

      Exam transfer

      • Energy methods
      • Calculation + explanation

      Governing idea

      W = Fs cos θ, Eₖ = ½mv², gravitational energy change = mgΔh, P = E/t, and efficiency = useful output ÷ total input.

      Model boundary

      Only displayed energy stores and losses are included. Real systems may also transfer energy through sound, deformation, air resistance, and heating elsewhere.

      Avoid this trap

      Efficiency is a ratio of like quantities and cannot exceed 100%. Keep joules with joules, or watts with watts.

      How to explore

      Choose the right equation, compare energy changes, and track useful output versus losses in one O Level explorer.

      Predict the outcome, change one variable at a time, then interpret the result. Completion records participation only and does not award mastery.

      About this activity

      Switch between work, KE, GPE, power, and efficiency modes to choose equations, compare energy changes, and explain losses. A text explanation and no-JavaScript route remain available.

      How this activity affects progress
      Course and syllabus information
      Course
      SEC G3 Physics
      Edition
      SEC G3 Physics 2027