Year 10 - Science
Calculating the energy of a spring (Ee = 1/2 ke²)
Energy of moving objects
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This pupil-friendly study guide includes a unit summary, clear notes, common mistakes, and quick questions with answers.
Year 10 - Science
Energy of moving objects
This unit covers energy changes in systems through heating, forces, and electrical work. It includes energy storage, efficiency, and transfer methods like insulation. Emphasis is on calculating energy, conducting experiments, interpreting data, and communicating findings accurately.
You will learn to calculate the energy a spring has because it is stretched.
Doubling the stiffness of a spring doubles the energy it has because it is stretched. The spring constant is measured in newtons per metre (N/m).
If an elastic object is stretched, compressed or bent out of shape, there is energy in the elastic store. Include the word in a full scientific explanation, not as a single label.
Mistake: When calculating energy in the elastic store, pupils often work out (½ times spring constant tmes extension) and then square everything, rather than just the extension. Correction: Scaffold calculations to show how elastic energy is calculated, taking pupils through how to do this on their calculators without making a mistake.
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