MrBadmusAI
  1. KS3
  2. Chemistry
  3. Energy changes in reactions
  4. Exothermic reactions

Energy changes in reactions · Process

Exothermic reactions

Every fire you have ever seen gave out far more energy than the match that started it. Nobody keeps feeding it energy — so where does the heat come from?

Start here

A hand warmer is a sealed plastic pouch. Snap the metal disc inside and it reaches 50 °C, in a pocket, on a cold day.

No battery, no flame, nothing plugged in, and nothing added from outside. The pouch was sitting at the same temperature as the room a moment before. It stays hot for about an hour, then goes cold — and it can be reset by boiling it.

Where does the heat come from?

An exothermic change transfers energy to its surroundings. The surroundings get warmer — which is why the test for one is a thermometer in the beaker, not in the flame.

Most reactions you have met are exothermic. Combustion, neutralisation, respiration, a metal reacting with acid, and every reaction in the displacement grid gave out energy. It is common enough that people forget it needs explaining at all.

Your turn · five beakers, one thermometer

Predict the temperature change, then run it.

0 of 5 run

Four of these five do the same thing. Run all five — the odd one out is the point. The temperatures are typical classroom values chosen to show the pattern, not readings from one particular afternoon.

Burning magnesium

The set-upA coil of magnesium ribbon lowered into a beaker of water, lit at the top with a Bunsen. Thermometer in the water.

Predict before you run it.

Key fact

An exothermic change gives energy out to its surroundings, so the temperature of the mixture rises. The energy was stored in the chemicals before the reaction started.

Three judgements

Exothermic on purpose, and exothermic by accident

0 of 3 decided

A disposable hand warmer contains iron powder, salt and sawdust, and gets warm when the packet is opened to the air. What is the reaction?

Why do power stations, cars and your own body all rely on exothermic reactions?

A student says fireworks prove chemical reactions create energy. Are they right?

Five words

Say your answer out loud before you turn each card over. If you cannot say it, you do not know it yet.

Think again

“A reaction that needs heating to start cannot be exothermic.”

A Bunsen really is needed to light the magnesium. Commit before you read on.

Mastery ladder

Not started yet.

Rungs 3 and 4 you mark yourself.

Rung 1 · Recall

What happens to the temperature of the surroundings during an exothermic change?

Rung 2 · The one that catches people

Burning methane needs a spark to start. Does that make it endothermic?

Rung 3 · Explain

A student mixes an acid and an alkali and the thermometer rises by 7 °C. Explain what this shows, where the energy came from, and why the beaker cools down again after a few minutes.

Rung 4 · Take it somewhere new

A company wants to sell a self-heating food can. Explain what they need from the chemistry, and give two safety problems they would have to solve.

Key note

An exothermic change transfers energy to the surroundings, so the temperature of the mixture rises. Combustion, neutralisation, respiration and metals reacting with acids are all exothermic. Needing energy to get started does not stop a reaction being exothermic — what matters is that more energy comes out than went in.

Going further

Self-heating cans of coffee use the reaction between calcium oxide and water, which is exothermic enough to bring a drink to serving temperature in three minutes from a chemical reaction in a sealed compartment. The same reaction is a genuine hazard on building sites: quicklime dust in a wet eye releases its energy exactly where you would least want it.

Compost heaps are exothermic on a scale that surprises people. Bacteria respiring their way through grass cuttings release enough energy to hold the middle of a heap at 60 °C through a frost, and a large enough badly-managed pile of hay can reach the point of catching fire on its own. Farmers have lost barns to it. The energy is coming out of the chemical store in the plant material, and it makes no difference to the arithmetic that the reaction is being run by bacteria rather than a Bunsen.

Before this lesson

Next in this unit

At GCSE this becomes

  • Energy level diagrams, activation energy, and bond breaking and making as the reason a reaction gives energy out.

Where to next

Ask Mr Badmus AI

Still not sure why a match does not disprove this?

Mr. Badmus AI

KS3 Science Tutor

preview