MrBadmusAI
  1. KS3
  2. Chemistry
  3. Types of reaction
  4. Displacement

Types of reaction · Process

Displacement

An iron nail in blue solution comes out plated with copper. Two metals swapped places — and which way round they swap is never a matter of chance.

Start here

Leave an iron nail in blue copper sulfate. Come back to a copper-plated nail and a pale green solution.

Nothing was added and nothing was heated. The nail is now furry and orange-brown. The blue has drained out of the solution and been replaced by a faint green. Weigh the nail: it has gained mass.

Where did the copper on the nail come from?

A displacement reaction is one metal taking the place of another in its compound. It happens in one direction only: a more reactive metal displaces a less reactive one, and never the other way round.

Which means displacement is also a measuring instrument. Put every metal into every other metal's solution and the results put them in order of reactivity — an order nobody had to be told.

Reference · keep this one open

The reactivity series

Most reactive at the top, least reactive at the bottom. A metal higher in this list will displace any metal below it, and will never be displaced by one below it. The four metals on the bench below are marked — and two non-metals are in the list because they take part in exactly the same way.

The reactivity seriesA numbered list of twelve substances in order of reactivity, drawn from the most reactive at the top to the least reactive at the bottom: 1 potassium (K), 2 sodium (Na), 3 calcium (Ca), 4 magnesium (Mg), 5 aluminium (Al), 6 carbon (C), non-metal, 7 zinc (Zn), 8 iron (Fe), 9 hydrogen (H), non-metal, 10 copper (Cu), 11 silver (Ag), 12 gold (Au). Highlighted on the list are magnesium, zinc, iron and copper, the metals used on the bench in this lesson. A bar beside the list carries an arrowhead at each end, labelled “Most reactive at the top” and “Least reactive at the bottom”.1PotassiumK2SodiumNa3CalciumCa4MagnesiumMg5AluminiumAl6CarbonNON-METALC7ZincZn8IronFe9HydrogenNON-METALH10CopperCu11SilverAg12GoldAuMost reactiveat the topLeast reactiveat the bottom
Nobody was told this order. It was assembled by doing what you are about to do — putting metals into each other's solutions and recording which way the swap went. The bench below covers four of these twelve; the same method extended down the list produces the rest of it.

Your turn · sixteen combinations

Four metals, four solutions. Pick a cell, predict, then run it.

0 of 16 run

The four cells down the diagonal put a metal in its own solution, and they are worth running too — a test that cannot give a result is still worth having done once.

Four metals, four solutions. Pick a cell, predict, then run it.
Metal added tomagnesium sulfatezinc sulfateiron sulfatecopper sulfate
Magnesium
Zinc
Iron
Copper

Iron in copper sulfate

A piece of iron in a blue solution of copper sulfate.

Predict before you run it.

Key fact

A more reactive metal displaces a less reactive metal from its compound — and never the reverse. Which metal wins tells you their order of reactivity.

Three consequences

One rule, three places it decides the answer

A works stores copper sulfate solution. Would a galvanised steel tank do the job?

Iron is obtained from iron oxide by heating it with carbon in a blast furnace. Would the same trick get aluminium out of aluminium oxide?

An unknown metal X is put into copper sulfate and copper appears. It is then put into magnesium sulfate and nothing happens. Can you place X in the order?

Think again

“The copper on the nail came out of the nail — the iron turned into copper on the outside.”

The copper is on the nail, and nothing else was put in the tube. Commit before you read on.

Mastery ladder

Not started yet.

Rungs 3 and 4 you mark yourself.

Rung 1 · Recall

What happens in a displacement reaction?

Rung 2 · The one that catches people

A copper wire is left in zinc sulfate solution for a week and nothing happens. What does that tell you?

Rung 3 · Explain

An iron nail is left in blue copper sulfate solution. Describe everything you would observe, and explain each observation in terms of which metal is where.

Rung 4 · Take it somewhere new

You are given an unknown metal and solutions of magnesium sulfate, zinc sulfate, iron sulfate and copper sulfate. Design the smallest set of tests that would place the unknown metal in the reactivity order, and say how you would know when you had finished.

Key note

In a displacement reaction a more reactive metal takes the place of a less reactive metal in its compound, and never the other way round. The displaced metal appears as a solid, and the solution changes colour whenever the two dissolved metals are different colours. Testing every metal against every solution puts them in order of reactivity — which is how the reactivity series was built.

Going further

Displacement is how railway track is welded in the middle of nowhere. A crucible of iron oxide mixed with aluminium powder is lit; aluminium is more reactive than iron, so it takes the oxygen and the iron is displaced as a white-hot liquid that pours straight into the gap between the rails. It reaches around 2500 °C, needs no power supply, and is the same rule you have just measured with test tubes and a wire.

It is also why some metals were known to the ancient world and others were not. Gold and copper are unreactive enough to be found as the metal, so they were used thousands of years before anyone understood chemistry. Iron needs displacing from its ore with carbon in a furnace, which is a Bronze-Age-ending piece of technology. Aluminium is more reactive than carbon, so no furnace will do it — it stayed undiscovered until electricity could be used to break the ore apart, which is why aluminium was once more valuable than silver.

Before this lesson

Next in this unit

At GCSE this becomes

  • The reactivity series in full, extracting metals with carbon and by electrolysis, and displacement as electron transfer.

Where to next

Ask Mr Badmus AI

Still not sure why half the grid is empty?

Mr. Badmus AI

KS3 Science Tutor

preview