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Metals and Non-metals — Class 10 Science Notes & Practice

Metals and Non-metals — Class 10 Science Notes & Practice

Metals and Non-metals explains why iron rusts, why gold does not, and why we can pull copper into thin wires but not carbon. It carries good marks and connects to everyday life. This page teaches the whole chapter in plain language, with a plan and an original practice set (with answers you can reveal) at the end.

What This Chapter Covers

Your Game Plan for This Chapter

  1. First — Learn the physical and chemical properties, and the reactivity series.
  2. Next — Understand ionic bonding and the properties of ionic compounds.
  3. Last — Cover extraction, corrosion and alloys, then attempt the practice set.

Study Notes

1. Properties of Metals and Non-metals

Metals are usually shiny, hard, malleable (can be beaten into sheets), ductile (can be drawn into wires), sonorous, and good conductors of heat and electricity. Non-metals are generally dull, brittle and poor conductors. There are exceptions worth remembering: mercury is a liquid metal, sodium is soft, graphite (a non-metal) conducts electricity, and iodine (a non-metal) is lustrous.

PropertyMetalsNon-metals
AppearanceShiny (lustrous)Usually dull
StateMostly solidSolid, liquid or gas
Malleable / ductileYesNo (brittle)
ConductivityGoodPoor (except graphite)

2. Chemical Properties and the Reactivity Series

  • Metal + oxygen → metal oxide (which is basic).
  • Metal + water → metal hydroxide/oxide + hydrogen (reactivity varies a lot).
  • Metal + dilute acid → salt + hydrogen gas.
  • Displacement: a more reactive metal displaces a less reactive one from its salt solution.

The reactivity series arranges metals in decreasing order of reactivity: K > Na > Ca > Mg > Al > Zn > Fe > Pb > (H) > Cu > Ag > Au. Metals above hydrogen displace it from acids; those below (like copper, silver, gold) do not.

Horizontal reactivity series of metals: potassium, sodium, calcium, magnesium, aluminium, zinc, iron and lead shown in red before hydrogen in amber, then copper, silver and gold in green, with reactivity decreasing from left to right.
Figure: Metals above hydrogen displace it from acids; copper, silver and gold do not · चित्र: धातुओं की क्रियाशीलता श्रेणी

3. How Metals and Non-metals React (Ionic Compounds)

Metals lose electrons to form positive ions (cations); non-metals gain electrons to form negative ions (anions). The strong attraction between these opposite charges is the ionic bond. Ionic compounds (like NaCl) are solids with high melting points, usually dissolve in water, and conduct electricity when molten or dissolved — but not when solid, because the ions are locked in place.

Key Idea
Metals give away electrons, non-metals take them. That single transfer of electrons is what creates ions, the ionic bond, and every property of ionic compounds.

4. Extraction, Corrosion and Alloys

Metals are usually found as ores and must be extracted. Two key steps convert an ore to the metal oxide: roasting (heating a sulphide ore strongly in air) and calcination (heating a carbonate ore in limited air). The oxide is then reduced to the metal and refined. Corrosion is the slow damage of a metal by air and moisture — rusting of iron is the common example — and it is prevented by painting, oiling, galvanising (a zinc coat) or alloying. Alloys are mixtures of metals (or a metal and a non-metal) with better properties, like stainless steel, brass and bronze.

Common Mistake
Do not swap roasting and calcination. Roasting = sulphide ore heated in excess air; calcination = carbonate ore heated in limited air.

Practice Worksheet

Try each question fully on your own first, then click Show Answer to check yourself.

Q1. Why are metals good conductors of electricity while most non-metals are not?

Show Answer
Metals have free (mobile) electrons that can move through the metal and carry charge, so they conduct well. Most non-metals have no free electrons, so they do not conduct. (Graphite is the well-known exception that does conduct.)

Q2. Arrange Cu, Zn, Na and Fe in decreasing order of reactivity, and state which can displace copper from its salt.

Show Answer
Na > Zn > Fe > Cu. Since Na, Zn and Fe are all more reactive than copper, each can displace copper from copper sulphate solution — for example, Zn + CuSO4 → ZnSO4 + Cu.

Q3. What is the difference between roasting and calcination?

Show Answer
Roasting is heating a sulphide ore strongly in the presence of excess air to turn it into the oxide. Calcination is heating a carbonate ore in limited air to turn it into the oxide. In both, the metal oxide formed is then reduced to the metal.

Q4. Why do ionic compounds conduct electricity when molten or dissolved but not when solid?

Show Answer
In the solid state the ions are held tightly in fixed positions and cannot move, so there is no conduction. When the compound is molten or dissolved in water, the ions become free to move and carry charge, so it conducts.

Q5. What is corrosion? Give two ways to prevent the rusting of iron.

Show Answer
Corrosion is the slow eating away of a metal by air and moisture; for iron this is rusting. It can be prevented by painting or oiling (a barrier), galvanising (coating with zinc), or alloying (e.g. making stainless steel). Any two are enough.

Once these feel easy, you have genuinely finished this chapter. Do not aim for perfect on the first try — aim for one more correct question than yesterday.

Written & reviewed by Team Principal Saab — Meet the team →