Compounds: Names and Formulae: Mechanism
≈ 24 minMechanism
Follow the mechanism step by step and distinguish what causes the change from what is merely observed.
This extension applies that lens specifically to Compounds: Names and Formulae.
A mixture is two or more substances simply stirred together. They keep their own properties, can be present in any proportion, and can usually be separated physically — sand and iron filings come apart with a magnet.
A compound is different. Two or more elements are chemically bonded in a fixed ratio, forming a substance with completely new properties that can only be separated by another chemical reaction.
The classic demonstration: sodium is a metal so reactive it catches fire in water, and chlorine is a poisonous green gas. Bond them and you get sodium chloride — the table salt you shake onto your chips.
A chemical formula records exactly which atoms are in one unit of a compound.
- A subscript (the small low number) counts the atoms of the symbol directly in front of it. In there are 2 hydrogen atoms and 1 oxygen atom.
- Brackets multiply everything inside them. In the subscript 2 applies to both the O and the H.
- A coefficient — a full-size number in front — multiplies the whole formula. means two complete water molecules.
Worked example — count the atoms in .
Total atoms.
Naming. When a metal joins a non-metal, the non-metal's name is changed to end in -ide: sodium chlorine sodium chloride; magnesium oxygen magnesium oxide; iron sulfur iron sulfide. When oxygen is part of a group of atoms the name usually ends in -ate: sulfate, carbonate, nitrate.
Natural Sciences — Grade 9 — Mechanism: Which of these is a compound and not a mixture?
Natural Sciences — Grade 9 — Mechanism: How many atoms in total are there in one unit of calcium hydroxide, ?
Natural Sciences — Grade 9 — Mechanism: A strip of magnesium is burnt in oxygen and a white powder is left behind. Name the compound that has formed.
Name the original topic being extended by this mechanism lesson.
Which statement is the best evidence-led starting point for Compounds: Names and Formulae: Mechanism?

