Why should a magnesium ribbon be cleaned before burning in air?
Hint. Think about what happens to any reactive shiny metal surface if it's just left lying around in ordinary air for a while.
Step 1 — What sits on the ribbon before it's even lit. Magnesium is a reactive metal, and a strip left exposed to air slowly reacts with atmospheric oxygen (and moisture), forming a thin layer of magnesium oxide on its surface.
Step 2 — Why that layer is a problem. This oxide coating is chemically unreactive and will not burn. It sits between the flame and the actual metal underneath, since it is only the fresh magnesium metal that reacts vigorously with oxygen to give the dazzling white flame described in Activity 1.1.
Step 3 — What cleaning does. Rubbing the ribbon with sandpaper scrapes off this oxide layer, exposing the shiny metal beneath, so it burns completely and cleanly: 2Mg(s) + O₂(g) → 2MgO(s).
✦ Answer: The ribbon develops a layer of magnesium oxide from slow reaction with atmospheric oxygen, and this layer will not burn. Cleaning it with sandpaper removes the oxide coating so the pure metal underneath is exposed and burns completely in air.
Where students slip. Saying 'to remove dust or dirt' — the real reason is chemical (an oxide layer that has already formed), not a housekeeping one.
