Why does ice float and iron sink?
The density of a body is its mass divided by the volume it takes up. A kilogram of lead and a kilogram of cotton wool have the same mass, and the lead fits into a volume many times smaller because it is much denser.
When the body is solid and made of a single material, its density coincides with the specific mass of that material. For a hollow body we divide the mass by the total volume, air included, and so a hollow steel ball can have a density well below that of steel.
The volume of an irregular stone can be measured by lowering it into a graduated container and seeing how far the water level rises. A body floats in water when it is less dense than water, and that is the case of ice, which takes up more room than the water it formed from.
Let's discuss
- Choose ice and lower the block into the beaker. How far does the level rise, and does that number seem to be the volume of the whole block?
- Now push the ice down with the stick until it is fully under water, and see what changes in the beaker reading when the top part also goes in.
- Keep the material and double the edge of the cube. Our first intuition may say that the density changes too, so check what happens to the mass, the volume and the density.
- Choose steel and increase the hollow part until the block starts to float. What might that fraction have to do with a steel ship?