Describe Activity 7.6 with the syringe. What happens when you push the plunger in, and what does it show?
Hint. Then repeat it with water, and compare.
The activity. Take a syringe without a needle. Pull the plunger fully out (Fig. 7.9a). Place your thumb firmly over the open end so no air can escape (Fig. 7.9b). Now push the plunger slowly and steadily inwards (Fig. 7.9c).
What you observe. The volume of air inside the syringe decreases. And if you stop pushing, the gas particles spread, and the plunger moves back to its original position.
What it shows. When you compress the air by pushing the plunger, the particles are forced to come closer. This shows that the gas particles have a lot of space between them in their natural state, and this space can be reduced by applying external pressure.
Repeat with water. You would observe that water is practically incompressible.
| Air | Water | |
|---|---|---|
| Can it be compressed? | Yes, easily | No — practically incompressible |
| What that says about spacing | Large interparticle spaces | Very little space between particles |
✦ The water trial is the more important half of the activity. Compressing air alone shows only that air can be squeezed. Filling the same syringe with water and finding it will not budge shows that the compressibility belongs to the gas, not to the syringe, and that the difference between the two states is the amount of empty space in them.
Why the thumb must seal the end completely. Otherwise the air simply escapes and the plunger moves in for a quite different reason — you would be emptying the syringe, not compressing anything.
