Fix a balloon over the neck of a bottle and put the bottle in hot water. Explore what will happen.
Hint. Predict before you look, and be clear about what is inside the bottle.
What is actually in the experiment. The bottle looks empty, but it is full of air — and air is matter, made of constituent particles. The balloon seals it in, so nothing can get in or out.
Predict first, then test. Write down what you expect before putting the bottle into the hot water.
What happens. The balloon inflates, standing up over the neck of the bottle.
The explanation, from this chapter. The movement of particles increases when heat is provided — the Think-like-a-scientist result from the potassium permanganate test. The air particles inside the bottle move faster and spread further apart, and since gases tend to occupy the entire available space, they push out into the only space available: the balloon.
✦ What has NOT happened, and this is the part worth getting right. No new air has entered the bottle — the balloon seals it completely. The same particles are there, in the same number. They have simply spread out because their thermal energy increased. Saying 'hot air was created' or 'air came in from the water' would miss the whole point of the chapter.
Extensions to report:
- Move the bottle to cold water and watch the balloon shrink again. This is the reverse process and it shows nothing was lost.
- Try hotter and less hot water and compare how far the balloon inflates.
- Try it with the bottle half full of water instead, and say what difference you expect before testing.
Be careful with hot water, and do this with a teacher or an adult present.
