Uploaded February 2021 | Updated September 2026, 2 weeks ago
An interesting natural mechanism: how pine cones open and close
Equipment: glass, glue, pine cone, boiling water.
Glue a pine cone to the bottom of a glass and fill the glass with boiling water – in about half an hour, the cone’s scales will press noticeably towards its center, and the cone will close! But not permanently: if you leave it to dry, it will reopen in about two days!
Most of the water that the cone absorbs ends up in the scales. Each scale has two layers – an inner layer and an outer layer. As they absorb water, the scales’ layers expand, the outer layer more dramatically than the inner one. The change in the scales’ specific shape presses them towards the center of the cone. Thus, the cone closes as it absorbs water. If you leave it in the open air, the process will reverse – the scales will start to dry out and shrink, the outer layer again more so than the inner one, forcing the scales to unfurl and allowing the cone to reopen. Similar processes allow pine cones to protect their seeds from excess moisture in their natural environment.
Safe and fun experiments for the whole family are waiting for you in the MEL Kids subscription!
Warning! Only under adult supervision
An interesting natural mechanism: how pine cones open and close
Equipment: glass, glue, pine cone, boiling water.
Glue a pine cone to the bottom of a glass and fill the glass with boiling water – in about half an hour, the cone’s scales will press noticeably towards its center, and the cone will close! But not permanently: if you leave it to dry, it will reopen in about two days!
Most of the water that the cone absorbs ends up in the scales. Each scale has two layers – an inner layer and an outer layer. As they absorb water, the scales’ layers expand, the outer layer more dramatically than the inner one. The change in the scales’ specific shape presses them towards the center of the cone. Thus, the cone closes as it absorbs water. If you leave it in the open air, the process will reverse – the scales will start to dry out and shrink, the outer layer again more so than the inner one, forcing the scales to unfurl and allowing the cone to reopen. Similar processes allow pine cones to protect their seeds from excess moisture in their natural environment.
Safe and fun experiments for the whole family are waiting for you in the MEL Kids subscription!
Warning! Only under adult supervision


![Chemical clock
Chemists are so punctual – they’ve even designed a chemical clock!
Hydrogen peroxide is a very active compound and can be both an oxidizer and a reducing agent. In this process, it reduces iodic acid to form molecular iodine and a so-called triiodide complex. This process can be simplified to the following chemical reactions:
HIO₃ + 3H₂O₂ → HI + 3O₂↑ + 3H₂O
5HI + HIO₃ → 3I₂ + 3H₂O
HI + I₂ → H[I₃]
Since oxygen is formed during the first reaction, we can observe the emergence of the gas. The iodine and triiodide complex turn the solution amber. But the solution immediately turns blue, since the starch molecules, which are very long and look like spirals, trap iodine molecules like a fishnet, forming a deep blue iodine-starch complex. Under the action of malonic acid, this complex is destroyed, since it reduces iodine molecules, while the solution itself becomes colorless:
C₃H₄O₄ + I₂ → C₃H₃O₄I + HI
The process repeats every few seconds, and the reaction period depends on the concentrations of the initial solutions. What is this if not a chemical clock?
Fun and safe experiments await you in the MEL Chemistry subscription!
Attention! All experiments are performed by professionals. Do not attempt. Chemical clock](https://i.ytimg.com/vi/ZhBNZV15uy0/mqdefault.jpg)







