Well, if it's a hot temperature, liquid can evaporate.
If cold, liquid may freeze.
No, for a liquid to become a gas it does not necessarily have to reach 100 degrees Celsius. The process by which a liquid changes to a gas is called evaporation and it can occur at temperatures below the boiling point of the liquid.
The liquid-liquid phase diagram is important because it helps us understand how different liquid phases behave in a system. It shows the conditions under which two different liquid phases can coexist, separate, or mix together. By studying this diagram, we can predict how the liquids will interact and change under different temperatures and pressures. This information is crucial for various industries, such as pharmaceuticals and chemical engineering, to optimize processes and create new materials.
They can get dry or they can develop mold.
if you have a chemical liquid (including water), you can take heat energy out of that chemical until it gets under a certain temperature, where it turns from a liquid into a solid. Different chemicals have different temperatures where this happens, and with water it is 0c.
The phase diagram for carbon dioxide shows its different states (solid, liquid, gas) at varying pressures and temperatures. At low pressures and temperatures, carbon dioxide is a solid (dry ice). At higher pressures, it can exist as a liquid or gas. The diagram helps understand how carbon dioxide behaves under different conditions.
A change from gas to liquid, from solid to liquid, from liquid to gas, etc.
Dry ice is not a liquid. It is a solid form of carbon dioxide. Carbon dioxide changes from a gas to a solid at low temperatures, under pressure.
It is not true; evaporation occur at the surface of a liquid and the temperature is under the boiling point.
Yes, magma is a mixture of liquid rock, minerals, and dissolved gases. It takes extremely high temperatures to melt rock which is why it is often only found under the Earth's surface where temperatures are extremely high.
The Sun's high temperatures and pressures prevent the existence of liquid water on its surface. Temperatures on the Sun can reach millions of degrees Celsius, far higher than the boiling point of water. Any liquid would instantly vaporize under these extreme conditions.
If the temperature is not under 0 oC water remain as a liquid.
Yes, oxygen can exist in a liquid state at very low temperatures. Oxygen liquefies at around -183°C under normal atmospheric pressure. Liquid oxygen is used in various industrial and medical applications.