The temperature must be hot to do so.
The letter "A" typically represents where vaporization and condensation occur on a phase diagram. Vaporization occurs in the gas region above the boiling point, while condensation occurs in the liquid region below the boiling point.
The phase changes of matter are melting (solid to liquid), freezing (liquid to solid), vaporization (liquid to gas), condensation (gas to liquid), sublimation (solid to gas), and deposition (gas to solid). These transitions occur due to changes in temperature and pressure.
This process is called "distillation" and can be used to separate chemicals or other compounds that have different boiling points. This is used to obtain alcohol from fermented grain, and to extract various components such as gasoline from petroleum.
Two phase changes that occur when matter loses heat energy are: Solid to liquid: When a substance loses heat energy, it can transition from a solid phase to a liquid phase. This process is called melting. Liquid to gas: Another phase change that can occur when matter loses heat energy is the transition from a liquid phase to a gas phase. This process is known as vaporization or boiling.
In general "Heat", the higher the temperature the more energy the atom's or molecules have to brake the IMF forces holding them together or the bonding forces holding them together e.g. covalent bonds or ionic bonds.
Vaporization occur at the boiling point and from the total volume of the liquid.Evaporation occur at any temperature but only from the surface of the liquid.
Evaporation occur at the surface of a liquid and at any temperature under the boiling point.Vaporization occur only at the boiling point and in the entire volume of the liquid.
- Evaporation is possible at any temperature - At the boiling point vaporization occur
Both boiling and evaporation are forms of vaporization. Vaporization is the process in which a liquid turns into a gas. Boiling is when vaporization occurs throughout the entire liquid, while evaporation is when vaporization occurs only at the surface of the liquid.
Vaporization is the process in which a liquid is converted into a gas. This phase transition requires energy to overcome intermolecular forces and increase the kinetic energy of molecules to escape the liquid phase. Vaporization can occur through evaporation, boiling, or sublimation, depending on the temperature and pressure conditions.
The process when a liquid turns into a gas is called "vaporization." This can occur through processes such as evaporation, where it happens gradually at the surface of the liquid, or boiling, where it occurs throughout the liquid at a specific temperature. Vaporization is a key component of the water cycle and is essential in various natural and industrial processes.
Evaporation (not vaporization) occur at any temperature; a higher temperature increase the rate of evaporation. Evaporation is the releasing of molecules from the surface of a liquid and transformation in a gas.
The phenomenon is called evaporation (the transformatiom occur at low temperatures, at the surface of the liquid) or vaporization (the transformatiom occur at high temperatures - boiling in the total volume).
boiling is when you heat up water to 100oc or 212of then if you keep it long enough it will turn into water vapour since particles first vibrate a little away from each other then they get too hot then they fly there is a difference its just a matter of time for it to happen :J
Vaporization is the process of converting a substance from its liquid or solid state into a gas or vapor by increasing its temperature or reducing its pressure. This can occur through evaporation at the surface of a liquid, boiling throughout the liquid, or sublimation from a solid directly into a gas.
When vaporization occurs below the surface of a liquid, it is called boiling or nucleate boiling. This process involves the formation of bubbles within the liquid and is typically initiated by the application of heat to the liquid.
Vaporization is the process of turning a substance into vapor by heating it to a temperature below its boiling point. This method is commonly used with cannabis and other herbs to extract their active compounds without combustion.