Some things turn from solid to gas. 
Some solids turn straight into gas. 
Heat makes this happen. Heat gives tiny bits of the solid energy. This energy helps them escape into the air.
Dry ice is a great example. It turns into gas very fast.
Snow can do this too. Even on cold days, snow can turn to gas. This happens when the sun shines on it.
Scientists use this to clean things. They heat a solid to make a gas. Then they catch the pure parts. 
Most things turn from solid to liquid before they become gas. But some things skip the liquid stage entirely. This set of steps is called sublimation.
Sublimation happens when a solid absorbs heat. This heat gives tiny molecules enough power to escape. They break away from their neighbors and turn into gas. 
Dry ice is a famous example. It is solid carbon dioxide. At normal air pressure, it turns into gas very fast.
Even snow can sublime. On cold days, the sun can turn snow into gas. This happens without the snow melting first.
Chemists use this way to clean substances. This is called purification. They heat a solid inside a vacuum. A vacuum is a space with very low pressure. The solid turns into gas and leaves dirt behind. The pure gas then hits a cold surface. It turns back into a solid there. This is called deposition. 
Sublimation is a special way that matter changes its form. Most things turn from a solid to a liquid before they become a gas. However, some substances skip the liquid stage entirely. They jump straight from a solid to a gas. This transition is called sublimation.
How this works depends on heat and pressure. When a solid absorbs heat, the molecules gain energy. This energy helps them overcome the forces holding them to other molecules. 

People have studied these changes for a very long time. In ancient times, people practiced alchemy. This was an early form of science. Alchemists like Basil Valentine and George Ripley wrote about sublimation. Valentine wrote about it in 1646. 
There are many real-world examples of sublimation. Dry ice is solid carbon dioxide. It sublimes very fast at -78.5 °C under normal air pressure. 
Sublimation links to many things you might see every day. You might see dry ice used for special effects. You can also find sublimation used in modern technology. Dye-sublimation printing uses this to put colorful art on clothes or signs. 
Sublimation is a specific physical process where a substance changes directly from a solid to a gas. In most cases, matter follows a path from solid to liquid and then to gas. Sublimation skips the intermediate liquid state entirely. This transition is an endothermic change, meaning the substance must absorb heat energy to occur. This energy allows individual molecules to overcome the attractive forces of their neighbors. Once they break free, they escape into a vapor phase.
The mechanism of sublimation depends on the relationship between heat and pressure. For a solid to sublime, its vapor pressure must be higher than the surrounding partial pressure of that same substance. When heat is applied, molecules gain enough kinetic energy to move into the gas phase. This process occurs at the sublimation point, where the transition happens rapidly. The reverse of this process is called deposition, or desublimation. This is when a gas turns directly back into a solid without becoming a liquid first. 
Different substances exhibit sublimation in various ways based on their chemical properties. For example, carbon dioxide in its solid form is known as dry ice. At standard atmospheric pressure, dry ice sublimes rapidly at -78.5 °C. This happens because its triple point is at a much higher pressure of 5.1 atm. In contrast, water ice can sublime gradually at temperatures below 0 °C. This gradual sublimation often happens in snowfields when sunshine hits the upper layers of snow. In glaciology, this loss of ice is referred to as ablation. 
Other substances like naphthalene and iodine provide clear examples of this phase change. Naphthalene is an organic compound often used in mothballs. It sublimes at a high rate at standard temperature and pressure. Its critical sublimation point is around 80 °C, but it can also evaporate at 53 °C. Iodine is another notable example that produces visible fumes when gently heated. In forensic science, scientists use iodine vapor to reveal latent fingerprints on paper. 
Chemists frequently use sublimation as a powerful technique for purification. To purify a compound, a chemist places a solid in a sublimation apparatus under a vacuum. As the solid is heated, it volatilizes and turns into gas. The purified substance then condenses on a cooled surface called a cold finger. This process leaves behind non-volatile impurities that do not sublime. 
Historically, the term sublimation has deep roots in the practice of alchemy. Alchemists used sublimation to describe a two-step transition involving heating a substance to vapor and then collecting it as sediment. Early authors like Basil Valentine and George Ripley wrote about these processes in the 1600s. To these early scientists, sublimation was more than just a physical change. They viewed it as a way to separate "spirits" from "bodies." They believed the process could cleanse a substance from its "filthy original" state. 
Understanding sublimation connects to many modern technological and scientific fields. Beyond laboratory purification, the process is used in dye-sublimation printing. This digital technology uses sublimation to transfer full-color artwork onto polyester or polymer-coated materials. It is a common method for decorating signs, banners, and apparel. By mastering the way molecules move between states, we can create everything from forensic evidence to high-tech consumer electronics. 
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