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When an ice piece releases vapor, it undergoes a process called sublimation. Sublimation occurs when a substance transitions directly from a solid phase to a gas phase without passing through the intermediate liquid phase.

In the case of ice, sublimation happens when the surrounding conditions meet certain criteria. Typically, for ice to sublimate, the temperature needs to be below the freezing point of water (0 degrees Celsius or 32 degrees Fahrenheit), and the air pressure should be relatively low.

During sublimation, the ice molecules gain enough energy from the surrounding environment to break the bonds holding them together in the solid lattice structure. This allows the ice molecules to transition directly into water vapor, bypassing the liquid phase.

The process of sublimation is gradual and can be observed as the ice slowly disappears over time, transforming directly into water vapor. It is worth noting that sublimation occurs in all directions, which means that water vapor can be released into the surrounding air while the ice diminishes in size.

Factors such as temperature, surface area, and humidity play a role in the rate of sublimation. Higher temperatures and lower humidity levels tend to enhance sublimation, as they provide more energy for the ice molecules to escape into the gas phase.

Overall, the release of vapor from an ice piece is the result of sublimation, where the solid ice transitions directly into gaseous water vapor under suitable environmental conditions.

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