Linked from
The 38 pages that link to Sublimation, each with the reason it gives.
Carbon dioxideRelated: At ordinary atmospheric pressure, solid CO₂ turns directly into gas rather than melting.
EvaporationCompared with: It moves ice into atmospheric vapor while bypassing liquid-water evaporation.
Phase transitionBroader topic: It occurs where solid and vapor meet without a stable liquid phase.
EvapotranspirationCompared with: It transfers snow or ice to the atmosphere but is distinct from evaporation and transpiration.
CometRelated: Sunlight drives surface ices directly into gas, releasing dust from the nucleus.
VolatilityRelated: Solids can also be volatile when they readily produce vapor by sublimation.
Water vaporRelated: Ice and snow can add water vapor to air without first melting.
IodineRelated: Solid iodine produces conspicuous violet vapor when heated by sublimation.
PlutoRelated: Nitrogen ice sublimates into Pluto’s atmosphere as the dwarf planet’s distance from the Sun changes.
Freeze-dryingRelated: Ice leaves the frozen material as vapor during the primary drying stage.
Clausius–Clapeyron relationRelated: The relation describes the pressure–temperature slope along a solid–vapor boundary.
NaphthaleneRelated: Naphthalene’s noticeable vapor at room temperature comes from its tendency to sublime.
SnowCompared with: Snow crystals can disappear into dry air instead of reaching the ground.
DesiccationCompared with: It removes frozen water by a different phase change than ordinary evaporation.
Uranium hexafluorideBroader topic: Solid UF₆ can be converted directly into the vapor fed to enrichment equipment.
Ammonium chlorideRelated: On heating, ammonium chloride forms ammonia and hydrogen chloride gases that recombine on cooling.
CamphorRelated: Camphor slowly releases its odor as solid molecules enter the air.
Comet tailRelated: Solar heating sublimates cometary ice, releasing gas that drags dust from the nucleus.
VirgaRelated: Ice crystals can disappear directly into water vapor before reaching the ground.
Comet nucleusRelated: Surface ices exposed to sunlight commonly vaporize this way.
Vacuum dryingRelated: It distinguishes ordinary vacuum drying from freeze-drying, where ice sublimes.
Mercury(II) chlorideRelated: Solid mercury(II) chloride can vaporize by sublimation, creating an inhalation hazard.
OutgassingRelated: Ices can release gas by sublimation when surface conditions favor the vapor phase.
Ablation zoneRelated: It removes glacier ice and snow without producing meltwater.
ContrailRelated: In air undersaturated with respect to ice, contrail crystals disappear by sublimation.
VaporizationBroader topic: It is vaporization that begins in a solid rather than a liquid.
FumaroleRelated: Sulfur deposited around some fumaroles can later enter the plume through sublimation.
Comet Hale–BoppRelated: Sunlit ices sublimated from Hale–Bopp’s nucleus, supplying material to its coma and tails.
FrostCompared with: It reverses the direct gas-to-solid transition that can create frost.
2I/BorisovRelated: Solar heating sublimated Borisov’s ice, driving its outgassing and visible coma.
State of matterBroader topic: It shows that some conditions allow a state change to bypass the liquid.
Endothermic processRelated: The solid takes in heat without passing through a liquid phase.
Martian polar ice capsNarrower topic: Polar carbon-dioxide frost disappears mainly by sublimating as sunlight returns.
VaporRelated: Some substances form vapor directly from their solid phase.
Scărișoara CaveRelated: Ice can be lost to cave air through sublimation as well as melting.
Selenium dioxideRelated: SeO₂ can sublime, a property relevant to its purification and handling.
Sungrazing cometRelated: Solar heat turns cometary ices into escaping gas and dust.
Zinc iodideRelated: On strong heating, zinc iodide can volatilize and form vapor-phase species.