Linked from
The 106 pages that link to Temperature, each with the reason it gives.
RefrigeratorRelated: The colder cabinet and warmer room establish the gradient the refrigerator works against.
Countercurrent heat exchangeRelated: The streams' changing temperatures determine the local direction and rate of heat transfer.
MolalityRelated: Changing temperature can expand solution volume without changing its molality.
Zeroth law of thermodynamicsRelated: The law supports treating equal temperatures as a transitive relation.
Dynamic viscosityRelated: Viscosity changes with temperature, often strongly in liquids and gases.
Gas lawsRelated: Gas-law proportionalities use absolute temperature, measured in kelvins.
Gas pressureRelated: For a fixed volume and amount, higher temperature raises ideal-gas pressure.
SteamRelated: It influences water's vapor pressure and the energy of steam.
Thermal fluctuationsRelated: Higher temperature generally increases the energy available for thermal fluctuations.
Waste heat recoveryRelated: The source temperature constrains which recovery technologies and end uses are practical.
GasRelated: For a gas, temperature tracks average particle kinetic energy in the classical model.
Seawater densityRelated: Warming seawater generally expands it, lowering density when salinity and pressure stay constant.
Maxwell relationsRelated: Temperature derivatives are paired with volume or pressure derivatives in the relations.
Heat death of the universeRelated: The universe can become extremely cold while still retaining energy.
MiscibilityRelated: Changing temperature can alter the miscibility of liquid pairs.
HighballRelated: Cold ingredients help retain carbonation and keep the drink refreshing.
Quasistatic processRelated: Temperature must be well-defined at each equilibrium state along the process.
Standard temperature and pressureRelated: STP fixes a temperature so gas measurements can be compared on the same basis.
Barometric formulaRelated: The isothermal form treats temperature as constant throughout the vertical column.
Fundamental thermodynamic relationRelated: It is the coefficient multiplying entropy change.
Photon gasRelated: It fixes the photon gas’s spectral shape and energy density.
WinterRelated: Seasonal temperature patterns give winter its familiar association with cold.
British thermal unitRelated: The defining temperature rise is one degree Fahrenheit.
Superheated steamRelated: Steam is classified as superheated by comparing its temperature with saturation temperature at the same pressure.
Collision frequencyRelated: For a gas at fixed particle mass, temperature sets the characteristic thermal speed.
Intensive and extensive propertiesRelated: Temperature remains unchanged when an equilibrium system is divided into similar parts.
Exothermic processRelated: Surroundings often warm during heat release, though temperature change is not the definition.
Graham's lawRelated: The rate comparison assumes gases are at the same temperature.
Thermodynamic free energyRelated: Temperature scales the entropic term in both Helmholtz and Gibbs free energy.
Combined gas lawRelated: The formula uses temperature on an absolute scale, not an arbitrary scale.
Flammulina filiformisRelated: Cool growing conditions support fruiting and help produce the cultivated enoki form.
Internal pressureRelated: Holding temperature fixed separates internal pressure from changes caused by heating.
Laws of thermodynamicsRelated: The zeroth law makes temperature a consistent property of thermal equilibrium.
Macroscopic scaleRelated: It is a macroscopic quantity connected to microscopic energy distributions.
Stalagmometric methodRelated: Surface tension changes with temperature, so measurements need controlled conditions.
Thermal engineeringRelated: Temperature limits, targets, and gradients anchor thermal specifications.
ThermolabileRelated: The threshold at which a material changes helps determine whether it is thermolabile.