KnowraJoule–Thomson effectLinked fromLinked fromThe 23 pages that link to Joule–Thomson effect, each with the reason it gives.All 23Related 17Compared with 6Ideal gas lawRelated: An ideal gas has no Joule–Thomson temperature change, unlike many real gases.Liquefied natural gasRelated: Expansion cooling is one physical effect used in some natural-gas liquefaction cycles.CryogenicsRelated: This effect enables gas-expansion stages in many refrigeration and liquefaction cycles.Thermodynamic stateRelated: Its prediction depends on the gas’s initial thermodynamic state.Real gasRelated: Intermolecular forces make expansion change temperature, unlike an ideal gas.Thermodynamic potentialRelated: Enthalpy provides the conserved potential for this practical gas-expansion process.Liquid hydrogenRelated: Hydrogen must be precooled before throttling, since expansion at room temperature warms it.Liquid oxygenRelated: Gas liquefaction systems can use expansion cooling as part of the process that produces liquid oxygen.Maxwell relationsRelated: Thermodynamic derivative identities help express its temperature response using measurable gas properties.Heike Kamerlingh OnnesRelated: Gas liquefaction systems exploit this cooling effect, central to the methods refined in Onnes’s laboratory.Carl von LindeRelated: Linde used repeated throttling and regenerative cooling to bring air toward liquefaction.Flash evaporationRelated: It describes gas cooling or heating during pressure reduction, alongside liquid flashing.Isentropic processRelated: It illustrates how a common flow process can change temperature without following an isentropic path.Lord KelvinRelated: Kelvin and James Joule investigated this effect, which informs gas cooling and liquefaction.Redlich–Kwong equation of stateRelated: Real-gas properties calculated from the equation help predict throttling behavior.Virial expansionRelated: Virial equations can describe the nonideal gas properties that determine throttling temperature changes.Thermodynamic equationsRelated: Thermodynamic relations predict whether throttling cools or heats a gas.
KnowraJoule–Thomson effectLinked fromLinked fromThe 23 pages that link to Joule–Thomson effect, each with the reason it gives.All 23Related 17Compared with 6Ideal gas lawRelated: An ideal gas has no Joule–Thomson temperature change, unlike many real gases.Liquefied natural gasRelated: Expansion cooling is one physical effect used in some natural-gas liquefaction cycles.CryogenicsRelated: This effect enables gas-expansion stages in many refrigeration and liquefaction cycles.Thermodynamic stateRelated: Its prediction depends on the gas’s initial thermodynamic state.Real gasRelated: Intermolecular forces make expansion change temperature, unlike an ideal gas.Thermodynamic potentialRelated: Enthalpy provides the conserved potential for this practical gas-expansion process.Liquid hydrogenRelated: Hydrogen must be precooled before throttling, since expansion at room temperature warms it.Liquid oxygenRelated: Gas liquefaction systems can use expansion cooling as part of the process that produces liquid oxygen.Maxwell relationsRelated: Thermodynamic derivative identities help express its temperature response using measurable gas properties.Heike Kamerlingh OnnesRelated: Gas liquefaction systems exploit this cooling effect, central to the methods refined in Onnes’s laboratory.Carl von LindeRelated: Linde used repeated throttling and regenerative cooling to bring air toward liquefaction.Flash evaporationRelated: It describes gas cooling or heating during pressure reduction, alongside liquid flashing.Isentropic processRelated: It illustrates how a common flow process can change temperature without following an isentropic path.Lord KelvinRelated: Kelvin and James Joule investigated this effect, which informs gas cooling and liquefaction.Redlich–Kwong equation of stateRelated: Real-gas properties calculated from the equation help predict throttling behavior.Virial expansionRelated: Virial equations can describe the nonideal gas properties that determine throttling temperature changes.Thermodynamic equationsRelated: Thermodynamic relations predict whether throttling cools or heats a gas.