KnowraReal gasLinked fromLinked fromThe 21 pages that link to Real gas, each with the reason it gives.All 21Related 3Narrower topic 4Compared with 14Equation of stateRelated: Real-gas calculations require equations that account for nonideal behavior.Ideal gas lawCompared with: Real gases approach PV = nRT at low density but deviate as interactions matter.Kinetic theory of gasesCompared with: Departures from ideal behavior expose the model’s simplifying assumptions.Partial pressureCompared with: Nonideal interactions can make simple partial-pressure relations inaccurate.Van der Waals forceNarrower topic: Van der Waals forces help explain deviations of real gases from ideal behavior.Ideal gasCompared with: It reveals the two simplifying assumptions that ideal gases omit.Boyle's lawCompared with: Molecular attractions and particle size make PV vary from a constant in real gases.Dalton's law of partial pressuresCompared with: Real-gas interactions can make component pressures fail to add exactly as Dalton's law predicts.Joule–Thomson effectNarrower topic: Molecular interactions make enthalpy vary with pressure as well as temperature.Van der Waals equationNarrower topic: The equation was devised to model this broader class of substances.FugacityRelated: Those departures make fugacity differ from measured pressure.Compressibility factorNarrower topic: Z is a compact measure of how real-gas behavior differs from the ideal limit.Avogadro's lawCompared with: Real gases can depart from the law, especially at high pressure or low temperature.Gas lawsCompared with: Real gases depart from ideal gas-law predictions at high pressures and low temperatures.GasCompared with: Real gases depart from ideal behavior when particle interactions or volume become significant.Charles's lawCompared with: Real gases can deviate from the predicted proportionality, especially near condensation.Gay-Lussac's law (gas pressure)Compared with: At high pressure or low temperature, its pressure may not remain proportional to temperature.Graham's lawCompared with: Nonideal interactions can disrupt the simple speed-based rate prediction.Combined gas lawCompared with: The combined gas law is approximate when real-gas effects become significant.Interactions in fluidsCompared with: Its deviations reveal the effects of attractions and molecular size.Theorem of Corresponding StatesRelated: The theorem helps predict real-gas behavior where ideal-gas assumptions fail.
KnowraReal gasLinked fromLinked fromThe 21 pages that link to Real gas, each with the reason it gives.All 21Related 3Narrower topic 4Compared with 14Equation of stateRelated: Real-gas calculations require equations that account for nonideal behavior.Ideal gas lawCompared with: Real gases approach PV = nRT at low density but deviate as interactions matter.Kinetic theory of gasesCompared with: Departures from ideal behavior expose the model’s simplifying assumptions.Partial pressureCompared with: Nonideal interactions can make simple partial-pressure relations inaccurate.Van der Waals forceNarrower topic: Van der Waals forces help explain deviations of real gases from ideal behavior.Ideal gasCompared with: It reveals the two simplifying assumptions that ideal gases omit.Boyle's lawCompared with: Molecular attractions and particle size make PV vary from a constant in real gases.Dalton's law of partial pressuresCompared with: Real-gas interactions can make component pressures fail to add exactly as Dalton's law predicts.Joule–Thomson effectNarrower topic: Molecular interactions make enthalpy vary with pressure as well as temperature.Van der Waals equationNarrower topic: The equation was devised to model this broader class of substances.FugacityRelated: Those departures make fugacity differ from measured pressure.Compressibility factorNarrower topic: Z is a compact measure of how real-gas behavior differs from the ideal limit.Avogadro's lawCompared with: Real gases can depart from the law, especially at high pressure or low temperature.Gas lawsCompared with: Real gases depart from ideal gas-law predictions at high pressures and low temperatures.GasCompared with: Real gases depart from ideal behavior when particle interactions or volume become significant.Charles's lawCompared with: Real gases can deviate from the predicted proportionality, especially near condensation.Gay-Lussac's law (gas pressure)Compared with: At high pressure or low temperature, its pressure may not remain proportional to temperature.Graham's lawCompared with: Nonideal interactions can disrupt the simple speed-based rate prediction.Combined gas lawCompared with: The combined gas law is approximate when real-gas effects become significant.Interactions in fluidsCompared with: Its deviations reveal the effects of attractions and molecular size.Theorem of Corresponding StatesRelated: The theorem helps predict real-gas behavior where ideal-gas assumptions fail.