KnowraPartial pressureLinked fromLinked fromThe 36 pages that link to Partial pressure, each with the reason it gives.All 36Broader topic 3Related 27Narrower topic 3Compared with 3Vapor pressureRelated: In a mixture, the vapor’s contribution is its partial pressure, not the total pressure.Atmospheric pressureRelated: It isolates a gas’s contribution from the total pressure of the atmosphere.Dissolved oxygenRelated: Oxygen partial pressure in air helps determine its equilibrium level in water.Relative humidityRelated: Water-vapor partial pressure provides a measurable basis for calculating relative humidity.Le Chatelier's principleRelated: Raising total pressure raises partial pressures, shifting equilibria toward the side with fewer gas moles.Scuba divingRelated: The partial pressures of oxygen and nitrogen shape both gas toxicity and narcosis.Raoult's lawRelated: Raoult's law predicts the vapor-phase partial pressure of each solution component.Cutaneous respirationRelated: Differences in oxygen and carbon dioxide partial pressures drive exchange across the skin.Pulmonary alveolusRelated: Differences in oxygen and carbon dioxide partial pressures drive exchange across alveolar walls.Mole fractionRelated: In an ideal-gas mixture, partial pressure is total pressure multiplied by mole fraction.CarbonationRelated: The carbon dioxide partial pressure above a liquid helps set its dissolved concentration.CalcinationRelated: Low carbon dioxide pressure can favor carbonate decomposition during heating.Gas exchangeRelated: Differences in oxygen and carbon dioxide partial pressures drive their exchange across respiratory surfaces.Vapor–liquid equilibriumRelated: Component partial pressures connect vapor composition to total pressure.Respiratory systemRelated: Differences in oxygen and carbon dioxide partial pressures drive gas exchange.Fish gillRelated: Differences in oxygen and carbon dioxide partial pressures drive exchange across gills.Diving physiologyRelated: Changing partial pressures with depth shape gas exchange and decompression risk.HumidityRelated: Water vapor pressure is one way to quantify vapor in air.Ideal solutionRelated: Each component’s Raoult-law vapor pressure is its partial pressure above the liquid.Insect respirationRelated: Differences in oxygen and carbon-dioxide partial pressure help drive gas exchange.Minimum alveolar concentrationRelated: Anesthetic effects track partial pressure more directly than the total concentration of gases in blood.Air–sea gas exchangeRelated: Gas partial pressures help determine the atmospheric-to-ocean concentration gradient.Volcanic outgassingRelated: Gas solubility in magma depends partly on the pressure exerted by each volatile component.Oxygen fugacityRelated: Oxygen fugacity is often reported as an equivalent oxygen partial pressure.TorrRelated: Gas mixtures in laboratories and vacuum systems often express partial pressures in torr.Blood–air barrierRelated: Differences in oxygen and carbon dioxide partial pressures drive diffusion across the interface.Circulatory and Respiratory Physiological PhenomenaRelated: Differences in oxygen and carbon dioxide partial pressures drive their exchange between air, blood, and tissues.
KnowraPartial pressureLinked fromLinked fromThe 36 pages that link to Partial pressure, each with the reason it gives.All 36Broader topic 3Related 27Narrower topic 3Compared with 3Vapor pressureRelated: In a mixture, the vapor’s contribution is its partial pressure, not the total pressure.Atmospheric pressureRelated: It isolates a gas’s contribution from the total pressure of the atmosphere.Dissolved oxygenRelated: Oxygen partial pressure in air helps determine its equilibrium level in water.Relative humidityRelated: Water-vapor partial pressure provides a measurable basis for calculating relative humidity.Le Chatelier's principleRelated: Raising total pressure raises partial pressures, shifting equilibria toward the side with fewer gas moles.Scuba divingRelated: The partial pressures of oxygen and nitrogen shape both gas toxicity and narcosis.Raoult's lawRelated: Raoult's law predicts the vapor-phase partial pressure of each solution component.Cutaneous respirationRelated: Differences in oxygen and carbon dioxide partial pressures drive exchange across the skin.Pulmonary alveolusRelated: Differences in oxygen and carbon dioxide partial pressures drive exchange across alveolar walls.Mole fractionRelated: In an ideal-gas mixture, partial pressure is total pressure multiplied by mole fraction.CarbonationRelated: The carbon dioxide partial pressure above a liquid helps set its dissolved concentration.CalcinationRelated: Low carbon dioxide pressure can favor carbonate decomposition during heating.Gas exchangeRelated: Differences in oxygen and carbon dioxide partial pressures drive their exchange across respiratory surfaces.Vapor–liquid equilibriumRelated: Component partial pressures connect vapor composition to total pressure.Respiratory systemRelated: Differences in oxygen and carbon dioxide partial pressures drive gas exchange.Fish gillRelated: Differences in oxygen and carbon dioxide partial pressures drive exchange across gills.Diving physiologyRelated: Changing partial pressures with depth shape gas exchange and decompression risk.HumidityRelated: Water vapor pressure is one way to quantify vapor in air.Ideal solutionRelated: Each component’s Raoult-law vapor pressure is its partial pressure above the liquid.Insect respirationRelated: Differences in oxygen and carbon-dioxide partial pressure help drive gas exchange.Minimum alveolar concentrationRelated: Anesthetic effects track partial pressure more directly than the total concentration of gases in blood.Air–sea gas exchangeRelated: Gas partial pressures help determine the atmospheric-to-ocean concentration gradient.Volcanic outgassingRelated: Gas solubility in magma depends partly on the pressure exerted by each volatile component.Oxygen fugacityRelated: Oxygen fugacity is often reported as an equivalent oxygen partial pressure.TorrRelated: Gas mixtures in laboratories and vacuum systems often express partial pressures in torr.Blood–air barrierRelated: Differences in oxygen and carbon dioxide partial pressures drive diffusion across the interface.Circulatory and Respiratory Physiological PhenomenaRelated: Differences in oxygen and carbon dioxide partial pressures drive their exchange between air, blood, and tissues.