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  1. Water - Saturation Pressure vs. Temperature Online calculator, figures and tables with water saturation (vapor) pressure at temperatures ranging 0 to 370 °C (32 to 700°F) - in Imperial and SI Units.

    • Relative Humidity

      As we can see the maximum water vapor pressure - the...

    • Humidity Ratio

      25: 3130: 0.019826: 30: 4234: 0.027125: Note that the...

    • Liquids

      At atmospheric pressure saturation temperature of . water :...

    • Removing Heat with Air

      Moist Air - Water Vapor and Saturation Pressure Saturation...

  2. www.omnicalculator.com › chemistry › vapour-pressure-of-waterVapor Pressure of Water Calculator

    31 lip 2024 · With this vapor pressure of water calculator, you can find the vapor pressure at a particular temperature according to five different formulas. This calculator works for the standard 0-100 °C range as well as temperatures above 100 °C and below the freezing point.

  3. We see that water at 25°C reaches vapor saturation pressure when the pressure equals 3.18 kPa. You can check the pressures expressed in other units as well; 25°C saturated water vapor pressure is equal to 0.46 PSI, 23.88 mmHg, 0.03 Bar, 0.03 atm, or 23.88 torr.

  4. Saturated Vapor Pressure, Density for Water. ... ... Below are some selected values of temperature and the saturated vapor pressures required to place the boiling point at those temperatures.

  5. 3 paź 2024 · This calculator provides a quick and accurate way to determine the saturation pressure of water vapor, facilitating better understanding and decision-making in scientific and engineering applications.

  6. Vapor Pressure of Water from 0 °C to 100 °C. Constant & conversion factors. Atomic parameters (IE, EA, D, ...) Thermodynamic data. Atomic and ionic radii. Lattice thermodynamics.

  7. The water vapor saturation pressure is required to determine a number of moist air properties, principally the saturation humidity ratio. Saturated water vapor pressure is a function of temperature only and independent on the presence of other gases. The temperature dependence is exponential.

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