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Vapor Pressure of Water Calculator.
Calculate water or ice saturation pressure with the declared Magnus correlation and visible temperature limits.
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Use Cases
Meteorology and Weather Forecasting
Determine saturation vapor pressure to assess humidity, dew point, and potential for condensation or precipitation in atmospheric models.
Example: Input a temperature of 25°C to get the saturation vapor pressure for a weather report.
Engineering and HVAC Design
Calculate vapor pressure for designing drying processes, humidification systems, or predicting moisture behavior in industrial settings.
Example: Use a temperature of 80°C to estimate vapor pressure for a drying oven design.
Frequently Asked Questions
- What is the Magnus correlation for vapor pressure?
- The Magnus correlation is a widely used empirical formula that relates saturation vapor pressure to temperature. It provides accurate estimates for water (above 0°C) and ice (below 0°C) within specified temperature ranges, making it convenient for meteorological and engineering calculations.
- What temperature limits does this calculator use?
- The calculator uses the Magnus correlation with visible temperature limits. For water, the valid range is typically from -40°C to 50°C, and for ice, from -40°C to 0°C. These limits ensure the accuracy of the correlation.
- Can I use this calculator for both water and ice?
- Yes. The calculator automatically applies the appropriate Magnus coefficients based on the temperature you input. If the temperature is below 0°C, it calculates the saturation vapor pressure over ice; if above 0°C, it calculates over water.
Tips & Common Mistakes
Tips
- Ensure your temperature is within the visible limits shown on the calculator to get accurate results.
- For temperatures below 0°C, the calculator uses ice coefficients; for above 0°C, it uses water coefficients.
- Double-check your temperature unit (Celsius) before entering it to avoid errors.
- Use the result as a reference for saturation conditions; actual vapor pressure may vary with other factors.
Common Mistakes to Avoid
- Entering a temperature outside the valid range, which can lead to inaccurate or invalid results.
- Confusing the saturation vapor pressure with actual vapor pressure, which depends on relative humidity.
- Assuming the calculator works for all temperatures without checking the visible limits.
Last updated: August 13, 2026