🏔️ Clausius-Clapeyron Thermodynamics

Boiling Point at Altitude & Pressure Calculator

Calculate the depression of water's boiling point as a function of geographic elevation or barometric pressure using the barometric formula and the Clausius-Clapeyron equation.

🏖️ Sea Level (0 ft) 🏔️ Denver, CO (5,280 ft) 🇲🇽 Mexico City (7,350 ft) 🇧🇴 La Paz (11,975 ft) 🧗 Mt. Everest (29,029 ft)
Elevation & Pressure

Water Boiling Point at Elevation
94.9 °C (202.8 °F)
5.1 °C (9.2 °F) Lower than Sea Level
Atmospheric Pressure
0.821 atm
Air Density ($\rho$)
1.03 kg/m³
Cooking Time Factor
+20% Longer
💡 Culinary & Scientific Impact:

Because water boils at 94.9 °C in Denver, foods cooked in boiling water (such as pasta, beans, and potatoes) take significantly longer to cook due to lower maximum thermal transfer.

The Clausius-Clapeyron Relation

The temperature dependence of liquid vapor pressure is described by:

$$\ln\left(\frac{P}{P_0}\right) = -\frac{\Delta H_{\text{vap}}}{R} \left(\frac{1}{T} - \frac{1}{T_0}\right) \implies T_b = \left(\frac{1}{T_0} - \frac{R \ln(P / P_0)}{\Delta H_{\text{vap}}}\right)^{-1}$$