The Math. The Clausius-Clapeyron Equation is as follows: ln(P 1 P 2) = − ΔH vap R ⋅ ( 1 T 1 − 1 T 2) ln ( P 1 P 2) = - Δ H v a p R ⋅ ( 1 T 1 - 1 T 2) where R is the ideal gas constant (8.314 J/mol*K)
You can use the Omnicalculator Vapor pressure calculator or the Clausius Claperyron equation as follows: Define your first point. For example, water boils at 100 °C when
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The Math. The Clausius-Clapeyron Equation is as follows: ln(P 1 P 2) = − ΔH vap R ⋅ ( 1 T 1 − 1 T 2) ln ( P 1 P 2) = - Δ H v a p R ⋅ ( 1 T 1 - 1 T 2) where R is the ideal gas constant
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1) Let us use the Clausius-Clapeyron Equation: ln (x / 1.00) = (30800 / 8.31447) (1/353.25 minus 1/298.65) Comment: I used the form of the equation shown in this image: I assigned the