In Breckenridge colorado, the physical atmospheric pressure is 520. torr. What is the boiling point of water ( Delta H vap= 40.7 kj/mol) in Breckenridge?

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter6: Equilibria In Single-component Systems
Section: Chapter Questions
Problem 6.26E
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In Breckenridge colorado, the physical atmospheric pressure is 520. torr. What is the boiling point of water ( Delta H vap= 40.7 kj/mol) in Breckenridge? Can you plz explain in a simple manner using the claussius equation i provided below, im horrible at math so plz help me understand.

**Clausius-Clapeyron Equation**

The Clausius-Clapeyron equation is expressed as:

\[
\ln \left( \frac{P_1}{P_2} \right) = \frac{\Delta H_{\text{vap}}}{R} \left( \frac{1}{T_2} - \frac{1}{T_1} \right)
\]

Where:
- \( P_1 \) and \( P_2 \) are the pressures at temperatures \( T_1 \) and \( T_2 \) respectively.
- \( \Delta H_{\text{vap}} \) is the enthalpy of vaporization.
- \( R \) is the universal gas constant, valued at \( 8.3145 \, \frac{J}{\text{mol} \cdot K} \).
- \( T_1 \) and \( T_2 \) are the absolute temperatures in Kelvin.

This equation describes the relationship between pressure and temperature for phase transitions, particularly evaporation and condensation.
Transcribed Image Text:**Clausius-Clapeyron Equation** The Clausius-Clapeyron equation is expressed as: \[ \ln \left( \frac{P_1}{P_2} \right) = \frac{\Delta H_{\text{vap}}}{R} \left( \frac{1}{T_2} - \frac{1}{T_1} \right) \] Where: - \( P_1 \) and \( P_2 \) are the pressures at temperatures \( T_1 \) and \( T_2 \) respectively. - \( \Delta H_{\text{vap}} \) is the enthalpy of vaporization. - \( R \) is the universal gas constant, valued at \( 8.3145 \, \frac{J}{\text{mol} \cdot K} \). - \( T_1 \) and \( T_2 \) are the absolute temperatures in Kelvin. This equation describes the relationship between pressure and temperature for phase transitions, particularly evaporation and condensation.
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