The pressure of ammonia if the temperature is 20°C has to be determined using the given information. Concept Introduction: Clausius-Clapeyron equation: ln P = − ( Δ vap H 0 RT ) + C From this relationship we can calculate the molar enthalpy of vaporization by knowing the corresponding temperature and pressure values. If we have pressures at two different temperatures, then enthalpy of vaporization can be calculated by ln P 2 p 1 = - Δ vap H 0 R [ 1 T 2 - 1 T 1 ] Boiling point of a liquid: The temperature at which external pressure and vapour pressure of the liquid become same. Normal boiling point: When the external pressure is 760 mm Hg we can call it as normal boiling point.
The pressure of ammonia if the temperature is 20°C has to be determined using the given information. Concept Introduction: Clausius-Clapeyron equation: ln P = − ( Δ vap H 0 RT ) + C From this relationship we can calculate the molar enthalpy of vaporization by knowing the corresponding temperature and pressure values. If we have pressures at two different temperatures, then enthalpy of vaporization can be calculated by ln P 2 p 1 = - Δ vap H 0 R [ 1 T 2 - 1 T 1 ] Boiling point of a liquid: The temperature at which external pressure and vapour pressure of the liquid become same. Normal boiling point: When the external pressure is 760 mm Hg we can call it as normal boiling point.
Solution Summary: The author explains that the pressure of ammonia if the temperature is 20°C has to be determined using the given information.
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