liquid. 3. The partial pressure of a liquid at which the rates of evaporation and condensation are equal is called the vapor pressure of the liquid. 4. The boiling point af water in Baguio city is higher than 100C. 5. The stronger the attraction between the liquid particles, the greater the viscosity of the liquid is. 6. The molar heat of vaporization of a substance is the amount of heat absorbed by the substance during a phase change from liquid to solid. 7. As a substance undergoes a phase change, the temperature remains constant. 8. The conversion from liquid to gas at the boiling point of the liquid is called evaporation. 9. The normal boiling point of a liquid is the

Chemistry & Chemical Reactivity
9th Edition
ISBN:9781133949640
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter11: Intermolecular Forces And Liquids
Section: Chapter Questions
Problem 38GQ: The following data are the equilibrium vapor pressure of limonene, C10H16, at various temperatures....
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Write True if the statement is true; otherwise, write False. 1. The intermolecular forces on the liquid particles at the surface are balance 2. The weaker the intermolecular forces present. the lower the boiling point of a liquid. 3. The partial pressure of a liquid at which the rates of evaporation and condensation are equal is called the vapor pressure of the liquid. 4. The boiling point af water in Baguio city is higher than 100C. 5. The stronger the attraction between the liquid particles, the greater the viscosity of the liquid is. 6. The molar heat of vaporization of a substance is the amount of heat absorbed by the substance during a phase change from liquid to solid. 7. As a substance undergoes a phase change, the temperature remains constant. 8. The conversion from liquid to gas at the boiling point of the liquid is called evaporation. 9. The normal boiling point of a liquid is the boiling point of the liquid when external pressure is equal to 1 atm. 10. Liquid drops are spherical in shape because of the surface tension in the liquid.
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