community
directory
books
authors
images
encyclopedia

Email:
Password:
Register

Knowledgerush Search

 

Google
  Web knowledgerush


Search for images of Vapor pressure


Message boards   Post comment

Vapor pressure

At any given temperature, for a particular substance, there is a pressure at which the vapor of that substance is in equilibrium with its liquid or solid forms. This is termed the vapor pressure of that substance at that temperature.

When the ambient pressure equals the vapor pressure of any liquid, the liquid and vapor are in equilibrium. Below that temperature, vapor will condense to liquid; above that temperature, liquid will boil (turn to vapor). Thus, at any given pressure, the boiling point of a substance is the temperature at which the vapor pressure of the substance in liquid form equals the ambient pressure.

When the ambient pressure equals the vapor pressure of any solid, the solid and vapor are in equilibrium. Below that temperature, vapor will condense to solid; above that temperature, solid will sublime (turn to vapor). Thus, at any given pressure, the sublimation point of a substance is the temperature at which the vapor pressure of the substance in solid form equals the ambient pressure.

It may be noted that the vapor pressure of a substance in liquid form may be (and, in general, usually is) different from the vapor pressure of the same substance in solid form. If the temperature is such that the vapor pressure of the liquid is higher than that of the solid, liquid will vaporize but vapor will condense to a solid, i.e. the liquid is freezing. If the temperature is such that the vapor pressure of the liquid is lower than that of the solid, solid will vaporize but vapor will condense to a liquid, i.e. the solid is melting. At the temperature that equalizes the two vapor pressures, an equilibrium exists between solid and liquid phases. This temperature is referred to as the melting point.

Raoult's law approximately governs the vapor pressure of mixtures of liquids.

Referenced By

Actinium | Actinium/Temp | Aluminium | Aluminum | Antimony | Argon | Arsenic | Astatine | Azote | Barium | Beryllium | Bismuth | Boron | Brimstone | Bromine | Bromo | Cadmium | Caesium | Calcium | Carbon | Carbon/Temp | Cerium | Cerium/Temp | Cesium | Chlorine | Chloro | Chromium | Chromium/Temp | Cobalt | Colligative properties | Columbium | Copper | Dysprosium | Ekasilicon | Element 1 | Element 10 | Element 11 | Element 2 | Element 3 | Element 4 | Element 5 | Element 6 | Element 7 | Element 8 | Element 85 | Element 86 | Element 87 | Element 88 | Element 89 | Element 9 | Element 90 | Element 91 | Element 92 | Element 93 | Element mercury | Erbium | Europium | Florine | Fluid Dynamics | Fluid Mechanics | Fluorine | Fluoro | Francium | Gadolinium | Gallium | Germanium | Glucinium | Gold | Hafnium | Hafnium/Temp | Helium | Holmium | Hydrogen | Hydrogen/Temp | Indium | Iodine | Iodo | Iridium | Iridium (element) | Iron | Iron/Temp | Kalium | Krypton | Krypton (element) | Lanthanum | Lanthanum/Temp | Lead | Liquid mechanics | Liquid nitrogen | List of biochemistry topics | List of chemistry topics | Lithium | Lutetium | Magnesium | Manganese | Manganese/Temp | Mechanics of fluids | Mercury,(element)

 

Compose Your Message

Your Email Address or Pen Name (optional):
Subject:
Your Message:
 

 

 

 

 

 

This article is licensed under the GNU Free Documentation License. It uses material from the Wikipedia article "Vapor pressure".

 

Contact UsPrivacy Statement & Terms of Use

 
Copyright © 1999-2003 Knowledgerush.com. All rights reserved.