Partial pressure/Related Articles: Difference between revisions
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imported>Milton Beychok (→Other related topics: Added a link) |
imported>Milton Beychok (→Other related topics: Added a link) |
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==Other related topics== | ==Other related topics== | ||
{{r|Concentration}} | |||
{{r|Gas}} | {{r|Gas}} | ||
{{r|Henry's law}} | {{r|Henry's law}} |
Revision as of 23:38, 3 February 2009
- See also changes related to Partial pressure, or pages that link to Partial pressure or to this page or whose text contains "Partial pressure".
Parent topics
- Chemistry [r]: The science of matter, or of the electrical or electrostatical interactions of matter. [e]
Subtopics
- Chemical engineering [r]: a branch of engineering that uses chemistry, biology, physics, and math to solve problems involving fuel, drugs, food, and many other products [e]
- Concentration [r]: In science, engineering and in general common usage: the measure of how much of a given substance there is in a given mixture of substances. [e]
- Gas [r]: One of the major states of matter (i.e., gas, liquid, solid and plasma). [e]
- Henry's law [r]: The relationship between the amount of gas dissolved in a liquid and the partial pressure of that gas above the liquid. [e]
- Ideal gas law [r]: Relates pressure, volume and temperature for hypothetical gases of atoms or molecules with negligible intermolecular forces. [e]
- John Dalton [r]: English pioneer chemist and meteorologist (1766-1844), formulated the first quantitative atomic theory. [e]
- Law of mass action [r]: Add brief definition or description
- Mole fraction [r]: A measure of the concentration of a component substance in a mixture of substances and defined as the number of moles of a component substance in a mixture divided by the total number of moles of the mixture. [e]
- Pressure [r]: A ratio equal to the force applied perpendicular to the surface of the area divided by that area (force/area). [e]
- Raoult's law [r]: Add brief definition or description
- Vapor pressure [r]: The pressure of a vapor in equilibrium with its liquid or solid phase. [e]