Compressibility factor (gases)/Related Articles: Difference between revisions
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==Parent topic== | |||
{{r|Engineering}} | |||
{{r|Physics}} | |||
==Subtopics== | |||
{{r|Chemical engineering}} | |||
==Other related topics== | |||
{{r|Ideal gas law}} | |||
{{r|Gas compressor}} | |||
{{r|Intermolecular forces}} | |||
{{r|Molar gas constant}} | |||
{{r|Molecular mass}} | |||
{{r|Van der Waals equation}} | |||
==Articles related by keyphrases (Bot populated)== | |||
{{r|Molar volume}} |
Latest revision as of 17:00, 31 July 2024
- See also changes related to Compressibility factor (gases), or pages that link to Compressibility factor (gases) or to this page or whose text contains "Compressibility factor (gases)".
Parent topic
- 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]
- Physics [r]: The study of forces and energies in space and time. [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]
- Ideal gas law [r]: Relates pressure, volume and temperature for hypothetical gases of atoms or molecules with negligible intermolecular forces. [e]
- Gas compressor [r]: A machine that increases the pressure of a gas by reducing its volume. [e]
- Intermolecular forces [r]: Non-covalent forces between atoms and molecules; often synonymous with Van der Waals forces. [e]
- Molar gas constant [r]: A physical constant which is featured in a large number of fundamental equations in the physical sciences, such as the ideal gas law and the Nernst equation, and it is equivalent to the Boltzmann constant, but expressed in units of energy [e]
- Molecular mass [r]: The mass of a molecule expressed in unified atomic mass units. [e]
- Van der Waals equation [r]: An equation of state for a fluid composed of particles that have a non-zero size and a pairwise attractive inter-particle force. [e]
- Molar volume [r]: The volume (symbol Vm) occupied by one mole of a substance at a given temperature and pressure. [e]
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