Specific heat ratio/Related Articles: Difference between revisions
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Latest revision as of 07:00, 21 October 2024
- See also changes related to Specific heat ratio, or pages that link to Specific heat ratio or to this page or whose text contains "Specific heat ratio".
Parent topics
- Physics [r]: The study of forces and energies in space and time. [e]
- 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]
- Physical chemistry [r]: The application of physics to macroscopic, microscopic, atomic, subatomic, and particulate phenomena in chemical systems within the field of chemistry traditionally using the principles, practices and concepts of thermodynamics, quantum chemistry, statistical mechanics and kinetics. [e]
- Accidental release source terms [r]: The mathematical equations that estimate the rate at which accidental releases of air pollutants into the atmosphere may occur at industrial facilities. [e]
- Atmospheric reentry [r]: The movement of human-made or natural objects as they enter the atmosphere of a planet from outer space, in the case of Earth from an altitude above the 'edge of space.' [e]
- Entropy (thermodynamics) [r]: Thermodynamic variable S appearing in the second law of thermodynamics. [e]
- Heat capacity [r]: The measure of the heat energy required to increase the temperature of a unit quantity of a substance by a certain temperature interval. [e]
- International System of Units [r]: Metric unit system based on the metre, kilogram, second, ampere, kelvin, mole and candela. [e]
- Specific heat [r]: The ratio of the quantity of heat required to raise the temperature of a body one degree to that required to raise the temperature of an equal mass of water one degree Celsius. [e]
- Thermodynamics [r]: The statistical description of the properties of molecular systems [e]
- Electronic band structure [r]: The very closely spaced energy levels available to electrons in solids, which are separated from each other by energy gaps. [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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