LOWEST IMAGINABLE temperature. In classical physics terms, it is the temperature at which all atomic and molecular motion would STOP. So there will be no pressure at this as the molecular momentum of the SYSTEM BECOMES zero.

"> LOWEST IMAGINABLE temperature. In classical physics terms, it is the temperature at which all atomic and molecular motion would STOP. So there will be no pressure at this as the molecular momentum of the SYSTEM BECOMES zero.

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Pressure reaches a value of absolute zero

Fluid Mechanics First Law Thermodynamics in Fluid Mechanics . 7 months ago

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Absolute zero is the LOWEST IMAGINABLE temperature. In classical physics terms, it is the temperature at which all atomic and molecular motion would STOP. So there will be no pressure at this as the molecular momentum of the SYSTEM BECOMES zero.

Posted on 12 Nov 2024, this text provides information on Fluid Mechanics related to First Law Thermodynamics in Fluid Mechanics. Please note that while accuracy is prioritized, the data presented might not be entirely correct or up-to-date. This information is offered for general knowledge and informational purposes only, and should not be considered as a substitute for professional advice.

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