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Difference between revisions of "Open system"

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== Open O2k-Chamber ==
== Open O2k-Chamber ==
The term "open O2k-Chamber" refers to a situation in which the liquid phase is allowed to equilibrate with a gas phase. The liquid phase is defined as the system, which is then open for the exchange of oxygen with the gas phase, finally resulting in a stable oxygen signal with a [[oxygen flux |slope over time]] of zero. Insert the stopper fully, siphon off any liquid from the receptacle of the stopper, and remove the stopper to a position defined by [[Stopper-Spacer]] to include an optimum volume of the gas phase obove the stirred liquid phase.
:::: The term "open O2k-Chamber" refers to a situation in which the liquid phase is allowed to equilibrate with a gas phase. The liquid phase is defined as the system, which is then open for the exchange of oxygen with the gas phase, finally resulting in a stable oxygen signal with a [[oxygen flux |slope over time]] of zero. Insert the stopper fully, siphon off any liquid from the receptacle of the stopper, and remove the stopper to a position defined by [[Stopper-Spacer]] to include an optimum volume of the gas phase obove the stirred liquid phase.


:: '''SOP''': Β»[[MiPNet06.03 POS-Calibration-SOP]]
:::: '''SOP''': Β»[[MiPNet06.03 POS-Calibration-SOP]]

Revision as of 09:23, 15 May 2016


high-resolution terminology - matching measurements at high-resolution


Open system

Description

An open system is a system with boundaries that allow external exchange of energy and matter; the surroundings are merely considered as a source or sink for quantities transferred across the system boundaries (external flows, Iext).


Reference: Gnaiger 1993 Pure Appl Chem


MitoPedia concepts: MiP concept 


MitoPedia methods: Respirometry 





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HRR: Theory 


Open O2k-Chamber

The term "open O2k-Chamber" refers to a situation in which the liquid phase is allowed to equilibrate with a gas phase. The liquid phase is defined as the system, which is then open for the exchange of oxygen with the gas phase, finally resulting in a stable oxygen signal with a slope over time of zero. Insert the stopper fully, siphon off any liquid from the receptacle of the stopper, and remove the stopper to a position defined by Stopper-Spacer to include an optimum volume of the gas phase obove the stirred liquid phase.
SOP: Β»MiPNet06.03 POS-Calibration-SOP