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Difference between revisions of "Extensive quantity"

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{{MitoPedia
{{MitoPedia
|description='''Extensive quantities''' pertain to a total system, e.g. [[oxygen flow]]. An extensive quantity increases proportional with system size. The magnitude of an extensive quantity is completely additive for non-interacting subsystems, such as mass or flow expressed per defined system. The magnitude of these quantities depends on the extent or size of the system ([[Cohen 2008 IUPAC Green Book |Cohen et al 2008]]).
|description='''Extensive quantities''' pertain to a total system, e.g. [[oxygen flow]]. An extensive quantity increases proportional with system size. The magnitude of an extensive quantity is completely additive for non-interacting subsystems, such as mass or flow expressed per defined system. The magnitude of these quantities depends on the extent or size of the system ([[Cohen 2008 IUPAC Green Book |Cohen et al 2008]]).
|info=[[Gnaiger_1993 _PAC]]
|info=[[Gnaiger_1993_Pure Appl Chem]], [[MitoEAGLE preprint 2018-02-08]]
}}
}}
{{MitoPedia concepts
{{MitoPedia concepts
|mitopedia concept=MiP concept
|mitopedia concept=MiP concept, Ergodynamics
}}
}}
{{MitoPedia methods
{{MitoPedia methods
|mitopedia method=Respirometry
|mitopedia method=Respirometry
}}
}}
{{MitoPedia O2k and high-resolution respirometry}}
{{MitoPedia topics}}
<gallery heights="350px" mode="default" perrow="4" widths="350px">
File:Rate.png |'''Figure 7. Normalization of rate.''' '''(A)''' Cell respiration is normalized for (1) the experimental '''Sample''' (flow per object, mass-specific flux, or cell-volume-specific flux); or (2) for the '''Chamber''' volume. Flow per object and flow per system are extensive quantities.
</gallery>
== Compare ==
::::* [[Specific quantity]]
::::* [[Intensive quantity]], [[Force]]
{{Labeling
{{Labeling
|instruments=Theory
|instruments=Theory
}}
}}

Revision as of 19:49, 23 August 2018


high-resolution terminology - matching measurements at high-resolution


Extensive quantity

Description

Extensive quantities pertain to a total system, e.g. oxygen flow. An extensive quantity increases proportional with system size. The magnitude of an extensive quantity is completely additive for non-interacting subsystems, such as mass or flow expressed per defined system. The magnitude of these quantities depends on the extent or size of the system (Cohen et al 2008).


Reference: Gnaiger_1993_Pure Appl Chem, MitoEAGLE preprint 2018-02-08


MitoPedia concepts: MiP concept, Ergodynamics 


MitoPedia methods: Respirometry 




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HRR: Theory