Advancement: Difference between revisions

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|abbr=d<sub>tr</sub>''ΞΎ''
|abbr=d<sub>tr</sub>''ΞΎ''
|description=In an isomorphic analysis, any form of [[flow]] is the '''advancement''' of a process per unit of time, expressed in a specific motive unit [MUβˆ™s<sup>-1</sup>], ''e.g.'', ampere for electric flow or current [A≑Cβˆ™s<sup>-1</sup>], watt for heat flow [W≑Jβˆ™s<sup>-1</sup>], and for chemical flow the unit is [molβˆ™sΒ­<sup>-1</sup>]. The corresponding isomorphic [[force]]s are the partial exergy (Gibbs energy) changes per advancement [Jβˆ™MU<sup>-1</sup>], expressed in volt for electric force [V≑Jβˆ™C<sup>-1</sup>], dimensionless for thermal force, and for chemical force the unit is [Jβˆ™mol<sup>-1</sup>], which deserves a specific acronym ([Jol]) comparable to volt.
|description=In an isomorphic analysis, any form of [[flow]] is the '''advancement''' of a process per unit of time, expressed in a specific motive unit [MUβˆ™s<sup>-1</sup>], ''e.g.'', ampere for electric flow or current [A≑Cβˆ™s<sup>-1</sup>], watt for heat flow [W≑Jβˆ™s<sup>-1</sup>], and for chemical flow the unit is [molβˆ™sΒ­<sup>-1</sup>]. The corresponding isomorphic [[force]]s are the partial exergy (Gibbs energy) changes per advancement [Jβˆ™MU<sup>-1</sup>], expressed in volt for electric force [V≑Jβˆ™C<sup>-1</sup>], dimensionless for thermal force, and for chemical force the unit is [Jβˆ™mol<sup>-1</sup>], which deserves a specific acronym ([Jol]) comparable to volt.
|info=[[Gnaiger_1993 _PAC]]
|info=[[Gnaiger_1993_Pure Appl Chem]]
}}
}}
{{MitoPedia concepts
{{MitoPedia concepts
|mitopedia concept=MiP concept
|mitopedia concept=MiP concept, Ergodynamics
}}
}}
{{MitoPedia methods}}
{{MitoPedia O2k and high-resolution respirometry}}
{{MitoPedia topics}}

Revision as of 20:12, 23 August 2018


high-resolution terminology - matching measurements at high-resolution


Advancement

Description

In an isomorphic analysis, any form of flow is the advancement of a process per unit of time, expressed in a specific motive unit [MUβˆ™s-1], e.g., ampere for electric flow or current [A≑Cβˆ™s-1], watt for heat flow [W≑Jβˆ™s-1], and for chemical flow the unit is [molβˆ™s-1]. The corresponding isomorphic forces are the partial exergy (Gibbs energy) changes per advancement [Jβˆ™MU-1], expressed in volt for electric force [V≑Jβˆ™C-1], dimensionless for thermal force, and for chemical force the unit is [Jβˆ™mol-1], which deserves a specific acronym ([Jol]) comparable to volt.

Abbreviation: dtrΞΎ

Reference: Gnaiger_1993_Pure Appl Chem


MitoPedia concepts: MiP concept, Ergodynamics 






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