Advancement per volume: Difference between revisions
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{{MitoPedia | {{MitoPedia | ||
|abbr=d<sub>tr</sub>''Y'' | |abbr=d<sub>tr</sub>''Y'' | ||
|description='''[[Advancement]] per volume''' or volume-specific advancement, d<sub>tr</sub>''Y'', is particularly introduced for chemical reactions, d<sub>r</sub>''Y'', where it has the dimension of a [[concentration]], Δ<sub>r</sub>''Y'' = Δ''c<sub>i</sub>''/''ν<sub>i</sub>''. | |description='''[[Advancement]] per volume''' or volume-specific advancement, d<sub>tr</sub>''Y'', is particularly introduced for chemical reactions, d<sub>r</sub>''Y'', where it has the dimension of a [[concentration]]. In a closed system, specific advancement is the change in concentration divided by the stoichiometric number, Δ<sub>r</sub>''Y'' = Δ''c<sub>i</sub>''/''ν<sub>i</sub>''. In general, Δ''c<sub>i</sub>'' is replaced by the partial change of concentration, Δ<sub>r</sub>''c<sub>i</sub>'', which contributes to the total change of concentration, Δ''c<sub>i</sub>''. | ||
|info=[[Gnaiger_1993_Pure Appl Chem]] | |info=[[Gnaiger_1993_Pure Appl Chem]] | ||
}} | }} |
Revision as of 01:28, 24 August 2018
Description
Advancement per volume or volume-specific advancement, dtrY, is particularly introduced for chemical reactions, drY, where it has the dimension of a concentration. In a closed system, specific advancement is the change in concentration divided by the stoichiometric number, ΔrY = Δci/νi. In general, Δci is replaced by the partial change of concentration, Δrci, which contributes to the total change of concentration, Δci.
Abbreviation: dtrY
Reference: Gnaiger_1993_Pure Appl Chem
MitoPedia concepts:
Ergodynamics