Stoichiometric number: Difference between revisions

From Bioblast
No edit summary
No edit summary
ย 
(3 intermediate revisions by the same user not shown)
Line 1: Line 1:
{{MitoPedia
{{MitoPedia
|abbr=''ฮฝ''<sub>X</sub>
|abbr=''ฮฝ''<sub>X</sub>
|description=The sign of the '''stoichiometric number''', ''ฮฝ''<sub>X</sub>, is determined by the direction of the transformation (positive for products, negative for substrates), and the magnitude of ''ฮฝ''<sub>X</sub> is determined by the stoichiometric form. For instance, ''ฮฝ''<sub>A</sub>=-1 in the reaction 0 = -1 A + 2 B (glucose converted to 2 lactate), but ''ฮฝ''<sub>A</sub>=-1/6 in the reaction 0 = -1/6 A - 1 B + 1 C (1/6 glucose and O<sub>2</sub> converted to H<sub>2</sub>CO<sub>3</sub>).
|description=The sign of the '''stoichiometric number''' ''ฮฝ''<sub>X</sub> is determined by the nonspatial direction of the transformation (positive for products, negative for substrates), and the magnitude of ''ฮฝ''<sub>X</sub> is determined by the stoichiometric form. For instance, ''ฮฝ''<sub>A</sub>=-1 in the reaction 0 = -1 A + 2 B (-1 glucose converted to +2 lactate), but ''ฮฝ''<sub>A</sub>=-1/6 in the reaction 0 = -1/6 A - 1 B + 1 C (-1/6 glucose and -1 O<sub>2</sub> converted to +1 H<sub>2</sub>CO<sub>3</sub>).
|info=[[Gnaiger 2020 BEC MitoPathways]]
}}
}}
{{Keywords: Force and membrane potential}}
{{Keywords: Force and membrane potential}}



Latest revision as of 05:44, 16 September 2022


high-resolution terminology - matching measurements at high-resolution


Stoichiometric number

Description

The sign of the stoichiometric number ฮฝX is determined by the nonspatial direction of the transformation (positive for products, negative for substrates), and the magnitude of ฮฝX is determined by the stoichiometric form. For instance, ฮฝA=-1 in the reaction 0 = -1 A + 2 B (-1 glucose converted to +2 lactate), but ฮฝA=-1/6 in the reaction 0 = -1/6 A - 1 B + 1 C (-1/6 glucose and -1 O2 converted to +1 H2CO3).

Abbreviation: ฮฝX

Reference: Gnaiger 2020 BEC MitoPathways


Questions.jpg


Click to expand or collaps
Bioblast links: Force and membrane potential - >>>>>>> - Click on [Expand] or [Collapse] - >>>>>>>
Fundamental relationships
ยป Force
ยป Affinity
ยป Flux
ยป Advancement
ยป Advancement per volume
ยป Stoichiometric number
mt-Membrane potential and protonmotive force
ยป Protonmotive force
ยป Mitochondrial membrane potential
ยป Chemical potential
ยป Faraday constant
ยป Format
ยป Uncoupler
O2k-Potentiometry
ยป O2k-Catalogue: O2k-TPP+ ISE-Module
ยป O2k-Manual: MiPNet15.03 O2k-MultiSensor-ISE
ยป TPP - O2k-Procedures: Tetraphenylphosphonium
ยป Specifications: MiPNet15.08 TPP electrode
ยป Poster
ยป Unspecific binding of TPP+
ยป TPP+ inhibitory effect
O2k-Fluorometry
ยป O2k-Catalogue: O2k-FluoRespirometer
ยป O2k-Manual: MiPNet22.11 O2k-FluoRespirometer manual
ยป Safranin - O2k-Procedures: MiPNet20.13 Safranin mt-membranepotential / Safranin
ยป TMRM - O2k-Procedures: TMRM
O2k-Publications
ยป O2k-Publications: mt-Membrane potential
ยป O2k-Publications: Coupling efficiency;uncoupling



MitoPedia concepts: Ergodynamics 

Cookies help us deliver our services. By using our services, you agree to our use of cookies.