Difference between revisions of "Hitchman 1983 POS Membrane"
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{{Publication | {{Publication | ||
|title=Hitchman ML, Gnaiger E (1983) A thermodynamic consideration of permeability coefficients of membranes. In: Polarographic Oxygen Sensors. Aquatic and Physiological Applications. Gnaiger E, Forstner H (eds), Springer, Berlin, Heidelberg, New York:31-6. | |title=Hitchman ML, Gnaiger E (1983) A thermodynamic consideration of permeability coefficients of membranes. In: Polarographic Oxygen Sensors. Aquatic and Physiological Applications. Gnaiger E, Forstner H (eds), Springer, Berlin, Heidelberg, New York:31-6. | ||
|info=[[File:PDF.jpg|100px|link=http://wiki.oroboros.at/images/8/83/Hitchman_1983_POS-Membrane.pdf |Bioblast pdf]] | |info=[[File:Gnaiger-Forstner 1983 POS.jpg|left|55px|link=https://www.bioblast.at/index.php/Gnaiger_1983_Springer_POS|POS1983]] [[File:PDF.jpg|100px|link=http://wiki.oroboros.at/images/8/83/Hitchman_1983_POS-Membrane.pdf |Bioblast pdf]] [https://link.springer.com/chapter/10.1007/978-3-642-81863-9_3 Springer link] | ||
|authors=Hitchman ML, Gnaiger | |authors=Hitchman ML, Gnaiger Erich | ||
|year=1983 | |year=1983 | ||
|journal=Springer | |journal=Springer | ||
|abstract=[[File:Gnaiger&Forstner POS 1983.jpg|right|140px|link=Gnaiger 1983 Springer POS|Gnaiger 1983 Springer POS]] | |abstract=[[File:Gnaiger&Forstner POS 1983.jpg|right|140px|link=Gnaiger 1983 Springer POS|Gnaiger 1983 Springer POS]] The permeability coefficient of the membrane appears in various places in this volume either as ''P''<sub>m</sub> with units of [m<sup>2</sup>·s<sup>-1</sup>] or as P<sub>m</sub> with units of [mol·m<sup>-1</sup>·s<sup>-1</sup>·kPa<sup>-1</sup>]. Here we show how these permeability coefficients arise and how they are related. | ||
In: [[Gnaiger 1983 Springer POS |Gnaiger E, Forstner H, eds (1983) Polarographic Oxygen Sensors. Aquatic and Physiological Applications. Springer, Berlin, Heidelberg, New York:370 pp.]] | In: [[Gnaiger 1983 Springer POS |Gnaiger E, Forstner H, eds (1983) Polarographic Oxygen Sensors. Aquatic and Physiological Applications. Springer, Berlin, Heidelberg, New York:370 pp.]] | ||
|mipnetlab=AT Innsbruck Gnaiger E | |mipnetlab=AT Innsbruck Gnaiger E | ||
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{{Keywords: Concentration and pressure}} | {{Keywords: Concentration and pressure}} | ||
== Cited by == | |||
{{Template:Cited by Gnaiger 2020 BEC MitoPathways}} | |||
{{Labeling | {{Labeling | ||
|instruments=Theory | |instruments=Theory | ||
|additional=POS 1983 | |additional=POS 1983, Oxygen solubility, | ||
BEC 2020.2, MitoFit2022Hypoxia | |||
}} | }} |
Latest revision as of 21:51, 9 January 2022
Hitchman ML, Gnaiger E (1983) A thermodynamic consideration of permeability coefficients of membranes. In: Polarographic Oxygen Sensors. Aquatic and Physiological Applications. Gnaiger E, Forstner H (eds), Springer, Berlin, Heidelberg, New York:31-6. |
»
Hitchman ML, Gnaiger Erich (1983) Springer
Abstract:
The permeability coefficient of the membrane appears in various places in this volume either as Pm with units of [m2·s-1] or as Pm with units of [mol·m-1·s-1·kPa-1]. Here we show how these permeability coefficients arise and how they are related.
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Cited by
- Gnaiger E (2020) Mitochondrial pathways and respiratory control. An introduction to OXPHOS analysis. 5th ed. Bioenerg Commun 2020.2. https://doi.org/10.26124/bec:2020-0002
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HRR: Theory
POS 1983, Oxygen solubility, BEC 2020.2, MitoFit2022Hypoxia