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- [[File:Pressure-force Mitchell.png|right|400px|link=pressure]] Nobel Prize for Chemistry in 1978 for his discovery of the chemiosmotic mechanism of ATP synthesis.894 bytes (130 words) - 10:56, 6 May 2024
- |title=Mitchell P (1966) Chemiosmotic coupling in oxidative and photosynthetic phosphorylation. Biochim Biophys A ...mation. See also Editorial in this issue by Peter R. Rich. Original title: CHEMIOSMOTIC COUPLING IN OXIDATIVE AND PHOTOSYNTHETIC PHOSPHORYLATION, by Peter Mitchell6 KB (899 words) - 11:57, 9 May 2024
- [[File:Pressure-force Einstein.png|right|400px|link=pressure]] {{Template:Force and pressure}}3 KB (391 words) - 09:26, 1 May 2024
- |title=Gnaiger E (2017) Protonmotive force and chemiosmotic pressure: a generalization of non-ohmic flux control of the proton leak. MiP2017. ...osmotic pressure. In a straight application of the concept of chemiosmotic pressure, an approximately semi-logarithmic dependence is predicted between proton l7 KB (945 words) - 13:52, 3 January 2021
- |title=The protonmotive force under pressure: an isomorphic analysis.5 KB (637 words) - 22:17, 4 July 2022
- ...th ed. https://doi.org/10.26124/bec:2020-0002 - '''Chapter 8: Protonmotive pressure and respiratory control''' ...ial and the protonmotive force, connecting the ideal gas equation, osmotic pressure, the [[Boltzmann constant]] and [[gas constant]] with [[Fick 1855 Pogg Ann9 KB (1,076 words) - 13:10, 18 October 2022
- ...oted in the Boltzmann equation. It leads to the realization, that the flux-pressure concept (such as Fick's law of diffusion) rather than flux-force relationsh8 KB (1,154 words) - 14:59, 13 February 2020
- ...ial and the protonmotive force, connecting the ideal gas equation, osmotic pressure, the [[Boltzmann constant]] and [[gas constant]] with [[Fick 1855 Pogg Ann ...[[Gnaiger Erich |Erich Gnaiger]] (AT) presents the concept of protonmotive pressure in discussion with [[Mazat Jean-Pierre |Jean-Pierre Mazat]] (FR) and partic7 KB (787 words) - 09:15, 4 October 2022
- ::::* Section 2.1: Fuel oxidation, chemiosmotic coupling, and oxidative phosphorylation (OXPHOS) rely on electron transferr :::::: ''Comment'': Chemiosmotic coupling and OXPHOS rely not only on electron transferring redox active cen6 KB (961 words) - 19:52, 16 January 2023
- ...g Communications. From Peter Mitchellβs protonmotive force to protonmotive pressure: elements of the science of bioenergetics. ...ial and the protonmotive force, connecting the ideal gas equation, osmotic pressure, the [[Boltzmann constant]] and [[gas constant]] with [[Fick 1855 Pogg Ann10 KB (1,322 words) - 11:29, 21 October 2022
- ...ial and the protonmotive force, connecting the ideal gas equation, osmotic pressure, the [[Boltzmann constant]] and [[gas constant]] with [[Fick 1855 Pogg Ann ...] ''pmF'' = Ξ<sub>m</sub>''F''<sub>H<sup>+</sup></sub> and '''protonmotive pressure Ξ<sub>m</sub>''Ξ ''<sub>H<sup>+</sup></sub>'''13 KB (1,719 words) - 09:08, 3 October 2022
- ...l symbol Ξp for the ''pmF'' with reference to the proton, and Ξ''p'' for a pressure difference. Or do iconic symbols have a clear advantage in general communic ...nergy transformations, such as changes in temperature d''T'' or barometric pressure d''p''.12 KB (2,009 words) - 10:47, 19 October 2022
- |Erich Gnaiger: Protonmotive force and chemiosmotic pressure: a generalization of non-ohmic flux control of the proton leak. [http://www10 KB (1,320 words) - 15:42, 8 June 2020
- ...β Richard Altmannβs bioblasts are the systematic unit of bioenergetics and chemiosmotic coupling studied in living cells and mitochondrial preparations. A rigorous ...ar. Why should we consider Fickβs linear law of diffusion and protonmotive pressure in the control of flux?89 KB (12,074 words) - 17:54, 6 May 2024
- :::: '''Handling:''' Be careful not to apply pressure against, or to shock, the inner glass capillary tube. ...efer to the classical literature on bioenergetics and the discovery of the chemiosmotic coupling mechanism, the quantification of H+/O2 stoichiometric ratios for p37 KB (5,713 words) - 12:13, 28 February 2023
- ...f 153''' Morelli AM, Ravera S, Calzia D, Panfoli I (2019) An update of the chemiosmotic theory as suggested by possible proton currents inside the coupling membran :::: '''3.7. Ref 193''' Bertero E, Maack C (2022) Rethinking Mitchell's chemiosmotic theory: potassium dominates over proton flux to drive mitochondrial F1Fo-AT135 KB (18,142 words) - 13:29, 1 May 2024