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  • |abbr=''B'' [J] The ''free'' energy change (Helmoltz or Gibbs; d''A'' or d''G'') is the ''total'' energy change (total inner energy or en
    2 KB (302 words) - 15:05, 31 December 2018
  • |abstract=Biochemical '''cell ergometry''' aims at measurement of ''J''<sub>O2,max</sub> (compare ''V''<sub>O2,max</sub> in exercise ergometry of ...ub>=βˆ‚''G''/βˆ‚<sub>k</sub>''ΞΎ''<sub>O2</sub>; typically -470 kJ/mol or -0.47 J/Β΅mol O<sub>2</sub>) to obtain the mass-specific aerobic input power [WΒ·kg
    8 KB (1,273 words) - 18:16, 7 November 2020
  • |abbr=''j<sub>P-L</sub>'' ...tio and ''P-L'' control efficiency are related by a hyperbolic function, ''j<sub>P-L</sub>'' = 1-RCR<sup>-1</sup>.
    9 KB (1,431 words) - 20:35, 19 March 2022
  • ...of bioenergetics studies. J Biol Chem 207:101140. https://doi.org/10.1016/j.jbc.2021.101140 |journal=J Biol Chem
    6 KB (833 words) - 12:11, 27 March 2023
  • ...electron transfer system. J Biol Chem 300:105470. https://doi.org/10.1016/j.jbc.2023.105470 ::::# '''[[Complex II ambiguities]]''' ([[Gnaiger 2024 J Biol Chem |Gnaiger 2024]]): The prosthetic group FADH<sub>2</sub> appears e
    8 KB (1,113 words) - 22:04, 3 March 2024
  • |abbr=''E''; various [J] ...ription=Heat and work are forms of '''energy''' [1 cal = 4.184 J]. Energy [J] is a fundamental term that is used in physics and physical chemistry with
    4 KB (632 words) - 17:01, 11 July 2022
  • |abbr=''A'' [JΒ·mol<sup>-1</sup>] ...n [11], which is the negative Gibbs [[force]] of reaction (derivative of [[Gibbs energy]] per [[advancement]] of reaction [12]):
    7 KB (902 words) - 12:40, 11 March 2024
  • ...tput forces must be moderately high in relation to input forces, such that Gibbs energy is partially dissipated (mainly as heat in aerobic metabolism) and p ...2</sub>=βˆ‚''G''/βˆ‚<sub>k</sub>ΞΆ<sub>O2</sub>; typically -470 kJ/mol or -0.47 J/Β΅mol O<sub>2</sub>) to obtain the mass-specific aerobic input power [Wβ€’k
    13 KB (2,089 words) - 18:19, 7 November 2020
  • ...hydrogenase, and electron transfer flavoprotein activities in fibroblasts. J Clin Invest 1986;78:205-13. ...pe II: review of the phenotype and report of an unusual glomerulopathy. Am J Med Genet 1989;32:395-401.
    4 KB (566 words) - 17:25, 23 February 2020
  • |info=[[Chance 1955 JBC-III]], [[Gnaiger 2009 Int J Biochem Cell Biol]], [[Gnaiger 2020 BEC MitoPathways]] ...a steady state maintaining a maximum output force (proton motive force or Gibbs force of phosphorylation) under a specific set of boundary conditions, amon
    4 KB (527 words) - 18:46, 1 January 2021
  • ...Because quantities are quantized, thermodynamic terms such as temperature, Gibbs energy, pH, and the protonmotive force ''pmF'' can be defined and accounted ...electron transfer system. J Biol Chem 300:105470. https://doi.org/10.1016/j.jbc.2023.105470
    6 KB (784 words) - 08:54, 6 February 2024
  • ...c flux times force yields volume-specific power, ''P''<sub>''V''</sub> = ''J''Β·''F'' [WΒ·m<sup>-3</sup>]. Then [[Vector |vectoral]] and [[Discontinuous ::::* 'Even in the validity range of the Gibbs formula the relations between chemical rates and affinities may be non-line
    9 KB (1,277 words) - 11:35, 24 October 2022
  • ...r flux-βˆ† pressure law. Isomorphic pressure is always expressed in units Pa=Jβˆ™m<sup>-3</sup>. (4) The linear flux-βˆ† pressure law of diffusion linked ...obscure terminology prevails when confusing pH differences and gradients, Gibbs energy and force or affinity [5,8], force and βˆ† pressure. This is rooted
    7 KB (945 words) - 13:52, 3 January 2021
  • ...|misleading chapters in bioenergetics textbooks]] on potential gradients, Gibbs ''[[energy]]'', protonmotive [[flow]] and [[force]], and finally protonmoti |mipnetlab=AT_Innsbruck_Oroboros, CZ Prague Houstek J
    13 KB (1,719 words) - 09:08, 3 October 2022
  • {Convert the molar format of the Gibbs force of reaction, Ξ”<sub>k</sub>''F''<sub><u>''n''</u>O2</sub> [kJ/mol], i {How are the units of electric energy [J] and electric force [V] related?
    36 KB (5,157 words) - 12:10, 12 April 2024
  • ...ofit:2023-0003.v6 - ''' [[Gnaiger 2024 J Biol Chem |''Published 2023-11-22 J Biol Chem (2024)'']] ...electron transfer system. J Biol Chem 300:105470. https://doi.org/10.1016/j.jbc.2023.105470
    29 KB (3,663 words) - 08:48, 1 May 2024
  • ::::* 16:00-16:30 [[Beleza J|Jorge Beleza]]: Exercise performed during pregnancy as a preventive tool ag ...iderations about diet-induced hypertrophy of adipocytes. - [[Brunetta 2019 J Funct Foods |Β»Recent publication in contextΒ«]]
    33 KB (4,250 words) - 15:07, 2 February 2022
  • ...oes not affect aerobic energy delivery in contracting rat skeletal muscle. J Physiol 565:637-43.]] ...to mitochondrial respiration? In: Schuster S, Rigoulet M, Ouhabi R, Mazat J-P (eds) Modern Trends in Biothermokinetics. Plenum Press, New York, London:
    34 KB (4,820 words) - 04:08, 23 November 2021
  • ...tty liver disease and the associated brain dysfunction. [[Hadjihambi 2022 J Hepatol|Β»Bioblast linkΒ«]] ...arashvili G, Schartner M, Weissenbacher A, Oberhuber R, Resch T, Troppmair J, Γ–fner D, Zoller H, Tilg H, Gnaiger E, Hautz T, Schneeberger S (2022) Mito
    87 KB (11,941 words) - 15:14, 16 November 2023
  • ...e driving ''force'' of chemical reactions is confusingly called an energy (Gibbs ''energy''), whereas it is actually an isomorphic force, linked to the elec ...erobic energy delivery in contracting rat skeletal muscle. - [[Dawson 2005 J Physiol |Β»Bioblast linkΒ«]]
    89 KB (12,074 words) - 17:54, 6 May 2024
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