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  • * <u>''N''</u>: particle or molecular format of a count; MU = x * <u>''n''</u>: chemical or molar format of amount; MU = mol
    1 KB (164 words) - 19:29, 30 December 2020
  • ...which depends on the energy transformation under study and on the chosen [[format]]. Fundamental MU for electrochemical transformations are: * MU = x, for the particle or molecular format, <u>''N''</u>
    2 KB (336 words) - 14:30, 1 December 2020
  • ...e [[electrical format]], or the '''pmf''' from the electrical to the molar format. ...e [[electrical format]], or the '''pmf''' from the electrical to the molar format.
    5 KB (801 words) - 12:36, 27 January 2020
  • == Velocity in diffusion: from particle format to chemical format == ...the proportionality constant (in the [[Motive unit |particle or molecular format, <u>''N''</u>]]),
    3 KB (524 words) - 18:53, 28 December 2018
  • ...substance B given in moles. The definition applies to pure substance. The molar mass allows for converting between the mass of a substance and its amount f ...efinition, the term "molecular weight" is widely used as a synonym for the molar mass.
    4 KB (609 words) - 13:15, 24 September 2022
  • ...and thus relates the [[electrical format]] <u>''e''</u> [C] to the [[molar format]] <u>''n''</u> [mol]. The Farady constant, ''F'' = ''e''·''N''<sub>A</sub>
    1 KB (167 words) - 10:19, 27 April 2022
  • ...entary B. ''Q''<sub>''<u>n</u>''B</sub> [C·mol<sup>-1</sup>] is charge per molar amount of B. ...as "H<sup>+</sup> ''<u>e</u>'' m Δ ''F''" or "hydrogen ion \ in electrical format \ motive \ difference \ force", in brief: protonmotive force ''pmF''. If yo
    12 KB (2,009 words) - 10:47, 19 October 2022
  • ...lar [[format]], advancement is expressed in the same unit as amount [mol]. Molar advancement and amount are distinguished as the dynamic expression related ...bs energy) and [[Intensive quantity |intensive quantities]] (expressed per molar advancement; Gibbs [[force]]).
    6 KB (952 words) - 04:30, 20 March 2023
  • ...sub><u>''n''</u>H<sup>+</sup>''a''</sub>, and by ­0.06 V in the electrical format, ∆<sub>d</sub>''F''<sub><u>''e''</u>H<sup>+</sup>''a''</sub>. Considering ...force per entity H<sup>+</sup> (not per e<sup>-</sup>) expressed in any MU-format. ∆<sub>el</sub>''F''<sub>p<sup>+</sup></sub> is the partial protonmotive
    7 KB (1,194 words) - 21:50, 10 July 2022
  • ...ount of substance concentration [[[Cohen 2008 IUPAC Green Book |24]]]; the molar and count formats are distinguished as ''n''<sub>B</sub> and ''N''<sub>B</s | count format || [[Format]] || <u>''N''</u> || [x] || Tab. 8.1-8.4; Fig. 8.6, 8.9
    15 KB (2,142 words) - 23:29, 6 February 2021
  • |format=broadtable ...Dimension, Elementary entity, International System of Units, Number, Mass, Molar mass, Unit, Volume, Quantity,
    2 KB (304 words) - 09:36, 28 May 2022
  • ...bols for thermodynamic quantities and let them represent the intensive, or molar, quantities''" ([[Alberty 1980 Physical chemistry]], p. 4). ...l distinction between size-specific molar quantities and process-intensive molar quantities, such a simplification is acceptable only when restricted to the
    17 KB (2,612 words) - 06:35, 9 February 2024
  • :::: The molar volume of an ideal gas at a pressure of 100 kPa (1 bar) and 0 °C is 22.711 |format=broadtable
    2 KB (367 words) - 20:22, 12 December 2021
  • <big>'''Eq. a''': ''p''·''V'' = ''n''·''RT'' ; the fundamental format: pressure-volume work [Pa·m<sup>3</sup>]=[J] </big> ...g>'''Eq. c''': ''V''·''n''<sup>-1</sup> = ''RT''·''p''<sup>-1</sup> ; the molar volume, ''V''<sub>m</sub> [m<sup>3</sup>·mol<sup>-1</sup>]=[J·mol<sup>-1<
    12 KB (1,907 words) - 10:24, 27 October 2022
  • ...his is not a commonly used expression, but the inverse is defined as the [[molar volume]] of a pure substance ([[Cohen 2008 IUPAC Green Book |IUPAC]]), ''V' |format=broadtable
    3 KB (577 words) - 10:28, 25 January 2021
  • ...ount of substance concentration [[[Cohen 2008 IUPAC Green Book |24]]]; the molar and count formats are distinguished as ''n''<sub>B</sub> and ''N''<sub>B</s ...ub>·''n''<sub>''X''</sub><sup>-1</sup> [x·mol<sup>-1</sup>] for the amount format ''<u>n</u>'',
    20 KB (3,370 words) - 15:09, 12 December 2022
  • ...Δ<sub>k</sub>''F''<sub><u>''n''</u>O2</sub> [kJ/mol], into the electrical format, Δ<sub>k</sub>''F''<sub><u>''e''</u>O2</sub> [V]. Which physicochemical co ...d thus relates the [[electrical format]], <u>''e''</u> [C], to the [[molar format]], <u>''n''</u> [mol]. The Farady constant, ''F'' = ''e''·''N''<sub>A</sub
    36 KB (5,157 words) - 12:10, 12 April 2024
  • ..., respectively. If a concentration difference is expressed in the particle format [x·m<sup>-3</sup>] and multiplied by ''kT'' [J·x<sup>-1</sup>], we obtain ...Δ<sub>k</sub>''F''<sub><u>''n''</u>O2</sub> [kJ/mol], into the electrical format, Δ<sub>k</sub>''F''<sub><u>''e''</u>O2</sub> [V]. Which physicochemical co
    8 KB (1,154 words) - 14:59, 13 February 2020
  • |molar mass=324.13 |format=broadtable
    5 KB (639 words) - 19:25, 25 August 2023
  • |molar mass=551.1 |format=broadtable
    5 KB (732 words) - 15:07, 17 October 2022

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