## Description

A **quantity** is the attribute of a phenomenon, body or substance that may be distinguished qualitatively and determined quantitatively. A dimensional quantity is a number (variable, parameter, or constant) connected to its dimension, which is different from 1. {*Quote*} The value of a quantity is generally expressed as the product of a number and a unit. The unit is simply a particular example of the quantity concerned which is used as a reference, and the number is the ratio of the value of the quantity to the unit. {*end of Quote*: Bureau International des Poids et Mesures 2019 The International System of Units (SI), p. 127)}.

**Abbreviation:** *Q*

**Reference:** Gnaiger MitoFit Preprints 2020.4

## Base quantities and count

Quantity Symbol for quantity *Q*Symbol for dimension Name of abstract unit *u*_{Q}Symbol for unit *u*_{Q}[*]elementary entity ^{*,$}*U*_{X}U elementary unit x count ^{*,$}*N*_{X}=*N*ยท*U*_{X}X elementary unit x amount of substance ^{*,ยง}*n*_{X}=*N*_{X}ยท*N*_{A}^{-1}N mole mol charge ^{*,โฌ}*Q*_{el}=*z*_{X}ยท*e*ยท*N*_{X}IยทT coulomb C = Aยทs length *l*L meter m mass *m*M kilogram kg time *t*T second s electric current *I*I ampere A thermodynamic temperature *T*ฮ kelvin K luminous intensity *I*_{v}J candela cd

- [*] SI units, except for the canonical 'elementary unit' [x]. The following footnotes are canonical comments, related to iconic symbols.
^{*}For the elementary quantities*N*_{X},*n*_{X}, and*Q*_{el}, the entity-type*X*of the elementary entity*U*_{X}has to be specified in the text and indicated by a subscript:*n*_{O2};*N*_{ce};*Q*_{el}.^{$}Count*N*_{X}equals the number of elementary entities*U*_{X}. In the SI, the quantity 'count' is explicitly considered as an exception: "Each of the seven base quantities used in the SI is regarded as having its own dimension. .. All other quantities, with the exception of counts, are derived quantities" (Bureau International des Poids et Mesures 2019 The International System of Units (SI)). An elementary entity*U*_{X}is a material unit, it is not a count (*U*_{X}is not a number of*U*_{X}).*N*_{X}has the dimension X of a count and*U*_{X}has the dimension U of an elementary entity; both quantities have the same abstract unit, the 'elementary unit' [x].^{ยง}Amount*n*_{X}is an elementary quantity, converting the elementary unit [x] into the SI base unit mole [mol] using the Avogadro constant*N*_{A}.^{โฌ}Charge is a derived SI quantity. Charge is an elementary quantity, converting the elementary unit [x] into coulombs [C] using the elementary charge*e*, or converting moles [mol] into coulombs [C] using the Faraday constant*F*.*z*_{X}is the charge number per elementary entity*U*_{X}, which is a constant for any defined elementary entity*U*_{X}.*Q*_{el}=*z*_{X}ยท*F*ยท*n*_{X}

## Quantities and units

**1.1. Quantity**: "property of a phenomenon, body, or substance, where the property has a magnitude that can be expressed as a number and a reference. .. The generic concept โquantityโ can be divided into several levels of specific concepts". The generic concept 'length' can be divided into radius of a circle or wavelength. "A reference can be a measurement unit, a measurement procedure, a reference material, or a combination of such. .. The symbols for quantities are written in italics. .. The concept โquantityโ may be generically divided into, e.g. โphysical quantityโ, โchemical quantityโ, and โbiological quantityโ, or base quantity and derived quantity."**1.2. Kind of quantity**: "aspect common to mutually comparable quantities. .. The quantities diameter, circumference, and wavelength are generally considered to be quantities of the same kind, namely of the kind of quantity called length.**1.7. Quantity dimension; dimension of a quantity**: "expression of the dependence of a quantity on the base quantities of a system of quantities as a product of powers of factors corresponding to the base quantities, omitting any numerical factor."**1.19. Quantity value; value of a quantity**: "number and reference together expressing magnitude of a quantity"

## References

Bioblast link | Reference | Year |
---|---|---|

Bureau International des Poids et Mesures 2019 The International System of Units (SI) | Bureau International des Poids et Mesures (2019) The International System of Units (SI). 9th edition:117-216. ISBN 978-92-822-2272-0 | 2019 |

Gnaiger 2020 BEC MitoPathways | Gnaiger E (2020) Mitochondrial pathways and respiratory control. An introduction to OXPHOS analysis. 5^{th} ed. Bioenerg Commun 2020.2. https://doi.org/10.26124/bec:2020-0002 | 2020 |

Gnaiger 2020 MitoFit x | Gnaiger E (2021) The elementary unit โ canonical reviewer's comments on: Bureau International des Poids et Mesures (2019) The International System of Units (SI) 9th ed. MitoFit Preprints 2020.04.v2. https://doi.org/10.26124/mitofit:200004.v2 | 2021 |

Gnaiger 2024 MitoFit | Gnaiger E (2024) Addressing the ambiguity crisis in bioenergetics and thermodynamics. MitoFit Preprints 2024.3. https://doi.org/10.26124/mitofit:2024-0003 | 2024 |

**MitoPedia concepts:**
Ergodynamics

**MitoPedia O2k and high-resolution respirometry:**
Oroboros QM