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Volume fraction

Proportion of the total volume of a constituent part

In chemistry and fluid mechanics, the volume fraction \varphi _{i} is defined as the volume of a constituent Vi divided by the volume of all constituents of the mixture V prior to mixing:

\varphi _{i}={\frac {V_{i}}{\sum _{j}V_{j}}}.

Being dimensionless, its unit is 1; it is expressed as a number, e.g., 0.18. It is the same concept as volume percent (vol%) except that the latter is expressed with a denominator of 100, e.g., 18%.

The volume fraction coincides with the volume concentration in ideal solutions where the volumes of the constituents are additive (the volume of the solution is equal to the sum of the volumes of its ingredients).

The sum of all volume fractions of a mixture is equal to 1:

\sum _{i=1}^{N}V_{i}=V;\qquad \sum _{i=1}^{N}\varphi _{i}=1.

The volume fraction (percentage by volume, vol%) is one way of expressing the composition of a mixture with a dimensionless quantity; mass fraction (percentage by weight, wt%) and mole fraction (percentage by moles, mol%) are others.

01Volume concentration and volume percent

Volume percent is the concentration of a certain solute, measured by volume, in a solution. It has as a denominator the volume of the mixture itself, as usual for expressions of concentration, rather than the total of all the individual components’ volumes prior to mixing:

{\text{volume percent}}={\frac {\text{volume of solute}}{\text{volume of solution}}}\times 100\%={\text{volume concentration}}\times 100\%.

Volume percent is usually used when the solution is made by mixing two fluids, such as liquids or gases. However, percentages are only additive for ideal gases.

The percentage by volume (vol%, % v/v) is one way of expressing the composition of a mixture with a dimensionless quantity; mass fraction (percentage by weight, wt%) and mole fraction (percentage by moles, mol%) are others.

In the case of a mixture of ethanol and water, which are miscible in all proportions, the designation of solvent and solute is arbitrary. The volume of such a mixture is slightly less than the sum of the volumes of the components. Thus, by the above definition, the term "40% alcohol by volume" refers to a mixture of 40 volume units of ethanol with enough water to make a final volume of 100 units, rather than a mixture of 40 units of ethanol with 60 units of water. The "enough water" is actually slightly more than 60 volume units, since water-ethanol mixture loses volume due to intermolecular attraction.

At room temperature, water-ethanol mixture loses volume at any mixing ratio.
At room temperature, water-ethanol mixture loses volume at any mixing ratio.

02Relation to mass fraction

Volume fraction is related to mass fraction,

w_{i}={\frac {m_{i}}{\sum _{j}m_{j}}}={\frac {m_{i}}{m_{tot}}}

by

w_{i}={\frac {\rho _{i}\varphi _{i}}{\sum _{j}{\rho _{j}\varphi _{j}}}},\rho _{i}={\frac {m_{i}}{V_{i}}}

where \rho _{i} is the constituent densities.

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Sources and credits

This article is adapted from the Wikipedia article Volume fraction, written by its contributors and licensed under CC BY-SA 4.0. Fathomly has changed the layout, removed citation markers, navigation and maintenance notices, and adjusted punctuation. This adapted version is shared under the same license. For references, see the original article.

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