Relative density

Ratio of the density (mass per volume) of a substance to the density of a given reference material

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Relative density

Ratio of the density (mass per volume) of a substance to the density of a given reference material

Relative density, also called specific gravity, is a dimensionless quantity defined as the ratio of the density (mass divided by volume) of a substance to the density of a given reference material. The relative density of solids and liquids is nearly always measured with respect to water at its densest (at 4 °C or 39.2 °F); for gases, the reference is air at room temperature (25 °C or 77.0 °F).

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From Wikipedia

Relative density, also called specific gravity, is a dimensionless quantity defined as the ratio of the density (mass divided by volume) of a substance to the density of a given reference material. The relative density of solids and liquids is nearly always measured with respect to water at its densest (at 4 °C or 39.2 °F); for gases, the reference is air at room temperature (25 °C or 77.0 °F). The term "relative density" (abbreviated r.d. or RD) is preferred modern use, for example in ISO, IUPAC, and NIST, while the term "specific gravity" (abbreviated S.G. or SG) is gradually being abandoned. If a substance's relative density is less than 1 then it is less dense than the reference; if greater than 1 then it is denser than the reference. If the relative density is exactly 1 then the densities are equal; that is, equal volumes of the two substances have the same mass. If the reference material is water, then a substance with a relative density less than 1 will float in water. For example, an ice cube, with a relative density of about 0.91, will float. A substance with a relative density greater than 1 will sink. Temperature and pressure must be specified for both the sample and the reference. The pressure is nearly always atmospheric pressure (1 atm or 101.325 kPa), and where it is not, usually the density is specified directly. The reference temperature for water is often 4 °C (39.2 °F), but 15 °C (59.0 °F) and 20 °C (68.0 °F) are also common standards, depending on the industry (like brewing or petroleum). In British brewing practice, the relative density, as specified above, is multiplied by 1000. Relative density is commonly used in industry as a simple means of obtaining information about the concentration of...

Text: Wikipédia, CC BY-SA 4.0. · Image: Palagiri (CC BY-SA 3.0) ·

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