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dl dl US spelling: deciliter: 1.0 dl (3.5 imp fl oz; 3.4 US fl oz) dL dL centilitre: cl cl US spelling: centiliter: 1.0 cl (0.35 imp fl oz; 0.34 US fl oz) cL cL millilitre: ml ml US spelling: milliliter one cubic centimetre 1.0 ml (0.035 imp fl oz; 0.034 US fl oz) mL mL microlitre: μl (ul) μl US spelling: microliter
dl dl US spelling: deciliter: 1.0 dl (3.5 imp fl oz; 3.4 US fl oz) dL dL centilitre: cl cl US spelling: centiliter: 1.0 cl (0.35 imp fl oz; 0.34 US fl oz) cL cL millilitre: ml ml US spelling: milliliter one cubic centimetre 1.0 ml (0.035 imp fl oz; 0.034 US fl oz) mL mL microlitre: μl (ul) μl US spelling: microliter
Metric measuring spoons are available in sets, usually between four and six, typically with decilitre (100 ml), tablespoon (15 ml), teaspoon (5 ml) and millilitre measures. [citation needed] For fractional measures, there is often a line inside to indicate "half" or "a quarter", or a separate measure may be included, like 1 ⁄ 2 dl.
Testosterone levels in males and females ; Total testosterone Stage Age range Male Female Values SI units Values SI units ; Infant: Premature (26–28 weeks) 59–125 ng/dL: 2.047–4.337 nmol/L
Mass concentration (g/dL or g/L) is the most common measurement unit in the United States. Is usually given with dL (decilitres) as the denominator in the United States, and usually with L (litres) in, for example, Sweden.
The factor–label method can convert only unit quantities for which the units are in a linear relationship intersecting at 0 (ratio scale in Stevens's typology). Most conversions fit this paradigm. An example for which it cannot be used is the conversion between the Celsius scale and the Kelvin scale (or the Fahrenheit scale). Between degrees ...
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It follows, therefore, that 1000th of a litre, known as one millilitre (1 mL), of water has a mass of about 1 g; 1000 litres of water has a mass of about 1000 kg (1 tonne or megagram). This relationship holds because the gram was originally defined as the mass of 1 mL of water; however, this definition was abandoned in 1799 because the density ...