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Called a "Commercial Pint" because it was equivalent to 0.8 US liquid pints. Replaced by the 375 mL "metric pint". Reputed Pint (UK)-13.3 imp oz. 378 mL: The "Reputed Pint" (2 ⁄ 3 Imperial pint or 1 ⁄ 12 Imperial gallon) was devised to split a standard gallon into twelve small bottles. Originally it was based on the British Wine gallon ...
Wine was measured with units based on the wine gallon of 231 cubic inches (3.785 L), beer was measured with units based on an ale gallon of 282 cubic inches (4.621 L) and grain was measured with the Winchester measure with a gallon of approximately 268.8 cubic inches (one eighth of a Winchester bushel or 4.405 L). In 1824, these units were ...
Half of a gill is a jack, or one-eighth of a pint. [1] But in northern England, a quarter pint could also be called a jack or a noggin, rather than a gill, and in some areas a half-pint could be called a gill, particularly for beer and milk. [2] [3] [4] In Scotland, there were additional sizes: [5] big gill = 1 + 1 ⁄ 2 gills (213.1 mL)
A US fluid ounce is 1 / 16 of a US pint (about 1·04 UK fluid ounces or 29.6 mL); a UK fluid ounce is 1 / 20 of a UK pint (about 0·96 US fluid ounce or 28.4 mL). On a larger scale, perhaps for institutional cookery, a UK gallon is 8 UK pints (160 UK fluid ounces; about 1·2 US gallons or 4.546 litres), whereas the US gallon is ...
Water vapor is lighter or less dense than dry air. [11] [12] At equivalent temperatures it is buoyant with respect to dry air, whereby the density of dry air at standard temperature and pressure (273.15 K, 101.325 kPa) is 1.27 g/L and water vapor at standard temperature has a vapor pressure of 0.6 kPa and the much lower density of 0.0048 g/L.
The dry quart and dry pint are exactly 15121 / 92400 larger than their liquid counterparts, while the dry barrel is exactly 1 / 33 smaller than the fluid barrel, except for barrels of beer (dry barrels are exactly 5 / 341 smaller) and barrels of oil (dry barrels are exactly 3 / 11 smaller).
The saturation vapor density (SVD) is the maximum density of water vapor in air at a given temperature. [1] The concept is related to saturation vapor pressure (SVP). It can be used to calculate exact quantity of water vapor in the air from a relative humidity (RH = % local air humidity measured / local total air humidity possible ) Given an RH percentage, the density of water in the air is ...
The boiling point of water is the temperature at which the saturated vapor pressure equals the ambient pressure. Water supercooled below its normal freezing point has a higher vapor pressure than that of ice at the same temperature and is, thus, unstable. Calculations of the (saturation) vapor pressure of water are commonly used in meteorology.