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However, the names of all SI mass units are based on gram, rather than on kilogram; thus 10 3 kg is a megagram (10 6 g), not a *kilokilogram. The tonne (t) is an SI-compatible unit of mass equal to a megagram (Mg), or 10 3 kg. The unit is in common use for masses above about 10 3 kg and is often used with SI prefixes.
kg-f kg f: 1.0 kg f (9.8 N; 2.2 lb f) kgf kgf kilopond: kp kp gram-force: g-f g f: 1.0 g f (9.8 mN; 0.035 oz f) gf gf pond: p p milligram-force: mg-f mg f: 1.0 mg f (9.8 μN; 0.015 gr f) mgf mgf millipond: mp mp Avoirdupois-based units: poundal: pdl pdl 1.0 pdl (0.14 N) long ton-force: LT-f LT f: 1.0 LT f (10.0 kN) LT-f ST-f; LTf long ton-force ...
For example, 50 g of zinc will react with oxygen to produce 62.24 g of zinc oxide, implying that the zinc has reacted with 12.24 g of oxygen (from the Law of conservation of mass): the equivalent weight of zinc is the mass which will react with eight grams of oxygen, hence 50 g × 8 g/12.24 g = 32.7 g.
send or dispense, e.g. number of tablets provided Can be confused with m,. misce, context-dependent mane: mane: in the morning max. maximum maximum mcg microgram: recommended replacement for "μg" which may be confused with "mg" mdi metered dose inhaler m.d.u. more dicto utendus: to be used as directed mEq milliequivalent mg milligram mg/dL
The tables below provides information on the variation of solubility of different substances (mostly inorganic compounds) in water with temperature, at one atmosphere pressure. Units of solubility are given in grams of substance per 100 millilitres of water (g/(100 mL)), unless shown otherwise.
Air pollutant concentrations expressed as mass per unit volume of atmospheric air (e.g., mg/m 3, μg/m 3, etc.) at sea level will decrease with increasing altitude. The concentration decrease is directly proportional to the pressure decrease with increasing altitude.
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Atmospheric pollutant concentrations expressed as mass per unit volume of atmospheric air (e.g., mg/m 3, μg/m 3, etc.) at sea level will decrease with increasing altitude because the atmospheric pressure decreases with increasing altitude. The change of atmospheric pressure with altitude can be obtained from this equation: [2]