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5 Beekman Street is a building in the Financial District of Lower Manhattan in New York City, United States.It is composed of the 10-story, 150-foot-tall (46 m) Temple Court Building and Annex (also known as Temple Court [a]) and a connected 51-story, [b] 687-foot-tall (209 m) condominium tower called the Beekman Residences, which contains 68 residential units.
Whereas osmolality (with an "l") is defined as the number of osmoles (Osm) of solute per kilogram of solvent (osmol/kg or Osm/kg), osmolarity (with an "r") is defined as the number of osmoles of solute per liter (L) of solution (osmol/L or Osm/L). As such, larger numbers indicate a greater concentration of solutes in the plasma.
5 Beekman Street is diagonally across the intersection of Nassau and Beekman streets, while the Potter Building and 41 Park Row are directly across Nassau Street. [3] The Morse Building occupies a plot measuring 85.25 feet (25.98 m) on Nassau Street and 69.58 feet (21.21 m) on Beekman Street.
50 [2] 80 [2] mg/dL ~60% [1] 2.2, [3] 2.8 [1] 3.9, [3] 4.4 [1] mmol/L Protein: 15 [1] [2] 40, [4] 45 [1] [2] mg/dL ~1% [1] Albumin: 7.8 [5] 40 [5] mg/dL: 0 [6] - 0.7% [6] - corresponding to an albumin (CSF/serum) quotient of 0 to 7x10 −3: Lactate: 1.1 [1] 2.4 [1] mmol/L Creatinine: 50 [1] 110 [1] μmol/L Phosphorus: 0.4 [1] 0.6 [1] μmol/L ...
The osmol gap is typically calculated with the following formula (all values in mmol/L): = = ([+] + [] + []) In non-SI laboratory units: Calculated osmolality = 2 x [Na mmol/L] + [glucose mg/dL] / 18 + [BUN mg/dL] / 2.8 + [ethanol/3.7] [3] (note: the values 18 and 2.8 convert mg/dL into mmol/L; the molecular weight of ethanol is 46, but empiric data shows that it does not act as an ideal ...
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]
Molar concentration or molarity is most commonly expressed in units of moles of solute per litre of solution. [1] For use in broader applications, it is defined as amount of substance of solute per unit volume of solution, or per unit volume available to the species, represented by lowercase : [2]
There appears to be the greatest cluster of substances in the yellow part (μg/L or nmol/L), becoming sparser in the green part (mg/L or μmol/L). However, there is another cluster containing many metabolic substances like cholesterol and glucose at the limit with the blue part (g/L or mmol/L).