A) calculate the pressure difference AP=PB-PA of the below manometer. Glycerin SG = 1.26 Water SG = 1.0 Oil SG = 0,88 60 cm 10 cm 15 cm 20 cm Mercury SG = 13.5 b) An aqueous solution has a specific...


A) calculate the pressure difference AP=PB-PA of the below manometer.<br>Glycerin<br>SG = 1.26<br>Water<br>SG = 1.0<br>Oil<br>SG = 0,88<br>60 cm<br>10 cm<br>15 cm<br>20 cm<br>Mercury<br>SG = 13.5<br>b)<br>An aqueous solution has a specific gravity of 2.5 and contains 12mol% salt (MM=60) and<br>88mole % water. The flow rate of this solution is 250g/s.<br>Calculate the followings<br>(а)<br>Average molecular weight of the mixture<br>(b)<br>Molar flow rate of the solution (lbmol/hr)<br>(c)<br>Mass fractions of the salt and water<br>(d)<br>Mass flow rate of salt (kg/min)<br>(e)<br>Concentration of salt in solution (lbm/ft3)<br>(f)<br>Morality of salt in solution<br>

Extracted text: A) calculate the pressure difference AP=PB-PA of the below manometer. Glycerin SG = 1.26 Water SG = 1.0 Oil SG = 0,88 60 cm 10 cm 15 cm 20 cm Mercury SG = 13.5 b) An aqueous solution has a specific gravity of 2.5 and contains 12mol% salt (MM=60) and 88mole % water. The flow rate of this solution is 250g/s. Calculate the followings (а) Average molecular weight of the mixture (b) Molar flow rate of the solution (lbmol/hr) (c) Mass fractions of the salt and water (d) Mass flow rate of salt (kg/min) (e) Concentration of salt in solution (lbm/ft3) (f) Morality of salt in solution

Jun 11, 2022
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