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A gas mixture of A & B containing 1.5 mole % A and 98.5 mole % B is to be contacted by a pure liquid in a packed absorption column. A gas stream concentration is to be reduced to 0.5 mole %.( the cross sectional area of the column is 1 m^2, and the vapor rate 200 kgmol/h.) The mass transfer coefficient for the gas phase is kya = 100 kgmol/h m^3 for the liquid phase kxa = 2000. The liquid rate used is twice the minimum, the equilibrium relationship can be represented as yA=9.95 xA then determine what is HOG, operating line relationship, NOG and packed height of the column?
Find the lowest temperature of vaporization and the highest temperature when there is liquid left over and Determine the range of temperatures which could be used for this process.
Calculate concentration of NaClO solution from that equation and calculate How many grams of this nuclide in a sample of 4.00 g will remain after 112 years?
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Determine how many grams of sodium chloride are required to prepare 250. mL of this solution. (if given the density of the saline solution is 1.0 g/mL)?
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The temperature is increased to 45 degree celcius then determine what is the pressure in the cylinder
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Draw a series of titration curves for the titration of a strong base with a strong acid where the concentration of the acid is 10 -1 , 10 -2 , and
Compute How many mg of the compound P do you have in 20ml of 4% (w/v) solution of P
What is the mass of one mole of the gas when the density of a gas is 0.0151 g/mL at 150 degrees Celsius and 1.50 atmospheres?
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