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Asap as follows. You carried out an experiment in which solute G is being absorbed from a mixture with an insoluble hypothetical gas in a

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as follows. You carried out an experiment in which solute G is being absorbed from a mixture with an insoluble hypothetical gas in a falling film of hypothetical liquid at room temperature and a total pressure of 2 atm. The local mass transfer coefficient in the liquid phase is estimated to be kx = 4.327 kmol/mh. During the experiments, you found that 11.1% of the total mass transfer resistance lies in the hypothetical liquid phase. You also found that at a particular section of the apparatus, the mole fraction of solute in the bulk hypothetical liquid is 0.0123 and the interfacial concentration of the solute in the hypothetical gas is found to be y= 0.501. From literature, the equilibrium solubility of X between the hypothetical gas and hypothetical liquid at the given temperature is given by y/22.9 = x, where y and x are mole fractions of G in hypothetical gas and hypothetical liquid, respectively. Based on the experiment and your knowledge from CHMT 3039A course, determine the following: The absorption flux of solute at the given section of the apparatus in kmol/m's (11) The concentration of the solute in the bulk hypothetical gas (iii) The overall gas phase mass transfer coefficient in kmol/cm's

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