From the corresponding Henry's law coefficient kx = 8.64 104 bar, estimate the molarity of...
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From the corresponding Henry's law coefficient kx = 8.64 · 104 bar, estimate the molarity of N2 (gas) in water at 298 K when the water is in equilibrium with air at a total pressure of 1.06 bar . Assume that the ai is 78% N2 by volume (i.e., by mole number), and that the dissolved N2 does not affect the volume of solution. There are 55.3 moles of water in L at 298 K. Express your answer using two significant figures. VO AEO [N2] = M From the corresponding Henry's law coefficient kx = 8.64 · 104 bar, estimate the molarity of N2 (gas) in water at 298 K when the water is in equilibrium with air at a total pressure of 1.06 bar . Assume that the ai is 78% N2 by volume (i.e., by mole number), and that the dissolved N2 does not affect the volume of solution. There are 55.3 moles of water in L at 298 K. Express your answer using two significant figures. VO AEO [N2] = M
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Given that K x 864 10 4 bar T 298 k Total pressure 106 bar ai 7... View the full answer
Related Book For
Thermodynamics An Engineering Approach
ISBN: 978-0073398174
8th edition
Authors: Yunus A. Cengel, Michael A. Boles
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