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6. The equilibrium constant of the reaction whose stoichiometry is given below is very large at 300K, but the equllbrium constant decreases rapidy as the

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6. The equilibrium constant of the reaction whose stoichiometry is given below is very large at 300K, but the equllbrium constant decreases rapidy as the temperature increases. The roaction rate reaches acceptable values only at high temperatures. CO(g)+2H2g)CH3OH(g) Since the feed stream consists of pure gases in stoichiometric ratios, a) Calculate the mole traction of methanol at equilbrium at 300K and 1 atm. b) Under 1 atm pressure and at What temperature is the mole fraction of ammonia 0.5 ? \begin{tabular}{|c|c|c|c|} \hline & H(299)(J/mol) & G(299)(J/mol) & Cp(J/molK) \\ \hline CO(g) & -110525 & -137169 & 29.16 \\ \hline H2(g) & - & - & 28.83 \\ \hline CH3OH(g) & -200660 & -161960 & 46.12 \\ \hline \end{tabular}

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