The enzymatic hydrolysis of fructose-1-phosphate (fructose-1-P) is written: Fructose-1-P + H2O = fructose + Pi where Pi (also called inorganic phosphate) is (HPO4)2-. This reaction was allowed to proceed to equilibrium at 25 ā°C. The original concentration of fructose-1-P was 0.20 M, but when the system had reached equilibrium, the concentration of fructose-1-P was only 6.52 x 10-5 M. Calculate the equilibrium constant for this reaction to 2 significant digits:
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52 \times 10^{-5})(6.52 \times 10^{-5})}{(0.20 - 6.52 \times 10^{-5})} \] Show moreā¦
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The enzymatic hydrolysis of fructose-1-phosphate (fructose-1-P) is written: Fructose-1-P + H2O = fructose + Pi where Pi (also called inorganic phosphate) is (HPO4)2-. This reaction was allowed to proceed to equilibrium at 25 ā°C. The original concentration of fructose-1-P was 0.20 M, but when the system had reached equilibrium, the concentration of fructose-1-P was only 6.52 x 10-5 M. Calculate the equilibrium constant for this reaction to 2 significant digits
Ronald P.
The enzymatic hydrolysis of fructose-1-phosphate (fructose-1-P) is written: Fructose-1-P + H2O = fructose + Pi where Pi (also called inorganic phosphate) is (HPO4)2-. This reaction was allowed to proceed to equilibrium at 25 ā°C. The original concentration of fructose-1-P was 0.20 M, but when the system had reached equilibrium, the concentration of fructose-1-P was only 6.52 x 10-5 M. Calculate the free energy of fructose-1-P hydrolysis, to 2 significant digits, including the units:
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