ABB a) 0.999 mM of compound B and 0.001 mM of compound A at 25 ºC. Calculate the equilibrium constant Keq', and the standard free energy change, AGº', for the reaction. The value of the gas constant is 1.98 Starting with a 1 mM solution of compound A, the equilibrium mixture was found to contain cal-mol-1-K-1 or 8.314 J-mol-1-K-1. b) Explain briefly, if the velocity by which the equilibrium is attained will be dependent on the magnitude of AGº. c) different from those listed above if a competitive inhibitor of the enzyme is present during the enzyme catalysed reaction. Explain briefly, if the equilibrium concentrations of compounds A and B will be expected to be
ABB a) 0.999 mM of compound B and 0.001 mM of compound A at 25 ºC. Calculate the equilibrium constant Keq', and the standard free energy change, AGº', for the reaction. The value of the gas constant is 1.98 Starting with a 1 mM solution of compound A, the equilibrium mixture was found to contain cal-mol-1-K-1 or 8.314 J-mol-1-K-1. b) Explain briefly, if the velocity by which the equilibrium is attained will be dependent on the magnitude of AGº. c) different from those listed above if a competitive inhibitor of the enzyme is present during the enzyme catalysed reaction. Explain briefly, if the equilibrium concentrations of compounds A and B will be expected to be
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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need only part C in detail
don't copy from others/sources it's wrong
if so. I will downvote
need only part C
![The isomerization of the compounds A and B is catalyzed by an enzyme:
ABB
a)
0.999 mM of compound B and 0.001 mM of compound A at 25 °C. Calculate the equilibrium constant
Keq', and the standard free energy change, AGº", for the reaction. The value of the gas constant is 1.987
Starting with a 1 mM solution of compound A, the equilibrium mixture was found to contain
cal-mol-1-K-1 or 8.314 J-mol-1-K-1.
b)
Explain briefly, if the velocity by which the equilibrium is attained will be dependent on the
magnitude of AG".
c)
different from those listed above if a competitive inhibitor of the enzyme is present during the enzyme
catalysed reaction.
Explain briefly, if the equilibrium concentrations of compounds A and B will be expected to be](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F17480727-fc5c-4eb7-8728-6bc02f5080b2%2Fdf90b2cc-1e00-4ed5-9b3d-a81cf672262f%2Forrfqkr_processed.png&w=3840&q=75)
Transcribed Image Text:The isomerization of the compounds A and B is catalyzed by an enzyme:
ABB
a)
0.999 mM of compound B and 0.001 mM of compound A at 25 °C. Calculate the equilibrium constant
Keq', and the standard free energy change, AGº", for the reaction. The value of the gas constant is 1.987
Starting with a 1 mM solution of compound A, the equilibrium mixture was found to contain
cal-mol-1-K-1 or 8.314 J-mol-1-K-1.
b)
Explain briefly, if the velocity by which the equilibrium is attained will be dependent on the
magnitude of AG".
c)
different from those listed above if a competitive inhibitor of the enzyme is present during the enzyme
catalysed reaction.
Explain briefly, if the equilibrium concentrations of compounds A and B will be expected to be
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