Rate of an enzyme-catalyzed reaction as a function of varying reactant concentration, with the concentration of enzyme constant In the figure, why does the reaction rate plateau at higher reactant concentrations? A) The rate of the reverse reaction increases at high reactant concentrations. B) Feedback inhibition by product occurs at high reactant concentrations. C) The reaction nears equilibrium at high reactant concentrations. D) Most enzyme molecules are occupied by substrate at high reactant concentrations.

Chemistry
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Chapter1: Chemical Foundations
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40) Use the following information to answer the question below.

(Graph Description: The graph displays the rate of product formation on the y-axis, plotted against the concentration of reactants (in micromolar) on the x-axis. The curve initially rises steeply, then gradually levels off, forming a plateau at higher reactant concentrations.)

**Rate of an enzyme-catalyzed reaction as a function of varying reactant concentration, with the concentration of enzyme constant**

In the figure, why does the reaction rate plateau at higher reactant concentrations?

A) The rate of the reverse reaction increases at high reactant concentrations.

B) Feedback inhibition by product occurs at high reactant concentrations.

C) The reaction nears equilibrium at high reactant concentrations.

D) Most enzyme molecules are occupied by substrate at high reactant concentrations.
Transcribed Image Text:40) Use the following information to answer the question below. (Graph Description: The graph displays the rate of product formation on the y-axis, plotted against the concentration of reactants (in micromolar) on the x-axis. The curve initially rises steeply, then gradually levels off, forming a plateau at higher reactant concentrations.) **Rate of an enzyme-catalyzed reaction as a function of varying reactant concentration, with the concentration of enzyme constant** In the figure, why does the reaction rate plateau at higher reactant concentrations? A) The rate of the reverse reaction increases at high reactant concentrations. B) Feedback inhibition by product occurs at high reactant concentrations. C) The reaction nears equilibrium at high reactant concentrations. D) Most enzyme molecules are occupied by substrate at high reactant concentrations.
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