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The Michaelis-Menten equation models the hyperbolic relationship between [S] and the initial react ...
The Michaelis-Menten equation models the hyperbolic relationship between [S] and the initial reaction rate \( V_{0} \) for an enzyme-catalyzed, single-substrate reaction \( \mathrm{E}+\mathrm{S} \rightleftharpoons \mathrm{ES} \longrightarrow \mathrm{E}+\mathrm{P} \). The model can be more readily understood when comparing three conditions: \( [\mathrm{S}]<>K_{\mathrm{m}} \) Match each statement with the condition that it describes. Note that "rate" refers to initial velocity \( V_{0} \) where steady state conditions are assumed. [ \( \left.\mathrm{E}_{\text {total }}\right] \) refers to the total enzyme concentration and \( \left[\mathrm{E}_{\text {free }}\right] \) refers to the concentration of free enzyme.