QuestionMarch 9, 2026

According to the Michaelis Menten equation. when the substrate concentration (TSD) is rqual to the Michaelie Conatant (Km)), the reaction veforthy (v) is epproximately. Answers:A. D A Vmax B 2^4vmax C 0.5Vmax D 0.1Vmax

According to the Michaelis Menten equation. when the substrate concentration (TSD) is rqual to the Michaelie Conatant (Km)), the reaction veforthy (v) is epproximately. Answers:A. D A Vmax B 2^4vmax C 0.5Vmax D 0.1Vmax
According to the Michaelis Menten equation.
when the substrate concentration (TSD)
is rqual to the Michaelie Conatant (Km)), the reaction veforthy (v) is
epproximately.
Answers:A. D
A Vmax
B 2^4vmax
C 0.5Vmax
D 0.1Vmax

Solution
3.4(198 votes)

Answer

C 0.5V_{\max} Explanation 1. Write the Michaelis–Menten equation The equation is: **v = \frac{V_{\max} [S]}{K_m + [S]}**. 2. Substitute [S] = K_m v = \frac{V_{\max} K_m}{K_m + K_m} = \frac{V_{\max} K_m}{2K_m}. 3. Simplify v = \frac{V_{\max}}{2}.

Explanation

1. Write the Michaelis–Menten equation <br /> The equation is: **$v = \frac{V_{\max} [S]}{K_m + [S]}$**. <br /><br />2. Substitute $[S] = K_m$ <br /> $v = \frac{V_{\max} K_m}{K_m + K_m} = \frac{V_{\max} K_m}{2K_m}$. <br /><br />3. Simplify <br /> $v = \frac{V_{\max}}{2}$.
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