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<p> | <p> | ||
− | + | \begin{equation} | |
− | \frac{d[M_R]}{dt} | + | \frac{d[M_R]}{dt} = k_{sMR} - \lambda_{MR}[M_R] |
− | \end{ | + | \end{equation} |
+ | |||
+ | \begin{equation} | ||
+ | \frac{d[R]}{dt} = k_{sR}[M_R] - 2k_{2R}[R]^2 + 2k_{-2R}[R_2] - \lambda_R[R] | ||
+ | \end{equation} | ||
</p> | </p> | ||
Revision as of 16:48, 14 October 2017
\begin{equation} \frac{d[M_R]}{dt} = k_{sMR} - \lambda_{MR}[M_R] \end{equation} \begin{equation} \frac{d[R]}{dt} = k_{sR}[M_R] - 2k_{2R}[R]^2 + 2k_{-2R}[R_2] - \lambda_R[R] \end{equation}