Mathematical Model

From 2007.igem.org

(Difference between revisions)
Line 1: Line 1:
-
page under construction
+
<math>\frac{1}{2}</math>
-
 
+
\\
-
<math>Insert formula here
+
-
\begin��{eqnarray}
+
-
g=\frac{\alpha \times G}{N_{GFP}}\\
+
y=\frac{\alpha \times Y}{N_{LacY}}\\
y=\frac{\alpha \times Y}{N_{LacY}}\\
x=\frac{X}{X_{0}}\\
x=\frac{X}{X_{0}}\\
Line 9: Line 6:
\beta=\frac{N_{LacY} \times \tau_{x} \times B}{\alpha \times X_{0}}\\
\beta=\frac{N_{LacY} \times \tau_{x} \times B}{\alpha \times X_{0}}\\
\lambda=frac{\tau_{x} \times \Lambda}{X_{0}}
\lambda=frac{\tau_{x} \times \Lambda}{X_{0}}
-
\end{eqnarray}
 
-
</math>
 

Revision as of 15:08, 17 July 2007

<math>\frac{1}{2}</math> \\ y=\frac{\alpha \times Y}{N_{LacY}}\\ x=\frac{X}{X_{0}}\\ \rho=\frac{R_{T}}{R_{0}+1}\\ \beta=\frac{N_{LacY} \times \tau_{x} \times B}{\alpha \times X_{0}}\\ \lambda=frac{\tau_{x} \times \Lambda}{X_{0}}