Difference between revisions of "Team:Dundee/Modeling"
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$$ \frac{dm}{dt} = k_T - k_D \cdot m $$ | $$ \frac{dm}{dt} = k_T - k_D \cdot m $$ | ||
$$ \frac{dP}{dt} = \alpha \cdot m - \beta \cdot P $$ | $$ \frac{dP}{dt} = \alpha \cdot m - \beta \cdot P $$ | ||
+ | $$ \schemestart $Hp$\+$\alpha$$_{H}$\arrow(--cc){<=>[$K_{a}$][$K_{d}$]}$[$$Hp$$\cdot$$\alpha$$_{H}$$]$ \arrow(@cc--dd){->[$K_{i}$]}$[$ $Hp$$\cdot$$\alpha$$_{H}$$\cdot$$\beta$$_{H}$$]$ | ||
+ | \schemestop $$ | ||
<br><br><br><br> | <br><br><br><br> | ||
</div> | </div> |
Revision as of 13:30, 10 July 2015
Modeling
The modeling part. Example:
$$ \frac{dm}{dt} = k_T - k_D \cdot m $$ $$ \frac{dP}{dt} = \alpha \cdot m - \beta \cdot P $$ $$ \schemestart $Hp$\+$\alpha$$_{H}$\arrow(--cc){<=>[$K_{a}$][$K_{d}$]}$[$$Hp$$\cdot$$\alpha$$_{H}$$]$ \arrow(@cc--dd){->[$K_{i}$]}$[$ $Hp$$\cdot$$\alpha$$_{H}$$\cdot$$\beta$$_{H}$$]$ \schemestop $$
The modeling part. Example:
$$ \frac{dm}{dt} = k_T - k_D \cdot m $$ $$ \frac{dP}{dt} = \alpha \cdot m - \beta \cdot P $$ $$ \schemestart $Hp$\+$\alpha$$_{H}$\arrow(--cc){<=>[$K_{a}$][$K_{d}$]}$[$$Hp$$\cdot$$\alpha$$_{H}$$]$ \arrow(@cc--dd){->[$K_{i}$]}$[$ $Hp$$\cdot$$\alpha$$_{H}$$\cdot$$\beta$$_{H}$$]$ \schemestop $$
Under construction