Team:Montgomery Cougars NJUSA/Project/MathematicalModel
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In order to obtain optimal results from each one of our experiments, the Montgomery iGEM team has undertaken the challenge of using differential calculus concepts to model the rates of growth of our protein. | In order to obtain optimal results from each one of our experiments, the Montgomery iGEM team has undertaken the challenge of using differential calculus concepts to model the rates of growth of our protein. | ||
- | We expect protein growth to model the logistic growth equation. <center>[[File:logisticgrowth.jpg|Logistic Growth]]</center> | + | We expect the protein growth to model the logistic growth equation. <center>[[File:logisticgrowth.jpg|Logistic Growth]]</center> |
{{Montgomery_Cougars_NJUSA/Layout_End:Two_Column}} | {{Montgomery_Cougars_NJUSA/Layout_End:Two_Column}} |
Revision as of 18:09, 16 June 2014
Mathematical Model
In order to obtain optimal results from each one of our experiments, the Montgomery iGEM team has undertaken the challenge of using differential calculus concepts to model the rates of growth of our protein.
We expect the protein growth to model the logistic growth equation.