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<h2 class="text-center">MODELLING</h2> | <h2 class="text-center">MODELLING</h2> | ||
<p> Mathematical modelling and simulation division working on how to visualized what happened in laboratory by creating the mathematical equation that shows a correlation between all components in this research. Through learning the previous research on modelling the kinetics in HIV/AIDS, we collect found parameters to form the complete equation. This equation consist of the rate of white-blood cells forming, CD4, and rate of virus clearance and rate of the change of infected T celss into healthy cells</p> | <p> Mathematical modelling and simulation division working on how to visualized what happened in laboratory by creating the mathematical equation that shows a correlation between all components in this research. Through learning the previous research on modelling the kinetics in HIV/AIDS, we collect found parameters to form the complete equation. This equation consist of the rate of white-blood cells forming, CD4, and rate of virus clearance and rate of the change of infected T celss into healthy cells</p> | ||
− | <h3><a href="https://static.igem.org/mediawiki/2016/ | + | <h3><a href="https://static.igem.org/mediawiki/2016/6/6e/Model_Description_rev.pdf">HERE</a> is the complete equation in our mathematical modelling and simulation</h3> |
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Latest revision as of 03:07, 20 October 2016
MODELLING
Mathematical modelling and simulation division working on how to visualized what happened in laboratory by creating the mathematical equation that shows a correlation between all components in this research. Through learning the previous research on modelling the kinetics in HIV/AIDS, we collect found parameters to form the complete equation. This equation consist of the rate of white-blood cells forming, CD4, and rate of virus clearance and rate of the change of infected T celss into healthy cells
HERE is the complete equation in our mathematical modelling and simulation