Difference between revisions of "Team:Tianjin/Model"

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Solve the ordinary and delaying differential by MATLAB. Plot the curve of RFP and time. The concentration of Cu is supposed as 0.5 mM.
 
Solve the ordinary and delaying differential by MATLAB. Plot the curve of RFP and time. The concentration of Cu is supposed as 0.5 mM.
 
</p>
 
</p>
<img src=" ">
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<img src=" https://static.igem.org/mediawiki/2017/a/a1/Tianjin-miao1.jpeg">
<p>figure X.simulate figure of RFP expression </p>
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<p>Fig.15.simulate figure of RFP expression </p>
 
<p>In the figure, the concentration of RFP is growing rapidly with the time going. At final states, it is going to be mild and be a constant.<br>
 
<p>In the figure, the concentration of RFP is growing rapidly with the time going. At final states, it is going to be mild and be a constant.<br>
 
Change the concentration of 0.5 ,0.05,0 mM. We can get the following figure.
 
Change the concentration of 0.5 ,0.05,0 mM. We can get the following figure.
<img src=" ">
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<img src=" https://static.igem.org/mediawiki/2017/7/70/Tianjin-model-RFP2.jpg">
<p>figure X.simulate figure of RFP expression by different copper ions concentration </p>
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<p>figure 16.simulate figure of RFP expression by different copper ions concentration </p>
<img src=" ">
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<img src=" https://static.igem.org/mediawiki/2017/4/45/Tianjin-model-RFP3.jpg">
<p>figure X.real condition of RFP expression induced by copper ions </p>
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<p>figure 17.real condition of RFP expression induced by copper ions </p>
 
<p>
 
<p>
 
Compared with the real condition we measured,it is very similar to the real condition except in the final stage the real condition concentration is going to decrease.</p>
 
Compared with the real condition we measured,it is very similar to the real condition except in the final stage the real condition concentration is going to decrease.</p>

Revision as of 11:51, 27 October 2017

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Model