IGEM:IMPERIAL/2007/Dry Lab: Difference between revisions

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'''Navigation:'''
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[[IGEM:IMPERIAL/2007|<font face="Arial" size=4 style="color:#000099">'''Home'''</font>]]
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| {{Click || image=Implogo.gif‎  | link=IGEM:IMPERIAL/2007 | width=75px | height=35px }}
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| {{Click || image=Labs grey.png | link=IGEM:IMPERIAL/2007/Dry Lab| width=40px | height=40px }}
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| [[IGEM:IMPERIAL/2007|<font face="Arial" size=3 style="color:#000099">'''Back to Home'''</font>]]
| [[IGEM:IMPERIAL/2007/Projects/Cell By Date|<font face="Arial" size=3 style="color:#000099">'''Cell By Date'''</font>]]
| [[IGEM:IMPERIAL/2007/Biofilm Detector|<font face="Arial" size=3 style="color:#000099">'''Infector Detector'''</font>]]
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| [[IGEM:IMPERIAL/2007/Dry Lab|<font face="Arial" size=3 style="color:#000099">'''Jump to Dry Lab'''</font>]]
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<img src="http://www.openwetware.org/images/4/4a/Labs_grey.png" alt="INFORMATION" border="0">
</html>Welcome to the Dry Lab !</h2>
==Scope of Modelling in Synthetic Biology==


The allure of synthetic biology lies in the incorporation of engineering principles into the complex field of biology.
A defining feature of this effort involves the integration of experimentation, data analysis and modelling. This inevitably becomes an iterative process:
Current global biological knowledge supplements the curiosities and questions raised by the designer's requirements/specifications, resulting in the formulation of an initial model.
The primary model forms a platform from which these initial predictions can be verified or refuted by new experimentation. Discrepancies, then stimulate the next step of model development, which again results in experimentally testable predictions. The process repeats itself continually until a good agreement is achieved between the experimentally-obtained data and the behaviour predicted by the model.
This validated model is then used with confidence for predictive purposes.
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The ''Drylab'' serves as a portal page, which attempts to centralize these efforts.
Here, you will find all the mathematical and computational work done during iGEM 2007. <br>


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<img src="http://www.openwetware.org/images/4/4a/Labs_grey.png" alt="INFORMATION" border="0">
</html>Welcome to the Dry Lab !</h2>


Here you will find all the mathematical and computatoinal work done during iGEM ’07.  Below in our virtual office you can click on a part of our dry lab to find out what we have been up to, e.g. click on the computer to find out more about data analysis.




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Latest revision as of 14:55, 16 October 2007





<html> <img src="http://www.openwetware.org/images/4/4a/Labs_grey.png" alt="INFORMATION" border="0"> </html>Welcome to the Dry Lab !

Scope of Modelling in Synthetic Biology

The allure of synthetic biology lies in the incorporation of engineering principles into the complex field of biology. A defining feature of this effort involves the integration of experimentation, data analysis and modelling. This inevitably becomes an iterative process:

Current global biological knowledge supplements the curiosities and questions raised by the designer's requirements/specifications, resulting in the formulation of an initial model. The primary model forms a platform from which these initial predictions can be verified or refuted by new experimentation. Discrepancies, then stimulate the next step of model development, which again results in experimentally testable predictions. The process repeats itself continually until a good agreement is achieved between the experimentally-obtained data and the behaviour predicted by the model. This validated model is then used with confidence for predictive purposes.


The Drylab serves as a portal page, which attempts to centralize these efforts. Here, you will find all the mathematical and computational work done during iGEM 2007.






Modelling
Cell by Date, Infector Detector


Data Analysis
Cell by Date, Infector Detector







Software
What goes into software


Dry Lab Log
Daily Record of Dry Lab Happenings