Difference between revisions of "Team:Marburg/Model"

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       <p>
 
       <p>
 
         This year we used our mathematical and programming background to look for artificial Neutral integration Site
 
         This year we used our mathematical and programming background to look for artificial Neutral integration Site
         option (aNSo) and suitable terminators for our project. We took advantage of genome data bank of UTEX2973 and
+
         option (aNSo) and suitable terminators for our project. We took advantage of genome data bank of UTEX 2973 and
 
         used bioinformatics tools to gain insights and implement it to our project.
 
         used bioinformatics tools to gain insights and implement it to our project.
         In addition to that, we designed a model to predict the doubling times of UTEX2973 that was only possible after
+
         In addition to that, we designed a model to predict the doubling times of UTEX 2973 that was only possible after
 
         a thorough investigation and standardization of the current state of the art methods.
 
         a thorough investigation and standardization of the current state of the art methods.
 
         To achieve this level of standardization we also implemented a light model to properly predict light intensities
 
         To achieve this level of standardization we also implemented a light model to properly predict light intensities
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                 <br>
 
                 <br>
  
                 During this investigation into how to grow UTEX2973 in the optimal way we stumbled upon many things that
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                 During this investigation into how to grow UTEX 2973 in the optimal way we stumbled upon many things that
 
                 we thought to be insufficiently documented or standardized.
 
                 we thought to be insufficiently documented or standardized.
 
                 We investigated how to optimally measure light intensity and thought critically about the state of the
 
                 We investigated how to optimally measure light intensity and thought critically about the state of the
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                 After investigating which wavelength to optimally measure the optical density of our cultures at we
 
                 After investigating which wavelength to optimally measure the optical density of our cultures at we
 
                 started to measure comparative growth curves and developed a reproducable growth curve protocol.
 
                 started to measure comparative growth curves and developed a reproducable growth curve protocol.
                 For all parameters that had an effect on the growth curves of UTEX2973 we critically questioned if they
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                 For all parameters that had an effect on the growth curves of UTEX 2973 we critically questioned if they
 
                 could be approximated as independent from other parameters and decided to investigate the temperature,
 
                 could be approximated as independent from other parameters and decided to investigate the temperature,
 
                 shaking speed, carbon dioxide concentration and light intensity in conjunction with each other.
 
                 shaking speed, carbon dioxide concentration and light intensity in conjunction with each other.

Revision as of 15:25, 7 December 2019

M O D E L L I N G


This year we used our mathematical and programming background to look for artificial Neutral integration Site option (aNSo) and suitable terminators for our project. We took advantage of genome data bank of UTEX 2973 and used bioinformatics tools to gain insights and implement it to our project. In addition to that, we designed a model to predict the doubling times of UTEX 2973 that was only possible after a thorough investigation and standardization of the current state of the art methods. To achieve this level of standardization we also implemented a light model to properly predict light intensities for our cultures.


Growth Curve Model


artificial Neutral integration
Site options


Terminator Model