Team:Imperial/Modeling

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            <h1>Modelling</h1>
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                        <h2>Introduction</h2>
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                        <p>We approached cellulose production and modification with several key questions: Which conditions produce the greatest yields? When should we induce over-production? How efficient will our functionalised cellulose be? We performed in-silico experiments, informed by our wet-lab work, to study growth, cellulose synthesis and the activity of our biomaterial. The results were integrated back into our experiments to enhance the production and function of our biomaterial.</p>
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                        <h2>Induction Model</h2>
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                        <div class="more-box more-box-bottom"><a href="https://2014.igem.org/Team:Imperial/Induction_Model">read more...</a></div>
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                        <h2>CBD Kinetics Model</h2>
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                        <div class="more-box more-box-bottom"><a href="https://2014.igem.org/Team:Imperial/CBD_Kinetics_Model">read more...</a></div>
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                        <h2>Pellice Model</h2>
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                        <div class="more-box more-box-bottom"><a href="https://2014.igem.org/Team:Imperial/Pellicle_Model">read more...</a></div>
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Latest revision as of 16:21, 3 October 2014

Imperial iGEM 2014

Modelling

Introduction

We approached cellulose production and modification with several key questions: Which conditions produce the greatest yields? When should we induce over-production? How efficient will our functionalised cellulose be? We performed in-silico experiments, informed by our wet-lab work, to study growth, cellulose synthesis and the activity of our biomaterial. The results were integrated back into our experiments to enhance the production and function of our biomaterial.

Induction Model

CBD Kinetics Model

Pellice Model