Difference between revisions of "Team:Valencia UPV/Modelling/DetModel"

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<h2><b>Deterministic model</b></h2>
 
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<li><a href="#scroll1" class="button">Circuit explanation</a></li>
 
<li><a href="#scroll2" class="button">From biochemistry to mathematics</a></li>
 
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<p>Our deterministic model uses mathematical information contained in its equations, in order to provide results that depict the behavior of our device. Although <i>how much</i> is an important question, the value of this information overpasses the numerical frontiers, getting to the most important point when new and revolutionary devices are being tested, which is <i>how</i>. <b><i>How does AladDNA behave</i><b/> is the main question that we want to answer with our modelling task. Take a sit and enjoy this wander in our mathematical chaos! <div id="scroll1"></div></p><br/>
 
 
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<h3 style="text-align:center">What is our device supposed to do? Circuit explanation<br />
 
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<p>The idea of our circuit can be simply represented by this picture.</p>
 
 
<div style="text-align:center"><img src="https://static.igem.org/mediawiki/2015/f/f6/Valencia_upv_modelcircuit.jpg"></div>
 
 
<p>Basically, our aim is the biological design of a multiplexor that only expresses the genetic information <b>when, where</b> and <b>which</b> is desired by the user. The biological components that allow us this implementation in living organisms are <i>two switches, two recombinases and a library of different binding domains</i>. All those elements have been coordinated in this cascade of three different levels.</p>
 
 
<div style="text-align:center"><img src="https://static.igem.org/mediawiki/2015/0/09/Valencia_upv_modelcircuitfull.jpg"></div>
 
 
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<h2>From Biochemical reactions to Mathematical equations<br />
 
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<h3 style="text-align:center">Mass Action Kinetics, Quasy Steady State Analysis<br />
 
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<p>Hello world</p>
 
 
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<h2>Parameters values<br />
 
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<p>Hello world</p>
 
 
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Latest revision as of 23:14, 17 September 2015