Difference between revisions of "Team:Oxford/wetlab"

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<h1 class="header-text">Parts</h1>
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<h1 class="header-text">Overview</h1>
 
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             <h2>Section 1</h2>
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             <h2>Wet Lab</h2>
            <p class="lead">This is a great place to talk about your webpage. This template is purposefully unstyled so you can use it as a boilerplate or starting point for you own landing page designs! This template features:</p>
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<p>A key part of our project has been our work in the Wet Lab. This page contains links and summaries of all the aspects of lab work we did.</p>  
            <ul>
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<br>
              <li>Clickable nav links that smooth scroll to page sections</li>
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<p><b>Results</b></p>
              <li>Responsive behavior when clicking nav links perfect for a one page website</li>
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<p>The first port of call for any lab work is to clone the DNA for our constructs into pSB1C3. This is the simple cloning vector with Chloramphenicol resistance chosen by iGEM to be the shipping vector for all parts to be submitted in. After this, the vectors would be transformed into the ideal cells optimised for the particular experiments they were undergoing. <br>
              <li>Bootstrap's scrollspy feature which highlights which section of the page you're on in the navbar</li>
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All the protocols we used during the duration of iGEM can be found below. <br>
              <li>Minimal custom CSS so you are free to explore your own unique design options</li>
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How we used these protocols in different experiments can be found below.<br>
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Revision as of 15:03, 14 October 2018

Full Width Pics - Start Bootstrap Template

Overview

Wet Lab

A key part of our project has been our work in the Wet Lab. This page contains links and summaries of all the aspects of lab work we did.


Results

The first port of call for any lab work is to clone the DNA for our constructs into pSB1C3. This is the simple cloning vector with Chloramphenicol resistance chosen by iGEM to be the shipping vector for all parts to be submitted in. After this, the vectors would be transformed into the ideal cells optimised for the particular experiments they were undergoing.
All the protocols we used during the duration of iGEM can be found below.
How we used these protocols in different experiments can be found below.

Section 2

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Section 3

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