Difference between revisions of "Team:Stanford-Brown/SB16 Vision"

 
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                <a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">BioMembrane<span class="caret"></span></a>
 
                <a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">BioMembrane<span class="caret"></span></a>
 
                <ul class="dropdown-menu">
 
                <ul class="dropdown-menu">
                    <li><a href="../SB-membrane/SB-memb-overview.html">Overview</a></li>
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                    <li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioMembrane_Overview">Overview</a></li>
                    <li><a href="../SB-membrane/SB-c-e.html">Collagen & Elastin</a></li>
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                    <li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioMembrane_Collagen">Collagen</a></li>
                    <li><a href="../SB-membrane/SB-latex.html">Latex</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioMembrane_Elastin">Elastin</a></li>
                    <li><a href="../SB-membrane/SB-p-aramid.html">P-aramid</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioMembrane_p-Aramid">p-Aramid</a></li>
<li><a href="../SB-membrane/SB-paba.html">p-ABA concentration</a></li>
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                    <li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioMembrane_Latex">Latex</a></li>
                    <li><a href="../SB-membrane/SB-uv.html">UV Protection</a></li>
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                    <li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioMembrane_UV">UV Protection</a></li>
 
                  </ul>
 
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                  <a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Float<span class="caret"></span></a>
 
                  <a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Float<span class="caret"></span></a>
 
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                  <ul class="dropdown-menu">
                    <li><a href="../SB-pages/SB-gas.html">Gas Production</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Float_Gas">Gas production</a></li>
 
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                  <a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">BioSensor<span class="caret"></span></a>
 
                  <a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">BioSensor<span class="caret"></span></a>
 
                  <ul class="dropdown-menu">
 
                  <ul class="dropdown-menu">
                    <li><a href="../SB-sensing/SB-sens-overview.html">Overview</a></li>
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                    <li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioSensor_Overview">Overview</a></li>
<li><a href="../SB-sensing/SB-chromo.html">Chromoproteins</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioSensor_Chromoproteins">Chromoproteins</a></li>
                    <li><a href="../SB-sensing/SB-fq.html">Fluorophore-Quencher</a></li>
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                    <li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioSensor_FQsensor">Fluorophore-Quencher</a></li>
                  </ul>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_BioMembrane_AptamerPurification">Aptamer Purification</a></li>
                </li>
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<!--collaborations-->
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                <li class="dropdown">
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                  <a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Collaborations<span class="caret"></span></a>
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                  <ul class="dropdown-menu">
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                    <li><a href="../SB-collaborations/SB-inter-lab.html">InterLab Study</a></li>
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                    <li><a href="../SB-collaborations/SB-collab.html">Team Collaborations</a></li>
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                  </ul>
 
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<!--human practices-->
 
<!--human practices-->
 
<li class="dropdown">
 
<li class="dropdown">
 
<a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Practices<span class="caret"></span></a>
 
<a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Practices<span class="caret"></span></a>
 
<ul class="dropdown-menu">
 
<ul class="dropdown-menu">
<li><a href="../SB-human/SB-integrated-HP.html">Integrated Human Practices</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/Human_Practices">Overview</a></li>
<li><a href="../SB-human/SB-outreach.html">Outreach</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/Integrated_Practices">Integrated Human Practices</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/Engagement">Outreach</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Practices_Interviews">Interviews</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Practices_Exploration">Exploration</a></li>
 
</ul>
 
</ul>
 
</li>
 
</li>
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                  <a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Collaborations<span class="caret"></span></a>
 +
                  <ul class="dropdown-menu">
 +
                    <li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Collaborations_Interlab">InterLab Study</a></li>
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                    <li><a href="https://2016.igem.org/Team:Stanford-Brown/Collaborations">Team Collaborations</a></li>
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<!--biobricks-->
 
<!--biobricks-->
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                <li><a href="https://2016.igem.org/Team:Stanford-Brown/Parts">BioBricks</a></li>
 
<!--attributions-->
 
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<li class="dropdown">
 
<li class="dropdown">
 
<a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Attributions<span class="caret"></span></a>
 
<a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Attributions<span class="caret"></span></a>
 
<ul class="dropdown-menu">
 
<ul class="dropdown-menu">
<li><a href="../SB-attributions/SB-attr.html">Attributions & Acknowledgements</a>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/Attributions">General Attributions</a>
</li>
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<li><a href="../SB-attributions/SB-interviews.html">Interviews</a>
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</li>
 
</li>
 
<li role="separator" class="divider"></li>
 
<li role="separator" class="divider"></li>
 
<li class="dropdown-header">Notebooks</li>
 
<li class="dropdown-header">Notebooks</li>
<li><a href="../SB-attributions/SB-c-e-notes.html">Collagen & Elastin</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_CE">Collagen & Elastin</a></li>
<li><a href="../SB-attributions/SB-p-aramid-notes.html">P-aramid</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_p-Aramid">P-aramid</a></li>
<li><a href="../SB-attributions/SB-paba-notes.html">p-ABA concentration</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_Latex">Latex</a></li>
<li><a href="../SB-attributions/SB-latex-notes.html">Latex</a></li>
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_UV">UV protection</a></li>
<li><a href="../SB-attributions/SB-uv-notes.html">UV Protection</a></li>
+
<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_AptamerPurification">Aptamer Purification</a></li>
<li><a href="../SB-attributions/SB-gas-notes.html">Gas Production</a></li>
+
<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_Gas">Gas Production</a></li>
<li><a href="../SB-attributions/SB-chromo-notes.html">Chromoproteins</a></li>
+
<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_Chromoproteins">Chromoproteins</a></li>
<li><a href="../SB-attributions/SB-fq-notes.html">Fluorophore-Quencher</a></li>
+
<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_FQsensor">Fluorophore-Quencher</a></li>
 
+
<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_Nylon">Nylon</a></li>
 +
<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_Notebooks_Interlab">Interlab Study</a></li>
 
</ul>
 
</ul>
 
</li>
 
</li>
  
 
<!--team-->
 
<!--team-->
                <li><a href="../SB-pages/SB-team.html">Team</a></li>
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                <li><a href="https://2016.igem.org/Team:Stanford-Brown/Team">Team</a></li>
 
<!--requirements-->
 
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                <li><a href="../SB-pages/SB-requirements.html">Requirements</a></li>
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<a href="#" class="dropdown-toggle" data-toggle="dropdown" role="button" aria-haspopup="true" aria-expanded="false">Requirements<span class="caret"></span></a>
 +
<ul class="dropdown-menu">
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<li><a href="https://2016.igem.org/Team:Stanford-Brown/SB16_MedalRequirements">Medals</a></li>
 +
<li><a href="https://2016.igem.org/Team:Stanford-Brown/Safety">Safety</a></li>
 +
</ul>
 +
</li>
 
            </ul>
 
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<div class="container"> <!--NEW container-->
 
<!--PAGE TITLE BEGIN-->
 
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<div class="col-sm-12 col-PT">
 
<h1 class="pageTitle">Stanford-Brown iGEM 2016</h1>
 
</div>
 
</div> <!--END rowT-->
 
<!--PAGE TITLE END-->
 
  
<!--PROJECT DESCRIPTION BEGIN-->
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<!--STANFORD-BROWN IGEMMERS ADD YOUR CONTRIBUTIONS BELOW THIS POINT-->
<div class="row">
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<div class="col-sm-12 pagetext">The Stanford-Brown 2016 iGEM team is building biologically produced membranes and sensors for space exploration. Biologically produced materials have several advantages over traditional building materials; most significant for our purposes, they are light and self-replicating. These characteristics make biomaterials ideally suited for space exploration. One possible application for these materials would be a biosensing balloon, which could used in both terrestrial and extraterrestrial atmospheres to detect temperature and molecules of interest. Furthermore, biomembranes and biosensors have other applications both here on Earth and in space.
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<!--PROJECT DESCRIPTION END-->
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<!--IMAGE GRID BEGIN-->
 
  
  
<div class="row row1">
 
<div class="col-sm-3">
 
<a href="../SB-pages/SB-vision.html"><img src="../SB-images/SB-HomeImageVision.png" class="homeimage"></a>
 
</div> <!--END col-sm-3-->
 
  
<div class="col-sm-3">
 
<a href="../SB-membrane/SB-memb-overview.html"><img src="../SB-images/SB-HomeImageMembrane.png" class="homeimage"><a/>
 
</div> <!--END col-sm-3-->
 
  
<div class="col-sm-3">
 
<a href="../SB-sensing/SB-sens-overview.html"><img src="../SB-images/SB-HomeImageSensing.png" class="homeimage"></a>
 
</div> <!--END col-sm-3-->
 
  
<div class="col-sm-3">
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<div class="container">
<a href="../SB-pages/SB-requirements.html"><img src="../SB-images/SB-HomeImageRequirements.png" class="homeimage"></a>
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<!--SECTION TITLE BEGIN-->
</div> <!--END col-sm-3-->
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<div class="row rowT">
</div><!--END row1-->
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<div class="col-sm-12 col-PT noHead">
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<h1 class="sectionTitle-L firstTitle">Abstract</h1>
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</div>
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</div> <!--END rowT-->
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<!--SECTION TITLE END-->
  
<div class="row row2 last">
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<!--TEXT BEGIN-->
<div class="col-sm-3">
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<div class="row">
<a href="../SB-pages/SB-team.html"><img src="../SB-images/SB-HomeImageTeam.png" class="homeimage"><a/>
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<div class="col-sm-7 pagetext-L"><div class="text">Exploration, both on Earth and beyond, requires putting instrumentation into atmospheres. Traditionally balloons have been ideal tools for atmospheric research: to track weather patterns, wind patterns, and to monitor atmospheric composition. Our team is working to create a biological balloon that is light, biodegradable, and both continuously and sustainably produced. To make the balloon itself, we are engineering bacteria to produce membrane polymers with different properties of strength and elasticitiy. To inflate the balloon, we are using algae to produce biological hydrogen to fill the balloon. To increase balloon durability, we are looking for biological ways to make our materials radiation resistant. Finally, to functionalize our balloon we are creating biological temperature and small molecule sensors. When combined to form a biological balloon these projects could create a completely novel category of scientific instrument: cheap, light, durable, and useful. </div>
</div> <!--END col-sm-3-->
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</div> <!--END col-sm-7-->
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<div class="col-sm-5 imgcol-R">
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<img src="https://static.igem.org/mediawiki/2016/4/44/T--Stanford-Brown--PlaceholderImage.png" class="img-R">
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</div> <!--END col-sm-5-->
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</div> <!--END row-->
  
<div class="col-sm-3">
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<div class="row">
<a href="../SB-human/SB-integrated-HP.html"><img src="../SB-images/SB-HomeImageHuman.png" class="homeimage"></a>
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<div class="col-sm-12 pagetext">Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here.  
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</div> <!--END col-sm-12-->
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</div>
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<div class="col-sm-3">
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<a href="../SB-attributions/SB-attr.html"><img src="../SB-images/SB-HomeImageAttr.png" class="homeimage"></a>
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<div class="row rowT">
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<div class="col-sm-12 col-PT">
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<h1 class="sectionTitle-R">Section Title</h1>
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<!--TEXT BEGIN-->
<a href="../SB-pages/SB-bricks.html"><img src="../SB-images/SB-HomeImageBiobricks.png" class="homeimage"></a>
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<div class="row">
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<div class="col-sm-5 imgcol-L">
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<img src="https://static.igem.org/mediawiki/2016/4/44/T--Stanford-Brown--PlaceholderImage.png" class="img-L">
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</div> <!--END col-sm-5-->
</div> <!--END container-->
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<div class="col-sm-7 pagetext-R"><div class="text">Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. </div>
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</div> <!--END row-->
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<div class="col-sm-12 pagetext last">Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here.
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Latest revision as of 03:07, 17 October 2016


Stanford-Brown 2016

Abstract

Exploration, both on Earth and beyond, requires putting instrumentation into atmospheres. Traditionally balloons have been ideal tools for atmospheric research: to track weather patterns, wind patterns, and to monitor atmospheric composition. Our team is working to create a biological balloon that is light, biodegradable, and both continuously and sustainably produced. To make the balloon itself, we are engineering bacteria to produce membrane polymers with different properties of strength and elasticitiy. To inflate the balloon, we are using algae to produce biological hydrogen to fill the balloon. To increase balloon durability, we are looking for biological ways to make our materials radiation resistant. Finally, to functionalize our balloon we are creating biological temperature and small molecule sensors. When combined to form a biological balloon these projects could create a completely novel category of scientific instrument: cheap, light, durable, and useful.
Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here. Stanford-Brown iGEMmers paste your contributions here.

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