Team:Columbia-Cooper-NYC/Main

From 2012.igem.org

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<p style="line-height:140%; padding-left:10px; padding-top:10px; padding-right:10px;text-align:justify; font-size:90%;">Click <a style="color:#6bbe00 !important" href="https://2012.igem.org/Team:Columbia-Cooper-NYC/Columbia_notebook_1">here</a> for details</a>.
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<p style="line-height:140%; padding-left:10px; padding-top:10px; padding-right:10px;text-align:justify; font-size:80%;"> Our project is to revamp a chemical manufacturing process, so in addition to working with DNA, we also worked on macro-scale batches of copper foil, ferrooxidans (the bacteria), and other chemicals. Using our liquid media, we were able to grow healthy ferrooxidans and simultaneously dissolve (etch) copper foil much faster than the basal rate (without ferrooxidans). Since our PCB manufacturing process requires the ferrooxidans to "stay put", we have been developing a solid agar-based media, above which the ferrooxidans grow, and below which the copper is etched, again faster than the basal rate. Click <a style="color:#6bbe00 !important" href="https://2012.igem.org/Team:Columbia-Cooper-NYC/Columbia_notebook_1">here</a> for details</a>.
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Revision as of 23:29, 1 October 2012

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Team:Cambridge

From 2010.igem.org