Team:BIT/project hardware

From 2013.igem.org

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      <td class="t3"><p><img src="https://static.igem.org/mediawiki/2013/d/d1/BITsam.jpg" alt="" width="350"></p>
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        <p class="t2">&nbsp; &nbsp; &nbsp;Here, a small, cheap and handheld device, together with our <a href="https://2013.igem.org/Team:BIT/project_microchip">micro chip</a> , is produced which together with our biological core, forms a complete detecting system.         </p>
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        <p class="t2">&nbsp; &nbsp; &nbsp;Here, a small, cheap and handheld device, together with our <a href="https://2013.igem.org/Team:BIT/project_microchip">micro chip</a> , is produced which together with our biological core, forms a complete detecting system. If you are interested in the detailed structure of our detecting system, please click <a href="http://v.youku.com/v_show/id_XNjI3NDk1ODAw.html">Here</a>.</p>
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<p class="t2">&nbsp; &nbsp; &nbsp;The small device uses normal color sensors and light path similar to UV spectrophotometer, but contains a new, or rather strange mathematical model, a combination of our biological model and relative non-biological equations. </p>
<p class="t2">&nbsp; &nbsp; &nbsp;The small device uses normal color sensors and light path similar to UV spectrophotometer, but contains a new, or rather strange mathematical model, a combination of our biological model and relative non-biological equations. </p>
        <p class="t2"><img src="https://static.igem.org/mediawiki/2013/7/77/BITthe.jpg" width="701" height="365"></p>
        <p class="t2"><img src="https://static.igem.org/mediawiki/2013/7/77/BITthe.jpg" width="701" height="365"></p>
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        <p class="t2">&nbsp; &nbsp; &nbsp;For the specific Data of the measure system, please click <a href="https://2013.igem.org/Team:BIT/project_data">Here.</a>         </p>
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        <p class="t2">&nbsp; &nbsp; &nbsp;For the specific data of the measure system, please click <a href="https://2013.igem.org/Team:BIT/project_data">Here.</a>         </p>
        <p class="t2">&nbsp;</p>
        <p class="t2">&nbsp;</p>
        <p class="t2"><span class="high">Standard Biomedical Bricks</span><a name="sbb"></a></p>
        <p class="t2"><span class="high">Standard Biomedical Bricks</span><a name="sbb"></a></p>
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        <p class="t2">&nbsp; &nbsp; &nbsp;Well, As for biological detection of harmful materials, such as <span class="aaas"><span class="ww">antibiotics, heavy metals, aromatic hydrocarbons, radioactive substances, pesticide residues</span></span> and so on, we need a biological output in <span class="ww">color, fluorescence, conductivity, OD value </span>and many other forms.</p>
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        <p class="t2">&nbsp; &nbsp; &nbsp;Well, as for biological detection of harmful materials, such as <span class="aaas"><span class="ww">antibiotics, heavy metals, aromatic hydrocarbons, radioactive substances, pesticide residues</span></span> and so on, we need a biological output in <span class="ww">color, fluorescence, conductivity, OD value </span>and many other forms.</p>
        <p class="t2"><img src="https://static.igem.org/mediawiki/2013/4/43/BITaa.gif" width="700" height="500"></p>
        <p class="t2"><img src="https://static.igem.org/mediawiki/2013/4/43/BITaa.gif" width="700" height="500"></p>
        <p class="t2">&nbsp; &nbsp; &nbsp;But those outputs may be so weak, just like our fluorescence, without the <a href="https://2013.igem.org/Team:BIT/project_AC" class="ww">controlled amplifier</a>, it can hardly be seen by our eyes, even under UV light.</p>
        <p class="t2">&nbsp; &nbsp; &nbsp;But those outputs may be so weak, just like our fluorescence, without the <a href="https://2013.igem.org/Team:BIT/project_AC" class="ww">controlled amplifier</a>, it can hardly be seen by our eyes, even under UV light.</p>

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