Difference between revisions of "Team:NCKU Tainan/Hardware"

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                   2. Created an instructional video, a manual and lists of materials.</br>
 
                   2. Created an instructional video, a manual and lists of materials.</br>
 
                   3. Implemented Bio-safety to our device.</br>
 
                   3. Implemented Bio-safety to our device.</br>
                   4. Integrated with <a href="https://2018.igem.org/Team:NCKU_Tainan/Modeling" target="_blank" style="color:#28ff28;">modelling</a>.</br>
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                   4. Integrated with <a href="https://2018.igem.org/Team:NCKU_Tainan/Modeling" style="color:#28ff28;">modelling</a>.</br>
 
                   5.Sense with Arduino.</br>
 
                   5.Sense with Arduino.</br>
 
                 </p>
 
                 </p>
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                 <h3>Introduction</h3>
 
                 <h3>Introduction</h3>
 
                 <div id="pt">
 
                 <div id="pt">
                   <p class="pcontent">Nearly 40% of CO2 emissions are attributable to industries. The goal of our project is to solve the CO2 problem by using engineered E.coli to fix carbon dioxide emitted from industries and convert it into bio-product, pyruvate. To accomplish our goal, we designed a device that will upscale our project to be used on field and we aim to integrate the device into industrial IGCC system. And we used the Arduino to sense the pH(連結到hardware pH), CO2 concentration(連結到hardware CO2) and temperature(連結到hardware temperature ) then use the wi-fi sensor(連結到hardware WIFI) to upload to the database. (連結到software database)Last but not least, we can monitor the data by our app.(連結到software app)</p>
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                   <p class="pcontent">Nearly 40% of CO2 emissions are attributable to industries. The goal of our project is to solve the CO2 problem by using engineered E.coli to fix carbon dioxide emitted from industries and convert it into bio-product, pyruvate. To accomplish our goal, we designed a device that will upscale our project to be used on field and we aim to integrate the device into industrial IGCC system. And we used the Arduino to sense the <a href="#list-item-6" style="color:#28ff28;">pH</a>, <a href="#list-item-7" style="color:#28ff28;">CO2 concentration</a> and <a href="#list-item-8" style="color:#28ff28;">temperature</a> then use the <a href="#list-item-9" style="color:#28ff28;">wi-fi sensor</a> to upload to the database. (連結到software database)Last but not least, we can monitor the data by our app.(連結到software app)</p>
 
                 </div>
 
                 </div>
 
               </div>
 
               </div>

Revision as of 07:04, 15 September 2018

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igem.ncku.tainan@gmail.com
No.1, Daxue Rd., East Dist., Tainan City 701, Taiwan (R.O.C.)