Difference between revisions of "Team:Sheffield/project/device"

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<p> <h2> Overview </h2> </p>
 
<p> <h2> Overview </h2> </p>
<p> <i> Design is a journey of discovery.<i></p>
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<p> Design is a journey of discovery.
  
<p>Our design process began with the idea of building a microfluidics device. We tested different designs to optimize desired characteristics such as mixing time and flow rate. This idea evolved into several others such as the use of freeze-drying to safely store our engineered bacteria. Our final design is a capsule-and-chamber device that was better able to meet these requirements overall. It houses the electronics used to detect fluorescence as well as the capsule containing the bacterial solution. Taking inspiration from glowsticks (yes, glowsticks!), you bend and twist the tube which releases the bacterial solution into the reaction chamber within the device. The blue prints and 3D models of this device can be found in the sections below. We plan to have these parts laser cut and ready for the Giant Jamboree!   
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Our design process began with the idea of building a microfluidics device. We tested different designs to optimize desired characteristics such as mixing time and flow rate. This idea evolved into several others such as the use of freeze-drying to safely store our engineered bacteria. Our final design is a capsule-and-chamber device that was better able to meet these requirements overall. It houses the electronics used to detect fluorescence as well as the capsule containing the bacterial solution. Taking inspiration from glowsticks (yes, glowsticks!), you bend and twist the tube which releases the bacterial solution into the reaction chamber within the device. The blue prints and 3D models of this device can be found in the sections below. We plan to have these parts laser cut and ready for the Giant Jamboree!   
 
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Revision as of 08:15, 19 October 2016

A template page

DEVICE

Overview

Design is a journey of discovery. Our design process began with the idea of building a microfluidics device. We tested different designs to optimize desired characteristics such as mixing time and flow rate. This idea evolved into several others such as the use of freeze-drying to safely store our engineered bacteria. Our final design is a capsule-and-chamber device that was better able to meet these requirements overall. It houses the electronics used to detect fluorescence as well as the capsule containing the bacterial solution. Taking inspiration from glowsticks (yes, glowsticks!), you bend and twist the tube which releases the bacterial solution into the reaction chamber within the device. The blue prints and 3D models of this device can be found in the sections below. We plan to have these parts laser cut and ready for the Giant Jamboree!