IGEM:IMPERIAL/2007: Difference between revisions

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* [[IGEM:IMPERIAL/2007/Literature | Literature]]
* [[IGEM:IMPERIAL/2007/Literature | Literature]]
* [[IGEM:IMPERIAL/2007/Admin | Admin]]
* [[IGEM:IMPERIAL/2007/Admin | Admin]]
* [[IGEM:IMPERIAL/2007/Dry Lab/Log| Dry Lab Log]]
* [[IGEM:IMPERIAL/2007/Dry Lab| In the Dry Lab]]
'''iGEM related'''
'''iGEM related'''
* [http://www.igem2007.com iGEM 2007]
* [http://www.igem2007.com iGEM 2007]

Revision as of 07:01, 6 September 2007



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28 August 2007 - Infector Modelling
Modelled transfer function of Infector Detector. Not only has it aesthetic qualities - it actually is very informative!

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17 April 2024

     15:34  BioMicroCenter:Element Sequencing‎‎ 3 changes history +295 [Challee‎ (3×)]
     
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     13:10  BioMicroCenter:SingleCell diffhist +30 Noelani Kamelamela talk contribs (→‎10X CHROMIUM X)
     12:43  BioMicroCenter diffhist −15 Noelani Kamelamela talk contribs

16 April 2024

N    19:59  Nanoimprint Lithography (NIL) - Carter Paul‎‎ 10 changes history +7,205 [CarterPaul‎ (10×)]
     
19:59 (cur | prev) +769 CarterPaul talk contribs (→‎Thermal NIL Process)
     
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18:42 (cur | prev) +85 CarterPaul talk contribs (Created page with "{{Template:CHEM-ENG590E}} =Motivation= =Introduction to NIL= =Thermal NIL Process=")
     19:40 Upload log CarterPaul talk contribs uploaded File:NIL1.png
N    18:40  3D Cell Culture - McLean Taggart, Emma Villares, Maximillian Marek, Scott LeBlanc, Adam Lyons and Jacob Belden diffhist +24,060 CarterPaul talk contribs (Created page with "{{Template:CHEM-ENG590E}} ==Introduction== While most microfluidic devices incorporate a 2D cell culture design, in which a single layer of cells is grown on the bottom of a device, these systems suffer from poor <i>in vivo</i> mimicry, as, in the human body, most cells grow in all directions.<sup>https://doi.org/10.5114/aoms.2016.63743 1</sup> To address this limitation, 3D cell culture devices have been developed - in w...")
     18:38  CHEM-ENG590E:Wiki Textbook‎‎ 2 changes history +63 [CarterPaul‎ (2×)]
     
18:38 (cur | prev) +50 CarterPaul talk contribs (→‎Chapter 1 - Microfabrication)
     
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     18:36  3D Cell Culture - McLean Taggart, Emma Villares, Maximillian Marek, Scott LeBlanc, and Adam Lyons diffhist +5,343 CarterPaul talk contribs (Added a Technique and applications section)
     10:20  Yarn Microfluidics - Roger Dirth‎‎ 12 changes history +442 [Rcostello‎ (12×)]
     
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10:17 (cur | prev) +38 Rcostello talk contribs (→‎Washburn Equation)
     
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     08:18  3D Printed Microfluidic Robots - Helen Hua‎‎ 2 changes history +6 [Michele Caggioni‎ (2×)]
     
08:18 (cur | prev) +22 Michele Caggioni talk contribs (→‎Actuation)
     
08:18 (cur | prev) −16 Michele Caggioni talk contribs (→‎Actuation)
     08:11  3D Printing Overview diffhist +422 Michele Caggioni talk contribs

15 April 2024

     23:43  User:Yanbin Huang‎‎ 2 changes history +170 [Yanbin Huang‎ (2×)]
     
23:43 (cur | prev) 0 Yanbin Huang talk contribs (→‎Granted Patents)
     
23:43 (cur | prev) +170 Yanbin Huang talk contribs (→‎Granted Patents)
     22:11  The paper that launched microfluidics - Xi Ning‎‎ 11 changes history +4,793 [Xning098‎ (11×)]
     
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21:44 (cur | prev) +688 Xning098 talk contribs (→‎Separation and quantification)
     
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     21:45  (Upload log) [Xning098‎ (2×)]
     
21:45 Xning098 talk contribs uploaded File:Figure 4 Tdesign.png
     
21:30 Xning098 talk contribs uploaded File:Figure 3 Set-up3.png

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The Imperial iGEM team consists of ten undergraduate students working fulltime during summer 2007 on engineering a biological system. In addition, we have a number of graduate student and faculty advisors.

Undergraduates

Advisors

  • Prof Richard Kitney
  • Prof Paul Freemont
  • Duo Lu
  • Kirsten Jensen
  • Matthieu Bultelle
  • Vincent Rouilly

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