Harvard:Biophysics 101/2007: Difference between revisions

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*'''snp.med [[Harvard:Biophysics_101/2007/05/03|screenshots!]]
*'''[[Harvard:Biophysics_101/2007/05/03|May 3]]: Final presentation
*'''[[Harvard:Biophysics_101/2007/04/26|April 26]]: Post your plan for May 1 & 3.
*'''[[Harvard:Biophysics_101/2007/04/19|April 19]]: Post your plan for April 24 & 26.
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==Course overview==
==Course overview==
Focuses on modern technologies with exponential growth and their impact on global quality of life through weekly updated Wiki class project (in-depth case studies on personal genomics and/or biofuels). Integrating knowledge, tools for research, and commercial decision-making concerning new aspects of bioengineering, personalized medicine, genetically modified organisms, and stem cells. Interplays of biophysical, ecological, economic, and social/ethical modeling will be explored through multi-disciplinary teams of students, and individual brief reports.
Focuses on modern technologies with exponential growth and their impact on global quality of life through weekly updated Wiki class project (in-depth case studies on personal genomics and/or biofuels). Integrating knowledge, tools for research, and commercial decision-making concerning new aspects of bioengineering, personalized medicine, genetically modified organisms, and stem cells. Interplays of biophysical, ecological, economic, and social/ethical modeling will be explored through multi-disciplinary teams of students, and individual brief reports.
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==Logistics==
==Logistics==
*Meeting time: Tuesdays and Thursdays, 10:00—11:30 am
*Meeting time: Tuesdays and Thursdays, 10:00—11:30 am
*Location: Cambridge campus, exact room to be determined
* [http://www.college.harvard.edu/calendar.html First class] Thu 1-Feb-2007.
*Location: [http://map.harvard.edu/level3.cfm?mapname=camb_allston&tile=F7&quadrant=D&series=W Barker Center], [http://www.fas.harvard.edu/%7Eims/Class/barker316.html Room 316] 
*No exams
*No exams
*No prerequisites
*No prerequisites
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**25% Participation
**25% Participation
**25% Personal wiki page (weekly assignments)
**25% Personal wiki page (weekly assignments)
**25% 5-minute presentations
**50% Contribution to group project
**25% Contribution to group project


==Background Info and previous class projects==
==Background Info and previous class projects==
* [http://bio.freelogy.org/wiki/Biophysics_101 Past classes & projects]
* [http://bio.freelogy.org/wiki/Biophysics_101 2005]
* [http://www.courses.fas.harvard.edu/~bphys101/ 2003 and earlier]


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Latest revision as of 05:56, 3 May 2007

Biophysics 101: Genomics, Computing, and Economics

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Course overview

Focuses on modern technologies with exponential growth and their impact on global quality of life through weekly updated Wiki class project (in-depth case studies on personal genomics and/or biofuels). Integrating knowledge, tools for research, and commercial decision-making concerning new aspects of bioengineering, personalized medicine, genetically modified organisms, and stem cells. Interplays of biophysical, ecological, economic, and social/ethical modeling will be explored through multi-disciplinary teams of students, and individual brief reports.

Potential course projects

Earth 2.0

  • Analytic: Bioweather map. Collection and use of real-time assays to track virus outbreaks, etc.
  • Synthetic: Bioenergy. Integrated metabolic, genetic, economic, process, environmental modeling.

H. sapiens 2.0

Logistics

  • Meeting time: Tuesdays and Thursdays, 10:00—11:30 am
  • First class Thu 1-Feb-2007.
  • Location: Barker Center, Room 316
  • No exams
  • No prerequisites
  • Grading
    • 25% Participation
    • 25% Personal wiki page (weekly assignments)
    • 50% Contribution to group project

Background Info and previous class projects

Recent changes

List of abbreviations:
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17 April 2024

     15:34  BioMicroCenter:Element Sequencing‎‎ 3 changes history +295 [Challee‎ (3×)]
     
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16 April 2024

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     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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     08:18  3D Printed Microfluidic Robots - Helen Hua‎‎ 2 changes history +6 [Michele Caggioni‎ (2×)]
     
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15 April 2024

     23:43  User:Yanbin Huang‎‎ 2 changes history +170 [Yanbin Huang‎ (2×)]
     
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     22:11  The paper that launched microfluidics - Xi Ning‎‎ 11 changes history +4,793 [Xning098‎ (11×)]
     
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     21:45  (Upload log) [Xning098‎ (2×)]
     
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21:30 Xning098 talk contribs uploaded File:Figure 3 Set-up3.png