User:Anugraha Raman

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Contact Info

Anugraha Raman
Anugraha Raman
  • Anugraha Raman
  • Harvard College
  • 184 Pforzheimer Mail Center
  • 56 Linnaen Street
  • Cambridge, MA, 02138, USA
  • I'm a sophomore planning to concentrate in "Human Developmental and Regnerative Biology"(HDRB).

This past summer ('09), I worked in the Harvard Biolabs on synthetic biology research as part of the Harvard 2009 iGEM team, and am continuing to work on this in the Northwest Labs. This past spring ('09), I worked on another synthetic biology project ("Building a biological computer, one microRNA at a time") under Jason Lohmueller (PI: Yaakov Benenson) for LS 100r.

I'm ecstatic about being a part of Biophysics 101! Viva Synthetic Biology!!!

Email me through OpenWetWare


  • 2012, AB, HDRB Harvard College, Cambridge, MA

Research interests

My research interests include Synthetic Biology, Bioethics & Gene patenting, Biomolecular Computers & 'in vivo' Computing and Epigenetics. My other interest are listed here.

  1. Synthetic Biology: The emerging potential for practical "Smart Medicine" is fascinating. Also, I am intrigued by the implications of the design of a minimal cell.
  2. Bioethics & Gene Patenting: As a freshman council member in HUBS, I focused on high school outreach. I originally joined because I wanted to nurture and engage in discussions relating to the field of gene patenting.
  3. Biomolecular Computers & 'in vivo' Computing: Living cells that can be programmed to sense, process a set of "instructions" and respond to these "instructions."


I don't have any publications of my own yet, but I find these interesting:

  1. Friedland AE, Lu TK, Wang X, Shi D, Church G, and Collins JJ. . pmid:19478183. PubMed HubMed [Paper1]
  2. Heller MA and Eisenberg RS. . pmid:9563938. PubMed HubMed [Paper2]
  3. Douglas SM, Dietz H, Liedl T, Högberg B, Graf F, and Shih WM. . pmid:19458720. PubMed HubMed [Paper3]
    This fall ('09) in LS100r I'll be working under Shawn Douglas (PI: George Church)on "DNA nanotechnology: building on the nanometer scale"

All Medline abstracts: PubMed HubMed

Week 2 Assignments

So the first thing I realized is that when i thought i was varying the kvalue, i was actually varying the number of data points in the graph instead and not actually changing anything about the growth rate of the exponential curve :0

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