Santa Fe Institute Collaboration Platform

Thermodynamics of Computation

Difference between revisions of "Manoj Gopalkrishnan"

From Thermodynamics of Computation
(Faculty member in Electrical engineering at IIT Bombay)
 
 
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|Biography=Manoj Gopalkrishnan is a faculty member in Electrical Engineering at the Indian Institute of Technology Bombay. He received his Ph.D. in Computer Science from the University of Southern California in 2008 working with Professor Leonard Adleman. His Ph.D. thesis was titled "Theoretical and Experimental Self-Assembly."
 
|Biography=Manoj Gopalkrishnan is a faculty member in Electrical Engineering at the Indian Institute of Technology Bombay. He received his Ph.D. in Computer Science from the University of Southern California in 2008 working with Professor Leonard Adleman. His Ph.D. thesis was titled "Theoretical and Experimental Self-Assembly."
 
|Fields of Research=Chemical Reaction Networks; Computer Science Theory; General Non-equilibrium Statistical Physics; Stochastic Thermodynamics; Artificial Biological Computation; Logically Reversible Computing; Quantum Thermodynamics and Information Processing
 
|Fields of Research=Chemical Reaction Networks; Computer Science Theory; General Non-equilibrium Statistical Physics; Stochastic Thermodynamics; Artificial Biological Computation; Logically Reversible Computing; Quantum Thermodynamics and Information Processing
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|Related links={{Related link
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|Related link title=Manoj Gopalkrishnan's home page
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|Related link URL=http://www.ee.iitb.ac.in/~manojg
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}}{{Related link
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|Related link title=Video lecture on thermodynamics of information processing
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|Related link URL=https://youtu.be/oXWBZtqIX_o
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}}
 
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Latest revision as of 02:16, March 29, 2019

Biography: Manoj Gopalkrishnan is a faculty member in Electrical Engineering at the Indian Institute of Technology Bombay. He received his Ph.D. in Computer Science from the University of Southern California in 2008 working with Professor Leonard Adleman. His Ph.D. thesis was titled "Theoretical and Experimental Self-Assembly."

Field(s) of Research: Chemical Reaction Networks, Computer Science Theory, General Non-equilibrium Statistical Physics, Stochastic Thermodynamics, Artificial Biological Computation, Logically Reversible Computing, Quantum Thermodynamics and Information Processing

Related links

Reference Materials

  1. A Cost / Speed / Reliability Trade-off in Erasing a Bit
  2. A cost/speed/reliability tradeoff to erasing