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Cellular and Molecular Computation

This course is devoted to mathematical tools for analyzing and engineering the dynamical behaviors of such biochemical networks.Life as an emergent property of networks of chemical reactions involving proteins and nucleic acids. Mathematical theories of metabolism, gene regulation, signal transduction, chemotaxis, excitability, motility, mitosis, development, and immunity. Applications to directed molecular evolution, DNA computing, and metabolic and genetic engineering.

Start Date: Feb 01, 2000 Topics: General Engineering
Cost: Free

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Overview

Description

This course is devoted to mathematical tools for analyzing and engineering the dynamical behaviors of such biochemical networks.Life as an emergent property of networks of chemical reactions involving proteins and nucleic acids. Mathematical theories of metabolism, gene regulation, signal transduction, chemotaxis, excitability, motility, mitosis, development, and immunity. Applications to directed molecular evolution, DNA computing, and metabolic and genetic engineering.

Details

  • Dates: Feb 01, 2000 to May 25, 2000
  • Days of the Week: Monday, Tuesday, Wednesday, Thursday, Friday, Saturday, Sunday
  • Level of Difficulty: Beginner
  • Size: Massive Open Online Course
  • Instructor: Prof. Sebastian Seung
  • Cost: Free
  • Institution: MIT OCW
  • Topics: General Engineering

Provider Overview

About MIT OCW: MIT OpenCourseWare (OCW) is a web-based publication of virtually all MIT course content. OCW is open and available to the world and is a permanent MIT activity.

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