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This course covers fundamentals of thermodynamics, chemistry, and transport applied to energy systems.

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English

English [CC]

FREE

Description

Topics include analysis of energy conversion and storage in thermal, mechanical, chemical, and electrochemical processes in power and transportation systems, with emphasis on efficiency, performance, and environmental impact. Applications include fuel reforming and alternative fuels, hydrogen, fuel cells and batteries, combustion, catalysis, combined and hybrid power cycles using fossil, nuclear and renewable resources.

Course content

  • Introduction, Energy Challenges Unlimited
  • Thermodynamics and Tools to Analyze Conversion Efficiency Unlimited
  • Thermodynamics of Ideal Gas Mixtures and Separation Unlimited
  • Liquefaction and Gas Storage Unlimited
  • Chemical Thermodynamics I Unlimited
  • Chemical Thermodynamics II Unlimited
  • Chemical Thermodynamics III Unlimited
  • Electrochemical Thermodynamics Unlimited
  • Fuel Cells at Finite Current Unlimited
  • Electrolysis and Energy Storage Unlimited
  • Batteries and Energy Storage Unlimited
  • Solar Photovoltaics Unlimited
  • Thermo-mechanical Conversion I Unlimited
  • Thermo-mechanical Conversion II Unlimited
  • Solar Thermal Energy Unlimited
  • Geothermal Energy Unlimited
  • Gas Separation Technologies Unlimited
  • CO{{}} Capture and Storage Unlimited
  • Energy System Modeling and Examples Unlimited
  • Wind Energy Unlimited
  • Energy and Materials Unlimited
  • Biomass Energy Unlimited
  • Energy Storage Unlimited

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Instructor

Massachusetts Institute of Technology
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