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Introduction to Thermoelectricity Lecture 1.1: Theory - Introduction
Online Presentations | 17 Oct 2019 | Contributor(s):: Mark Lundstrom
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Introduction to Thermoelectricity Lecture 1.2: Theory - Electrical Conductivity
Online Presentations | 17 Oct 2019 | Contributor(s):: Mark Lundstrom
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Introduction to Thermoelectricity Lecture 1.3: Theory - Seebeck Coefficient
Online Presentations | 17 Oct 2019 | Contributor(s):: Mark Lundstrom
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Introduction to Thermoelectricity Lecture 1.4: Theory - Peltier Coefficient
Online Presentations | 17 Oct 2019 | Contributor(s):: Mark Lundstrom
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Introduction to Thermoelectricity Lecture 1.5: Theory - Electronic Thermal Conductivity
Online Presentations | 17 Oct 2019 | Contributor(s):: Mark Lundstrom
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Introduction to Thermoelectricity Lecture 1.6: Theory - Figure of Merit
Online Presentations | 17 Oct 2019 | Contributor(s):: Mark Lundstrom
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Introduction to Thermoelectricity Lecture 1.7: Theory - Summary
Online Presentations | 17 Oct 2019 | Contributor(s):: Mark Lundstrom
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Introduction to Thermoelectricity Lecture 2.1: Systems - Importance of ZT (material figure-of-merit)
Online Presentations | 21 Oct 2019 | Contributor(s):: Ali Shakouri
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Introduction to Thermoelectricity Lecture 2.2: Systems - Efficiency Limits, Carnot, Curzon-Ahlborn
Online Presentations | 21 Oct 2019 | Contributor(s):: Ali Shakouri
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Introduction to Thermoelectricity Lecture 2.3: Systems - Thermoelectrics for Power Generation Applications
Online Presentations | 21 Oct 2019 | Contributor(s):: Ali Shakouri
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Introduction to Thermoelectricity Lecture 2.4: Systems - TE Cost/Performance Tradeoff
Online Presentations | 21 Oct 2019 | Contributor(s):: Ali Shakouri
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Introduction to Thermoelectricity Lecture 2.5: Systems - Topping Cycle Applications
Online Presentations | 21 Oct 2019 | Contributor(s):: Ali Shakouri
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Introduction to Thermoelectricity Lecture 2.6: Systems - Peltier Coolers
Online Presentations | 21 Oct 2019 | Contributor(s):: Ali Shakouri
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Introduction to Thermoelectricity Lecture 2.7: Systems - Summary
Online Presentations | 23 Oct 2019 | Contributor(s):: Ali Shakouri
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Jeffrey C Grossman
Jeffrey C. Grossman is a Professor of computational materials science in the Department of Materials Science and Engineering at MIT. His research focuses on the application and development of...
https://nanohub.org/members/9156
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Joshua B Simmons
www.linkedin.com/in/darkdvnt/
https://nanohub.org/members/41706
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Limits of Thermal Processes and their Implications on Efficient Energy Utilization
Online Presentations | 27 Oct 2010 | Contributor(s):: Arunava Majumdar
About 90 percent of the world’s energy use involves thermal processes – thermal engines to generate mechanical power; heating and cooling in buildings; heating involved in manufacturing of steel, cement, glass, petrochemicals etc. To identify opportunities for improving current...
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Long term Aging of Autonomous STructures (LAAST) Seminar Series
Series | 07 Apr 2015 | Contributor(s):: Ali Shakouri
The Long term Aging of Autonomous STructures (LAAST) seminar series focuses on reliability and aging of devices for energy conversion, information processing or sensing.
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Microscale Ionic Wind for Local Cooling Enhancement
Online Presentations | 26 Oct 2007 | Contributor(s):: David B Go
As the electronics industry continues to develop small, highly functional, mobile devices, new methods of cooling are required to manage the thermal requirements of the not only the chip but the entire system. Comfortable skin temperatures, small form factors, and limited power consumption are...
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MIT Tools for Energy Conversion and Storage
Tools | 13 Sep 2009 | Contributor(s):: Jeffrey C Grossman, Joo-Hyoung Lee, Varadharajan Srinivasan, Alexander S McLeod, Lucas Wagner
Atomic-Scale Simulation Tools to Explore Energy Conversion and Storage Materials