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政治大學 AQI 42 26°C PM2.5 6
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Uedu Open / Introduction to Nanoelectronics
6.701

Introduction to Nanoelectronics

Prof. Marc Baldo | Spring 2010
Data Science, Analytics & Computer Technology Science & Math Chemistry Physics Energy, Climate & Sustainability Energy Engineering Electrical Engineering
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CC BY-NC-SA 4.0
Course introduction
Traditionally, progress in electronics has been driven by miniaturization. But as electronic devices approach the molecular scale, classical models for device behavior must be abandoned. To prepare for the next generation of electronic devices, this class teaches the theory of current, voltage and resistance from atoms up. To describe electrons at the nanoscale, we will begin with an introduction to the principles of quantum mechanics, including quantization, the wave-particle duality, wavefunctions and Schrödinger’s equation. Then we will consider the electronic properties of molecules, carbon nanotubes and crystals, including energy band formation and the origin of metals, insulators and semiconductors. Electron conduction will be taught beginning with ballistic transport and concluding with a derivation of Ohm’s law. We will then compare ballistic to bulk MOSFETs. The class will conclude with a discussion of possible fundamental limits to computation.
Course Information
SourceMIT 開放式課程
DepartmentElectrical Engineering and Computer Science
LanguageEnglish
Number of videos0
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