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A free and open online publication of educational material from thousands of MIT courses, covering the entire MIT curriculum, ranging from introductory to the most advanced graduate courses. On the OCW website, each course includes a syllabus, instructional material like notes and reading lists, and learning activities like assignments and solutions. Some courses also have videos, online textbooks, and faculty insights on teaching. Knowledge is your reward. There's no signup or enrollment, and no start or end dates. OCW is self-paced learning at its best. Whether you’re a student, a teacher, or simply a curious person that wants to learn, MIT OpenCourseWare (OCW) offers a wealth of insight, inspiration, videos, and a whole lot more! Get the full picture on the OCW website at https://ocw.mit.edu. Accessibility: https://accessibility.mit.edu/ User comments policy: https://ocw.mit.edu/comments/ (Channel banner photo by Nietnagel on Flickr: https://flic.kr/p/8WXxfK.)
Episodes


11. Dopant Diffusion - Review Atomic Scale Models, Profile Measurement Techniques

23. Growth and Processing of Strained Si/SiGe and Stress Effects on Devices

15. Transient Enhanced Diffusion (TED) - Simulation Examples, TED Calculations, RSCE in detail

8. Dopant Diffusion - Need for Abrupt Profiles, Fick's Laws, Simple Analytic

19. Thin Film Deposition and Epitaxy - Modeling Topography of Deposition

13. Ion Implantation and Annealing - Physics of E Loss, Damage, Introduction to TED

9. Dopant Diffusion - Numerical Techniques in Diffusion, E Field Effects

3. Crystal Growth, Wafer Fabrication, and Basic Properties of Si Wafers (cont.)

20. Etching - Introduction

17. Thin Film Deposition and Epitaxy - Introduction to CVD, Si Epitaxial Growth

14. Transient Enhanced Diffusion (TED) - +1 Model, (311) Defects and TED Introduction

10. Dopant Diffusion - Fermi Level Effects, I and V Assisted Diffusion

16. The SUPREM IV Process Simulator

Lecture 6: Thermionic power conversion

Lecture 5: Current research on thermoelectric materials

Lecture 9: Solar concentration and solar thermal technology

Lecture 4: Kinetic formulation of thermoelectricity

Lecture 8: Radiative heat transfer

Lecture 7: Photovoltaic cells
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