nanoHUB-U: Fundamentals of Nanotransistors, 2nd Edition
Course overview Offering: Spring 2016 Section: Default
Video
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1. Quick Review of Semiconductor …
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2. Essentials of semiconductor ph…
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3. Silicon energy levels
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4. Silicon energy levels / energy…
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5. Silicon energy levels ener…
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6. Silicon energy levels ener…
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7. "Energy band diagrams"
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8. Intrinsic silicon
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9. Metals insulators and semicond…
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10. insulators metals semiconducto…
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11. Covalent (column IV) semicondu…
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12. Doping
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13. N-type doping (donors)
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14. Ionized donors
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15. P-type doping (acceptors)
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16. Ionized acceptors
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17. III-V semiconductors
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18. Filling states
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19. Occupation of states
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20. Fermi level / Fermi function
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21. Carrier densities and density-…
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22. Carrier densities and Fermi le…
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23. Non-degenerate semiconductors
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24. N-type semiconductor
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25. P-type semiconductor
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26. Intrinsic semiconductor
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27. Essentials of semiconductor ph…
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28. Classical particle: electron i…
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29. Energy and "crystal momentum"
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30. Drift current
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31. Thermal velocity
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32. Diffusion current
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33. Drift-diffusion equation
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34. Energy bands can bend
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35. Voltage and electron potential…
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36. Example: electrostatic potenti…
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37. Bandbending in semiconductors
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38. Quasi-Fermi levels
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39. Quasi-Fermi levels
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40. Carrier density and QFL's
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41. Current and QFL's
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42. Essentials of semiconductor ph…
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