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This video describes the DC analysis of BJT circuits.
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This video describes the DC analysis of MOSFET circuits.
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This video describes how to develop the equivalent circuit models for a BJT based on its linearized i-v characteristics.
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This video reviews how to linearize a MOSFET to become a linear element. Note: In the video, there is a typo in gm at 16:43. The correct gm = kn'*(W/L)*Vov, instead of (kn'/2)*(W/L)*Vov.
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This is the QFT tutorial for Jan 18, 2021
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This is the QFT Tutorial for Jan 13, 2021.
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CHEMENG 3L02 - Intermediate Laboratory Skills Lab: Polymer Rheology Week: 1 Topic:Understanding the lab concepts for rheology
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CHEMENG 3L02 - Intermediate Laboratory Skills Lab: Polymer Rheology Week: 2 Topic: Recap of W1 and walkthrough on calculations
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CHEMENG 4L02 - Advanced Laboratory Skills Lab: Polymer Extrusion Week: 2 and 3 Topic: Extruder introduction
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First class on the WKB approximation
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1) Discussed the Heisenberg equation of motion applied to the simple harmonic oscillator 2) Discussed coherent states
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Finished going through the Green's function slides and started looking at path integrals.
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None (All Rights Reserved)
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Introduced the propagator and began slides on Green's functions
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Showed how to find transition amplitudes from the Dyson series. Began analyzing 1st order perturbations constant in time except for being switched on at t=t0.
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Introduced the interaction picture
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Discussed how to obtain the WKB connection formulae using both the transitional approximation and the complex method. Also applied the WKB method to quantize wave functions in various potential wells.
Usage Rights
None (All Rights Reserved)
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Finished the Born approximation and started partial waves (L23ScatteringTheory3_Partial_Waves)
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Studied the Green's function approach to scattering theory (L21ScatteringTheory1)
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Finished the set of slides on Operators (covered the rotation operator, Pauli spin matrices, the Schrodinger equation)
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