SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
3976
Light inside and light outside laser (M-I-T)
Demonstrations in laser fundamentals (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3977
L31v6: Summary of Impedance for Single CIrcuit Elements
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3978
L27v2: Magnetic Energy Density
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3979
Review: Cross Products
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3980
L37v1: Radiation Pressure
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3981
Destructive Interference — Where does the Light go? (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3982
Multi-wavelength argon laser (M-I-T)
Demonstrations in laser fundamentals (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3983
L31v7: Adding Impedance in Series
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3984
L27v3: Calculating Capacitance and Inductance in Two Ways
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3985
Fraunhofer Diffraction — Adjustable Slit (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3986
L37v2: Momentum Carried by Electromagnetic Radiation
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3987
Optics of laser beams (M-I-T)
Demonstrations in laser fundamentals (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3988
L32DD1: Deep Dive – Solving the Undriven RLC Circuit
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3989
L28v1: Charge on a Capacitor in an RC Circuit
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3990
Fraunhofer Diffraction — Circular Apertures (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3991
L37v3: Perfectly Absorbing and Reflecting Surfaces
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3992
Polarization of laser light (M-I-T)
Demonstrations in laser fundamentals (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3993
L28v2: Inductors in a Circuit
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3994
L32v5: RLC Circuit and Resonance
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3995
Fraunhofer Diffraction — Crossed Multiple Slits (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3996
L38v1: Interference
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3997
Reflection back into laser (M-I-T)
Demonstrations in laser fundamentals (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
3998
L28v3: Current in a LR Circuit
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3999
L38v2: Two Slit Interference
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
4000
L32v6: Transformers
Electricity and Magnetism: Maxwell’s Equations MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences