SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
4026
Fresnel Diffraction — Circular Apertures (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4027
The Story Continues – the Higgs Particle
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
4028
L29v4: LC Oscillator Equation
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
4029
L36DD1: Proof of Energy Conservation with the Poynting Vector
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
4030
Fringe Contrast — Intensity Ratio (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4031
W14PS2: Worked Example – Poynting Vector for a Solenoid
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
4032
L36v1: Conservation Laws
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
4033
W14PS3: Worked Example – Poynting Vector for a Resistor
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
4034
Fringe Contrast — Path Difference (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4035
L36v2: Poynting Vector
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
4036
Introduction (M-I-T)
Exploring Black Holes: General Relativity & Astrophysics (Spring 2003) (M-I-T) MIT Prof. Edmund Bertschinger, Prof. Edwin F. Taylor Basic and Health Sciences
4037
L36v3: Direction of the Poynting Vector
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
4038
Fringe Contrast — Polarization Difference (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4039
Why Study Electromagnetism
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
4040
Cosmic Structure Formation; From Inflation to Galaxies (M-I-T)
Exploring Black Holes: General Relativity & Astrophysics (Spring 2003) (M-I-T) MIT Prof. Edmund Bertschinger, Prof. Edwin F. Taylor Basic and Health Sciences
4041
Polarization in a Single Mode Fiber (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4042
L36v6: Power and Poynting Vector from a Radially Symmetric Source
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
4043
Fringe Contrast — Vibrations (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4044
Einstein's Field Equations (M-I-T)
Exploring Black Holes: General Relativity & Astrophysics (Spring 2003) (M-I-T) MIT Prof. Edmund Bertschinger, Prof. Edwin F. Taylor Basic and Health Sciences
4045
Polarization rotation using polarizers (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4046
Half-wave Plate (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4047
The Universe and Three Examples (M-I-T)
Exploring Black Holes: General Relativity & Astrophysics (Spring 2003) (M-I-T) MIT Prof. Edmund Bertschinger, Prof. Edwin F. Taylor Basic and Health Sciences
4048
Quarter-wave Plate (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4049
Reflection at The Air-glass Boundary (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences
4050
Linear polarizer (M-I-T)
Demonstrations in physical optics (M-I-T) MIT Prof. Shaoul Ezekiel Applied Sciences