SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
3876
L5DD5: Flux Through an Arbitrary Surface with One Point Charge Enclosed
Electricity and Magnetism: Electrostatics MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3877
Nonlinear dynamics: Stability and bifurcations (M-I-T)
Introduction to Computational Thinking (Fall 2020) (M-I-T) MIT Prof. Alan Edelman, Prof. David P. Sanders, Grant Sanderson, Dr. James Schloss, and Henri Drake Applied Sciences
3878
L15v4: Difference in Potential across a Battery and Resistor
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3879
Hierarchical thinking (M-I-T)
Introduction to Computational Thinking (Fall 2020) (M-I-T) MIT Prof. Alan Edelman, Prof. David P. Sanders, Grant Sanderson, Dr. James Schloss, and Henri Drake Applied Sciences
3880
L7v4: Potential Difference of Two Concentric Cylinders
Electricity and Magnetism: Electrostatics MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3881
L18v3: Biot-Savart Equation
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3882
L15v6: Multiloop Circuits
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3883
Ocean currents as two-dimensional advection diffusion (M-I-T)
Introduction to Computational Thinking (Fall 2020) (M-I-T) MIT Prof. Alan Edelman, Prof. David P. Sanders, Grant Sanderson, Dr. James Schloss, and Henri Drake Applied Sciences
3884
L5DD6: Flux Through an Arbitrary Surface with Many Point Charges Enclosed
Electricity and Magnetism: Electrostatics MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3885
L8v1: Potential and Potential Energy
Electricity and Magnetism: Electrostatics MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3886
L18v4: Using Biot-Savart to Find the Magnetic Field at the Center of a Ring
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3887
Parallel computing on your own machine (M-I-T)
Introduction to Computational Thinking (Fall 2020) (M-I-T) MIT Prof. Alan Edelman, Prof. David P. Sanders, Grant Sanderson, Dr. James Schloss, and Henri Drake Applied Sciences
3888
L15v7: Resistors in Series and in Parallel
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3889
L8v2: Work for a Moving Point Charge
Electricity and Magnetism: Electrostatics MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3890
L18v6: Force on a Wire in a Magnetic Field
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3891
Probability via computation (M-I-T)
Introduction to Computational Thinking (Fall 2020) (M-I-T) MIT Prof. Alan Edelman, Prof. David P. Sanders, Grant Sanderson, Dr. James Schloss, and Henri Drake Applied Sciences
3892
L15v9: Power in a Circuit
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3893
L8v3: Sign of Work
Electricity and Magnetism: Electrostatics MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3894
L19v1: Magnetic Monopoles
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3895
Raytracing in 2D (M-I-T)
Introduction to Computational Thinking (Fall 2020) (M-I-T) MIT Prof. Alan Edelman, Prof. David P. Sanders, Grant Sanderson, Dr. James Schloss, and Henri Drake Applied Sciences
3896
L16v1: Circuit with a Capacitor
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences
3897
L8v4: Potential for a Point Charge
Electricity and Magnetism: Electrostatics MIT Peter Dourmashkin, Krishna Rajagopal, Dr. Kerstin Perez, Dr. Analia Barrantes, Dr. Michelle Tomasik, Prof.Robert Redwine Basic and Health Sciences
3898
Raytracing in 3D (M-I-T)
Introduction to Computational Thinking (Fall 2020) (M-I-T) MIT Prof. Alan Edelman, Prof. David P. Sanders, Grant Sanderson, Dr. James Schloss, and Henri Drake Applied Sciences
3899
What is an array, really? Abstract arrays (M-I-T)
Introduction to Computational Thinking (Fall 2020) (M-I-T) MIT Prof. Alan Edelman, Prof. David P. Sanders, Grant Sanderson, Dr. James Schloss, and Henri Drake Applied Sciences
3900
L19v2: First Two Maxwell's Equations
Electricity and Magnetism: Magnetic Fields and Forces MIT Peter Dourmashkin, Krishna Rajagopal, Kerstin Perez, Analia Barrantes, Michelle Tomasik, Robert Redwin Basic and Health Sciences