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Electricity and Magnetism: Electrostatics
Electricity and Magnetism: Electrostatics
(82 Lectures Available)
S#
Lecture
Course
Institute
Instructor
Discipline
26
L2v2: Kinds of Vector Fields
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
27
L2v3: Electric Field of a Positive 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
28
L2v4: Superposition
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
29
L2v5: Worked Example - Total Electric Field Due to 2 Charges
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
30
L3DDv1: Electric Field of a Dipole Everywhere in Space
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
31
L3DDv2: Rewrite the Electric Field of a Dipole
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
32
L3DDv3: Electric Field Far Away from the Dipole
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
33
L3DDv4: Rewrite Dipole Far Field with p and theta
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
34
L3DDv5: Final Form of the Dipole Far FIeld
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
35
L3v1: Introduction to Electric Dipoles
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
36
L3v2: Electric Dipole Moment of 2 Charges
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
37
L3v3: Definition of the Dipole Moment
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
38
L3v4: Worked Example - Dipole Moment of 3 Charges
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
39
L3v5: Dipole Moment is Independent of Origin
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
40
L3v7: Dipole in a Non-uniform Field Demo
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
41
L4v1: Electric Field of a Continuous Charge Source
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
42
L4v2: Electric Field from a Rod on the Symmetry Axis Using Angles and Symmetry
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
43
L4v3: Continuous Charge Distribution Electric Field Calculation with Source to Point Vector
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
44
L4v4: Electric Field from a Rod on the Symmetry Axis Using the Source to Point Vector
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
45
L5DD1: Introduction to Gauss's Law Proof
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
46
L5DD2: Flux Through a Closed Surface with Charge Outside
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
47
L5DD3: Flux Through a More General Closed Surface with Charge Outside
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
48
L5DD4: Flux Through a Generic Surface with No Enclosed 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
49
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
50
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
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