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Faraday's Law and Lenz's Rule
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Classroom Contents
Intro to Electricity and Magnetism
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- 1 ch 13 pt1 Forces to Fields (was ch14 in 3rd Ed)
- 2 ch13 pt2 Fields from Charges (was ch 14 in 3rd Ed)
- 3 ch14 pt1, Fields in Matter (ch 15 in 3rd Ed)
- 4 E-Fields from Distributed Charges (ch 15, M&I 4th Ed)
- 5 ch16 M&I: Electric Potential 4th Ed
- 6 ch17: M&I 4th Ed Magnetic Fields
- 7 ch18 M&I 4th Ed Current in Conductors
- 8 CH 19 M&I (4th Ed) : Circuit Elements
- 9 Simple Circuit Analysis
- 10 Ch 20: M&I 4th Ed: Magnetic Forces Update (fixed Audio)
- 11 Field Symmetries: M&I 4th Ed Chapter 21
- 12 Magnetic Forces: Single Particle Situations
- 13 Faraday's Law and Lenz's Rule
- 14 Hints about Fermat's Principle Assignment
- 15 Quick Induced EMF by bar magnet
- 16 Accelerometer Simulation
- 17 Positronium Activity
- 18 Moon-Earth Orbit Example
- 19 Angular Velocity/Frequency of a Binary Star system
- 20 Finding the location of the Max E field on the axis of a "ring" of charge
- 21 Magnetic Dipole in a Magnetic Field Lab
- 22 Mass of the Electron experiment
- 23 M&I Radiation I