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Fundamentals of Physics III

Yale, , Prof. Ramamurti Shankar

Updated On 02 Feb, 19

Overview

Electrostatics - Electric Fields - Gauss's Law and Application to Conductors and Insulators - The Electric Potential and Conservation of Energy - Capacitors - Resistance - Circuits and Magnetism - Ampere's Law - Lenz's and Faraday's Laws - LCR CircuitsDC Voltage - LCR CircuitsAC Voltage - Maxwell's Equations and Electromagnetic Waves - Ray or Geometrical Optics - Wave Theory of Light - Quantum Mechanics:The key experiments and wave-particle duality - Measurement theory, states of definite energy - Particle in a Box - Time-dependent Schrdinger Equation - Summary of postulates and special topics

Includes

Lecture 10: Amperes Law

4.1 ( 11 )


Lecture Details

Fundamentals of Physics, II (PHYS 201)

Amperes Law is used to find the magnetic field generated by currents in highly symmetric geometries like the infinitely long wire and the solenoid. It is shown how magnetism can be used to convert macroscopic mechanical energy to do microscopic electrical work. Lenzs and Faradays Laws are introduced. The latter says that a changing magnetic field generates a non-conservative electric field.

Complete course materials are available at the Open Yale Courses website httpopen.yale.educourses

This course was recorded in Spring 2010.

Ratings

2.8


8 Ratings
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30%
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Comments
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Sam

Excellent course helped me understand topic that i couldn't while attendinfg my college.

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Dembe

Great course. Thank you very much.

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