Reading assignments - Summer 462

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(Created page with " 11.5.4 Spherical waves 13.1-13.2.2 Reflection and refraction (normal incidence) 13.2.3 Fresnel equations 13.3 Waves in a conductor 13.4-13.4.1 (not 13.4.2) Dispersion an...")
 
 
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15.1 Retarded potentials
 
15.1 Retarded potentials
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15.2-15.2.1, 15.2.4 Electric dipole radiation
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15.4 Larmor formula
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15.5 Scattering
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15.6-15.6.2 Lienard-Wiechert
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15.6.3 More Lienard-Wiechert
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12-12.1 Relativity basics
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12.2-12.2.1 Introduction to the Minkowski formulation
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12.2.2-12.2.3 Minkowski kinematics and dynamics
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12.3 Covariant E&M
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12.4 Field transformations
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12.5 Relativistic point charges
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12.7 Electromagnetic stress tensor
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12.6 Magnets, how do they work?

Latest revision as of 14:23, 27 June 2013


11.5.4 Spherical waves

13.1-13.2.2 Reflection and refraction (normal incidence)

13.2.3 Fresnel equations

13.3 Waves in a conductor

13.4-13.4.1 (not 13.4.2) Dispersion and resonance

14, 14.1.1 Waveguides, TEM solutions to planar waveguides

14.1.2, 14.1.3 TE, TM waves

14.2 Rectangular waveguides

14.4 Coax cables

14.5 Resonance in waveguides

15.1 Retarded potentials

15.2-15.2.1, 15.2.4 Electric dipole radiation

15.4 Larmor formula

15.5 Scattering

15.6-15.6.2 Lienard-Wiechert

15.6.3 More Lienard-Wiechert

12-12.1 Relativity basics

12.2-12.2.1 Introduction to the Minkowski formulation

12.2.2-12.2.3 Minkowski kinematics and dynamics

12.3 Covariant E&M

12.4 Field transformations

12.5 Relativistic point charges

12.7 Electromagnetic stress tensor

12.6 Magnets, how do they work?

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