Reading assignments - Fall 2016 462

(Difference between revisions)
Jump to: navigation, search
Line 36: Line 36:
  
  
'''Wednesday September 2nd: Ampere-Maxwell equation'''   
+
'''Monday August 29th: Ampere-Maxwell equation'''   
  
 
Traditional lecture, no required prep.
 
Traditional lecture, no required prep.
Line 46: Line 46:
  
  
'''Monday September 5th: No class: Labor Day'''
+
'''Wednesday August 31st: Maxwell equations'''   
 
+
'''Monday September 5th: Maxwell equations'''   
+
  
 
Flipped class.  Pollack and Stump section 11.1 or Griffiths 7.3.1
 
Flipped class.  Pollack and Stump section 11.1 or Griffiths 7.3.1
Line 61: Line 59:
  
  
'''Wednesday September 9th: Potentials and the Helmholtz theorem''' 
 
 
Flipped class.  Pollack and Stump appendix B and 11.2 or Griffiths appendix B and 10.1
 
 
[http://ticc.mines.edu/csm/wiki/images/9/96/Prep_HelmHoltzTheorem.pdf '''Prep guide''']
 
 
[http://www.youtube.com/watch?v=ZiVQa48IpJs '''Helmholtz theorem''']
 
 
[http://www.youtube.com/watch?v=7E1Gkw6KV9o '''Helmholtz in electrodynamics''']
 
  
[http://www.youtube.com/watch?v=ozenFhkVb2M '''Electrodynamic potentials''']
+
'''Friday September 2nd:  Dynamics in matter'''
 
+
 
+
'''Friday September 11th: Potentials and gauges''' 
+
 
+
Flipped class.  Pollack and Stump appendix B and 11.2 or Griffiths appendix B and 10.1 or Shadowitz p. 187-191
+
 
+
[http://ticc.mines.edu/csm/wiki/images/a/a8/Prep_Gauges.pdf '''Prep guide''']
+
 
+
[http://www.youtube.com/watch?v=GRfTTnLlFz0 '''Gauges''']
+
 
+
[http://www.youtube.com/watch?v=hHx9QeYBZVs '''Gauge transformations''']
+
 
+
[http://www.youtube.com/watch?v=1P68eba7zEs '''Aharonov-Bohm effect'''] (third one optional, just for fun)
+
 
+
 
+
'''Monday September 14th:  Dynamics in matter'''
+
 
    
 
    
 
Flipped class.  Pollack and Stump 11.3 or Griffiths 7.3.6
 
Flipped class.  Pollack and Stump 11.3 or Griffiths 7.3.6
Line 98: Line 71:
  
  
'''Wednesday September 16th:  Energy, momentum, and the Poynting vector'''
+
'''Monday September 5th: No class: Labor Day'''
 +
 
 +
 
 +
'''Wednesday September 7th:  Energy, momentum, and the Poynting vector'''
 
    
 
    
 
Traditional class - no required prep.  Optional prep materials:
 
Traditional class - no required prep.  Optional prep materials:
Line 109: Line 85:
  
  
No prep for '''Friday September 18th''' - recitation day   
+
No prep for '''Friday September 9th''' - recitation day   
  
  
'''Monday September 21st:  Plane waves'''   
+
'''Monday September 12th:  Plane waves'''   
  
 
Fipped class.  Pollack and Stump 11.5-11.5.3 or Griffiths 9.1-9.2
 
Fipped class.  Pollack and Stump 11.5-11.5.3 or Griffiths 9.1-9.2
Line 121: Line 97:
  
  
'''Wednesday September 23rd:  Spherical waves'''   
+
'''Wednesday September 14th:  Spherical waves'''   
  
 
Half-flipped class.  Pollack and Stump 11.5.4-11.5.5 or Griffiths problem 9.33
 
Half-flipped class.  Pollack and Stump 11.5.4-11.5.5 or Griffiths problem 9.33
Line 134: Line 110:
  
  
No prep for '''Friday September 25th''' - first peer lecture   
+
No prep for '''Friday September 16th''' - first peer lecture   
  
  
Line 245: Line 221:
  
 
No prep for '''Wednesday October 28th''' - recitation day
 
No prep for '''Wednesday October 28th''' - recitation day
 +
 +
'''Wednesday September 9th: Potentials and the Helmholtz theorem''' 
 +
 +
Flipped class.  Pollack and Stump appendix B and 11.2 or Griffiths appendix B and 10.1
 +
 +
[http://ticc.mines.edu/csm/wiki/images/9/96/Prep_HelmHoltzTheorem.pdf '''Prep guide''']
 +
 +
[http://www.youtube.com/watch?v=ZiVQa48IpJs '''Helmholtz theorem''']
 +
 +
[http://www.youtube.com/watch?v=7E1Gkw6KV9o '''Helmholtz in electrodynamics''']
 +
 +
[http://www.youtube.com/watch?v=ozenFhkVb2M '''Electrodynamic potentials''']
 +
 +
 +
'''Friday September 11th: Potentials and gauges''' 
 +
 +
Flipped class.  Pollack and Stump appendix B and 11.2 or Griffiths appendix B and 10.1 or Shadowitz p. 187-191
 +
 +
[http://ticc.mines.edu/csm/wiki/images/a/a8/Prep_Gauges.pdf '''Prep guide''']
 +
 +
[http://www.youtube.com/watch?v=GRfTTnLlFz0 '''Gauges''']
 +
 +
[http://www.youtube.com/watch?v=hHx9QeYBZVs '''Gauge transformations''']
 +
 +
[http://www.youtube.com/watch?v=1P68eba7zEs '''Aharonov-Bohm effect'''] (third one optional, just for fun)
 +
  
  

Revision as of 17:25, 21 August 2016

Also see handwritten lecture notes posted in chronological order and a full directory of available videos. Some intro E&M (Phys 200 level) materials are available at my YouTube channel under the Review of Intro E&M playlist..

Return to main course page


Monday August 22nd: Syllabus and intro


Wednesday August 24th: Faraday's law

Traditional lecture, no required prep.

Optional pre or post review: Pollack and Stump sections 10.1-10.3 or Griffiths 7.1.3-7.2.2

Faraday's and Lenz's laws - 462 level

Faraday's law - Phys 200 level review

Lenz's law - Phys 200 level review

Notes from class


Friday August 26th: Inductance and stored energy

Flipped class. Pollack and Stump sections 10.3 (end part on LC circuits), 10.5 or Griffiths 7.2.3-7.2.5

Prep guide

Self inductance

Energy in inductors

LC circuits


Monday August 29th: Ampere-Maxwell equation

Traditional lecture, no required prep.

Optional pre or post review: Pollack and Stump section 11.1.1 or Griffiths 7.3.2

No videos available. Written notes here


Wednesday August 31st: Maxwell equations

Flipped class. Pollack and Stump section 11.1 or Griffiths 7.3.1

Prep guide

Maxwell equations - overview

Maxwell equations with monopoles

Divergence & Stokes' theorem, Fundamental theorem of calculus(third one optional)


Friday September 2nd: Dynamics in matter

Flipped class. Pollack and Stump 11.3 or Griffiths 7.3.6

Prep guide

Maxwell eqns in matter

Dynamic BCs


Monday September 5th: No class: Labor Day


Wednesday September 7th: Energy, momentum, and the Poynting vector

Traditional class - no required prep. Optional prep materials:

Pollack and Stump 11.4 or Griffiths 8.2.1-8.2.3

Prep guide

Energy, momentum, and the Poynting vector


No prep for Friday September 9th - recitation day


Monday September 12th: Plane waves

Fipped class. Pollack and Stump 11.5-11.5.3 or Griffiths 9.1-9.2

Prep guide

Plane waves


Wednesday September 14th: Spherical waves

Half-flipped class. Pollack and Stump 11.5.4-11.5.5 or Griffiths problem 9.33

Prep guide

Spherical waves

Optional, subject of in-class mini-lecture:

Complex math with waves


No prep for Friday September 16th - first peer lecture


Monday September 28th: Reflection and refraction

Traditional lecture - no required prep. Optional prep materials:

Pollack and Stump 13.1-13.2.2 or Griffiths 9.3.1

Prep guide

Reflection and refraction


Wednesday September 30th: Reflection and transmission coefficients

Flipped class. Pollack and Stump 13.2.2 or Griffiths 9.3.2

Prep guide

Reflection and transmission coefficients


Friday October 2nd: Multiple interface problems

Flipped class. Pollack and Stump 13.2.2 or Griffiths 9.3.2

Prep guide

Multiple interfaces


Monday October 5th: Non-normal incidence problems

Flipped class. Pollack and Stump 13.2.3 or Griffiths 9.3.3

Prep guide

Non-normal incidence; Fresnel equations


No prep for Wednesday October 7th - recitation day


Friday October 9th: Exam 1


Monday October 12th: Evanescence and conductors

Traditional lecture - no required prep. Optional prep materials:

Pollack and Stump 13.3 or Griffiths 9.3.2 and 9.4.1-9.4.2

Prep guide

Evanescence Waves in conductors


Wednesday October 14th: Dispersion and resonance

Flipped class. Pollack and Stump 13.4-13.4.1 and top of pg. 488, or Griffiths 9.4.3

Prep guide

Dispersion and resonance Group and phase velocities


Friday October 16th: Intro to waveguides

Traditional lecture - no required prep. Optional prep materials: Pollack and Stump 14.1-14.1.2 or Griffiths 9.5.1

Prep guide

Intro to waveguides Parallel plate TE modes


No prep for Monday October 19th - fall break


Wednesday October 21st: More waveguides: TM modes and energy transport

Flipped class. Pollack and Stump 14.1.2-14.1.3. No Griffiths equivalent.

Prep guide

Energy transport and wavespeeds in waveguides TM modes


Friday October 23rd: Rectangular waveguides

Flipped class. Pollack and Stump 14.2 or Griffiths 9.5.2

Prep guide

Rectangular waveguides


Monday October 26th: Coax and waveguide wrap-up

Flipped class. Pollack and Stump 14.3-14.4 or Griffiths 9.5.3

Prep guide

Coax cables


No prep for Wednesday October 28th - recitation day

Wednesday September 9th: Potentials and the Helmholtz theorem

Flipped class. Pollack and Stump appendix B and 11.2 or Griffiths appendix B and 10.1

Prep guide

Helmholtz theorem

Helmholtz in electrodynamics

Electrodynamic potentials


Friday September 11th: Potentials and gauges

Flipped class. Pollack and Stump appendix B and 11.2 or Griffiths appendix B and 10.1 or Shadowitz p. 187-191

Prep guide

Gauges

Gauge transformations

Aharonov-Bohm effect (third one optional, just for fun)


Friday October 30th: Green's functions and retarded potentials

Half flipped class. No good textbook equivalent - check out the video on Green's functions before class. Come prepared to answer the question "What is a Green's function?"

Green's functions

Optional pre/post review:

Retarded potentials


Monday November 2nd: Asymptotic potentials

Flipped class. Pollack and Stump first part of 15.2 and 15.2.3

Prep guide

Asymptotic potentials

Optional worked example (worth watching casually now; also ties into a homework problem):

Sheet current example


Wednesday November 4th: Radiation I

Flipped class. Pollack and Stump rest of 15.2 or Griffiths chapter 11

Prep guide

Monopole radiation


No prep for Friday November 6th - second peer lecture


Monday November 9th: Radiation II

Traditional lecture. Optional prep materials: Pollack and Stump rest of 15.2 or Griffiths chapter 11

Prep guide

Dipole radiation Classical atom collapse


Wednesday November 11th: Scattering

Flipped class. Pollack and Stump 15.5. No Griffiths equivalent.

Prep guide

Scattering


Friday November 13th: Exam 2


Monday November 16th: Wrapping up classical E&M

Half-flipped class. Follow through the derivation of the Lienard-Wiechert potentials, but stop before the derivation of Lienard's formula. Pollack and Stump 15.6 or Griffiths 10.3.1-10.3.2

Prep guide

Lienard-Wiechert potentials

Optional pre/post review:

Shades of relativity


Wednesday November 18th: Wrap-up activity


Relativity and whatnot


Wednesday December 9th: Guest lecture, QED


No class Friday December 11th - dead day

Personal tools
Namespaces
Variants
Actions
Navigation
Toolbox