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1 PHY 712 Electrodynamics 10-10:50 AM MWF Olin 107 Plan for Lecture 35: Comments and problem solving advice:  Comment about PHY 712 final  General review.

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Presentation on theme: "1 PHY 712 Electrodynamics 10-10:50 AM MWF Olin 107 Plan for Lecture 35: Comments and problem solving advice:  Comment about PHY 712 final  General review."— Presentation transcript:

1 1 PHY 712 Electrodynamics 10-10:50 AM MWF Olin 107 Plan for Lecture 35: Comments and problem solving advice:  Comment about PHY 712 final  General review 04/25/2014PHY 712 Spring 2014 -- Lecture 35

2 204/25/2014PHY 712 Spring 2014 -- Lecture 35

3 04/25/2014PHY 712 Spring 2014 -- Lecture 353

4 04/25/2014PHY 712 Spring 2014 -- Lecture 354 TimePresenter Name Presenter Title 10-10:20 AM Sam Flynn“Group Theory and Electromagnetism” 10:25- 10:40 AM Ahmad??????????????????????? ?? TimePresenter Name Presenter Title 9:30-9:50 AM Calvin Arter“Electrodynamics and the interaction potential” 9:55- 10:20 AM Ryan Melvin“Effects of electric fields on small strands of human RNA” 10:25- 10:40 AM Drew Onken“The Electromagnetic Theory Behind the Free Electron Laser” Monday 4/28/2014 Wednesday 4/30/2014

5 04/25/2014PHY 712 Spring 2014 -- Lecture 355 Final exam for PHY 712  Available: Friday, May 2, 2014  Due: Monday, May 12, 2014

6 04/25/2014PHY 712 Spring 2014 -- Lecture 356

7 04/25/2014PHY 712 Spring 2014 -- Lecture 357

8 04/25/2014PHY 712 Spring 2014 -- Lecture 358

9 04/25/2014PHY 712 Spring 2014 -- Lecture 359 Energy and power (SI units)

10 04/25/2014PHY 712 Spring 2014 -- Lecture 3510

11 04/25/2014PHY 712 Spring 2014 -- Lecture 3511

12 04/25/2014PHY 712 Spring 2014 -- Lecture 3512

13 04/25/2014PHY 712 Spring 2014 -- Lecture 3513 In your “bag” of tricks:  Direct (analytic or numerical) solution of differential equations  Solution by expanding in appropriate orthogonal functions  Green’s function techniques

14 04/25/2014PHY 712 Spring 2014 -- Lecture 3514 How to choose most effective solution method --  In general, Green’s functions methods work well when source is contained in a finite region of space

15 04/25/2014PHY 712 Spring 2014 -- Lecture 3515

16 04/25/2014PHY 712 Spring 2014 -- Lecture 3516 Electromagnetic waves from time harmonic sources

17 04/25/2014PHY 712 Spring 2014 -- Lecture 3517 Electromagnetic waves from time harmonic sources – continued:

18 04/25/2014PHY 712 Spring 2014 -- Lecture 3518 Electromagnetic waves from time harmonic sources – continued:

19 04/25/2014PHY 712 Spring 2014 -- Lecture 3519 Model of dielectric properties of matter: http://img.tfd.com/ggse/d6/gsed_0001_0012_0_img2972.png Drude model Vibrations of charged particles near equilibrium: rr

20 04/25/2014PHY 712 Spring 2014 -- Lecture 3520 Drude model: Vibration of particle of charge q and mass m near equilibrium: rr http://img.tfd.com/ggse/d6/gsed_0001_0012_0_img2972.png

21 04/25/2014PHY 712 Spring 2014 -- Lecture 3521 Drude model dielectric function:

22 04/25/2014PHY 712 Spring 2014 -- Lecture 3522 Kramers-Kronig transform – for use in dielectric analysis Re(z) Im(z)  =0

23 04/25/2014PHY 712 Spring 2014 -- Lecture 3523 Kramers-Kronig transform – for dielectric function: Further comments on analytic behavior of dielectric function


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