Welcome to ECE 329 Section F!

MWF Asynchronously

Instructor: Yang (Victoria) Shao

Email: yangshao@illinois.edu

Office hour: Tu. 11:00am-12:00pm Zoom 

Meeting ID: 876 6232 9668 Password: 714257

Section F lecture videos are on Mediaspace following MWF schedule. If you sign up for section F, you are required to watch the videos and answer a few questions through Webtools before MWF 11:59pm. Your actions will be recored on Mediaspace and Webtools, and used as your class participation (1% of your final grade).

Date Notes Agenda Recordings
Mar. 26

Empty notes

Solution in lossy media

Imperfect Dielectrics, Good Conductors

Today's notes

note 1

note 2

Lecuture handout

L24 Handout 

 

ECE329 L24 part 1 

  • 00:00 – 12:40     Plane waves propagating in lossy media
  • 12:40 – end       Imperfect dielectric
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    ECE329 L24 part 2 

  • 00:00 – 07:26     Good conductor
  • 07:26 – 20:26     Penetration depth
  • 20:26 – end       Examples
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    Participation

    Watch recordings, then submit your answers to https://forms.illinois.edu/sec/1220396913 (due 03/26 11:59pm)

     https://mediaspace.illinois.edu/media/t/1_gqq3vxv0

     https://mediaspace.illinois.edu/media/t/1_iu5xb911

    Mar. 22

    Empty notes

    Solution in lossy media

    Today's notes

    note

    Lecuture handout

    L23 Handout 

     

    ECE329 L23 part 1 

  • 00:00 – 09:36     Review Maxwell solutions in phasor form
  • 09:36 – 16:57     Maxwell’s equations in time harmonic form
  • 16:57 – end       Wave equation in phasor form
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    ECE329 L23 part 2 

  • 00:00 – 08:46     Wave solution in phasor form
  • 08:46 – 17:49     Wave solution in lossy media
  • 17:49 – end       Plane waves propagating in lossy media
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    Participation

    Watch recordings, then submit your answers to https://forms.illinois.edu/sec/1143556545 (due 03/22 11:59pm)

     https://mediaspace.illinois.edu/media/t/1_iqgn3bi1

     https://mediaspace.illinois.edu/media/t/1_xtsnc1cu

    Mar. 19

    Empty notes

    Poyting Theorem

    Phasor Notation

    Today's notes

    note 1

    note 2

    Lecuture handout

    L22 Handout 

     

    ECE329 L22 part 1 

  • 00:00 – 02:29     Important Mid-term announcements
  • 02:29 – 05:24     Review Poynting theorem
  • 05:24 – 22:54     Poynting theorem Example
  • 22:54 – end       Average power
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    ECE329 L22 part 2 

  • 00:00 – 06:23     Phasor notation
  • 06:23 – 13:40     Example 1: Cosinusoidal functions and phasor forms
  • 13:40 – 16:03     Example 2: Infinite current sheet
  • 16:03 – end       Average power
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    Participation

    Watch recordings, then submit your answers to https://forms.illinois.edu/sec/1071217742 (due 03/19 11:59pm)

     https://mediaspace.illinois.edu/media/t/1_pbh4lgec

     https://mediaspace.illinois.edu/media/t/1_opg28f6z

    Mar. 17

    Empty notes

    TEM wave

     

     

    Poynting Theorem

    Today's notes

    note 1

    note 2

    Lecuture handout

    L21 Handout 

     

    ECE329 L21 part 1 

  • 00:00 – 11:03     TEM wave
  • 11:03 – end       Example 1: TEM wave, from E to B
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    ECE329 L21 part 2 

  • 00:00 – 16:07     H field due to surface current density
  • 16:07 – 19:47     From H to E
  • 19:47 – end       Poynting theorem
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    ECE329 L21 part 3 

  • x polarized TEM wave propagation example
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    Participation

    Watch recordings, then submit your answers to https://forms.illinois.edu/sec/2040227021 (due 03/17 11:59pm)

     https://mediaspace.illinois.edu/media/t/1_yh3qsl8w

     https://mediaspace.illinois.edu/media/t/1_3eh80y5q

     https://mediaspace.illinois.edu/media/t/1_bznneyfq

    Mar. 15

    Empty notes

    Wave Equation

    Today's notes

    note

    Lecuture handout

    L20 Handout 

     

    ECE329 L20 part 1 

  • 00:00 – end       The Wave Equation
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    ECE329 L20 part 2 

  • 00:00 – 10:13     1D scalar wave solution
  • 10:13 – 15:18     Intrinsic impedance
  • 15:18 – end       d’Alembert wave solution
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    Participation

    Watch recordings, then submit your answers to https://forms.illinois.edu/sec/2041174902 (due 03/15 11:59pm)

     https://mediaspace.illinois.edu/media/t/1_5kotv6bl

     https://mediaspace.illinois.edu/media/t/1_bv0x19gt

    Mar. 12

    Empty notes

    Maxwell's Equations

    Maxwell's Equations in Material Media

    Today's notes

    note 1

    note 2

    Lecuture handout

    L19 Handout 

     

    ECE329 L19 part 1 

  • 00:00 – 10:41     Maxwell’s equations
  • 10:41 – end       Boundary condition equations
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    ECE329 L19 part 2 

  • 00:00 – 23:20     Maxwell’s equations in material media
  • 23:20 – end       Magnetic susceptibility
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    Participation

    Watch recordings, then submit your answers to https://forms.illinois.edu/sec/1510720259 (due 03/12 11:59pm)

     https://mediaspace.illinois.edu/media/t/1_xjix8cbr

     https://mediaspace.illinois.edu/media/t/1_3gu9uf6t