This course introduces the basic principles behind electromagnetic wave propagation. We will begin with a discussion of the most fundamental laws of electromagnetism – Maxwell’s equations. We will then use Maxwell’s equations to derive the wave equations for the electric and magnetic fields, and then solve those wave equations to find the actual equations that describe the propagating electromagnetic wave. We’ll end this course by considering what Maxwell’s equations tell us about what happens when an electromagnetic wave traveling in a medium runs into a second medium with different material properties. By the end of this course, you should understand how the propagating electromagnetic wave is derived from Maxwell’s equations, be able to describe the propagation and orientation of a wave from its mathematical equation, and list the field conditions that must be met at an interface between two dissimilar media. This course was developed by Kathryn Leigh Smith, Asst. Prof. in the Department of Electrical and Computer Engineering at the University of North Carolina-Charlotte in partnership with Ansys.
Upon the completion of this course, you should be able to have an understanding of:
Anyone with basic knowledge of Electromagnetics
|Intro to Electromagnetic Wave Propagation||00:00:55|
|Wave Equation Solutions||00:08:58|
|Vector Potential Wave Equations||00:03:42|
Lifetime access to lecture videos, study materials
Assessment on practice with quiz for each topic
Certificate on completion
Internationally valid certificate on
successful completion of the course
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