Former Oklahoma State University Course Number:
EM 340-OE
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This course is not available in the current term
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Course Description:
Time-harmonic and transient response of transmission lines. Maxwell's equations and their applications to engineering problems in electrostatics, magnetostatics, time-harmonic fields and plane wave propagation.
Course Objectives:
Explore distributed parameter network analysis via transmission lines. Examine electromagnetic field interactions for both static and dynamic 3D problems.
Course Outline by Topical Areas:
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Applications of Maxwell's Equations
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Course Requirements:
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Homework: Approximately 15 homework sets (approximately weekly)
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Examinations: Two in-class exams (each approx. 50 min) and a final exam (aprox 110 min)
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Notes:
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This course may not be included in an NTU Master's Degree Program.
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Degree Applicability: |
CE[NA] |
CH[NA] |
CS[NA] |
EE[NA] |
EM[NA] |
ESM[NA] |
MAT[NA] |
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MBA[NA] |
ME[NA] |
MES[NA] |
MSE[NA] |
SE[NA] |
SY[NA] |
Click here for further information on degree applicability.
NTU Semester Credit Hours:
3
Number of Lecture Hours:
45 (50 minute) lectures
Days Class Meets on Campus:
Monday/Wednesday/Friday
Contributing Scholar:
Steve Bell
700 N. Greenwood Avenue
Oklahoma State University
326 North Hall
Tulsa, OK
74106
Phone: 918-594-8279
Fax: 918-594-8281
bells@okstate.edu
Note: Contributing Scholars are responsible for the design, organization, content, and presentation of NTU courses. Online classroom management, student management, and other matters related to academic administration of courses are the responsibility of support "Faculty". Either person is often called "Instructor". To identify and differentiate between these roles, we use the terms "Contributing Scholar" and "Faculty".
Academic/Administrative Contact:
Ms. Laura Gann
Phone: 405-744-9227
Fax: 405-744-5033
laugann@okstate.edu
Prerequisites:
Introduction to Electrical Science and Differential Equations.
Textbooks: (Order Materials)
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Fundamentals of Applied Electromagnetics, Fawaz T. Ulaby, Prentice Hall, 2004 Media Edition, ISBN 013185089X.
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