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Institution:
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University of Missouri-Kansas City
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Subject:
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Description:
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Dimensions in electromagnetic wave propagation; per unit length parameters of common transmission line configurations; derivation of general time-domain and time-harmonic (phasor) forms of transmission line equations; Laplace transform solution to arbitrary time excitations-the bounce diagram; introduction to the concept of voltage and current traveling waves; input impedance, VSWR and power flow on a transmission line; open-and short-circuit, lambda/4 and lambda length lines; Smith Chart & applications; lossy lines; complex vectors; review of Gauss's, Faraday and Ampere's laws of electromagnetism and differential form of Maxwell's equations; time-harmonic form of Maxwell's equations; Poynting vector; boundary conditions; wave equation from Maxwell's equations; uniform plane waves in lossy and lossless media; power flow in uniform plane waves; skin depth; normal incidence of uniform plane waves on good conductors. Prerequisites: MATH 250, PHYSICS 250, Pre-/Co-requisite: E&C-ENGR 341 or E&C-ENGR 401H, co-requisite E&C-ENGR 303 3 hrs
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Credits:
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3.00
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Credit Hours:
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Prerequisites:
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Corequisites:
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Exclusions:
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Level:
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Instructional Type:
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Lecture
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Notes:
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Additional Information:
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Historical Version(s):
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Institution Website:
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Phone Number:
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(816) 235-1000
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Regional Accreditation:
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North Central Association of Colleges and Schools
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Calendar System:
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Semester
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