For the following electric field phasors i) Ẽ(z)=(j✰+z) e¯jz V/m ii) Ẽ(x, y, z) = (x-3ŷ-2)e¯(2x-y+5) V/m Determine H = (Ê× E) (a) if they can represent uniform electromagnetic plane waves. Explain why. (b) the unit vector in the propagation direction, &, in each case. n = ཟླ (AXE) R (c) the polarization state (and handedness if circular or elliptical) in the case of a uniform plane wave only (d) Assume the uniform plane wave(s) will enter a lossy medium. Show how the phasor expression(s) above will be modified, and explain the changes and the parameters you introduce.
For the following electric field phasors i) Ẽ(z)=(j✰+z) e¯jz V/m ii) Ẽ(x, y, z) = (x-3ŷ-2)e¯(2x-y+5) V/m Determine H = (Ê× E) (a) if they can represent uniform electromagnetic plane waves. Explain why. (b) the unit vector in the propagation direction, &, in each case. n = ཟླ (AXE) R (c) the polarization state (and handedness if circular or elliptical) in the case of a uniform plane wave only (d) Assume the uniform plane wave(s) will enter a lossy medium. Show how the phasor expression(s) above will be modified, and explain the changes and the parameters you introduce.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Transcribed Image Text:For the following electric field phasors
i) Ẽ(z)=(j✰+z) e¯jz
V/m
ii) Ẽ(x, y, z) = (x-3ŷ-2)e¯(2x-y+5) V/m
Determine
H = (Ê× E)
(a) if they can represent uniform electromagnetic plane waves. Explain why.
(b) the unit vector in the propagation direction, &, in each case.
n =
ཟླ
(AXE) R
(c) the polarization state (and handedness if circular or elliptical) in the case of a uniform plane wave
only
(d) Assume the uniform plane wave(s) will enter a lossy medium. Show how the phasor expression(s)
above will be modified, and explain the changes and the parameters you introduce.
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