A plane wave with frequency 400[MHz] is propagating through a lossy conducting medium (not a dielectric) with µ = Hol, e = 7.8col, = 0.5() Determine the following: Attenuation constant: a = Wave number: (spatial frequency) B тad %3D m Wavelength: = [m] Wavespeed: u = Characteristic wave impedance: 7 = Attenuation after traveling 3 mm through the medium (in the form of a percentage): %
A plane wave with frequency 400[MHz] is propagating through a lossy conducting medium (not a dielectric) with µ = Hol, e = 7.8col, = 0.5() Determine the following: Attenuation constant: a = Wave number: (spatial frequency) B тad %3D m Wavelength: = [m] Wavespeed: u = Characteristic wave impedance: 7 = Attenuation after traveling 3 mm through the medium (in the form of a percentage): %
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![A plane wave with frequency 400[MHz] is propagating through a lossy conducting medium (not a dielectric) with
H = Hol#], €
7.8co[),0 = 0.51
E =
Determine the following:
Attenuation constant: a =
rad
Wave number: (spatial frequency) B =
m
Wavelength: A
[m]
m
Wavespeed: u =
Characteristic wave impedance: 7=
Attenuation after traveling 3|mm| through the medium (in the form of a percentage):](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbb3518d1-1a5d-49ad-8933-bdf1b35ce2cc%2Fde2510d9-0933-40d7-8c50-a5d64147a6ab%2F3oq53g_processed.png&w=3840&q=75)
Transcribed Image Text:A plane wave with frequency 400[MHz] is propagating through a lossy conducting medium (not a dielectric) with
H = Hol#], €
7.8co[),0 = 0.51
E =
Determine the following:
Attenuation constant: a =
rad
Wave number: (spatial frequency) B =
m
Wavelength: A
[m]
m
Wavespeed: u =
Characteristic wave impedance: 7=
Attenuation after traveling 3|mm| through the medium (in the form of a percentage):
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