A uniform plane wave propagates from region 1 (z<0) to region 2 (z>0). Given the conditions: The electric component of the wave in region 1: E(z,1) = 5e cos(27 x10°t – B,z)a, (V/m) Characteristic of region 1: oI = 10° (S/m), ɛ1 = 80ɛ0 (F/m), µi = µo (H/m), Characteristic of region 2: 02 = 104 (S/m), ɛ2 = 5ɛ0 (F/m), µ2 = µo (H/m). Find: a) The reflected electric component in region 1? b) The transmitted magnetic component in region 2? c) The distance d (m) where the phase of the transmitted magnetic component in region 2 is changed by 10z (rad)? d) The attenuation (in Decibel) at the distance d in question c)?

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A uniform plane wave propagates from region 1 (z<0) to region 2 (z>0).
Given the conditions:
The electric component of the wave in region 1:
E(z,1) = 5e cos(27 x10°t – B,z)a, (V/m)
Characteristic of region 1: oi = 10° (S/m), ɛ1 = 80ɛ0 (F/m), µi = µo (H/m),
Characteristic of region 2: 02 = 104 (S/m), ɛ2 = 5ɛ0 (F/m), µ2 = µo (H/m).
Find:
a) The reflected electric component in region 1?
b) The transmitted magnetic component in region 2?
c) The distance d (m) where the phase of the transmitted magnetic component in region 2 is changed
by 10z (rad)?
d) The attenuation (in Decibel) at the distance d in question c)?
Transcribed Image Text:A uniform plane wave propagates from region 1 (z<0) to region 2 (z>0). Given the conditions: The electric component of the wave in region 1: E(z,1) = 5e cos(27 x10°t – B,z)a, (V/m) Characteristic of region 1: oi = 10° (S/m), ɛ1 = 80ɛ0 (F/m), µi = µo (H/m), Characteristic of region 2: 02 = 104 (S/m), ɛ2 = 5ɛ0 (F/m), µ2 = µo (H/m). Find: a) The reflected electric component in region 1? b) The transmitted magnetic component in region 2? c) The distance d (m) where the phase of the transmitted magnetic component in region 2 is changed by 10z (rad)? d) The attenuation (in Decibel) at the distance d in question c)?
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