A 200-MHz, left-hand circularly polarized plane wave with an electric field modulus of 5 V/m is normally incident in air upon a dielectric medium with & = 4, and occupies the region defined by z ≥ 0. (a) Write an expression for the electric field phasor of the incident wave, given that the field is a positive maximum at z = 0 and t=0. (b) Calculate the reflection and transmission coefficients. (c) Write expressions for the electric field phasors of the reflected wave, the transmitted wave, and the total field in the region z ≤0. (d) Determine the percentages of the incident average power reflected by the boundary and transmitted into the second medium.

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A 200-MHz, left-hand circularly polarized plane wave with an electric field modulus of 5 V/m
is normally incident in air upon a dielectric medium with &r= 4, and occupies the region defined
by z ≥ 0.
(a) Write an expression for the electric field phasor of the incident wave, given that the field
is a positive maximum at z = 0 and t = 0.
(b) Calculate the reflection and transmission coefficients.
(c) Write expressions for the electric field phasors of the reflected wave, the transmitted wave,
and the total field in the region z ≤0.
(d) Determine the percentages of the incident average power reflected by the boundary and
transmitted into the second medium.
Transcribed Image Text:A 200-MHz, left-hand circularly polarized plane wave with an electric field modulus of 5 V/m is normally incident in air upon a dielectric medium with &r= 4, and occupies the region defined by z ≥ 0. (a) Write an expression for the electric field phasor of the incident wave, given that the field is a positive maximum at z = 0 and t = 0. (b) Calculate the reflection and transmission coefficients. (c) Write expressions for the electric field phasors of the reflected wave, the transmitted wave, and the total field in the region z ≤0. (d) Determine the percentages of the incident average power reflected by the boundary and transmitted into the second medium.
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