Ē(z, t) = & cos (10$ t – z) - ŷ sin (10® t – z) (V/m) %3D a) Determine the frequency (f) and the wavelength (1) of the wave. b) Find the relative dielectric constant (€,) of the medium c) Find the corresponding H(z, t) d) Write the electric field intensity vector Ē(z, t) in phasor form (E (z)) e) Determine the polarization of the wave (linear, circular, elliptical) with the reasoning of your decision (explanation is required to get the points).

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E(z, t) = â cos (10$ t – z) - ŷ sin (10° t – z) (V/m)
a) Determine the frequency (f) and the wavelength (2) of the wave.
b) Find the relative dielectric constant (E,) of the medium
c) Find the corresponding H(z, t)
d) Write the electric field intensity vector E (z, t) in phasor form (E(z))
e) Determine the polarization of the wave (linear, circular, elliptical) with the reasoning of your
decision (explanation is required to get the points).
Transcribed Image Text:E(z, t) = â cos (10$ t – z) - ŷ sin (10° t – z) (V/m) a) Determine the frequency (f) and the wavelength (2) of the wave. b) Find the relative dielectric constant (E,) of the medium c) Find the corresponding H(z, t) d) Write the electric field intensity vector E (z, t) in phasor form (E(z)) e) Determine the polarization of the wave (linear, circular, elliptical) with the reasoning of your decision (explanation is required to get the points).
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