Consider the following electric fields: a) E(z,t)= î sin(@t + kz)+ ŷ cos(@t + kz) b) E(z,t)= Re[(1+ j)î+(1- j)ŷ]ex-kz) c) E(z,t)= Re V3£ – îJe(ex-kz) For each of the above electric fields, determine the polarization of the wave (linear, left/right circular/elliptical, polarization angle) and the direction of wave propagation.
Consider the following electric fields: a) E(z,t)= î sin(@t + kz)+ ŷ cos(@t + kz) b) E(z,t)= Re[(1+ j)î+(1- j)ŷ]ex-kz) c) E(z,t)= Re V3£ – îJe(ex-kz) For each of the above electric fields, determine the polarization of the wave (linear, left/right circular/elliptical, polarization angle) and the direction of wave propagation.
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![Consider the following electric fields:
a) E(z,t)= î sin(@t + kz)+ ŷ cos(@t + kz)
b) E(z,t)= Re[(1+ j)î+(1- j)ŷ]ex-kz)
c) E(z,t)= Re V3£ – îJe(ex-kz)
For each of the above electric fields, determine the polarization of the wave (linear,
left/right circular/elliptical, polarization angle) and the direction of wave propagation.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0ef9f81c-8832-475e-81d0-37cf0d43f515%2Fcba80857-1319-4cbf-a278-6000df995d0a%2F69a1mjf.png&w=3840&q=75)
Transcribed Image Text:Consider the following electric fields:
a) E(z,t)= î sin(@t + kz)+ ŷ cos(@t + kz)
b) E(z,t)= Re[(1+ j)î+(1- j)ŷ]ex-kz)
c) E(z,t)= Re V3£ – îJe(ex-kz)
For each of the above electric fields, determine the polarization of the wave (linear,
left/right circular/elliptical, polarization angle) and the direction of wave propagation.
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