At 50 MHz, a lossy dielectric material is characterized by ε = 3.6ɛ0, µ = 2.1μo, and o= 0.08 S/m If E = 6** V/m compute: (a) (b) 2. (c) u (d) n (e) Hs

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1. At 50 MHz, a lossy dielectric material is characterized by \( \varepsilon = 3.6\varepsilon_0 \), \( \mu = 2.1\mu_0 \), and \( \sigma = 0.08 \) S/m. If \( \mathbf{E}_t = 6e^{-\gamma z} \hat{z} \) V/m, compute: (a) \( \gamma \), (b) \( \lambda \), (c) \( u \), (d) \( \eta \), (e) \( \mathbf{H}_s \).
Transcribed Image Text:1. At 50 MHz, a lossy dielectric material is characterized by \( \varepsilon = 3.6\varepsilon_0 \), \( \mu = 2.1\mu_0 \), and \( \sigma = 0.08 \) S/m. If \( \mathbf{E}_t = 6e^{-\gamma z} \hat{z} \) V/m, compute: (a) \( \gamma \), (b) \( \lambda \), (c) \( u \), (d) \( \eta \), (e) \( \mathbf{H}_s \).
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