wp Consider that medium 1 is vacuum and medium 2 is a conductor (aluminum) rather than a dielectric with dielectric func

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wp Consider that medium 1 is vacuum and medium 2 is a conductor (aluminum) rather than a dielectric with dielectric func

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Wp Consider That Medium 1 Is Vacuum And Medium 2 Is A Conductor Aluminum Rather Than A Dielectric With Dielectric Func 1
Wp Consider That Medium 1 Is Vacuum And Medium 2 Is A Conductor Aluminum Rather Than A Dielectric With Dielectric Func 1 (123.82 KiB) Viewed 12 times
wp Consider that medium 1 is vacuum and medium 2 is a conductor (aluminum) rather than a dielectric with dielectric function e(w) = {1 - + for tantos), and parameters, Wp = 2.4 x 10165-1, 1 = . = 8.0 x 10-15 s, n = 1.81 x 1029 m 3,0 = 4.1 x 107-'m-? = i 1 +0.22 more ne2 5 vacuum Conductor Z Do the following: 3. 4. 1. Graph the real and imaginary part (ER, Ey) as a function of frequency w in the frequency range (0,2wp]. 2. Graph the actual refractive index (n) and the extinction coefficient k as a function of frequency w in the frequency range [0,2wp]. Graph the absorption coefficient a(cm) as a function of frequency w in the frequency range (0,2wp]. Calculate Reflectivity R for the case of normal incidence (@ = 0) as a function of frequency w in the frequency range (0,2wp]. Grafique la intensidad relativa de la luz incidente en el medio dieléctrico lx = para el caso de incidencia normal a las frecuencias,w = 1.8wp, w = 0.55wp, w = 0.25wp en función de la distancia de penetración 2. Haga lo mismo para el caso de una oblicua con 8 = 15°, 45°, 70°. Grafique la Reflectividad a un ángulo de incidencia normal 8 = 70° para las polarizaciones SyP (Rs y Rp) como función de la frecuencia w en el rango de frecuencias (0,2wp]. Grafique la longitud de onda de la luz refractada (nm) como función de la frecuencia wen el rango de frecuencias (0,2wp]. Grafique el ángulo de la luz transmitida como función de la frecuencia w en el rango de frecuencias [0,20p] para la luz incidiendo a un ángulo de 8 = 45°, 8 = 70º y 8 = 86°. Grafique el indice de refracción real efectivo neff(w,8) para un ángulo de incidencia 8 = 80° como función de la frecuencia w en el rango de frecuencias [0,2wp]. Grafique la velocidad de fase efectiva very = c/ner (cm/s), para la luz que se propaga en el dieléctrico para los ángulos de incidencia 8 = 0°, 45°, 85°. 6. a 7. 8. 9. 10. =
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