Consider the normal incidence of a plane electromagnetic wave with electric E = E, exp[i(k,z-ox)]ê over an interface at z = 0 separating two media [w: vị and v2 (v2> vi) and wave vectors ki and k2, respectively] as shown in figur magnetic field vector of the reflected wave is (o is the angular frequency)
Consider the normal incidence of a plane electromagnetic wave with electric E = E, exp[i(k,z-ox)]ê over an interface at z = 0 separating two media [w: vị and v2 (v2> vi) and wave vectors ki and k2, respectively] as shown in figur magnetic field vector of the reflected wave is (o is the angular frequency)
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![Consider the normal incidence of a plane electromagnetic wave with electric field given by
Ë = E, exp[i(k,z- ox)]î over an interface at z = 0 separating two media [wave velocities
Vị and v2 (v2> vı) and wave vectors ki and k2, respectively] as shown in figure. The
magnetic field vector of the reflected wave is
(@ is the angular frequency)
V2
Medium 1
Medium 2
Eo exp[i(k; – ox)]ŷ
(В)
(A)
-E.
e exp[i(-k,z– ax)]ŷ
En exp[i(k;-- on)]ŷ
(C)
(D)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc7f8a012-4bc3-4d7a-bac2-ca78d6c2902c%2F7cbd81cf-290b-4e26-bbdd-aae78e24a796%2Fvl8ng8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider the normal incidence of a plane electromagnetic wave with electric field given by
Ë = E, exp[i(k,z- ox)]î over an interface at z = 0 separating two media [wave velocities
Vị and v2 (v2> vı) and wave vectors ki and k2, respectively] as shown in figure. The
magnetic field vector of the reflected wave is
(@ is the angular frequency)
V2
Medium 1
Medium 2
Eo exp[i(k; – ox)]ŷ
(В)
(A)
-E.
e exp[i(-k,z– ax)]ŷ
En exp[i(k;-- on)]ŷ
(C)
(D)
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