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A light beam propagating through air is incident, on the surface of a material whose refractive index is n=1.44, at an angle i=29 to the
A light beam propagating through air is incident, on the surface of a material whose refractive index is n=1.44, at an angle i=29 to the normal. The electric field of the incident wave has a component parallel and another perpendicular to the plane of incidence, whose amplitudes are E =15v/m and E=25V/m respectively. a- Calculate the angle of reflection r and the angle of transmission t b- Calculate the amplitudes of the reflected electric field components c- Calculate the amplitudes of the refracted (or transmitted) field components. d- Calculate the transmittances and reflectances T,T,Ret R e- What is the angle of incidence (Brewster angle) for which we can cancel the reflection for one of the two polarizations (Rou R ). f- Calculate the incident (Ii), reflected (Ir) and transmitted (It) intensities (Irradiance). g- By varying the angle of incidence, is it possible to find a value that gives total reflection
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