Consider a plane wave applied to one surface of a slab and its power is measured at the other surface. Suppose the electric field intensity just below the left surface of the material is measured as Eo. The electric field intensity at the right surface (again, just below the surface) is E₁ 0.2Eo. Permeability and permittivity are those of free space, the material is known to have high conductivity, and the slab is d = 5mm thick. The measurements are performed at 500 Hz. 1) Calculate the conductivity of the material. 2) Determine phase accumulated by the wave after traversing the slab. (o= 4 x 10-7 H/m, 6, 8.854 x 10-¹2F/m) = d Slab Eo E₁.

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Consider a plane wave applied to one surface of a slab and its power is measured at the
other surface. Suppose the electric field intensity just below the left surface of the material is
measured as Eo. The electric field intensity at the right surface (again, just below the surface)
is E₁ 0.2Eo. Permeability and permittivity are those of free space, the material is known to
have high conductivity, and the slab is d = 5mm thick. The measurements are performed at
500 Hz. 1) Calculate the conductivity of the material. 2) Determine phase accumulated by
the wave after traversing the slab. (μo = 4 x 10-7 H/m, €, = 8.854 x 10-12F/m)
d
Slab
E₂
E₁
Transcribed Image Text:Consider a plane wave applied to one surface of a slab and its power is measured at the other surface. Suppose the electric field intensity just below the left surface of the material is measured as Eo. The electric field intensity at the right surface (again, just below the surface) is E₁ 0.2Eo. Permeability and permittivity are those of free space, the material is known to have high conductivity, and the slab is d = 5mm thick. The measurements are performed at 500 Hz. 1) Calculate the conductivity of the material. 2) Determine phase accumulated by the wave after traversing the slab. (μo = 4 x 10-7 H/m, €, = 8.854 x 10-12F/m) d Slab E₂ E₁
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