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A perfect conductor will perfectly reflect an incident wave.

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15y ago

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When a em wave is incident on a perfect conductor then what happens to the reflection coefficient?

When an electromagnetic wave is incident on a perfect conductor, all of the wave is reflected. This results in a reflection coefficient of +1, indicating that 100% of the wave is reflected back.


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A sine wave is, theoretically at least, the naturally-generated voltage produced by any rotating machine. This is because the voltage induced into a conductor that rotates within a magnetic field is proportional to the sine of the angle at which the conductor cuts the magnetic flux. In practise, a perfect sine wave is not produced in most practical machines, but it is close enough for practical purposes.


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How do the widths of the reflected and transmitted waves compare to the width of the incident wave?

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For an elliptically polarized wave incident on the interface of a dielectric at the Brewster angle then the reflected wave will be?

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