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The relation between directivity and the effective aperture of the uniform aperture antenna is given by _____

(a) \(D = \frac{4pi}{\lambda^2}A_{eff}\)

(b) \(A_{eff} = \frac{4pi}{\lambda^2}D\)

(c) \(A_{eff} = \frac{4\pi\lambda^2}{D}\)

(d) \(D = \frac{4\pi\lambda^2}{A_{eff}}\)

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Correct answer is (a) \(D = \frac{4\pi}{\lambda^2}A_{eff}\)

The explanation: For a uniform aperture antenna, the physical and effective apertures are equal.

The relation between directivity and the effective aperture of the antenna is given by

\(D = \frac{4\pi}{\lambda^2}A_{eff}\).

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