Given the array of Fig. 6.1(a) and (b), find the nulls of the total field when d=1/4 and then with d=1/2 and: by using this equation: E. = cos e coslkd cos e + P)) (a) B=0 , (b) B=n/2 di2 d/2 02. d/2 d/2 (a) Two infinitesimal dipoles (h) Far-field obervatinne Fig. 6-1 Geometry of a two-element array positioned along the z-axis.

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Antennas and propagation
Given the array of Fig. 6.1(a) and (b),
find the nulls of the total field when
d=1/4 and then with d=1/2 and: (a) B=0 , (b) B=n/2
by using this equation:
= cos e coskd cos e+ P)]
COs
d/2
d/2
to
d/2
d/2
(a) Two infinitesimal dipoles
(h) Far-field observations
Fig. 6-1 Geometry of a two-element array positioned along the z-axis.
Transcribed Image Text:Given the array of Fig. 6.1(a) and (b), find the nulls of the total field when d=1/4 and then with d=1/2 and: (a) B=0 , (b) B=n/2 by using this equation: = cos e coskd cos e+ P)] COs d/2 d/2 to d/2 d/2 (a) Two infinitesimal dipoles (h) Far-field observations Fig. 6-1 Geometry of a two-element array positioned along the z-axis.
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