The following below gives the gain of an antenna and efficiency. Use it to solve the following question G = 10*log10 ( K* ((Tr*D)/A)2). Where, G is Gain in dB K is efficiency of antenna D is antenna...


The following below gives the gain of an antenna and efficiency. Use it to solve the following<br>question<br>G = 10*log10 ( K* ((Tr*D)/A)2).<br>Where, G is Gain in dB<br>K is efficiency of antenna<br>D is antenna diameter(m)<br>'A = c/f , f =operating frequency<br>c =3 x 10° m/s<br>G/10<br>Efficiency =<br>Let initial Antenna diameter = 2.4 meter, Antenna Gain (dBi) = 43, Antenna frequency =<br>6000 MHz<br>Vary D from 2.4 to 5.6 with a change of 0.2.<br>i. Plot a graph of K vrs D for D=2.4 to 5.6 with a change of 0.02<br>ii. Plot a graph of K vrs D for D=2.4 to 5.6 with a change of 0.01<br>iii. Write a c++ code to solve for i.<br>iv. Write a c++ code to solve for ii.<br>

Extracted text: The following below gives the gain of an antenna and efficiency. Use it to solve the following question G = 10*log10 ( K* ((Tr*D)/A)2). Where, G is Gain in dB K is efficiency of antenna D is antenna diameter(m) 'A = c/f , f =operating frequency c =3 x 10° m/s G/10 Efficiency = Let initial Antenna diameter = 2.4 meter, Antenna Gain (dBi) = 43, Antenna frequency = 6000 MHz Vary D from 2.4 to 5.6 with a change of 0.2. i. Plot a graph of K vrs D for D=2.4 to 5.6 with a change of 0.02 ii. Plot a graph of K vrs D for D=2.4 to 5.6 with a change of 0.01 iii. Write a c++ code to solve for i. iv. Write a c++ code to solve for ii.

Jun 04, 2022
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