A communication system, operating at 100 MHz, uses two identical 2 vertical s dipole antennas as transmitting and receiving elements separated by 10 km. In order signal to be detected by the receiver, the power level at the receiver terminals must be t1 uW. Each antenna is connected to the transmitter and receiver by a lossless 50-2 ission line. Assuming the antennas are polarization-matched and are aligned so that the um intensity of one is directed toward the maximum radiation intensity of the other, ine the minimum transmitter power so that the signal will be detected by the receiver.

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Q2] A communication system, operating at 100 MHz, uses two identical 2 vertical
lossless dipole antennas as transmitting and receiving elements separated by 10 km. In order
for the signal to be detected by the receiver, the power level at the receiver terminals must be
at least 1 uW. Each antenna is connected to the transmitter and receiver by a lossless 50-N
transmission line. Assuming the antennas are polarization-matched and are aligned so that the
maximum intensity of one is directed toward the maximum radiation intensity of the other,
determine the minimum transmitter power so that the signal will be detected by the receiver.
Transcribed Image Text:Q2] A communication system, operating at 100 MHz, uses two identical 2 vertical lossless dipole antennas as transmitting and receiving elements separated by 10 km. In order for the signal to be detected by the receiver, the power level at the receiver terminals must be at least 1 uW. Each antenna is connected to the transmitter and receiver by a lossless 50-N transmission line. Assuming the antennas are polarization-matched and are aligned so that the maximum intensity of one is directed toward the maximum radiation intensity of the other, determine the minimum transmitter power so that the signal will be detected by the receiver.
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