A 2-meter, two-wire, lossless line with a characteristic impedance of 250 Ohms connects an antenna and a receiver. The dielectric constant of the line gives a velocity of 2.4x108 m/s. The antenna is modeled through its Thevenin network, in which a 500-microVolt 100-MHz source is in series with a 200-Ohm resistance. The receiver is modeled as a load impedance.

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Clue: Answers are NOT 0.59435 for item 9 NOR 0.4725 for item 10.

A 2-meter, two-wire, lossless line with a characteristic impedance of 250 Ohms connects an
antenna and a receiver. The dielectric constant of the line gives a velocity of 2.4x108 m/s.
The antenna is modeled through its Thevenin network, in which a 500-microVolt 100-MHz source
is in series with a 200-Ohm resistance.
The receiver is modeled as a load impedance.
2008
ww
500μV
Antenna Circuit
Is
Vin
Two-wire lossless
transmission line
VL
Load
Impedance
For item 9: the load impedance is a 120-Ohm resistive impedance.
What is the average power at the input terminals of the line supplied by the antenna in nW?
Answer:
For item 10: The load impedance is capacitive with a value of 150 – 30° Ohms.
What is the average power from at the input terminals of the line supplied by the antenna in nW?
Answer:
Transcribed Image Text:A 2-meter, two-wire, lossless line with a characteristic impedance of 250 Ohms connects an antenna and a receiver. The dielectric constant of the line gives a velocity of 2.4x108 m/s. The antenna is modeled through its Thevenin network, in which a 500-microVolt 100-MHz source is in series with a 200-Ohm resistance. The receiver is modeled as a load impedance. 2008 ww 500μV Antenna Circuit Is Vin Two-wire lossless transmission line VL Load Impedance For item 9: the load impedance is a 120-Ohm resistive impedance. What is the average power at the input terminals of the line supplied by the antenna in nW? Answer: For item 10: The load impedance is capacitive with a value of 150 – 30° Ohms. What is the average power from at the input terminals of the line supplied by the antenna in nW? Answer:
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