Imagine that the transmitter is connected to a 50 ohm load through a cable that is 100 ft long. The cable has a characteristic impedance of 50 ohms and a loss of 3 dB per 100 ft. How much power is now delivered to the matched load? Type your answer in watts to one place after the decimal.

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The following information applies to Questions 5 through 9. Maximum power from a
radio transmitter is delivered to the load when the load impedance is equal to 50
ohms. Assume that when it is connected to a 50 ohm load, the transmitter delivers
100 watts.
Imagine that the transmitter is connected to a 50 ohm load through a cable that is
100 ft long. The cable has a characteristic impedance of 50 ohms and a loss of 3 dB
per 100 ft. How much power is now delivered to the matched load? Type your
answer in watts to one place after the decimal.
Transcribed Image Text:The following information applies to Questions 5 through 9. Maximum power from a radio transmitter is delivered to the load when the load impedance is equal to 50 ohms. Assume that when it is connected to a 50 ohm load, the transmitter delivers 100 watts. Imagine that the transmitter is connected to a 50 ohm load through a cable that is 100 ft long. The cable has a characteristic impedance of 50 ohms and a loss of 3 dB per 100 ft. How much power is now delivered to the matched load? Type your answer in watts to one place after the decimal.
The following information applies to Questions 5 through 9. Maximum power from a
radio transmitter is delivered to the load when the load impedance is equal to 50
ohms. Assume that when it is connected to a 50 ohm load, the transmitter delivers
100 watts.
Imagine that the transmitter is connected to a 50 ohm load through a cable that is
100 ft long. The cable has a characteristic impedance of 50 ohms and a loss of 3 dB
per 100 ft. How much power is now delivered to the matched load? Type your
answer in watts to one place after the decimal.
Transcribed Image Text:The following information applies to Questions 5 through 9. Maximum power from a radio transmitter is delivered to the load when the load impedance is equal to 50 ohms. Assume that when it is connected to a 50 ohm load, the transmitter delivers 100 watts. Imagine that the transmitter is connected to a 50 ohm load through a cable that is 100 ft long. The cable has a characteristic impedance of 50 ohms and a loss of 3 dB per 100 ft. How much power is now delivered to the matched load? Type your answer in watts to one place after the decimal.
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