4. In smith chart, moving in the clockwise direction means moving. a) From load to generator b) From generator to load

Computer Networking: A Top-Down Approach (7th Edition)
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Author:James Kurose, Keith Ross
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Chapter1: Computer Networks And The Internet
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4. In smith chart, moving in the clockwise direction means moving.
a) From load to generator
b) From generator to load
5. In Crank diagram, moving in the clockwise direction from the load to the source can be
evaluated using the formula
a) +j2Bd
b)-j3Bx
c) -j2Bd
d)-j2Bx
6. For a lossless transmission line operating with frequency 300MHz, and it has an
inductance L-30mH/unit of length and a capacity C-75 µF/unit of length, the
characteristic impedance Zo
while the phase constant (B) is equal to
7. If a wave travelling inside a transmission line with a phase velocity of 2.5 x 10 m/sec, and
the wavelength is 3 meter, then the operating frequency (fo) is equal to
8. The reflection coefficient (KR) of a transmission line with a characteristic impedance
Zo-50 ohm/unit of length and an open circuit load is equal to
Transcribed Image Text:4. In smith chart, moving in the clockwise direction means moving. a) From load to generator b) From generator to load 5. In Crank diagram, moving in the clockwise direction from the load to the source can be evaluated using the formula a) +j2Bd b)-j3Bx c) -j2Bd d)-j2Bx 6. For a lossless transmission line operating with frequency 300MHz, and it has an inductance L-30mH/unit of length and a capacity C-75 µF/unit of length, the characteristic impedance Zo while the phase constant (B) is equal to 7. If a wave travelling inside a transmission line with a phase velocity of 2.5 x 10 m/sec, and the wavelength is 3 meter, then the operating frequency (fo) is equal to 8. The reflection coefficient (KR) of a transmission line with a characteristic impedance Zo-50 ohm/unit of length and an open circuit load is equal to
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