10. The received power changes as you move radially away from the base station and is shown in Table 1 below. Assume that you are interested in modelling a sub-urban environment with a transmitter and a mobile receiver. The power received at a reference distance is 1 m W, and the received distance d0 is 100 m from the base station. Distance from transmitter(meter) 2. 100m 3. 500m 4. 1000m 5. 3000m do = loom) Received Power(W) a. 1 mW a. 0.0316 mW a. 0.00794 mW a. 0.1585μW

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10. The received power changes as you move radially away from the base station and
is shown in Table 1 below. Assume that you are interested in modelling a sub-urban
environment with a transmitter and a mobile receiver. The power received at a
reference distance is 1 m W, and the received distance d0 is 100 m from the base
station.
Distance from transmitter(meter)
2. 100m
3. 500m
4. 1000m
5. 3000m
do
=
loom)
Received
Power(W)
a. 1 mW
a. 0.0316 mW
a. 0.00794 mW
a. 0.1585μW
Transcribed Image Text:10. The received power changes as you move radially away from the base station and is shown in Table 1 below. Assume that you are interested in modelling a sub-urban environment with a transmitter and a mobile receiver. The power received at a reference distance is 1 m W, and the received distance d0 is 100 m from the base station. Distance from transmitter(meter) 2. 100m 3. 500m 4. 1000m 5. 3000m do = loom) Received Power(W) a. 1 mW a. 0.0316 mW a. 0.00794 mW a. 0.1585μW
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