5. Two antennae (which may or may not be in phase with each other) transmit a radio wave at an AM frequency of 1500 kHz. While driving by on a semi-circular road around these antennae, you notice that there are only three totally destructive locations (one at the centerline and two at the same angle above and below the centerline, as shown below). What is the path length difference of the radio waves for the topmost destructive location? topmost Destructive Antenna 1 d = ? Centerline (Destructive a. Ar = 50.0 meters. Antenna 2 b. Ar = 100 meters. c. Ar = 150 meters. bottom Destructive road d. Ar = 200 meters. e. Ar = 250 meters.

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5. Two antennae (which may or may not be in phase with each other)
transmit a radio wave at an AM frequency of 1500 kHz. While
driving by on a semi-circular road around these antennae, you
notice that there are only three totally destructive locations
(one at the centerline and two at the same angle above and
below the centerline, as shown below). What is the path
length difference of the radio waves for the topmost
destructive location?
topmost
Destructive
Antenna 1
d = ?
Centerline
(Destructive
a. Ar = 50.0 meters.
Antenna 2
b. Ar = 100 meters.
c. Ar = 150 meters.
bottom
Destructive
road
d. Ar = 200 meters.
e. Ar = 250 meters.
Transcribed Image Text:5. Two antennae (which may or may not be in phase with each other) transmit a radio wave at an AM frequency of 1500 kHz. While driving by on a semi-circular road around these antennae, you notice that there are only three totally destructive locations (one at the centerline and two at the same angle above and below the centerline, as shown below). What is the path length difference of the radio waves for the topmost destructive location? topmost Destructive Antenna 1 d = ? Centerline (Destructive a. Ar = 50.0 meters. Antenna 2 b. Ar = 100 meters. c. Ar = 150 meters. bottom Destructive road d. Ar = 200 meters. e. Ar = 250 meters.
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