Two radio antennas A and B radiate in phase. Antenna B is a distance of 100 m to the right of antenna A. Consider point Q along the extension of the line connecting the antennas, a horizontal distance of 30.0 m to the right of antenna B. The frequency, and hence the wavelength, of the emitted waves can be varied. Part A What is the longest wavelength for which there will be destructive interference at point Q? Express your answer in meters. 1 ΠΑΣΦ A= Submit Part B Request Answer ? m What is the longest wavelength for which there will be constructive interference at point Q? Express your answer in meters. ΨΗ ΑΣΦ ?

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Chapter1: Units, Trigonometry. And Vectors
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Two radio antennas A and B radiate in phase. Antenna B is a distance of 100 m to the
right of antenna A. Consider point Q along the extension of the line connecting the
antennas, a horizontal distance of 30.0 m to the right of antenna B. The frequency, and
hence the wavelength, of the emitted waves can be varied.
Part A
What is the longest wavelength for which there will be destructive interference at point Q?
Express your answer in meters.
Π| ΑΣΦ
λ =
Submit
Part B
Request Answer
λ =
?
What is the longest wavelength for which there will be constructive interference at point Q?
Express your answer in meters.
Π ΑΣΦ
m
?
m
Transcribed Image Text:Two radio antennas A and B radiate in phase. Antenna B is a distance of 100 m to the right of antenna A. Consider point Q along the extension of the line connecting the antennas, a horizontal distance of 30.0 m to the right of antenna B. The frequency, and hence the wavelength, of the emitted waves can be varied. Part A What is the longest wavelength for which there will be destructive interference at point Q? Express your answer in meters. Π| ΑΣΦ λ = Submit Part B Request Answer λ = ? What is the longest wavelength for which there will be constructive interference at point Q? Express your answer in meters. Π ΑΣΦ m ? m
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