Diffraction occurs for all types of waves, including sound waves. High-frequency sound from a distant source with wavelength 8.60 cm passes through a narrow slit 11.5 cm wide. A microphone is placed 35.0 cm directly in front of the center of the slit, corresponding to point O in the figure below. The microphone is then moved in a direction perpendicular to the line from the center of the slit to point O. At what minimal distance from O will the intensity detected by the microphone be zero? Express your answer in centimeters. /= Submit 15. ΑΣΦ Request Answer ? 0 cm

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Chapter1: Units, Trigonometry. And Vectors
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Part A
Diffraction occurs for all types of waves, including sound waves. High-frequency sound from a distant source with wavelength 8.60 cm passes through a narrow slit
11.5 cm wide. A microphone is placed 35.0 cm directly in front of the center of the slit, corresponding to point in the figure below.
The microphone is then moved in a direction perpendicular to the line from the center of the slit to point O.
At what minimal distance from O will the intensity detected by the microphone be zero?
Express your answer in centimeters.
y =
Submit
ΨΕ ΑΣΦ
Request Answer
?
cm
Transcribed Image Text:Part A Diffraction occurs for all types of waves, including sound waves. High-frequency sound from a distant source with wavelength 8.60 cm passes through a narrow slit 11.5 cm wide. A microphone is placed 35.0 cm directly in front of the center of the slit, corresponding to point in the figure below. The microphone is then moved in a direction perpendicular to the line from the center of the slit to point O. At what minimal distance from O will the intensity detected by the microphone be zero? Express your answer in centimeters. y = Submit ΨΕ ΑΣΦ Request Answer ? cm
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