33. [Maximum mark: 1] A student blows across the top of a cylinder that contains water. A first- harmonic standing sound wave is produced in the air of the cylinder. More water is then added to the cylinder. The student blows so that a first-harmonic standing wave is produced with a different frequency. cylinder water surface What is the nature of the displacement in the air at the water surface and the change in frequency when the water is added? Nature of displacement Change in frequency A. antinode decrease B. antinode increase C. node decrease D. node increase

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33.
[Maximum mark: 1]
A student blows across the top of a cylinder that contains water. A first-
harmonic standing sound wave is produced in the air of the cylinder.
More water is then added to the cylinder. The student blows so that a
first-harmonic standing wave is produced with a different frequency.
cylinder
water surface
What is the nature of the displacement in the air at the water surface
and the change in frequency when the water is added?
Nature of displacement
Change in frequency
A.
antinode
decrease
B.
antinode
increase
C.
node
decrease
D.
node
increase
Transcribed Image Text:33. [Maximum mark: 1] A student blows across the top of a cylinder that contains water. A first- harmonic standing sound wave is produced in the air of the cylinder. More water is then added to the cylinder. The student blows so that a first-harmonic standing wave is produced with a different frequency. cylinder water surface What is the nature of the displacement in the air at the water surface and the change in frequency when the water is added? Nature of displacement Change in frequency A. antinode decrease B. antinode increase C. node decrease D. node increase
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