The figure below shows a cylindrical container with an outlet valve. The cylinder is filled with water until the water level is a distance L = 20 cm from the top. A vibrating tuning fork is placed near the top of the cylinder and the valve is opened so that the length L slowly increases. If the tuning fork has a frequency of f = 532 Hz, determine the next two values of L (in m) that correspond to a resonant mode. (Assume that the speed of sound in air is 343 m/s.) Valve first length second length m
The figure below shows a cylindrical container with an outlet valve. The cylinder is filled with water until the water level is a distance L = 20 cm from the top. A vibrating tuning fork is placed near the top of the cylinder and the valve is opened so that the length L slowly increases. If the tuning fork has a frequency of f = 532 Hz, determine the next two values of L (in m) that correspond to a resonant mode. (Assume that the speed of sound in air is 343 m/s.) Valve first length second length m
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![The figure below shows a cylindrical container with an outlet valve. The cylinder is filled with water until the water level is a
distance L = 20 cm from the top. A vibrating tuning fork is placed near the top of the cylinder and the valve is opened so that the
length L slowly increases. If the tuning fork has a frequency of f = 532 Hz, determine the next two values of L (in m) that
correspond to a resonant mode. (Assume that the speed of sound in air is 343 m/s.)
Valve
first length
m
second length
m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb0b58f0f-1475-4cce-af5a-6ebf1197a060%2F52a3cbdd-6f51-49db-8fcb-45788237715b%2F68jlu09_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The figure below shows a cylindrical container with an outlet valve. The cylinder is filled with water until the water level is a
distance L = 20 cm from the top. A vibrating tuning fork is placed near the top of the cylinder and the valve is opened so that the
length L slowly increases. If the tuning fork has a frequency of f = 532 Hz, determine the next two values of L (in m) that
correspond to a resonant mode. (Assume that the speed of sound in air is 343 m/s.)
Valve
first length
m
second length
m
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