A wire of mass 1 g and length 46 cm is stretched with a tension of 500 N. It is then placed near the open end of the tube shown in figure and stroked with a violin bow so that it oscillates at its fundamental frequency. The water level in the tube is then lowered until a resonance is obtained, which occurs at 18 cm below the top of the tube.Find the speed of sound in air.Answer in units of m/s.

A wire of mass 1 g and length 46 cm is stretched with a tension of
500 N. It is then placed near the open end of the tube shown in figure and stroked with a violin bow so that it oscillates at its fundamental frequency. The water level in the tube is then lowered until a resonance is obtained, which occurs at 18 cm below the top of the tube.Find the speed of sound in air.Answer in units of m/s.
 
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The post A wire of mass 1 g and length 46 cm is stretched with a tension of 500 N. It is then placed near the open end of the tube shown in figure and stroked with a violin bow so that it oscillates at its fundamental frequency. The water level in the tube is then lowered until a resonance is obtained, which occurs at 18 cm below the top of the tube.Find the speed of sound in air.Answer in units of m/s. appeared first on Superb Professors.

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