A pipe open at both ends has a fundamental frequency of 300 HZ when the temperature is 0C if the speed of sound in air is 331M/S at 0C what is the length of the pipe? What would be the frequency of the fundamental as the temperature increases to 20 C where the speed of sound is 343M/S?

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Chapter1: Units, Trigonometry. And Vectors
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A pipe open at both ends has a fundamental frequency of 300 HZ when the temperature is 0C if the speed of sound in air is 331M/S at 0C what is the length of the pipe? What would be the frequency of the fundamental as the temperature increases to 20 C where the speed of sound is 343M/S?
significant figures and units. Please write
1. A 0.40 kg cord is stretched between two supports, 8.7 m apart. When one support is
struck with a hammer, a transverse wave travels down the cord and reaches the other
support in 0.85 s. What is the tension in the cord?
2. A pipe open at both ends has a fundamental frequency of 300 Hz when the
temperature is 0°C. If the speed of sound in air is 331 m/s at 0°C, what is the length of
the pipe? What would be the frequency of the fundamental as the temperature increases
fund in 343 m/s?
Transcribed Image Text:significant figures and units. Please write 1. A 0.40 kg cord is stretched between two supports, 8.7 m apart. When one support is struck with a hammer, a transverse wave travels down the cord and reaches the other support in 0.85 s. What is the tension in the cord? 2. A pipe open at both ends has a fundamental frequency of 300 Hz when the temperature is 0°C. If the speed of sound in air is 331 m/s at 0°C, what is the length of the pipe? What would be the frequency of the fundamental as the temperature increases fund in 343 m/s?
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