A cylindrical tube of length L = 0.86 m has one end always closed, and the...
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A cylindrical tube of length L = 0.86 m has one end always closed, and the other end can be opened or closed. When the variable end is closed, the smallest frequency that can form a standing wave in the tube is 577 Hz. The tube and its environment are filled with a gas in which the speed of the wave is not the speed of sound in air. (The following question(s) must be answered to within 1% of the expected value to be graded as correct.) What are the three longest possible wavelengths of standing waves when the variable end is OPEN? All three must be correct to receive credit for this question. Longest: Second longest: Third longest: m m m A cylindrical tube of length L = 0.86 m has one end always closed, and the other end can be opened or closed. When the variable end is closed, the smallest frequency that can form a standing wave in the tube is 577 Hz. The tube and its environment are filled with a gas in which the speed of the wave is not the speed of sound in air. (The following question(s) must be answered to within 1% of the expected value to be graded as correct.) What are the three longest possible wavelengths of standing waves when the variable end is OPEN? All three must be correct to receive credit for this question. Longest: Second longest: Third longest: m m m
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When the variable stop of the cylindrical tube is open the status waves which can form within the tu... View the full answer
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