A sound wave traveling in air has a frequency f and wavelength l. A second sound wave traveling in air has wavelength l/2. What is the frequency of the second sound wave? (a) 4f (b) 2f (c) f (d) 12 f (e) 14 f
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Textbook Solutions for College Physics
Question
How far, and in what direction, should a cellist move her finger to adjust a strings tone from an out-of-tune 449 Hz to an in-tune 440 Hz? The string is 68.0 cm long, and the finger is 20.0 cm from the nut for the 449-Hz tone.
Solution
The first step in solving 14 problem number trying to solve the problem we have to refer to the textbook question: How far, and in what direction, should a cellist move her finger to adjust a strings tone from an out-of-tune 449 Hz to an in-tune 440 Hz? The string is 68.0 cm long, and the finger is 20.0 cm from the nut for the 449-Hz tone.
From the textbook chapter Multiple Choice Questions you will find a few key concepts needed to solve this.
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