A violin string 12.6 cm long and fixed at both ends oscillates in its n - 2 mode. The speed of waves on the string is 274 m/s, and the speed of sound in air is 348 m/s. What are (a) the frequency and (b) the wavelength of the emitted sound wave?

University Physics Volume 1
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter16: Waves
Section: Chapter Questions
Problem 105P: A cable with a linear density of =0.2 kg/m is hung from telephone poles. The tension in the cable is...
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A violin string 12.6 cm long and fixed at both ends oscillates in its n = 2 mode. The speed
of waves on the string is 274 m/s, and the speed of sound in air is 348 m/s. What are (a)
the frequency and (b) the wavelength of the emitted sound wave?
Transcribed Image Text:A violin string 12.6 cm long and fixed at both ends oscillates in its n = 2 mode. The speed of waves on the string is 274 m/s, and the speed of sound in air is 348 m/s. What are (a) the frequency and (b) the wavelength of the emitted sound wave?
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