A taut string, fixed at both ends, is driven by an oscillator at a constant frequency of 175 Hz. The amplitude of each of the two interfering waves that produce the standing wave is A = 3 mm. In the observed standing %3D wave pattern, the maximum transverse

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 113P: A string is fixed at both end. The mass of the string is 0.0090 kg and the length is 3.00 m. The...
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A taut string, fixed at both ends, is driven by
an oscillator at a constant frequency of 175
Hz. The amplitude of each of the two
interfering waves that produce the standing
wave is A = 3 mm. In the observed standing
wave pattern, the maximum transverse
speed at an antinode is:
O 1.2n m/s
O 0.6n m/s
0.9π m/s.
O 2.1m m/s
O 0.3t m/s
Transcribed Image Text:A taut string, fixed at both ends, is driven by an oscillator at a constant frequency of 175 Hz. The amplitude of each of the two interfering waves that produce the standing wave is A = 3 mm. In the observed standing wave pattern, the maximum transverse speed at an antinode is: O 1.2n m/s O 0.6n m/s 0.9π m/s. O 2.1m m/s O 0.3t m/s
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