If a 20-m string has a mass per length of 5.30 x 10(-2) kg/m, and is stretched to a tension of 30.0 N. find the 3rd overtone that could cause that string to form a standing wave. O 1.78 Hz O 0.59 Hz O 1.19 Hz O 2.38 Hz

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter14: Superposition And Standing Waves
Section: Chapter Questions
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If a 20-m string has a mass per
length of 5.30 x 10^(-2) kg/m,
and is stretched to a tension of
30.0 N. find the 3rd overtone
that could cause that string to
form a standing wave.
1.78 Hz
0.59 Hz
O 1.19 Hz
O 2.38 Hz
Transcribed Image Text:If a 20-m string has a mass per length of 5.30 x 10^(-2) kg/m, and is stretched to a tension of 30.0 N. find the 3rd overtone that could cause that string to form a standing wave. 1.78 Hz 0.59 Hz O 1.19 Hz O 2.38 Hz
A train moving at a speed of
25.0 m/s sounds its whistle.
which has a frequency of 4.00
x 10^2 Hz. Determine the
frequency heard by a
stationary observer as the
train approaches the observer
if the speed of the sound wave
is 345 m/s.
O 372.97 Hz
O 431.25 Hz
O 371.01 Hz
O 428.99 Hz
Transcribed Image Text:A train moving at a speed of 25.0 m/s sounds its whistle. which has a frequency of 4.00 x 10^2 Hz. Determine the frequency heard by a stationary observer as the train approaches the observer if the speed of the sound wave is 345 m/s. O 372.97 Hz O 431.25 Hz O 371.01 Hz O 428.99 Hz
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