A sound wave traveling through dry air has a frequency of 16 Hz, a wavelength of 22 m, and a speed of 350 m/s. When the sound wave passes through a cloud of methane, its wavelength changes to 28 m, while its frequency remains the same. What is its new speed? (The equation for the speed of a wave is v= f x X.)

An Introduction to Physical Science
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Author:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
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Chapter6: Waves And Sound
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L 1.1.4 Quz: Wave Interactions
Questlon 4 of 10
A sound wave traveling through dry air has a frequency of 16 Hz, a
wavelength of 22 m, and a speed of 350 m/s. When the sound wave passes
through a cloud of methane, its wavelength changes to 28 m, while its
frequency remains the same. What is its new speed? (The equation for the
speed of a wave is v = f x X.)
A. 450 m/s
B. 350 m/s
C. 9,800 m/s
D. 13 m/s
SUBMIT
E PREVIOUS
Transcribed Image Text:L 1.1.4 Quz: Wave Interactions Questlon 4 of 10 A sound wave traveling through dry air has a frequency of 16 Hz, a wavelength of 22 m, and a speed of 350 m/s. When the sound wave passes through a cloud of methane, its wavelength changes to 28 m, while its frequency remains the same. What is its new speed? (The equation for the speed of a wave is v = f x X.) A. 450 m/s B. 350 m/s C. 9,800 m/s D. 13 m/s SUBMIT E PREVIOUS
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