13. A horn on a boat sounds a warning, and the sound penetrates the water. How does the frequency of the sound in the air compare to its frequency in the water? How does the wavelength in the air compare to the wavelength in the water? (a) The frequency in the air is smaller than the frequency in the water, and the wavelength in the air is greater than the wavelength in the water. (b) The frequency in the air is greater than the frequency in the water, and the wavelength in the air is smaller than the wavelength in the water. (c) The frequency in the air is the same as the frequency in the water, and the wavelength in the air is the same as the wavelength in the water. (d) The frequency in the air is the same as the frequency in the water, and the wavelength in the air is smaller than the wavelength in the water. (e) The frequency in the air is the same as the frequency in the water, and the wave- length in the air is greater than the wavelength in the water.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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13. A horn on a boat sounds a warning, and the sound penetrates the water.
How does the frequency of the sound in the air compare to its frequency in
the water? How does the wavelength in the air compare to the wavelength
in the water? (a) The frequency in the air is smaller than the frequency in
the water, and the wavelength in the air is greater than the wavelength in
the water. (b) The frequency in the air is greater than the frequency in the
water, and the wavelength in the air is smaller than the wavelength in the
water. (c) The frequency in the air is the same as the frequency in the water,
and the wavelength in the air is the same as the wavelength in the water.
(d) The frequency in the air is the same as the frequency in the water, and
the wavelength in the air is smaller than the wavelength in the water. (e) The
frequency in the air is the same as the frequency in the water, and the wave-
length in the air is greater than the wavelength in the water.
Transcribed Image Text:13. A horn on a boat sounds a warning, and the sound penetrates the water. How does the frequency of the sound in the air compare to its frequency in the water? How does the wavelength in the air compare to the wavelength in the water? (a) The frequency in the air is smaller than the frequency in the water, and the wavelength in the air is greater than the wavelength in the water. (b) The frequency in the air is greater than the frequency in the water, and the wavelength in the air is smaller than the wavelength in the water. (c) The frequency in the air is the same as the frequency in the water, and the wavelength in the air is the same as the wavelength in the water. (d) The frequency in the air is the same as the frequency in the water, and the wavelength in the air is smaller than the wavelength in the water. (e) The frequency in the air is the same as the frequency in the water, and the wave- length in the air is greater than the wavelength in the water.
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