. (a) In a liquid with density 1300 kg>m3 , longitudinal | StudySoup

Textbook Solutions for University Physics with Modern Physics (1)

Chapter 16 Problem 16.6

Question

. (a) In a liquid with density 1300 kg>m3 , longitudinal waves with frequency 400 Hz are found to have wavelength 8.00 m. Calculate the bulk modulus of the liquid. (b) A metal bar with a length of 1.50 m has density 6400 kg>m3 . Longitudinal sound waves take 3.90 * 10-4 s to travel from one end of the bar to the other. What is Youngs modulus for this metal?

Solution

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The first step in solving 16 problem number 31 trying to solve the problem we have to refer to the textbook question: . (a) In a liquid with density 1300 kg>m3 , longitudinal waves with frequency 400 Hz are found to have wavelength 8.00 m. Calculate the bulk modulus of the liquid. (b) A metal bar with a length of 1.50 m has density 6400 kg>m3 . Longitudinal sound waves take 3.90 * 10-4 s to travel from one end of the bar to the other. What is Youngs modulus for this metal?
From the textbook chapter Sound and Hearing you will find a few key concepts needed to solve this.

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Title University Physics with Modern Physics (1) 14 
Author Hugh D. Young Roger A. Freedman
ISBN 9780321973610

. (a) In a liquid with density 1300 kg>m3 , longitudinal

Chapter 16 textbook questions

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