The density of water that is at 0°C is very nearly 1000 kg/m3 (it is actually 999.84 kg/m3), whereas the density of ice that is at 0°C is 917 kg/m3. Calculate the pressure necessary to keep 8.6 m3 of water from expanding when it freezes, neglecting the effect such a large pressure would have on the freezing temperature. (This problem gives you only an indication of how large the forces associated with freezing water might be.) The bulk modulus of ice is 2.20  109 N/m2.

An Introduction to Physical Science
14th Edition
ISBN:9781305079137
Author:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Publisher:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Chapter5: Temperature And Heat
Section: Chapter Questions
Problem 24E: If the gas in Exercise 23 is initially at room temperature (20C) and is heated in an isobaric...
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The density of water that is at 0°C is very nearly 1000 kg/m3 (it is actually 999.84 kg/m3), whereas the density of ice that is at 0°C is 917 kg/m3. Calculate the pressure necessary to keep 8.6 m3 of water from expanding when it freezes, neglecting the effect such a large pressure would have on the freezing temperature. (This problem gives you only an indication of how large the forces associated with freezing water might be.) The bulk modulus of ice is 2.20  109 N/m2.

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