.A 1-kg block of ice at 0 °C is placed into a perfectly insulated, sealed container that has 2 kg of water also at 0 °C. The water and ice completely fill the container, but the container is flexible. After some time one can expect that a. The water will freeze so that the mass of the ice will increase b. The ice will melt so that the mass of the ice will decrease c. Both the amount of water and the amount of ice will remain constant d. Both the amount of water and the amount of ice will decrease

Inquiry into Physics
8th Edition
ISBN:9781337515863
Author:Ostdiek
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Chapter5: Temperature And Heat
Section: Chapter Questions
Problem 13P: - (a) Compute the amount of heat needed to raise the temperature of 1 kg of water from its freezing...
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13. A 1-kg block of ice at 0 °C is placed into a perfectly insulated, sealed container that
has 2 kg of water also at 0 °C. The water and ice completely fill the container, but the
container is flexible. After some time one can expect that
a. The water will freeze so that the mass of the ice will increase
b. The ice will melt so that the mass of the ice will decrease
c. Both the amount of water and the amount of ice will remain constant
d. Both the amount of water and the amount of ice will decrease
Transcribed Image Text:13. A 1-kg block of ice at 0 °C is placed into a perfectly insulated, sealed container that has 2 kg of water also at 0 °C. The water and ice completely fill the container, but the container is flexible. After some time one can expect that a. The water will freeze so that the mass of the ice will increase b. The ice will melt so that the mass of the ice will decrease c. Both the amount of water and the amount of ice will remain constant d. Both the amount of water and the amount of ice will decrease
12. An ideal gas undergoes an isothermal expansion at 77 °C, increasing its volume from
1.3 to 3.41. The entropy change of the gas is 24 J/K. How many moles of gas are
present?
a. 3 moles
b. 5 moles
c. 7 moles
d. 9 moles
Transcribed Image Text:12. An ideal gas undergoes an isothermal expansion at 77 °C, increasing its volume from 1.3 to 3.41. The entropy change of the gas is 24 J/K. How many moles of gas are present? a. 3 moles b. 5 moles c. 7 moles d. 9 moles
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