To cool the 2.0 kg fruit punch at 20.0 deg Celsius quickly, you pour it into a bowl of ice that is initially –15.0°C. There is so much ice, however, that all the punch freezes and the whole mixture comes to a final temperature of –5.0°C. Find the mass of ice in the bowl originally, assuming no energy is transferred between the ice-fruit punch system and the bowl or the surrounding environment. Assume that the fruit punch is almost pure water. * 38.5 kg 41.1 kg 35.7 kg 45.2 kg None of the answer is reasonably close to the answer.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter17: Energy In Thermal Processes: The First Law Of Thermodynamics
Section: Chapter Questions
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To cool the 2.0 kg fruit punch at 20.0 deg Celsius quickly, you pour it into a bowl of ice that is initially –15.0°C. There is so much ice, however, that all the punch freezes and the whole mixture comes to a final temperature of –5.0°C. Find the mass of ice in the bowl originally, assuming no energy is transferred between the ice-fruit punch system and the bowl or the surrounding environment. Assume that the fruit punch is almost pure water. *
 
 
 
38.5 kg
 
 
 
41.1 kg
 
 
 
35.7 kg
 
 
 
45.2 kg
 
 
 
None of the answer is reasonably close to the answer.
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