To cool my soda in the summer, I drop a cold whiskey stone into my cup of soda. If the 147.00 g whiskey stone is originally at -6.180°C, and the 250.0 mL cup of soda is originally at 16.980°C, what is the final temperature of the soda, in Celsius? The density of soda is 0.960 g/mL. The specific heat capacity of soda is 4.197O J/g-K, and the specific heat capacity of the whiskey stone is 2.8390 J/g-K.

World of Chemistry, 3rd edition
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ISBN:9781133109655
Author:Steven S. Zumdahl, Susan L. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan L. Zumdahl, Donald J. DeCoste
Chapter10: Energy
Section10.2: The Flow Of Energy
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To cool my soda in the summer, I drop a cold whiskey stone into my cup of soda. If the 147.00 g
whiskey stone is originally at -6.180°C, and the 250.0 mL cup of soda is originally at 16.980°C, what is
the final temperature of the soda, in Celsius?
The density of soda is 0.960 g/mL. The specific heat capacity of soda is 4.197O J/g-K, and the specific
heat capacity of the whiskey stone is 2.8390 J/g-K.
Transcribed Image Text:To cool my soda in the summer, I drop a cold whiskey stone into my cup of soda. If the 147.00 g whiskey stone is originally at -6.180°C, and the 250.0 mL cup of soda is originally at 16.980°C, what is the final temperature of the soda, in Celsius? The density of soda is 0.960 g/mL. The specific heat capacity of soda is 4.197O J/g-K, and the specific heat capacity of the whiskey stone is 2.8390 J/g-K.
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