A 53.0-g metal weight, heated to 88.50°C, is placed into 167 g of water at 19.80°C contained in a perfectly insulating thermos flask. After some time, the temperature inside the thermos flask stabilizes at 23.75°C. The specific heat capacity of water is approximately 4.18 J/K/g in the temperature range 16°C - 61°C. Calculate the specific heat capacity of the metal.
A 53.0-g metal weight, heated to 88.50°C, is placed into 167 g of water at 19.80°C contained in a perfectly insulating thermos flask. After some time, the temperature inside the thermos flask stabilizes at 23.75°C. The specific heat capacity of water is approximately 4.18 J/K/g in the temperature range 16°C - 61°C. Calculate the specific heat capacity of the metal.
Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter12: Thermodynamic Processes And Thermochemistry
Section: Chapter Questions
Problem 11P
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A 53.0-g metal weight, heated to 88.50°C, is placed into 167 g of water at 19.80°C contained in a perfectly insulating thermos flask. After some time, the temperature inside the thermos flask stabilizes at 23.75°C.
The specific heat capacity of water is approximately 4.18 J/K/g in the temperature range 16°C - 61°C.
Calculate the specific heat capacity of the metal.
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