13. In an experiment, 30.0 g of metal was heated to 98.0°C and then quickly transferred to 50.0 g of water in a calorimeter. The heat capacity of the calorimeter with the water was 211 J/°C. The initial temperature of the calorimeter was 27.0°C, and the final temperature after addition of the metal was 32.5°C. What is the value of the specific heat capacity of the metal? 0.140 J/(g °C) b. 83.0 J/(g - °C) 0.540 J/(g °C) d. 0.591 J/(g °C) e. 29.5 J/(g - °C) а. с.

Chemistry & Chemical Reactivity
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Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
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Chapter5: Principles Of Chemical Reactivity: Energy And Chemical Reactions
Section: Chapter Questions
Problem 39PS: A piece of titanium metal with a mass of 20.8 g is heated in boiling water to 99.5 C and then...
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13. In an experiment, 30.0 g of metal was heated to 98.0°C and then quickly transferred to 50.0 g of water in a
calorimeter. The heat capacity of the calorimeter with the water was 211 J/°C. The initial temperature of the
calorimeter was 27.0°C, and the final temperature after addition of the metal was 32.5°C. What is the value
of the specific heat capacity of the metal?
0.140 J/(g - °C)
b. 83.0 J/(g · °C)
0.540 J/(g · °C)
d. 0.591 J/(g · °C)
29.5 J/(g - °C)
а.
е.
с.
Transcribed Image Text:13. In an experiment, 30.0 g of metal was heated to 98.0°C and then quickly transferred to 50.0 g of water in a calorimeter. The heat capacity of the calorimeter with the water was 211 J/°C. The initial temperature of the calorimeter was 27.0°C, and the final temperature after addition of the metal was 32.5°C. What is the value of the specific heat capacity of the metal? 0.140 J/(g - °C) b. 83.0 J/(g · °C) 0.540 J/(g · °C) d. 0.591 J/(g · °C) 29.5 J/(g - °C) а. е. с.
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