An irregular lump of an unknown metal has a measured density of 5.61 g/mL. The metal is heated to a temperature of 159 °C and placed in a graduated cylinder filled with 25.0 mL of water at 25.0 °C. After the system has reached thermal equilibrium, the volume in the cylinder is read at 31.0 mL, and the temperature is recorded as 44.6 °C. What is the specific heat of the unknown metal sample? Assume no heat is lost to the surroundings.

Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter9: Energy And Chemistry
Section: Chapter Questions
Problem 9.82PAE: 9.82 The specific heat of gold is 0.13 J g-1 K-1 and that of copper is 0.39 J g-1 K-1. Suppose that...
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An irregular lump of an unknown metal has a measured density of 5.61 g/mL. The metal is heated to a temperature of 159 °C
and placed in a graduated cylinder filled with 25.0 mL of water at 25.0 °C. After the system has reached thermal equilibrium,
the volume in the cylinder is read at 31.0 mL, and the temperature is recorded as 44.6 °C. What is the specific heat of the
unknown metal sample? Assume no heat is lost to the surroundings.
C =
J
g. °C
Transcribed Image Text:An irregular lump of an unknown metal has a measured density of 5.61 g/mL. The metal is heated to a temperature of 159 °C and placed in a graduated cylinder filled with 25.0 mL of water at 25.0 °C. After the system has reached thermal equilibrium, the volume in the cylinder is read at 31.0 mL, and the temperature is recorded as 44.6 °C. What is the specific heat of the unknown metal sample? Assume no heat is lost to the surroundings. C = J g. °C
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