A combination of 0.38 kg of water at 22.64°C, 0.54 kg of aluminum at 29.16°C, and 0.14 kg of lead at 100°C is mixed in an insulated container and allowed to come to thermal equilibrium. Ignore any energy transfer to or from the container. Calculate the final temperature in °C of the mixture. CWater) = 4186 J/kg.K %3D C(Aluminium) = 900 J/kg.K C(lead) = = 128 J/kg.K

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter17: Energy In Thermal Processes: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 2OQ: A 100-g piece of copper, initially at 95.0C, is dropped into 200 g of water contained in a 280-g...
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A combination of 0.38 kg of water at 22.64°C, 0.54 kg of aluminum at 29.16°C,
and 0.14 kg of lead at 100°C is mixed in an insulated container and allowed to
come to thermal equilibrium. Ignore any energy transfer to or from the
container. Calculate the final temperature in °C of the mixture.
CWater)
= 4186 J/kg.K
(Aluminium) = 900 J/kg.K
%3D
Clead)
= 128 J/kg.K
Note: Answer will be up to two decimal places
Transcribed Image Text:A combination of 0.38 kg of water at 22.64°C, 0.54 kg of aluminum at 29.16°C, and 0.14 kg of lead at 100°C is mixed in an insulated container and allowed to come to thermal equilibrium. Ignore any energy transfer to or from the container. Calculate the final temperature in °C of the mixture. CWater) = 4186 J/kg.K (Aluminium) = 900 J/kg.K %3D Clead) = 128 J/kg.K Note: Answer will be up to two decimal places
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