Two perfectly insulated gas canisters contain air with a specific heat capacity of 1005 J/kg•°C and a density of 1.35 kg/m.One cylinder contains 25 L of air at a temperature of 35°C and the other contains 15 L of air at a temperature of 45°C. The canisters are connected and the gas in both is allowed to come to an equilibrium temperature. Find the equilibrium temperature to three significant figures.

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Author:Raymond A. Serway, John W. Jewett
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Chapter21: The Kinetic Theory Of Gases
Section: Chapter Questions
Problem 21.8OQ
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Two perfectly insulated gas canisters contain air with a specific heat capacity of 1005 J/kg•°C and
a density of 1.35 kg/m.One cylinder contains 25 L of air at a temperature of 35°C and the other
contains 15 L of air at a temperature of 45°C. The canisters are connected and the gas in both is
allowed to come to an equilibrium temperature. Find the equilibrium temperature to three significant
figures.
Transcribed Image Text:Two perfectly insulated gas canisters contain air with a specific heat capacity of 1005 J/kg•°C and a density of 1.35 kg/m.One cylinder contains 25 L of air at a temperature of 35°C and the other contains 15 L of air at a temperature of 45°C. The canisters are connected and the gas in both is allowed to come to an equilibrium temperature. Find the equilibrium temperature to three significant figures.
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