The molar heat capacity for carbon monoxide at constant volume is Cy, m = 20.17 J/(K-mol). A 13.00-L fixed-volume flask contains CO(g) at a pressure of 6.00 kPa and a temperature of 25.0 °C. Assuming that carbon monoxide acts as an ideal gas and that its heat capacity is constant over the given temperature range calculate the change in entropy for the gas when it is heated to 800.0 °C. AS = J/K TOOLS x10

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
Chapter13: Spontaneous Processes And Thermodynamic Equilibrium
Section: Chapter Questions
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The molar heat capacity for carbon monoxide
A 13.00-L fixed-volume flask contains CO(g) at a pressure of 6.00 kPa and a temperature of 25.0 °C.
Assuming that carbon monoxide acts as an ideal gas and that its heat capacity is constant over the given temperature range,
calculate the change in entropy for the gas when it is heated to 800.0 °C.
constant volume is Cy, m = 20.17 J/(K-mol).
%3D
AS =
J/K
TOOLS
x10
Transcribed Image Text:The molar heat capacity for carbon monoxide A 13.00-L fixed-volume flask contains CO(g) at a pressure of 6.00 kPa and a temperature of 25.0 °C. Assuming that carbon monoxide acts as an ideal gas and that its heat capacity is constant over the given temperature range, calculate the change in entropy for the gas when it is heated to 800.0 °C. constant volume is Cy, m = 20.17 J/(K-mol). %3D AS = J/K TOOLS x10
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