H.W) calculate AcH* (500 K) for methane by using the data given on the temperature dependence of heat capacities. CH4(g)+2O2(g)→CO2(g)+2H2O(g) AÇH° (298 K) -891 kJ Cp,m(CO2) = 44.22 + 8.79 × 10–37 – 8.62 × 10° T? Cp,m(H2O) = 75.29 + 0+ 0 1.67 x 105 T? Cp,m(O2) = 29.96 +4.18 × 10-³T %3D Cp,m(CH4) = 35.31 %3D

Physical Chemistry
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ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
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Chapter3: The Second And Third Laws Of Thermodynamics
Section: Chapter Questions
Problem 3.8E: Explain why the high-temperature reservoir of a heat engine must, indeed, be higher in temperature...
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V:OY IA %YA N&
令 l
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حداد
H.W) calculate AçH° (500 K) for methane by using the data given on
the temperature dependence of heat capacities.
CH4(g)+2O2(g)→CO2(g)+2H2O(g)
AÇH° (298 K) -891 kJ
Cp,m(CO2) = 44.22 + 8.79 × 10-37 - 8.62 × 105
T2
Cp.m(H2O) = 75.29 + 0 + 0
Cp,m(O2) = 29.96 + 4.18 × 10-37 1.67 × 105
T2
Cp,m(CH4) = 35.31
Transcribed Image Text:V:OY IA %YA N& 令 l PNG.9 → حداد H.W) calculate AçH° (500 K) for methane by using the data given on the temperature dependence of heat capacities. CH4(g)+2O2(g)→CO2(g)+2H2O(g) AÇH° (298 K) -891 kJ Cp,m(CO2) = 44.22 + 8.79 × 10-37 - 8.62 × 105 T2 Cp.m(H2O) = 75.29 + 0 + 0 Cp,m(O2) = 29.96 + 4.18 × 10-37 1.67 × 105 T2 Cp,m(CH4) = 35.31
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