Consider the reaction: 2 CO(g) + 1/2 O:(g) →2 CO:(g) Given are the data at 298 K. CO -110.53 O2 CO2 -393.51 AH°, kJ mol Cem J K' mol 29.14 29.355 37.11 At 27 °C, the AH for the reaction is -565.9 kJ mol" and Cp's (in SI units) are Cp,m (CO) = 28.41 + 4.10 x 10³ T – 4.6 x 10ª T² CP,m (O2) = 29.96 + 4.18 x 103 T – 1.67 x 10$ T² CP,m (CO2) = 44.22 + 8.79 x 10³ T – 8.62 x 10° T² Compare the enthalpies of the reaction at 1000. K for these sets of data.
Consider the reaction: 2 CO(g) + 1/2 O:(g) →2 CO:(g) Given are the data at 298 K. CO -110.53 O2 CO2 -393.51 AH°, kJ mol Cem J K' mol 29.14 29.355 37.11 At 27 °C, the AH for the reaction is -565.9 kJ mol" and Cp's (in SI units) are Cp,m (CO) = 28.41 + 4.10 x 10³ T – 4.6 x 10ª T² CP,m (O2) = 29.96 + 4.18 x 103 T – 1.67 x 10$ T² CP,m (CO2) = 44.22 + 8.79 x 10³ T – 8.62 x 10° T² Compare the enthalpies of the reaction at 1000. K for these sets of data.
Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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Transcribed Image Text:Consider the reaction: 2 CO(g) + 1/2 O:(g) → 2 CO2(g)
Given are the data at 298 K.
CO
O2
CO2
AH°, kJ mol·"
CP.m JK' mol
-110.53
-393.51
29.14
29.355
37.11
At 27 °C, the AH for the reaction is -565.9 kJ mol"' and Cp's (in SI units) are
CP,m (CO) = 28.41 + 4.10 x 103 T – 4.6 x 10ª T²
CP,m (O2) = 29.96 + 4.18 x 10³ T – 1.67 x 10$ T²
CP,m (CO2) = 44.22 + 8.79 x 10³ T – 8.62 x 10° T²
Compare the enthalpies of the reaction at 1000. K for these sets of data.
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