Find the ArHO at 1000 K for the reaction, CO(g) + ½ O2(g) → CO2 (g) Given, ArH° 298K = -282.987 kJ mol-1. Assume that the heat capacities (a+bT+ cT²) are given in J K-1 mol-1 Cºp=26.86 + (6.966 x 10-³) T - (8.20 x10-7) T² for CO(g) for CO2(g) cop = 26.00+ (43.497 x 10-³) T - (148.32 x 10-7) T² cop = 25.72 + (12.98 x 10-³) T - (38.6 x10-7) T² for O2 (g) O-300.10 kJ - 250.0 kJ -282.852 kJ O275. 89 kJ

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
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Find the ArHO at 1000 K for the reaction, CO(g) + ½ O2(g) → CO2 (g)
Given, ArH° 298K = -282.987 kJ mol-1. Assume that the heat capacities (a+bT+ cT²) are given in J K-1 mol-1
cºp=
= 26.86 + (6.966 x 10-³) T- (8.20 x10-7) T²
for CO(g)
for CO2(g)
сор = 26.00 + (43.497 x 10-³) T - (148.32 x 10-7) T²
Cop = 25.72 + (12.98 x 10-3) T- (38.6 x10-7) T²
for 02 (g)
-300.10 kJ
- 250.0 kJ
O -282.852 kJ
O - 275.89 kJ
Transcribed Image Text:Find the ArHO at 1000 K for the reaction, CO(g) + ½ O2(g) → CO2 (g) Given, ArH° 298K = -282.987 kJ mol-1. Assume that the heat capacities (a+bT+ cT²) are given in J K-1 mol-1 cºp= = 26.86 + (6.966 x 10-³) T- (8.20 x10-7) T² for CO(g) for CO2(g) сор = 26.00 + (43.497 x 10-³) T - (148.32 x 10-7) T² Cop = 25.72 + (12.98 x 10-3) T- (38.6 x10-7) T² for 02 (g) -300.10 kJ - 250.0 kJ O -282.852 kJ O - 275.89 kJ
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