From the following data, calculate AH°1914g for the reaction CH,COOH(g)+20,(g)→2H,0(g) +2CO,(g): AH(KJ mol) CH, COОН () + 20,(g) > 2H,00) + 2C0,(8) H,O(I) → H,0(g) CH,COOH(I) → CH,COOH(g) -871.5 (1) 40.656 (2) 24.4 (3) Values for AH° for the first two reactions are at 298.15 K and for the third reaction at 391.4 K. substance CH,COOH(I) 0,(g) CO,(g) H,0(1) H,0(g) CIR 14.9 3.53 4.46 9.055 4.038

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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From the following data, calculate AH°1914g for the reaction
CH,COOH(g)+20,(g)→2H,0(g) +2CO,(g):
AH(KJ mol)
CH, COОН () + 20,(g) > 2H,00) + 2C0,(8)
H,O(I) → H,0(g)
CH,COOH(I) → CH,COOH(g)
-871.5
(1)
40.656
(2)
24.4
(3)
Values for AH° for the first two reactions are at 298.15 K and for the third reaction at
391.4 K.
substance
CH,COOH(I)
0,(g)
CO,(g) H,0(1) H,0(g)
CIR
14.9
3.53
4.46
9.055
4.038
Transcribed Image Text:From the following data, calculate AH°1914g for the reaction CH,COOH(g)+20,(g)→2H,0(g) +2CO,(g): AH(KJ mol) CH, COОН () + 20,(g) > 2H,00) + 2C0,(8) H,O(I) → H,0(g) CH,COOH(I) → CH,COOH(g) -871.5 (1) 40.656 (2) 24.4 (3) Values for AH° for the first two reactions are at 298.15 K and for the third reaction at 391.4 K. substance CH,COOH(I) 0,(g) CO,(g) H,0(1) H,0(g) CIR 14.9 3.53 4.46 9.055 4.038
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