Consider that 8 mol of SO₂ is heated from 200 to 1100°C. The heat capacity coefficients are given in the following table: Heat Capacities of Gases in the Ideal-Gas State+ Constants in equation CP/R=A+BT+CT² + DT¯ for T(K) from 298 K to Tmax C/R A 103 B 4.796 5.699 0.801 Chemical species Sulpher dioxide The heat transferred is SO2 TkJ. Tmax 2000 106 C 10-5 D -1.015

Introduction to Chemical Engineering Thermodynamics
8th Edition
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Chapter1: Introduction
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Consider that 8 mol of SO₂ is heated from 200 to 1100°C. The heat capacity coefficients are given in the following
table:
Constants in equation
Chemical species
Sulpher dioxide
The heat transferred is
Heat Capacities of Gases in the Ideal-Gas State+
C/R=A+BT+CT² + DT−² for 7(K) from 298 K to Tmax
103 B
0.801
SO2
EkJ.
Tmax
2000
/R A
5.699
Crig
P208
4.796
106 C
10-5 D
-1.015
Transcribed Image Text:Consider that 8 mol of SO₂ is heated from 200 to 1100°C. The heat capacity coefficients are given in the following table: Constants in equation Chemical species Sulpher dioxide The heat transferred is Heat Capacities of Gases in the Ideal-Gas State+ C/R=A+BT+CT² + DT−² for 7(K) from 298 K to Tmax 103 B 0.801 SO2 EkJ. Tmax 2000 /R A 5.699 Crig P208 4.796 106 C 10-5 D -1.015
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