Calculate the equilibrium composition for the reaction when the ratio of H2+1/2 O2<=> H2O the number of moles of elemental hydrogen to elemental oxygen is unity. The temperature is 2000 K, and the pressure is 1 atm. ------------------------------- Some tables attached From table information: O2: T = 2000 K cp = 37.788 kJ / kmol-K (ho (T) hfo (298)) = 59,169 kJ / kmol hfo (T) = 0 kJ / kmol so (T) = 268.656 kJ / kmol-K gfo(T) = 0 kJ / kmol
Calculate the equilibrium composition for the reaction when the ratio of H2+1/2 O2<=> H2O the number of moles of elemental hydrogen to elemental oxygen is unity. The temperature is 2000 K, and the pressure is 1 atm. ------------------------------- Some tables attached From table information: O2: T = 2000 K cp = 37.788 kJ / kmol-K (ho (T) hfo (298)) = 59,169 kJ / kmol hfo (T) = 0 kJ / kmol so (T) = 268.656 kJ / kmol-K gfo(T) = 0 kJ / kmol
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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Calculate the equilibrium composition for the reaction when the ratio of H2+1/2 O2<=> H2O
the number of moles of elemental hydrogen to elemental oxygen is unity. The temperature is 2000 K, and the pressure is 1 atm.
-------------------------------
Some tables attached
From table information:
O2:
T = 2000 K
cp = 37.788 kJ / kmol-K
(ho (T) hfo (298)) = 59,169 kJ / kmol
hfo (T) = 0 kJ / kmol
so (T) = 268.656 kJ / kmol-K
gfo(T) = 0 kJ / kmol
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