Calculate the equilibrium constant for the reaction NiO(s) + H2 = Ni(s) + H₂O at 750 °C from the following data: 1 Ni(s) + - O₂ = NiO(s) AGº = −244,555 + 98.53T Joules 1 H₂+-02 2 = H₂O AG° = -246,438 + 54.81T Joules Could pure solid nickel be annealed at 750 °C in an atmosphere containing 95 % H2O and 5 % H2 by volume, without oxidation? (6+6)

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter14: Chemical Equilibrium
Section: Chapter Questions
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Calculate the equilibrium constant for the reaction NiO(s) + H2 = Ni(s) + H₂O at 750 °C
from the following data:
1
Ni(s) + - O₂ = NiO(s) AGº = −244,555 + 98.53T Joules
1
H₂+-02
2
=
H₂O AG° = -246,438 + 54.81T Joules
Could pure solid nickel be annealed at 750 °C in an atmosphere containing 95 % H2O and 5
% H2 by volume, without oxidation?
(6+6)
Transcribed Image Text:Calculate the equilibrium constant for the reaction NiO(s) + H2 = Ni(s) + H₂O at 750 °C from the following data: 1 Ni(s) + - O₂ = NiO(s) AGº = −244,555 + 98.53T Joules 1 H₂+-02 2 = H₂O AG° = -246,438 + 54.81T Joules Could pure solid nickel be annealed at 750 °C in an atmosphere containing 95 % H2O and 5 % H2 by volume, without oxidation? (6+6)
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