A student determines the value of the equilibrium constant to be 1.01×1018 for the following reaction. H,(g) + C¿H¼(g)- →C¿H«(g) Based on this value of Kegi AG° for this reaction is expected to be (greater,less) than zero. Calculate the free energy change for the reaction of 1.85 moles of H,(g) at standard conditions at 298K. AG°, rxn kJ

Chemistry: The Molecular Science
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Author:John W. Moore, Conrad L. Stanitski
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Chapter16: Thermodynamics: Directionality Of Chemical Reactions
Section: Chapter Questions
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6-gibb
A student determines the value of the equilibrium constant to be 1.01×1018 for the following reaction.
H2(g) + C,H4(g)-
→C;H¿(g)
Based on this value of Keg:
AG° for this reaction is expected to be (greater,less)
than zero.
Calculate the free energy change for the reaction of 1.85 moles of H,(g) at standard conditions at 298K.
AG°,
kJ
rxn
Transcribed Image Text:6-gibb A student determines the value of the equilibrium constant to be 1.01×1018 for the following reaction. H2(g) + C,H4(g)- →C;H¿(g) Based on this value of Keg: AG° for this reaction is expected to be (greater,less) than zero. Calculate the free energy change for the reaction of 1.85 moles of H,(g) at standard conditions at 298K. AG°, kJ rxn
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