If the reaction Fe2N(s) + H2 2Fe(s) + NH3(g) comes to equilibrium at a total pressure of 1 bar, analysis of the gas shows that at 700. and 800. K, PNH PH₂ = 2.165 and 1.083, respectively, if only H2(g) was initially present in the gas phase and Fe2N(s) was in excess. Part B ▸ Part C ▸ Part D Part E Calculate AS at 800. K. Ο ΑΣΦ 0 ? ASR = -39.40 Submit Previous Answers Request Answer × Incorrect; Try Again; One attempt remaining Part F Calculate AG for this reaction at 298.15 K. ΜΕ ΑΣΦ AGR 20306.9 ? J. mol¹ K-1 J.mol-1 > > > >

Chemistry by OpenStax (2015-05-04)
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Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
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Chapter13: Fundamental Equilibrium Concepts
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Problem 12E: Show that the complete chemical equation, the total ionic equation, and the net ionic equation for...
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If the reaction
Fe2N(s) + H2 2Fe(s) + NH3(g)
comes to equilibrium at a total pressure of 1 bar,
analysis of the gas shows that at 700. and 800. K,
PNH PH₂ = 2.165 and 1.083, respectively, if only
H2(g) was initially present in the gas phase and
Fe2N(s) was in excess.
Part B
▸ Part C
▸ Part D
Part E
Calculate AS at 800. K.
Ο ΑΣΦ
0
?
ASR = -39.40
Submit Previous Answers Request Answer
× Incorrect; Try Again; One attempt remaining
Part F
Calculate AG for this reaction at 298.15 K.
ΜΕ ΑΣΦ
AGR
20306.9
?
J. mol¹ K-1
J.mol-1
>
> > >
Transcribed Image Text:If the reaction Fe2N(s) + H2 2Fe(s) + NH3(g) comes to equilibrium at a total pressure of 1 bar, analysis of the gas shows that at 700. and 800. K, PNH PH₂ = 2.165 and 1.083, respectively, if only H2(g) was initially present in the gas phase and Fe2N(s) was in excess. Part B ▸ Part C ▸ Part D Part E Calculate AS at 800. K. Ο ΑΣΦ 0 ? ASR = -39.40 Submit Previous Answers Request Answer × Incorrect; Try Again; One attempt remaining Part F Calculate AG for this reaction at 298.15 K. ΜΕ ΑΣΦ AGR 20306.9 ? J. mol¹ K-1 J.mol-1 > > > >
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