O Kinetics and Equilibrium Calculating an equilibrium constant from a heterogeneous equilibrium... Iron(III) oxide and hydrogen react to form iron and water, like this: Fe2O3(s)+3 H2(g) 2 Fe(s)+3 H₂O(g) 3/5 Bi At a certain temperature, a chemist finds that a 3.3 L reaction vessel containing a mixture of iron(III) oxide, hydrogen, iron, and water at equilibrium has the following composition: compound amount Fe2O3 4.10 g H₂ 2.97 g Fe 1.46 g H₂O 2.53 g Calculate the value of the equilibrium constant K for this reaction. Round your answer to 2 significant digits. K₁ = 0 X G

Chemistry & Chemical Reactivity
9th Edition
ISBN:9781133949640
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter15: Principles Of Chemical Reactivity: Equilibria
Section: Chapter Questions
Problem 38GQ: At 2300 K the equilibrium constant for the formation of NO(g) is 1.7 103. N2(g) + O2(g) 2 NO(g)...
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O Kinetics and Equilibrium
Calculating an equilibrium constant from a heterogeneous equilibrium...
Iron(III) oxide and hydrogen react to form iron and water, like this:
Fe2O3(s)+3 H2(g) 2 Fe(s)+3 H₂O(g)
3/5
Bi
At a certain temperature, a chemist finds that a 3.3 L reaction vessel containing a mixture of iron(III) oxide, hydrogen, iron, and water at equilibrium has the
following composition:
compound amount
Fe2O3
4.10 g
H₂
2.97 g
Fe
1.46 g
H₂O
2.53 g
Calculate the value of the equilibrium constant K for this reaction. Round your answer to 2 significant digits.
K₁ = 0
X
G
Transcribed Image Text:O Kinetics and Equilibrium Calculating an equilibrium constant from a heterogeneous equilibrium... Iron(III) oxide and hydrogen react to form iron and water, like this: Fe2O3(s)+3 H2(g) 2 Fe(s)+3 H₂O(g) 3/5 Bi At a certain temperature, a chemist finds that a 3.3 L reaction vessel containing a mixture of iron(III) oxide, hydrogen, iron, and water at equilibrium has the following composition: compound amount Fe2O3 4.10 g H₂ 2.97 g Fe 1.46 g H₂O 2.53 g Calculate the value of the equilibrium constant K for this reaction. Round your answer to 2 significant digits. K₁ = 0 X G
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