Fill in the equilibrium table for the reaction of H2(g) and N2(g) to form NH3(9). Initial Conditions: A 1.0-L vessel is charged with 1.0 mol H2(g) and 1.0 mol N:(g) at 100°C. 1.0 - x 1.0 - 2x 2x - X - 2x + 2x 1.0 2.0 2.0 - x 2.0 - 2x + 3x 3x 2.0 + 3x + X 2.0 - 3x - 3x 1.0 - 3x 1.0 + 3x 1.0 + 2x 2.0 + 2x 1.0 + x 2.0 + x Concentration (M) 3H2(g) N2(g) 2NH3(g) Initial Change Equilibrium

Chemistry for Engineering Students
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Author:Lawrence S. Brown, Tom Holme
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Chapter12: Chemical Equilibrium
Section: Chapter Questions
Problem 12.27PAE
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Fill in the equilibrium table for the reaction of H2(g) and N2(g) to form NH3(9).
Initial Conditions: A 1.0-L vessel is charged with 1.0 mol H2(g) and 1.0 mol N:(g) at 100°C.
1.0 - x
1.0 - 2x
2x
- X
- 2x
+ 2x
1.0
2.0
2.0 - x
2.0 - 2x
+ 3x
3x
2.0 + 3x
+ x
2.0 - 3x
- 3x
1.0 - 3x
1.0 + 3x
1.0 + 2x
2.0 + 2x
1.0 + x
2.0 + x
Concentration (M)
3H2(g)
N2(g)
2NH3(g)
Initial
Change
Equilibrium
Transcribed Image Text:Fill in the equilibrium table for the reaction of H2(g) and N2(g) to form NH3(9). Initial Conditions: A 1.0-L vessel is charged with 1.0 mol H2(g) and 1.0 mol N:(g) at 100°C. 1.0 - x 1.0 - 2x 2x - X - 2x + 2x 1.0 2.0 2.0 - x 2.0 - 2x + 3x 3x 2.0 + 3x + x 2.0 - 3x - 3x 1.0 - 3x 1.0 + 3x 1.0 + 2x 2.0 + 2x 1.0 + x 2.0 + x Concentration (M) 3H2(g) N2(g) 2NH3(g) Initial Change Equilibrium
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