You may want to reference (Pages 656 - 664) Section 15.8 while completing this problem. Consider the reaction for the decomposition of hydrogen disulfide: Part A 2H2S(g) = 2H2 (g) + S2(g), Find the equilibrium concentration of S2. Express the concentration to three significant figures and include the appropriate units. Kc = 1.67 x 10-7 at 800° C The reaction is carried out at the same temperature with the following initial concentrations: HẢ [H2S] [H2] [S2] 3.40 × 10-4M 0.00 M [S2] = Value Units %3D 0.00 M Submit Request Answer

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter12: Chemical Equilibrium
Section12.5: Using Equilibrium Constants
Problem 12.7CE
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You may want to reference (Pages 656 - 664) Section 15.8 while
completing this problem.
Consider the reaction for the decomposition of hydrogen disulfide:
Part A
2H2S(g) = 2H2 (g) + S2(g),
Find the equilibrium concentration of S2.
Express the concentration to three significant figures and include the appropriate units.
Kc = 1.67 x 10-7 at 800° C
The reaction is carried out at the same temperature with the following
initial concentrations:
HẢ
[H2S]
[H2]
[S2]
3.40 × 10-4M
0.00 M
[S2] =
Value
Units
%3D
0.00 M
Submit
Request Answer
Transcribed Image Text:You may want to reference (Pages 656 - 664) Section 15.8 while completing this problem. Consider the reaction for the decomposition of hydrogen disulfide: Part A 2H2S(g) = 2H2 (g) + S2(g), Find the equilibrium concentration of S2. Express the concentration to three significant figures and include the appropriate units. Kc = 1.67 x 10-7 at 800° C The reaction is carried out at the same temperature with the following initial concentrations: HẢ [H2S] [H2] [S2] 3.40 × 10-4M 0.00 M [S2] = Value Units %3D 0.00 M Submit Request Answer
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