Consider the following reaction where Ke = 1.80 × 10-4 at 298 K. NH4HS(s) ⇒ NH3(g) + H₂S(9) A reaction mixture was found to contain 0.0592 moles of NH4HS(s), 0.0183 moles of eeded for this question. . Submit Answer NH3(g), and 0.0134 moles of H₂S(g), in a 1.00 liter container. Is the reaction at equilibrium? If not, what direction must it run in order to reach equilibrium? The reaction quotient, Qc, equals The reaction Omust run in the forward direction to reach equilibrium. Omust run in the reverse direction to reach equilibrium. Ois at equilibrium. Retry Entire Group 9 more group attempts remaining
Consider the following reaction where Ke = 1.80 × 10-4 at 298 K. NH4HS(s) ⇒ NH3(g) + H₂S(9) A reaction mixture was found to contain 0.0592 moles of NH4HS(s), 0.0183 moles of eeded for this question. . Submit Answer NH3(g), and 0.0134 moles of H₂S(g), in a 1.00 liter container. Is the reaction at equilibrium? If not, what direction must it run in order to reach equilibrium? The reaction quotient, Qc, equals The reaction Omust run in the forward direction to reach equilibrium. Omust run in the reverse direction to reach equilibrium. Ois at equilibrium. Retry Entire Group 9 more group attempts remaining
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Consider the following reaction where Kc = 1.80 x 10-4 at 298 K.
NH4HS(s) ⇒ NH3(g) + H₂S(9)
A reaction mixture was found to contain 0.0592 moles of
NH4HS(s), 0.0183 moles of
NH3(g), and 0.0134 moles of
H₂S(g), in a 1.00 liter container.
Is the reaction at equilibrium?
If not, what direction must it run in order to reach equilibrium?
The reaction quotient, Qe, equals
The reaction
Omust run in the forward direction to reach equilibrium.
Omust run in the reverse direction to reach equilibrium.
Ois at equilibrium.
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