Consider the following reaction where Kc = 7.00 × 10-5 at 673 K. NH4I(s) NH3(g) + HI(g) A reaction mixture was found to contain 0.0589 moles of NH4I(s), 0.0110 moles of NH3(g), and 0.00837 moles of HI(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 O must run in the forward direction to reach equilibrium. O must run in the reverse direction to reach equilibrium. O is at equilibrium.

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
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Consider the following reaction where Kc = 7.00 x 10 at 673 K.
NH4I(s) ⇒ NH3(g) + HI(g)
A reaction mixture was found to contain 0.0589 moles of NH4I(s), 0.0110 moles of NH3(g), and 0.00837 moles of HI(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
O must run in the forward direction to reach equilibrium.
O must run in the reverse direction to reach equilibrium.
O is at equilibrium.
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Transcribed Image Text:-5 Consider the following reaction where Kc = 7.00 x 10 at 673 K. NH4I(s) ⇒ NH3(g) + HI(g) A reaction mixture was found to contain 0.0589 moles of NH4I(s), 0.0110 moles of NH3(g), and 0.00837 moles of HI(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 O must run in the forward direction to reach equilibrium. O must run in the reverse direction to reach equilibrium. O is at equilibrium. Submit Answer Use the References to access important values if needed for this question. Retry Entire Group 8 more group attempts remaining
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