Consider the following system at equilibrium where AH° = 111 kJ, and K. = 6.30, at 723 K. 2NH3(g)N2(8) + 3H2(g) When 0.32 moles of N2(g) are removed from the equilibrium system at constant temperature: The value of K [ The value of Q ( v Ke- The reaction must O run in the forward direction to restablish equilibrium. O run in the reverse direction to restablish equilibrium. O emain the same. It is already 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 system at equilibrium where AH° = 111 kJ, and K. = 6.30, at 723 K.
2NH3(g)N2(8) + 3H2(g)
When 0.32 moles of N2(g) are removed from the equilibrium system at constant temperature:
The value of K.
The value of Q. l
|K.
The reaction must
O un in the forward direction to restablish equilibrium.
O un in the reverse direction to restablish equilibrium.
Oremain the same. It is already at equilibrium.
The concentration of H2 will
Transcribed Image Text:Consider the following system at equilibrium where AH° = 111 kJ, and K. = 6.30, at 723 K. 2NH3(g)N2(8) + 3H2(g) When 0.32 moles of N2(g) are removed from the equilibrium system at constant temperature: The value of K. The value of Q. l |K. The reaction must O un in the forward direction to restablish equilibrium. O un in the reverse direction to restablish equilibrium. Oremain the same. It is already at equilibrium. The concentration of H2 will
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