Consider the following system at equilibrium where AH° = 16.1 k), and Ke = 6.50×103, at 298 K. 2NOBr(g) =2N0(g) + Br2(g) When 0.34 moles of NO(g) are added to the equilibrium system at constant temperature: The value of Kel The value of Qc( | Kc. The reaction must Orun in the forward direction to restablish equilibrium. Orun in the reverse direction to restablish equilibrium. remain the same. It is already at equilibrium. The concentration of Br2 will|

Chemistry: The Molecular Science
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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° = 16.1 k), and Ke = 6.50×103, at 298 K.
2NOBr(g) =2N0(g) + Br2(g)
When 0.34 moles of NO(g) are added to the equilibrium system at constant temperature:
The value of Kel
The value of Qc(
| Kc.
The reaction must
Orun in the forward direction to restablish equilibrium.
Orun in the reverse direction to restablish equilibrium.
remain the same. It is already at equilibrium.
The concentration of Br2 will|
Transcribed Image Text:Consider the following system at equilibrium where AH° = 16.1 k), and Ke = 6.50×103, at 298 K. 2NOBr(g) =2N0(g) + Br2(g) When 0.34 moles of NO(g) are added to the equilibrium system at constant temperature: The value of Kel The value of Qc( | Kc. The reaction must Orun in the forward direction to restablish equilibrium. Orun in the reverse direction to restablish equilibrium. remain the same. It is already at equilibrium. The concentration of Br2 will|
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