Consider the following system at equilibrium where AH=182 kJ, and K 7.00 x 10-5, at 673 K. = NH,I(s)→→ NH3(g) + HI(g) When some moles of NH,I(s) are removed from the equilibrium system at constant temperature: The value of Ke Oincreases decreases remains the same The value of Qe Ois greater than K Ois equal to Ke Dis less than K The reaction must Orun in the forward direction to reestablish equilibrium. Orun in the reverse direction to reestablish equilibrium. Oremain the same. It is already at equilibrium. The numbers moles of NH will

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Consider the following system at equilibrium where
AH° 182 kJ, and
K 7.00 x 10-5, at 673 K.
NH,I(8)→ NH3(g) + HI(g)
When some moles of NH,I(s) are removed from the equilibrium system at constant temperature:
The value of Ke
Oincreases
decreases
Oremains the same
The value of Qc
Ois greater than K
Ois equal to Ke
Ois less than Ke
The reaction must
Orun in the forward direction to reestablish equilibrium.
Orun in the reverse direction to reestablish equilibrium.
Oremain the same. It is already at equilibrium.
The number of moles of NH3 will
Cincrease
decrease
Oremain the same
Transcribed Image Text:Consider the following system at equilibrium where AH° 182 kJ, and K 7.00 x 10-5, at 673 K. NH,I(8)→ NH3(g) + HI(g) When some moles of NH,I(s) are removed from the equilibrium system at constant temperature: The value of Ke Oincreases decreases Oremains the same The value of Qc Ois greater than K Ois equal to Ke Ois less than Ke The reaction must Orun in the forward direction to reestablish equilibrium. Orun in the reverse direction to reestablish equilibrium. Oremain the same. It is already at equilibrium. The number of moles of NH3 will Cincrease decrease Oremain the same
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