Consider the following reaction where K. = 1.80×10 2 at 698 K. 2HI(g) H2(g) + I2(g) A reaction mixture was found to contain 0.275 moles of HI(g), 4.43x10 ² moles of H,(g), and 4.14×10² moles of I,(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 A. must run in the forward direction to reach equilibrium. B. must run in the reverse direction to reach equilibrium. C. is at equilibrium.

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Consider the following reaction where K. = 1.80×10 2 at 698 K.
2HI(g) H2(g) + I2(g)
A reaction mixture was found to contain 0.275 moles of HI(g), 4.43x10 ² moles of H,(g), and 4.14×10² moles of I,(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
A. must run in the forward direction to reach equilibrium.
B. must run in the reverse direction to reach equilibrium.
C. is at equilibrium.
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Transcribed Image Text:Consider the following reaction where K. = 1.80×10 2 at 698 K. 2HI(g) H2(g) + I2(g) A reaction mixture was found to contain 0.275 moles of HI(g), 4.43x10 ² moles of H,(g), and 4.14×10² moles of I,(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 A. must run in the forward direction to reach equilibrium. B. must run in the reverse direction to reach equilibrium. C. is at equilibrium. Submit Answer Retry Entire Group No more group attempts remain
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