QuestionJune 25, 2025

Consider the reaction H_(2)(g)+I_(2)(g)Leftrightarrow HI(g) with an equilibrium constant of 46.3 and a reaction quotient of 525.Which direction will the system shift to? The equilibrium will shift to the left to favor the reactants. The equilibrium will shift to the right to favor the products. The equilibrium will not shift in any direction. The equilibrium will shift to the forward reaction.

Consider the reaction H_(2)(g)+I_(2)(g)Leftrightarrow HI(g) with an equilibrium constant of 46.3 and a reaction quotient of 525.Which direction will the system shift to? The equilibrium will shift to the left to favor the reactants. The equilibrium will shift to the right to favor the products. The equilibrium will not shift in any direction. The equilibrium will shift to the forward reaction.
Consider the reaction H_(2)(g)+I_(2)(g)Leftrightarrow HI(g) with an equilibrium constant of 46.3 and a reaction quotient of 525.Which
direction will the system shift to?
The equilibrium will shift to the left to favor the reactants.
The equilibrium will shift to the right to favor the products.
The equilibrium will not shift in any direction.
The equilibrium will shift to the forward reaction.

Solution
4.4(281 votes)

Answer

The equilibrium will shift to the left to favor the reactants. Explanation 1. Compare Reaction Quotient and Equilibrium Constant The reaction quotient Q = 525 is greater than the equilibrium constant K = 46.3. 2. Determine Direction of Shift When Q > K, the system shifts to the left to favor the reactants to reach equilibrium.

Explanation

1. Compare Reaction Quotient and Equilibrium Constant<br /> The reaction quotient $Q = 525$ is greater than the equilibrium constant $K = 46.3$.<br /><br />2. Determine Direction of Shift<br /> When $Q > K$, the system shifts to the left to favor the reactants to reach equilibrium.
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