14.6
The equilibrium constant expression is written as the molar concentrations of the products, C and D, over the reactants, A and B, at equilibrium, each raised to their respective stoichiometric coefficients. When solved, the expression is equal to the equilibrium constant, Kc.
An expression in the same form can also be written for the reactants and products at any concentration, and the calculated quantity is known as the reaction quotient, Qc.
Like Qc, the Qp expression can be written for gaseous reactions using partial pressures.
While K remains constant at a specific temperature irrespective of concentration, the value of Q changes as the reaction proceeds towards the products or the reactants.
The reaction quotient can be used to determine the direction a reaction will proceed in order to reach equilibrium.
At the start of a given reaction, if the concentration of the products is zero, the reaction quotient is zero.
Whenever the concentration of the reactants in the denominator is high, such that Q is smaller than K, the reaction will move to the right to synthesize more products until the system reaches equilibrium.
If the concentration of the reactants is zero, the reaction qu
The status of a reversible reaction is conveniently assessed by evaluating its reaction quotient (Q). For a reversible reaction described by m A + n B…
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