The acid-base reaction with Kc > 1 = HCL + HS⁻ ⇄ CL⁻ + H₂S
The acid-base reaction with Kc < 1 = H₂S + CL⁻ ⇄ HS⁻ + HCL
Understanding the relative amounts of reactants and products at equilibrium depends on the size of the equilibrium constant. While a smaller K value (less than 1) suggests that there are more reactants than products at equilibrium, a larger K value (greater than 1) implies that there are more products than reactants at equilibrium.
The equilibrium constant in which the ratio of the concentrations of all the chemicals involved in a chemical equilibrium reaction is denoted by Kc or Keq in chemistry. It is specifically applied in relation to the law of mass action.
Because of this, it is sometimes referred to as the equilibrium constant and more frequently as the mass action constant. The value of the equilibrium constant, in contrast to the equilibrium position, is solely dependent on temperature and is not affected by concentration or pressure.
The ratio of products to reactants for any reversible process in equilibrium will always equal Kc at a specific temperature.
Learn more about Equilibrium constant
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