5.3
The equilibrium constant ‘K’ is defined as the ratio of the concentration of products to the concentration of reactants, each raised to the power of their coefficients in the chemical reaction.
The reaction quotient Q has the same form as K but applies to the system at any point—not necessarily at equilibrium. It helps assess the system’s current state.
ΔrG is the Gibbs free energy change of a reaction under current conditions. The standard Gibbs free energy change, ΔrG°, refers to standard conditions: 1 molar concentration and 1 atmospheric pressure.
They are related by the equation:
ΔrG = ΔrG° + RT ln Q
At equilibrium, ΔrG is zero and Q = K, giving:
ΔrG° = –RT ln K
If ‘K’ is much greater than one and ΔrG° is negative, the reaction favors the products.
On the other hand, if ‘K’ is much less than one and ΔrG° is positive, it favors reactants.
When ‘K’ equals one, both reactants and products are present in significant amounts.
Reactions at equilibrium are characterized by equal rates of forward and reverse reactions. This state of equilibrium does not mean that the reactions…
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