15.4
The relationship between the dissociation constants of a conjugate acid-base pair can be expressed quantitatively.
For a weak acid, HA, its acid dissociation constant, Ka, is expressed as the hydronium ion concentration times the A ion concentration divided by the concentration of HA.
The base dissociation constant, Kb, for its conjugate base, A ion, is expressed as the HA concentration times the hydroxide ion concentration divided by the concentration of the A ion.
If the expressions for Ka and Kb are multiplied, the resulting equation is the equilibrium expression for Kw. This equation shows that the Ka for a weak acid and the Kb for its conjugate base are inversely proportional. A stronger acid with a higher Ka always has a proportionately weaker conjugate base with a lower Kb and vice versa.
As the value of KW is constant, this equation can be used to calculate Ka or Kb of a conjugate acid-base pair if either one of them is known. For example, if the Kb for a base is 1 × 10−6, then the Ka for its conjugate acid can be calculated to be 1 × 10−8.
The relationship between Ka, Kb, and KW can also be expressed in terms of their negative logarithms, pKa, pKb, and pKW.
For the equatio
Brønsted-Lowry acid-base chemistry is the transfer of protons; thus, logic suggests a relation between the relative strengths of conjugate acid-base p…
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