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Common Ion effect in the ionization of Acid & base - Ionic Equilibrium Video Lecture | Physical Chemistry

FAQs on Common Ion effect in the ionization of Acid & base - Ionic Equilibrium Video Lecture - Physical Chemistry

1. What is the common ion effect in the ionization of acid and base?
Ans. The common ion effect refers to the suppression of the ionization of a weak acid or base when a strong electrolyte containing a common ion is added to the solution. The presence of a common ion reduces the ionization of the weak acid or base by shifting the equilibrium towards the non-ionized form.
2. How does the common ion effect affect the pH of a solution?
Ans. The common ion effect can affect the pH of a solution by reducing the concentration of the ionized form of a weak acid or base. This, in turn, reduces the concentration of H+ or OH- ions in the solution, leading to a decrease in pH for acidic solutions or an increase in pH for basic solutions.
3. Can you provide an example of the common ion effect in action?
Ans. Sure! Let's consider the ionization of acetic acid (CH3COOH) in water. When a strong electrolyte like sodium acetate (CH3COONa) is added to the solution, it introduces the common acetate ion (CH3COO-). This common ion reduces the ionization of acetic acid, resulting in a decrease in the concentration of H+ ions and a decrease in the overall acidity of the solution.
4. How can the common ion effect be used to control the ionization of acids and bases?
Ans. The common ion effect can be used to control the ionization of acids and bases by manipulating the concentration of the common ion in the solution. By adding a strong electrolyte containing the common ion, the ionization of the weak acid or base can be suppressed, allowing for precise control over the pH of the solution.
5. Does the common ion effect only apply to acids and bases?
Ans. No, the common ion effect can also apply to other types of equilibria, such as solubility equilibria. In this case, the presence of a common ion can reduce the solubility of a sparingly soluble salt by shifting the equilibrium towards the solid form. This effect is often used in chemical separations and precipitation reactions.
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