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The Common Ion Effect is a significant principle in chemistry that describes the decrease in solubility of a compound when an ion that is already part of the compound is added to the solution. This phenomenon is important in various contexts, such as water treatment, pharmaceutical formulation, and industrial processes.
Explains how an equilibrium system adjusts to external changes to maintain stability.
K Understanding
Determine the solubility of AgCl in a 0.1 M NaCl solution, given K of AgCl = 1.8 × 10.
Solution:
Identify the equilibrium: AgCl(s) ⇌ Ag⁺(aq) + Cl⁻(aq)
Write the K expression: K = [Ag⁺][Cl⁻] = 1.8 × 10
Analyse the Cl⁻ concentration: [Cl⁻] = 0.1 M (from NaCl) + x (from AgCl dissolution) Since x will be very small compared to 0.1 M, we can approximate: [Cl⁻] ≈ 0.1 M
Calculate [Ag⁺]: [Ag⁺] = K/[Cl⁻] = (1.8 × 10)/(0.1) = 1.8 × 10 M
Determine solubility: The molar solubility of AgCl equals [Ag⁺] = 1.8 × 10 M
Therefore, the solubility of AgCl in 0.1 M NaCl is 1.8 × 10 M, significantly lower than its solubility in pure water (1.3 × 10 M), demonstrating the common ion effect.
Important Tips: Always account for all sources of common ions when assessing solubility changes.
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