Q.The ionization constant of dimethylamine is 5.4 × 10⁻⁴. Calculate its degree of ionization in its 0.02M solution. What percentage of dimethylamine is ionized if the solution is also 0.1M in NaOH?
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Start your 14-day free trial to unlock the full solution →Dimethylamine is a weak base that ionizes in water; its degree of ionization depends on concentration and is suppressed by the common-ion effect when NaOH is added. In pure 0.02 M solution: (15.8%); in the presence of 0.1 M NaOH: (0.54%).
Understanding Weak Base Ionization
Dimethylamine, , is a weak base. When dissolved in water, it accepts a proton from water molecules:
The equilibrium constant for this reaction is the base ionization constant . The degree of ionization tells us what fraction of the original base molecules have accepted a proton at equilibrium. For a weak base, is small but not negligible, and it depends on both and the initial concentration.
When we add a strong base like NaOH, which completely dissociates to give ions, we flood the solution with the product of our equilibrium. By Le Chatelier's principle, this shifts the equilibrium backward, suppressing the ionization of dimethylamine—the common-ion effect.
Part 1: Degree of Ionization in Pure 0.02 M Solution
1. Set up the equilibrium expression
Let the initial concentration be M and the degree of ionization be . At equilibrium:
- : concentration =
- : concentration =
- : concentration =
The base ionization constant is:
2. Check if we can use the approximation
For weak electrolytes, if , we can approximate . Let's check: if , then .
Since is not negligible compared to 1, we should solve the exact equation.
3. Solve the quadratic equation
Dividing through by 0.02:
Using the quadratic formula:
Taking the positive root:
Percentage ionization = (the quick approximation gives 0.164 — the exact quadratic value is the better one here because is not small)
When is relatively large (here ) and concentration is low, the approximation breaks down. Always check: if , solve the full quadratic.
Part 2: Degree of Ionization in 0.1 M NaOH
4. Account for the common ion
NaOH is a strong base that dissociates completely:
So the solution already contains M from NaOH before any dimethylamine ionizes. …
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