Q.The ionization constant of chloroacetic acid is 1.35 × 10⁻³. What will be the pH of 0.1M acid and its 0.1M sodium salt solution?
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Weak Acid Ionization: From Intuition to Precision
Imagine you drop a spoonful of sugar into a glass of water. Some sugar dissolves, but a lot just sits at the bottom. Now imagine you drop a spoonful of salt — it all dissolves completely. Acids behave the same way. Some acids, like hydrochloric acid (HCl), dissolve completely in water — every single molecule breaks apart. Others, like acetic acid (vinegar), only partially break apart. Most of the acid molecules stay intact, and only a few actually ionize.
That's the core idea: weak acids are shy about giving away their hydrogen ion. They don't fully commit.
The Precise Statement
A weak acid (HA) in water establishes an equilibrium between the intact acid molecule and its ions:
HA(aq)+H2O(l)⇌H3O(aq)++A(aq)−
The double arrow (⇌) is the key. It tells you the reaction happens in both directions simultaneously. Some HA molecules break apart to form H3O+ and A−, while some H3O+ and A− recombine back into HA. At equilibrium, both processes happen at the same rate — so the concentrations stop changing.
For a weak acid, most of the acid remains as HA at equilibrium. Only a tiny fraction exists as ions. This is the opposite of a strong acid, where the forward reaction goes to completion (single arrow: →).
The Quantitative Measure: Ka
Every weak acid has a number that tells you exactly how "shy" it is — the acid dissociation constant, Ka:
Ka=[HA][H3O+][A−]
Ka=[HA][H3O+][A−]
The smaller the Ka, the weaker the acid. For acetic acid (vinegar), Ka≈1.8×10−5. That tiny number means the numerator (ions) is very small compared to the denominator (intact acid). For a strong acid like HCl, Ka is effectively infinite — the denominator is essentially zero because all the acid has ionized.
A Concrete Example
Suppose you dissolve 0.10 mol of acetic acid (CH3COOH) in 1 L of water. At equilibrium, you'll find:
- [CH3COOH]≈0.0998 M (almost all of it is still intact)
- [H3O+]≈0.0013 M (only about 1.3% has ionized)
- [CH3COO−]≈0.0013 M
| Species | Initial (M) | Change (M) | Equilibrium (M) |
|---------|-------------|------------|-----------------|
| CH3COOH | 0.10 | −x | 0.10−x |
| H3O+ | 0 | +x | x |
| CH3COO− | 0 | +x | x |
Plugging into Ka=0.10−xx2=1.8×10−5 and solving gives x≈0.0013 M.
Why This Matters …
Concept: Weak Acid Ionization — For a weak acid and its salt, the pH of the acid alone is found via the ionization equilibrium, while the pH of the salt solution is governed by the hydrolysis of the conjugate base.
Step 1: pH of 0.1 M chloroacetic acid
Let HA represent the acid. For HA⇌H++A−, with Ka=1.35×10−3 and initial concentration C=0.1 M. Since Ka is not very small, use the exact quadratic:
Ka=C−xx2, where x=[H+].
Solving: x2=1.35×10−3(0.1−x)
⇒x2+1.35×10−3x−1.35×10−4=0
x=2−1.35×10−3+(1.35×10−3)2+4×1.35×10−4
x≈0.0111 M.
Thus, pH=−log(1.16×10−2)=1.94.
Step 2: pH of 0.1 M sodium salt (NaA) solution
The salt NaA fully dissociates, giving A− (conjugate base) at 0.1 M. A− hydrolyzes: A−+H2O⇌HA+OH−. …
For 0.1 M chloroacetic acid (Ka=1.35×10−3) the pH=1.94; for its 0.1 M sodium salt the ion hydrolyses to give pH=7.94.
Part 1 - The acid (0.1 M chloroacetic acid)
Chloroacetic acid is a weak acid: ClCH2COOH⇌ClCH2COO−+H+.
[H+]=Kac=(1.35×10−3)(0.1)=1.35×10−4=1.16×10−2 M
pH=−log(1.16×10−2)=1.94
Part 2 - The sodium salt (0.1 M sodium chloroacetate)
The salt of a weak acid and strong base; the anion hydrolyses:
ClCH2COO−+H2O⇌ClCH2COOH+OH−
Hydrolysis constant
Kh=KaKw=1.35×10−31.0×10−14=7.41×10−12 …
- CBSE 2026Set ANNUAL1 markMCQQ.Ostwald's dilution law is not obeyed by :(a) CH3COOH(b) NH4OH(c) HCl(d) H2CO3
›Reveal solutionSolution
Ostwald's dilution law applies only to weak electrolytes; HCl, being a strong electrolyte, does not obey it.
Ostwald's dilution law gives the relationship between the dissociation (ionisation) constant Ka of a weak electrolyte, its degree of dissociation α, and its concentration C:
Ka=1−αCα2
This law assumes that the electrolyte is only partially/weakly dissociated in solution, so that an equilibrium exists between the undissociated molecules and the ions, and α can meaningfully vary with dilution. CH3COOH, NH4OH and H2CO3 are all weak electrolytes that only partially ionise in water, so they obey this law.
…
- CBSE 2026Set ANNUAL1 markMCQQ.The heat of neutralization of a strong acid and strong base is(a) 13.7 kcal(b) Greater than 13.7 kcal(c) Less than 13.7 kcal(d) None of these
›Reveal solutionSolution
Heat of neutralisation of a strong acid + strong base ≈ 13.7 kcal (57.1 kJ) per mole.
Strong acids and strong bases are completely ionised, so neutralisation is essentially H+ + OH- → H2O. This releases a constant amount of energy, about 57.1 kJ (≈ 13.7 kcal) per mole of water formed, regardless of which strong …
- CBSE 2026Set ANNUAL1 markMCQQ.An aqueous solution of NH4Cl is(a) Acidic(b) Alkaline(c) Neutral(d) None of these
›Reveal solutionSolution
NH4Cl solution is acidic.
NH4Cl is formed from a strong acid (HCl) and a weak base (NH4OH). In water the cation hydrolyses: NH4+ + H2O ⇌ NH4OH + H+, releasing H+ …
- CBSE 2025Set ANNUAL1 markMCQQ.Degree of dissociation of 0.1 N CH3COOH is (Kacid = 1 x 10^-5)(a) 10^-5(b) 10^-4(c) 10^-3(d) 10^-2
›Reveal solutionSolution
0.1 N acetic acid (Ka = 1x10^-5) dissociates to the extent of α = 10^-2 (1%).
For a weak monobasic acid, the degree of dissociation (for small α, using the approximation valid when α << 1) is:
α = √(Ka / C)
…
- CBSE 2024Set ANNUAL1 markMCQQ.The hydrogen ion concentration of a weak acid of dissociation constant Ka and concentration C is equal to(a) √(Ka/C)(b) C/Ka(c) KaC(d) √(KaC)
›Reveal solutionSolution
[H⁺] of a weak acid = √(Ka·C).
For a weak acid HA⇌H++A− with initial concentration C and degree of dissociation α (small, so 1−α≈1):
…
- CBSE 2022Set ANNUAL1 markMCQQ.Which of the following is weak electrolytic?(a) NaCl(b) HCl(c) CH3COOH(d) K2SO4
›Reveal solutionSolution
Acetic acid ionises partially, so it is the weak electrolyte — option (c).
From NCERT Class 11 Chemistry (Equilibrium):
- NaCl, K₂SO₄: strong (ionic) electrolytes — fully dissociated.
- HCl: strong acid — essentially completely ionised. …
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