Quick Reference
Strength ≠ concentration
A dilute strong acid can have a lower pH than a concentrated weak acid; strength and amount are different concepts.
Logs invert intuition
A tenfold increase in [H⁺] changes pH by one unit.
Ka and pKa move opposite
Larger Ka means smaller pKa.
Equilibrium matters
Ka and Kb describe equilibrium behavior, not simply how many particles you started with.
1. The Five Quantities
| Quantity | Meaning | Core relation |
|---|---|---|
| [H⁺] | Hydrogen-ion concentration (with the usual introductory concentration approximation). | pH = −log₁₀[H⁺] |
| [OH⁻] | Hydroxide-ion concentration. | pOH = −log₁₀[OH⁻] |
| Ka | Acid dissociation equilibrium constant. | pKa = −log₁₀Ka |
| Kb | Base dissociation equilibrium constant. | pKb = −log₁₀Kb |
| Kw | Ionization product of water. | Kw = [H⁺][OH⁻] |
2. Why the pH Scale Is Logarithmic
A logarithmic scale compresses very large concentration ranges into manageable numbers. If [H⁺] changes from 1×10⁻³ M to 1×10⁻⁴ M, the pH changes from 3 to 4. A one-unit pH difference therefore corresponds to a tenfold change in the hydrogen-ion concentration under the same concentration-based convention.
3. Ka and pKa: Strength of an Acid
The exact thermodynamic expression uses activities and standard-state conventions; at the introductory level, concentration expressions are commonly used. IUPAC notes that Ka can span many orders of magnitude, which is why pKa is convenient.
At the same general conditions, larger Ka → stronger acid → smaller pKa. Do not read a larger pKa as “more acidic”; the logarithm reverses the numerical direction.
4. Kb and pKb: The Base Side
The same logic applies: larger Kb corresponds to greater base dissociation tendency under the same general conditions, while pKb is the negative base-10 logarithm of Kb.
5. Kw, pKw, pH and pOH
Water self-ionizes to a tiny extent, producing hydronium/hydrogen-ion and hydroxide species. In the common dilute-aqueous approximation, the product of the concentrations is represented by Kw. At 25 °C, the numerical value is approximately 1.0 × 10⁻¹⁴, leading to pKw ≈ 14 and therefore pH + pOH ≈ 14.
6. Strong vs Weak Does Not Mean Concentrated vs Dilute
Strong/weak describes the extent to which an acid or base dissociates in the stated medium. Concentrated/dilute describes how much solute is present per volume. A strong acid can be dilute. A weak acid can be concentrated. Those two axes must be kept separate in both conceptual and numerical questions.
7. Buffers: Why pH Can Resist Change
A buffer typically contains a weak acid and its conjugate base, or a weak base and its conjugate acid. When small amounts of acid or base are added, the buffer components consume much of the added material, reducing the resulting pH change compared with unbuffered water.
Frequently Asked Questions
PM&DC — Uniform Curriculum MDCAT-2025 (official PDF) · IUPAC Gold Book — acid dissociation constant · OpenStax — College Physics 2e: Physical Quantities, Units, Accuracy & Significant Figures
Scope: scientific explanations are written for student use and simplified where appropriate. Exact exam wording, syllabus scope and current administrative rules should be checked against PM&DC documents.