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Intermediate

The pH Scale, Neutralisation and Strong vs Weak Acids

4.4.2.4 The pH scale and neutralisation·4.4.2.6 Strong and weak acids (HT)

Aligned to the AQA 8462 specification

Level
Intermediate
Reading time
6 min
Published
2 July 2026
On this page
  1. 1.Acids, Alkalis and the Ions They Produce
  2. 2.The pH Scale
  3. 3.Neutralisation at the Ionic Level
  4. 4.Strong and Weak Acids (HT)
  5. 5.pH and Hydrogen Ion Concentration (HT)
  6. 6.Common Exam Mistakes

Key takeaways

  • Acids produce hydrogen ions (H⁺) in aqueous solution and alkalis contain hydroxide ions (OH⁻).
  • The pH scale runs from 0 to 14: below 7 is acidic, exactly 7 is neutral and above 7 is alkaline; pH is measured with universal indicator or a pH probe.
  • Neutralisation is the reaction of hydrogen ions with hydroxide ions to make water: H⁺ + OH⁻ → H₂O.
  • (Higher Tier) A strong acid is fully ionised in solution while a weak acid is only partially ionised; for the same concentration the stronger acid has the lower pH.
  • (Higher Tier) As pH falls by 1 unit, the hydrogen ion concentration increases by a factor of 10.

Acids, Alkalis and the Ions They Produce

What makes a solution acidic or alkaline comes down to which ions it releases in water. An acid produces hydrogen ions, , in aqueous solution. An alkali is a soluble base that produces hydroxide ions, , in aqueous solution.

For example, hydrochloric acid releases hydrogen ions, and sodium hydroxide releases hydroxide ions:

The more hydrogen ions there are, the more acidic the solution. The more hydroxide ions there are, the more alkaline it is.

An acid produces H⁺ ions in water; an alkali produces OH⁻ ions. These two ions are the reason acids and alkalis behave as they do.

Understanding that acidity is caused by ions is the foundation for the pH scale and for neutralisation.

The pH Scale

The pH scale measures how acidic or alkaline a solution is. It runs from 0 to 14:

pH rangeMeaningExample
0–6AcidicLemon juice, stomach acid
7NeutralPure water
8–14AlkalineSoap, oven cleaner

The lower the pH, the more acidic the solution (more ions). The higher the pH, the more alkaline the solution (more ions). A pH of exactly 7 is neutral.

pH can be measured in two ways:

  • Universal indicator (a wide-range indicator): added to the solution, it turns a colour matched against a chart to give an approximate pH — red for strongly acidic, green for neutral, purple for strongly alkaline.
  • pH probe / pH meter: an electronic sensor that gives a precise numerical pH reading.

Universal indicator gives an approximate pH from a colour; a pH probe gives an accurate numerical value. Use "approximate" when describing the indicator method.

Neutralisation at the Ionic Level

When an acid reacts with an alkali, the hydrogen ions from the acid react with the hydroxide ions from the alkali to form water. This is why the mixture becomes neutral: the ions that caused acidity and alkalinity are used up. The ionic equation for all acid–alkali neutralisations is:

This single equation lies underneath every acid–alkali reaction, whatever the salt formed. For example, when hydrochloric acid neutralises sodium hydroxide the full equation is , but the sodium and chloride ions are spectators, and the actual reaction is simply joining to make water.

Learn exactly. It is the ionic equation for neutralisation between any acid and any alkali, and it is a common exam recall mark.

As the reaction proceeds, the pH moves towards 7. When just enough alkali has been added to react with all the acid, the solution is neutral.

Strong and Weak Acids (HT)

(Higher Tier only) Strong and weak acids are assessed at Higher Tier.

Acids differ in how far they ionise (split into ions) in water. This is what "strong" and "weak" mean, and it is a different idea from "concentrated" and "dilute".

  • A strong acid is fully ionised in aqueous solution: essentially every molecule splits up to release its ions. Hydrochloric, nitric and sulfuric acids are strong.
  • A weak acid is only partially ionised: at any moment only a small fraction of the molecules have released their ions. Ethanoic, citric and carbonic acids are weak.

The reversible arrow () for the weak acid shows that its ionisation does not go to completion. Because a strong acid releases more ions, at the same concentration a strong acid has a lower pH than a weak acid.

(Higher Tier) Strength = degree of ionisation. Concentration = amount of acid dissolved per unit volume. A dilute strong acid and a concentrated weak acid are entirely possible.

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pH and Hydrogen Ion Concentration (HT)

(Higher Tier only) The relationship between pH and hydrogen ion concentration is assessed at Higher Tier.

The pH scale is linked to the hydrogen ion concentration. As the pH decreases by 1 unit, the hydrogen ion concentration increases by a factor of 10. So each step down the pH scale means ten times more ions.

Worked example. A solution at pH 3 is diluted so its pH rises to pH 5. How has the hydrogen ion concentration changed?

  1. The pH has increased by 2 units (from 3 to 5).
  2. Each 1-unit increase means the concentration falls by a factor of 10.
  3. Two units means a factor of .

So the hydrogen ion concentration is 100 times smaller at pH 5 than at pH 3.

pH changeFactor change in H⁺ concentration
Down 1 (e.g. 4 → 3)×10 more H⁺
Down 2 (e.g. 5 → 3)×100 more H⁺
Up 1 (e.g. 3 → 4)×10 fewer H⁺
Up 2 (e.g. 3 → 5)×100 fewer H⁺

(Higher Tier) Lower pH means more hydrogen ions. A drop of one whole pH unit is a tenfold rise in H⁺ concentration.

Common Exam Mistakes

1. Confusing strong with concentrated (HT)

Strength is about how far an acid ionises; concentration is about how much acid is dissolved. A concentrated weak acid still ionises only partially. Keep the two ideas separate.

2. Getting the pH direction backwards

Low pH is acidic (more H⁺), high pH is alkaline (more OH⁻). pH 2 is more acidic than pH 5, because more hydrogen ions means a lower pH.

3. Writing the wrong ions for acids and alkalis

Acids produce H⁺ ions; alkalis produce OH⁻ ions. Do not swap them. Neutralisation joins these two to make water.

4. Saying universal indicator gives an exact pH

Universal indicator gives only an approximate pH from its colour. For an accurate numerical value you need a pH probe or meter.

5. Forgetting the factor of 10 (HT)

Each 1-unit change in pH is a tenfold change in hydrogen ion concentration, not a change of 1. From pH 4 to pH 2 is two units, so ×100 more H⁺.

6. Missing the neutralisation ionic equation

Many acid–alkali questions ask for the ionic equation. It is always , regardless of which acid and alkali react.

Key terms

Acid
A substance that produces hydrogen ions (H⁺) when dissolved in water.
Alkali
A soluble base that produces hydroxide ions (OH⁻) when dissolved in water.
pH scale
A scale from 0 to 14 that measures how acidic or alkaline a solution is.
Strong acid (HT)
An acid that is fully ionised in aqueous solution, such as hydrochloric, nitric or sulfuric acid.
Weak acid (HT)
An acid that is only partially ionised in aqueous solution, such as ethanoic, citric or carbonic acid.

Frequently asked questions

Acids produce hydrogen ions (H⁺) in aqueous solution, which make it acidic. Alkalis produce hydroxide ions (OH⁻), which make it alkaline. The more H⁺ ions present, the lower the pH and the more acidic the solution.

A strong acid is fully ionised in aqueous solution, so nearly all its molecules split into ions, releasing many H⁺ ions. A weak acid is only partially ionised, so it releases far fewer H⁺ ions. For the same concentration a strong acid has a lower pH. This is Higher Tier.

No. Concentration is how much acid is dissolved in a given volume, while strength is how far the acid ionises. A weak acid can be concentrated and a strong acid can be dilute; they describe different things.

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