Theories of Acids and Bases

Learn and apply Theories of Acids and Bases in the published Chemistry course sequence.

  • GCE A-Level H1 Chemistry 8873-2027
Learning goals
  • show understanding of, and apply the Arrhenius theory of acids and bases
  • show understanding of, and apply the Brønsted-Lowry theory of acids and bases, including the concept of conjugate acids and conjugate bases
  • explain qualitatively the differences in behaviour between strong and weak acids and bases in terms of the extent of dissociation
  • explain the terms pH; Ka; Kb; Kw [the relationship Kw = KaKb is not required]
  • calculate [H+(aq)] and pH values for strong acids and strong bases
  • explain the choice of suitable indicators for acid-base titrations, given appropriate data, in terms of the strengths of the acids and bases
  • — explain how buffer solutions control pH
  • — describe and explain the uses of buffer solutions including the role of CO32− /HCO3− in maintaining pH in oceans, and how the rapid increase in atmospheric carbon dioxide gas contributed to ocean acidification

H1 Theories of Acids and Bases learning outcomes

H1 acids and bases joins theory, strong-solution calculations, indicator choice and qualitative buffer reasoning into one 8873 sequence. Follow the proton or electron evidence first, then calculate only after the reacting amounts and ion stoichiometry are clear.

Use this hub

Follow all six lessons for first learning. During revision, work out whether you need more help with model language, proton bookkeeping, logarithmic calculation, indicator evidence or equilibrium reasoning.

What You’ll Learn

  • Apply Arrhenius and Brønsted–Lowry theories using the evidence and vocabulary required by each model.
  • Identify conjugate acid–base pairs and demonstrate amphiprotic behaviour with equations.
  • Distinguish acid or base strength from concentration and explain the meanings of pH, Ka, Kb and Kw.
  • Calculate pH for strong acids and strong bases, including ion stoichiometry and dilution where required.
  • Choose acid–base indicators from acid/base strengths and supplied transition-range data.
  • Explain qualitative buffer action and apply carbonate equilibria to ocean buffering and ocean acidification.

The sequence moves from acid–base models and conjugate pairs to strength, strong-solution pH, indicators and buffers.

  • Arrhenius and Brønsted–Lowry Theories

    Choose the correct acid–base model and justify proton donation or acceptance from an equation.

  • Conjugate Acid–Base Pairs

    Identify conjugate pairs and prove amphiprotic behaviour by tracking one proton and one charge unit.

  • Strong and Weak Acids and Bases

    Separate strength from concentration and interpret pH, Ka, Kb and Kw without importing H2 calculations.

  • pH of Strong Acids and Strong Bases

    Calculate strong-acid and strong-base pH after establishing ion stoichiometry and concentration.

  • Choosing Acid–Base Indicators

    Select indicators from acid/base strengths and supplied transition ranges.

  • Buffer Solutions and Ocean Acidification

    Explain qualitative buffer action, capacity and the carbonate chemistry of ocean acidification.

Quick Reference

IdeaExam-ready reminder
Arrheniusaqueous acid produces H⁺; aqueous base produces OH⁻
Brønsted–Lowryacid donates H⁺; base accepts H⁺
Conjugate pairmembers differ by exactly one H⁺ and their charges differ by one
Strongessentially complete ionisation in water; not the same as concentrated
Strong-acid pHfind [H⁺] after any reaction or dilution, then use pH = −lg[H⁺]
Strong-base pHfind [OH⁻], then use Kw or pOH and pH + pOH = 14 at 25 °C
Indicator choicethe transition range must lie within the rapid pH change near equivalence
Bufferconjugate base removes added H⁺; weak acid removes added OH⁻; capacity is finite
Ocean acidificationmore dissolved CO₂ raises [H⁺], lowers pH and consumes CO₃²⁻
Acid–base workflow

Name the model, identify the transferred species or relevant ions, complete any stoichiometry, then apply the equilibrium or logarithmic relationship allowed by the H1 scope.

Practice and Check Your Understanding

  • H1 Acids and Bases Topic Practice

    Course-specific 8873 questions across theory, strong-solution pH, indicators and qualitative buffer action.

  • H1 Acids and Bases: Check Your Understanding

    Check each reasoning step, read the targeted feedback, then try a fresh question independently.

Practise

Work through questions with marking and feedback as you learn.

About 10 minutes

Questions are picked at random each time you start. You'll see the answer after each question. It's for practice only and doesn't count towards mastery.

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Practise after feedback

After a check, practise the skills it showed you need to work on.

About 10 minutes

Questions are picked at random each time you start. You'll see the answer after each question. It's for practice only and doesn't count towards mastery.

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No completed attempts are saved yet.

Check what I know

Start here to see which parts you already know.

About 8 minutes

Answer 9 short questions. It shows what to work on next and doesn't count towards mastery.

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Check my progress

When you feel ready, answer on your own to show what you can do.

About 10 minutes

Answer 9 questions. You'll see your score, the answers and explanations at the end. Your result can count towards your course progress.

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No completed attempts are saved yet.

Check again

After practising what your progress check showed, check those skills again.

About 10 minutes

Answer 9 questions. You'll see your score, the answers and explanations at the end. Your result can count towards your course progress.

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No completed attempts are saved yet.

Review

Come back later to see whether your learning has lasted.

About 10 minutes

Answer 9 questions. You'll see your score, the answers and explanations at the end. A scheduled review counts towards your course progress only when it is due.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.