The Mole Concept and Stoichiometry

Learn and apply The Mole Concept and Stoichiometry in the published Chemistry course sequence.

  • GCE A-Level H1 Chemistry 8873-2027
Learning goals
  • define the terms relative atomic, isotopic, molecular and formula mass
  • define the term mole in terms of the Avogadro constant
  • calculate the relative atomic mass of an element given the relative abundances of its isotopes
  • define the terms empirical and molecular formula
  • calculate empirical and molecular formulae using combustion data or composition by mass
  • write and/or construct balanced equations
  • describe and explain redox processes in terms of electron transfer and/or of changes in oxidation number (oxidation state) as exemplified by Fe3+/Fe2+ and MnO-4 /Mn2+
  • construct redox equations using the relevant half-equations
  • perform calculations, including use of the mole concept, involving: — reacting masses (from formulae and equations)
  • perform calculations, including use of the mole concept, involving: — volumes of gases (e.g. in the burning of hydrocarbons)
  • perform calculations, including use of the mole concept, involving: — volumes and concentrations of solutions [when performing calculations, candidates’ answers should reflect the number of significant figures given or asked for in the question]
  • deduce stoichiometric relationships from calculations such as those in (i)

H1 Stoichiometry learning outcomes

Stoichiometry is a connected conversion system, not a collection of unrelated formulae. Every successful solution identifies the chemical relationship, converts the given quantity to amount, applies the balanced-equation ratio and converts to the requested quantity.

Use this hub

Follow the seven lessons in order for first learning. During revision, classify each error as equation, conversion, ratio, unit, limiting quantity, redox balance or significant-figure failure.

What You’ll Learn

  • Define and use relative masses, the mole and the Avogadro constant while naming the entity being counted.
  • Deduce empirical and molecular formulae from percentage, mass and combustion evidence.
  • Use balanced equations to solve reacting-mass, limiting-reagent and stoichiometric-deduction problems.
  • Calculate solution amounts, concentrations, dilutions and titration results with correct volume units.
  • Use gaseous coefficient ratios only when volumes are compared at the same temperature and pressure.
  • Explain redox by electron transfer or oxidation-number change and construct charge-balanced half-equations.

The sequence begins with amount and formula composition, moves through reacting masses, solutions and titrations, then applies equation ratios to gases and electron transfer.

  • Mole and Avogadro Constant

    Convert among relative mass, molar mass, amount and specified entities without losing the entity or unit.

  • Empirical and Molecular Formulae

    Turn composition or combustion data into empirical and molecular formulae through a transparent mole-ratio method.

  • Reacting Masses and Limiting Reagent

    Use balanced equations to identify limiting reagents and calculate masses, yields and residual quantities.

  • Solution Concentration and Dilution

    Apply n = cV and dilution reasoning with reliable volume-unit discipline.

  • Titration Calculations

    Convert titres into amounts and concentrations using concordant data and equation ratios.

  • Reacting Gas Volumes

    Use gaseous coefficient ratios at common temperature and pressure without importing pV = nRT.

  • Redox and Half-equations

    Track electron transfer and oxidation numbers, then construct and combine charge-balanced half-equations.

Quick Reference

IdeaExam-ready reminder
Core routeconvert to moles → use balanced-equation ratio → convert to the requested quantity
ParticlesN = nNA; state atoms, molecules, ions or formula units
Mass amountn = m/M with M in g mol⁻¹
Solution amountn = cV with V in dm³
Dilutionc₁V₁ = c₂V₂ only when the same solute is diluted without reaction
Titrationmean concordant titre → amount → equation ratio → requested concentration
Gas ratioat common temperature and pressure, gaseous mole ratios equal volume ratios
Redoxoxidation loses electrons; reduction gains electrons
Half-equationsbalance atoms and charge, equalise electrons, add, then audit
Universal calculation workflow

Write the balanced relationship, convert the supplied quantity to moles, apply the stoichiometric ratio, convert to the requested quantity, then audit units and significant figures.

Practice and Check Your Understanding

  • H1 Stoichiometry Topic Practice

    Course-specific 8873 questions across amounts, formulae, reacting quantities, gases and redox equations.

  • H1 Stoichiometry: Check Your Understanding

    Check each calculation 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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Check what I know

Start here to see which parts you already know.

About 8 minutes

Answer 10 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 10 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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Check again

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

About 10 minutes

Answer 10 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 10 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.

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No completed attempts are saved yet.