Organic Chemistry

Learn and apply Organic Chemistry in the published Chemistry course sequence.

  • GCE A-Level H2 Chemistry 9476-2027
Learning goals
  • Representations and Nomenclature (A Level Organic)
  • Isomerism and Stereochemistry (A Level Organic)
  • Alkanes and Free-radical Substitution
  • Alkenes and Electrophilic Addition
  • Halogenoalkanes: SN1/SN2 and Elimination
  • Alcohols: Oxidation and Dehydration
  • Organic Mechanisms: Curly Arrows, Electrophiles, Nucleophiles
  • Arenes and Electrophilic Substitution
  • Carbonyls: Nucleophilic Addition and Tests
  • Carboxylic Acids and Derivatives
  • Amines, Amides, Amino Acids
  • Polymers: Addition and Condensation

What You’ll Learn

  • Read structures, name compounds and distinguish constitutional, geometrical and optical isomers.
  • Use electron movement, reactive species and electronic effects to explain organic mechanisms.
  • Predict reactions from the functional group, reagent and essential conditions rather than from isolated memory cues.
  • Join reactions into synthesis routes and use qualitative evidence without claiming more than the observations support.
Choose the right course

This route is the H2 Chemistry (9476) organic sequence. H1 Chemistry (8873) has separately composed lessons that retain its specified reactions without importing H2 curly-arrow mechanisms, detailed stereochemistry or the complete H2 functional-group range. H3 Chemistry (9813) is a separate syllabus, not a successor course.

Prerequisites

  • Chemical Bonding: electronegativity, bond polarity, sigma and pi bonds, orbital overlap and intermolecular forces.
  • Acids and Bases: electron-pair donor/acceptor language and acid–base equilibria.
  • Energetics: bond-energy and stability comparisons.
  • Reaction Kinetics: activation energy, rate equations and mechanistic evidence.

Before synthesis work, be able to count carbon atoms from skeletal formulae, conserve charge and atoms, and identify the functional group that actually reacts.

Quick Reference

Evidence or conditionReaction familyFirst reasoning move
UV light with a halogenfree-radical substitutionuse homolytic fission and single-headed arrows
electron-rich C = C with Br₂ or HXelectrophilic additionpolarise the reagent and form the more stable intermediate where relevant
benzene with Cl₂/AlCl₃ or Br₂/AlBr₃electrophilic substitutiongenerate a stronger electrophile and restore aromaticity
warm aqueous nucleophile with a halogenoalkanenucleophilic substitutioncompare substrate, nucleophile and solvent for SN1/SN2
hot ethanolic base with a halogenoalkaneeliminationremove H⁺ and the leaving group to form C = C
aldehyde or ketone with HCNnucleophilic additionattack the δ + carbonyl carbon
acyl chloride with water, alcohol or ammonianucleophilic acyl substitutionaddition is followed by elimination

Use this sequence in every unfamiliar problem: functional group → reagent role → essential condition → reaction family → product → evidence or mechanism.

Hub Quiz and Structured Practice

Use both practice modes

Start with the Organic Chemistry hub quiz for retrieval across the full sequence. Then use structured Organic Chemistry practice for mechanisms, deductions and multi-step synthesis.

For each error, record whether it was a structure error, condition error, electron-flow error or evidence error. That classification tells you which lesson to revisit.

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.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

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.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

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.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

Check my progress

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

About 10 minutes

Answer 12 questions. You'll see your score, the answers and explanations at the end. Your result can count towards your course progress.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

Check again

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

About 10 minutes

Answer 12 questions. You'll see your score, the answers and explanations at the end. Your result can count towards your course progress.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

Review

Come back later to see whether your learning has lasted.

About 10 minutes

Answer 12 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.

Organic revision loop

For an efficient organic revision loop:

  1. redraw one reaction map from memory;
  2. explain one mechanism aloud from electron source to destination;
  3. solve one unfamiliar synthesis or deduction;
  4. check reagents, conditions, observations and stereochemical consequences separately.

Use Practical and Qualitative Analysis to connect functional-group reactions with the supplied Paper 4 evidence tables.