Pearson Edexcel · International A-Level
Chemistry · Química
Papers, samples and curriculum documents for this course. · Papers, amostras e documentos curriculares deste curso.
Qualification code · Código da qualificação: XCH11 / YCH11
Recent past papers · Provas passadas recentes
77 paper and mark-scheme pairs · pares de prova e gabarito
Browse papers and mark schemes · Consultar provas e esquemas de correção →Handouts, exercise sheets and slides
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Handouts · Material de apoio · A-Level Chemistry · Química do A-Level (37)
- 1. Atomic structure · 1. Estrutura atômica
- 2. Atoms, molecules and stoichiometry · 2. Átomos, moléculas e estequiometria
- 3. Chemical bonding · 3. Ligação química
- 4. States of matter · 4. Estados da matéria
- 5. Chemical energetics · 5. Energetica química
- 6. Electrochemistry · 6. Eletroquímica
- 7. Equilibria · 7. Equilíbrios
- 8. Reaction kinetics · 8. Cinética de reação
- 9. The Periodic Table: chemical periodicity · 9. Tabela Periódica: periodicidade química
- 10. Group 2 · 10. Grupo 2
- 11. Group 17 · 11. Grupo 17
- 12. Nitrogen and sulfur · 12. Nitrogênio e enxofre
- 13. An introduction to AS Level organic chemistry · 13. Introdução à Química Orgânica Nível AS
- 14. Hydrocarbons · 14. Hidrocarbonetos
- 15. Halogen compounds · 15. Compostos de halogênio
- 16. Hydroxy compounds · 16. Compostos hidroxilados
- 17. Carbonyl compounds · 17. Compostos carbonila
- 18. Carboxylic acids and derivatives · 18. Ácidos carboxílicos e derivados
- 19. Nitrogen compounds · 19. Compostos nitrogenados
- 20. Polymerisation · 20. Polimerização
- 21. Organic synthesis · 21. Síntese orgânica
- 22. Analytical techniques · 22. Técnicas analíticas
- 23. Chemical energetics · 23. Energetica química
- 24. Electrochemistry · 24. Eletroquímica
- 25. Equilibria · 25. Equilíbrios
- 26. Reaction kinetics · 26. Cinética de reação
- 27. Group 2 · 27. Grupo 2
- 28. Chemistry of transition elements · 28. Química de elementos de transição
- 29. An introduction to A Level organic chemistry · 29. Introdução à Química Orgânica Nível A
- 30. Hydrocarbons · 30. Hidrocarbonetos
- 31. Halogen compounds · 31. Compostos de halogênio
- 32. Hydroxy compounds · 32. Compostos hidroxilados
- 33. Carboxylic acids and derivatives · 33. Ácidos carboxílicos e derivados
- 34. Nitrogen compounds · 34. Compostos nitrogenados
- 35. Polymerisation · 35. Polimerização
- 36. Organic synthesis · 36. Síntese orgânica
- 37. Analytical techniques · 37. Técnicas analíticas
Exercise sheets · Folhas de exercícios · A-Level Chemistry · Química do A-Level (90)
- 1.1 Particles in the atom and atomic radius · 1.1 Parteículas no átomo e raio atômico
- 1.2 Isotopes · 1.2 Isótopos
- 1.3 Electrons, energy levels and atomic orbitals · 1.3 Elétrons, níveis de energia e orbitais atômicos
- 1.4 Ionisation energy · 1.4 Energia de ionização
- 2.1 Relative masses of atoms and molecules · 2.1 Massas relativas de átomos e moléculas
- 2.2 The mole and the Avogadro constant · 2.2 O mol e a constante de Avogadro
- 2.3 Formulas · 2.3 Fórmulas
- 2.4 Reacting masses and volumes (of solutions and gases) · 2.4 Massas e volumes reagidos (de soluções e gases)
- 3.1 Electronegativity and bonding · 3.1 Eletronegatividade e ligação
- 3.2 Ionic bonding · 3.2 Ligação iônica
- 3.3 Metallic bonding · 3.3 Ligação metálica
- 3.4 Covalent bonding and coordinate (dative covalent) bonding · 3.4 Ligação covalente e ligação coordenada (covalente dative)
- 3.5 Shapes of molecules · 3.5 Formas moleculares
- 3.6 Intermolecular forces, electronegativity and bond properties · 3.6 Forças intermoleculares, eletronegatividade e propriedades das ligações
- 3.7 Dot-and-cross diagrams · 3.7 Diagramas de pontos e cruzes
- 4.1 The gaseous state: ideal and real gases and pV = nRT · 4.1 Estado gasoso: gases ideais e reais e pV = nRT
- 4.2 Bonding and structure · 4.2 Ligações e estrutura
- 5.1 Enthalpy change, ΔH · 5.1 Variação de entalpia, ΔH
- 5.2 Hess’s law · 5.2 Lei de Hess
- 6.1 Redox processes: electron transfer and changes in oxidation number (oxidation state) · 6.1 Processos redox: transferência de elétrons e alterações no número de oxidação (estado de oxidação)
- 7.1 Chemical equilibria: reversible reactions, dynamic equilibrium · 7.1 Equilíbrios químicos: reações reversíveis, equilíbrio dinâmico
- 7.2 Brønsted–Lowry theory of acids and bases · 7.2 Teoria de Brønsted–Lowry de ácidos e bases
- 8.1 Rate of reaction · 8.1 Taxa de reação
- 8.2 Effect of temperature on reaction rates and the concept of activation energy · 8.2 Efeito da temperatura nas taxas de reação e o conceito de energia de ativação
- 8.3 Homogeneous and heterogeneous catalysts · 8.3 Catalisadores homogêneos e heterogêneos
- 9.1 Periodicity of physical properties of the elements in Period 3 · 9.1 Periodicidade de propriedades físicas dos elementos no Período 3
- 9.2 Periodicity of chemical properties of the elements in Period 3 · 9.2 Periodicidade de propriedades químicas dos elementos no Período 3
- 9.3 Chemical periodicity of other elements · 9.3 Periodicidade química de outros elementos
- 10.1 Similarities and trends in the properties of the Group 2 metals, magnesium to barium, and their compounds · 10.1 Semelhanças e tendências nas propriedades dos metais do Grupo 2, magnésio a bário, e seus compostos
- 11.1 Physical properties of the Group 17 elements · 11.1 Propriedades físicas dos elementos do Grupo 17
- 11.2 The chemical properties of the halogen elements and the hydrogen halides · 11.2 Propriedades químicas dos elementos halogênios e dos hidretos halogênicos
- 11.3 Some reactions of the halide ions · 11.3 Algumas reações dos íons haluretos
- 11.4 The reactions of chlorine · 11.4 As reações do cloro
- 12.1 Nitrogen and sulfur · 12.1 Nitrogênio e enxofre
- 13.1 Formulas, functional groups and the naming of organic compounds · 13.1 Fórmulas, grupos funcionais e nomenclatura de compostos orgânicos
- 13.2 Characteristic organic reactions · 13.2 Reações orgânicas características
- 13.3 Shapes of organic molecules; σ and π bonds · 13.3 Formas de moléculas orgânicas; ligações σ e π
- 13.4 Isomerism: structural isomerism and stereoisomerism · 13.4 Isomerismo: isomerismo estrutural e estereoisomerismo
- 14.1 Alkanes · 14.1 Alcanos
- 14.2 Alkenes · 14.2 Alcenos
- 15.1 Halogenoalkanes · 15.1 Haloalcanos
- 16.1 Alcohols · 16.1 Álcoois
- 17.1 Aldehydes and ketones · 17.1 Aldeídos e cetonas
- 18.1 Carboxylic acids · 18.1 Ácidos carboxílicos
- 18.2 Esters · 18.2 Ésteres
- 19.1 Primary amines · 19.1 Aminas primárias
- 19.2 Nitriles and hydroxynitriles · 19.2 Nitrilos e hidroxonitrilos
- 20.1 Addition polymerisation · 20.1 Polimerização por adição
- 21.1 Organic synthesis · 21.1 Síntese orgânica
- 22.1 Infrared spectroscopy · 22.1 Espectroscopia Infravermelha
- 22.2 Mass spectrometry · 22.2 Espectrometria de massas
- 23.1 Lattice energy and Born-Haber cycles · 23.1 Energia reticular e ciclos de Born-Haber
- 23.2 Enthalpies of solution and hydration · 23.2 Entalpias de solução e hidratação
- 23.3 Entropy change, ΔS · 23.3 Variação de entropia, ΔS
- 23.4 Gibbs free energy change, ΔG · 23.4 Variação de energia livre de Gibbs, ΔG
- 24.1 Electrolysis · 24.1 Eletrólise
- 24.2 Standard electrode potentials E⦵, standard cell potentials E⦵cell and the Nernst equation · 24.2 Potenciais eletrodos padrão E⦵, potenciais de célula padrão E⦵cell e equação de Nernst
- 25.1 Acids and bases · 25.1 Ácidos e bases
- 25.2 Partition coefficients · 25.2 Coeficientes de partição
- 26.1 Simple rate equations, orders of reaction and rate constants · 26.1 Equações de taxa simples, ordens de reação e constantes de taxa
- 26.2 Homogeneous and heterogeneous catalysts · 26.2 Catalisadores homogêneos e heterogêneos
- 27.1 Similarities and trends in the properties of the Group 2 metals, magnesium to barium, and their compounds · 27.1 Semelhanças e tendências nas propriedades dos metais do Grupo 2, magnésio a bário, e seus compostos
- 28.1 General physical and chemical properties of the first row of transition elements, titanium to copper · 28.1 Propriedades físicas e químicas gerais da primeira série de elementos de transição, titânio a cobre
- 28.2 General characteristic chemical properties of the first set of transition elements, titanium to copper · 28.2 Propriedades químicas características gerais do primeiro conjunto de elementos de transição, titânio a cobre
- 28.3 Colour of complexes · 28.3 Cor de complexos
- 28.4 Stereoisomerism in transition element complexes · 28.4 Estereoisomerismo em complexos de elementos de transição
- 28.5 Stability constants, Kstab · 28.5 Constantes de estabilidade, Kstab
- 29.1 Formulas, functional groups and the naming of organic compounds · 29.1 Fórmulas, grupos funcionais e nomenclatura de compostos orgânicos
- 29.2 Characteristic organic reactions · 29.2 Reações orgânicas características
- 29.3 Shapes of aromatic organic molecules; σ and π bonds · 29.3 Formas de moléculas orgânicas aromáticas; ligações σ e π
- 29.4 Isomerism: optical · 29.4 Isomerismo: óptico
- 30.1 Arenes · 30.1 Arenos
- 31.1 Halogen compounds · 31.1 Compostos de halogênio
- 32.1 Alcohols · 32.1 Álcoois
- 32.2 Phenol · 32.2 Fenol
- 33.1 Carboxylic acids · 33.1 Ácidos carboxílicos
- 33.2 Esters · 33.2 Ésteres
- 33.3 Acyl chlorides · 33.3 Cloreto de acila
- 34.1 Primary and secondary amines · 34.1 Aminas primárias e secundárias
- 34.2 Phenylamine and azo compounds · 34.2 Fenilamina e compostos azo
- 34.3 Amides · 34.3 Amidas
- 34.4 Amino acids · 34.4 Aminoácidos
- 35.1 Condensation polymerisation · 35.1 Polimerização por condensação
- 35.2 Predicting the type of polymerisation · 35.2 Prevendo o tipo de polimerização
- 35.3 Degradable polymers · 35.3 Polímeros degradáveis
- 36.1 Organic synthesis · 36.1 Síntese orgânica
- 37.1 Thin-layer chromatography · 37.1 Cromatografia em camada fina
- 37.2 Gas/liquid chromatography · 37.2 Cromatografia gasosa/líquida
- 37.3 Carbon-13 NMR spectroscopy · 37.3 Espectroscopia NMR de Carbono-13
- 37.4 Proton (1H) NMR spectroscopy · 37.4 Espectroscopia NMR de Próton (1H)
Presentation slides · Slides de apresentação · A-Level Chemistry · Química do A-Level (37)
- 1. Atomic structure · 1. Estrutura atômica
- 2. Atoms, molecules and stoichiometry · 2. Átomos, moléculas e estequiometria
- 3. Chemical bonding · 3. Ligação química
- 4. States of matter · 4. Estados da matéria
- 5. Chemical energetics · 5. Energetica química
- 6. Electrochemistry · 6. Eletroquímica
- 7. Equilibria · 7. Equilíbrios
- 8. Reaction kinetics · 8. Cinética de reação
- 9. The Periodic Table: chemical periodicity · 9. Tabela Periódica: periodicidade química
- 10. Group 2 · 10. Grupo 2
- 11. Group 17 · 11. Grupo 17
- 12. Nitrogen and sulfur · 12. Nitrogênio e enxofre
- 13. An introduction to AS Level organic chemistry · 13. Introdução à Química Orgânica Nível AS
- 14. Hydrocarbons · 14. Hidrocarbonetos
- 15. Halogen compounds · 15. Compostos de halogênio
- 16. Hydroxy compounds · 16. Compostos hidroxilados
- 17. Carbonyl compounds · 17. Compostos carbonila
- 18. Carboxylic acids and derivatives · 18. Ácidos carboxílicos e derivados
- 19. Nitrogen compounds · 19. Compostos nitrogenados
- 20. Polymerisation · 20. Polimerização
- 21. Organic synthesis · 21. Síntese orgânica
- 22. Analytical techniques · 22. Técnicas analíticas
- 23. Chemical energetics · 23. Energetica química
- 24. Electrochemistry · 24. Eletroquímica
- 25. Equilibria · 25. Equilíbrios
- 26. Reaction kinetics · 26. Cinética de reação
- 27. Group 2 · 27. Grupo 2
- 28. Chemistry of transition elements · 28. Química de elementos de transição
- 29. An introduction to A Level organic chemistry · 29. Introdução à Química Orgânica Nível A
- 30. Hydrocarbons · 30. Hidrocarbonetos
- 31. Halogen compounds · 31. Compostos de halogênio
- 32. Hydroxy compounds · 32. Compostos hidroxilados
- 33. Carboxylic acids and derivatives · 33. Ácidos carboxílicos e derivados
- 34. Nitrogen compounds · 34. Compostos nitrogenados
- 35. Polymerisation · 35. Polimerização
- 36. Organic synthesis · 36. Síntese orgânica
- 37. Analytical techniques · 37. Técnicas analíticas
Course units and learning goals · Unidades do curso e objetivos de aprendizagem
These lessons teach selected course objectives. Check the remaining coverage gaps; the material is not a complete preparation programme. · Estas aulas ensinam objetivos selecionados do curso. Verifique as lacunas de cobertura restantes; o material não é um programa completo de preparação.
1 · Structure, Bonding and Introduction to Organic Chemistry
- The SI unit of amount of substance.
- Calculate the amount available for each reactant and divide by its coefficient. The smaller ratio limits the reaction. Use that reactant to calculate the maximum product before comparing actual yield.
- Write the balanced equation first, include units in molar masses, then convert each given mass or solution volume into amount. Convert cubic centimetres to cubic decimetres before using concentration in moles per cubic decimetre.
- Attraction between oppositely charged ions.
- To explain a bulk property, name the structure, particles, forces and mobile charge carriers. Simple molecular substances can have strong covalent bonds inside molecules but weak attractions between molecules.
- Compare substances using evidence such as melting point, conductivity when solid and molten, and solubility. One property rarely proves a structure; use a pattern of evidence.
- An atom group determining characteristic reactions.
- Distinguish addition, substitution, oxidation and polymerization by tracing bonds before and after reaction. Conditions and reagents belong to the reaction arrow; they are not interchangeable labels.
- Draw displayed or structural formulae with the correct number of bonds at each carbon. Use a carbon count to check a proposed synthesis. At advanced level, track reagents and conditions through multistep routes.
- mole
- The SI unit of amount of substance
- limiting reagent
- The reactant that limits the possible product amount
- ionic bond · ligação iônica
- Attraction between oppositely charged ions
- delocalized electron
- An electron not confined to one atom or bond
- functional group
- An atom group determining characteristic reactions
- isomer
- A compound sharing a formula but differing in structure
2 · Energetics, Group Chemistry, Halogenoalkanes and Alcohols
- Transferring energy to the surroundings.
- Use energy transferred = mass × specific heat capacity × temperature change. Convert joules to kilojoules before dividing by reaction amount. An exothermic molar enthalpy change has a negative sign.
- Use insulation and a lid, measure starting temperatures consistently, stir, and record a temperature-time series. Estimate the reaction temperature from an appropriate extrapolation rather than ignoring cooling during measurement.
- Loss of electrons.
- Predict products using the specified electrolyte and electrode material. In an aqueous solution, hydrogen or oxygen may form because water-related species compete. Molten salts contain only the ions of the salt.
- Use a low-voltage direct-current supply, approved electrodes, and the school risk assessment. Collect gases only by an approved method. Keep chlorine demonstrations teacher-controlled; do not ask students to generate hazardous gases independently.
- The energy barrier for a reaction pathway.
- A product-time graph has a steeper gradient where rate is larger. A tangent estimates instantaneous rate; a secant gives average rate over an interval. The final plateau reflects the total collected product under the stated conditions.
- For gas production, check apparatus for leaks, start timing consistently and record volume at regular intervals. Keep concentration, reactant amount and surface area controlled when changing temperature.
- An atom group determining characteristic reactions.
- Distinguish addition, substitution, oxidation and polymerization by tracing bonds before and after reaction. Conditions and reagents belong to the reaction arrow; they are not interchangeable labels.
- Draw displayed or structural formulae with the correct number of bonds at each carbon. Use a carbon count to check a proposed synthesis. At advanced level, track reagents and conditions through multistep routes.
- exothermic · exotérmica
- Transferring energy to the surroundings
- enthalpy change
- Heat change at constant pressure for a stated process
- oxidation
- Loss of electrons
- reduction · redução
- Gain of electrons
- activation energy
- The energy barrier for a reaction pathway
- rate · taxa
- Change in a measured quantity per unit time
- functional group
- An atom group determining characteristic reactions
- isomer
- A compound sharing a formula but differing in structure
3 · Practical Skills in Chemistry I
- The volume delivered between two burette readings.
- Calculate the known amount first, apply the stoichiometric ratio, then divide by the unknown solution volume in cubic decimetres. Use concordant titres as required by the school method and report the accepted values.
- Rinse the burette with its solution and the pipette with the solution it transfers. Rinse the flask with distilled water. Add titrant slowly near the endpoint, swirl, and read the meniscus at eye level. Use a white tile and appropriate eye protection.
- Separation using two phases.
- Rf is distance travelled by a component divided by distance travelled by the solvent front, both measured from the baseline. Compare under the same conditions; an Rf value alone does not establish identity across different solvents.
- Use pencil for the baseline, keep spots above solvent level, mark the solvent front promptly, and run known references alongside unknowns. For ion tests, use clean equipment and separate aliquots to avoid carrying reagents into later tests.
- A quantified limitation on a measured result.
- For a product or quotient, adding fractional uncertainties is a common maximum-uncertainty approximation. For a difference, add absolute uncertainties. A nonzero intercept can reveal an offset or an incomplete model.
- Show units on axes and choose a sensible scale. Plot uncertainty bars where justified, draw a best-fit line rather than joining every point, and estimate steepest and shallowest plausible gradients when the course method calls for them.
- titre
- The volume delivered between two burette readings
- equivalence point · ponto de equivalência
- The point of stoichiometric reaction completion
- chromatography
- Separation using two phases
- Rf
- Spot distance divided by solvent-front distance
- uncertainty
- A quantified limitation on a measured result
- systematic error
- A consistent measurement bias
4 · Rates, Equilibria and Further Organic Chemistry
- The energy barrier for a reaction pathway.
- A product-time graph has a steeper gradient where rate is larger. A tangent estimates instantaneous rate; a secant gives average rate over an interval. The final plateau reflects the total collected product under the stated conditions.
- For gas production, check apparatus for leaks, start timing consistently and record volume at regular intervals. Keep concentration, reactant amount and surface area controlled when changing temperature.
- A state with equal forward and reverse reaction rates.
- A concentration or pressure change disturbs the balance. The system responds toward a new equilibrium. Temperature changes can also change the equilibrium constant; a catalyst changes how quickly equilibrium is reached.
- State the balanced equation and whether the forward reaction is exothermic before predicting a temperature effect. Count gas coefficients when considering pressure; pressure has no composition effect when gaseous amounts are equal on both sides.
- Transferring energy to the surroundings.
- Use energy transferred = mass × specific heat capacity × temperature change. Convert joules to kilojoules before dividing by reaction amount. An exothermic molar enthalpy change has a negative sign.
- Use insulation and a lid, measure starting temperatures consistently, stir, and record a temperature-time series. Estimate the reaction temperature from an appropriate extrapolation rather than ignoring cooling during measurement.
- An atom group determining characteristic reactions.
- Distinguish addition, substitution, oxidation and polymerization by tracing bonds before and after reaction. Conditions and reagents belong to the reaction arrow; they are not interchangeable labels.
- Draw displayed or structural formulae with the correct number of bonds at each carbon. Use a carbon count to check a proposed synthesis. At advanced level, track reagents and conditions through multistep routes.
- activation energy
- The energy barrier for a reaction pathway
- rate · taxa
- Change in a measured quantity per unit time
- equilibrium · equilíbrio
- A state with equal forward and reverse reaction rates
- reversible reaction
- A reaction that can proceed in both directions
- exothermic · exotérmica
- Transferring energy to the surroundings
- enthalpy change
- Heat change at constant pressure for a stated process
- functional group
- An atom group determining characteristic reactions
- isomer
- A compound sharing a formula but differing in structure
5 · Transition Metals and Organic Nitrogen Chemistry
- Loss of electrons.
- Predict products using the specified electrolyte and electrode material. In an aqueous solution, hydrogen or oxygen may form because water-related species compete. Molten salts contain only the ions of the salt.
- Use a low-voltage direct-current supply, approved electrodes, and the school risk assessment. Collect gases only by an approved method. Keep chlorine demonstrations teacher-controlled; do not ask students to generate hazardous gases independently.
- An atom group determining characteristic reactions.
- Distinguish addition, substitution, oxidation and polymerization by tracing bonds before and after reaction. Conditions and reagents belong to the reaction arrow; they are not interchangeable labels.
- Draw displayed or structural formulae with the correct number of bonds at each carbon. Use a carbon count to check a proposed synthesis. At advanced level, track reagents and conditions through multistep routes.
- Separation using two phases.
- Rf is distance travelled by a component divided by distance travelled by the solvent front, both measured from the baseline. Compare under the same conditions; an Rf value alone does not establish identity across different solvents.
- Use pencil for the baseline, keep spots above solvent level, mark the solvent front promptly, and run known references alongside unknowns. For ion tests, use clean equipment and separate aliquots to avoid carrying reagents into later tests.
- oxidation
- Loss of electrons
- reduction · redução
- Gain of electrons
- functional group
- An atom group determining characteristic reactions
- isomer
- A compound sharing a formula but differing in structure
- chromatography
- Separation using two phases
- Rf
- Spot distance divided by solvent-front distance
6 · Practical Skills in Chemistry II
- The volume delivered between two burette readings.
- Calculate the known amount first, apply the stoichiometric ratio, then divide by the unknown solution volume in cubic decimetres. Use concordant titres as required by the school method and report the accepted values.
- Rinse the burette with its solution and the pipette with the solution it transfers. Rinse the flask with distilled water. Add titrant slowly near the endpoint, swirl, and read the meniscus at eye level. Use a white tile and appropriate eye protection.
- A quantified limitation on a measured result.
- For a product or quotient, adding fractional uncertainties is a common maximum-uncertainty approximation. For a difference, add absolute uncertainties. A nonzero intercept can reveal an offset or an incomplete model.
- Show units on axes and choose a sensible scale. Plot uncertainty bars where justified, draw a best-fit line rather than joining every point, and estimate steepest and shallowest plausible gradients when the course method calls for them.
- titre
- The volume delivered between two burette readings
- equivalence point · ponto de equivalência
- The point of stoichiometric reaction completion
- uncertainty
- A quantified limitation on a measured result
- systematic error
- A consistent measurement bias
Preparing for this qualification · Preparação para esta qualificação
- Six separately assessed units; IAS uses Units 1–3, IAL uses Units 1–6.
- Units 3 and 6 are written practical-skills examinations based on experimental experience; they are not a Cambridge hands-on practical paper.
- Retain core-practical numbering from the acquired specification. Unit weights, marks and times are in the assessment evidence manifest.
Teaching coverage still needed · Cobertura do ensino ainda necessária
- Full topic 1–5 statement coverage remains.
- Intermolecular forces, Groups 1/2/7, halogenoalkanes and alcohol chemistry remain.
- All AS core practicals, preparation methods and practical-paper objectives remain.
- Rate equations, entropy, acid-base equilibria, carbonyls/acids/chirality remain.
- Transition-metal complexes, electrode potentials, organic nitrogen, synthesis and spectroscopy remain.
- A2 synthesis, purification, quantitative analysis and practical-paper coverage remain.
Specifications and sample documents · Especificações e documentos de exemplo
Course materials · Materiais do curso
- Study notes · Notas de estudo →
- Revision questions · Questões de revisão →
- Teaching guidance · Orientações de ensino · Teacher access · Acesso do professor →
- Teacher diagnostics · Diagnósticos do professor · Teacher access · Acesso do professor →
- Supervised task guidance · Orientações de tarefa supervisionada · Teacher access · Acesso do professor →
Course preparation · Preparação do curso
Documents are available. Board-specific notes, assessments and interactive past-paper practice are not yet available for every course. · Os documentos estão disponíveis. Notas específicas da banca, avaliações e prática interativa de provas anteriores ainda não estão disponíveis para todos os cursos.
Lessons · Lições →