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Browse by Grade: Year 12

United Kingdom · National Curriculum Attainment Targets

Year 12 Chemistry

This course bridges the gap between GCSE and advanced chemistry by exploring the quantitative and structural nature of matter. Students investigate the fundamental laws governing atomic behavior, energetic transitions, and the mechanisms of organic and inorganic reactions.

6 units·52 topics·Ages 16-17

01Atomic Architecture and Periodic Trends

9 topics·Autumn Term

Exploration of subatomic particles, electron configurations, and how these structures dictate the periodic arrangement of elements.

Historical Atomic Models & Subatomic Particles

Investigating the historical development of atomic models and the properties of protons, neutrons, and electrons.

Timeline ChallengeConcept Mapping
Isotopes and Relative Atomic Mass Calculation

Examining the evidence for the subatomic model and the calculation of relative atomic masses from isotopic data.

Case Study AnalysisThink-Pair-Share
Electron Shells, Energy Levels & Reactivity

Understanding the arrangement of electrons in main energy levels and their role in chemical reactivity.

Concept MappingJigsaw
Electron Orbitals: s, p, d Shapes and Filling

Mapping electrons into s, p, and d orbitals and understanding their shapes and energy levels.

Decision MatrixJigsaw
Successive Ionisation Energies & Shell Theory

Analyzing successive ionisation energies to prove shell theory and identify electron configurations.

Inquiry CircleStations Rotation
Periodicity: Physical Properties Across Period 3

Analyzing trends in melting points, boiling points, and atomic radii across Period 3.

Stations RotationGallery Walk
Periodicity: Chemical Properties of Period 3 & Group 2

Investigating trends in reactivity and compound formation for elements across Period 3 and down Group 2.

Document MysteryThink-Pair-Share
Group 17: Halogens and Their Reactivity

Exploring the trends in physical and chemical properties of halogens and their displacement reactions.

Inquiry CircleStations Rotation
Redox Reactions of Halogens and Halides

Analyzing the redox behavior of halogens and halide ions in various reactions.

Problem-Based LearningCollaborative Problem-Solving

02The Language of Chemistry: Stoichiometry

7 topics·Autumn Term

Mastering the quantitative aspects of chemical reactions through the mole concept and balanced equations.

The Mole and Avogadro's Constant

Connecting the macroscopic mass of substances to the microscopic number of atoms and molecules.

Problem-Based LearningInquiry Circle
Empirical and Molecular Formulae Determination

Determining the simplest whole-number ratio of atoms in a compound and its true molecular formula.

Problem-Based LearningCollaborative Problem-Solving
Reacting Masses and Limiting Reagents

Calculating theoretical yields and identifying limiting reagents in complex chemical processes.

Case Study AnalysisStations Rotation
Concentration and Solution Stoichiometry

Performing calculations involving solution concentrations, dilutions, and titrations.

Problem-Based LearningInquiry Circle
Gas Volumes and the Ideal Gas Equation

Applying the ideal gas equation to calculate volumes, pressures, temperatures, and moles of gases.

Simulation GameCollaborative Problem-Solving
Atom Economy and Green Chemistry Principles

Evaluating the sustainability of chemical reactions based on the proportion of desired product formed.

Case Study AnalysisDecision Matrix
Percentage Yield and Reaction Efficiency

Calculating and interpreting percentage yield in chemical reactions, considering practical limitations.

Problem-Based LearningInquiry Circle

03Bonding and Molecular Geometry

8 topics·Autumn Term

Investigating how electrostatic forces hold matter together and determine the three dimensional shapes of molecules.

Ionic Bonding and Lattice Structures

Understanding the lattice structures formed by electrostatic attraction between ions.

Concept MappingGallery Walk
Metallic Bonding and Properties

Exploring the 'sea of delocalized electrons' model and its implications for metallic properties.

Concept MappingThink-Pair-Share
Covalent Bonding and Lewis Structures

Drawing Lewis structures to represent shared electron pairs and formal charges.

Problem-Based LearningPeer Teaching
VSEPR Theory and Molecular Shapes

Predicting the shapes and bond angles of molecules based on electron pair repulsion.

Inquiry CircleProblem-Based Learning
Electronegativity and Bond Polarity

Understanding how differences in electronegativity lead to polar covalent bonds and molecular dipoles.

Concept MappingThink-Pair-Share
Intermolecular Forces: Van der Waals

Differentiating between London dispersion forces and permanent dipole-dipole interactions.

Inquiry CircleCase Study Analysis
Intermolecular Forces: Hydrogen Bonding

Exploring the unique properties conferred by hydrogen bonding in molecules like water and alcohols.

Inquiry CircleCase Study Analysis
Giant Covalent Structures: Diamond, Graphite, SiO2

Investigating the structures and properties of giant covalent substances like diamond, graphite, and silicon dioxide.

Concept MappingGallery Walk

04Energetics and Kinetics

9 topics·Spring Term

Studying the energy changes during reactions and the factors that control the rate of chemical change.

Enthalpy Changes: Exothermic & Endothermic

Defining enthalpy changes and distinguishing between exothermic and endothermic processes.

Concept MappingThink-Pair-Share
Calorimetry and Experimental Enthalpy

Measuring heat changes in chemical reactions using experimental calorimetry.

Inquiry CircleProblem-Based Learning
Hess's Law and Enthalpy Cycles

Using Hess's Law to calculate enthalpy changes indirectly through enthalpy cycles.

Decision MatrixCollaborative Problem-Solving
Bond Enthalpies and Reaction Enthalpies

Estimating enthalpy changes of reactions using average bond enthalpy data.

Problem-Based LearningThink-Pair-Share
Collision Theory and Reaction Rate Factors

Exploring how temperature, concentration, and surface area influence the frequency and energy of collisions.

Simulation GameInquiry Circle
Activation Energy and Catalysis

Understanding the role of activation energy and how catalysts provide alternative reaction pathways.

Simulation GameCase Study Analysis
Reversible Reactions and Dynamic Equilibrium

Analyzing the dynamic nature of equilibrium and the conditions for its establishment.

Concept MappingThink-Pair-Share
Le Chatelier's Principle & Industrial Processes

Applying Le Chatelier's Principle to predict shifts in equilibrium and optimize industrial yields.

Problem-Based LearningRole Play
Equilibrium Constant Kc and Kp

Calculating and interpreting the equilibrium constant (Kc and Kp) for homogeneous and heterogeneous systems.

Problem-Based LearningCollaborative Problem-Solving

05Core Organic Chemistry

10 topics·Spring Term

An introduction to the nomenclature, structure, and reactivity of alkanes, alkenes, and alcohols.

Organic Chemistry Introduction & Nomenclature

Understanding the basics of organic compounds, functional groups, and IUPAC naming conventions.

Concept MappingPeer Teaching
Isomerism: Structural and Stereoisomerism

Exploring different types of isomerism, including structural, E/Z, and optical isomerism.

JigsawGallery Walk
Alkanes: Structure, Properties, and Reactions

Examining the saturated hydrocarbons, their combustion, and the mechanism of free radical substitution.

Concept MappingInquiry Circle
Alkenes: Structure and Electrophilic Addition

Investigating the reactivity of the double bond and the rules governing addition reactions.

Gallery WalkJigsaw
Polymers from Alkenes: Addition Polymerisation

Understanding the formation of addition polymers from alkene monomers and their uses.

Case Study AnalysisDecision Matrix
Alcohols: Properties and Reactions

Exploring the properties and reactions of alcohols, including oxidation and dehydration.

Inquiry CircleProblem-Based Learning
Haloalkanes: Nucleophilic Substitution

Investigating nucleophilic substitution reactions of haloalkanes and their mechanisms.

Inquiry CircleCase Study Analysis
Haloalkanes: Elimination Reactions

Exploring elimination reactions of haloalkanes and the factors determining product formation.

Decision MatrixThink-Pair-Share
Carbonyl Compounds: Aldehydes and Ketones

Introducing the structure, nomenclature, and characteristic reactions of aldehydes and ketones.

Concept MappingPeer Teaching
Carboxylic Acids and Esters

Investigating the properties, reactions, and synthesis of carboxylic acids and their derivatives, esters.

Inquiry CircleCase Study Analysis

06Redox and Analytical Techniques

9 topics·Summer Term

Mastering electron transfer reactions and the modern instrumental methods used to identify chemical structures.

Oxidation Numbers and Redox Definitions

Using oxidation numbers to track electron flow and define oxidation and reduction.

Concept MappingThink-Pair-Share
Balancing Redox Equations (Half-Equations)

Balancing complex redox reactions using half-equations in acidic and alkaline conditions.

Problem-Based LearningCollaborative Problem-Solving
Redox Titrations: Manganate(VII) and Thiosulfate

Performing titrations with oxidizing agents like potassium manganate(VII) to determine concentrations.

Inquiry CircleCase Study Analysis
Infrared (IR) Spectroscopy for Functional Groups

Using electromagnetic radiation absorption to identify functional groups in organic molecules.

Case Study AnalysisDocument Mystery
Mass Spectrometry: Molecular Mass & Fragmentation

Using fragmentation patterns and molecular ion peaks to elucidate the structure of organic molecules.

Case Study AnalysisDocument Mystery
NMR Spectroscopy: Proton (1H NMR)

Interpreting proton NMR spectra to determine the number and environment of hydrogen atoms.

Problem-Based LearningDocument Mystery
NMR Spectroscopy: Carbon-13 (13C NMR)

Interpreting carbon-13 NMR spectra to determine the number of different carbon environments.

Problem-Based LearningDocument Mystery
Chromatography Techniques: GC and TLC

Exploring principles and applications of gas chromatography and thin-layer chromatography.

Simulation GameCase Study Analysis
Modern Analytical Case Studies

Applying multiple analytical techniques to solve real-world forensic and environmental problems.

Case Study AnalysisExpert Panel
Lesson Plans | Chemistry Year 12 | National Curriculum Attainment Targets | Flip Education