Baccalauréat international · IB Diploma
Environmental Systems and Societies · SL
Papers, samples and curriculum documents for this course. · Dossiers, échantillons et documents de programme pour ce cours.
Handouts, exercise sheets and slides
Shared topic documents retain their source course and topic titles. Use your chosen board’s specification for coverage, tier and exam requirements.
Handouts · Supports de cours · AP Environmental Science · AP Sciences environnementales (9)
- 1. The Living World: Ecosystems · 1. Le monde vivant : Écosystèmes
- 2. The Living World: Biodiversity · 2. Le monde vivant : Biodiversité
- 3. Populations
- 4. Earth Systems and Resources · 4. Systèmes terrestres et ressources
- 5. Land and Water Use · 5. Utilisation des terres et de l'eau
- 6. Energy Resources and Consumption · 6. Ressources énergétiques et consommation
- 7. Atmospheric Pollution · 7. Pollution atmosphérique
- 8. Aquatic and Terrestrial Pollution · 8. Pollution aquatique et terrestre
- 9. Global Change · 9. Changement global
Exercise sheets · Fiches d'exercices · AP Environmental Science · AP Sciences environnementales (99)
- 1.1 Introduction to Ecosystems · 1.1 Introduction aux écosystèmes
- 1.2 Terrestrial Biomes · 1.2 Biomes terrestres
- 1.3 Aquatic Biomes · 1.3 Biomes aquatiques
- 1.4 The Carbon Cycle · 1.4 Le cycle du carbone
- 1.5 The Nitrogen Cycle · 1.5 Le cycle de l'azote
- 1.6 The Phosphorus Cycle · 1.6 Le cycle du phosphore
- 1.7 The Hydrologic (Water) Cycle · 1.7 Le cycle hydrologique (cycle de l'eau)
- 1.8 Primary Productivity · 1.8 Productivité primaire
- 1.9 Trophic Levels · 1.9 Niveaux trophiques
- 1.10 Energy Flow and the 10% Rule · 1.10 Flux d'énergie et règle des 10 %
- 1.11 Food Chains and Food Webs · 1.11 Chaînes alimentaires et réseaux trophiques
- 2.1 Introduction to Biodiversity · 2.1 Introduction à la biodiversité
- 2.2 Ecosystem Services · 2.2 Services écosystémiques
- 2.3 Island Biogeography · 2.3 Biogéographie insulaire
- 2.4 Ecological Tolerance · 2.4 Tolérance écologique
- 2.5 Natural Disruptions to Ecosystems · 2.5 Perturbations naturelles des écosystèmes
- 2.6 Adaptations
- 2.7 Ecological Succession · 2.7 Succèsion écologique
- 3.1 Generalist and Specialist Species · 3.1 Espèces généralistes et spécialistes
- 3.2 K-Selected and r-Selected Species · 3.2 Espèces K-sélectionnées et r-sélectionnées
- 3.3 Survivorship Curves · 3.3 Courbes de survie
- 3.4 Carrying Capacity · 3.4 Capacité de charge
- 3.5 Population Growth and Resource Availability · 3.5 Croissance démographique et disponibilité des ressources
- 3.6 Age Structure Diagrams · 3.6 Diagrammes de structure par âge
- 3.7 Total Fertility Rate · 3.7 Taux de fécondité total
- 3.8 Human Population Dynamics · 3.8 Dynamiques de la population humaine
- 3.9 Demographic Transition · 3.9 Transition démographique
- 4.1 Plate Tectonics · 4.1 Tectonique des plaques
- 4.2 Soil Formation and Erosion · 4.2 Formation et érosion des sols
- 4.3 Soil Composition and Properties · 4.3 Composition et propriétés du sol
- 4.4 Earth's Atmosphere · 4.4 L'atmosphère terrestre
- 4.5 Global Wind Patterns · 4.5 Circulations globales des vents
- 4.6 Watersheds · 4.6 Bassins versants
- 4.7 Solar Radiation and Earth's Seasons · 4.7 Rayonnement solaire et saisons de la Terre
- 4.8 Earth's Geography and Climate · 4.8 Géographie et climat de la Terre
- 4.9 El Nino and La Nina · 4.9 El Niño et La Niña
- 5.1 The Tragedy of the Commons · 5.1 La tragédie des Communaux
- 5.2 Clearcutting · 5.2 Défrichement total
- 5.3 The Green Revolution · 5.3 La Révolution Verte
- 5.4 Impacts of Agricultural Practices · 5.4 Impacts des Pratiques Agricoles
- 5.5 Irrigation Methods · 5.5 Méthodes d'irrigation
- 5.6 Pest Control Methods · 5.6 Méthodes de lutte contre les ravageurs
- 5.7 Meat Production Methods · 5.7 Méthodes de production de viande
- 5.8 Impacts of Overfishing · 5.8 Impacts de la surpêche
- 5.9 Impacts of Mining · 5.9 Impacts de l'exploitation minière
- 5.10 Impacts of Urbanization · 5.10 Impacts de l'urbanisation
- 5.11 Ecological Footprints · 5.11 Empreintes écologiques
- 5.12 Introduction to Sustainability · 5.12 Introduction à la durabilité
- 5.13 Methods to Reduce Urban Runoff · 5.13 Méthodes pour réduire le ruissellement urbain
- 5.14 Integrated Pest Management · 5.14 Gestion intégrée des ravageurs
- 5.15 Sustainable Agriculture · 5.15 Agriculture durable
- 5.16 Aquaculture
- 5.17 Sustainable Forestry · 5.17 Foresterie durable
- 6.1 Renewable and Nonrenewable Resources · 6.1 Ressources renouvelables et non renouvelables
- 6.2 Global Energy Consumption · 6.2 Consommation énergétique mondiale
- 6.3 Fuel Types and Uses · 6.3 Types de carburants et utilisations
- 6.4 Distribution of Natural Energy Resources · 6.4 Répartition des ressources énergétiques naturelles
- 6.5 Fossil Fuels · 6.5 Combustibles fossiles
- 6.6 Nuclear Power · 6.6 Énergie nucléaire
- 6.7 Energy from Biomass · 6.7 Énergie issue de la Biomasse
- 6.8 Solar Energy · 6.8 Énergie Solaire
- 6.9 Hydroelectric Power · 6.9 Énergie Hydroélectrique
- 6.10 Geothermal Energy · 6.10 Énergie Géothermique
- 6.11 Hydrogen Fuel Cell · 6.11 Pile à Combustible Hydrogène
- 6.12 Wind Energy · 6.12 Énergie éolienne
- 6.13 Energy Conservation · 6.13 Conservation de l'énergie
- 7.1 Introduction to Air Pollution · 7.1 Introduction à la pollution de l'air
- 7.2 Photochemical Smog · 7.2 Smog photochimique
- 7.3 Thermal Inversion · 7.3 Inversion thermique
- 7.4 Atmospheric CO2 and Particulates · 7.4 CO2 atmosphérique et particules
- 7.5 Indoor Air Pollutants · 7.5 Polluants de l'air intérieur
- 7.6 Reduction of Air Pollutants · 7.6 Réduction des polluants de l'air
- 7.7 Acid Rain · 7.7 Pluie acide
- 7.8 Noise Pollution · 7.8 Pollution sonore
- 8.1 Sources of Pollution · 8.1 Sources de pollution
- 8.2 Human Impacts on Ecosystems · 8.2 Impacts humains sur les écosystèmes
- 8.3 Endocrine Disruptors · 8.3 Perturbateurs endocriniens
- 8.4 Human Impacts on Wetlands and Mangroves · 8.4 Impacts humains sur les zones humides et les mangroves
- 8.5 Eutrophication · 8.5 Eutrophisation
- 8.6 Thermal Pollution · 8.6 Pollution thermique
- 8.7 Persistent Organic Pollutants (POPs) · 8.7 Polluants organiques persistants (POP)
- 8.8 Bioaccumulation and Biomagnification · 8.8 Bioaccumulation et Biomagnification
- 8.9 Solid Waste Disposal · 8.9 Gestion des déchets solides
- 8.10 Waste Reduction Methods · 8.10 Réduction des déchets
- 8.11 Sewage Treatment · 8.11 Traitement des eaux usées
- 8.12 Lethal Dose 50% (LD50) · 8.12 Dose Letale 50 % (DL50)
- 8.13 Dose Response Curve · 8.13 Courbe Dose-Réponse
- 8.14 Pollution and Human Health · 8.14 Pollution et santé humaine
- 8.15 Pathogens and Infectious Diseases · 8.15 Pathogènes et maladies infectieuses
- 9.1 Stratospheric Ozone Depletion · 9.1 Appauvrissement de l'ozone stratosphérique
- 9.2 Reducing Ozone Depletion · 9.2 Réduction de l'appauvrissement de l'ozone
- 9.3 The Greenhouse Effect · 9.3 L'effet de serre
- 9.4 Increases in the Greenhouse Gases · 9.4 Augmentation des Gaz à Effet de Serre
- 9.5 Global Climate Change · 9.5 Changement climatique mondial
- 9.6 Ocean Warming · 9.6 Réchauffement des océans
- 9.7 Ocean Acidification · 9.7 Acidification des océans
- 9.8 Invasive Species · 9.8 Espèces invasives
- 9.9 Endangered Species · 9.9 Espèces en voie de disparition
- 9.10 Human Impacts on Biodiversity · 9.10 Impacts humains sur la biodiversité
Presentation slides · Diaporamas de présentation · AP Environmental Science · AP Sciences environnementales (9)
- 1. The Living World: Ecosystems · 1. Le monde vivant : Écosystèmes
- 2. The Living World: Biodiversity · 2. Le monde vivant : Biodiversité
- 3. Populations
- 4. Earth Systems and Resources · 4. Systèmes terrestres et ressources
- 5. Land and Water Use · 5. Utilisation des terres et de l'eau
- 6. Energy Resources and Consumption · 6. Ressources énergétiques et consommation
- 7. Atmospheric Pollution · 7. Pollution atmosphérique
- 8. Aquatic and Terrestrial Pollution · 8. Pollution aquatique et terrestre
- 9. Global Change · 9. Changement global
Course units and learning goals · Unités de cours et objectifs d'apprentissage
These lessons teach selected course objectives. Check the remaining coverage gaps; the material is not a complete preparation programme. · Ces leçons abordent des objectifs de cours sélectionnés. Vérifiez les lacunes restantes en couverture ; ce matériel ne constitue pas un programme d'entraînement complet.
1 · Foundation
- An amount held within a system.
- Separate physical evidence from value judgements. A stock is an amount at a time; a flow is an amount per time. Sustainability decisions require ecological, social and economic evidence and a stated scale.
- Draw the system boundary before calculating a budget. Identify inflows, outflows and possible unmeasured terms. Compare stakeholder claims using the same evidence, then explain where values lead to different choices.
- stock
- An amount held within a system
- flow · flux
- Transfer of an amount per unit time
2 · Ecology
- A defined area used for sampling.
- Estimate total abundance by multiplying mean density by area, with consistent units. This assumes sampled areas represent the habitat. Patchiness and too few samples widen uncertainty.
- Choose coordinates with random numbers before visiting the patches. Record quadrat area and counting rules. For a transect, use fixed distances and measure a relevant abiotic variable. Do not damage habitats or sample unsafe locations.
- An amount held within a system.
- Separate physical evidence from value judgements. A stock is an amount at a time; a flow is an amount per time. Sustainability decisions require ecological, social and economic evidence and a stated scale.
- Draw the system boundary before calculating a budget. Identify inflows, outflows and possible unmeasured terms. Compare stakeholder claims using the same evidence, then explain where values lead to different choices.
- quadrat
- A defined area used for sampling
- population
- Organisms of one species in a defined area
- stock
- An amount held within a system
- flow · flux
- Transfer of an amount per unit time
3 · Biodiversity and conservation
- The number of species recorded.
- Compare surveys with similar area, effort, season and identification rules. A diversity index is meaningful only with its formula and conventions specified. Habitat fragmentation can affect movement and gene flow even when total area changes little.
- Use non-destructive field sampling approved by the school. Identify organisms with a suitable key and record uncertain identifications rather than inventing species. Combine ecological evidence with stakeholder perspectives on land use.
- species richness
- The number of species recorded
- evenness
- How evenly individuals are distributed among species
4 · Water
- Nutrient enrichment with ecological consequences.
- Distinguish concentration from total pollutant load. Dilution can reduce concentration without removing the pollutant mass. A management plan should consider upstream causes, users and effects on other parts of the catchment.
- Collect approved water-quality observations at matched sites and times. Use calibrated instruments and consistent sampling depth. Avoid contact with contaminated water and do not infer potability from clarity.
- eutrophication
- Nutrient enrichment with ecological consequences
- pollutant load
- Mass of pollutant transferred per time
5 · Land
- Removal and transport of soil or rock.
- Distinguish total yield from yield per area and energy input. Sustainable management must consider regeneration rates and impacts beyond the farm boundary. Different stakeholders may rank food security, biodiversity and income differently.
- Compare management options using a stated functional unit and the same timescale. Use approved secondary datasets or non-destructive soil observations. Explain trade-offs instead of claiming a method has no disadvantages.
- erosion
- Removal and transport of soil or rock
- resource
- A material or service used to meet needs
6 · Atmosphere and climate change
- Actions addressing causes of environmental change.
- Distinguish mitigation, which addresses drivers, from adaptation, which reduces harm from impacts. A policy assessment needs evidence about effectiveness, cost, equity and uncertainty; one criterion is not the entire decision.
- Compare multi-year data using consistent baselines. State the region, timescale and uncertainty. At HL, connect a management decision to law, economics and ethics rather than treating these lenses as extra definitions only.
- mitigation
- Actions addressing causes of environmental change
- adaptation
- Actions reducing harm from environmental impacts
7 · Natural resources
- Removal and transport of soil or rock.
- Distinguish total yield from yield per area and energy input. Sustainable management must consider regeneration rates and impacts beyond the farm boundary. Different stakeholders may rank food security, biodiversity and income differently.
- Compare management options using a stated functional unit and the same timescale. Use approved secondary datasets or non-destructive soil observations. Explain trade-offs instead of claiming a method has no disadvantages.
- erosion
- Removal and transport of soil or rock
- resource
- A material or service used to meet needs
8 · Human populations and urban systems
- Movement into a population.
- Compare rates with a common denominator and interval. An average can hide unequal access to services. At HL, evaluate how economic incentives, legal responsibilities and ethical priorities change an urban management proposal.
- Use published demographic and city-service data with dates and definitions. Protect privacy when collecting local opinions. Compare the same geographical boundary rather than mixing an urban core with a whole metropolitan region.
- immigration
- Movement into a population
- indicator
- A measure of a specified condition
Practical · Experimental programme
- 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.
- uncertainty
- A quantified limitation on a measured result
- systematic error
- A consistent measurement bias
Preparing for this qualification · Préparation à cette qualification
- ESS integrates ecological evidence with human values, systems and sustainability; it is not a generic Biology course.
- HL adds environmental law, environmental/ecological economics and ethics as lenses integrated with topic evidence, alongside deeper topic coverage.
- Both levels have practical work 30 h, collaborative sciences project 10 h and individual investigation 10 h. Use school-approved fieldwork and ethical social-data collection.
- Written assessment and investigation details are recorded from the 2026 brief; the old SL-only 2017 brief is not the current course.
- 2026 assessment: SL Paper 1 is 1 h/25%, Paper 2 is 2 h/50%, investigation 25%; HL Paper 1 is 2 h/30%, Paper 2 is 2.5 h/50%, investigation 20%. Paper 1 uses an unseen case study; Paper 2 has short/data questions and structured essays. The individual investigation is a real student-formulated inquiry, 10 h and a maximum 3,000-word report.
Teaching coverage still needed · Couverture pédagogique encore nécessaire
- Exact topic statements require the current full ESS guide; focus cases are partial.
Specifications and sample documents · Spécifications et documents d'échantillon
- Environmental Systems and Societies — Subject brief · 2026 ↗
First assessment: 2026
- Environmental Systems and Societies — Subject brief · 2017 ↗
First assessment: 2017
Course materials · Matériel pédagogique
- Study notes · Notes de cours →
- Revision questions · Questions de révision →
- Teaching guidance · Guide pédagogique · Teacher access · Accès enseignant →
- Teacher diagnostics · Diagnostique enseignant · Teacher access · Accès enseignant →
- Supervised task guidance · Guide pour la tâche supervisée · Teacher access · Accès enseignant →
Course preparation · Préparation du cours
Documents are available. Board-specific notes, assessments and interactive past-paper practice are not yet available for every course. · Les documents sont disponibles. Les notes spécifiques au conseil, les évaluations et la pratique interactive des anciens sujets ne sont pas encore disponibles pour tous les cours.
Lessons · Leçons →