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SCHEME OF WORK
Geography
Form 3 2026
TERM III
School


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WK LSN TOPIC SUB-TOPIC OBJECTIVES T/L ACTIVITIES T/L AIDS REFERENCE REMARKS
2 1
OCEANS, SEAS AND THEIR COASTS
Distinction Between Oceans and Seas
By the end of the lesson, the learner should be able to:
Distinguish between oceans and seas based on size, location, and connection. Identify the four major oceans and their characteristics. Compare similarities and differences between oceans and seas.
In groups, learners are guided to:
Q/A to review water bodies from previous chapters. Discussion of ocean vs sea characteristics using world map. Students list major oceans and seas in exercise books.
Chalkboard, world map, atlas, exercise books
KLB Secondary Geography Form 3, Pages 113-114
2 2
OCEANS, SEAS AND THEIR COASTS
Nature of Ocean Water - Salinity and Temperature
Nature of Ocean Water - Ocean Life and Topography
By the end of the lesson, the learner should be able to:
Explain ocean water salinity and factors affecting it. Describe temperature variations in ocean water with depth and latitude. Identify salt content composition in oceans.
In groups, learners are guided to:
Discussion of ocean water composition and salinity measurement. Drawing temperature variation diagrams on chalkboard. Students copy salt content percentages in notebooks.
Chalkboard, chalk, exercise books, thermometer for demonstration
Chalkboard, chalk, exercise books, textbooks
KLB Secondary Geography Form 3, Pages 114-117
2 3
OCEANS, SEAS AND THEIR COASTS
Islands and Ocean Pollution
Water Movement - Vertical Movement
Water Movement - Ocean Currents
By the end of the lesson, the learner should be able to:
Classify islands as continental, oceanic, and coral islands. Give examples from East Africa and globally. Explain ocean pollution sources and effects.
In groups, learners are guided to:
Discussion of island formation types with examples. Analysis of pollution sources from industries and human activities. Students list local pollution examples.
Chalkboard, chalk, exercise books, atlas
Containers, warm and cold water, chalkboard, atlas
Chalkboard, chalk, globe, world map, exercise books
KLB Secondary Geography Form 3, Pages 119-120
2 4
OCEANS, SEAS AND THEIR COASTS
Major Ocean Currents
Tides - Formation and Causes
By the end of the lesson, the learner should be able to:
Identify characteristics and distribution of major world ocean currents. Give examples: Gulf Stream, Labrador, Kuroshio, California currents. Analyze current patterns in different ocean basins.
In groups, learners are guided to:
Discussion of major ocean currents with world map reference. Students create table of warm and cold currents. Analysis of current circulation patterns.
World map, atlas, chalkboard, exercise books
Chalkboard, chalk, exercise books, stones for demonstration
KLB Secondary Geography Form 3, Pages 124-125
2 5
OCEANS, SEAS AND THEIR COASTS
Types of Tides
Wave Formation and Types
By the end of the lesson, the learner should be able to:
Distinguish between perigean, apogean, spring, and neap tides. Explain semi-diurnal, mixed, and diurnal tide patterns. Describe tidal significance for coastal activities.
In groups, learners are guided to:
Drawing different tide type diagrams on chalkboard. Discussion of tidal patterns with examples. Students create tidal cycle charts in notebooks.
Chalkboard, chalk, exercise books, textbooks
Water basin, chalkboard, chalk, exercise books
KLB Secondary Geography Form 3, Pages 127-128
3 1
OCEANS, SEAS AND THEIR COASTS
Wave Erosion Processes and Features
By the end of the lesson, the learner should be able to:
Describe wave erosion processes: corrasion, hydraulic action, attrition, solution. Identify erosional features: cliffs, wave-cut platforms, caves, arches, stacks, stumps.
In groups, learners are guided to:
Discussion of erosion processes with practical examples. Drawing formation sequence of coastal erosional features on chalkboard. Students sketch feature formation stages.
Chalkboard, chalk, exercise books, pictures from textbook
KLB Secondary Geography Form 3, Pages 130-134
3 2
OCEANS, SEAS AND THEIR COASTS
Wave Transportation and Deposition
By the end of the lesson, the learner should be able to:
Explain longshore drift process and material transportation. Describe factors influencing coastal deposition. Identify transportation mechanisms along coasts.
In groups, learners are guided to:
Simple demonstration of longshore drift using sand and water. Discussion of sediment sorting and deposition patterns. Students draw longshore drift diagrams.
Sand, water container, chalkboard, chalk, exercise books
KLB Secondary Geography Form 3, Pages 134-135
3 3
OCEANS, SEAS AND THEIR COASTS
Coastal Depositional Features - Beaches and Spits
Coastal Depositional Features - Bars and Other Features
By the end of the lesson, the learner should be able to:
Describe beach formation and characteristics. Explain spit formation at coastline direction changes. Identify beach features: ridges, cusps, berms, beach rock.
In groups, learners are guided to:
Discussion of beach formation conditions and processes. Drawing spit formation diagrams showing longshore drift effects. Students identify local beach examples.
Chalkboard, chalk, exercise books, sand for demonstration
Chalkboard, chalk, exercise books, textbooks
KLB Secondary Geography Form 3, Pages 135-137
3 4
OCEANS, SEAS AND THEIR COASTS
Types of Coasts - Concordant and Discordant
By the end of the lesson, the learner should be able to:
Distinguish between concordant and discordant coasts. Explain factors determining coast types: wave action, tidal currents, rock nature, alignment.
In groups, learners are guided to:
Discussion of coast types with Kenya examples (Malindi-Lamu vs Mombasa). Analysis of factors affecting coastal development. Students identify coast types on maps.
Atlas, chalkboard, chalk, exercise books
KLB Secondary Geography Form 3, Pages 139-140
3 5
OCEANS, SEAS AND THEIR COASTS
Submerged Coasts - Highland and Lowland
By the end of the lesson, the learner should be able to:
Explain submerged coast formation through base level changes. Describe rias, fjords, and Dalmatian coasts in highland areas. Identify fjards in lowland submergence.
In groups, learners are guided to:
Drawing submerged coast formation diagrams on chalkboard. Discussion of East African rias (Kilindini, Lamu). Students analyze submergence causes.
Chalkboard, chalk, exercise books, maps of Kenya coast
KLB Secondary Geography Form 3, Pages 140-142
4 1
OCEANS, SEAS AND THEIR COASTS
Emerged Coasts
By the end of the lesson, the learner should be able to:
Describe emerged coast formation through sea level fall. Identify upland features: raised beaches, notches, wave-cut platforms. Explain lowland features: fall-lines, gentle coastal plains.
In groups, learners are guided to:
Discussion of emergence processes and resultant features. Analysis of Kenya coast examples (Mama Ngina Drive, Oceanic Hotel). Students draw emerged coast profiles.
Chalkboard, chalk, exercise books, local examples
KLB Secondary Geography Form 3, Pages 142-143
4 2
OCEANS, SEAS AND THEIR COASTS
Coral Coasts and Reef Formation
Types of Coral Reefs
By the end of the lesson, the learner should be able to:
Explain coral polyp requirements for growth: temperature, clean water, shallow depth, salinity. Describe conditions favoring coral development.
In groups, learners are guided to:
Discussion of coral growth conditions and requirements. Analysis of tropical coral distribution patterns. Students list coral growth requirements.
Chalkboard, chalk, exercise books, world map
Chalkboard, chalk, exercise books, atlas
KLB Secondary Geography Form 3, Pages 143-144
4 3
OCEANS, SEAS AND THEIR COASTS
Coral Reef Formation Theories
By the end of the lesson, the learner should be able to:
Explain Darwin's, Daly's, and Murray's theories of coral reef formation. Compare different explanations for barrier reef and atoll development.
In groups, learners are guided to:
Discussion of different coral formation theories with diagrams. Comparison of theory strengths and limitations. Students create theory comparison charts.
Chalkboard, chalk, exercise books, textbooks
KLB Secondary Geography Form 3, Pages 146-148
4 4
OCEANS, SEAS AND THEIR COASTS
Significance of Oceans - Economic Importance
By the end of the lesson, the learner should be able to:
Explain ocean significance for climate modification, fishing, transport, and mineral extraction. Describe HEP generation from tides and tourism benefits.
In groups, learners are guided to:
Discussion of ocean economic activities and benefits. Analysis of global fishing grounds and shipping routes. Students list ocean economic uses.
Chalkboard, chalk, exercise books, world map
KLB Secondary Geography Form 3, Pages 148-149
4 5
OCEANS, SEAS AND THEIR COASTS
Significance of Coasts and Coastal Features
Unit Assessment
By the end of the lesson, the learner should be able to:
Describe coastal benefits: ports, harbours, fishing grounds, tourism, building materials. Explain marine life habitats and transport challenges.
In groups, learners are guided to:
Discussion of coastal economic activities with Kenya examples. Analysis of port development and coastal tourism. Students evaluate coastal significance.
Chalkboard, chalk, exercise books, maps of Kenya
Assessment papers, atlas, exercise books, maps
KLB Secondary Geography Form 3, Pages 149-150
5 1
ACTION OF WIND AND WATER IN ARID AREAS
Definition of Terms and Types of Deserts
Wind Erosion Processes
By the end of the lesson, the learner should be able to:
Define arid lands and aridity as areas receiving less than 250mm annual rainfall. Classify deserts: hot continental interior, coastal, mid-latitude, and ice/snow deserts. Identify examples globally and in Kenya (ASAL areas, Chalbi, Kaisut, Karoli).
In groups, learners are guided to:
Q/A to review climate and aridity concepts from Form 2. Discussion of world desert distribution using atlas. Students list desert types and examples in exercise books.
Chalkboard, world map, atlas, exercise books
Sand, small container, chalkboard, chalk, exercise books
KLB Secondary Geography Form 3, Pages 151-152
5 2
ACTION OF WIND AND WATER IN ARID AREAS
Wind Erosion Features - Small Scale
Wind Erosion Features - Large Scale
Wind Transportation and Deposition
By the end of the lesson, the learner should be able to:
Describe formation of "millet seed" sand grains, rock pedestals (gours), and ventifacts. Explain undercutting and abrasion effects up to 2 meters above ground. Include dreinkanter formation.
In groups, learners are guided to:
Drawing formation diagrams of small-scale erosional features on chalkboard. Discussion of differential erosion on hard and soft rocks. Students sketch feature formation stages.
Chalkboard, chalk, exercise books, small stones for demonstration
Chalkboard, chalk, exercise books, atlas
Sand, fan or strong breath, chalkboard, chalk, exercise books
KLB Secondary Geography Form 3, Pages 153-155
5 3
ACTION OF WIND AND WATER IN ARID AREAS
Sand Dunes - Barchans and Seif Dunes
Other Dune Types, Draas, and Loess
By the end of the lesson, the learner should be able to:
Describe barchan formation around obstacles creating crescent shapes. Explain seif dune development as parallel ridges aligned with prevailing winds. Give examples from Sahara, Arabian deserts, and Kenya (Lamu, Chalbi).
In groups, learners are guided to:
Drawing detailed barchan and seif dune formation diagrams on chalkboard. Discussion of wind direction effects on dune shapes. Students model dune formation with sand.
Sand, small obstacles, chalkboard, chalk, exercise books
Chalkboard, chalk, exercise books, world map
KLB Secondary Geography Form 3, Pages 157-159
5 4
ACTION OF WIND AND WATER IN ARID AREAS
Water Action in Arid Areas - Wadis and Inselbergs
Pediments, Pediplains, and Plateau Features
By the end of the lesson, the learner should be able to:
Explain wadi formation through flash floods creating steep dry valleys. Describe inselberg development as residual rock masses through slope retreat. Give examples from Algeria, Egypt, Saudi Arabia, and Kenya (Nzambani Rock).
In groups, learners are guided to:
Discussion of flash flood processes and erosional effects. Drawing wadi and inselberg formation diagrams on chalkboard. Analysis of water action despite aridity.
Chalkboard, chalk, exercise books, pictures from textbook
Chalkboard, chalk, exercise books, textbooks
KLB Secondary Geography Form 3, Pages 160-161
5 5
ACTION OF WIND AND WATER IN ARID AREAS
Water Deposition Features and Dry Valleys
By the end of the lesson, the learner should be able to:
Describe alluvial fan and bajada formation at upland feet. Explain playa and salina development in basins. Identify dry river valleys (laghs/lagas) common in northern Kenya counties.
In groups, learners are guided to:
Discussion of seasonal water flow and deposition patterns. Analysis of Kenya's northern dry valleys with county examples. Students map regional examples of water features.
Maps of Kenya, chalkboard, chalk, exercise books
KLB Secondary Geography Form 3, Pages 163-164
6 1
ACTION OF WIND AND WATER IN ARID AREAS
Action of Water in Limestone Areas
Significance of Arid Features
Surface and Underground Water
By the end of the lesson, the learner should be able to:
Explain positive significance: solar energy potential, mineral resources, tourism attractions, unique ecosystems. Describe negative impacts: sand dune migration, agricultural threats, water scarcity challenges, settlement difficulties.
In groups, learners are guided to:
Discussion of arid area opportunities and challenges with global and local examples. Analysis of Kenya's ASAL development potential and problems. Students evaluate significance balance.
Chalkboard, chalk, exercise books, pictures of solar panels
Charts showing water sources, Rock samples, Diagrams of percolation and water table, Transparent containers
KLB Secondary Geography Form 3, Pages 164-165
6 2
Action of Water in Limestone Areas
Features Resulting from Underground Water
By the end of the lesson, the learner should be able to:
Identify features resulting from underground water: springs, wells, artesian basins and wells. Describe spring formation in well-jointed limestone, at scarp slopes, and spring-lines. Explain well construction and distinguish permanent, intermittent and dry wells. Define artesian basin structure and conditions for artesian well location.
In groups, learners are guided to:
Exposition on springs as "natural outflow of water from rocks" with formation methods in limestone areas. Discussion on bournes as intermittent streams in chalk areas. Explanation of wells as "holes sunk into permeable rock to reach water table" using textbook diagrams. Detailed discussion on artesian basin structure and examples including London Basin, Great Australian Basin, Sahara, Kalahari.
Topographical maps, Geological cross-sections, Textbook diagrams, 3D models, World maps
KLB Secondary Geography Form 3, Pages 170-172
6-7

Exam

8 1
Action of Water in Limestone Areas
Importance of Underground Water
By the end of the lesson, the learner should be able to:
Explain ways underground water is important to humankind and countries. Give specific examples of underground water significance including settlement, irrigation, domestic/industrial supply, geothermal energy, mineral deposits.
In groups, learners are guided to:
Brain storming on underground water uses. Detailed discussion on importance aspects including settlement sites like spring-line settlements, irrigation in dry areas like Sahara oases, domestic/industrial water like Mzima Springs supplying Mombasa, river sources in Kenyan Highlands, geothermal power like Olkaria near Naivasha, mineral deposits like salt at Homa Hills, underground streams keeping lakes fresh like Lake Naivasha.
Photographs of key sites, Maps of Kenya, Case study materials, Charts showing applications
KLB Secondary Geography Form 3, Pages 172-173
8 2
Action of Water in Limestone Areas
Action of Water in Limestone Areas and Resultant Features
Significance of Resultant Features
By the end of the lesson, the learner should be able to:
Define karst as area with limestone, chalk or dolomite. Explain chemical processes forming carbonic acid and calcium bicarbonate. Identify conditions for karst development. Describe surface features: grikes/clints, swallow holes, dolines, uvalas, poljes, gorges. Describe underground features: caves, underground rivers, stalactites, stalagmites, limestone pillars.
In groups, learners are guided to:
Q/A to review limestone characteristics from Form 1. Exposition on karst origin and chemical equations. Discussion on development conditions including jointed rocks, humid climate, deep water table. Progressive explanation of surface features using textbook diagrams and formation table. Exposition on underground features with stalactite/stalagmite formation processes. Examples from various countries including Kenya's Marafa Cave.
Limestone samples, Weak acids, Sequential diagrams, Clay for modeling, Salt solution setup, Cave photographs, Safety equipment
Economic charts, Photographs of industries, Tourism materials, Infrastructure maps, Assessment worksheets
KLB Secondary Geography Form 3, Pages 172-178
8 3
Glaciation
Definition of Terms
By the end of the lesson, the learner should be able to:
Define glaciation, ice, snow, snowline, firn, neve fields. Distinguish between permanent and temporary snowlines. Explain glacier formation conditions.
In groups, learners are guided to:
Q/A to review ice formation concepts. Exposition on glaciation definition and related terminology. Discussion on snowline variations with latitude and altitude. Explanation of firn formation through compaction processes. Discussion on glacier formation conditions and avalanche effects.
Charts showing snowline variations, Diagrams of ice formation, Maps showing ice distribution, Safety materials
KLB Secondary Geography Form 3, Pages 180-182
8 4
Glaciation
Types of Glaciers and Ice Masses
By the end of the lesson, the learner should be able to:
Distinguish between valley and piedmont glaciers. Define ice sheets and ice caps. Identify African glacier examples. Describe nunataks.
In groups, learners are guided to:
Exposition on glacier types with African examples. Discussion on ice sheet characteristics and global distribution. Explanation of ice cap types and locations. Reference to textbook glacier table showing major examples worldwide. Group work identifying glacier locations on maps.
Glacier example tables, World maps, Photographs of mountain glaciers, Distribution charts
KLB Secondary Geography Form 3, Pages 182-183
8 5
Glaciation
Icebergs and Ice Movement
By the end of the lesson, the learner should be able to:
Define icebergs and explain their formation. Describe iceberg distribution. Explain three ways ice moves. Analyze factors affecting ice movement speed.
In groups, learners are guided to:
Exposition on iceberg formation and distribution. Discussion on iceberg movement by ocean currents. Explanation of ice movement mechanisms including freeze-thaw action, basal slip, and extrusion flow. Analysis of movement speed factors and rates. Comparison of different glacier movement speeds.
World maps showing icebergs, Ocean current charts, Movement mechanism diagrams, Speed comparison data
KLB Secondary Geography Form 3, Pages 183-184
9 1
Glaciation
Processes of Glaciation
Glacial Features and Significance
By the end of the lesson, the learner should be able to:
Explain glacial erosion through plucking and abrasion. Identify factors influencing erosion. Describe glacial transportation and moraine types.
In groups, learners are guided to:
Discussion on glacial erosion processes of plucking and abrasion. Analysis of factors affecting erosion effectiveness. Explanation of glacial transportation and moraine classification. Reference to textbook diagrams showing moraine types. Q/A on glacial processes and debris movement.
Rock samples, Process diagrams, Moraine type charts, Glacial debris photographs
Formation diagrams, Feature photographs, Economic impact charts, Maps showing benefits, East African examples
KLB Secondary Geography Form 3, Pages 184-186
9 2
Soil
Definition and Composition of Soil
By the end of the lesson, the learner should be able to:
Define soil and its components. Distinguish between soil and land. Explain soil composition percentages and constituent importance.
In groups, learners are guided to:
Q/A to review weathering concepts. Exposition on soil definition and regolith formation. Discussion on soil composition including organic matter, inorganic matter, water, air percentages. Analysis of humus importance for plant nutrition.
Soil samples, Composition diagrams, Constituent charts, Microscopes
KLB Secondary Geography Form 3, Pages 198-200
9 3
Soil
Soil Forming Processes
By the end of the lesson, the learner should be able to:
Explain soil formation through weathering and decomposition. Describe leaching processes including ferralisation, eluviation, podzolisation, calcification.
In groups, learners are guided to:
Discussion on weathering as primary formation process. Exposition on decomposition stages: mineralisation and humification. Explanation of leaching types with climatic examples. Reference to formation diagrams.
Rock samples, Decomposition diagrams, Leaching process charts, Formation illustrations
KLB Secondary Geography Form 3, Pages 200-203
9 4
Soil
Factors Influencing Soil Formation
Properties and Profile
By the end of the lesson, the learner should be able to:
Identify five soil formation factors. Explain parent material influence on soil type. Analyze climate and organism effects. Describe topography and time factors.
In groups, learners are guided to:
Exposition on parent material as key factor determining soil type. Discussion on climate effects including rainfall and temperature variations. Analysis of vegetation and micro-organism roles. Explanation of slope and time influences on soil development.
Parent rock samples, Climate charts, Vegetation specimens, Maps, Time examples
Soil structure samples, pH materials, Colour charts, Profile diagrams, Catena illustrations
KLB Secondary Geography Form 3, Pages 203-205
9 5
Soil
Soil Degeneration and Erosion
Classification and Management
By the end of the lesson, the learner should be able to:
Define soil degeneration and classify types. Describe erosion types and processes. Identify conditions favouring soil erosion.
In groups, learners are guided to:
Exposition on degeneration types: physical, chemical, biological with causes. Discussion on erosion processes from splash to gully formation. Analysis of erosion factors with Kenyan examples.
Erosion photographs, Degeneration charts, Local examples, Process diagrams
Classification charts, Distribution maps, Conservation photographs, Practice examples
KLB Secondary Geography Form 3, Pages 209-214

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