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| WK | LSN | TOPIC | SUB-TOPIC | OBJECTIVES | T/L ACTIVITIES | T/L AIDS | REFERENCE | REMARKS |
|---|---|---|---|---|---|---|---|---|
| 1 |
END TERM II EXAMS REVISION |
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| 2 | 1 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Pollination - Insect Pollinated Flowers
|
By the end of the
lesson, the learner
should be able to:
To define pollination. To identify agents of pollination. To describe structure of insect-pollinated flowers. To examine insect-pollinated flowers. |
In groups, learners are guided to:
Q/A: Definition and agents of pollination. Practical examination: Structure of insect-pollinated flowers. Identification of adaptive features. Comparison with wind-pollinated flowers. Discussion: Importance of bright colors and nectar. |
Insect-pollinated flowers, Hand lens, Measuring rulers, Drawing materials
|
KLB BIOLOGY Form 3, Pages 120-121
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| 2 | 2 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Wind-Pollinated Flowers and Adaptations
|
By the end of the
lesson, the learner
should be able to:
To describe structure of wind-pollinated flowers. To identify adaptive features of wind-pollinated flowers. To compare insect and wind pollination. |
In groups, learners are guided to:
Practical examination: Structure of grass flowers, maize tassels. Identification of glumes, spikes, spikelets. Tabulate differences between insect and wind-pollinated flowers. Discussion: Adaptive features for wind pollination. |
Wind-pollinated flowers (grass, maize), Hand lens, Charts, Drawing materials
|
KLB BIOLOGY Form 3, Pages 120-121
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| 2 | 3 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Self-Pollination Prevention and Fertilisation
Seed and Fruit Development |
By the end of the
lesson, the learner
should be able to:
To discuss mechanisms preventing self-pollination. To describe fertilisation process in flowering plants. To explain double fertilisation. |
In groups, learners are guided to:
Discussion: Methods preventing self-pollination. Teacher exposition: Process of fertilisation. Drawing diagrams showing fertilisation stages. Q/A: Significance of double fertilisation. Discussion: Formation of zygote and endosperm. |
Charts showing fertilisation, Drawing materials, Textbook
Variety of fruits, Petri dishes, Scalpels, Drawing materials, Charts |
KLB BIOLOGY Form 3, Pages 121-123
|
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| 2 | 4-5 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Placentation and Internal Fruit Structure
Fruit and Seed Dispersal Review and Assessment |
By the end of the
lesson, the learner
should be able to:
To define placentation. To identify types of placentation. To label internal structure of fruits. To examine ovaries of various fruits. To explain adaptive features of fruits and seeds. To identify agents of dispersal. To classify fruits and seeds by dispersal method. |
In groups, learners are guided to:
Teacher exposition: Types of placentation. Practical examination: Ovaries of beans, sunflower, pawpaw, orange. Drawing diagrams showing placentation types. Vertical sections of fruits showing internal structure. Practical examination: Various fruits and seeds. Grouping according to dispersal methods. Discussion: Adaptive features for wind, water, animal dispersal. Demonstration of seed dispersal mechanisms. Recording observations of external features. |
Fruits (beans, sunflower, pawpaw, orange), Scalpels, Drawing materials
Variety of fruits and seeds, Hand lens, Drawing materials, Collection containers Past examination papers, Drawing materials, Assessment sheets, Charts for reference |
KLB BIOLOGY Form 3, Pages 124-130
Certificate Biology Form 3, Pages 130-131 |
|
| 3 | 1 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Introduction and Fertilisation Types
Reproduction in Amphibia and Mammalian Characteristics Female Reproductive System Structure |
By the end of the
lesson, the learner
should be able to:
To distinguish between sexual and asexual reproduction in animals. To compare external and internal fertilisation. To give examples of animals using each method. To explain advantages of each fertilisation type. |
In groups, learners are guided to:
Q/A: Review plant reproduction concepts. Discussion: Types of reproduction in animals and hermaphrodites. Detailed comparison: External vs internal fertilisation with examples. Tabulate differences and advantages of each method. |
Charts showing reproduction types and fertilisation, Textbook, Wall charts
Frog eggs specimens, Charts showing amphibian and mammalian reproduction, Hand lens Charts of female reproductive system, Drawing materials, Models if available, Textbook |
KLB BIOLOGY Form 3, Pages 147-148
|
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| 3 | 2 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Stages of Reproduction and Oogenesis
Menstrual Cycle - Follicle Development and Ovulation |
By the end of the
lesson, the learner
should be able to:
To list the stages of reproduction in mammals. To describe oogenesis from fetal development to puberty. To explain primordial follicle formation. To relate oogenesis to reproductive maturity. |
In groups, learners are guided to:
Teacher exposition: Four main reproductive stages overview. Detailed discussion: Oogenesis process from fetal development. Q/A: Primordial follicle formation and puberty changes. Drawing diagrams showing follicle development stages. |
Flow charts, Oogenesis diagrams, Drawing materials, Textbook
Menstrual cycle charts, Drawing materials, Textbook |
KLB BIOLOGY Form 3, Pages 151-152
|
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| 3 | 3 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Hormonal Control and Menstrual Phases
Ovum Structure and Fertilisation Process Early Development and Twins Formation |
By the end of the
lesson, the learner
should be able to:
To identify hormones controlling menstrual cycle. To explain FSH, LH, oestrogen and progesterone functions. To describe menstrual cycle phases and endometrium changes. To explain negative feedback mechanisms. |
In groups, learners are guided to:
Detailed discussion: Four main hormones and their interactions. Graphical analysis: Hormone levels throughout cycle. Discussion: Endometrium thickening and breakdown phases. Q/A: Negative feedback control mechanisms and menstruation. |
Hormone level graphs, Menstrual cycle phase charts, Textbook
Ovum structure charts, Fertilisation diagrams, Drawing materials, Textbook Developmental stages charts, Twin formation diagrams, Drawing materials, Textbook |
KLB BIOLOGY Form 3, Pages 154-156
|
|
| 3 | 4-5 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Implantation and Pregnancy Indicators
Gestation and Embryonic Membranes Placenta Structure and Functions |
By the end of the
lesson, the learner
should be able to:
To define implantation and describe the process. To explain chorionic villi formation and anchoring. To identify early signs of pregnancy. To explain HCG hormone function and detection. To describe placenta structure and formation. To explain maternal and fetal blood separation. To identify nutrient transfer and gas exchange functions. To discuss placental barrier limitations. |
In groups, learners are guided to:
Detailed discussion: Implantation timing and chorionic villi development. Teacher exposition: Blastocyst embedding in endometrium. Discussion: Early pregnancy symptoms and HCG hormone. Q/A: Laboratory confirmation methods and pregnancy tests. Detailed discussion: Placenta as temporary organ with dual tissue origin. Teacher exposition: Blood vessel arrangement and separation mechanisms. Discussion: Nutrient, oxygen transfer and harmful substance passage. Q/A: Placental protection and its limitations. |
Implantation charts, Pregnancy test demonstration materials, Textbook
Gestation charts, Fetal development models, Drawing materials, Textbook Placenta structure diagrams, Function charts, Drawing materials, Textbook |
KLB BIOLOGY Form 3, Pages 158-159
Certificate Biology Form 3, Pages 161-163 |
|
| 4 | 1 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Pregnancy Hormones and Parturition
Male Reproductive System Structure and Functions |
By the end of the
lesson, the learner
should be able to:
To identify hormones during pregnancy. To explain HCG, progesterone and oestrogen roles. To describe hormonal changes triggering birth. To explain the parturition process. |
In groups, learners are guided to:
Discussion: Hormone secretion patterns during pregnancy. Teacher exposition: HCG, progesterone, oestrogen functions and interactions. Detailed explanation: Hormonal triggers for birth and oxytocin role. Q/A: Uterine contractions, cervix dilation and delivery stages. |
Pregnancy hormone charts, Birth process diagrams, Hormone level graphs, Textbook
Male reproductive system charts, Drawing materials, Models if available, Textbook |
KLB BIOLOGY Form 3, Pages 163-165
|
|
| 4 | 2 |
REPRODUCTION IN PLANTS AND ANIMALS
|
Sperm Structure and Male Hormones
|
By the end of the
lesson, the learner
should be able to:
To draw and label spermatozoon structure. To explain head, middle piece and tail functions. To describe testosterone and FSH roles. To identify secondary sexual characteristics. |
In groups, learners are guided to:
Drawing and labeling: Detailed sperm structure showing all components. Discussion: Sperm adaptations for fertilization and motility. Teacher exposition: Hormone control of sperm production and male development. Q/A: Testosterone effects and secondary sexual characteristics. |
Sperm structure diagrams, Male hormone charts, Drawing materials, Textbook
|
KLB BIOLOGY Form 3, Pages 166-167
|
|
| 4 | 3 |
REPRODUCTION IN PLANTS AND ANIMALS
|
HIV/AIDS - Causes and Transmission
AIDS Symptoms and Prevention |
By the end of the
lesson, the learner
should be able to:
To describe HIV virus and immune system effects. To explain AIDS development and symptoms. To identify HIV transmission modes. To discuss high-risk behaviors. |
In groups, learners are guided to:
Detailed discussion: HIV virus structure and immune system destruction. Teacher exposition: AIDS development and opportunistic diseases. Discussion: Transmission modes - sexual, blood, mother-to-child. Q/A: High-risk behaviors and transmission prevention. |
AIDS awareness charts, HIV transmission diagrams, Educational materials, Textbook
AIDS symptom charts, Prevention posters, Case study materials, Textbook |
KLB BIOLOGY Form 3, Pages 167-170
|
|
| 4 | 4-5 |
REPRODUCTION IN PLANTS AND ANIMALS
REPRODUCTION IN PLANTS AND ANIMALS GROWTH AND DEVELOPMENT GROWTH AND DEVELOPMENT |
Bacterial STIs - Gonorrhea and Syphilis
Viral STIs and Other Infections Introduction and Definitions Measurement of Growth |
By the end of the
lesson, the learner
should be able to:
To describe gonorrhea causes, symptoms and treatment. To explain syphilis stages and progression. To identify transmission modes for bacterial STIs. To discuss antibiotic treatment and prevention. To describe genital herpes causes and symptoms. To explain hepatitis B transmission and effects. To identify trichomoniasis and other STIs. To emphasize prevention strategies for all STIs. |
In groups, learners are guided to:
Detailed discussion: Gonorrhea bacterium and reproductive tract effects. Teacher exposition: Syphilis stages - primary, secondary, tertiary. Q/A: Transmission modes and treatment with antibiotics. Discussion: Prevention methods and partner responsibility. Discussion: Viral STIs and their incurable nature. Teacher exposition: Herpes simplex virus effects and dormancy. Q/A: Hepatitis B liver effects and vaccination. Discussion: Comprehensive STI prevention and faithful relationships. |
STI information charts, Bacterial infection diagrams, Textbook
Viral STI charts, Prevention strategy posters, Textbook Charts showing growth and development, Textbook, Wall charts Measuring instruments, Scales, Rulers, Calculators, Sample plants |
KLB BIOLOGY Form 3, Pages 171-172
Certificate Biology Form 3, Page 172 |
|
| 5 | 1 |
GROWTH AND DEVELOPMENT
|
Patterns and Rate of Growth
Factors Controlling Plant Growth Stages of Growth and Life Cycle |
By the end of the
lesson, the learner
should be able to:
To describe continuous and discontinuous growth patterns. To interpret growth curves for plants. To explain factors affecting growth rate. To calculate growth rates from given data. |
In groups, learners are guided to:
Analysis of growth curves showing continuous vs discontinuous patterns. Teacher exposition: Growth phases A-B, B-C, C-D, D-E, E-F. Discussion: Environmental effects on growth patterns. Mathematical exercises: Calculating growth rates from data. |
Growth curve charts, Graph paper, Calculators, Sample data sets
Environmental factor charts, Temperature scales, Light meters if available, Textbook Plant life cycle charts, Examples of annual and perennial plants, Textbook |
KLB BIOLOGY Form 3, Pages 179-180
|
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| 5 | 2 |
GROWTH AND DEVELOPMENT
|
Seed Structure - Monocots and Dicots
Conditions for Germination Types of Germination |
By the end of the
lesson, the learner
should be able to:
To examine and draw structure of monocot and dicot seeds. To identify parts of bean and maize seeds. To compare structural differences between seed types. To explain functions of seed parts. |
In groups, learners are guided to:
Practical examination: Soaked bean and maize seeds. Dissection and identification of seed parts. Drawing and labeling: Bean seed cotyledons, embryo, testa. Drawing maize grain: endosperm, scutellum, plumule, radicle. Comparison table of monocot vs dicot seeds. |
Soaked bean and maize seeds, Hand lens, Scalpels, Drawing materials, Iodine solution
Germination apparatus, Seeds at different stages, Temperature monitoring equipment, Textbook Germinating seeds at various stages, Drawing materials, Observation trays, Hand lens |
KLB BIOLOGY Form 3, Pages 182-183
|
|
| 5 | 3 |
GROWTH AND DEVELOPMENT
|
Germination Practical Investigation
Primary Growth and Meristems |
By the end of the
lesson, the learner
should be able to:
To set up germination experiments for different seed types. To observe daily changes in germinating seeds. To record measurements and growth data. To compare germination patterns. |
In groups, learners are guided to:
Practical work: Setting up germination experiments with bean and maize seeds. Daily observations and measurements of seedling growth. Recording data: root length, shoot height, leaf development. Drawing stages of germination over time. Data collection for growth rate calculations. |
Seeds, Petri dishes, Cotton wool, Measuring rulers, Data recording sheets, Clay pots
Meristem distribution charts, Drawing materials, Microscope slides of meristems, Textbook |
KLB BIOLOGY Form 3, Pages 200-201
|
|
| 5 | 4-5 |
GROWTH AND DEVELOPMENT
|
Secondary Growth and Cambium Activity
Annual Rings and Plant Dormancy |
By the end of the
lesson, the learner
should be able to:
To describe secondary growth in dicots. To explain vascular cambium and cork cambium functions. To identify secondary xylem and phloem formation. To relate secondary growth to plant strength and support. To explain annual ring formation in temperate trees. To describe factors causing plant dormancy. To identify dormancy in buds, seeds and organs. To explain dormancy advantages for plant survival. |
In groups, learners are guided to:
Detailed discussion: Secondary thickening in woody plants. Teacher exposition: Vascular cambium tangential divisions. Q/A: Secondary xylem and phloem development. Discussion: Cork cambium, lenticels and bark formation. Drawing cross-sections showing secondary tissues. Discussion: Annual growth seasons and ring formation. Teacher exposition: Environmental factors triggering dormancy. Q/A: Metabolic changes during dormancy periods. Discussion: Dormancy in bulbs, corms, rhizomes. Examples of seasonal dormancy in tropical plants. |
Secondary growth diagrams, Tree trunk sections, Drawing materials, Hand lens
Tree trunk cross-sections, Dormant plant organs, Charts, Textbook |
KLB BIOLOGY Form 3, Pages 186-188
Certificate Biology Form 3, Page 188 |
|
| 6 |
HALF TERM BREAK |
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| 7 | 1 |
GROWTH AND DEVELOPMENT
|
Seed Dormancy and Breaking Mechanisms
Plant Growth Substances - Auxins |
By the end of the
lesson, the learner
should be able to:
To describe seed dormancy characteristics. To explain factors that break seed dormancy. To identify vernalization, moisture, light and chemical effects. To discuss advantages of seed dormancy. |
In groups, learners are guided to:
Detailed discussion: Dormant seed characteristics and low metabolic activity. Teacher exposition: Vernalization, moisture, light requirements. Q/A: Chemical inhibitors and gibberellic acid effects. Discussion: Dormancy advantages - dispersal time, favorable conditions. |
Dormant seeds, Germination comparison setups, Chemical solutions, Textbook
Auxin experiment diagrams, Plant cuttings, Rooting powder demonstration, Textbook |
KLB BIOLOGY Form 3, Pages 188-189
|
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| 7 | 2 |
GROWTH AND DEVELOPMENT
|
Gibberellins, Cytokinins and Other Hormones
|
By the end of the
lesson, the learner
should be able to:
To describe gibberellin functions and effects. To explain cytokinin roles in cell division and growth. To identify abscissic acid as growth inhibitor. To describe ethene and florigen effects. |
In groups, learners are guided to:
Discussion: Gibberellin effects on stem elongation and seed germination. Teacher exposition: Cytokinin functions in meristematic tissues. Q/A: Abscissic acid antagonistic effects. Discussion: Ethene in fruit ripening and florigen in flowering. |
Plant hormone effect charts, Ripening fruits, Textbook
|
KLB BIOLOGY Form 3, Pages 192-194
|
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| 7 | 3 |
GROWTH AND DEVELOPMENT
|
Practical Applications of Plant Hormones
Animal Growth Patterns and Life Cycles |
By the end of the
lesson, the learner
should be able to:
To explain commercial uses of plant hormones. To describe hormone applications in agriculture and horticulture. To identify hormone uses in crop production. To discuss economic benefits of hormone applications. |
In groups, learners are guided to:
Discussion: Commercial applications of auxins in propagation. Teacher exposition: Gibberellins in brewing and dwarf plant treatment. Q/A: Hormone use in fruit production and weed control. Case studies: Economic benefits in agriculture and horticulture. |
Hormone application examples, Agricultural product samples, Case study materials
Growth curve charts, Animal development examples, Graph paper, Textbook |
KLB BIOLOGY Form 3, Pages 191-194
|
|
| 7 | 4-5 |
GROWTH AND DEVELOPMENT
|
Complete Metamorphosis
Incomplete Metamorphosis Hormonal Control of Growth in Animals Growth Measurement Practical |
By the end of the
lesson, the learner
should be able to:
To describe complete metamorphosis stages. To explain life cycle of housefly and butterfly. To identify egg, larva, pupa and adult stages. To discuss economic importance of insects with complete metamorphosis. To describe incomplete metamorphosis characteristics. To explain life cycles of cockroach and locust. To identify nymphal stages and molting process. To compare complete and incomplete metamorphosis. |
In groups, learners are guided to:
Detailed study: Housefly life cycle - egg, maggot, pupa, imago. Teacher exposition: Butterfly development - caterpillar, chrysalis, adult. Q/A: Structural and behavioral differences between stages. Discussion: Economic importance - pests, silk production. Discussion: Egg to adult development through nymphal stages. Teacher exposition: Cockroach and locust life cycles. Q/A: Molting/ecdysis process and wing development. Comparison table: Complete vs incomplete metamorphosis. |
Insect life cycle charts, Preserved specimens if available, Drawings, Textbook
Incomplete metamorphosis charts, Grasshopper specimens, Comparison tables, Textbook Hormone control charts, Animal development diagrams, Textbook Growing plants, Measuring rulers, Data recording sheets, Graph paper, Calculators |
KLB BIOLOGY Form 3, Pages 195-198
Certificate Biology Form 3, Pages 198-199 |
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| 8 |
TERM III EXAMS |
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| 9 |
TERM III EXAMS AND CLOSING |
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