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Biology
Form 3 2024
TERM II
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WK LSN TOPIC SUB-TOPIC OBJECTIVES T/L ACTIVITIES T/L AIDS REFERENCE REMARKS
2 1
ECOLOGY
Ecological pyramids of numbers.
Constructing Pyramid of numbers from given data.
By the end of the lesson, the learner should be able to:
To represent feeding relationships and energy flow using pyramids of numbers.
To construct pyramid of numbers from given data.
To interpret constructed pyramid of numbers from given data.
Q/A: Review trophic levels.
Teacher explains features of pyramid of numbers.
Q/A: Identifying trophic levels of organisms.
Use given date to construct pyramid of numbers.
Supervised Exercise.
chart
text book
KLB BK III. PP 41-42. CERTIFICATE PG 49
2 2-3
ECOLOGY
Inverted pyramid of numbers.
Pyramid of Biomass.
Population.
Quadrat method of estimating population.
By the end of the lesson, the learner should be able to:
Give examples where an inverted pyramid of numbers exists; giving reasons thereof.
To define biomass of an organism.
To interpret the pyramid of biomass.
To construct a biomass from given data.
To describe some characteristics of populations.
To explain factors affecting population growth rate.
To describe the quadrat method of estimating population.
To suggest limitations of quadrat method of estimating population.
Representing inverted pyramid of numbers diagrammatically.
Teacher exposes new concepts; then leads in a detailed discussion.
Students construct biomass from given data.
Q/A: Definition of population.
Discuss population density, dispersion and growth.
Q/A: Factors affecting population growth rate; including food availability, space, diseases such as HIV/AIDS, pests, e.t.c.
Teacher explains use of quadrat method of estimating population.
Q/A: limitations of quadrat method of estimating population.
Project- students to make quadrats.
Chart- Inverted pyramid of numbers.
chart
text book
KLB BK III. PP 43-44 CERTIFICATE PG 50
KLB BK III. P 46.  CERTIFICATE PG 60
2 4
ECOLOGY
Quadrat method of estimating population.
Line - transect method of estimating population.
By the end of the lesson, the learner should be able to:
To estimate population using quadrat method.
To describe the line transect method of population.
To suggest limitations of line transect method of population.
Students? outdoor activity- Estimating population using standard quadrats.
Teacher explains procedure of line transect method of population.
Q/A: Students suggest limitations of line transect method of population.
Standard quadrats.
text book
KLB BK III. PP
46-47. CERTIFICATE PG 62
2 5
ECOLOGY
Belt transect method of estimating population.
Capture-recapture method.
By the end of the lesson, the learner should be able to:
To estimate population using belt transect method of population.
To describe capture-recapture method of estimating population.
To suggest limitations of capture-recapture method.
To estimate population size using capture-recapture method.
Group work ? outdoor activity.
Discussion.
Detailed discussion and explanations.
Q/A: Assumptions made in this method, limitations of the method.
Worked examples.
Tape measure, quadrats, pegs, thermometer, pH indicator, e.t.c
specimen
KLB BK III. PP 48-49. CERTIFICATE PG 63
3 1
ECOLOGY
Xerophytes.
Mesophytes.
By the end of the lesson, the learner should be able to:
To state characteristics of dry habitats.
To identify adaptations of xerophytes to their habitats.
To state characteristics of habitats of mesophytes.
To explain adaptations of mesophytes to their habitats.
Q/A: Characteristics of dry habitats.
Discussion: Adaptations of xerophytes to dry habitats.
Q/A: Characteristics of habitats where mesophytes thrive.
Discussion: Adaptations of mesophytes to their habitats.
Specimens of xerophytes.
Specimens of mesophytes.
KLB BK III. P 50. CERTIFICATE PG 64
3 2-3
ECOLOGY
Hydrophytes.
Halophytes.
By the end of the lesson, the learner should be able to:
To state characteristics of habitats of hydrophytes.
To explain adaptations of hydrophytes to their habitats.
To state characteristics of habitats of halophytes.
To explain adaptations of halophytes to their habitats.
Q/A: Characteristics of habitats where hydrophytes.
thrive.

Discussion: Adaptations of hydrophytes to their habitats.

Q/A: Characteristics of dry habitats.
Discussion: Adaptations of dry habitats.
Specimens of hydrophytes.
Specimens of halophytes.
KLB BK III. P 51. CERTIFICATE PG 66
KLB BK III. P 52. CERTIFICATE PG 68
3 4
ECOLOGY
Adaptive features of plants.
Pollution and its effects.
By the end of the lesson, the learner should be able to:
To define pollution, pollutants.
To explain effects of pollution on human beings and other organisms.
Group experiments- Students examine given specimens and suggest their habitats.
Identify adaptive features.
Discussion punctuated with Q/A.
Xerophytes Mesophytes
Hydrophytes
Hand lenses.
text book
KLB BK III. P 50. CERTIFICATE PG 69
3 5
ECOLOGY
Air pollution.
By the end of the lesson, the learner should be able to:
To identify causes and effects of air pollution.
To suggest control measures of air pollution.

Detailed discussion & probing questions.
topic related video
KLB BK III. PP 56-59. CERTIFICATE PG 70
4 1
ECOLOGY
Water pollution.
By the end of the lesson, the learner should be able to:
To identify causes and effects of water pollution.
To suggest control measures of water pollution.

Detailed discussion & Q/A.
video of water pollution
KLB BK III. P 60. CERTIFICATE PG 77
4 2-3
ECOLOGY
Soil pollution.
Radioactive emissions.
Human diseases. Typhoid & cholera.
By the end of the lesson, the learner should be able to:
To identify causes and effects of soil pollution.
To suggest control measures of soil pollution.
To identify effects of radioactive emissions.
To state uses of nuclear energy.
To identify disease predisposing factors.
To describe causative agents, symptoms, prevention of bacterial diseases.

Detailed discussion & Q/A.
Brief discussion on radioactive emissions and nuclear energy
Detailed discussion with probing questions.

text book
KLB BK III. P 62. CERTIFICATE PG 80
KLB BK III. P 63. CERTIFICATE PG 82
4 4
ECOLOGY
Protozoan diseases.
Prevention and control of protozoan diseases.
By the end of the lesson, the learner should be able to:
To identify causal agents, symptoms, prevention and treatment of amoebic dysentery and malaria.
To explain methods of preventing and controlling protozoan diseases.
Detailed discussion, Q/A.
magazine
KLB BK III. PP 66. CERTIFICATE PG 83
4 5
ECOLOGY
Ascaris lumbricoides.
By the end of the lesson, the learner should be able to:
To identify adaptive features of Ascaris lumbricoides.
To state and explain effects of a parasite on the host.
To suggest preventive and control measures.
Group activities: Students examine preserved specimens of Ascaris lumbricoides and identify some adaptive features.

Detailed discussion.
Preserved specimens of Ascaris lumbricoides.
KLB BK III. P 67. CERTIFICATE PG 87
5 1
ECOLOGY
REPRODUCTION IN PLANTS AND ANIMALS
Bilharzia.
Introduction
By the end of the lesson, the learner should be able to:
To identify causal and transmission agents of bilharzia.
To describe effects of the parasite on its host.
To identify adaptive features of schistosoma.
To differentiate between sexual and asexual reproduction.
To state importance of reproduction.
Brief discussion
Q/A: Effects on host and control measures.
Q/A: Defination of reproduction.
Teacher illustrates and explains sexual and asexual reproduction.
chart
text book
KLB BK III. P 69. CERTIFICATE PG 86
5 2-3
REPRODUCTION IN PLANTS AND ANIMALS
Cell division.
Mitosis.
Mitosis in a young root tip.
By the end of the lesson, the learner should be able to:
To define genes and chromosomes.
To describe the role of chromosomes in cell division.

To describe the process of mitosis.
To describe an experiment to show mitosis in a young root tip.
Detailed discussion.
Teacher leads in a detailed discussion.
Drawing diagrams showing stages of mitosis.
Group experiments: Observing different stages of mitosis. Drawing cells showing stages of mitosis.
Comparing drawn cells with those previously drawn.
chart
charts
Onion root tip.
Microscope
IM HCl
Cover slides.
KLB BK III.
P 79. CERTIFICATE PG100
KLB BK III.
P 80. CERTIFICATE PG 100
5 4
REPRODUCTION IN PLANTS AND ANIMALS
Significance of mitosis.
Meiosis.
By the end of the lesson, the learner should be able to:
To explain significance of mitosis.
To distinguish meiosis from mitosis.
To explain the principle underlying meiosis.
Detailed discussion.
Explanations
text book
KLB BK III.
P 81. CERTIFICATE PG102
5 5
REPRODUCTION IN PLANTS AND ANIMALS
First and second meiotic divisions.
By the end of the lesson, the learner should be able to:
To describe the processes of first and second meiotic divisions.
Explanations and drawing diagrams.
Chart- stages of second meiotic division.
KLB BK III.
P 82. CERTIFICATE PG 104
6 1
REPRODUCTION IN PLANTS AND ANIMALS
Meiosis in plant cells.
Significance of meiosis.
By the end of the lesson, the learner should be able to:
To identify various stages of meiosis.
To explain significance of meiosis.
Group experiments- meiosis in young flower bulbs.
Drawing cells showing stages of meiosis.
Comparing drawn cells with those previously drawn.
Detailed discussion.
Probing questions leading to differences between mitosis and meiosis.
Flower buds
IM HCl
Source of heat
Glass slide
Filter paper
Microscope
KLB BK III.
P 82. CERTIFICATE PG 105
6 2-3
REPRODUCTION IN PLANTS AND ANIMALS
Asexual reproduction. Binary fission.
Spore formation.
Budding.
Budding in yeast.
By the end of the lesson, the learner should be able to:
To identify types of asexual reproduction.
To describe the stages of binary fission in amoeba.
To describe the process of spore formation in bread// ugali mould.
To explain conditions necessary for budding in yeast.
Exposition and discussion.
Drawing diagrams/ discussion.
Mould on bread /ugali.
Identify and draw hyphae and sporangia.
Exposition and discussion.
Identifying, drawing and labeling yeast cells.
Chart- Binary fission in amoeba
Microscope bread/ ugali mould
Hand lens.
Previously prepared 10% sugar solution
Methylene blue
Microscope
KLB BK III.
P 87.CERTIFICATE PG 113
KLB BK III.
P 89.CERTIFICATE PG 113
6 4
REPRODUCTION IN PLANTS AND ANIMALS
Sexual reproduction in plants. Structure of a flower.
By the end of the lesson, the learner should be able to:
To draw and label a flower.
Group experiments- Examine flowers and identify parts.
Counting number of sepals, petals, stamen, carpels.
Bean flower
Morning glory
Bauhinia Longitudinal section of a general flower.
KLB BK III.
P 90.CERTIFICATE PG 117
6 5
REPRODUCTION IN PLANTS AND ANIMALS
Flower terminologies.
By the end of the lesson, the learner should be able to:
To explain terms related to flowers.
Exposition of new concepts.
Teacher demonstration- examining features of flowers.
Flowers.
KLB BK III.
P 91.CERTIFICATE PG 117
7 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 the structure of insect-pollinated flowers.
Q/A: Definition of pollination.
Agents of pollination.
Class experiment- Structure of insect pollinated flowers.
Students identify various parts.
Insect-pollinated flowers.
KLB BK III.
P 93.CERTIFICATE PG 119
7 2-3
REPRODUCTION IN PLANTS AND ANIMALS
Wind-pollinated flowers.
Adaptive features of wind-pollinated flowers.
Features hindering self-pollination.
By the end of the lesson, the learner should be able to:
To describe the structure of wind-pollinated flowers.
To state and explain adaptive features of wind-pollinated flowers.
To discuss features and mechanisms that hinder self-pollination in plants.
Class experiment-examine inflorescence of star grass/ maize/ sugarcane.
Identify glumes, spikes and spikelets.
Compare them in text books/ charts.
Q/A: adaptive features of wind-pollinated flowers.
Exposition and detailed discussion.
Wind-pollinated flowers.
Wind-pollinated flowers.
wind & inect pollinated flower
KLB BK III.
PP 93-94.CERTIFICATE PG 119
KLB BK III. PP 93-94.CERTIFICATE PG 119
7 4
REPRODUCTION IN PLANTS AND ANIMALS
Fertilisation process in flowering plants.
By the end of the lesson, the learner should be able to:
To define fertilisation.

To describe the fertilisation process in flowering plants.

Drawing diagrams,
detailed discussion.
chart
KLB BK III.
P 95.CERTIFICATE PG 121
7 5
REPRODUCTION IN PLANTS AND ANIMALS
Seed formation.
By the end of the lesson, the learner should be able to:

To explain formation of seeds.

Detailed discussion.
text book
KLB BK III.
P 97.CERTIFICATE PG 123
8 1
REPRODUCTION IN PLANTS AND ANIMALS
Fruit development.
By the end of the lesson, the learner should be able to:

To describe development of fruits in flowering plants.

Detailed discussion.

text book
KLB BK III.
P 98.CERTIFICATE PG 124
8 2-3
REPRODUCTION IN PLANTS AND ANIMALS
Classification of fruits.
Placentation.
By the end of the lesson, the learner should be able to:
To classify fruits using specific criteria.

To define placentation.
To describe the process of placentation.
To identify types of placentation.
Teacher presents several types of fruits and leads students in classifying them.
Detailed discussion, drawing of diagrams.


Teacher exposes the meaning of placentation.
Students examine ovaries of various fruits as the teacher exposes the types of placentation exhibited.
Students draw diagrams showing types of placentation.

A variety of fruits, petri dishes
Blades
Containers.

Fruits
Beans
Sunflower
Pawpaw
Orange
Primrose, e.t.c
KLB BK III.
P 99. CERTIFICATE PG 125
KLB BK III.
P 100.CERTIFICATE PG 130
8 4
REPRODUCTION IN PLANTS AND ANIMALS
Fruit and seed dispersal.
By the end of the lesson, the learner should be able to:
To explain adaptive features of fruits and seeds to their agents of dispersal.
Students examine fruits and seeds, observe external features, and group them accordingly to methods of dispersal.
Detailed discussion of observations made.


text book
KLB BK III. PP. 102-103 CERTIFICATE PG 130
8 5
REPRODUCTION IN PLANTS AND ANIMALS
Internal structure of fruits.
Sexual reproduction in animals. External fertilisation.
By the end of the lesson, the learner should be able to:
To label the parts of internal structure of a fruit.
To identify the functions of internal parts of a fruit.
To describe external fertilisation in amphibians.
Teacher demonstration- Vertical sections of fruits.
Students draw and label the fruit internal structure.
Detailed discussion.
charts
Strands of eggs of frogs.
KLB BK III. P. 104 
9 1
REPRODUCTION IN PLANTS AND ANIMALS
Internal fertilisation.
By the end of the lesson, the learner should be able to:
To describe internal fertilisation and compare it with external fertilisation.
Tabulate differences between external and internal fertilisation.
KLB BK III. P. 105CERTIFICATE PG 148
9 2-3
REPRODUCTION IN PLANTS AND ANIMALS
Reproduction in mammals. Reproduction in human beings.
Functions of parts of male reproduction system.
Male reproduction system of a male animal.
By the end of the lesson, the learner should be able to:
To explain the reproduction process in mammals.
To draw and label the structure of male reproduction system.
To explain the male reproduction system.
To identify parts of male reproduction system of a rabbit/ rat.
Detailed discussion.
Drawing and labeling male reproduction system.
To examine reproduction system of a male rabbit /rat.
Identify the parts of the reproduction system.


Wall charts-Reproduction system.
text book
Reproduction system of a rabbit/ rat.
KLB BK III. P. 105 CERTIFICATE PG 149
KLB BK III. P. 108 CERTIFICATE PG 164
9 4
REPRODUCTION IN PLANTS AND ANIMALS
Female reproduction system.
Functions of parts of female reproduction system.
By the end of the lesson, the learner should be able to:
To draw and label parts of the female reproduction system.
To explain the functions of parts of female reproduction system.
Drawing and labeling.
Detailed discussion.
chart
KLB BK III. PP.
108-110. CERTIFICATE PG 164
9 5
REPRODUCTION IN PLANTS AND ANIMALS
Female reproduction system of a female animal.
Formation of ova.
By the end of the lesson, the learner should be able to:
To identify parts of female reproduction system of a female animal.
To draw and label the human spermatozoon.
To describe the process of formation of ova.
Examine parts of a female reproduction system.
Identify the parts.
Drawing and labelling.
Detailed discussion.
Q/A: Adaptations of male gamete to its function.
Dissected female rat/ mouse/rabbit.
text book
KLB BK III. P.110 CERTIFICATE PG 151

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