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SCHEME OF WORK
Biology
Form 4 2025
TERM I
School


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WK LSN TOPIC SUB-TOPIC OBJECTIVES T/L ACTIVITIES T/L AIDS REFERENCE REMARKS
1 1
GROWTH & DEVELOPMENT.
The concepts of growth and development.
Measurement of growth.
By the end of the lesson, the learner should be able to:
To distinguish growth from development.
Q/A: Aspects that occur during growth.
Detailed discussion of growth and development.
text book
KLB BK III. P. 134 CERTIFICATE PG 178
1 2
GROWTH & DEVELOPMENT.
Growth phases.
By the end of the lesson, the learner should be able to:
To describe lag and decelerating phases of growth.
Students will have collected data, e.g. height of shoots of different ages.
Teacher assists students to draw growth curves.
Discussion- phases of growth.
Shoots of known ages.
KLB BK III. P. 135 CERTIFICATE PG 179
1 3
GROWTH & DEVELOPMENT.
Intermittent growth curve.
Structure of the seed.
By the end of the lesson, the learner should be able to:
Explain growth curve showing intermittent growth.
Q/A: life cycles of insects.
Exposition and detailed discussion.
chart
Specimens of maize and bean seeds.
KLB BK III. P. 135 CERTIFICATE PG 179
1 4
GROWTH & DEVELOPMENT.
Longitudinal sections of monocots and dicots.
Dormancy in seeds.
By the end of the lesson, the learner should be able to:
To identify structural differences between monocots and dicots.
Obtain longitudinal section of the seeds.
Identify structural differences of the specimens.
Carry out iodine tests.
Explain the observations.
Hand lens
Maize and bean seeds.
Iodine
Scalpels.
video
KLB BK III. P. 136  CERTIFICATE PG 182
2 1
GROWTH & DEVELOPMENT.
Seed germination.
By the end of the lesson, the learner should be able to:
To describe the process of seed germination.
To investigate conditions necessary for germination.
To explain conditions necessary for germination.
Observe previously prepared specimens.
Discuss the observations.
Seeds
Cotton wool
Flat bottomed flasks
Corks
T-tubes
Thermometers
pyrogallic acid
NaOH solution.
KLB BK III.
P 140. CERTIFICATE PG 184
2 2
GROWTH & DEVELOPMENT.
Epigeal germination.
Hypogeal germination.
By the end of the lesson, the learner should be able to:
To differentiate between epigeal and hypogeal germination.
To describe epigeal germination.
Observe previously prepared specimens of germinating bean seed/ castor seed.
Drawing comparative diagrams.
Specimens of germinating bean/castor seed at different phases of germination.
Specimens of germinating maize seed at different phases of germination.
KLB BK III. P. 141 CERTIFICATE PG 184
2 3
GROWTH & DEVELOPMENT.
Primary growth of a seedling.
Region of growth in a root.
By the end of the lesson, the learner should be able to:
To describe primary growth of a seedling.
Brief discussion.
Germinating bean seeds
Cork pin
Beaker
Indian ink
Blotting paper
Ruler.
KLB BK III. P 143 CERTIFICATE PG 186
2 4
GROWTH & DEVELOPMENT.
Apical meristems.
Secondary growth.
By the end of the lesson, the learner should be able to:
To draw and label longitudinal and transverse sections of apical meristems.

Drawing and labelling transverse sections of apical meristems.
Charts- Apical meristems.
text book
KLB BK III. P. 144 CERTIFICATE PG 186
3 1
GROWTH & DEVELOPMENT.
Growth hormones.
Apical dominance.
By the end of the lesson, the learner should be able to:
To explain role of hormones in growth of plants.
Discuss the role of IAA, gibberellins, cytokinins, and abscisic acid e.t.c, in plant growth.
text book
Shoot with lateral growth.
KLB BK III. P. 147 CERTIFICATE PG 190
3 2
GROWTH & DEVELOPMENT.
Growth and development in insects.
Role of hormones in insect growth.
By the end of the lesson, the learner should be able to:
To differentiate between complete and incomplete metamorphosis.
Q/A: Features of complete and incomplete metamorphosis of insects.
chart
text book
KLB BK III. PP.148-14.9 CERTIFICATE PG 194
3 3
GENETICS
The concept of variation.
By the end of the lesson, the learner should be able to:


Define Genetics.
Define variation.
Exposition of new concepts.
Probing questions on some variations in human beings.
Observe some variations in human beings such as tongue rolling, finger prints, students? heights, etc.
Discussion on the concept of variation.


Ink pad, hand lenses, white paper.

KLB BK IV.
PP 1-2.
3 4
GENETICS
Discontinuous variation.
By the end of the lesson, the learner should be able to:
Define discontinuous variation.
Observe some discontinuous variations in human beings such as tongue rolling, sex, blood groups, etc.
Discussion on the concept of discontinuous variation.

text book
KLB BK IV.
P 3.
4 1
GENETICS
Continuous variation.
By the end of the lesson, the learner should be able to:
Define continuous variation.
Give examples of characteristics that show continuous variation.




Class activity ; students measure and record their heights;
Plotting of frequency-height graph;
Analyzing the graph;
Discussion with probing questions.
Metre rules/ tape measure,
Graph papers

KLB BK IV.
PP 3-4
4 2
GENETICS
Causes of variation.
By the end of the lesson, the learner should be able to:
Discuss causes of variation.
Exposition of new concepts.
Discussion with probing questions.

text book
KLB BK IV.
P 4
4 3
GENETICS
The chromosome.
Chromosomal behaviour during mitosis.
By the end of the lesson, the learner should be able to:
Describe the structure of chromosomes.
Exposition of new concepts.
Probing questions.
Discussion.
text book
Scissors,
Manilla papers, thread, cellotape.
KLB BK IV. PP 4-5.
4 4
GENETICS
Chromosomal behaviour during meiosis.
By the end of the lesson, the learner should be able to:
Describe chromosomal behaviour during meiosis.
Exposition;
Teacher demonstrations;
Drawing diagrams;
Detailed discussion.
Scissors,
Manilla papers, threads, cellotape.
KLB BK IV. PP 6-7
5 1
GENETICS
Genes and DNA.
By the end of the lesson, the learner should be able to:
Describe the structure of genes and DNA.
Identify the role of DNA.
Expository approach.
Chart- the double helix DNA.
KLB BK IV. PP 7-8
5 2
GENETICS
DNA replication.
By the end of the lesson, the learner should be able to:
Describe DNA replication.
Explain the role of DNA in protein synthesis.
Exposition;
Drawing mRNA strands.
text book
KLB BK IV. PP 9-10
5 3
GENETICS
First law of heredity.
By the end of the lesson, the learner should be able to:
Describe Mendel?s experiments.
State Mendel?s first law.
Exposition with explanations.
KLB BK IV. PP 11-12
5 4
GENETICS
Monohybrid inheritance.
By the end of the lesson, the learner should be able to:
Define monohybrid inheritance.
Differentiate between genotype and phenotype.
Draw diagrams to show genetic crosses.
Q/A to review Mendel?s first law.
Drawing diagrams to show genetic crosses.
Discussion with probing questions.
text book
KLB BK IV. PP 12-14
6 1
GENETICS
Genetic crosses using a punnet square.
By the end of the lesson, the learner should be able to:
Show fusion of gametes using a punnet square.
Completing a punnet square;
Brief discussion.
text book
KLB BK IV. PP 14-15
6 2
GENETICS
Ratios of phenotypes and genotypes.
By the end of the lesson, the learner should be able to:
Explain the concept of probability in inheritance of characteristics.
Q/A to review phenotypes and genotypes.
Simple experiments on probability.
Discussion.
Beans of two different colours, beakers.
KLB BK IV. PP 15-17
6 3
GENETICS
Incomplete dominance.
Inheritance of ABO blood groups.
By the end of the lesson, the learner should be able to:
Cite examples of incomplete dominance.
Illustrate incomplete dominance with diagrams.
Exposition;
Discussion;
Drawing diagrams.
chart
KLB BK IV. PP 19-20.
6 4
GENETICS
Inheritance of Rhesus factor.
By the end of the lesson, the learner should be able to:
Describe inheritance of Rhesus factor.
Exposition;
Discussion.
chart
KLB BK IV. PP 21-22
7 1
GENETICS
Determining unknown genotypes.
Sex determination in man.
By the end of the lesson, the learner should be able to:
Determine unknown genotypes using test crosses and selfing crosses.
Exposition;
Probing questions;
Drawing illustrative diagrams;
Discussion.
text book
KLB BK IV. PP 22-23
7 2
GENETICS
Sex-linked genes and traits.
By the end of the lesson, the learner should be able to:
Identify sex-linked traits in man.
Illustrate inheritance of sex-linked traits with diagrams.
Probing questions;
Drawing illustrative diagrams;
Discussion.
text book
KLB BK IV. PP 24-27
7 3
GENETICS
Non-disjunction.
By the end of the lesson, the learner should be able to:
Explain effects of non-disjunction as a chromosomal abnormality.
Exposition of new concepts;
Discussion.
text book
KLB BK IV. PP 30-33
7 4
GENETICS
Gene mutation.
By the end of the lesson, the learner should be able to:
Differentiate between chromosomal and gene mutation.
Identify types of gene mutation.
Q/A to review types of chromosomal mutation;
Using sequence models to show chromosomal mutations.
Discussion.
Models to show Chromosomal mutations.
KLB BK IV. PP 33-35
8

Mid term break

9 1
GENETICS
Disorders due to gene mutations.
By the end of the lesson, the learner should be able to:
Illustrate genetic disorders with diagrams.
Discussion on albinism, sickle-cell anaemia, haemophilia, colour blindness.
Drawing illustrative diagrams.
chart
KLB BK IV. PP 35-38
9 2
GENETICS
Applications of genetics.
By the end of the lesson, the learner should be able to:
Identify areas of practical application of genetics.
Probing questions;
Open discussion;
Topic review.
text book,video
KLB BK IV. PP 39-45
9 3
EVOLUTION
Meaning of evolution. Theories of origin of life.
By the end of the lesson, the learner should be able to:


Define evolution.
Explain the theories of life.


Brain storming;
Probing questions;
Q/A on creation theory;
Exposition of chemical theory.
text book
KLB BK IV. PP 49-51
9 4
EVOLUTION
Evidence for organic evolution.
By the end of the lesson, the learner should be able to:
Cite evidence for organic evolution.
Brain storming;
Probing questions;
Exposition;
Discussion.
text book
KLB BK IV. PP 51-59
10 1
EVOLUTION
Comparative anatomy and homologous structures.
Comparative anatomy and homologous structures. (contd)
By the end of the lesson, the learner should be able to:
Define divergent evolution.
Give examples of homologous structures.
Examine forelimbs of vertebrates;
Discuss adaptations and use of the limbs.
Forelimbs of vertebrates.
KLB BK IV. PP 59-63
10 2
EVOLUTION
Convergent evolution and analogous structures.
By the end of the lesson, the learner should be able to:
Define convergent evolution.
Give examples of analogous structures.
Give examples of vestigial structures.
Examine wings of insects; wings of birds / bat.
Discuss observations.
Wings of insects, wings of birds / bat.
KLB BK IV. PP 63-64
10 3
EVOLUTION
Convergent evolution and analogous structures.(contd)
Larmack?s theory of evolution.
By the end of the lesson, the learner should be able to:
Define convergent evolution.
Give examples of analogous structures.
Give examples of vestigial structures.
Examine wings of insects; wings of birds / bat.
Discuss observations.
Wings of insects, wings of birds / bat.
text book
KLB BK IV. PP 63-64
10 4
EVOLUTION
Darwin?s theory of natural selection.
By the end of the lesson, the learner should be able to:
Explain Darwin?s theory of natural selection.
Cite examples of natural selection in action.
Expositions and explanations;
Probing questions;
Topic review.
text book
KLB BK IV. PP 67-72
11-12

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