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| WK | LSN | STRAND | SUB-STRAND | LESSON LEARNING OUTCOMES | LEARNING EXPERIENCES | KEY INQUIRY QUESTIONS | LEARNING RESOURCES | ASSESSMENT METHODS | REFLECTION |
|---|---|---|---|---|---|---|---|---|---|
| 1 | 1 |
4.0 Geometry
|
4.1 Coordinates and Graphs - Plotting points on a Cartesian plane
|
By the end of the
lesson, the learner
should be able to:
- Define a Cartesian plane and identify its components - Plot points accurately on a Cartesian plane using coordinates - Show interest in learning about coordinate geometry |
The learner is guided to:
- Discuss with friends what they remember about plotting points on a Cartesian plane - Draw a Cartesian plane in their graph book - Mark the points where given coordinates lie - Discuss and compare their work with other learners |
How do we locate points on a Cartesian plane?
|
- Master Mathematics Grade 9 pg. 152
- Graph papers/squared books - Rulers - Pencils - Digital devices |
- Observation
- Oral questions
- Written assignments
|
|
| 1 | 2 |
4.0 Geometry
|
4.1 Coordinates and Graphs - Drawing straight line graphs given equations
4.1 Coordinates and Graphs - Drawing parallel lines on the Cartesian plane |
By the end of the
lesson, the learner
should be able to:
- Explain the steps for generating a table of values from an equation - Draw straight line graphs accurately from linear equations - Appreciate the relationship between equations and graphs |
The learner is guided to:
- Generate a table of values for given linear equations - Plot the points on a Cartesian plane - Draw straight lines passing through the plotted points - Share and discuss their working with other members in class |
How do we represent linear equations graphically?
|
- Master Mathematics Grade 9 pg. 154
- Graph papers - Rulers - Pencils - Mathematical tables - Master Mathematics Grade 9 pg. 156 - Set squares |
- Observation
- Oral questions
- Written tests
|
|
| 1 | 3 |
4.0 Geometry
|
4.1 Coordinates and Graphs - Relating gradients of parallel lines
4.1 Coordinates and Graphs - Drawing perpendicular lines on the Cartesian plane |
By the end of the
lesson, the learner
should be able to:
- Define the gradient of a line - Calculate and compare gradients of parallel lines - Appreciate the concept that parallel lines have equal gradients |
The learner is guided to:
- Identify two points on each line - Work out the gradient of the lines - Compare the gradients of lines identified as parallel - Express equations in the form y=mx+c and compare gradients |
How do gradients help us identify parallel lines?
|
- Master Mathematics Grade 9 pg. 158
- Graph papers - Rulers - Calculators - Digital devices - Master Mathematics Grade 9 pg. 160 - Protractors - Set squares |
- Oral questions
- Written assignments
|
|
| 1 | 4 |
4.0 Geometry
|
4.1 Coordinates and Graphs - Relating gradients of perpendicular lines and applications
4.2 Scale Drawing - Compass bearing |
By the end of the
lesson, the learner
should be able to:
- State the relationship between gradients of perpendicular lines - Apply the relationship m₁ × m₂ = -1 to solve problems - Appreciate solving real-life problems involving graphs of straight lines |
The learner is guided to:
- Work out the gradient of each perpendicular line - Multiply the gradients of two perpendicular lines - Apply the concept to determine equations of perpendicular lines - Interpret graphs representing real-life situations |
What is the relationship between gradients of perpendicular lines?
|
- Master Mathematics Grade 9 pg. 162
- Graph papers - Calculators - Real-life graph examples - Master Mathematics Grade 9 pg. 166 - Pair of compasses - Protractors - Rulers - Charts showing compass directions |
- Written assignments
- Class activities
|
|
| 1 | 5 |
4.0 Geometry
|
4.2 Scale Drawing - True bearings
4.2 Scale Drawing - Determining the bearing of one point from another (1) |
By the end of the
lesson, the learner
should be able to:
- Explain what true bearings are - Convert compass bearings to true bearings and measure them accurately - Appreciate expressing direction using true bearings |
The learner is guided to:
- Discuss that true bearings are measured clockwise from North - Express bearings in three-digit format - Draw diagrams showing true bearings - Convert between compass and true bearings |
How do we express direction using true bearings?
|
- Master Mathematics Grade 9 pg. 169
- Protractors - Rulers - Compasses - Map samples - Master Mathematics Grade 9 pg. 171 - Pencils - Graph papers |
- Written tests
- Class activities
|
|
| 2 | 1 |
4.0 Geometry
|
4.2 Scale Drawing - Determining the bearing of one point from another (2)
|
By the end of the
lesson, the learner
should be able to:
- State the bearing of places from maps - Determine bearings from scale drawings and solve related problems - Appreciate applying bearing concepts to real-life situations |
The learner is guided to:
- Use maps of Kenya to determine bearings of different towns - Work out bearings of points from given diagrams - Determine reverse bearings - Apply bearing concepts to real-life situations |
Why is it important to know bearings in real life?
|
- Master Mathematics Grade 9 pg. 171
- Atlas/Maps of Kenya - Protractors - Rulers - Digital devices |
- Class activities
- Written tests
|
|
| 2 | 2 |
4.0 Geometry
|
4.2 Scale Drawing - Locating a point using bearing and distance (1)
|
By the end of the
lesson, the learner
should be able to:
- Explain how to choose appropriate scales for scale drawings - Convert actual distances to scale lengths accurately - Show interest in representing actual distances on paper |
The learner is guided to:
- Draw sketch diagrams showing relative positions - Choose suitable scales - Convert actual distances to scale lengths - Mark North lines and measure angles |
How do we represent actual distances on paper?
|
- Master Mathematics Grade 9 pg. 173
- Rulers - Protractors - Compasses - Plain papers |
- Observation
- Written assignments
|
|
| 2 | 3 |
4.0 Geometry
|
4.2 Scale Drawing - Locating a point using bearing and distance (2)
|
By the end of the
lesson, the learner
should be able to:
- Describe the process of locating points using bearing and distance - Draw accurate scale diagrams and determine unknown measurements - Appreciate the accuracy of scale drawings in representing real situations |
The learner is guided to:
- Use given bearings and distances to locate points - Draw accurate scale diagrams - Measure and determine unknown distances and bearings from diagrams - Verify accuracy of their drawings |
How accurate are scale drawings in representing real situations?
|
- Master Mathematics Grade 9 pg. 173
- Rulers - Protractors - Compasses - Graph papers |
- Class activities
- Written tests
|
|
| 2 | 4 |
4.0 Geometry
|
4.2 Scale Drawing - Identifying angles of elevation (1)
|
By the end of the
lesson, the learner
should be able to:
- Define angle of elevation - Identify and sketch right-angled triangles showing angles of elevation - Develop interest in recognizing situations involving angles of elevation |
The learner is guided to:
- Observe objects above eye level - Identify the angle through which eyes are raised - Sketch right-angled triangles formed - Label the angle of elevation correctly |
What is an angle of elevation?
|
- Master Mathematics Grade 9 pg. 175
- Protractors - Rulers - Pictures showing elevation - Models |
- Observation
- Oral questions
|
|
| 2 | 5 |
4.0 Geometry
|
4.2 Scale Drawing - Determining angles of elevation (2)
|
By the end of the
lesson, the learner
should be able to:
- Explain the process of determining angles of elevation - Draw scale diagrams and measure angles of elevation using protractors - Appreciate applying concepts to real-life situations |
The learner is guided to:
- Draw scale diagrams representing elevation situations - Use appropriate scales - Measure angles of elevation from scale drawings - Solve problems involving heights and distances |
How do we calculate angles of elevation?
|
- Master Mathematics Grade 9 pg. 175
- Protractors - Rulers - Graph papers - Calculators |
- Written tests
- Class activities
|
|
| 3 | 1 |
4.0 Geometry
|
4.2 Scale Drawing - Identifying angles of depression (1)
|
By the end of the
lesson, the learner
should be able to:
- Define angle of depression - Identify and sketch situations involving angles of depression - Show interest in distinguishing between angles of elevation and depression |
The learner is guided to:
- Stand at elevated positions and observe objects below - Identify the angle through which eyes are lowered - Sketch right-angled triangles formed - Label the angle of depression correctly |
How is angle of depression different from angle of elevation?
|
- Master Mathematics Grade 9 pg. 178
- Protractors - Rulers - Pictures showing depression - Models |
- Observation
- Oral questions
|
|
| 3 | 2 |
4.0 Geometry
|
4.2 Scale Drawing - Determining angles of depression (2)
|
By the end of the
lesson, the learner
should be able to:
- Describe the steps for determining angles of depression - Draw scale diagrams and measure angles of depression accurately - Appreciate using angles of depression in real life |
The learner is guided to:
- Draw scale diagrams representing depression situations - Use appropriate scales - Measure angles of depression from scale drawings - Apply concepts to real-life problems |
How do we use angles of depression in real life?
|
- Master Mathematics Grade 9 pg. 178
- Protractors - Rulers - Graph papers - Calculators |
- Written assignments
- Written tests
|
|
| 3 | 3 |
4.0 Geometry
|
4.2 Scale Drawing - Application in simple surveying - Triangulation (1)
|
By the end of the
lesson, the learner
should be able to:
- Explain the concept of triangulation in surveying - Identify baselines and offsets and draw diagrams using triangulation method - Develop interest in using triangulation for surveying |
The learner is guided to:
- Trace irregular shapes to be surveyed - Enclose the shape with a triangle - Identify and measure baselines - Draw perpendicular offsets to the baselines |
What is triangulation and how is it used in surveying?
|
- Master Mathematics Grade 9 pg. 180
- Rulers - Set squares - Compasses - Plain papers |
- Observation
- Class activities
|
|
| 3 | 4 |
4.0 Geometry
|
4.2 Scale Drawing - Application in simple surveying - Triangulation (2)
4.2 Scale Drawing - Application in simple surveying - Transverse survey (1) |
By the end of the
lesson, the learner
should be able to:
- Describe how to record measurements in field books - Draw accurate scale maps using triangulation data - Appreciate applying triangulation to survey school compound areas |
The learner is guided to:
- Measure lengths of offsets - Record measurements in field book format - Choose appropriate scales - Draw accurate scale maps from recorded data |
How do we record and use surveying measurements?
|
- Master Mathematics Grade 9 pg. 180
- Meter rules - Strings - Pegs - Field books - Rulers - Set squares - Plain papers |
- Written tests
- Practical activities
|
|
| 3 | 5 |
4.0 Geometry
|
4.2 Scale Drawing - Application in simple surveying - Transverse survey (2)
|
By the end of the
lesson, the learner
should be able to:
- Describe the process of completing field books for transverse surveys - Draw scale maps from transverse survey data - Appreciate using transverse survey method for road reserves |
The learner is guided to:
- Complete field book recordings - Use appropriate scales to draw maps - Join offset points to show boundaries - Compare their work with other members |
When do we use transverse survey method?
|
- Master Mathematics Grade 9 pg. 180
- Rulers - Pencils - Graph papers - Field books |
- Written assignments
- Practical activities
|
|
| 4 | 1 |
4.0 Geometry
|
4.2 Scale Drawing - Surveying using bearings and distances
|
By the end of the
lesson, the learner
should be able to:
- Explain how to record positions using bearings and distances - Draw scale maps using bearing and distance data - Appreciate different surveying methods |
The learner is guided to:
- Record bearings and distances from fixed points - Use ordered pairs to represent positions - Draw North lines and locate points using bearings - Join points to show boundaries |
How do we survey using bearings and distances?
|
- Master Mathematics Grade 9 pg. 180
- Protractors - Compasses - Rulers - Field books |
- Class activities
- Written tests
|
|
| 4 | 2 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Similar figures
|
By the end of the
lesson, the learner
should be able to:
- Define similar figures - Identify and sort similar figures from collections of objects - Show interest in recognizing similar figures in the environment |
The learner is guided to:
- Collect different objects from the environment - Sort objects according to similarity - Discuss criteria used for sorting - Identify pairs of similar figures from given diagrams |
What makes two figures similar?
|
- Master Mathematics Grade 9 pg. 185
- Various objects - Cut-outs of shapes - Charts - Models |
- Observation
- Oral questions
|
|
| 4 | 3 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Properties of similar figures (1)
|
By the end of the
lesson, the learner
should be able to:
- State the properties of similar figures - Measure corresponding sides and determine ratios accurately - Appreciate that ratios of corresponding sides are constant |
The learner is guided to:
- Trace similar triangles - Measure lengths of corresponding sides - Determine ratios of corresponding sides - Observe that the ratios are equal |
What is the relationship between sides of similar figures?
|
- Master Mathematics Grade 9 pg. 186
- Rulers - Tracing papers - Calculators - Pencils |
- Class activities
- Written assignments
|
|
| 4 | 4 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Properties of similar figures (2)
|
By the end of the
lesson, the learner
should be able to:
- Identify that corresponding angles of similar figures are equal - Use properties to determine unknown sides and angles - Develop interest in applying properties of similar figures |
The learner is guided to:
- Measure corresponding angles of similar figures - Observe that corresponding angles are equal - Use ratio of sides to find unknown lengths - Solve problems involving similar figures |
How do we use properties of similar figures?
|
- Master Mathematics Grade 9 pg. 186
- Protractors - Rulers - Calculators - Practice worksheets |
- Written tests
- Oral questions
|
|
| 4 | 5 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Drawing similar figures
|
By the end of the
lesson, the learner
should be able to:
- Describe the steps for constructing similar figures - Construct and draw similar figures accurately using scale factors - Show interest in verifying similarity by measuring angles |
The learner is guided to:
- Construct triangles with given dimensions - Construct similar triangles with sides in given ratios - Measure angles to verify similarity - Discuss their findings with classmates |
How do we construct similar figures accurately?
|
- Master Mathematics Grade 9 pg. 189
- Rulers - Compasses - Protractors - Plain papers |
- Observation
- Practical activities
|
|
| 5 | 1 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Determining properties of enlargement
|
By the end of the
lesson, the learner
should be able to:
- Define centre of enlargement and scale factor - Locate the centre of enlargement and determine scale factor - Appreciate that enlargements produce similar figures |
The learner is guided to:
- Join corresponding points of objects and images - Locate the centre where lines meet - Measure distances from centre to object and image - Calculate the scale factor |
What is the relationship between object and image in enlargement?
|
- Master Mathematics Grade 9 pg. 190
- Rulers - Compasses - Tracing papers - Models |
- Class activities
- Written assignments
|
|
| 5 | 2 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Positive scale factor (1)
|
By the end of the
lesson, the learner
should be able to:
- Explain what happens when scale factor is greater than 1 - Draw enlargements with scale factors greater than 1 accurately - Develop interest in observing that images are larger when scale factor > 1 |
The learner is guided to:
- Draw lines from centre to object vertices - Multiply distances by scale factor - Locate image points along extended lines - Observe that object and image are on same side of centre |
What happens when the scale factor is greater than 1?
|
- Master Mathematics Grade 9 pg. 192
- Rulers - Compasses - Graph papers - Pencils |
- Observation
- Written tests
|
|
| 5 | 3 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Positive scale factor (2)
|
By the end of the
lesson, the learner
should be able to:
- Describe what happens when scale factor is between 0 and 1 - Draw enlargements with fractional scale factors accurately - Appreciate comparing enlargements with different positive scale factors |
The learner is guided to:
- Draw enlargements with fractional scale factors - Observe that images are smaller than objects - Note that object and image remain upright - Practice with various positive scale factors |
What happens when the scale factor is between 0 and 1?
|
- Master Mathematics Grade 9 pg. 192
- Rulers - Compasses - Plain papers - Models |
- Class activities
- Written assignments
|
|
| 5 | 4 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Negative scale factor (1)
|
By the end of the
lesson, the learner
should be able to:
- State the properties of enlargement with negative scale factors - Draw enlargements with negative scale factors and position images correctly - Show interest in recognizing that images are inverted with negative scale factors |
The learner is guided to:
- Observe objects and images with negative scale factors - Note that they are on opposite sides of centre - Draw enlargements with negative scale factors - Observe that images are inverted |
What is special about negative scale factors?
|
- Master Mathematics Grade 9 pg. 196
- Rulers - Compasses - Graph papers - Tracing papers |
- Observation
- Oral questions
|
|
| 5 | 5 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Negative scale factor (2)
|
By the end of the
lesson, the learner
should be able to:
- Explain the process of determining negative scale factors - Locate centres of enlargement and apply negative scale factors to various figures - Appreciate solving problems involving negative enlargements |
The learner is guided to:
- Join corresponding vertices to locate centres - Calculate scale factors from measurements - Draw enlargements of different shapes with negative scale factors - Solve problems involving negative enlargements |
How do we work with negative scale factors?
|
- Master Mathematics Grade 9 pg. 196
- Rulers - Compasses - Plain papers - Calculators |
- Written tests
- Class activities
|
|
| 6 | 1 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Enlargement on the Cartesian plane (1)
|
By the end of the
lesson, the learner
should be able to:
- State the rule (x,y) → (kx, ky) for enlargement with centre at origin - Plot and enlarge figures accurately with centre at origin - Develop interest in applying enlargement rules on coordinate axes |
The learner is guided to:
- Plot given points on Cartesian plane - Apply scale factor to coordinates - Plot image points and join them - Verify using measurement from origin |
How do we enlarge figures on coordinate axes?
|
- Master Mathematics Grade 9 pg. 198
- Graph papers - Rulers - Calculators - Pencils |
- Observation
- Written assignments
|
|
| 6 | 2 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Enlargement on the Cartesian plane (2)
|
By the end of the
lesson, the learner
should be able to:
- Describe the process of enlarging figures with centre not at origin - Determine coordinates of images after enlargement and solve related problems - Appreciate applying both positive and negative scale factors on Cartesian plane |
The learner is guided to:
- Plot figures with given vertices - Enlarge with centres at various points - Determine image coordinates - Apply both positive and negative scale factors |
What happens when the centre is not at the origin?
|
- Master Mathematics Grade 9 pg. 198
- Graph papers - Rulers - Calculators - Digital devices |
- Written tests
- Class activities
|
|
| 6 | 3 |
4.0 Geometry
|
4.3 Similarity and Enlargement - Linear scale factor of similar figures (1)
4.3 Similarity and Enlargement - Linear scale factor of similar figures (2) |
By the end of the
lesson, the learner
should be able to:
- Define linear scale factor - Calculate linear scale factor from similar figures and use it to find unknown lengths - Show interest in applying linear scale factor to practical situations |
The learner is guided to:
- Measure corresponding sides of similar figures - Calculate ratios to find linear scale factor - Use scale factor to determine unknown dimensions - Apply to practical situations |
What is linear scale factor?
|
- Master Mathematics Grade 9 pg. 200
- Rulers - Similar objects - Calculators - Models - Maps - Scale models - Real objects |
- Observation
- Oral questions
|
|
| 6 | 4 |
4.0 Geometry
|
4.4 Trigonometry - Angles and sides of right-angled triangles
|
By the end of the
lesson, the learner
should be able to:
- Define hypotenuse, opposite and adjacent sides - Identify and name sides with reference to given angles - Show interest in recognizing right-angled triangles in real situations |
The learner is guided to:
- Draw right-angled triangles - Identify the hypotenuse - Label opposite and adjacent sides for given angles - Practice with different orientations of triangles |
How do we identify sides of a right-angled triangle?
|
- Master Mathematics Grade 9 pg. 205
- Rulers - Set squares - Models of triangles - Charts |
- Observation
- Oral questions
|
|
| 6 | 5 |
4.0 Geometry
|
4.4 Trigonometry - Tangent ratio and tables of tangents
|
By the end of the
lesson, the learner
should be able to:
- Define tangent of an angle as opposite/adjacent - Calculate tangent ratios from right-angled triangles and read from tables - Appreciate that tangent ratio is constant for a given angle |
The learner is guided to:
- Work out ratios of opposite to adjacent sides - Recognize that the ratio is constant for a given angle - Define tangent as opposite/adjacent - Read tangent values from tables |
What is the tangent of an angle?
|
- Master Mathematics Grade 9 pg. 207
- Mathematical tables - Rulers - Calculators - Right-angled triangles |
- Class activities
- Written tests
|
|
| 7 | 1 |
4.0 Geometry
|
4.4 Trigonometry - Sine and cosine ratios, tables of sines and cosines
|
By the end of the
lesson, the learner
should be able to:
- Define sine and cosine of an angle - Calculate sine and cosine ratios and read values from mathematical tables - Develop interest in observing that cosine values decrease as angles increase |
The learner is guided to:
- Work out ratios of opposite to hypotenuse (sine) - Work out ratios of adjacent to hypotenuse (cosine) - Read values from tables of sines and cosines - Observe that values in cosine tables are subtracted |
How are sine and cosine different from tangent?
|
- Master Mathematics Grade 9 pg. 211
- Mathematical tables - Rulers - Calculators - Models |
- Observation
- Written assignments
|
|
| 7 | 2 |
4.0 Geometry
|
4.4 Trigonometry - Using calculators and applications of trigonometric ratios
|
By the end of the
lesson, the learner
should be able to:
- Explain how to use calculators to find trigonometric ratios - Apply trigonometric ratios to calculate unknown sides and angles - Appreciate using trigonometry to solve real-life problems |
The learner is guided to:
- Use calculator buttons for sin, cos, tan - Find inverse trigonometric ratios - Calculate unknown lengths in right-angled triangles - Solve problems involving heights, distances and angles |
How do we use trigonometry to solve real-life problems?
|
- Master Mathematics Grade 9 pg. 217
- Scientific calculators - Rulers - Protractors - Real-life problem scenarios |
- Written tests
- Practical activities
|
|
| 7 | 3 |
5.0 Data Handling and Probability
|
5.1 Data Interpretation (Grouped Data) - Determining appropriate class width for grouping data
5.1 Data Interpretation (Grouped Data) - Drawing frequency distribution tables of grouped data |
By the end of the
lesson, the learner
should be able to:
- Define class and class width - Determine appropriate class width from given range of data - Appreciate the importance of grouping data with many values |
The learner is guided to:
- Choose numbers between 1 and 100 and find the range - Divide the range into equal intervals or classes - Discuss the width of classes selected - Compare class widths with other groups |
How do we group data with many values?
|
- Master Mathematics Grade 9 pg. 224
- Writing materials - Calculators - Chart papers - Digital devices - Master Mathematics Grade 9 pg. 226 - Tally sheets - Rulers - Data sets - Pencils |
- Observation
- Oral questions
- Written assignments
|
|
| 7 | 4 |
5.0 Data Handling and Probability
|
5.1 Data Interpretation (Grouped Data) - Identifying the modal class of grouped data
5.1 Data Interpretation (Grouped Data) - Calculating the mean of grouped data (1) 5.1 Data Interpretation (Grouped Data) - Calculating the mean of grouped data (2) |
By the end of the
lesson, the learner
should be able to:
- Define mode, modal frequency and modal class - Identify the modal class from frequency distribution tables - Appreciate identifying the class with highest frequency |
The learner is guided to:
- Prepare frequency distribution tables for given data - Identify the highest frequency from the table - Find the class where the highest frequency lies - Search for the meaning of mode using digital devices |
What is the modal class in grouped data?
|
- Master Mathematics Grade 9 pg. 228
- Frequency distribution tables - Digital devices - Reference materials - Master Mathematics Grade 9 pg. 230 - Calculators - Frequency tables - Writing materials - Mathematical tables - Data sets - Charts |
- Oral questions
- Written assignments
- Class activities
|
|
| 7 | 5 |
5.0 Data Handling and Probability
|
5.1 Data Interpretation (Grouped Data) - Determining the median of grouped data (1)
5.1 Data Interpretation (Grouped Data) - Determining the median of grouped data (2) |
By the end of the
lesson, the learner
should be able to:
- Define cumulative frequency - Determine cumulative frequencies from frequency tables - Show interest in understanding the median class |
The learner is guided to:
- Search for the meaning of cumulative frequency - Transfer first frequency to cumulative frequency column - Add frequencies cumulatively in ascending order - Identify the median class by finding N/2 |
What is cumulative frequency?
|
- Master Mathematics Grade 9 pg. 232
- Frequency tables - Calculators - Reference materials - Digital devices - Master Mathematics Grade 9 pg. 234 - Formula charts |
- Observation
- Written tests
|
|
| 8 | 1 |
5.0 Data Handling and Probability
|
5.1 Data Interpretation (Grouped Data) - Determining the median of grouped data (3)
5.2 Probability - Experiments involving equally and likely outcomes |
By the end of the
lesson, the learner
should be able to:
- Describe the steps for calculating median of grouped data - Calculate median using the formula accurately - Show interest in solving real-life problems involving median |
The learner is guided to:
- Organize tables with cumulative frequency columns - Substitute values into the median formula - Calculate median for different data sets - Apply median concepts to real-life situations |
How do we calculate the median of grouped data?
|
- Master Mathematics Grade 9 pg. 236
- Calculators - Data sets - Writing materials - Practice worksheets - Master Mathematics Grade 9 pg. 239 - Coins - Dice - Triangular pyramids - Baskets and pens |
- Written tests
- Class activities
- Practical exercises
|
|
| 8 | 2 |
5.0 Data Handling and Probability
|
5.2 Probability - Range of probability of an event
|
By the end of the
lesson, the learner
should be able to:
- State that the sum of all probabilities equals 1 - Determine the range of probability as 0 ≤ P(A) ≤ 1 - Show interest in understanding that P(A) + P(A') = 1 |
The learner is guided to:
- Toss a coin and work out probability of head and tail - Add probabilities of all outcomes - Use dice to determine probabilities of all faces - Discuss that probability ranges from 0 to 1 |
What is the range of probability?
|
- Master Mathematics Grade 9 pg. 241
- Coins - Dice - Calculators - Charts showing probability range |
- Class activities
- Written tests
- Oral questions
|
|
| 8 | 3 |
5.0 Data Handling and Probability
|
5.2 Probability - Identifying mutually exclusive events
|
By the end of the
lesson, the learner
should be able to:
- Define mutually exclusive events - Identify mutually exclusive events from given situations - Appreciate that mutually exclusive events cannot occur simultaneously |
The learner is guided to:
- Observe a coin toss and note that both sides cannot face up - Discuss what the referee does before a football match - Identify events that exclude each other - Give examples of mutually exclusive events from daily life |
What are mutually exclusive events?
|
- Master Mathematics Grade 9 pg. 243
- Coins - Pictures of referees - Real-life scenarios - Charts |
- Observation
- Oral questions
- Written assignments
|
|
| 8 | 4 |
5.0 Data Handling and Probability
|
5.2 Probability - Experiments of single chance involving mutually exclusive events
|
By the end of the
lesson, the learner
should be able to:
- Explain the addition law of probability P(A or B) = P(A) + P(B) - Calculate probabilities of mutually exclusive events - Show interest in applying the addition law to solve problems |
The learner is guided to:
- Pick pens from a closed bag and note colors - Work out probabilities using the word "OR" - Apply the formula P(A or B) = P(A) + P(B) - Solve problems involving mutually exclusive events |
How do we calculate probabilities of mutually exclusive events?
|
- Master Mathematics Grade 9 pg. 244
- Colored pens - Bags - Dice - Number cards - Calculators |
- Class activities
- Written tests
- Practical exercises
|
|
| 8 | 5 |
5.0 Data Handling and Probability
|
5.2 Probability - Experiments involving independent events
5.2 Probability - Drawing tree diagrams for single outcomes |
By the end of the
lesson, the learner
should be able to:
- Define independent events - Apply the multiplication law P(A and B) = P(A) × P(B) - Appreciate that independent events do not affect each other |
The learner is guided to:
- Toss a coin and die together and note outcomes - Discuss whether coin outcome affects die outcome - Understand that "and" in probability means multiplication - Solve problems involving independent events |
What are independent events?
|
- Master Mathematics Grade 9 pg. 246
- Coins - Dice - Colored balls - Baskets - Calculators - Master Mathematics Grade 9 pg. 248 - Drawing materials - Chart papers - Rulers |
- Observation
- Written assignments
- Written tests
|
|
| 9 |
END OF YEAR ASSESSMENT, MARKING AND CLOSING |
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