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Question 1 Report
(a) State four ways in which rangeland is important in livestock production. [4 marks]
(b) If the recommended grazing area per cattle is 3m x 3m. Calculate in hectares the carrying capacity of the rangeland illustrated in the diagram below. [6 marks]
(c) State two benefits of each of the following management practices in animal production:
(i) dipping;
(ii) vaccination;
(iii) artificial insemination. [6 marks]
(a) Four ways in which rangeland is important in livestock production
(Also acceptable: habitat and breeding ground for natural mating; source of mineral licks and medicinal plants.)
(b) Carrying capacity of the rangeland
From the diagram, the rangeland is a stadium shape: a central rectangle with a semicircular end on each side.
Step 1: Area of the rectangular portion
\[A_{\text{rect}} = L \times W = 250 \times 114 = 28{,}500\,\text{m}^2\]
Step 2: Area of the two semicircular ends
The two equal semicircles together make one full circle of radius \(57\,\text{m}\). Taking \(\pi = \dfrac{22}{7}\):
\[A_{\text{circle}} = \pi r^2 = \frac{22}{7} \times 57^2 = \frac{22}{7} \times 3249 = 10{,}211.14\,\text{m}^2\]
Step 3: Total area of the rangeland
\[A_{\text{total}} = 28{,}500 + 10{,}211.14 = 38{,}711.14\,\text{m}^2\]
Step 4: Convert to hectares \((1\ \text{hectare} = 10{,}000\,\text{m}^2)\)
\[A_{\text{total}} = \frac{38{,}711.14}{10{,}000} = 3.87\,\text{hectares}\]
Step 5: Carrying capacity
Recommended grazing area per cattle \(= 3\,\text{m} \times 3\,\text{m} = 9\,\text{m}^2\).
\[\text{Carrying capacity} = \frac{\text{Total area}}{\text{Area per cattle}} = \frac{38{,}711.14}{9} = 4301.2\]
Since a fraction of an animal is not counted, the rangeland (about 3.87 hectares) can carry 4301 cattle.
(If the shape is read as a rectangle with only one semicircular end, the area \(= 28{,}500 + \tfrac{1}{2}(10{,}211.14) = 33{,}605.57\,\text{m}^2 = 3.36\ \text{ha}\), giving a carrying capacity of \(3733\) cattle.)
(c) Two benefits of each management practice
(i) Dipping
(ii) Vaccination
(iii) Artificial insemination
Answer Details
(a) Four ways in which rangeland is important in livestock production
(Also acceptable: habitat and breeding ground for natural mating; source of mineral licks and medicinal plants.)
(b) Carrying capacity of the rangeland
From the diagram, the rangeland is a stadium shape: a central rectangle with a semicircular end on each side.
Step 1: Area of the rectangular portion
\[A_{\text{rect}} = L \times W = 250 \times 114 = 28{,}500\,\text{m}^2\]
Step 2: Area of the two semicircular ends
The two equal semicircles together make one full circle of radius \(57\,\text{m}\). Taking \(\pi = \dfrac{22}{7}\):
\[A_{\text{circle}} = \pi r^2 = \frac{22}{7} \times 57^2 = \frac{22}{7} \times 3249 = 10{,}211.14\,\text{m}^2\]
Step 3: Total area of the rangeland
\[A_{\text{total}} = 28{,}500 + 10{,}211.14 = 38{,}711.14\,\text{m}^2\]
Step 4: Convert to hectares \((1\ \text{hectare} = 10{,}000\,\text{m}^2)\)
\[A_{\text{total}} = \frac{38{,}711.14}{10{,}000} = 3.87\,\text{hectares}\]
Step 5: Carrying capacity
Recommended grazing area per cattle \(= 3\,\text{m} \times 3\,\text{m} = 9\,\text{m}^2\).
\[\text{Carrying capacity} = \frac{\text{Total area}}{\text{Area per cattle}} = \frac{38{,}711.14}{9} = 4301.2\]
Since a fraction of an animal is not counted, the rangeland (about 3.87 hectares) can carry 4301 cattle.
(If the shape is read as a rectangle with only one semicircular end, the area \(= 28{,}500 + \tfrac{1}{2}(10{,}211.14) = 33{,}605.57\,\text{m}^2 = 3.36\ \text{ha}\), giving a carrying capacity of \(3733\) cattle.)
(c) Two benefits of each management practice
(i) Dipping
(ii) Vaccination
(iii) Artificial insemination
Question 2 Report
(a) (i) What is agricultural extension? [2 marks]
(ii) State five demerits of co-operative societies.[5 marks]
(b) (i) Discuss three effects of rural-urban migration on agriculture. [6 marks]
(ii) Suggest three ways by which the problems of rural-urban migration could be solved [3 marks]
(a)(i) Agricultural extension
Agricultural extension is an informal, out-of-school educational service that teaches farmers improved and modern farming methods, carries the results of agricultural research to them, and helps them to solve their farm and home problems so as to raise their standard of living.
(a)(ii) Five demerits of cooperative societies
(b)(i) Three effects of rural-urban migration on agriculture
(b)(ii) Three solutions to rural-urban migration
Answer Details
(a)(i) Agricultural extension
Agricultural extension is an informal, out-of-school educational service that teaches farmers improved and modern farming methods, carries the results of agricultural research to them, and helps them to solve their farm and home problems so as to raise their standard of living.
(a)(ii) Five demerits of cooperative societies
(b)(i) Three effects of rural-urban migration on agriculture
(b)(ii) Three solutions to rural-urban migration
Question 3 Report
(a)(i) Define vegetative propagation. [2 marks]
(ii) Give three advantages and three disadvantages of vegetative propagation. [6 marks]
(b) State four cultural methods used for controlling crop pests in the field. [4 marks]
(c) Enumerate four harmful effects of chemical pest control. [4 marks]
(a)(i) Vegetative propagation
Vegetative propagation is the method of raising new plants from the vegetative parts of a parent plant such as the stem, root, leaf or bud (for example cuttings, suckers, tubers, bulbs, budding and grafting), without the use of seeds. The new plants are genetically identical to the parent.
(a)(ii) Advantages and disadvantages of vegetative propagation
Advantages:
Disadvantages:
(b) Four cultural methods of controlling crop pests
(c) Four harmful effects of chemical pest control
Answer Details
(a)(i) Vegetative propagation
Vegetative propagation is the method of raising new plants from the vegetative parts of a parent plant such as the stem, root, leaf or bud (for example cuttings, suckers, tubers, bulbs, budding and grafting), without the use of seeds. The new plants are genetically identical to the parent.
(a)(ii) Advantages and disadvantages of vegetative propagation
Advantages:
Disadvantages:
(b) Four cultural methods of controlling crop pests
(c) Four harmful effects of chemical pest control
Question 4 Report
(a) Give three advantages and three disadvantages of the deep litter system of poultry management. [6 marks]
(b) State three reasons for carrying out each of the following animal husbandry practices:
(i) castration of goats;
(ii) creep feeding of pigs. [6 marks]
(c) Name four local breeds of cattle reared in West Africa. [4marks]
(a) Deep litter system of poultry management
Advantages:
Disadvantages:
(b) Reasons for animal husbandry practices
(i) Castration of goats
(ii) Creep feeding of pigs
(c) Four local breeds of cattle reared in West Africa
Answer Details
(a) Deep litter system of poultry management
Advantages:
Disadvantages:
(b) Reasons for animal husbandry practices
(i) Castration of goats
(ii) Creep feeding of pigs
(c) Four local breeds of cattle reared in West Africa
Question 5 Report
(a) In a tabular form, list ten differences between subsistence agriculture and commercial agriculture. [10marks]
(b) State one advantage and one disadvantage of the following sources of farm power:
(i) wind;
(ii) internal combustion engine;
(iii) electricity. [6 marks]
(a) Ten differences between subsistence and commercial agriculture
| Subsistence agriculture | Commercial agriculture |
|---|---|
| Produces mainly to feed the farmer's family | Produces mainly for sale and profit |
| Farm size (holding) is small | Farm size is large |
| Uses simple, local tools such as hoe and cutlass | Uses machines such as tractors and harvesters |
| Requires little capital | Requires large capital |
| Uses family labour | Uses hired/skilled labour |
| Output/yield is low | Output/yield is high |
| Many crops are grown together (mixed cropping) | Usually one crop is grown on large scale (monocropping) |
| Little or no use of improved inputs | Uses improved seeds, fertilisers and agro-chemicals |
| Low level of technology and management | High level of technology and scientific management |
| Little or no surplus for storage/processing | Large surplus for storage, processing and export |
(b) Sources of farm power
| Source | One advantage | One disadvantage |
|---|---|---|
| (i) Wind | It is free, renewable and does not pollute the environment | It is unreliable because it does not blow steadily at all times |
| (ii) Internal combustion engine | It is powerful and can do heavy work quickly | It is costly to buy, fuel and maintain and it pollutes the air |
| (iii) Electricity | It is clean, convenient and easy to control | Supply is often not available in rural areas and can be interrupted |
Answer Details
(a) Ten differences between subsistence and commercial agriculture
| Subsistence agriculture | Commercial agriculture |
|---|---|
| Produces mainly to feed the farmer's family | Produces mainly for sale and profit |
| Farm size (holding) is small | Farm size is large |
| Uses simple, local tools such as hoe and cutlass | Uses machines such as tractors and harvesters |
| Requires little capital | Requires large capital |
| Uses family labour | Uses hired/skilled labour |
| Output/yield is low | Output/yield is high |
| Many crops are grown together (mixed cropping) | Usually one crop is grown on large scale (monocropping) |
| Little or no use of improved inputs | Uses improved seeds, fertilisers and agro-chemicals |
| Low level of technology and management | High level of technology and scientific management |
| Little or no surplus for storage/processing | Large surplus for storage, processing and export |
(b) Sources of farm power
| Source | One advantage | One disadvantage |
|---|---|---|
| (i) Wind | It is free, renewable and does not pollute the environment | It is unreliable because it does not blow steadily at all times |
| (ii) Internal combustion engine | It is powerful and can do heavy work quickly | It is costly to buy, fuel and maintain and it pollutes the air |
| (iii) Electricity | It is clean, convenient and easy to control | Supply is often not available in rural areas and can be interrupted |
Question 6 Report
(a) State three ways in which science and technology have contributed to agricultural
development through each of the following:
(i) Crop protection;
(ii) Climatology and meteorology. [6 marks]
(b) Give two functions of each of the following farm machines and implements:
(i) bulldozer;
(ii) combine harvester;
(iii) tractor;
(iv) sprayer;
(v) planter. - [10 marks]
(a) Contributions of science and technology
(i) Crop protection
(ii) Climatology and meteorology
(b) Two functions of each farm machine/implement
| Machine/implement | Two functions |
|---|---|
| (i) Bulldozer | Clears land of trees, stumps and boulders; levels the ground and constructs farm roads/dams |
| (ii) Combine harvester | Harvests (reaps) grain crops; threshes and cleans the grain in one operation |
| (iii) Tractor | Supplies pulling power to draw implements such as ploughs and harrows; provides power through its power take-off to drive machines and to transport farm loads |
| (iv) Sprayer | Applies liquid chemicals (insecticides, herbicides, fungicides) onto crops; applies liquid fertilisers and foliar feeds |
| (v) Planter | Sows/plants seeds at the correct spacing and depth; some planters place fertiliser beside the seed during planting |
Answer Details
(a) Contributions of science and technology
(i) Crop protection
(ii) Climatology and meteorology
(b) Two functions of each farm machine/implement
| Machine/implement | Two functions |
|---|---|
| (i) Bulldozer | Clears land of trees, stumps and boulders; levels the ground and constructs farm roads/dams |
| (ii) Combine harvester | Harvests (reaps) grain crops; threshes and cleans the grain in one operation |
| (iii) Tractor | Supplies pulling power to draw implements such as ploughs and harrows; provides power through its power take-off to drive machines and to transport farm loads |
| (iv) Sprayer | Applies liquid chemicals (insecticides, herbicides, fungicides) onto crops; applies liquid fertilisers and foliar feeds |
| (v) Planter | Sows/plants seeds at the correct spacing and depth; some planters place fertiliser beside the seed during planting |
Question 7 Report
(a) (i) Explain the term/arm credit.
(ii) List five sources of farm credit.
(b) An outbreak of a strange poultry disease is reported in your community.
There is a possibility of the disease spreading to other parts of the country.
(i) Mention the three main extension teaching methods that could be used to create awareness among farmers about the disease. [3 marks]
(ii) Which of the main extension teaching methods is most appropriate for creating awareness about the disease outbreak? [1 mark]
(iii) Give two reasons for your choice of extension teaching method in 9(b Xii). [2 marks]
(iv) Mention three problems that could be encountered in the use of the selected extension teaching method. (3 marks)
(a)(i) Farm credit
Farm credit is the money or resources borrowed by a farmer from a source such as a bank or cooperative, to be used for farming operations and repaid later, usually with interest, over an agreed period.
(a)(ii) Five sources of farm credit
(b)(i) Three main extension teaching methods
(b)(ii) Most appropriate method for creating awareness about the disease outbreak
The mass (mass media) method is the most appropriate.
(b)(iii) Two reasons for the choice
(b)(iv) Three problems in using the mass method
Answer Details
(a)(i) Farm credit
Farm credit is the money or resources borrowed by a farmer from a source such as a bank or cooperative, to be used for farming operations and repaid later, usually with interest, over an agreed period.
(a)(ii) Five sources of farm credit
(b)(i) Three main extension teaching methods
(b)(ii) Most appropriate method for creating awareness about the disease outbreak
The mass (mass media) method is the most appropriate.
(b)(iii) Two reasons for the choice
(b)(iv) Three problems in using the mass method
Question 8 Report
(a) Distinguish between a field pest and a storage pest. [2 marks]
(b) Give two reasons for early harvesting of maize from the field. [2 marks]
(c) Describe each of the following methods of crop improvement:
(i) introduction;
(ii) cross breeding. [6 marks]
(d) List six factors that should be considered in selecting a crop variety for your locality. [6 marks]
(a) Field pest versus storage pest
A field pest is a pest that attacks and damages crops while they are still growing on the farm (in the field), for example the grasshopper and stem borer, whereas a storage pest is a pest that attacks and damages harvested farm produce kept in storage, for example the weevil and rat.
(b) Two reasons for early harvesting of maize
(c) Methods of crop improvement
(i) Introduction: this is bringing in crop varieties or planting materials from another area or country where they have desirable qualities, and growing them in a new environment. If they perform well, they are multiplied and released to farmers.
(ii) Cross breeding (hybridisation): this is the deliberate mating (crossing) of two crop plants of different varieties, each having desirable qualities, so that the offspring combines the good qualities of both parents, for example high yield with disease resistance.
(d) Six factors to consider in selecting a crop variety
Answer Details
(a) Field pest versus storage pest
A field pest is a pest that attacks and damages crops while they are still growing on the farm (in the field), for example the grasshopper and stem borer, whereas a storage pest is a pest that attacks and damages harvested farm produce kept in storage, for example the weevil and rat.
(b) Two reasons for early harvesting of maize
(c) Methods of crop improvement
(i) Introduction: this is bringing in crop varieties or planting materials from another area or country where they have desirable qualities, and growing them in a new environment. If they perform well, they are multiplied and released to farmers.
(ii) Cross breeding (hybridisation): this is the deliberate mating (crossing) of two crop plants of different varieties, each having desirable qualities, so that the offspring combines the good qualities of both parents, for example high yield with disease resistance.
(d) Six factors to consider in selecting a crop variety
Question 9 Report
(a) What is soil consistency?
(b) Explain how each of the following soil properties influences crop growth:
(i) soil texture; [2 marks]
(ii) soil pH. [4 marks]
(c) (i) List four methods by which soil fertility could be maintained. [2 marks]
(ii) Explain two ways in which each of the methods listed in 3(c)(i) contributes to the maintenance of soil fertility. [8 marks]
(a) Soil consistency
Soil consistency is the degree of resistance of the soil to deformation or rupture, that is the strength with which soil particles hold together (cohesion) and stick to other objects (adhesion) at different moisture contents. It is described as loose, friable, firm or hard when dry, and as sticky and plastic when wet.
(b) Influence of soil properties on crop growth
(i) Soil texture: texture refers to the relative proportion of sand, silt and clay. It determines how much water and air the soil holds and how easily roots penetrate. Sandy (coarse) soils drain fast and dry quickly, holding few nutrients, while clayey (fine) soils hold much water and nutrients but may become waterlogged and poorly aerated. A well balanced loam gives the best water, air and nutrient supply for crop growth.
(ii) Soil pH: pH measures the acidity or alkalinity of the soil. It controls the availability of plant nutrients; most crops grow best at slightly acidic to neutral pH (about 6 to 7). Very acidic or very alkaline soils lock up nutrients, may release toxic elements, and reduce the activity of beneficial soil micro-organisms, thereby limiting crop growth.
(c)(i) Four methods of maintaining soil fertility
(c)(ii) How each method maintains soil fertility
Answer Details
(a) Soil consistency
Soil consistency is the degree of resistance of the soil to deformation or rupture, that is the strength with which soil particles hold together (cohesion) and stick to other objects (adhesion) at different moisture contents. It is described as loose, friable, firm or hard when dry, and as sticky and plastic when wet.
(b) Influence of soil properties on crop growth
(i) Soil texture: texture refers to the relative proportion of sand, silt and clay. It determines how much water and air the soil holds and how easily roots penetrate. Sandy (coarse) soils drain fast and dry quickly, holding few nutrients, while clayey (fine) soils hold much water and nutrients but may become waterlogged and poorly aerated. A well balanced loam gives the best water, air and nutrient supply for crop growth.
(ii) Soil pH: pH measures the acidity or alkalinity of the soil. It controls the availability of plant nutrients; most crops grow best at slightly acidic to neutral pH (about 6 to 7). Very acidic or very alkaline soils lock up nutrients, may release toxic elements, and reduce the activity of beneficial soil micro-organisms, thereby limiting crop growth.
(c)(i) Four methods of maintaining soil fertility
(c)(ii) How each method maintains soil fertility
Question 10 Report
(a) (i) Define the term soil tillage. [2 marks]
(ii) Distinguish between primary tillage and secondary tillage. [2 marks]
(b) Outline three roles of each of the following soil management practices:
(i) Green manuring;
(ii) Mulching. [6 marks]
(c) Give six reasons for carrying out irrigation in crop production. [6 marks]
(a)(i) Soil tillage
Soil tillage is the mechanical manipulation or working of the soil (by ploughing, harrowing, ridging, etc.) to loosen it, prepare a good seedbed, control weeds and create favourable conditions for planting and crop growth.
(a)(ii) Primary versus secondary tillage
Primary tillage is the first, deep and rough breaking of the land (for example ploughing) that opens up and loosens the soil, whereas secondary tillage is the lighter, shallow working done after primary tillage (for example harrowing and ridging) to break clods, level the soil and prepare a fine seedbed.
(b) Roles of soil management practices
(i) Green manuring
(ii) Mulching
(c) Six reasons for irrigation in crop production
Answer Details
(a)(i) Soil tillage
Soil tillage is the mechanical manipulation or working of the soil (by ploughing, harrowing, ridging, etc.) to loosen it, prepare a good seedbed, control weeds and create favourable conditions for planting and crop growth.
(a)(ii) Primary versus secondary tillage
Primary tillage is the first, deep and rough breaking of the land (for example ploughing) that opens up and loosens the soil, whereas secondary tillage is the lighter, shallow working done after primary tillage (for example harrowing and ridging) to break clods, level the soil and prepare a fine seedbed.
(b) Roles of soil management practices
(i) Green manuring
(ii) Mulching
(c) Six reasons for irrigation in crop production
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