Ana loda....
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Latsa & Riƙe don Ja Shi Gabaɗaya |
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Danna nan don rufewa |
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Tambaya 1 Rahoto
(a) (i) Explain the term settlement
(ii) Name two major types of settlement
(b) Highlight any four factors that influence the location of settlements
(c) Outline, with examples, any four functions of settlements.
(a)(i) Explanation of settlement
A settlement is any place where people live, ranging from a single dwelling to a large city, together with the buildings and structures they use for shelter and other activities. It is a place where human beings have established their homes and carry on their daily life.
(a)(ii) Two major types of settlement
(By pattern they may also be grouped as nucleated/compact or dispersed/scattered.)
(b) Four factors that influence the location of settlements
(c) Four functions of settlements (with examples)
Bayanin Amsa
(a)(i) Explanation of settlement
A settlement is any place where people live, ranging from a single dwelling to a large city, together with the buildings and structures they use for shelter and other activities. It is a place where human beings have established their homes and carry on their daily life.
(a)(ii) Two major types of settlement
(By pattern they may also be grouped as nucleated/compact or dispersed/scattered.)
(b) Four factors that influence the location of settlements
(c) Four functions of settlements (with examples)
Tambaya 2 Rahoto
(a) Outline any two differences between Greek and Koppen's system of climatic classification.
(b) List any four major features of Kopapen's system.
(c) Describe any four features of the of climatic type (Tropical Rainforest Climate) in Koppen's classification.
(a) Two differences between the Greek and Koppen systems
| Greek system | Koppen system |
|---|---|
| Based only on temperature (distance from the equator / latitude). | Based on both temperature and rainfall, with definite numerical values. |
| Very broad; recognises only three simple zones (torrid, temperate, frigid). | Detailed; recognises many climatic types and sub-types shown by letter symbols. |
| Does not relate climate to vegetation. | Closely relates climate to natural vegetation. |
(b) Four major features of Koppen's system
(c) Four features of the Tropical Rainforest (Equatorial, Af) climate
Bayanin Amsa
(a) Two differences between the Greek and Koppen systems
| Greek system | Koppen system |
|---|---|
| Based only on temperature (distance from the equator / latitude). | Based on both temperature and rainfall, with definite numerical values. |
| Very broad; recognises only three simple zones (torrid, temperate, frigid). | Detailed; recognises many climatic types and sub-types shown by letter symbols. |
| Does not relate climate to vegetation. | Closely relates climate to natural vegetation. |
(b) Four major features of Koppen's system
(c) Four features of the Tropical Rainforest (Equatorial, Af) climate
Tambaya 3 Rahoto
(a) Draw an outline map of Nigeria. On the map, show and name:
(i) one cattle rearing zone
(ii) three towns in the rearing zone
(iii) one direction of movement of cattle from the rearing zone to one named consuming area (use arrow).
(b) Outline three problems of cattle rearing in Nigeria
(c) How are these problems being solved?
(a) Outline map of Nigeria showing cattle rearing and movement
The principal cattle-rearing zone is the Sudan/Sahel savanna belt of northern Nigeria. The map shows Sokoto, Kano and Maiduguri within this zone, and a south-westward arrow indicating movement of cattle from the northern rearing zone to Lagos, a major consuming area.
(b) Problems of cattle rearing in Nigeria
(c) Measures being taken to solve the problems
Bayanin Amsa
(a) Outline map of Nigeria showing cattle rearing and movement
The principal cattle-rearing zone is the Sudan/Sahel savanna belt of northern Nigeria. The map shows Sokoto, Kano and Maiduguri within this zone, and a south-westward arrow indicating movement of cattle from the northern rearing zone to Lagos, a major consuming area.
(b) Problems of cattle rearing in Nigeria
(c) Measures being taken to solve the problems
Tambaya 4 Rahoto
(a) Draw an outline map of Nigeria. On the map, show and name:
(i) the forest belts
(ii) an important town in each belt
(iii) the Lake Chad
(b) Describe three characteristics of any one of the forest belts shown on the map.
(c) Outline three ways in which the forest belts are of importance to Nigeria.
(a) Outline map of Nigeria showing the forest belts, towns and Lake Chad
Key: Mangrove (salt-water swamp) forest: Port Harcourt; Freshwater swamp forest: Warri; Tropical rainforest (high forest): Benin City. Lake Chad is shown at the north-eastern boundary of Nigeria.
(b) Characteristics of the tropical rainforest (high forest)
(c) Importance of the forest belts to Nigeria
Bayanin Amsa
(a) Outline map of Nigeria showing the forest belts, towns and Lake Chad
Key: Mangrove (salt-water swamp) forest: Port Harcourt; Freshwater swamp forest: Warri; Tropical rainforest (high forest): Benin City. Lake Chad is shown at the north-eastern boundary of Nigeria.
(b) Characteristics of the tropical rainforest (high forest)
(c) Importance of the forest belts to Nigeria
Tambaya 5 Rahoto
(a) Name four types of atmospheric resources
(b) Explain the usefulness of any two of the resources named in (a) above.
(a) Four types of atmospheric resources
(b) Usefulness of any two of the resources
1. Sunlight (solar energy):
2. Wind (moving air):
Bayanin Amsa
(a) Four types of atmospheric resources
(b) Usefulness of any two of the resources
1. Sunlight (solar energy):
2. Wind (moving air):
Tambaya 6 Rahoto
(a) Draw an outline map of Africa. On the map, locate and name:
(i) the canary and the Madagascar Islands
(ii) Drakensberg mountain
(iii) Latitudes 37°N and 231/2°S.
(b) Describe the position and size of Africa in relation to other continents.
(a) Outline map of Africa
(b) Position and size of Africa in relation to other continents
Position
Size
Bayanin Amsa
(a) Outline map of Africa
(b) Position and size of Africa in relation to other continents
Position
Size
Tambaya 7 Rahoto
(a) Describe any five characteristics of manufacturing industries in Tropical Africa.
(b) Highlight five problems facing manufacturing industries in Tropical Africa.
(a) Five characteristics of manufacturing industries in Tropical Africa
(b) Five problems facing manufacturing industries in Tropical Africa
Bayanin Amsa
(a) Five characteristics of manufacturing industries in Tropical Africa
(b) Five problems facing manufacturing industries in Tropical Africa
Tambaya 8 Rahoto
Study the map extract on a scale of 1:50,000, and answer the following questions:
(a) (i) In your answer book, enlarge the square marked ABCD to twice its size.
(ii) Calculate and state the new scale
(b) On your new outline, mark and name:
(i) the main roads;
(ii) the settlement of EGBE;
(iii) a spot height.
(c) Shade an area below 1000 ft.
(d) Using the entire map, list three man-made features along the minor road between Oda Pete and Ogga.
(e) Describe the influence of relief on the location of settlements in the area covered by the map
(a)(i) Enlarging square ABCD to twice its size
Divide the original square ABCD into a grid of equal small squares. Draw a new square whose sides are twice as long, giving an outline of \(18\,\text{cm}\) by \(18\,\text{cm}\), and rule the same grid on it so that each small square is doubled in side. Copy the detail from each small square of the original into the corresponding enlarged square, keeping the same relative positions.
(a)(ii) New scale
\[ \text{New scale} = 1 : \frac{50{,}000}{2} = 1:25{,}000 \](b) On the enlarged outline, mark and name, using the correct conventional signs: (i) the two main roads; (ii) the settlement of Egbe; (iii) a spot height.
(c) From the contour lines, identify the land lying below 1000 ft and shade that area evenly.
(d) Three man-made features along the minor road between Oda Pete and Ogga
(e) Influence of relief on the location of settlements
Bayanin Amsa
(a)(i) Enlarging square ABCD to twice its size
Divide the original square ABCD into a grid of equal small squares. Draw a new square whose sides are twice as long, giving an outline of \(18\,\text{cm}\) by \(18\,\text{cm}\), and rule the same grid on it so that each small square is doubled in side. Copy the detail from each small square of the original into the corresponding enlarged square, keeping the same relative positions.
(a)(ii) New scale
\[ \text{New scale} = 1 : \frac{50{,}000}{2} = 1:25{,}000 \](b) On the enlarged outline, mark and name, using the correct conventional signs: (i) the two main roads; (ii) the settlement of Egbe; (iii) a spot height.
(c) From the contour lines, identify the land lying below 1000 ft and shade that area evenly.
(d) Three man-made features along the minor road between Oda Pete and Ogga
(e) Influence of relief on the location of settlements
Tambaya 9 Rahoto
With the aid of diagrams and examples, write explanatory notes on any two of the following:
(a) Rift valley (b) Horst (c) Volcanic mountain.
Explanatory notes (any two)
(a) Rift valley
A rift valley is a long, narrow, steep-sided trough formed when a block of land sinks (subsides) between two roughly parallel faults, or when the land on either side is uplifted. It is produced by tensional (pulling apart) forces in the earth's crust. The sunken block is called a graben. Rift valleys often contain long, deep lakes. The best example is the East African (Great) Rift Valley, which runs from the Red Sea through Ethiopia and Kenya, containing lakes such as Lake Turkana and Lake Malawi.
Diagram: a cross-section showing a central down-thrown block (graben) bounded by two normal faults, with the flanks standing higher.
(b) Horst
A horst is an upstanding block of land bounded by two roughly parallel faults, formed when the middle block is uplifted or when the blocks on either side sink. It is the opposite of a graben and results from either tensional or compressional forces. It appears as a block or fault mountain with steep sides and a fairly flat top. Examples include the Ruwenzori and the Vosges and Black Forest highlands of Europe.
Diagram: a cross-section showing a central up-thrown block standing above two down-thrown blocks on either side.
(c) Volcanic mountain
A volcanic mountain is a mountain built up by the accumulation of lava, ash and other materials ejected through a vent from the interior of the earth during volcanic eruptions. As successive eruptions pile up material around the vent, a cone with a crater at the top is formed. Examples include Mount Cameroon, Kilimanjaro and Mount Fuji.
Diagram: a cone showing the central vent (pipe), a magma chamber below, layers of lava and ash, and a crater at the summit.
Bayanin Amsa
Explanatory notes (any two)
(a) Rift valley
A rift valley is a long, narrow, steep-sided trough formed when a block of land sinks (subsides) between two roughly parallel faults, or when the land on either side is uplifted. It is produced by tensional (pulling apart) forces in the earth's crust. The sunken block is called a graben. Rift valleys often contain long, deep lakes. The best example is the East African (Great) Rift Valley, which runs from the Red Sea through Ethiopia and Kenya, containing lakes such as Lake Turkana and Lake Malawi.
Diagram: a cross-section showing a central down-thrown block (graben) bounded by two normal faults, with the flanks standing higher.
(b) Horst
A horst is an upstanding block of land bounded by two roughly parallel faults, formed when the middle block is uplifted or when the blocks on either side sink. It is the opposite of a graben and results from either tensional or compressional forces. It appears as a block or fault mountain with steep sides and a fairly flat top. Examples include the Ruwenzori and the Vosges and Black Forest highlands of Europe.
Diagram: a cross-section showing a central up-thrown block standing above two down-thrown blocks on either side.
(c) Volcanic mountain
A volcanic mountain is a mountain built up by the accumulation of lava, ash and other materials ejected through a vent from the interior of the earth during volcanic eruptions. As successive eruptions pile up material around the vent, a cone with a crater at the top is formed. Examples include Mount Cameroon, Kilimanjaro and Mount Fuji.
Diagram: a cone showing the central vent (pipe), a magma chamber below, layers of lava and ash, and a crater at the summit.
Tambaya 10 Rahoto
(a) Draw a map of Africa. On the map, locate and name:
(i) an important area for the production of crude oil in Nigeria, Algeria and Libya
(ii) one important town in each area.
(b) Describe any three ways in which crude oil is of economic importance to any one of the countries in (a)(i) above.
(c) Outline three problems that face the production of crude oil in the country in (b) above.
(a) Crude-oil-producing areas and towns in Africa
(b) Economic importance of crude oil to Nigeria
(c) Problems facing crude-oil production in Nigeria
Examination reminder: For the map question, place each oil area in the correct country and label both the producing area and a town clearly. For the written parts, give three separate, explained points rather than repeating the same idea as “income,” “revenue” and “money.”
Bayanin Amsa
(a) Crude-oil-producing areas and towns in Africa
(b) Economic importance of crude oil to Nigeria
(c) Problems facing crude-oil production in Nigeria
Examination reminder: For the map question, place each oil area in the correct country and label both the producing area and a town clearly. For the written parts, give three separate, explained points rather than repeating the same idea as “income,” “revenue” and “money.”
Tambaya 11 Rahoto
(a) Explain the term salinity
(b) Describe three factors that cause variations in the salinity of seas and oceans
(c) Outline three ways in which oceans are of importance to man.
(a) Explanation of salinity
Salinity is the degree of saltiness of sea or ocean water, that is, the total amount of dissolved mineral salts (chiefly sodium chloride) present in a given quantity of water. It is usually expressed in grams of salt per 1000 grams of water (parts per thousand, \(\text{ppt or } ‰\)). The average salinity of the oceans is about \(35‰\) (35 grams per 1000 grams of water).
(b) Three factors causing variations in salinity
(c) Three ways oceans are important to man
Bayanin Amsa
(a) Explanation of salinity
Salinity is the degree of saltiness of sea or ocean water, that is, the total amount of dissolved mineral salts (chiefly sodium chloride) present in a given quantity of water. It is usually expressed in grams of salt per 1000 grams of water (parts per thousand, \(\text{ppt or } ‰\)). The average salinity of the oceans is about \(35‰\) (35 grams per 1000 grams of water).
(b) Three factors causing variations in salinity
(c) Three ways oceans are important to man
Tambaya 12 Rahoto
(a) What are sedimentary rocks?
(b) Name the three classes of sedimentary rocks according to their mode of formation.
(c) Describe one of the classes of sedimentary rocks in (b) above
(d) Outline four ways in which sedimentary rocks are of importance to man.
(a) What are sedimentary rocks?
Sedimentary rocks are rocks formed from the accumulation, compaction and cementation (lithification) of sediments, that is, particles of older rocks, mineral matter or the remains of plants and animals, usually deposited in layers or strata by water, wind or ice.
(b) Three classes according to mode of formation
(c) Description of one class - Mechanically-formed sedimentary rocks
These are formed from fragments (detritus) of pre-existing rocks that have been broken down by weathering and erosion. The particles are transported by rivers, wind or ice and deposited in layers. Over time the weight of overlying material compacts them and mineral cement binds the grains together. They are classified by grain size: coarse (gravel forming conglomerate), medium (sand forming sandstone) and fine (mud and clay forming shale). They are typically arranged in visible strata (bedding planes).
(d) Four ways sedimentary rocks are important to man
Bayanin Amsa
(a) What are sedimentary rocks?
Sedimentary rocks are rocks formed from the accumulation, compaction and cementation (lithification) of sediments, that is, particles of older rocks, mineral matter or the remains of plants and animals, usually deposited in layers or strata by water, wind or ice.
(b) Three classes according to mode of formation
(c) Description of one class - Mechanically-formed sedimentary rocks
These are formed from fragments (detritus) of pre-existing rocks that have been broken down by weathering and erosion. The particles are transported by rivers, wind or ice and deposited in layers. Over time the weight of overlying material compacts them and mineral cement binds the grains together. They are classified by grain size: coarse (gravel forming conglomerate), medium (sand forming sandstone) and fine (mud and clay forming shale). They are typically arranged in visible strata (bedding planes).
(d) Four ways sedimentary rocks are important to man
Tambaya 13 Rahoto
(a) Explain five ways in which transportation contributes to the economic development of a country.
(b) Outline any five factors that can affect transport development in a country
(a) Five ways transportation contributes to economic development
(b) Five factors that affect transport development
Bayanin Amsa
(a) Five ways transportation contributes to economic development
(b) Five factors that affect transport development
Tambaya 14 Rahoto
(a) Explain the term Traversing
(b) A traverse along a path in a school compound produced the following field records:
| LINE | LENGTH (in metres) | BEARING |
| AB | 100 | 70º |
| BC | 350 | 120º |
| CD | 120 | 85º |
| DE | 75 | 55º |
Use the field records above to plot the path on a scale of 1 cm to 50 metres
(c) What is the distance, in metres, between A and E along the traverse line?
Traversing
Traversing is a surveying method in which a series of connected straight lines is measured. For each line, the surveyor records its length and its bearing (direction measured clockwise from north). These measurements are then plotted to scale to show the route or boundary.
Plotting the traverse (scale: 1 cm represents 50 m)
| Line | Length (m) | Bearing | Plotted length |
|---|---|---|---|
| AB | 100 | 70° | 2.0 cm |
| BC | 350 | 120° | 7.0 cm |
| CD | 120 | 85° | 2.4 cm |
| DE | 75 | 55° | 1.5 cm |
Divide each ground length by 50 to obtain the plotted length. Starting at A, draw AB as 2.0 cm on a bearing of \(70^\circ\). From B, draw BC as 7.0 cm on a bearing of \(120^\circ\). Continue with CD, 2.4 cm on a bearing of \(85^\circ\), and DE, 1.5 cm on a bearing of \(55^\circ\).
Distance between A and E along the traverse line
The words “along the traverse line” mean the total distance travelled from A to E through B, C and D, not the straight-line distance from A to E.
\[AE = AB + BC + CD + DE\]
\[AE = 100 + 350 + 120 + 75 = 645\text{ m}\]
Therefore, the distance from A to E along the traverse is 645 m.
The straight-line distance between A and E would be a different measurement. It can be found from the completed scale drawing or by resolving bearings, and is approximately \(585\text{ m}\); however, this is not what “along the traverse line” asks for. In an examination, add the lengths of all traverse legs whenever the question asks for distance along the route.
Bayanin Amsa
Traversing
Traversing is a surveying method in which a series of connected straight lines is measured. For each line, the surveyor records its length and its bearing (direction measured clockwise from north). These measurements are then plotted to scale to show the route or boundary.
Plotting the traverse (scale: 1 cm represents 50 m)
| Line | Length (m) | Bearing | Plotted length |
|---|---|---|---|
| AB | 100 | 70° | 2.0 cm |
| BC | 350 | 120° | 7.0 cm |
| CD | 120 | 85° | 2.4 cm |
| DE | 75 | 55° | 1.5 cm |
Divide each ground length by 50 to obtain the plotted length. Starting at A, draw AB as 2.0 cm on a bearing of \(70^\circ\). From B, draw BC as 7.0 cm on a bearing of \(120^\circ\). Continue with CD, 2.4 cm on a bearing of \(85^\circ\), and DE, 1.5 cm on a bearing of \(55^\circ\).
Distance between A and E along the traverse line
The words “along the traverse line” mean the total distance travelled from A to E through B, C and D, not the straight-line distance from A to E.
\[AE = AB + BC + CD + DE\]
\[AE = 100 + 350 + 120 + 75 = 645\text{ m}\]
Therefore, the distance from A to E along the traverse is 645 m.
The straight-line distance between A and E would be a different measurement. It can be found from the completed scale drawing or by resolving bearings, and is approximately \(585\text{ m}\); however, this is not what “along the traverse line” asks for. In an examination, add the lengths of all traverse legs whenever the question asks for distance along the route.
Tambaya 15 Rahoto
(a) Draw an outline map of Africa. On the map, show and name one area of:
(i) Equatorial climate
(ii) Tropical continental climate
(iii) Mediterranean climate
(iv) One important town each in (a)(i) and (ii) above.
(b) (i) Name the type of vegetation associated with the Tropical Continental Climate.
(ii) Outline four ways in which the vegetation named in
(b)(i) above has adapted to the climatic characteristics of the area.
(a) Climate regions and towns in Africa
(b)(i) The vegetation associated with the tropical continental climate is tropical grassland, also called savanna.
(b)(ii) Savanna vegetation is adapted to the long hot dry season in the following ways:
Examination point: Link each adaptation to water shortage in the dry season: roots obtain water, fleshy stems store it, and reduced or protected leaves limit water loss by transpiration.
Bayanin Amsa
(a) Climate regions and towns in Africa
(b)(i) The vegetation associated with the tropical continental climate is tropical grassland, also called savanna.
(b)(ii) Savanna vegetation is adapted to the long hot dry season in the following ways:
Examination point: Link each adaptation to water shortage in the dry season: roots obtain water, fleshy stems store it, and reduced or protected leaves limit water loss by transpiration.
Tambaya 16 Rahoto
(a) (i) Define the term drought
(ii) Name two areas affected by drought.
(b) Explain any three effects of drought
(c) Suggest three ways in which drought can be reduced.
(a)(i) Definition of drought
Drought is a long, continuous period of abnormally dry weather, marked by a serious shortage of rainfall well below the normal amount for an area, leading to acute scarcity of water for plants, animals and human beings.
(a)(ii) Two areas affected by drought
(b) Three effects of drought
(c) Three ways drought can be reduced
Bayanin Amsa
(a)(i) Definition of drought
Drought is a long, continuous period of abnormally dry weather, marked by a serious shortage of rainfall well below the normal amount for an area, leading to acute scarcity of water for plants, animals and human beings.
(a)(ii) Two areas affected by drought
(b) Three effects of drought
(c) Three ways drought can be reduced
Tambaya 17 Rahoto
(a) Draw an outline map of Nigeria. On the map, mark and name the following:
(i) two areas noted for inland fishing
(ii) one area noted for off-shore fishing
(iii) one important town in each of the areas shown on the map.
(b)(i) Name three methods of fishing in Nigeria
(ii) Identify four types of fish caught
(c) Outline three benefits of fishing to the Nigerian economy.
(a) Fishing areas and towns in Nigeria
The map shows two inland fishing areas: the Lake Chad basin, with Baga as an important town, and the River Niger–Benue floodplain, with Lokoja. The Lagos offshore waters in the Gulf of Guinea are shown as an off-shore fishing area, with Lagos as the town.
(b)(i) Three methods of fishing in Nigeria
(b)(ii) Four types of fish caught
(c) Three benefits of fishing to the Nigerian economy
Examination reminder: On a map question, place each fishing area in its correct broad location, then add the required town beside it. For inland fishing, choose rivers, floodplains or lakes; for off-shore fishing, place the area in the Atlantic coastal waters.
Bayanin Amsa
(a) Fishing areas and towns in Nigeria
The map shows two inland fishing areas: the Lake Chad basin, with Baga as an important town, and the River Niger–Benue floodplain, with Lokoja. The Lagos offshore waters in the Gulf of Guinea are shown as an off-shore fishing area, with Lagos as the town.
(b)(i) Three methods of fishing in Nigeria
(b)(ii) Four types of fish caught
(c) Three benefits of fishing to the Nigerian economy
Examination reminder: On a map question, place each fishing area in its correct broad location, then add the required town beside it. For inland fishing, choose rivers, floodplains or lakes; for off-shore fishing, place the area in the Atlantic coastal waters.
Za ka so ka ci gaba da wannan aikin?