Ana loda....
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Tambaya 1 Rahoto
(a) Explain how the leaf of a flowering plant is adapted for photosynthesis.
(b) Describe briefly the mode of feeding in tapeworm.
(c) Name one mineral element each needed for the proper functioning of :
(i) bones (ii) red blood cells
(iii) thyroid gland.
(d)(i) State three benefits of including roughages in the diet of humans.
(ii) State three reasons why proteins are important to humans.
(a) How the leaf is adapted for photosynthesis
(b) Mode of feeding in tapeworm: the tapeworm lives in the host's small intestine and feeds by absorbing already-digested food (mainly soluble sugars and amino acids) directly through its flat body wall over its whole large surface area. It has no mouth or gut of its own; it secretes anti-enzymes to protect itself from being digested and simply absorbs the host's nutrients (parasitic nutrition).
(c) One mineral element needed for the proper functioning of
(d)(i) Three benefits of roughage in the diet
(ii) Three reasons why proteins are important to humans
Bayanin Amsa
(a) How the leaf is adapted for photosynthesis
(b) Mode of feeding in tapeworm: the tapeworm lives in the host's small intestine and feeds by absorbing already-digested food (mainly soluble sugars and amino acids) directly through its flat body wall over its whole large surface area. It has no mouth or gut of its own; it secretes anti-enzymes to protect itself from being digested and simply absorbs the host's nutrients (parasitic nutrition).
(c) One mineral element needed for the proper functioning of
(d)(i) Three benefits of roughage in the diet
(ii) Three reasons why proteins are important to humans
Tambaya 2 Rahoto
(a) Copy and complete the table below
| Disease | one effect | one remedy |
| kidney stones | ||
| Nephritis | ||
| Diuresis |
(b) Make a labelled diagram of the carbon cycle.
(c)(i) What is Estuarine habitat?
(ii) Construct a food chain typical of an Estuarine habitat.
(d)(i) Name two diseases that can attack plant crops.
(ii) State three ways of controlling plant diseases.
(e) State four functions of a public health authority
(f) State four ways of maintaining food hygiene in the community.
(a) Completed table
| Disease | One effect | One remedy |
|---|---|---|
| Kidney stones | Blockage of the urinary tract causing severe pain and difficulty in passing urine | Drink plenty of water; remove the stones by surgery or lithotripsy |
| Nephritis | Inflammation of the kidney (nephrons) which impairs filtration, so protein and blood appear in the urine | Treat with antibiotics and rest; use dialysis and a low-salt diet in severe cases |
| Diuresis | Excessive and frequent production of urine, leading to loss of water and dehydration | Treat the underlying cause (e.g. control diabetes); reduce intake of diuretics and take prescribed medication |
(b) Diagram of the carbon cycle
Draw a labelled cycle showing: carbon dioxide in the atmosphere; uptake of CO2 by green plants in photosynthesis; passage of carbon compounds to animals through feeding; return of CO2 to the air through the respiration of plants and animals; release of CO2 through the decay/decomposition of dead plants and animals by micro-organisms; and release of CO2 through the combustion (burning) of wood and fossil fuels.
(c)(i) Estuarine habitat
An estuarine habitat is the region where a river meets the sea, containing brackish water (a mixture of fresh water and salt water) whose salinity rises and falls with the tides.
(c)(ii) A food chain typical of an estuary
Phytoplankton (diatoms) → zooplankton → small fish (mullet) → large fish / heron.
(d)(i) Two diseases that attack crops: cassava mosaic disease and rice blast (leaf spot and rust are also acceptable).
(d)(ii) Three ways of controlling plant diseases: use disease-resistant varieties; spray with the correct fungicide/pesticide; practise crop rotation; remove and burn infected plants.
(e) Four functions of a public health authority
(f) Four ways of maintaining food hygiene in the community
Bayanin Amsa
(a) Completed table
| Disease | One effect | One remedy |
|---|---|---|
| Kidney stones | Blockage of the urinary tract causing severe pain and difficulty in passing urine | Drink plenty of water; remove the stones by surgery or lithotripsy |
| Nephritis | Inflammation of the kidney (nephrons) which impairs filtration, so protein and blood appear in the urine | Treat with antibiotics and rest; use dialysis and a low-salt diet in severe cases |
| Diuresis | Excessive and frequent production of urine, leading to loss of water and dehydration | Treat the underlying cause (e.g. control diabetes); reduce intake of diuretics and take prescribed medication |
(b) Diagram of the carbon cycle
Draw a labelled cycle showing: carbon dioxide in the atmosphere; uptake of CO2 by green plants in photosynthesis; passage of carbon compounds to animals through feeding; return of CO2 to the air through the respiration of plants and animals; release of CO2 through the decay/decomposition of dead plants and animals by micro-organisms; and release of CO2 through the combustion (burning) of wood and fossil fuels.
(c)(i) Estuarine habitat
An estuarine habitat is the region where a river meets the sea, containing brackish water (a mixture of fresh water and salt water) whose salinity rises and falls with the tides.
(c)(ii) A food chain typical of an estuary
Phytoplankton (diatoms) → zooplankton → small fish (mullet) → large fish / heron.
(d)(i) Two diseases that attack crops: cassava mosaic disease and rice blast (leaf spot and rust are also acceptable).
(d)(ii) Three ways of controlling plant diseases: use disease-resistant varieties; spray with the correct fungicide/pesticide; practise crop rotation; remove and burn infected plants.
(e) Four functions of a public health authority
(f) Four ways of maintaining food hygiene in the community
Tambaya 3 Rahoto
(a) Explain the following terms:
(i) test cross
(ii) monohybrid cross.
(b) In a mango plant the, the allele for bean-shaped seed is r and is recessive to round-shaped seed R. With the aid of a genetic diagram, determine the genotypes of the offspring if:
(i) a homozygous bean-shaped parent with a homozygous round shaped parent;
(ii) a heterozygous bean-shaped parent is crossed with a heterozygous round shaped parent.
(a)(i) Test cross: This is the crossing of an organism showing a dominant character, but whose genotype is unknown, with a homozygous recessive organism in order to determine the unknown genotype.
(a)(ii) Monohybrid cross: This is a genetic cross involving one pair of contrasting alleles, used to study the inheritance of a single character.
(b) Let R represent the allele for round-shaped seed (dominant) and r represent the allele for bean-shaped seed (recessive).
(i) Homozygous bean-shaped parent × homozygous round-shaped parent
Parental genotypes: \(rr \times RR\)
All the offspring have genotype \(Rr\). Therefore, all the offspring are round-shaped.
Genotypic ratio: 100% \(Rr\)
Phenotypic ratio: 100% round-shaped seeds.
(ii) Heterozygous cross
A bean-shaped plant cannot be heterozygous because the heterozygous genotype \(Rr\) produces round-shaped seeds. Thus, the stated heterozygous parents have genotype \(Rr\), and the genetic cross is \(Rr \times Rr\).
Offspring genotypes are \(RR, Rr, Rr\), and \(rr\).
Genotypic ratio: \(1RR : 2Rr : 1rr\).
Phenotypic ratio: \(3\) round-shaped seeds : \(1\) bean-shaped seed.
Bayanin Amsa
(a)(i) Test cross: This is the crossing of an organism showing a dominant character, but whose genotype is unknown, with a homozygous recessive organism in order to determine the unknown genotype.
(a)(ii) Monohybrid cross: This is a genetic cross involving one pair of contrasting alleles, used to study the inheritance of a single character.
(b) Let R represent the allele for round-shaped seed (dominant) and r represent the allele for bean-shaped seed (recessive).
(i) Homozygous bean-shaped parent × homozygous round-shaped parent
Parental genotypes: \(rr \times RR\)
All the offspring have genotype \(Rr\). Therefore, all the offspring are round-shaped.
Genotypic ratio: 100% \(Rr\)
Phenotypic ratio: 100% round-shaped seeds.
(ii) Heterozygous cross
A bean-shaped plant cannot be heterozygous because the heterozygous genotype \(Rr\) produces round-shaped seeds. Thus, the stated heterozygous parents have genotype \(Rr\), and the genetic cross is \(Rr \times Rr\).
Offspring genotypes are \(RR, Rr, Rr\), and \(rr\).
Genotypic ratio: \(1RR : 2Rr : 1rr\).
Phenotypic ratio: \(3\) round-shaped seeds : \(1\) bean-shaped seed.
Tambaya 4 Rahoto
(a) Explain briefly sexual reproduction in Rhizopus.
(b) A student suddenly stepped on a big snake, he cried for help and ran away.
(i) Name the hormone produced in the body for the reaction.
(ii) In which part of the human body is the hormone named in (b) (i) produced?
(iii) State five changes that must have taken place as a result of the hormone named in (a) (i).
(c) (i) In tabular form, state three differences between excretion in flowering plants and excretion in humans,
(ii) List two organelles found in plant cell that are responsible for the excretion of metabolic wastes.
(a) Sexual reproduction in Rhizopus: when two hyphae from opposite mating strains (+ and -) grow close together, each puts out a short side branch called a progametangium. The tips swell and are cut off by cross-walls to form two gametangia, each containing many nuclei (gametes). The walls between the touching gametangia dissolve and their contents fuse (plasmogamy then karyogamy). This produces a thick-walled, resistant zygospore. The zygospore undergoes a resting period, then germinates by meiosis to produce a sporangium that releases haploid spores which grow into new mycelia.
(b)(i) Hormone produced: adrenaline (epinephrine).
(ii) Site of production: the adrenal (suprarenal) glands, specifically the adrenal medulla, located above each kidney.
(iii) Five changes caused by adrenaline
(c)(i) Three differences between excretion in flowering plants and in humans
| Excretion in flowering plants | Excretion in humans |
|---|---|
| No specialised excretory organs | Has specialised organs (kidneys, lungs, skin) |
| Wastes produced slowly and in small amounts | Wastes produced rapidly and in larger amounts |
| Some wastes are reused (e.g. oxygen, carbon dioxide) or stored in tissues | Wastes are mostly removed from the body, not reused |
| Nitrogenous waste is little; main products are oxygen, carbon dioxide and water | Produces much nitrogenous waste (urea) |
(ii) Two organelles in plant cells responsible for excreting metabolic wastes: the vacuole (stores waste in the cell sap) and the plastids/chloroplasts (release oxygen and other products). (Golgi bodies are also acceptable.)
Bayanin Amsa
(a) Sexual reproduction in Rhizopus: when two hyphae from opposite mating strains (+ and -) grow close together, each puts out a short side branch called a progametangium. The tips swell and are cut off by cross-walls to form two gametangia, each containing many nuclei (gametes). The walls between the touching gametangia dissolve and their contents fuse (plasmogamy then karyogamy). This produces a thick-walled, resistant zygospore. The zygospore undergoes a resting period, then germinates by meiosis to produce a sporangium that releases haploid spores which grow into new mycelia.
(b)(i) Hormone produced: adrenaline (epinephrine).
(ii) Site of production: the adrenal (suprarenal) glands, specifically the adrenal medulla, located above each kidney.
(iii) Five changes caused by adrenaline
(c)(i) Three differences between excretion in flowering plants and in humans
| Excretion in flowering plants | Excretion in humans |
|---|---|
| No specialised excretory organs | Has specialised organs (kidneys, lungs, skin) |
| Wastes produced slowly and in small amounts | Wastes produced rapidly and in larger amounts |
| Some wastes are reused (e.g. oxygen, carbon dioxide) or stored in tissues | Wastes are mostly removed from the body, not reused |
| Nitrogenous waste is little; main products are oxygen, carbon dioxide and water | Produces much nitrogenous waste (urea) |
(ii) Two organelles in plant cells responsible for excreting metabolic wastes: the vacuole (stores waste in the cell sap) and the plastids/chloroplasts (release oxygen and other products). (Golgi bodies are also acceptable.)
Tambaya 5 Rahoto
(a)(i) What is sewage?
(ii) State five effects of releasing untreated sewage into a stagnant water body.
(b) Explain surface terracing as a soil conservation method.
(c) Explain the term adaptation.
(d) Explain two ways each by which the following organisms adapt to their habitats:
(i) hydrophytes
(ii) xerophytes.
(a)(i) Sewage is the liquid and solid waste matter, including human excreta, waste water and refuse, that is carried away from homes, industries and towns in drains and sewers.
(ii) Five effects of releasing untreated sewage into a stagnant water body
(b) Surface (bench) terracing: this is a soil-conservation method used on steep slopes in which the slope is cut into a series of broad, level, step-like platforms (terraces) supported by ridges or walls along the contour. The flat terraces reduce the speed of run-off water, allow it to soak into the soil, and so check soil erosion while retaining water and nutrients for crops.
(c) Adaptation is the possession of special structural, physiological or behavioural features that enable an organism to survive and reproduce successfully in its particular environment.
(d) Two ways each of adaptation
Bayanin Amsa
(a)(i) Sewage is the liquid and solid waste matter, including human excreta, waste water and refuse, that is carried away from homes, industries and towns in drains and sewers.
(ii) Five effects of releasing untreated sewage into a stagnant water body
(b) Surface (bench) terracing: this is a soil-conservation method used on steep slopes in which the slope is cut into a series of broad, level, step-like platforms (terraces) supported by ridges or walls along the contour. The flat terraces reduce the speed of run-off water, allow it to soak into the soil, and so check soil erosion while retaining water and nutrients for crops.
(c) Adaptation is the possession of special structural, physiological or behavioural features that enable an organism to survive and reproduce successfully in its particular environment.
(d) Two ways each of adaptation
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