Ecology

227 soru

Soru 221Soru

Establishing shelterbelts consisting of lines of drought-resistant trees planted perpendicular to prevailing winds effectively reduces soil erosion and conserves soil moisture in arid agricultural lands.

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Cevap: True

Cevap

The statement is True.
The statement is true because shelterbelts significantly reduce wind velocity, preventing wind-driven topsoil loss and decreasing atmospheric evaporative demand on soil and vegetation.

Adım Adım Çözüm

1
Identify the primary mechanism of shelterbelts in environmental management.
Shelterbelts serve as mechanical barriers that break and redirect wind force across cultivated fields.
Planting trees across prevailing wind directions disrupts linear air currents near ground level.
2
Assess the impact of reduced wind speed on soil conservation and moisture retention.
Wind erosion of topsoil is suppressed and crop water loss via evaporation is reduced.
Slower wind speeds minimize kinetic energy capable of lifting dry soil particles and reduce the vapor pressure gradient responsible for rapid evaporation.

Anahtar Kavram

Shelterbelts and Windbreaks in Soil and Water Conservation
Soru 222Soru

An ecological study of aquatic habitats in West Africa compares the physical conditions and organismal adaptations between lotic (swiftly flowing streams) and lentic (standing water bodies like ponds) environments. Which of the following structural adaptations is specifically characteristic of benthic invertebrates inhabiting lotic freshwater environments to survive strong currents?

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Cevap: Dorsoventrally flattened body shapes and muscular ventral suction discs

Cevap

Dorsoventrally flattened body shapes and muscular ventral suction discs
Inhabitants of lotic (fast-running water) habitats face constant hydrodynamic drag. Flattened body profiles minimize surface area exposed to flowing water by keeping the organism low within the slow-moving boundary layer along rock surfaces, while ventral suckers or hooks provide firm attachment.

Adım Adım Çözüm

1
Identify the primary physical stressor in lotic freshwater habitats
Lotic habitats (running waters such as streams and rivers) are defined by continuous, unidirectional water movement and strong hydrodynamic shear forces.
Organisms living in lotic environments must overcome the mechanical threat of being dislodged and swept downstream.
2
Evaluate morphological adaptations suited to overcome stream velocity
Dorsoventral flattening keeps the organism within the boundary layer near substrate surfaces, and adhesive suction mechanisms provide secure mechanical attachment.
These physical features directly counteract drag forces exerted by flowing water.

Anahtar Kavram

Structural Adaptations to Lotic Aquatic Habitats
Tahmini Süre:1m 0s
Soru 223Soru

To protect an endangered primate species threatened by forest fragmentation, environmentalists establish a protected nature reserve in its original forest habitat. Which type of conservation strategy does this action represent?

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Cevap: In-situ conservation, because the species is protected directly within its natural habitat

Cevap

The strategy represents in-situ conservation, as it protects the endangered species within its original, natural ecosystem.
In-situ conservation refers to the protection and management of biological resources within their natural habitats, such as national parks, biosphere reserves, and nature sanctuaries. Since the primate population is preserved in its original forest environment, this strategy is strictly in-situ.

Adım Adım Çözüm

1
Analyze the location of conservation intervention described in the scenario.
The protection takes place directly inside the primate's original, natural forest environment.
The location determines whether the conservation method is categorized as in-situ (on-site) or ex-situ (off-site).
2
Differentiate between in-situ and ex-situ conservation definitions.
In-situ conservation preserves wild populations within their natural ecosystems (e.g., national parks, wildlife sanctuaries), whereas ex-situ conservation removes them to artificial environments (e.g., zoos, botanical gardens).
Correctly applying conservation terminology distinguishes the target method from off-site or resource-utilization strategies.

Anahtar Kavram

In-situ vs Ex-situ Conservation Strategies
Tahmini Süre:1m 0s
Soru 224Soru

To ensure the sustainable management of a forest reserve while meeting local timber demands, environmental agencies advocate for selective logging rather than clear-cutting. Which of the following best explains why selective logging effectively conserves forest resources?

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Cevap: It preserves structural canopy cover and root systems, thereby minimizing soil erosion and maintaining habitat biodiversity.

Cevap

Selective logging conserves forest resources by preserving canopy structure and root systems, which prevents soil erosion and maintains biodiversity.
Selective logging preserves the ecological integrity of the forest by removing only designated mature trees. This practice leaves the surrounding vegetation, root networks, and canopy intact, protecting topsoil from erosion by wind and water while preserving microhabitats for fauna.

Adım Adım Çözüm

1
Analyze the ecological impact of selective logging versus clear-cutting.
Selective logging targets only specific mature or commercial trees while leaving the rest of the vegetation standing.
Maintaining plant cover keeps the root matrix anchored in the soil and protects microclimates within the forest.
2
Identify the key environmental benefit related to conservation of natural resources.
Intact root systems prevent rain runoff from washing away topsoil, while standing timber preserves habitats for diverse species.
Soil retention and habitat preservation are central pillars of sustainable natural resource management.

Anahtar Kavram

Sustainable Forest Resource Management
Tahmini Süre:1m 0s
Soru 225Soru

Match each aquatic or terrestrial habitat in Column A with its corresponding defining environmental characteristic and biotic feature in Column B.

Soldaki öğeye tıklayın, sonra eşleşen sağdaki öğeye tıklayın

Öğeler

Estuarine Mangrove Swamp
Benthic Zone of a Deep Lake
Sahel Savanna
Montane Vegetation Zone

Eşleşmeler

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Cevap

Estuarine Mangrove Swamp matches fluctuating salinity and oxygen-deficient mud; Benthic Zone of a Deep Lake matches absence of sunlight and accumulation of detritus; Sahel Savanna matches sparse rainfall and short thorny shrubs; Montane Vegetation Zone matches low atmospheric temperature and dwarf cushion plants.
Each biome and aquatic habitat is matched to its primary physical constraints and characteristic plant/organism adaptations. Estuaries feature variable salinity and stilt roots; the benthic zone is deep, dark, and rich in detritus; the Sahel savanna is semi-arid with sparse thorny scrub; and montane zones present cold high-altitude conditions with dwarf vegetation.

Adım Adım Çözüm

1
Analyze the abiotic and biotic factors of the Estuarine Mangrove Swamp.
Identified brackish conditions (fluctuating salinity), anaerobic mud substrates, and specialized stilt roots.
Estuaries form where rivers meet the ocean, creating salinity gradients and hypoxic soils.
2
Examine the benthic zone of deep aquatic habitats.
Matches dark, cold conditions at the bottom of water bodies where decomposers process falling organic detritus.
Sunlight cannot penetrate to the aphotic benthic substrate in deep lakes.
3
Evaluate the climatic profile of the Sahel Savanna in West Africa.
Matches extreme aridity, short rainy seasons (200500 mm200-500\text{ mm} annually), and desert-edge vegetation like thorny acacias.
The Sahel represents the transitional zone between the Sudan Savanna and the Sahara Desert.
4
Determine the features of high-altitude Montane biomes.
Matches cold air temperatures, elevated UV radiation, and stunted cushion-forming flora.
Lapse rate reduces air temperature at higher elevations, selecting for dwarf plant growth forms.

Anahtar Kavram

Biomes and Aquatic/Terrestrial Environmental Characteristics
Soru 226Soru

Heavy metal contamination in aquatic environments can cause severe ecological damage through bioamplification across food webs. Arrange the following sequential processes involved in methylmercury poisoning in an aquatic ecosystem in the correct order, from the initial waste release to the ultimate biological impact on apex consumers.

Öğeleri doğru sıraya koymak için sürükleyin

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Cevap

The correct ecological sequence begins with industrial inorganic mercury discharge, followed by bacterial transformation into organic methylmercury, absorption by phytoplankton, biomagnification across consumer trophic levels, and ultimate neurological toxicity in apex predators.
Heavy metal pollution biomagnifies sequentially: industrial effluent releases inorganic mercury into water, benthic anaerobic bacteria methylate it into organic methylmercury, phytoplankton absorb the lipid-soluble toxin, consuming organisms biomagnify the concentration at each trophic step, and top predators reach lethal toxic thresholds resulting in severe neurological damage.

Adım Adım Çözüm

1
Identify the initial source of environmental pollution
Industrial discharge releases inorganic mercury into the aquatic habitat.
Pollution processes commence with the introduction of toxic effluents into an ecosystem.
2
Trace the microbial modification of the pollutant
Anaerobic sediment bacteria metabolize inorganic mercury into organic methylmercury.
Methylation turns inorganic mercury into a bioavailable, fat-soluble compound capable of crossing cell membranes.
3
Determine primary producer bioaccumulation
Phytoplankton absorb methylmercury from surrounding water.
Autotrophic primary producers uptake dissolved contaminants, bringing them into the living food chain.
4
Analyze trophic transfer and concentration increase
Methylmercury biomagnifies progressively through successive consumer trophic levels.
Higher-level consumers consume multiple contaminated organisms over their lifespan without metabolic excretion of heavy metals.
5
Identify the final physiological impact
Apex predators experience acute neurotoxicity and reproductive failure.
Organisms at the top of the ecological pyramid accumulate the highest tissue concentration of persistent pollutants.

Anahtar Kavram

Biomagnification of Heavy Metals in Aquatic Food Webs
Soru 227Soru

In urban centers, the incomplete combustion of hydrocarbon fuels in gasoline engines and power generators releases carbon monoxide (COCO) into the atmosphere. Which of the following best describes the primary physiological effect of this gaseous pollutant on human health?

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Cevap: It binds readily with hemoglobin to form carboxyhemoglobin, drastically reducing oxygen transport to body tissues.

Cevap

Carbon monoxide binds readily with hemoglobin to form carboxyhemoglobin, drastically reducing oxygen transport to body tissues.
Carbon monoxide (COCO) is an atmospheric pollutant resulting from incomplete fuel combustion. It binds to hemoglobin with significantly higher affinity than oxygen, forming carboxyhemoglobin. This prevents hemoglobin from binding and transporting oxygen to tissues, causing cellular hypoxia.

Adım Adım Çözüm

1
Identify the pollutant and its chemical origin
Carbon monoxide (COCO) is a toxic pollutant produced during incomplete combustion of carbon-containing fuels.
Identifying the source and chemical nature of carbon monoxide clarifies its mode of physiological damage.
2
Analyze the mechanism of carbon monoxide toxicity in the human circulatory system
Carbon monoxide binds to hemoglobin with an affinity over 200 times greater than that of oxygen, forming carboxyhemoglobin.
This stable complex prevents hemoglobin from binding and transporting oxygen, leading to tissue hypoxia and chemical asphyxiation.

Anahtar Kavram

Air Pollution and Physiological Effects of Carbon Monoxide
Tahmini Süre:1m 0s
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Ecology Alıştırma Soruları — JAMB UTME — Sayfa 12 | Examkin