Phytoplankton is the collective term covering the small photosynthetic organisms which are part of aquatic ecosystems - Leaving Cert Biology - Question 15 - 2014
Question 15
Phytoplankton is the collective term covering the small photosynthetic organisms which are part of aquatic ecosystems. The solid line in the graph below shows the fl... show full transcript
Worked Solution & Example Answer:Phytoplankton is the collective term covering the small photosynthetic organisms which are part of aquatic ecosystems - Leaving Cert Biology - Question 15 - 2014
Step 1
What does the graph tell you about the phytoplankton population?
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Answer
The graph indicates that phytoplankton numbers fluctuate throughout the seasons, showing a peak in spring and a decline in winter. This suggests that phytoplankton populations are influenced by seasonal changes in light, temperature, and nutrient availability.
Step 2
Why do you think that nutrient levels are high in winter and then drop sharply in spring?
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Answer
Nutrient levels are typically high in winter due to reduced phytoplankton activity and decomposition processes releasing nutrients into the water. However, as temperatures rise in spring and sunlight increases, phytoplankton growth accelerates, utilizing available nutrients, leading to a sharp drop in nutrient levels.
Step 3
Give an example of an inorganic nutrient, necessary for phytoplankton growth, that you would expect to find in lake water.
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A common inorganic nutrient necessary for phytoplankton growth is nitrate (or nitrogen).
Step 4
Copy the graph for phytoplankton into your answer book and then, on the same axes as the dashed (---) line, show the numbers of zooplankton over the very next month period. Briefly explain the graph that you have drawn.
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Answer
The graph for zooplankton should show a corresponding rise following the peak in phytoplankton numbers. This reflects the food relationship between phytoplankton and zooplankton, where an increase in phytoplankton provides more food for zooplankton, causing their numbers to rise. However, as the phytoplankton population declines in late autumn, zooplankton numbers are also expected to decrease.
Step 5
Other than the effect of the zooplankton, suggest why the phytoplankton population drops in late autumn.
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In late autumn, environmental factors such as lower temperatures and reduced light intensity can hinder phytoplankton growth, leading to a natural decline in their population. Additionally, changes in nutrient availability can also contribute to this decline.
Step 6
Describe a procedure for estimating rabbit numbers in an ecosystem.
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One method to estimate rabbit numbers is the capture-recapture technique. This involves capturing a number of rabbits, marking them, and releasing them back into their habitat. After some time, a second sample is captured, and the proportion of marked to unmarked rabbits is used to estimate the total population size using the formula:
extPopulationsize=Number of marked in second sample(Number of marked in second sample×Total in first sample)
Step 7
Suggest one reason for the initial rapid increase of the rabbit population.
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The initial rapid increase in the rabbit population can be attributed to the lack of natural predators in the new environment, allowing the population to grow unchecked.
Step 8
Give two possible effects on an ecosystem of the extinction of a plant species.
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The extinction of a plant species may lead to a decrease in herbivore populations that relied on it for food, disrupting the food chain.
It may also result in reduced habitat availability for other organisms that depend on that plant for shelter or breeding.
Step 9
Suggest one advantage and one disadvantage of biological control of a pest organism.
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Advantage: Biological control can effectively manage pest populations without the use of harmful chemicals.
Disadvantage: There is a risk that the biological control agent may become invasive itself or fail to specifically target only the pest species.
Step 10
Suggest one reason why the rabbit numbers recovered.
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Rabbit numbers may have recovered due to a decline in the Myxoma virus's effectiveness or the development of immunity in the rabbit population.
Step 11
Name three factors that affect human population.
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Birth rate
Death rate
Migration patterns
Step 12
Suggest two reasons why the human population increased so rapidly from the mid-1800s.
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Advances in medicine and healthcare have led to lower mortality rates.
Improved agriculture and food distribution methods have decreased famine and malnutrition.
Step 13
Suggest what could happen to biological diversity as the human population continues to increase.
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As human populations grow, biological diversity may decrease due to habitat destruction, pollution, and over-exploitation of species, leading to extinction.
Step 14
Mention the three main ways in which waste can be minimized.
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Reduce waste generation
Reuse materials
Recycle waste
Step 15
What is pollution?
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Pollution is the introduction of harmful substances or products into the environment, causing adverse effects on ecosystems and human health.
Step 16
What is the role of microorganisms in pollution control?
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Microorganisms can break down pollutants and organic waste through processes such as decomposition, helping to purify water and restore the balance in ecosystems.
Step 17
Describe the role of Plants in the Nitrogen Cycle and in the Carbon Cycle.
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Plants play a vital role in the Nitrogen Cycle by absorbing nitrates from the soil and incorporating them into their biomass. In the Carbon Cycle, plants absorb carbon dioxide during photosynthesis, converting it into organic matter and releasing oxygen as a byproduct.
Step 18
Describe the role of Animals in the Nitrogen Cycle and in the Carbon Cycle.
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Animals contribute to the Nitrogen Cycle by consuming plants and respiring, which returns nitrogen to the soil through waste products. In the Carbon Cycle, animals release carbon dioxide during respiration, which is then utilized by plants for photosynthesis.
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