its easy. global warming. earth will get over heated
A decrease in denitrifying bacteria would lead to less conversion of nitrate (NO3-) into nitrogen gas (N2) during denitrification, disrupting the nitrogen cycle. As a result, nitrate levels would increase in the ecosystem, leading to potential water pollution and eutrophication in aquatic systems.
If denitrifying bacteria were more active than decomposers, nitrogen-fixing bacteria, and nitrifying bacteria, there could be a significant reduction in soil nitrogen availability. This would lead to decreased nitrogen levels in the ecosystem, limiting plant growth and overall productivity. Additionally, the excess nitrogen gas released into the atmosphere could contribute to global warming and disrupt the nitrogen cycle, ultimately harming biodiversity and ecosystem stability.
The impact on the nitrogen cycle if there were a decrease in decomposition in a given ecosystem wouldn't be enough nitrogen to return the atmosphere. Photosynthesis is the process by which plants convert carbon dioxide into energy rich carbon compound.
The impact on the nitrogen cycle if there were a decrease in decomposition in a given ecosystem wouldn't be enough nitrogen to return the atmosphere. Photosynthesis is the process by which plants convert carbon dioxide into energy rich carbon compound.
If the bacteria that cause denitrification were removed from the nitrogen cycle, there would be a buildup of nitrogen compounds such as nitrate and nitrite in the soil and water. This could lead to eutrophication in aquatic ecosystems, causing excessive algae growth and oxygen depletion. Additionally, plants may struggle to access nitrogen in a form they can use, impacting their growth and overall ecosystem productivity.
The pyramid of numbers would be inverted, with more herbivores at the base than producers. This is because more herbivores are consuming the producers, leading to a higher number of herbivores compared to producers.
The impact on the nitrogen cycle if there were a decrease in decomposition in a given ecosystem wouldn't be enough nitrogen to return the atmosphere. Photosynthesis is the process by which plants convert carbon dioxide into energy rich carbon compound.
Without decomposers in the nitrogen cycle, dead organic matter would accumulate as it is not broken down into nutrients that can be used by plants. This would lead to a lack of nitrogen availability for plant growth, disrupting the ecosystem's functioning and impacting all organisms within it. Ultimately, this could result in ecosystem collapse due to nutrient imbalance.
Livestock farming contributes to an increase in nitrogen inputs into the environment through animal waste, which contains high levels of nitrogen compounds such as urea and ammonia. This excess nitrogen can lead to eutrophication in water bodies as it promotes algal blooms and depletes oxygen levels, harming aquatic ecosystems. Additionally, the decomposition of animal waste releases nitrogen oxides into the atmosphere, contributing to air pollution and acid rain. Overall, the increased nitrogen from livestock farming can disrupt the natural balance of the nitrogen cycle, leading to environmental degradation.
The addition of decomposers would primarily affect the lowest trophic level, as they would break down organic matter from all levels into inorganic nutrients. This would cycle nutrients back into the ecosystem, benefiting all trophic levels indirectly.
One factor that can affect the populations in an ecosystem is that, if an ecosystem had owls with no predators, the owl population would increase and eat all the mice in the ecosystems. The population of the mice would decrease more and more.
a permanent band on the fishing of whales,dolphins and sharks would affect the ecosystem in that fish is the main source of food for all three. if they over populate the ecosystem then there will be a short fall in fish which well eventually leads to fish shortage.