Answer:
The biggest difference, however, is that the line in the logistic growth graph changes direction and begins to level off as it nears the carrying capacity. That means that the main difference between exponential and logistic growth is that logistic growth takes into account carrying capacity.
Answer: So the difference between exponential growth and logistic growth is that Exponential growth model is one that exists when the the rate of growth is proportional to the existing amount. For this, a population need ideal conditions: bacteria in a petri dish, radioactive decay or compound interest in a saving amount. The logistics is a different kind of behavior which is more realistic to population not in ideal conditions: the rate of growth is proportional to the amount but there is also a damping factor due to competition and limited resources. This model works that at first the rate of growth getting faster then it slows down since there are too many individual competing on limited space. When this population reaches its equilibrium state, the rate of growth is zero and if there will be no interruptions, the size of the population will stay constant.
Explanation:
same salinity, but colder and less dense
B.
same temperature, but saltier and denser
C.
colder, saltier, and denser
D.
same density, but colder and saltier
raccoons, which can eat a variety of foods
B.
woodpeckers that need to nest in a particular tree
C.
large predators that need to hunt over a wide area
D.
salamanders that hibernate in rotting logs
According to the situation raccoons, which can eat a variety of foods. Is population is most likely to survive.
Generalist species is a species that eats a variety of foods and thrives in a range of habitats.
Specialist species, is a species that has a limited diet and thrives in a narrow range of environmental conditions.
Thus option "A" is correct.
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Answer: A. Raccoons, which can eat a variety of foods
Explanation: when i got home i think i saw a raccoon by my tree
b. a secondary pollutant
c. a tertiary pollutant
d. none of the above
Acid rain is an example of a secondary pollutant. Therefore, option (B) is correct.
Factory, car, and power plant emissions are primary pollutants. Primary pollutants include and NOx from fossil fuel combustion.
Secondary pollutants are created by chemical interactions between main pollutants and other air components. Acid rain is created when primary pollutants like sulphur dioxide (SO2) and nitrogen oxides (NOx) mix with water, oxygen, and other atmospheric components. These interactions produce sulfuric and nitric acids, which fall as acid rain. Therefore, option (B) is correct.
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Short answer: yes. That is exactly how they are classified.
A paramecium is a small one celled (unicellular) living organism that can move, digest food, and reproduce. They belong to the kingdom of Protista, which is a group (family) of similar living micro-organisms. Micro-organism means they are a very small living cell.
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B. Photosynthesis
C. Decaying organisms
D. The gases in the atmosphere
Answer: A. Positive ions
An ocean is a reservoir of carbon. All of the following bring carbon into the ocean except positive ion:
Photosynthesis: Photosynthesis is conducted by aquatic plants in the ocean to prepare their food which is a carbon product.
Decaying organisms: The aquatic plants and animals are buried beneath the ocean bed and they are decayed and decomposed by the activity of microbial organisms. The organic matter produced after this process is rich source of carbon.
The gases in the atmosphere: The gases in the atmosphere consist of carbon dioxide and carbon monoxide released in the atmosphere by burning of fossil fuels, greenhouse gas emission and by other process. These gases are dissolved into ocean water making it available for photosynthesis conducted by aquatic plants. Hence, carbon from the atmosphere enters in ocean through these atmospheric gases.