b. Recycling paper can lead to 74% less air pollution.
c. Paper recycling can save on the use of water resources.
d. Recycling paper can lead to 35% less water pollution.
The statement presented above that is not true about paper recycling is; A) Recycling one ton of newspaper can save 100 trees.
Paper recycling are the processes of reprocessing waste paper such as old newspapers and magazines into new paper products for reuse. Apart from saving trees from being cut, paper recycling has many other significant benefits such as reducing water and air pollution, saving on the use of water resources and energy. For every ton (200 pounds) of newspaper that is recycled, 17 trees are saved.
The false statement here is that; "recycling paper can lead to 35% less water pollution." The idea of recycling a huge environmental conservation effort.
The term recycling has to do with the process of using a material for the same or another purpose rather than simply disposing the material after it has been used. The idea of recycling a huge environmental conservation effort.
The false statement here is that; "recycling paper can lead to 35% less water pollution."
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b. to keep animals in zoos for people to see
c. protect species from extinction
d. stop hunting
Answer:
c
Explanation:
Some deep-sea organisms appear to be primary consumers, but no plants live near the hydrothermal vents.
Some bacteria and archaea (unicellular organisms), which are known as chemoautotrophs and are typically found in hydrothermal vents in the deep ocean, are examples of chemolithotrophs. These organisms build biomass by the oxidation of inorganic chemical substances. Thus, option A is correct.
Autotrophs are organisms that derive their energy from chemical interactions or the sun. They are also known as producers since they create organic molecules from simple inorganic substances and energy.
Some organisms use the energy that inorganic molecules release to power their core biological functions.
Therefore, Some organisms rely on energy captured from inorganic compounds to drive basic biological processes.
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The observation of bacteria consuming molecular hydrogen helps explain how energy flows through this ecosystem and how primary consumers can exist without relying on photosynthetic plants, which cannot thrive in the absence of sunlight near hydrothermal vents.
The observation that deep-sea bacteria consume molecular hydrogen (H2) is most relevant to resolving the apparent contradiction that "Some organisms rely on energy captured from inorganic compounds to drive basic biological processes" and "Some deep-sea organisms appear to be primary consumers, but no plants live near the hydrothermal vents."
The process by which these bacteria consume molecular hydrogen and utilize it to produce organic compounds through chemosynthesis can provide an explanation for the energy source that supports the primary consumers (in this case, mussels) near the hydrothermal vents. Chemosynthesis allows organisms to generate energy and organic matter from inorganic compounds, such as H2, H2S, and CH4, which are abundant near hydrothermal vents. These primary consumers (like mussels) can then feed on these chemosynthetic bacteria, forming the basis of the food web in this unique ecosystem.
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Animal Characteristics
A Long tail
B Small feet
C Black fur
D White skin
Which animal is least likely to be captured by its enemies?
Answer:
Animal D
Explanation:
The answer is animal D because with white skin, the animal can camouflage into their environment and their predators won't be able to spot them. Also, this makes the most sense out of all of the other ones, and I had this test and it was correct.
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