Which global concern is indirectly responsible for all the others

Answers

Answer 1
Answer:

Answer: Human Overpopulation Choice D from USATestPrep

Explanation:

Answer 2
Answer: it is hard to name on that is responsible for all but polution has a large impact on our daily life,hope this helped 

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In a plant, a single locus affects both berry color and berry size. There are two mutant alleles (R1 and R2) in addition to the wild-type allele (R0). Individuals that are R0R0 have large, white berries. Individuals that are R1R1 or R0R1 have red berries, individuals that are R2R2 or R0R2 have small berries, and R1R2 individuals have berries that are both red and small. Thus...R1 is dominant to R2.R2 is dominant to R1.R1 and R2 exhibit incomplete dominance.R1 and R2 exhibit codominance.R1 and R2 exhibit pleiotropy.
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Stored energy is called energy, and movement is called energy.

Answers

kinetic is movement and potential is stored energy

Stored energy is called  potential energy, and movement is called kinetic energy.

Which of the following genotypes indicates a homozygous dominant trait? A. Tt
B. TT
C. tt

Answers

The correct answer is B. The prefix homo means same whereas hetero means different. And when dominant traits are expressed they are written as capital letters.

What causes chemical weathering?a.
damage caused by animals and plants
c.
natural acids
b.
ice wedging
d.
physical factors

Answers

natural acids because chemicals erode rocks in chemical weathering

OK so basically Chemical weathering occurs from rain and other things that are washed in with it so best choice will be to go with option C. Natural Acids.

Which process can produce a large number of offspring?Sexual reproduction

Asexual reproduction

Mitosis

Replication

Answers

The process that can produce a large number of offspring is asexualreproduction, which is present in the second option. Asexualreproduction does not involve any genetic changes and produces identical offspring.

What is the role of reproduction?

There are two types of reproduction: asexual reproduction, which includes binary fission, and sexual reproduction, which includes genetic diversity due to the meiosis process and genes crossing over. Asexual reproduction does not take as long as sexual reproduction in offspring, as evidenced by bacteria and other organisms. Asexual reproduction produces a large number of offspring in a short period of time with no genetic diversity from the parents as no sex cells or gametes are involved.

Hence, the process that can produce a large number of offspring is asexual reproduction, which is present in the second option.

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The asexual reproduction produces a large number of offspring.

In certain populations disruptive selection is occurring in this population which is most likely to survive1)organisms that are small
2) organisms that sexually select
3) organisms with average traits
4) organisms with extreme traits

Answers

The organisms with extreme traits.  

Diversifying selection also known as disruptive selection, illustrates variations in population genetics in which extreme traits are favored over the intermediate traits.  

• It is the rarest of the three kinds of natural selection and can result in the deviation of a species line.  

• In disruptive selection, the makeup of the population would demonstrate phenotypes of both extremes traits.  

• One of the most common example of disruptive selection is London's peppered moths. The darker colored moths were able to survive from predators as they blended with the polluted surroundings, while the lighter moths got extinct.  The medium-colored moths were witnessed easily and got killed by the predators.  

Thus, correct answer is option 4, that is, organisms with extreme traits.

To know more about:

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Explanation:

In certain populations disruptive selection is occurring in this population which is most likely to survive

organisms with average traits

If an orange pet mates with another orange pet, can they have any green offspring?

Answers

Yes. Say the orange allele is dominant to green and call the allele O. If the parents were both heterozygous, or Oo and Oo, they would be orange. In a cross, they have a 1/4 chance of producing oo, or green.
depends on the breed of the animal although possible it depends on the genes