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Marrrta [24]
2 years ago
10

The climate in northern Alaska suddenly changes from a very cold climate to a warm climate. Two species of wolves live in this a

rea. Species X has long fur and doesn't shed to regulate internal temperature. Species Y has short fur and sheds to regulate internal temperature. Which species is most likely to survive this climate change?
Question 1 options:

Species X because its fur will help it stay cool.

Both species will survive because they have fur to help maintain constant internal temperatures.

Species Y because it sheds fur to help maintain constant internal temperatures.

Species X because it can move around the environment to stay cool.
Biology
1 answer:
raketka [301]2 years ago
5 0

Answer:

Option C. Species Y because it sheds fur to help maintain constant internal temperatures.

Explanation:

The specie Y is able to survive because they have short fur and able to remove the fur according to the external environment and body temperature is decreased while specie X will die because of high body temperature due thick fur and hot external environment. So specie Y is the only survival in this hot climate.

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Rapid defibrillation is a link in the adult chain of survival. Why is this important to survival?
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In fruit flies, straight wings are dominant and curly wings are recessive. What will the generations look like? Assume that Mend
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Answer:

The P generation has straight wings and curly wings.

The F1 generation has all straight wings.

The F2 generation has straight wings and curly wings.

Explanation:

This question involves a single gene coding for wing shape in fruit flies. The allele for straight wings (S) is dominant over the allele for curly wings (s). This means that allele "S" will mask the phenotypic expression of allele "s" in a heterozygous state.

According to the question, the cross follows all Mendel's method of crossing two true breeding parents with opposite traits. Hence, the parent generation (P generation) will be between a truebreeding straight wings parent (SS) and a truebreeding curly wings parent (ss). (See attached image for full cross).

Since the straight wing allele (S) is dominant, all the F1 offsprings  will possess straight wings with the genotype: Ss, which is heterozygous.

If this F1 offsprings are self-crossed i.e. Ss × Ss, four possible offsprings in the phenotypic ratio 3 straight wings : 1 curly wing will be produced in the F2 generation. The offsprings will possess the following genotypes: SS, Ss, Ss, and ss.

Offsprings SS, Ss, and Ss will all be phenotypically straight-winged

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In overall, this means that P generation has both straight and curly wings (SS and ss), F1 generation has only straight wings (Ss), F2 generation has both straight and curly wings (SS, Ss and ss).

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