Rare genetic disorders may become common in small populations through ____________________. a. rapid environmental change c. genetic drift

Answers

Answer 1
Answer: i would go with c genetic drift 

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In the nitrogen cycle, once a consumer gains nitrogen nutrients from animals or plants, it recycles these nutrients back to the earth by _____.

Answers

The correct answer to the question is releasing waste and decomposition. In the nitrogen cycle, once a consumer gains nitrogen nutrients from animals or plants, it recycles these nutrients back to the earth by releasing waste and decomposition.

if one parent is homozygous for black hair and the other parent to homozygous for blonde hair, what are the chances that their children will have blonde hair? write the punnett square.

Answers

Find the attachment for the punnett square:-
B B
b Bb Bb
b Bb Bb

genotype

0% - for homozygous blonde
100% - for heterzygous blonde
0% - homozygous black

phenotype

50% - black
50% - blonde

Speciation is the formation of new species as result of evolution by natural selection. What effect could separation of populations have on speciation? A) one half of the species will go extinct if the population is separated
B) the separation populations will always evolve into at least 2 different species
C)if the environments differ enough, the separated populations may evolve differently
D) by separating, the populations will no longer be able to interbreed and will die off

Answers

Animals pass down their features to their children when they breed.  When you separate a population (or group of animals of the same species), say by building a large wall, they can't interbreed with each other.  This means that if an animal on one side of the border gets an adaptation, it won't pass it on to the other animal.  Soon, each side will evolve different adaptations, and the two populations will become so different that they become two different species.

It is possible that one-half wouldn't be able to survive, and go extinct, but it doesn't happen all the time (A is incorrect).  Similarly, the populations don't ALWAYS evolve into two different species, though they may (B is incorrect).  However, if the environments differ enough, they will acquire different adaptations through evolution.  C is correct!  Keep in mind that D is incorrect: the first part, the populations can't interbreed, is correct, but that doesn't mean they will die off.

Answer: C

I really found this question and the answer helpful thanks for asking question and thanks for answering question too.

any abiotic or biotic factor in an ecosystem that causes a population's size to slow decrease is a ______ factor.

Answers

Limiting factor.....

Answer:The correct answer is limiting factor

Explanation:

How many times larger is the number of hydrogen atoms than oxygen atoms in a molecule of glucose ?

Answers

Well the symbol for water is H2O so there are 2 hydrogen for every 1 Oxygen,which means there will be two times the amount of hydrogen atoms than oxygen.

Final answer:

In a glucose molecule, the number of hydrogen atoms is two times greater than the number of oxygen atoms.

Explanation:

The molecular formula for glucose is C6H12O6, which means that one molecule of glucose contains 6 carbon atoms, 12 hydrogen atoms and 6 oxygen atoms. So, if we compare the number of hydrogen atoms to the number of oxygen atoms in a glucose molecule, we see that there are 12/6 = 2 times more hydrogen atoms than oxygen atoms. This effectively answers the question: how many times larger is the number of hydrogen atoms than oxygen atoms in a molecule of glucose.

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What is the difference between heterozygous and homozygous individuals?

Answers

Ahomozygous individual will have one of the following genotypes, AA, BB, or OO. A heterozygous individual will have an AO, BO, or AB genotype

Final answer:

Heterozygous and homozygous individuals differ in the alleles for a specific trait, with heterozygous individuals having different alleles and homozygous individuals having the same alleles.

Explanation:

Heterozygous and homozygous individuals refer to the genetic makeup of an organism's alleles for a specific trait. In a heterozygous individual, the alleles for a particular trait are different, whereas in a homozygous individual, the alleles are the same. For example, if we consider the trait for eye color, a heterozygous individual could have one allele for brown eyes and one allele for blue eyes, while a homozygous individual could have two alleles for brown eyes or two alleles for blue eyes.

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