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Airida [17]
4 years ago
11

What loving species is the Quagga most closely related to?

Biology
2 answers:
dusya [7]4 years ago
8 0

Answer:

Zebra's

Explanation:

olga nikolaevna [1]4 years ago
3 0
Scientists long considered the quagga as a species due to its unique appearance. Some even considered it more closely related to wild horses than zebras.
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Identify the varibles in the equation for determining the ideal mechanical advantage of a lever
Alecsey [184]

In the case of a lever, the ideal mechanical advantage, or IMA, is the ratio of the length of the effort arm to the length of the load arm, or IMA = Le / Lr. The effort arm measures the distance from the force applied to the fulcrum, and the load arm measures the distance from the weight, or output force, to the fulcrum.

In the case of a wheel and axle, ideal mechanical advantage is the ratio of the radius of the wheel, R, to the radius of the axle, r. In short, IMA = R/r.

In the case of a pulley system, the ideal mechanical advantage is equal to the number of support strings, N. IMA = N. Alternatively, ideal mechanical advantage is equal to two times the number of movable pulleys.

In the case of an inclined plane, the ideal mechanical advantage is the ratio of the length traveled up the inclined plane, L, to the height difference, h. IMA = L/h.

In the case of a wedge, the ideal mechanical advantage is the ratio of the depth of penetration, L, to the length of the separation of wedged surfaces, t. IMA = L/t.

In the case of a screw, the mechanical advantage is the ratio of the circumference of the screw to the distance traveled after each revolution. In other words, IMA = 2*pi*L / P, where L is the radius of the screw and P is the distance traveled after each revolution.

The actual benefits of a simple machine when compared to its ideal mechanical advantage are reduced due to energy loss caused by friction. The efficiency measures how close a simple machine is to its ideal mechanical advantage. Efficiency is the ratio of the work supplied to the work put into the machine.

3 0
4 years ago
Which ends up with half the number of chromosomes?
lutik1710 [3]

Answer:

Meiosis.

Meiosis is a type of cell division that results in four daughter cells each with half the number of chromosomes of the parent cell, as in the production of gametes and plant spores.

7 0
3 years ago
Read 2 more answers
During a study session about evolution, one of your fellow students remarks, "The giraffe stretched its neck while reaching for
iragen [17]

Answer:

5.b 6.a 7.d 8.b 9.c

Explanation:

Natural selection dictates that all living organisms undergo some form of change in the DNA sequence (mutation), however these changes are often random and can be either neutral, deleterious or beneficial. If a random mutation confers a selective advantage (beneficial) i.e. an organism with a mutation becomes better than others in its environment, that mutation will be carried onto future generations. This happens because the organism with the new mutation will be able to thrive in its environment (adapt) increasing its chances of reproduction. Therefore, “spontaneous mutations can result in the appearance of new traits”.

Genetic variation is simply differences in the genomic DNA of individuals. These differences may arise due to mutations, genetic exchange or even genetic recombination. For example, in a family you have a mother and a father with particular genetic backgrounds. If they have a child that child will have genes from both parents. Then they decide to have another child. That child will also have genes from both parents. However, these children will look different (even in the case of identical twins) because random genes from the parent mix. Genetic variation can be measured at both individual and population levels. In this question gene duplication does not show variation, but suggests similarity of genes.

The Hardy-Weinberg law/principle states that two alleles which are in equilibrium will have constant genotype and allele frequencies granted that no evolutionary pressure on this alleles is present. Therefore, to calculate the frequencies of these alleles one must consider this:

First alleles are different forms of genes. For example a person has two alleles for the color of their eyes, one from their mom and the other from their dad. Both of these are genes for eye color.

Secondly, alleles can be Homozygous dominant AA, Heterozygous Aa, or Homozygous recessive aa.

Lastly, the Hardy-Weinberg frequencies for each of these under random mating are calculated as:

f(A)=p or f(AA)=p^2

f(a)=q or f(aa)=p^2

f(Aa)=2pq

To calculate the frequency of individuals that have the AA genotype:

p+q=1

p+0.8=1

p=1-0.8

p=0.2

Therefore,

f(AA)=p^2

f(AA)=(0.2)^2

f(AA)=0.04

Often in nature populations experience challenges in their environments that may reduce population sizes. For example if a few group of people decide to migrate from a highly populated area to a new, uninhabited piece of land and they begin to reproduce and populate that area, that group is the founder population. This population will have low genetic variation compared to the larger population. The founder effect is when the genetic variation in a population is reduced because of the separation of a small group from the larger (genetically variable) population.

3 0
3 years ago
Part c - how does phospholipid structure relate to the selective permeability of the plasma membrane?
alisha [4.7K]
One of the reasons the plasma membrane can have<span> selective permeability</span><span> it's because it's composed by a bi-layer of phospholipids.
The interaction between them and other molecules will influence how these molecules will cross the membrane. If the molecule it's </span>hydrophobic it can easily cross, if it's polar molecules and ions( hydrophilic), they cannot cross easily.

5 0
3 years ago
Darcy and Raul are having difficulty conceiving a child. Darcy ovulates every 28 days, and Raul’s sperm count is normal. If we c
lesantik [10]

Answer:

Sperm motility

Explanation:

Sperm motility is the property of the sperms to move properly through the woman's reproductive system during the process of fecundation. The sperms need to move into the female reproductive tract to fertilize the ovum and thus form the egg cell.

4 0
3 years ago
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