Answer:
Because it is very rare for animals belonging to different phyla to have the same body plans as adults, which makes this characteristic extremely important for classifying living beings.
Explanation:
When classifying living beings, it is very important that scientists evaluate the embryological development pattern and body tissues. The embryological development pattern, however, can present itself in the same or very similar way in living beings that belong to phyla or to a different taxon. For this reason, the embryological development pattern alone is not enough for the classification to be efficient and correct.
On the other hand, it is very rare that adult living beings from different phyla have the same body plan. For this reason, it is favorable for scientists to use the body plan and the embryological development pattern when it is necessary to classify living beings.
crossing over
meiosis
mitosis
The process that is similar to binary fission from the list of options would be mitosis.
Binary fission involves a cell splitting into two cells. The cells are genetically similar.
Mitosis is a cell division in which a cell divides to give 2 daughter cells that are both genetically and phenotypically similar.
Hence, both binary fission and mitosis result in the formation of 2 cells that are similar to their parent cells.
Genetic variation, crossing over, and meiosis all result in variants, unlike binary fission and mitosis.
More on mitosis can be found here: brainly.com/question/1983951
Answer:
Malleable. Aluminum is not a soluble substance. Magnetism does not explain the crushability of the can.
Explanation:
During gametes production, alleles randomly separate producing different combinations in daughter cells. The gametes in this example are YS, Ys, yS, ys.
Gametes are formed during meiosis. Meiosis is a cell division process that produces gametes from germ cells. Through Meiosis, a diploid cell (2n) produces four haploid daughter cells (n).
According to the segregation principle, alleles separate independently during gametes formation.
In anaphase I, homologous chromosomes separate, and each of them migrate to the opposite poles of the cell carrying one of the alleles. This random event leads to different chromosomal combinations in the daughter cells.
Now, let us analyze the problem,
Plant ⇒ heter0zyg0us for both seed shape and seed color ⇒ SsYy
Gametes) YS, Ys, yS, ys.
You can learn more about gamete formation at
So, you would make a punnet square. You would put the capital S and lowercase s on the top of it and then the capital Y and lowercase y on the side. Then you should have SY, sY, Sy, and sy as your outcomes.
b. marsupials.
c. placentals.
d. bird-like.