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victus00 [196]
2 years ago
10

How does the chance of a coin landing on each side compare to the chance that a gamete cell will receive a particular gene at me

iosis?
Biology
2 answers:
tresset_1 [31]2 years ago
6 0
The chance of a coin landing heads or tails is 50% for each individual time. It doesn't matter what the previous throws resulted in. If you flip a coin ten times you can get ten heads, but the probability is still 50% for each toss. The same holds true with gametes. The probability is 50% at the production of each individual cell.
kolezko [41]2 years ago
6 0

Answer:

The chance of a coin landing on each side compare to the chance that a gamete cell will receive a particular gene at meiosis.

Because both have a 50% chance of success.

Explanation:

The probability of a coin landing on one side or the other compares to a gamete cell developing in a certain gene at meiosis is applied because there is a 50% chance that one of the genes will win the right to develop above the other because there are only two providing cells. Therefore, we have a 50% chance on each side. This is one of the most intriguing phenomenons and the recessive and dominant factors play here.

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Answer: C. Shadow length decreased from sunrise to noon.

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Human blood types are characterized by the presence absence of surface markers known as a tigers on the surface of red blood cel
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Answer:

characterized by presence or absence of antigens

the blood types are A, B, O, AB

Explanation:

There are two antigens and two antibodies that are mostly responsible for the ABO types.  The specific combination of these four components determines an individual's type in most cases. Erythrocytes and serum were related to the presence of antigens on these erythrocytes and antibodies in the serum. these antigens  are A and B, and depending upon which antigen the erythrocytes express, blood either belonged to blood group A or blood group B. A third blood group contained erythrocytes that reacted as if they lacked the properties of A and B, and this group was later called "O" blood group. The fourth blood group AB, was added to the ABO blood group system. These erythrocytes expressed both A and B antigens.

Blood group   Antigen present on RBC    Antibodies in serum    Genotype(s)

      A                        antigen A                             anti-B                     AA or AO

      B                        antigen B                             anti-A                     BB or BO

      AB              both A and B antigen                 none                         AB

      O                           none                           anti-A and anti-B           OO

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Parents can pass on chromosomes to their children that are different than their own when the new gene combinations are created b
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