Answer:
The probability of having offspring that have wrinkled seeds and yellow seed color for the cross RRYY ´ RrYy is zero
Explanation:
Given
Round see (R) is dominant to wrinkled seed (r)
While Yellow seed (Y) is dominant to green seed (y)
Now a cross is carried out between RRYY * RrYy, the following offspring are produced
RRYY * RrYy
The gametes of RRYY are RY, RY, RY, RY
The gametes of RrYy are RY, Ry, rY, ry
RY Ry rY ry
RY RRYY RRYy RrYY RrYy
RY RRYY RRYy RrYY RrYy
RY RRYY RRYy RrYY RrYy
RY RRYY RRYy RrYY RrYy
Genotype Ratio
RRYY: RRYy: RrYY: RrYy
4:4:4:4
1:1:1:1
Phenotype
All are round and yellow
The probability of having offspring that have wrinkled seeds and yellow seed color for the cross RRYY ´ RrYy is zero
b.) The relationship is mutually beneficial.
c.) They share the same niche.
d.) One species benefits, while the other is neither helped nor harmed.
Answer:
C (they share the same niche)
Explanation:
Competition is a relationship between organisms resulting in a contest when both are trying to use the same resources related to their growth, reproduction and survivability. It is as a result of limited resources. Competition occurs in virtually all ecosystems in nature. This relationship develops when more than one organism in an environment has the same need for resources (niche) as another, to survive.
Each organism has a specific place in the ecosystem called NICHE. A species' niche is basically its ecological role or the function to which it is especially suited, which is defined by the set of conditions, resources and interactions it needs or can use.
The competitive exclusion principle says that two species can't coexist if they occupy exactly the same niche (competing for identical resources) or to put it in another way, two species in an ecosystem are bound to compete when they share the same niche (need for resources).
B cholesterol level
C fat diet
d metabolism
The correct answer is option D, that is, metabolism.
Metabolism is a term used to signify mainly towards the dissociation of food and its succeeding conversion into energy required by an individual's body. It is something, which comprises both anabolism and catabolism that are the buildup and breakdown of components.
The procedure by which the body transforms what one eats into energy is known as metabolism. At the time of this complex biochemical phenomenon, the calories in beverages and food are amalgamated with oxygen to discharge the energy one requires to work. Therefore, a person having a high amount of energy will have a high metabolism.
B. It is what happens in cellular respiration
C. It is an endergonic reaction
C. It is an endergonic reaction.
Endergonic v/s Exergonic:
Therefore, the statement which is NOT true for a reaction that breaks a bond is option C.
Learn more:
Answer:
C
Explanation:
Endergonic reactions use energy to build bonds
Exergonic reactions release energy through breaking bonds
Meiosis II produces haploid cells, each of which has half the genetic material compared to the original cell. This process involves the separation of sister chromatids leading to four new haploid gametes. Similar to mitosis, these cells go through stages such as interphase, but they do not duplicate chromosomes like in mitosis.
Meiosis II typically produces cells, each of which is characterized as a haploid gamete. In the process of meiosis II, the sister chromatids within the two daughter cells separate, forming four new haploid gametes.
This process is similar to mitosis; however, each dividing cell has only one set of homologous chromosomes, resulting in each cell having half the number of sister chromatids compared to a diploid cell undergoing mitosis. Essentially, the cells produced in meiosis I go through the events of meiosis II simultaneously, undergoing phases such as interphase or interkinesis before diving into meiosis II, during which chromosomes are not duplicated.
In terms of chromosomal content, cells at the start of meiosis II resemble haploid cells in G₂, preparing to undergo mitosis. Ultimately, this cellular division process produces four distinct haploid cells, each bearing half of the original genetic material from the parental cell.
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