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Reptile [31]
2 years ago
6

During periods of intense exercise, cells do not receive enough oxygen to perform the normal process of aerobic cellular respira

tion. As a result, the cells resort to anaerobic respiration, which produces only 1/20th of the energy produced during the aerobic process. This alternative version of cellular respiration produces lactic acid as waste, which results in muscle soreness. Which of the following statements does the above information support?
A
Cellular respiration is affected by sugar production.


B.
Cellular respiration is affected by cell hydration.


C.
Cellular respiration is affected by the availability of reactants.


D.
Cellular respiration is affected by temperature.
Biology
1 answer:
Wewaii [24]2 years ago
5 0

Answer: for me the best option is D.

Explanation: lets explain this.

Cellular respiration begins with a process that divides the glucose within the cells making it readily available as a source of energy. This process can occur without oxygen (anaerobic respiration) or in the presence of oxygen (aerobic respiration). Anaerobic respiration generates more excess waste (lactate) than aerobic . Besides, high levels of lactate build within the muscle cells. Excess lactate slows the cellular respiratory process and is experienced as a burning sensation in the muscles if exercise continues.

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In a further experiment, the researchers add a compound to the cell growth medium that both binds and releases protons (H+) and
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The researchers add a compound to the cell growth medium that both binds and releases protons (H+) and also pass through lipid membranes. The effect that the added compound will have on the ATP production by the cells is that ATP synthase will stop.  

<h2>Further Explanation</h2>

If a compound passes through or enters the lipid bilayers within the plasma membrane and binds with the hydrogen ions and also causes it release, the effect of this is that there will be no presence of any hydrogen to pass through the adenosine triphosphate (ATP) synthase.

ATP synthase is present in the mitochondrial membrane when hydrogen ion is passed into the lumen of mitochondria which also due to the proton gradients which produced ATP molecule with hydrogen ion into the lumen. The adenosine triphosphate (ATP) molecule is generated from inorganic phosphorus molecule and Adenosine diphosphate (ADP).

ATP synthase refers to an enzyme that produces adenosine triphosphate. ATP provides energy used to drive many processes within the living cells. It involves electron transfer from the intermembrane space to the inner membrane and moved back to the matrix.

The ATP is basically found from inorganic phosphate and Adenosine triphosphate (ADP).

Therefore, its effect is that ATP synthase will stops

Learn more about ATP synthases at:

brainly.com/question/10083364

#learnwithbrainly

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2 years ago
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Why would a student who wants to be a doctor study chemistry?
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A doctor need to study chemistry: To know and understand the chemicals processes of matter in the body work which is for example insulin, DNA etc. and to study of all processes in a living organism. The three reasons to study chemistry is because chemistry can be useful in clearing up the natural world, preparing people for career opportunities and producing informed citizens. Some outcomes of modern research in chemistry can lead to technologies that aim to benefit the environment, preserve and produce energy, progress human life and multiply our knowledge of the universe. To help the citizen be a more informed citizen is to let them know how things work makes better decisions and use them better 
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Some areas of the Earth receive more solar radiation than others. Which of the following results from the Sun's uneven heating o
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Dna never migrates from the nucleus to the cytoplasm to participate directly in protein synthesis. True or false
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Answer: true

Explanation:

Only the mRNA made from the DNA takes part in the protein synthesis

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2 years ago
A geneticist crossed pure breeding black mice with pure breeding brown mice. All the 992 mice in F1 generation had black coats.
MaRussiya [10]

Answer:

  • The statements that apply are the third and the fourth.

Explanation:

Since the <em>mice crossed</em> were <em>pure breeding</em>, each parent<em> produced sperms of one kind</em>, both alleles of each parente were equal. Thus, the first (A) and second (B) statements are false.

Assume <em>pure breeding black mice</em> produced BB sperm and <em>pure breeding brown mice</em> produced bb sperm.

The punnett square for the first generation, F₁ is would be:

         b       b

B        Bb    Bb

B        Bb    Bb

This is, all the <em>F₁ generation</em> mice are Bb.

All the <em>992 in F₁ generation had black coats</em> means <em>black is dominant</em>.

Now when F₁ generation is crossed, the punnet square reveals the second generation, F₂:

         B      b

B        BB    Bb

b         bB    bb

The brown allele that was hidden now appears.

Based on the assumption that black is dominant, BB, Bb and bB are black, which is 3/4 or 75%. This, is 75% of the mice in the F₂ genrertion are black.

The combination bb is brown. Thus, 1/4 or 25% of the mice in the F₂ generation are brown.

When the mice in the first generation were crossed, they yielded 961 black coated mice and 317 brown coated mice. That is:

  • Total mice: 961 + 317 = 1278
  • Proportion of black mice: 961 / 1278 ≈ 0.75 = 3/4
  • Proportion of brown mice: 317 / 1278 ≈ 0.25 = 1/4
  • Ratio black to brown: 3 to 1.

Therefore, it is proven that an approximately three-to-one ratio of black to brown cated mice in F₂ is accounted fro the black allele being dominant over the  brown allele (choice C.)

Also, the brown allele is not independent from the black allele and dissapears in the F₁ generation: it is not independent because it presence will only be shown when the black allele is not present, and it is said that it dissapears because it is not revealed, it is hidden.

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