If a cell lost its ability to perform cellular respiration, it would result in the absence of ATP production, impairment of key metabolic pathways, and reduced energy availability for cellular activities.
If a cell lost its ability to perform cellular respiration, several consequences would occur:
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basic.
neutral.
a salt.
Answer:
Necrosis is an uncontrolled and passive process that usually affects large fields of cells, whereas apoptosis is a controlled and energy (ATP)-dependent event usually limited to individual or small clusters of cells.
Answer: Plasma
Explanation:
The fluid in the body that does not contain red blood cells or blood proteins is known as lymph. It is a part of the lymphatic system and carries white blood cells, which help in fighting against harmful pathogens.
The body fluid that does not contain red blood cells and blood proteins is called lymph. Lymph is a clear, watery fluid that circulates throughout the body in the lymphatic system. Unlike blood, it does not carry red blood cells or many types of blood proteins. Instead, lymph carries white blood cells, particularly lymphocytes, which are instrumental in the body's immune response. These cells help fight infections by attacking bacteria, viruses, and other harmful pathogens.
Learn more about Lymph here:
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An organism whose internal temperature may vary considerably.
An organism that maintains a constant internal temperature.
A. endotherm
B. homeotherm
C. ectotherm
D. poikilotherm
Answer:
An organism that regulates it's temperature internally is the Ectotherm
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.