Answer:
Titan which orbits Saturn.
What are areas especially rich in plant species that are found nowhere else, and in great danger of extinction called?.
The "ecological arks" are regions that are particularly abundant in tree species that are unique to those locations and in grave danger of going extinct.
What happens in extinction?Extinction is the loss of a species as a result of environmental factors or problems with evolution. The rate of species extinction on Earth is ongoing, and it has fluctuated over time. According to the IUCN Red List, 25% of mammals face extinction. In a way, extinction is inevitable.
How can we prevent extinction?Scientists believe that endangered species' specific habitats should be preserved. There must be places where animals may live, eat, and raise their young. Deforestation, oil and gas extraction, overgrazing, and development all lead to the degradation of habitat.
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in a lumbar puncture (spinal tap), fluid is extracted from the group of answer choices subarachnoid space epipial space subdural space epidural space central canal of the spinal cord
An invasive outpatient operation known as a lumbar puncture (LP), sometimes known as a spinal tap, is used to take a sample of cerebrospinal fluid (CSF) from the subarachnoid.
Where does a lumbar puncture get its fluid from?In order to collect a sample of cerebrospinal fluid, a needle is inserted between two lumbar vertebrae during a lumbar puncture. In order to protect your brain and spinal cord from injury, this fluid surrounds them.
spine tapped in the subarachnoid region?To diagnose or treat a condition, a lumbar puncture (LP) or spinal tap may be carried out. In order to perform this procedure, your healthcare provider places a hollow needle in the subarachnoid space, which surrounds the spinal column in the lower back.
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Should farm animals we eat be genetically modified?
Many types of genetically modified plants have been developed, grown and eaten for many years in the United
States. Currently, several agricultural companies are actively developing and researching GMO farm animals. What
are the possible pros and cons of genetically modifying the animals people eat? Do you think the government should
allow the development of GMO farm animals to continue?
Select the link to access the Should farm animals we eat be genetically modified? Discussion.
As a long-term solution, genetically modifying farm animals is unethical. However, the problem of meat production might be solved via genetic engineering through lab-grown meat.
What can be the pros cons of genetically modified farm animals?Scientists can learn more about fundamental biological processes as well as the connections between sickness and mutations by using genetically modified animals.Farm animals, like sheep, goats, and cows, can, however, also be genetically altered to improve certain traits. In addition to increasing the nutritional content of the goods they are raised for, these can include increased milk output and disease resistance. One such example is the genetic engineering of cows, goats, and sheep to express particular proteins in the milk.Even less obvious is the public agreement over their use or lack thereof, as well as how to demonstrate that the technology is harmless for both animals and those who consume them. Animal scientists contend that this discrepancy will practically kill their industry by prohibiting discoveries that could make producing livestock more sustainable, efficient, or compassionate. The legal procedure for getting animals approved seems to be more complicated and treats the modified DNA as a veterinary medicine.Therefore, the future of animal DNA manipulation is far more uncertain.
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epinephrine acts as a signal molecule that attaches to proteins. epinephrine acts as a signal molecule that attaches to proteins. nuclear receptor intracellular receptor g-protein-linked receptor ion-channel receptor receptor tyrosine kinase
Epinephrine acts as a signal molecules that attaches to G-protein-linked receptor proteins.
What is a epinephrine used for?An injection of epinephrine is administered to cure severe allergic responses (including anaphylaxis) to meals, medications, insect stings, foods, or other substances in an emergency. It also is used to treat hypersensitivity brought on by unidentified chemicals or brought on by physical activity.
What does epinephrine do to the blood pressure?Epinephrine, often known as "adrenaline," is a peptide that the body naturally produces and has a variety of uses. Increasing blood pressure and heart rate are two effects. In cases where a patient's blood pressure is extremely low, doctors can elevate blood pressure by administering epinephrine as a medicine.
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The complete question is -
Epinephrine acts as a signal molecules that attaches to ____ proteins.
1. ion-channel receptor
2. nuclear receptor
3. G-protein-linked receptor
4. receptor tyrosine kinase
5. intracellular receptor
Explain the relationship between the structure and function of the cell membrane and cell wall.
Answer: The cell wall is fully permeable to smaller molecules with the size of 30-60 kDa. The membrane is selectively permeable and controls the movement of the substance into and outside the cell. Functions include protection from the external environment.
Explanation:
HELP ASPPPP PLEASE THANK YOU
Answer:
Explanation:
not sure what the question is one is amswered one is not very readable
in a test cro between two individuals heterozygous for a suspected completely dominant, autosomal trait, 41 offspring exhibited the dominant trait, and 16 exhibited the recessive trait. determine the probability that this deviation from the expected is due to chance alone.
The probability will be 2.5%.
The autosomal traits are those traits that occur in an individual due to some changes in the personal DNA.
This doesn't affect the offspring genetically based on gender. Which means these are not related to the genes which are passed on from on generation to another or the sex-related traits.
These traits can be dominant and can be recessive. The dominant trait is can be seen in the next generation affecting anyone. This trait is dominant over the other traits while the recessive traits are not found exactly in the next generation. They may or may not occur. The individual can be carrier of that trait but it won't be shown as the resultant affecting that individual in any manner.
Here, we have 41 offspring exhibiting the dominant trait and 16 offspring exhibiting the recessive traits.
Therefore the probability of these traits can be said to be just 2.5% or we can say approx every 2 individual shows dominant trait over every 1 individual showing recessive trait.
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Which of the following organisms would be able to extract the GREATEST percentage of oxygen from their respiratory medium?
A. sparrows
B. blue whales
C. salmon
D. humans
E. seagulls
16. By approximately what percentage has the concentration of carbon dioxide increased in the atmosphere since 1950?
20%
37%
17%
40%
By approximately 40% has the concentration of carbon dioxide increased in the atmosphere since 1950.
Carbon dioxide concentrations are rising primarily as a result of the fossil fuels that people use for energy. Coal and oil are fossil fuels that contain carbon that plants extracted from the atmosphere over millions of years through photosynthesis.
The CO2 concentration in the atmosphere increased by 2.5 parts per million (ppm) in 2021 and is expected to rise by another 2.5ppm in 2022, resulting in global atmospheric concentrations of 417.2ppm on average for the year. This represents a 51% increase in atmospheric CO2 compared to pre-industrial levels. The presence of carbon dioxide in the atmosphere warms the planet, resulting in climate change. In less than 200 years, human activities have increased the carbon dioxide content of the atmosphere by 50%.
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A student analyzes a cross section of earth's layers. which letter corresponds to a trench in the cross section? question 11 options: l m n o
Answer: its M
Explanation:
i did the k-12 test :)
A scientist discovered a mutation in a particular
gene. However, the mutation did not change
the protein produced from the gene sequence.
What type of gene mutation (insertion, deletion,
or substitution) most likely occurred? Explain your
answer.
The type of gene mutation that most likely occurred is silent mutation.
What is a silent mutation?Silent DNA mutations are those that will not affect the organism phenotypically. In the mutation, the nucleotide is going to be changed, but this change will not cause the amino acid to be changed, but rather the same amino acid will be maintained. Thus not generating a difference in the protein generated.
This is possible because there are different codons that can generate the same amino acids, so certain nucleotides are changed.
Therefore, we can confirm that the gene mutation that is not going to change the protein produced is a silent mutation.
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which of the following is not true of the hamstring group of muscles?
a. All of the hamstrings have origins on the ischial tuberosity, although the biceps femoris has an additional origin.
b. All of the hamstrings insert on both the tibia and the fibula.
c. All of these are true of the hamstrings.
The statement all of the hamstrings insert on both the tibia and the fibula is not true of the hamstring group of muscles (Option B).
What are the hamstring muscles?The hamstring group of muscles can be defined as voluntary skeletal muscles that can be found in the back thigh of the human body.
Therefore, with this data, we can see that the hamstring group of muscles can be found in the back thigh of the human body but not all of them are inserted on both the tibia and the fibula.
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The codon for phenylalanine is UUU. Which of the following codons also most likely encodes for phenylalanine?
Question options:
CUU
UUC
AAA
AUU
The correct answer is option (B) the codons which encode phenylalanine are UUC and UUU both thus the correct answer is UUC.
The codons UUU and UUC specify the amino acid phenylalanine (Phe), and the codons CUU, CUC, CUA, and CUG specify the amino acid leucine (Leu). The codon AUG, often known as the start codon, designates methionine. As a result, when building proteins, methionine is the first amino acid to dock in the ribosome. Due to the fact that just one codon specifies the amino acid tryptophan, it is special. Each of the remaining 19 amino acids is designated by two to six codons. The stop codons, UAA, UAG, and UGA, are used to indicate when the translation has finished.
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which of the following terms is not matched properly with its correct definition? group of answer choices glume - a bract beneath a spikelet awn - slender bristle extending from a lemma culm - the stem of a grass plant lemma - outer bract surrounding a grass flower stolon - underground horizontal stem
Lemma - outer bract surrounding a grass flower is not matched properly.
What is spikelet?In botany, a spikelet is the term used to describe how the flowers of grasses, sedges, and some other Monocots are often arranged.
There are one or more florets in each spikelet. The spikelets are divided into panicles or spikes for further grouping.
A portion of the spikelet is referred to as a lemma in phytomorphology. It is the lowermost of two bracts that resemble chaff and surround the grass floret. It frequently has a long bristle known as an awn and resembles the glumes, which are chaffy bracts found at the foot of each spikelet. Although it is typically thought of as a bract, it has alternatively been thought of as one of the three remaining components of the outer perianth whorl (the abaxial).
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cellular respiration can occur at the same time as photosynthesis, and photosynthesizing plants will either undergo both when exposed to light or just cellular respiration in dark conditions.
The equation for cellular respiration is the exact reverse of photosynthesis in that the products of one process are the reactants of the other.
Why is it known as cellular respiration?As we all know, every cell needs energy to carry out its activities because it is the structure and function of life. As a result, cellular respiration relates to breathing which happens at the smallest scale of our bodies, the cellular level.
What happens during cellular respiration?A glucose molecule gradually decomposes into both water and carbon dioxide during cellular respiration. In the process of transforming glucose, some ATP is directly produced. But far more ATP is eventually created through a procedure known as oxidative phosphorylation.
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The intramolecular cyclization reaction of glucose in solution ______. A) generates a chiral center. B) yields a hemiacetal. C) usually forms a pyranose
The intramolecular cyclization reaction of glucose in Generates a chiral center.
In order to create the matching saturated nitrogen and oxygen heterocycles, -haloalkyl amines and alcohols undergo intramolecular hydrogen bonding (a hydrogen bond created between two functional groups of the same molecule) (an SN2 reaction within the same molecule)
What is the difference between intermolecular and intramolecular?
The atom-atom bonds that hold molecules together are known as intramolecular forces. Molecules in a solid or liquid are held together by intermolecular forces.
What are the 3 types of intramolecular forces?
Covalent, ionic, and metallic bonding are the three types of intramolecular forces. Between two nonmetals, covalent bonds are formed. Atoms share electrons in this kind of relationship. Covalent bonds can be either polar or nonpolar.
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a patient in a physician's office has a deep cut, and as it is being stitched up, a sample of tissue is taken for testing. analysis of the tissue reveals it has few cells, surrounded by a large amount of extracellular matrix proteins with some blood vessels, sweat glands, and nerve cells. what kind of tissue is this? the tissue is most likely epidermis and should also have many keratinocytes and melanocytes. the tissue is most likely dermis, and should also have some fibroblasts, but few keratinocytes and melanocytes. the tissue is most likely dermis and should also have many keratinocytes and melanocytes. the tissue is most likely epidermis and should also have some fibroblasts but few keratinocytes and melanocytes.
The tissue with cells surrounded by extracellular matrix proteins with some blood vessels, sweat glands, and nerve cells is most likely to be dermis, and it should also have some fibroblasts, but few keratinocytes and melanocytes, which means that option B is the correct answer.
The inner layers of the two main layers of the skin are known as dermal layers or dermis, which are supposed to be composed of less number of pigments. Dermis is made up of several other types of tissues such as connective tissues, sweat glands or hair follicles. The most important function of dermis is to support and protect the upper vulnerable layer that is the skin and the deeper layers, assist in thermoregulation which means cooling of body by sweating, and also provide suitable sensations. Fibroblast is basically bulk of connective tissues. Keratinocyte is the major portion of outermost layer of epidermis. Since the test analysis reveals that sweat glands and connective tissues are present, a professional clinician can easily determine from which part of body the sample must have been collected.
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tall (t) is dominant to short (t), yellow seeds (y) are dominant to green (y), and purple flowers (p) are dominant to white (p) in pea plants. if the genes are not linked, what fraction of the offspring from a self-fertilizing plant with genotype ttyypp will be tall with green seeds and purple flowers?
A self-fertilizing plant with genotype ttyypp will not produce any offspring that is tall, with green seeds, and with purple flowers.
Is Mendel's peas' predominant seed color green or yellow?Since they were all yellow, yellow has the upper hand over green in this situation. One Y is enough to obscure the y and turn the peas yellow. The recessive green is subordinated to the one yellow.
If a homozygous green seed YY and a heterozygous yellow seed YY are crossed, what is the genotypic ratio?In a hybrid between heterozygous yellow-seeded and green-seeded plants, 50% of the offspring will have yellow seeds and 50% will have green seeds.
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The calvin cycle and the krebs cycle are similar in that both ________________________________.
The Krebs cycle and the Calvin cycle are similar in that they both create energy and sugar.
They differ from one another because the Krebs cycle uses 3-carbon molecules while the Calvin cycle requires carbon dioxide.
The Krebs Cycle, also known as the citric acid cycle, and the Calvin Cycle are both biological processes that take place in nature. Both cellular processes occur in cycles. Different molecules enter the process, and various molecules also leave it. The Krebs Cycle generates adenosine triphosphate (ATP), which the Calvin Cycle then uses as fuel. Additionally, only photosynthetic plants experience the oxygen-free Calvin Cycle. On the other hand, the Krebs Cycle necessitates oxygen and occurs in the mitochondria of all types of cells.
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When ________ is released from a _______ neuron and binds with receptors on the motor endplate, the muscle begins to __________.
Acelticholine is released from somatic neurons, that is, the fibers in charge of carrying sensory and motor information to the muscles, this is how a series of reactions is generated that will manage to give a response through the muscular system.
The Peripheral System and Somatic CellsMuscles are the preferred organ to respond through movements that are caused by muscle fibers, thanks to the correct secretion of neurotransmitters such as acetylcholine from somatic neurons.
Once the process ends, the muscle manages to contract as a signal sent by our peripheral system. In this and other ways, our central nervous system allows all our organic systems to relate and fulfill their respective functions. Therefore, the statement would be as follows:
When acelticholine is released from a presynaptic neuron and binds to receptors on the motor end plate, the muscle begins to contract.
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Which of the statements is true regarding a phylogenetic tree?
a. Phylogenetic trees could be considered physical representations of hypotheses―those that seek to establish the evolutionary relationships between different organisms.
b. Within a phylogenetic tree, the order of groups located at the tree tips―not the nodes within a tree―determines sister group relationships.
c. Phylogenetic trees only depict the evolutionary relationships between different classes; relationships among different species within the same genus are not illustrated in such trees.
d. Phylogenetic trees are constructed based solely on the morphological characteristics of species; sequence similarities among different organisms are only evaluated by taxonomists.
e. Given the sheer number of prokaryotic and eukaryotic species on Earth, it is impossible to create a phylogenetic tree encompassing all of these organisms.
Option A is correct Phylogenetic trees could be considered physical representations of hypotheses―those that seek to establish the evolutionary relationships between different organisms.
A branching diagram or tree illustrating the evolutionary relationships among distinct biological species or other entities based on similarities and differences in their physical or genetic traits is known as a phylogenetic tree (sometimes referred to as an evolutionary tree or phylogeny). A phylogenetic tree depicts the relationship between several creatures by tracing the course of evolution from a shared ancestor to various descendants. The relationships between individuals in a population to the entire history of life on Earth can all be represented by trees.
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Under conditions of excess oxygen, rubisco will use o2 instead of co2 and less carbon is fixed. This process is called.
Under conditions of excess oxygen, rubisco will use o2 instead of co2 and less carbon is fixed. This process is called photorespiration.
In the Calvin Cycle, a process known as photorespiration takes place during plant metabolism. The crucial enzyme RuBisCO, which fixes carbon dioxide, reacts with oxygen in this mechanism as opposed to carbon dioxide. It happens when the amount of carbon dioxide in the air decreases and rubisco runs out of carbon dioxide to repair, so it starts fixing oxygen. When conditions are right, C3 plants receive enough water, there is a plentiful supply of carbon dioxide, and photorespiration is not an issue.
High temperatures and light intensity both have an impact on photorespiration, boosting the production of glycolate and the flow via the photorespiratory pathway.
The synthesis and metabolism of a tiny particle called glycolate are linked to photorespiration, which results in the light-dependent uptake of oxygen and elimination of carbon dioxide.
Given that photosynthesis produces oxygen as a byproduct and photorespiration produces carbon dioxide as a byproduct, and that the aforementioned gases serve as the raw materials for both processes, photosynthesis, and photorespiration are two biological processes (in flourishing plants) that can operate concurrently side by side.
Around 50 ppm of carbon dioxide is the point at which RuBisCO starts combining oxygen with RuBP in place of carbon dioxide.
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what is the patronage system
Answer:
Spoils system
Explanation:
In politics and government, a spoils system is a practice in which a political party, after winning an election, gives government jobs to its supporters, friends, and relatives as a reward for working toward victory, and as an incentive to keep working for the party—as opposed to a merit system, where offices are awarded on the basis of some measure of merit, independent of political activity.
The patronage system is the appointment or hiring of a person to a government post on the basis of partisan loyalty.
Elected officials at the national, state, and local levels of government use such appointments to reward the people who help them win and maintain an office.
What was the purpose of the patron system?
Patrons protected individual clients from the tax collector and other public obligations. In return, clients gave them money or services. Some clients even surrendered ownership of their land to their patron
What was the benefit of having a patron?
A Patron is someone who provides some sort of benefit to your organization through their association with your group. They are usually someone who has a high profile in some way, and through their position can help raise the profile of your organization as well.
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What develops when two oceanic plates converge
A rift valleys
B deep-sea trenches
C island arcs
D tall, folded mountains
Answer:
The answer to your question is C island arcs
Explanation:
When two oceanic plates converge, the denser plate will end up sinking below the less dense plate, leading to the formation of an oceanic subduction zone.
A subduction zone is also generated when two oceanic plates collide — the older plate is forced under the younger one — and it leads to the formation of chains of volcanic islands known as island arcs.
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the sexual strategies theory holds that women should be choosier than men in selecting mates because women group of answer choices have greater difficulty achieving orgasm. can produce a limited number of offspring. are less likely to end a bad relationship. are physically smaller and weaker than men.
The sexual strategies theory holds that women should be choosier than men in selecting mates because women "can produce a limited number of offspring."
What is sexual strategy?Sexual strategies are the methods that people utilize to attain sexual or mating objectives. Humans have developed a variety of sexual tactics, including short-term and long-term mating. According to sexual strategies theory (SST), humans have evolved a complex menu of mating strategies, that some of these mating adaptations are tethered to the temporal dimension of mating, and that, while some mating adaptations are similar in women and men, others differ significantly between the sexes. Intrasexual selection in females, like in men, entails competition for key resources necessary for access to mates.
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In eukaryotes there are several different types of rna polymerase. Which type is involved in transcription of mrna known as pre-mrna?.
Answer:
RNA polymerase II
Explanation:
RNA polymerase II transcribes mRNA, miRNA, snRNA, and snoRNA genesWhat are some examples of characteristics of life?
Answer:
responsiveness to the environment;
growth and change;
ability to reproduce;
have a metabolism and breathe;
maintain homeostasis;
being made of cells; and.
passing traits onto offspring.
All living things have a number of traits; reproduction, growth, development, heredity. Metabolism, etc.
What are characteristics of life?
How can you distinguish between what is living and what is not? There isn’t just one single thing that separates a living being from a non living one. A dog moves, but a car does as well. A tree grows bigger, but a cloud does as well. Life is defined by certain characteristics that living beings share. Something that contains all characteristics of life can be considered to be a living thing.
A single living creature is known as an organism. Living organisms share many characteristics. They are:
• Growth and change
• Response to the environment
• Complex chemistry
• Made up of cells
• Metabolism
• Reproduce
• Genetic material passed onto their offspring
Therefore, growth, development, reproduction, metabolism, heredity etc, are all characteristics that distinguish a living thing from a non living thing.
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what is the apparent biological advantage of the pupillary light reflex? how do reactions differ from a simple reflex?
The biological advantage of the pupillary light reflex is that it allows the eye to adjust the amount of light reaching the retina.
The pupillary light reflex constricts the pupil in response to the intensity of light that falls on the retina at the back of eye. It helps in the adaptation of vision to various levels of lightness/darkness.
When the intensity of light is high, the pupils constrict to allow low light of light reaching the retina and when the intensity is low, the pupils dilate to allow more light.
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in the kidney, there is an anatomical structure that is also observable in at least two other organs. what is it?
The portal system is an anatomical structure that is also observable in at least two other organs.
A portal system is one in which veins begin and end in capillaries. It transports nutrient-rich blood to the liver for purification before transporting it to the heart. The portal venous system transports capillary blood to the liver from the esophagus, stomach, small and large intestines, pancreas, gallbladder, and spleen. The portal vein is formed by the union of the splenic and superior mesenteric veins behind the pancreas's neck.
The hepatic portal system, the hypophyseal portal system, and (in non-mammals) the renal portal system are examples of such systems. The hepatic portal system gets its name from the fact that it connects capillaries in the intestines and other digestive organs to modified capillaries in the liver (hepatic sinusoids).
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place the appropriate characteristic with the corresponding type of cytokinesis.
a. Cell plate
b. Lacks asters
c. Constricting belt of actin
d. Fusion of vesicles
e. Centrioles separate
f. Cleavage furrow
1. Animal cell cytokinesis
2. Plant cell cytokinesis
Place the appropriate characteristic with the corresponding type of cytokinesis . Plant cell cytokinesis.
Cytokinesis is the physical procedure that eventually splits the discern cell into two identical daughter cells. for the duration of cytokinesis, the mobile membrane pinches in at the cell equator, forming a cleft referred to as the cleavage furrow.
Cytokinesis, in biology, the process by way of which one cellular bodily divides into two cells. Cytokinesis represents the most important reproductive system of unicellular organisms, and it takes place within the manner of embryonic improvement and tissue increase and restore of higher vegetation and animals.
That is additionally often known as cytoplasmic department or mobile cleavage. Cytokinesis starts offevolved in anaphase in animal cells and prophase in plant cells, and terminates in telophase in both, to shape the two daughter cells produced via mitosis.
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