which type of leukemia happens as a result of myeloblasts that are well differentiated and has a slow onset?

Answers

Answer 1

The type of leukemia that occurs as a result of well-differentiated myeloblasts and has a slow onset is Chronic myeloid leukemia (CML).

Chronic myeloid leukemia (CML) is a kind of blood cancer that affects bone marrow's myeloid cells. The overgrowth of these cells in the bone marrow and bloodstream causes CML, which can cause a variety of symptoms. The cancer slowly progresses over time and affects all aspects of the body.

CML's most prevalent sign is a high white blood cell count. The leukemic cells in CML are similar to, but not quite the same as, normal white blood cells. They develop more slowly than acute leukemia cells and have a longer life span in the blood than normal white blood cells.

Treatment for CML has progressed dramatically over the years, and patients with the disease can now live for many years.

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Related Questions

Which body part on humans are pigs' hooves analogous to?

Answers

I’m pretty sure the answer is ovary.

an evolutionary splitting event that gives rise to a distinct daughter species but with the persistence of the ancestral form is called

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An evolutionary splitting event that gives rise to a distinct daughter species but with the persistence of the ancestral form is called speciation.

Speciation is closely related to evolution, both of which are processes of change that gradually, bit by bit, gradually, slowly but surely occur.

Speciation occurs when a population of a species becomes geographically or reproductively isolated and is unable to interbreed with other members of the same species. This can lead to the formation of new species. Speciation occurs when gene flow between populations that originally existed has effectively subsided and is due to an isolation mechanism. Other factors that can cause speciation are mutation, hybridization, and domestication.

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many communities don't have enough water (to drink, grow crops, etc. what are possible solutions to provide these communities with water.

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Providing communities with access to clean water is an important challenge. Here are some potential solutions to consider: Desalination, Rainwater Harvesting, Greywater Recycling and Reduce Consumption.

Desalination: This is a process where salt and other minerals are removed from saltwater, making it safe to drink. Desalination plants can provide a reliable source of freshwater in arid areas.

Rainwater Harvesting: Collecting rainwater in tanks or underground pits is an ancient practice that can provide a source of freshwater in many parts of the world. This is especially useful in areas with limited access to other sources of water.

Greywater Recycling: This is the reuse of wastewater from baths, showers, and washing machines for irrigation or other non-potable purposes. Greywater recycling is becoming increasingly popular as a way to reduce water consumption.

Reduce Consumption: Installing low-flow fixtures and water-efficient appliances can help reduce water consumption in homes and businesses. This is one of the most cost-effective and sustainable solutions for providing communities with enough water.

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ventilation perfusion coupling means that more blood flows past functional alveoli than past nonfunctional alveoli. ventilation perfusion coupling means that more blood flows past functional alveoli than past nonfunctional alveoli. true false

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The statement "ventilation perfusion coupling means that more blood flows past functional alveoli than past nonfunctional alveoli" is false.

Ventilation perfusion coupling is a physiological mechanism that refers to the regulation of pulmonary ventilation and perfusion in such a way that the airflow and blood flow become adequate to maintain the normal oxygenation of the blood. It is the adjustment of the airflow to the lung to the level of blood flow through the lungs, according to the demand of oxygen.

Ventilation-perfusion coupling is an essential phenomenon that ensures gas exchange takes place efficiently in the lungs. This coupling of ventilation and blood flow is crucial for optimal pulmonary gas exchange. The exchange of oxygen and carbon dioxide between the blood and lungs requires both proper ventilation and adequate blood flow through the lungs. The coordination of these two processes is called ventilation-perfusion coupling.

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which of the following mutations would be likely to produce s. pombe cells that are enlongated and which require a long time to complete mitosis ? group of answer choices a mutation that increases activity of cak. a mutation in cdk that prevents it from being phosphorylated by wee1. a mutation that increases activity of cdc25. a mutation that abolishes cdc25 activity. a mutation that abolishes wee1 activity

Answers

The mutation that would be most likely to produce S. pombe cells that are elongated and which require a long time to complete mitosis is the mutation that abolishes wee1 activity.

When the function of wee1 kinase is removed, the cell cycle is pushed forward, and cells take a longer time to complete mitosis because the cells spend more time in the G2 phase. During the S phase of the cell cycle, DNA replication occurs, which means that each chromosome produces two identical copies. Afterward, the cell goes through the G2 phase, during which the spindle formation is monitored, the cell ensures that each chromosome's DNA is replicated, and the chromatin is further condensed. This G2 phase ensures that the cell is ready to enter mitosis after G2 phase.

Finally, the cell enters the mitotic phase or M phase, during which the chromosomes are divided into daughter cells. So, a mutation that abolishes wee1 activity is most likely to produce S. pombe cells that are elongated and which require a long time to complete mitosis.

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an individual heterozygous for a trait and an individual homozygous recessive for the trait are crossed and produce many offspring. these offspring are likely to be

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When an individual heterozygous for a trait and an individual homozygous recessive for the trait are crossed and produce many offspring, the offspring are likely to be heterozygous for the trait.

In genetics, the terms homozygous and heterozygous are frequently used. Homozygous is a genetic term that refers to two matching alleles for a single characteristic or trait, such as BB or bb, for example. The term heterozygous refers to two alleles that differ from one another, such as Bb.

Individuals that are homozygous for a specific trait have two of the same alleles (BB or bb) while individuals that are heterozygous for the same trait have two distinct alleles (Bb).In this question, an individual heterozygous for a trait and an individual homozygous recessive for the trait are crossed and produce many offspring, the offspring are likely to be heterozygous for the trait. Heterozygous individuals have one dominant allele and one recessive allele. Therefore, half of the offspring would express the dominant trait, and the other half of the offspring would express the recessive trait.

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The common structural pattern that is a distinguishing characteristic specific to all G-protein-coupled receptors is that they...
A. are transmembrane proteins.
B. have a kinase domain on the intracellular side of the plasma membrane.
C. are only active when pairs of receptors dimerize.
D. contain seven transmembrane helices.

Answers

The common structural pattern that is a distinguishing characteristic specific to all G-protein-coupled receptors is that they contain seven transmembrane helices (Option D). This structural pattern allows them to interact with G proteins and transmit signals across the plasma membrane.

G-protein-coupled receptors (GPCRs) are a class of cell surface receptors that respond to various extracellular signals such as light, odorants, hormones, and neurotransmitters. They are involved in a wide range of physiological and pathological processes, and they are also the targets of many drugs, making them an essential class of receptors to study.

The structural pattern specific to all G-protein-coupled receptors is that they contain seven transmembrane helices, which are arranged in a specific way to form a pocket that binds to extracellular ligands. This structural pattern is also known as the seven-transmembrane domain or 7TM domain. The seven transmembrane helices are arranged in a circular fashion, with the extracellular loops facing outwards and the intracellular loops facing inwards.

Thus, option D- contain seven transmembrane helices is the correct answer.

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prokaryotic organisms that use no3-, so42-, and co2 as final electron acceptors in an energy pathway that generates atp are conducting what energy pathway?

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Prokaryotic organisms that use NO3-, SO42-, and CO2 as final electron acceptors in an energy pathway that generates ATP are conducting anaerobic respiration.

What is anaerobic respiration?

Anaerobic respiration is a cellular respiration process in which electron acceptors other than oxygen are used to generate ATP. Although oxygen is not used as the final electron acceptor, anaerobic respiration can still produce a considerable amount of energy from glucose or other organic compounds. When living organisms break down sugars, fats, and other organic molecules to obtain energy, cellular respiration occurs.

In the presence of oxygen, this process is known as aerobic respiration, but in the absence of oxygen, it is known as anaerobic respiration. Because there is no oxygen present in anaerobic respiration, the electron transport chain cannot be used to generate ATP. Instead, alternative electron acceptors are used. These may be substances such as nitrate (NO3-), sulfate (SO42-), and carbon dioxide (CO2).

Anaerobic respiration is a characteristic of prokaryotes, particularly those that live in environments where oxygen is limited. Certain bacteria can carry out anaerobic respiration, but eukaryotic organisms such as humans cannot.

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from the pedigree, if individual b marries someone from the population at large (where the trait is expressed one in 8,100 people), what is the probability they have a child expressing the trait?

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Without additional information about the mode of inheritance and the genotypes of individuals in the pedigree, it is not possible to accurately calculate the probability of their child expressing the trait.

However, we can make some general assumptions based on the information given. If the trait is rare and expressed in one in 8,100 people in the population at large, it is possible that the trait is recessive and requires two copies of the causative allele for the trait to be expressed. If this is the case, individual b would need to be heterozygous for the trait to be a carrier, and their partner would also need to be a carrier or affected by the trait in order for their child to have a chance of expressing the trait.

Assuming these conditions are met, the probability of their child expressing the trait would depend on the genotype of the parents and the specific mode of inheritance. For example, if the trait is inherited in an autosomal recessive manner, the probability of their child expressing the trait would be 25% if both parents are carriers (heterozygous). However, if the trait is inherited in an autosomal dominant manner, the probability of their child expressing the trait would depend on the genotype of the parents.

Without additional information about the mode of inheritance and the genotypes of individuals in the pedigree, it is not possible to accurately calculate the probability of their child expressing the trait.

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I'm not sure if this is correct can someone please confirm for me, please?

Answers

Answer:

A chain of volcanic mountains will form on the edge of the continent or just offshore

Explanation:

When oceanic crust converges with continental crust, the denser oceanic plate subducts beneath the continental plate. This causes melting in the mantle above the plate and creates volcanoes on or near the edge of the continent. A deep ocean trench also forms offshore.

Hope this helps :)

if you plan or structure this activity in order to increase cardiovascular function or muscle mass, it is called

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When an activity is planned or structures to increase the cardiovascular function or muscle mass, it is termed as exercise.

Cardiovascular function is the role of the cardiovascular system of delivering blood, various substances like nutrients, hormones, and gases to the whole body, The cardiovascular system is also involved in the removal of wastes.

Exercise is any form of body activity which keeps the body active and healthy. Exercises are mainly focused in increasing the cardiovascular activity which helps the whole body to function efficiently, keep the heart healthy and body disease free. There are also other intense forms of exercise which results in increased muscle mass.

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What type of growth pattern will the bats exhibit

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Bats typically exhibit sigmoid or S-shaped growth curves, which are characteristic of many populations of living organisms.

What is the type of growth pattern in bats?

In the early stages of growth, the bat population is small and has a slow rate of increase. As the population grows, it enters a period of rapid growth, where the rate of increase is high.

Eventually, the growth rate begins to slow down as the population approaches its carrying capacity, which is the maximum number of individuals that can be sustained by the available resources. At this point, the population stabilizes at its carrying capacity, and growth stops or becomes very slow.

This pattern of growth is common in many animal populations and is influenced by factors such as resource availability, predation, disease, and other environmental factors

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What is the primary purpose of the chromosomes in a cell's
nucleus?
a to transport materials into and out of the cell
b to break down food and convert it into energy
c to protect the cell from harmful bacteria
d to store the genetic code that determines an
organism's traits

Answers

Answer:

[tex]to \: store \: the \: genetic \\ \: code \: that \: determines \: \\ an \:

organism's \: traits[/tex]

Answer:

D.

Explanation:

The primary purpose of the chromosomes in a cell's nucleus is to store the genetic code that determines an organism's traits. Therefore, the correct answer is d.

which is a true statement about polygenes? polygenes are located on the same chromosome. polygenes are used to predict the genotype of progeny. polygenes interact and allow for continuous variation. polygenes allow geneticists to maintain any genotype.

Answers

Polygenes are a group of genes that are involved in the expression of a single trait and are located at different positions on different chromosomes. The first statement, which claims that polygenes are located on the same chromosome, is false.

Polygenes cannot be used to predict the genotype of progeny. Instead, they contribute to the phenotype of the individual. The second statement is false.The third statement is true. Polygenes are responsible for a range of continuous variation in quantitative traits such as height, weight, and skin color, among others. The variation in these traits is caused by the interaction of several genes at different locations, with each gene contributing a small effect.Polygenes are not capable of maintaining any genotype. While they play an important role in the expression of traits, they do not determine the genotype of an individual. Therefore, the fourth statement is false.To sum up, polygenes are a group of genes located at different positions on different chromosomes that interact to produce continuous variation in quantitative traits. However, they do not predict the genotype of progeny or maintain any genotype.

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does the spermann mangold organizer act in a cell autonomous or non-autonomous manner? explain your answer.

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The Spemann-Mangold organizer acts in a cell-autonomous manner. This means that the cells within the organizer are responsible for inducing the formation of other tissues and structures during development.

What is a cell-autonomous manner?

Cell-autonomous action refers to a cellular function or process that is controlled exclusively by the cell. A process that is cell-autonomous is not reliant on any external signals from neighboring cells or tissues. A cell-autonomous process is one that is controlled by genes expressed exclusively in that cell, without the need for signals from other cells.

Similarly, the Spemann-Mangold organizer is a cluster of cells found in amphibian embryos that is capable of directing the differentiation of other cells in the developing embryo. This occurs in a cell-autonomous manner, with the cells within the organizer producing and responding to signals that cause other cells to differentiate into specific tissue types.

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Which of these is a function of the respiratory system?
A. It supplies oxygen to cells of the body.
B. It defends the body against invaders.
C. It controls the other systems of the body.
D. It sends hormones to the cells of the body.

Answers

Answer:

A. It supplies oxygen to cells of the body

Explanation:

Respiratory is like your lungs and stuff that has you breath (I don't know how else to explain it)

btw can i please have brainliest

Answer:

[tex]A. \\ It \: supplies \: oxygen \: to \: cells \\ \: of \: the \: body.[/tex]

‘discuss how the process of science has been used to develops and support a theory of global climate change’

what is the accepted theory? is there any scientific consensus about climate change? what evidence exists to support the theory and what are its limitations?

- i don’t need to essay to be done for me, i’m just confused on how to answer the question and start my essay. can someone help




Answers

Answer:

Sure, I can help you with that. Firstly, to answer the question of how the process of science has been used to develop and support a theory of global climate change, we need to understand the scientific method. The scientific method involves a systematic process of observation, measurement, experimentation, and analysis to develop and test hypotheses, leading to the development of scientific theories. In the case of global climate change, the scientific community has used this method extensively to study various aspects of the Earth's climate, including its past and current conditions, and to make predictions about future changes. The accepted theory of global climate change is that the Earth's climate is warming at an unprecedented rate due to the increase in the concentration of greenhouse gases, primarily carbon dioxide, in the atmosphere. This increase in greenhouse gases is largely the result of human activities, such as burning fossil fuels and deforestation. There is an overwhelming scientific consensus that climate change is real and humans are causing it. This consensus is based on a vast body of scientific research conducted over several decades by thousands of scientists worldwide. The evidence to support the theory of global climate change is extensive and comes from multiple sources, including direct observations of temperature, atmospheric composition, and sea ice coverage. Proxy indicators, such as tree rings, ice cores, and sediment cores, also provide evidence of past climate conditions. However, like any scientific theory, there are limitations to our understanding of global climate change.  For instance, while we have a good understanding of the basic mechanisms behind global warming, uncertainties remain about the precise amount of warming we can expect in the future and the potential impacts on different regions and ecosystems. In conclusion, the process of science has been crucial in the development and support of the theory of global climate change.  The overwhelming scientific consensus and extensive evidence provide a strong case for the need to take action to mitigate the impacts of climate change. Nonetheless, there are still some limitations to our understanding of the issue that will require further research and investigation in the years ahead.

3. which of the following is not an important ecosystem service provided by wetlands? flood control breeding habitat for birds migratory habitat for birds water filtration seed dispersal

Answers

The following is not an important ecosystem service provided by wetlands is a. Flood control.

Wetlands have a very large role in providing ecosystem services for human life and other creatures. Wetlands occur where water meets the ground. Examples of wetlands include mangroves, peatlands, swamps, rivers, lakes and deltas. Wetlands serve as water sources and purifiers, protect beaches and are the planet's largest carbon sinks.

Wetlands provide valuable services that are beneficial to living things in ecosystems such as water filtration, migratory bird habitats, seed dispersal, and bird breeding habitats, but usually do not provide flood control services.

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which of the following is an example of the impact of domestication? question 11 options: wheat can no longer blow away to sow seeds corn drops far too many seed kernels the coating on corn kernels is gone all of the above

Answers

All of the above is an example of the impact of domestication. So the correct answer is the last option.

Domestication is the process of adapting wild animals and plants for human use. As a result of domestication, some crops can no longer reproduce on their own, as is the case with wheat, which can no longer blow away to sow seeds. Additionally, corn drops too many seed kernels and has a thinner kernel coating as a result of domestication. The removal of kernel coating and the excessive number of seed kernels are both examples of how domestication has impacted corn.

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The diagram below shows some of the glands of the endocrine system.
To which of these glands does the black arrow point?
A. The thymus gland
B. The pituitary gland
C. The thyroid gland
D. The pineal gland

Answers

Answer: B. The pituitary gland.

Explanation:

There are three glands of the endocrine system that are located in your brain; the hypothalamus, the pineal gland, and the pituitary gland.

By looking at any diagram on the internet, you can clearly see that the pituitary gland is located near the ear on the side of your head.

I linked a diagram for more clarification.

Hope this helped!

Answer: The pituitary gland

what would happen to an intact whole plant if the light reactions of photosynthesis stopped but cellular respiration continued

Answers

If the light reactions of photosynthesis stop but cellular respiration continues, the intact whole plant will experience a reduction in sugar production, but the cell will continue to respire to release energy.

When the light reactions of photosynthesis stop but cellular respiration continues, the plant will not be able to produce glucose using energy from the sun. As a result, the plant will start to break down the stored glucose that it has produced during photosynthesis. This will lead to a decrease in the plant's growth rate and the production of food.

The plant will also consume its starch reserves during respiration. As a result, the plant's leaves and other structures will gradually become weak, and the plant will not be able to maintain its structure. As a result, the plant will lose its ability to support itself, and it will eventually die.

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what facilitates or mimics the activity of a given neurotransmitter system? group of answer choices axon agonist ssri antagonist

Answers

The term that facilitates or mimics the activity of a given neurotransmitter system is an agonist.

An agonist is a chemical that binds to a receptor and activates it to generate a biological response. This process mimics the activity of the natural neurotransmitter of the body.

Agonists interact with receptors to stimulate the normal physiological response that the receptor is meant to mediate. For instance, norepinephrine and epinephrine are agonists for adrenergic receptors.

The activation of neurotransmitter receptors by an agonist results in a variety of physiological effects. Agonists mimic the actions of a neurotransmitter, while antagonists oppose them. Antagonists attach to receptors and hinder the neurotransmitter from producing its biological effect. They don't, however, activate the receptor.

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describe how the chromosomes line up differently during metaphase in mitosis and meiosis i (first division of meiosis). remember that to state how they differ, you need to describe both!

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The difference between metaphase in mitosis and meiosis is that in mitosis, chromosomes line up in a single file at the metaphase plate. While in meiosis I, homologous chromosomes line up in pairs at the metaphase plate.

Metaphase is a stage in cell division where chromosomes are lined up in the center of the cell. However, there are differences in how chromosomes line up during metaphase in mitosis and meiosis I. In mitosis, the chromosomes line up in a single file at the equator of the cell during metaphase. They are lined up in a single row, which is called the metaphase plate. In meiosis I, the chromosomes are lined up as homologous pairs, rather than in a single row like in mitosis. Homologous chromosomes line up in pairs at the metaphase plate.

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In mice white fur is recessive to gray fur. Cross a white male with a heterozygous brown female, and find the possible genotypic and phenotypic ratios

Answers

When a white male mouse is crossed with a heterozygous brown female mouse, the possible genotypic and phenotypic ratios of the offspring can be determined using the principles of Mendelian genetics.

Since white fur is recessive to gray fur, the white male mouse must be homozygous for the white allele, represented as "ww". The heterozygous brown female mouse must have one brown allele and one unknown allele, represented as "Bb".

Using a Punnett square, the possible offspring genotypes can be predicted. The gametes of the white male mouse are all "w", and the gametes of the heterozygous brown female mouse are "B" and "b". The Punnett square shows that there is a 50% chance of each offspring inheriting the "Bw" genotype and a 50% chance of each offspring inheriting the "bw" genotype.

The phenotypic ratios can be determined by considering the expression of the fur color alleles. Brown fur is dominant over white fur, and gray fur is dominant over white fur. Therefore, the possible phenotypes for the offspring are brown (BB or Bw), gray (Gw), and white (ww). Since the white allele is recessive, none of the offspring will have white fur in this cross.

Thus, the possible genotypic ratios of the offspring are 50% Bw and 50% bw, and the possible phenotypic ratios are 50% brown, 50% gray, and 0% white.

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meristems can differentiate into each of the tissue systems of a plant. which phenomenon does this explain?

Answers

The phenomenon that meristems can differentiate into each of the tissue systems of a plant is called totipotency.

What are meristems?

The meristem is a region of a plant where growth occurs. It is a group of undifferentiated cells that are capable of division and differentiating into various plant organs. It is present in the roots and shoots of a plant. The meristem is critical to the plant's development, as it is responsible for creating new cells that will eventually form different organs in the plant.

Meristematic cells have the unique capacity to divide and differentiate into different cell types, and they also have the ability to regenerate a whole plant from a single cell under specific conditions.

The phenomenon that meristems can differentiate into each of the tissue systems of a plant is called totipotency. This means that the undifferentiated cells in the meristem have the potential to develop into any type of tissue found in the plant. Thus, meristems are totipotent.

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single-strand-binding proteins are necessary for: group of answer choices identifying nucleotides initiating dna replication all of these polymerizing dna priming dna inhibiting double-helix formation

Answers

Answer:

Single-strand-binding proteins are necessary for inhibiting double-helix formation. They prevent the separated single strands of DNA from coming back together and forming a double helix before replication or repair can occur.

suppose a person uses a microscope to look at a cell from the leaf of a tree. which structure would they see that would not be found in a cell from a fingernail? responses chloroplasts chloroplasts ribosomes ribosomes cilia cilia mitochondria

Answers

When using a microscope to look at a cell from the leaf of a tree, the structure that would not be found in a cell from a fingernail is chloroplasts.

Chloroplasts are organelles present in the cells of green plants and other photosynthetic organisms. They contain chlorophyll and use light energy to synthesize sugars from carbon dioxide and water. This process, known as photosynthesis, provides the oxygen and food for most life forms on earth and to produce food for plants. In contrast, cells from fingernails do not contain chloroplasts, as these are not photosynthetic cells.

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Answer: A. Chloroplasts

Explanation: Got it in k12

Complete the following vocabulary exercise related to DNA replication.
Match the words in the left-hand column with the appropriate blank in the sentences in the right-hand column.

Answers

DNA replication is the process by which a cell's genetic material, DNA, is copied before cell division. During DNA replication, the strands of the double helix are unwound and split into two single strands. Each strand serves as a template for the creation of a new complementary strand.

This new double helix contains one strand that is original and one new strand. This process is semiconservative, meaning that one-half of the original DNA molecule is conserved in the newly created DNA molecule.

To complete the exercise, the four words in the left-hand column, DNA, double helix, replication, and semiconservative, must be matched with the blanks in the sentences in the right-hand column. DNA is the genetic material, double helix is the structure of the molecule, replication is the process by which DNA is copied, and semiconservative means one-half of the original DNA molecule is conserved in the newly created DNA molecule.

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a cell that has just started interphase has four chromosomes. how would the same cell look when it is in metaphase?

Answers

In metaphase, the cell would contain eight chromatids and eight separate chromosomes.

A cell is growing and replicating DNA during the interphase as it gets ready to divide. Each chromosome at this point is made up of two sibling chromatids that are joined together at the centromere. With each chromosome comprised of two identical sibling chromatids, a cell with four chromosomes that have just entered interphase would therefore have a total of eight chromatids.

The same cell has finished interphase and advanced to mitosis, the step of cell division, when it reaches metaphase. The chromosomes condense and arrange themselves along the metaphase plate, which is the cell's equatorial axis, during metaphase. Each chromosome can be seen as a unique and compact structure during this stage.

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g. what is the name of this type of point mutation and why is it referred to by this terminology?

Answers

Answer: The name of the type of point mutation that is being referred to by the given terminology is missense mutation.

The reason behind referring to it by this terminology is that a missense mutation is one that results in a different amino acid being incorporated into the protein sequence.

This can have a significant impact on protein function and can result in altered protein activity, stability, or localization. Hence, this type of mutation is referred to as a missense mutation.

A point mutation is a type of mutation that results from the substitution of a single nucleotide with another in the DNA sequence.

Point mutations are classified into different types, including silent, missense, and nonsense mutations, based on the effect they have on the protein sequence.

In a silent mutation, the nucleotide substitution does not result in a change in the amino acid sequence. In a missense mutation, the nucleotide substitution results in a different amino acid being incorporated into the protein sequence, which can have a significant impact on protein function.

In a nonsense mutation, the nucleotide substitution results in the formation of a premature stop codon, which leads to the truncation of the protein sequence.


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