If a cell starts out in G2 phase with 12 chromosomes, how many chromosomes would you expect in each of the daughter cells if one of the chromosomes failed to separate in anaphase? Remember that if two chromatids are still attached at the centromere (as they would be in this case), we count them as one chromosome. O Each daughter cell will have 13 chromosomes. O Each daughter cell will have 11 chromosomes. O One daughter cell will have 12 chromosomes, and the other will have 13. O Each daughter cell will have 12 chromosomes. O One daughter cell will have 11 chromosomes, and the other will have 12.

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Answer 1

If a cell starts out in G2 phase with 12 chromosomes  One daughter cell will have around 11 chromosomes, and the all other will have 12 so the correct option is C.

The chromosomes are structures within a cell that contain  inheritable material. Chromosomes are composed of DNA, which contain all the instructions  demanded to  make and maintain an organism. In humans, chromosomes come in  dyads, with one chromosome from each brace inherited from each parent.

Each chromosome has hundreds to thousands of genes, which  give instructions for the  product of proteins and other  motes that are necessary for the development and function of an organism.

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Related Questions

a substance with a pH of two is called

Answers

Answer:

an acidic substance

When a pregnant cat is malnourished, her kittens are born extremely underweight. Them being underweight would be considered a inherited from the mother cat's DNA. b.to be due to histone modification. c. an epigenetic effect. d. a maturity effect

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The malnourishment of pregnant cat and giving birth to extremely underweight kittens can be considered as (c) an epigenetic effect.

Malnourishment is defined as the lack of proper and essential nutrients in an organism. The reasons of malnourishment can be various like poverty, diseases, poor diet, etc. The symptoms of malnourishment are: fatigue, extreme weight loss, dizziness, etc.

Epigenetic effects are the modifications in the working of genes that does not cause changes in the genetic sequences. These changes are upon the genes, that can be reversed back. The epigenetic effects can be inherited as it is to the offspring.

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which is not an example of a homeostatic response? which is not an example of a homeostatic response? the oxygen level in the blood decreases, and breathing harder increases the oxygen level in the blood. glucose level in the blood decreases, and eating increases the glucose level in the blood. sweating increases loss of body fluids, and urination increases the loss of body fluids. body temperature increases, and sweating decreases body temperature.

Answers

"Sweating increases the loss of body fluids, and urination increases the loss of body fluids" is not an example of a homeostatic response.

The tendency to resist change in order to keep an internal environment that is stable and largely consistent is an essential component of homeostasis. Homeostasis often entails the use of negative feedback loops, which combat deviations of various attributes from their desired values, also referred to as set points.

The loss of body fluids due to perspiration and urination is not an example of a homeostatic response. Perspiration and urination both contribute to the loss of body fluids.

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Which cells do NOT respond to the signals that regulate the growth of most cells?

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The cell that does not respond to the signals that regulate the growth of most cells is A. cancer cells.

Why are cancer cells immune to this?

Signals that control cell growth are not reacted to by cancer cells. A TUMOR is a group of cells formed by cancer cells.

Cancerous cells have the potential to erupt and SPREAD all over the body. Through METASTASIS, cancer cells create tumors in different tissues.

Hence, it can be noted that cancerous cells do NOT respond to the signals that regulate the growth of most cells.

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What are "off target edits" using CRISPR?

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Despite the selectivity of the Cas9 enzyme and other CRISPR-associated endonucleases, off-target alterations, which are often defined as changes to the DNA or RNA in locations other than the target site, are known to occur as a result of gene editing.

What is CRISPR?

CRISPR/Cas9 edits genes by accurately slicing DNA, which is then repaired by the body's own mechanisms.

The Cas9 enzyme and a guide RNA make up the system's two components. quickly converting cutting-edge technologies into transformational treatments.

It is known that off-target alterations, which are frequently described as changes to the DNA or RNA in regions other than the target site, can happen as a result of gene editing despite the selectivity of the Cas9 enzyme and other CRISPR-associated endonucleases.

Thus, these are "off target edits" using CRISPR.

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I need help explaining and answering

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Explanation:

From what I understand, the hormones shown on the graph were estrogen and progesterone, from what I can deduce, the growth of the follicle are not affected directly by those hormones hence the answer would be section B and C

The development of the follicle is brought about by the production of follicle stimulating hormone(FSH) and then after ovulation in the luteal phase, the development is brought about by the luteinizing hormone(LH) so that is how I eliminated section A.

Section C shows the lining of the uterus, progesterone directly affects the build up of the lining.

Although I'm still a bit unsure of my answer simply before estrogen is responsible in a way for making the body produce the FSH needed to develop the follicle, but it's how the question stated "directly" is making me uncertain

Once fluid levels and hypothermia were addressed, what would be the next concern a medical professional would need to monitor for a burn victim while the burns were healing?

Answers

Bacteria can enter the burn or wound and produce an infection as it heals. Keep an eye out for: Outside of the burn or wound, there is redness. Skin that is warm or heated to the touch.

What is bacteria?

Bacteria are widespread, generally free-living creatures that typically consist of a single biological cell. They are a vast group of prokaryotic bacteria. Bacteria, which are typically a few micrometres in length, were among the first living forms to arise on Earth and are found in the majority of its habitats. Bacteria are single-celled living entities that are extremely small. Bacteria come in millions of distinct varieties. Many are advantageous to you and can be found in and on your body. These bacteria comprise your microbiome, which helps to keep your body healthy. Other germs can cause illness.

Here,

Bacteria can penetrate a burn or wound and cause an infection to develop while it heals. Keep an eye out for: Redness outside of the burn or wound. To the touch, warm or hot skin.

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a geneticist found that a particular mutation had no effect on the polypeptide encoded by a gene. this mutation probably involved question 13 options: substitution of one nucleotide deletion of one nucleotide insertion of one nucleotide alteration of one nucleotide

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The particular mutation which had no effect on the polypeptide encoded by a gene involves substitution of one nucleotide.

A substitution of one nucleotide in a gene can cause a change in the sequence of the encoded polypeptide, but this change may or may not affect the function of the protein. If a geneticist found that a particular mutation had no effect on the polypeptide, it is likely that the substitution resulted in a silent mutation, meaning that the change in the nucleotide sequence did not result in a change in the amino acid sequence of the encoded protein.

Silent mutations are thought to be evolutionarily neutral, as they do not affect the function of the protein. In contrast, insertions or deletions of nucleotides in a gene can disrupt the reading frame of the encoded polypeptide, often leading to a truncated or non-functional protein, while alterations of nucleotides can result in a change in the amino acid sequence of the protein, potentially affecting its function.

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the fact that the courtship song of hybrid offspring is not recognized by either of the parents is an example of

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This kind of isolation is demonstrated by the fact that neither of the parents can distinguish the courtship song of hybrid offspring.

Contrary to quarantine, isolation refers to the requirement that a person with an infectious illness be kept apart from healthy people. If the patient's condition is improving and the fever has subsided for at least 24 hours (without the use of fever-relieving medications).

Isolation may be ended at least five days after the onset of symptoms (day 0 is the day on which symptoms first emerged, and day 1 is the next full day). When a patient has a contagious illness that can spread to others, isolation nursing is utilized. Isolation is frequently employed in medical settings.

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Assertion: chromosomes are responsible for the transfer of characteristics from parent to offspring
Reason: chromosomes are present in nucleus

Both Assertion and Reason are true and Reason is correct explanation of the
Assertion.
Both Assertion and Reason are true but Reason is not the correct explanation of the
Assertion.
Assertion is true but Reason is false.
Assertion is false but Reason is true.

Answers

Answer:

Explanation:

Both Assertion and Reason are true but Reason is not the correct explanation of the..

which of the following is an example of a gradient? which of the following is an example of a gradient? blood in the vessels move from lower pressures to higher pressures. pouring a vial of ink into a jug of water will evenly distribute throughout the water. sodium/potassium pumps in cells is a classic example. the channel uses atp to move sodium and potassium from low-concentrated regions to high-concentrated regions, respectively. increased levels of insulin will lead to a negative feedback loop that will reduce levels of insulin.

Answers

A gradient is a gradual slope from one point to another, and it is used to describe a variety of phenomena.

In biology, for example, gradients are used to describe the movement of molecules or fluids from areas of lower concentration to areas of higher concentration.

The third example, sodium/potassium pumps in cells, is a classic example of a gradient. The channel uses ATP to move sodium and potassium from low-concentrated regions to high-concentrated regions, respectively. This is an example of a concentration gradient, as the molecules are moving from a lower concentration to a higher concentration.

The fourth example, increased levels of insulin leading to a negative feedback loop that will reduce levels of insulin, is not an example of a gradient. Although it is a process of decreasing levels of insulin, it is not a gradient because it is not a gradual slope from one point to another.

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if you examined a cross section of a eudicot plant stem, in what order would you encounter different plant tissues from the pith outward? phloem, vascular cambium, xylem phloem, xylem, vascular cambium vascular cambium, phloem, xylem xylem, vascular cambium, phloem

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xylem, vascular cambium, phloem. The number of cotyledons is the primary distinction between monocots and eudicots. A monocot has a single cotyledon, whereas a eudicot has two.

Tracheids, vessels, xylem fibres, and xylem parenchyma are what they are. While parenchyma is active and has thin walls and is involved in the storage process, tracheids, vessels, and xylem fibres are dead cells with lignified thick walls. On the inside side of the stem, the xylem is always present. A layer of meristem cells known as the cambium (or vascular cambium), which is situated between the xylem and phloem, is present in the vascular bundles of dicot stems. Watch it in Function: By dividing to produce new xylem and phloem cells, these cells promote secondary growth, enlarging the stem's circumference.

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what is the main function of rna polymerase?

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RNA polymerase is an enzyme that's responsible for the recap of DNA into RNA  motes. It's the main enzyme involved in the process of recap, which is the first step of gene expression.

During recap, the information decoded in the DNA is used to synthesize a  reciprocal  beachfront of RNA. RNA polymerase binds to the  protagonist sequence of the DNA, which is a specific sequence of DNA that marks the  morning of the gene. It  also uses the DNA as a template to synthesize the RNA  patch. During this process,

The RNA polymerase adds nucleotides to the growing  beachfront of RNA, while also proofreading the  recently synthesized  beachfront to  insure its  delicacy. Once the RNA  patch is complete, it's released from the RNA polymerase and can continue on to the coming step in gene expression.

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Which one of the following describes the climate of an area?
Fairbanks, Alaska typically gets about 130-180 cm of snow each year.
We had a great time at David's football game. It was 82 degrees and sunny.
The news reports that Miami will have a high of 85 and there is a 10% chance of precipitation.

Answers

Explanation:

Fairbanks, Alaska typically gets about 130-180 cm of snow each year" describes the climate of an area.

explain what would happen within the lac operon with high lactose. use the words repressor, operator, transcription, and operon in your response and bold them.

Answers

The lac repressor ties firmly to the administrator, forestalling the record by RNA polymerase. Be that as it may, when lactose is available, the lac repressor loses its capacity to tie DNA.

The presence of both lactose and glucose will switch off the capability of the lac qualities as the lactose particle will tie to the repressor protein. The limiting of repressor protein further permits the limiting of administrator protein, and when administrator protein is dormant, a record of lac qualities happens.

Lactose causes a conformational change in the repressor, and it empties the administrators, permitting RNA polymerase to get sufficiently close to the advertiser and start recording. Hu and Davidson (1987) were quick to utilize lac components to control correspondent quality articulation reversibly in mammalian cells.

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the electron transport chain of bacteria creates an electrochemical gradient across the cytoplasmic membrane. inherent in that gradient is a form of energy called force, which cells use to make the energy currency called

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Implanted into the bilayer of phospholipids are different proteins, and a portion of these are transport proteins that work with the development of in any case impermeable particles all through the cell.

Cytoplasmic Film - A layer of phospholipids and proteins, called the cytoplasmic layer, encases the inside of the bacterium, controlling the progression of materials throughout the phone.

The bacterial cytoplasmic layer comprises generally equivalent extents of lipids and proteins. The fundamental lipid parts are phospholipids, which fluctuate in acyl chain length, immersion, and stretching and convey head bunches that differ in size and charge

The fundamental job of the cell layer is to give insurance to the cell from its environmental elements. The cell layer or plasma film controls the section of certain solutes and water into and out of the cell.

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Describe the three patterns of biological diversity Darwin observed, and provide examples:
Species vary globally
Species vary locally
Species vary over time

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Species vary globally such as occurs in the case of different bird species, Species vary locally such as occurs in the finch species located in the Galapagos islands and Species vary over time such as we observed by examining the fossil record of past mammals.

What is the evolutionary process proposed by Darwin?

The evolutionary process proposed by Darwin is a slow but continuous process of change in species as a consequence of differential reproduction.

Therefore, with this data, we can see that the evolutionary process proposed by Darwin is slow because selection act at each generation on individuals.

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the grants point out that the finches on daphne major, the galapagos island where they conducted their research, are not afraid of humans. how can this be good, and how can this be bad?

Answers

While the fact that the finches on Daphne Major are not afraid of humans can be a positive thing for researchers, it can also be a negative thing for the finches themselves.

It is important to consider both the positive and negative consequences of this trait and to take steps to minimize any negative impacts.

The fact that the finches on Daphne Major, one of the Galápagos Islands, are not afraid of humans is both a good and a bad thing. This trait can have both positive and negative consequences for the finches and for the researchers who study them.

On the positive side, the lack of fear of humans can make it easier for researchers to study the finches and gather data about their behavior and biology. This can lead to a deeper understanding of the evolution and ecology of these fascinating birds.

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a friend in your biology study group claims that eggs in mosses are fertilized by spores. what is wrong with that statemin all cells, separation of replicated chromosomes is a prerequisite for cell division. however, the mechanism of chromosome separation in bacteria is distinct from that in eukaryotes in several ways.nt?

Answers

The statement is incorrect because mosses are non-vascular plants and do not have eggs, they have spores.

In mosses, asexual reproduction is a common method of reproduction where new plants are produced from parts of the parent plant. Fragments are one type of asexual reproduction in mosses where pieces of the parent plant break off and grow into new individuals. This process does not involve fertilization or the fusion of gametes. Instead, the fragments develop into new plants that are genetically identical to the parent plant. Asexual reproduction in mosses allows for rapid colonization of new habitats and the production of large populations without the need for sexual reproduction. This is a crucial adaptation for survival in environments with limited resources, where sexual reproduction may not be efficient or possible.

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What are ionotropic receptors used for?

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Ionotropic receptors are used to transform neurotransmitter-based extracellular chemical signals into electrical information.

Ionotropic receptors, otherwise known as neurotransmitter-people present at an event or ligand-people present at event channels, are ion channels that open in reaction to the binding of a neurotransmitter. They have primarily situated ahead of the dendrites or container bulk, but they may present in an unspecified area near the neuron if skilled is a synapse.

Ionotropic glutamate receptors mediate big excitatory neurotransmission in the carnal mind and sleep-inducing or numbing drug rope. They too play the person who is famous in intelligence functions such as happening, knowledge, and thought, and in intelligence ailment.

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A student is looking through a light microscope with an eyepiece trying to determine
what type of cells she is seeing. She can only see individual cells with 100x total
magnification. What type of cell is it, and how much detail could she expect to see?

Answers

At 100x magnification, the student is likely to see either prokaryotic or small eukaryotic cells.

What cell structures can be seen at 100x magnification?

At this magnification, she may be able to see individual cell structures, such as the cell membrane or cytoplasm, but details such as organelles will likely not be visible.

The amount of detail that can be seen depends on the quality of the microscope and the sample being viewed.

Hence, it can be seen that prokaryotic or small eukaryotic cells can be seen when magnified 100x as they are really small and cannot be seen by the human eye.

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Reflection when antibiotic were firt ued antibiotic reitant were rare today antibiotic reitance i becoming more and more common how i the problem of antibiotic reitance in bacteria an example of natural election

Answers

Antibiotic resistance in bacteria is a prime example of natural selection. As antibiotics are used to kill bacteria, some bacteria are able to survive due to mutations that make them resistant to the antibiotic.

These resistant bacteria are then able to reproduce and eventually outnumber the non-resistant bacteria, creating a population that is mostly resistant to the antibiotic. This is because the resistant bacteria are better suited to survive in the presence of the antibiotic, thus "selecting" them over the non-resistant bacteria. Over time, this can lead to the development of antibiotic-resistant strains of bacteria, which are becoming more and more common as antibiotics are used more frequently.

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Which enzyme of the citric acid cycle yields a compound with high phosphoryl-transfer potential? O citrate synthase O isocitrate dehydrogenase O a-ketoglutarate dehydrogenase succinyl CoA synthetase

Answers

Succinyl CoA synthetase is the enzyme of the citric acid cycle yields a compound with high phosphoryl-transfer potential so the correct option is D.

Succinyl CoA synthetase is the enzyme of the citric acid cycle that plays a  crucial  part in the  product of energy in the form of ATP. This enzyme catalyzes the transfer of one phosphate group from succinyl CoA to ADP, performing in the conformation of ATP and CoA.

This is the  response yields a different  emulsion with high phosphoryl- transfer  eventuality because of the large  quantum of energy released during the transfer. The ATP formed in this  response can  also be used for  colorful metabolic processes,  

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there is a lot of talk about stem cells in the media. what is unique about these cells? there is a lot of talk about stem cells in the media. what is unique about these cells? stem cells can grow under any conditions. stem cells are not affected by nutrient availability. stem cells can provide a cure for all diseases. stem cells are not fully differentiated.

Answers

Self-renewal and differentiation are unique features of stem cells. This indicates that they are not fully differentiated and can be used to generate numerous other types of cells.

Additionally, because they are unaffected by the availability of nutrients, stem cells are able to function in a variety of settings and still be utilized in medical research and treatment. Because they can be used to regenerate and repair damaged tissue, even if the tissue is severely damaged, stem cells have the potential to provide a cure for all diseases.

Because they can self-renew and differentiate into a wide variety of other cells, stem cells are an effective tool in medicine. This indicates that they can be utilized to generate a wide range of additional cells, even in various environments. Stem cells can also be used to repair damaged tissue and possibly find treatments for diseases.

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Practice 2: Distinguish the three zones in the Sun. Match each description with the correct structural zone.
A. Inner Core
B. Radiative Zone
1. Where nuclear fusion takes place
2.
Middle layer of the Sun; Energy is transferred through radiation
3. Where hot gas rises and cooler gas sinks
C. Convection Zone

Answers

The three zones of the earth are the inner core, right above is the radiative zone and the outer layer is the convection zone.

Nuclear fusion takes place in the inner core while in the middle layer or the radiative zone, energy is transferred through radiation and in the convection zone, process of convection takes place, that is, the hot gases rise as the cooler ones sink.

What is convection?

Convection is a process of heat transfer by which movement of a heated fluid is towards the upward direction while the cooler dense fluids sink.

What is nuclear fusion?

Nuclear fusion is the process by which nuclei of lighter elements fuse or combine to give heavier nuclei.

What is radiation?

Radiation is a process of heat transfer by heat waves.

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How did the lab activities help you answer the lesson question: How do environmental changes affect both living and nonliving things in a watershed? What conclusions can you make based on your observations?

Answers

The lab activities contribute to the answer by allowing hands-on observation and experimentation in the environment, which affects both living and nonliving things of the watershed.

What is the significance of the lab activities?

Lab activities are very useful as they provide the individual with the skill of experimentation, the way to prove the hypothesis or theory, help students learn and apply the scientific method, and also improve problem-solving, critical thinking, data analysis, etc. to solve real-world problems and situations.

Hence, the lab activities contribute to the answer by allowing hands-on observation and experimentation in the environment, which affects both living and nonliving things.

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Answer:

In the lab activity, I used a virtual watershed to demonstrate how pollutants enter and flow through the watershed. I constructed food chains to show how biotic factors are related. I also predicted and modeled how human activity affected the biotic factors in an ecosystem. Based on my observations, I can conclude that biotic and abiotic factors are closely linked and that human activity that changes the environment, like pollution, can affect all the other parts of an ecosystem in a negative way.

your brain requires a lot of blood to deliver oxygen and glucose. two arteries in particular deliver blood into the cranium. the right and left internal carotid arteries, branches of the common carotid arteries, pass through the carotid canal. the left and right vertebral arteries, small branches of the left and right subclavian arteries, pass through the foramen magnum. once through, the left and right vertebral arteries converge to form the basilar artery. together, the basilar artery along with the left and right internal carotid arteries work together to form the: a. circle of william b. circle of willis c. circle of wilma d. circle of nutella

Answers

The Circle of Willis is a complex network of arteries found at the base of the brain, consisting of the left and right internal carotid, basilar, and vertebral arteries.

This structure acts as a backup pathway, providing an alternative route for blood to reach the brain if one of the arteries is obstructed. By providing an alternate route, the Circle of Willis ensures that the brain receives an adequate supply of oxygen and glucose, even in the event of an obstruction.

The Circle of Willis is a crucial network of arteries that ensures the continuous flow of blood to the brain. The structure is composed of the left and right internal carotid arteries, the anterior communicating artery which connects them, the left and right posterior communicating arteries that link the internal carotid arteries to the basilar artery, and the basilar artery formed by the left and right vertebral arteries that in turn connects to the posterior cerebral arteries.

Finally, the anterior and posterior cerebral arteries complete the Circle of Willis by joining the internal carotid arteries. Should any of these arteries become blocked, the other arteries can supply the brain with the necessary oxygen and glucose which is essential for its functioning.

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What is the advantage of using STR?

Answers

The advantage of using STR (Short term-Rehabilitation) is that it enables for easy cross-laboratory comparison of results without binning.

Therapy is offered to those suffering from surgery, sickness, or an accident in short-term rehabilitation (STR). People who require short-term in-patient rehabilitation can typically continue participating in their programme at the healthcare facilities for a few days to several weeks.

Results from various laboratories may be easily compared without binning because to the identification of distinct alleles. Additionally, STRs can be used to type smaller amounts of DNA, including degraded DNA. A method for lowering the cardinality of continuous and discrete data is binning, also known as discretization. Binning reduces the number of distinct values by grouping similar values together in bins.

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in the course of your web searches, what did you learn about the cellular function of the protein?

Answers

Proteolytic enzymes are responsible for forming and organizing cells, producing products, eliminating waste, and maintaining their health. A protein also absorbs signals from the environment and activates cellular reactions.

Proteins play a number of important roles in the body, including providing structure, controlling bodily functions, moving objects, maintaining fluid balance, assisting in immunity, and supplying energy. A protein's structure is composed of these elements. An oligopeptide backbone consists of side chains connected to it. In addition to promoting structural integrity and controlling how substances flow through cell membranes, enzymes ward off sickness and organize cell signaling pathways.

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why were antibiotics not prescribed to fight against the virus ​

Answers

Viruses are surrounded by a protective protein coating so they don't have cell walls that can be attacked by antibiotics like bacteria does. That’s what I think.
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