the root tip cells of an onion plant have 8 pairs of chromosomes. which of the following correctly describes the number of chromosomes in an onion root tip cell at a specific stage of the cell cycle?

Answers

Answer 1

Each of the cells in the onion root tip has 16 chromosomes.

At the S phase, how many chromosomes will the onion root tip cell have?

There are 16 chromosomes in each onion root tip cell, which is a given. As a result, the cell will contain 16 chromosomes in G1, after S, and after the M phases. Moreover, if the DNA content is 2C following the M phase.

How many genes are there on chromosome 8?

700 genes Genetic research is currently focused on discovering the genes present on each chromosome. The estimated number of genes varies because scientists employ several strategies to determine the number of genes on each chromosome. There are around 700 genes on chromosome 8 that give instructions on how to make proteins.

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Related Questions

The patient is a 69-yr-old Caucasian female with fair skin. She has recently moved to the U.S. and this is the first time she has had this mole examined. It has been developing since she was in her late teens. It is located on her left cheek and is 23 mm in diameter. is it cancerous?

Answers

Answer:

Yes, it is cancerous

Explanation:

The most common type of cancer worldwide, skin cancer is a malignant tumour that develops in the skin cells. Thankfully, malignant melanoma, basal cell and squamous cell carcinoma, and other skin cancers seldom affect youngsters. When melanomas develop, they typically start as big, asymmetric, pigmented moles with irregularly coloured borders and a diameter greater than 6 mm. Other indications of malignant transformation include bleeding, itching, and a lump under the skin.

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What is a muckraker? A. a gossip columnist intent on finding the flaws in presidents B. an investigative journalist who wanted to uncover the truth about corruption C. a crime boss able to take advantage of others by rigging government contracts D. a farmer able to raise crops despite the difficulties in obtaining credit​

Answers

A muckraker is an investigative journalist who wanted to uncover the truth about corruption (option B).

Who is a muckraker?

A muckraker is one who investigates and exposes issues of corruption that often violate widely held values; e.g. one who exposes political corruption or the poor conditions in prisons.

A muckraker is synonymous to an investigative journalist who searches for and tries to expose real or alleged corruption, scandal, or other wrongdoing, especially in politics.

The original muckrakers were the journalists who exposed child labor, sweatshops, poor living and working conditions, and government inefficiency in the early 20th century.

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Answer:

B. an investigative journalist who wanted to uncover the truth about corruption

Explanation:

Just took the test and got it right

Taxol is an anticancer drug extracted from the Pacific yew tree. In animal cells, Taxol prevents microtubule depolymerization (breaking down). Thus, Taxol stops mitosis by interfering with which of the following structures or processes?
a) The mitotic spindle.
b) Cytokinesis.
c) DNA replication.
d) Chromosome condensation.

Answers

Taxol stops mitosis by interfering with the mitotic spindle.

What is taxol ?

Taxol, an antimitotic drug used to treat cancer, inhibits the growth of cancer cells by preventing cell division, which leads to cell death.

Taxol irritates the skin. A chemical that can inflame the vein through which it is administered is called an irritant. Damage to tissue may result from medication that escapes from the vein. The nurse or doctor who administers Taxol needs to undergo thorough training.

Among the causes of weight increase in chemotherapy patients are: The body may retain more fluid as a result of swelling (edema) brought on by chemotherapy. Lymphedema or fluid retention are other names for this. During chemotherapy, your appetite may increase, or you may experience nausea before feeling better after eating.

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In a municipal wastewater treatment plant, the primary treatment step includes ________

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Step includes the physical processes of screening, crushing, sand separation, and sedimentation.

In many developed countries, primary treatment is the minimal pretreatment required for sewage irrigation. If the wastewater is used for irrigation of crops not consumed by humans or for irrigation of orchards, vineyards and some processed food crops, this can be considered sufficient treatment. However, to avoid potential disruption of reservoirs and flow-regulating reservoirs, some form of secondary treatment is usually required in these countries, even for irrigation of non-food crops. If off-line storage is envisaged, it may be possible to use at least part of the primary wastewater for irrigation.

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WILL GIVE BRAINLIEST AND 20 POINTS!!!
The stimulus-response model uses what as a metaphor for understanding human cognition?

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The stimulus-response model uses behavior as a metaphor for understanding human cognition.

What is the stimulus-response model about?

The stimulus-response model describes a statistical unit such as a neuron. The model predicts a quantitative response to a quantitative stimulus, such as one administered by a researcher.

During the early days of communication research, the stimulus-response model was the guiding perspective. The belief is that a subject is given a stimulus and then responds to that stimulus, resulting in behavior.

It should be noted that it's simply illustrates that the right behavior is important in the acquisition of knowledge. This illustrates the human cognition.

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Homozygous tall x heterozygous
_____ x _____
genotypic ratio: ____ : ____ : ____
phenotypic ratio: ____ : ____
What is the probability of having a heterozygous plant? _____

Answers

Mendel knew that the parents' alleles segregated randomly when forming gametes and traits are passed independently of one another.

What is dihybrid cross?

Dihybrid cross is a genetic cross for two traits ( like color and shape of the seed). The main purpose of the dihybrid cross that was performed by Mendel was to determine relationship between different pairs of alleles.

When he performed the dihybrid cross, he got the phenotypic ratio 9:3:3:1 corresponding to nine with round and yellow seeds, three with round and green seeds, three with wrinkled and yellow seeds, and one with wrinkled and green seeds.

Therefore, Mendel knew that the parents' alleles segregated randomly when forming gametes and traits are passed independently of one another.

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Explain why different diets that vary greatly in the amount of carbohydrates, fats, and
protein can all be healthy diets despite the protein needs of the body.

Answers

Answer: Depending on the goal of the diet, the intake of carbohydrates, protein and fat will not be the same

Explanation:

If you want to lose weight, you will consume less calories than your body needs. So depending on your goals, you will not consume the same amount of protein, carbohydrates or fat. Ps: you get 4 calories in 1 gram of carbohydrates or protein, 9 calories in 1 gram of fat.

To understand the structure of eukaryotic DNA, rank the following from least to most condensed. Rank the options below. double-stranded DNA supercoiled chromatin condensed chromatin nucleosome chromatin chromosome

Answers

The following eukaryotic chromatin compaction levels in order of least to most compact. Nucleosome, selenoid, loop domains, chromatid, bare DNA, metaphase chromosome

What are chromosomes and what do they do?

The thread-like chromosomes that convey the genetic data from cells to cells are formed of proteins and a single DNA molecule. Chromosomes are located in the nucleus of organisms in both plants and animals, including humans.

What does a human chromosome do?

Long segments of DNA are carried by chromosomes, which are organelles that can be found in the nucleus of cells. The substance that houses genes is called DNA. It serves as the foundation for the human body. Additionally, proteins found in chromosomes aid in the appropriate structure of DNA.

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ncrna structure and function the function of an ncrna depends largely on its ability to bind to other (click to select) . some ncrna molecules bind to proteins or small molecules due to (click to select) . other ncrna molecules may bind to rna or dna due to (click to select) . to function as a (click to select) , the structure of an ncrna molecule must form binding sites for several molecules.

Answers

The function of all ncRNAs structure depends largely on its ability to bind to other molecules.

Non-coding RNA (ncRNA) is a molecule of functional RNA that is not translated into a protein. An RNA gene is the DNA sequence from which a functional non-coding RNA is transcribed. Transfer RNAs (tRNAs) and ribosomal RNAs (rRNAs) are abundant and functionally important types of non-coding RNAs, as are small RNAs such as microRNAs, siRNAs, piRNAs, snoRNAs, snRNAs, exRNAs, scaRNAs, and long ncRNAs such as Xist and HOTAIR.

Non-coding RNAs (ncRNAs) regulate gene expression through transcription and post-transcriptional mechanisms. Some noncoding RNAs (ncRNAs) appear to be involved in epigenetic processes. They have been shown to be involved in the formation of heterochromatin, histone modification, DNA methylation targeting, and gene silencing.

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peristalsis is regulated in part by the intrinsic stretch reflexes. it is also thought to be stimulated by the hormone.. a. Gastrin b. Secretin
c. Cholecystokinin
d. Glucagon

Answers

The inherent stretch reflexes play a function in controlling peristalsis. Cholecystokinin is another hormone that is thought to stimulate it.

What is the function of cholecystokinin?

In the small intestine, a hormone known as cholecystokinin is produced. It plays an important role in the digestive process. When fats and proteins enter your small intestine, cholecystokinin forces your pancreas and gallbladder to constrict.

What effect does cholecystokinin have?

Following a meal, CCK works in a highly coordinated manner to: (1) control the flow of nutrients through the digestive tract; (2) constrict the gallbladder and increase pancreatic exocrine exudation to aid in digestion; (3) potentiate amino alkaline insulin secretion and postpone gastric emptying to aid in...

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What causes a supernova?
a) the collision of several small stars that forms a new giant star
b) the collapse of a giant cloud of gas and dust in a nebula
c) the expansion of a shell of gas around a star that creates a giant star
d) the collapse of the core of a high-mass stat

Answers

Answer:

When the pressure drops low enough in a massive star, gravity suddenly takes over and the star collapses in just seconds. This collapse produces the explosion we call a supernova. Supernovae are so powerful they create new atomic nuclei.

Answer:

The collapse of the core of a high-mass star

Explanation:

One type, called a “core-collapse” supernova, occurs in the last stage in the life of massive stars

which of the following is an encryption hash function used by security analysts to ensure that two files are exactly the same? 5dm m2d md5 md2

Answers

Security experts use the MD5 encryption hash method to verify if two files are identical.

A cryptographic system called MD5 is used for digital signatures, content verification, and message authentication. The hash algorithm used in MD5 confirms that the document you sent and the recipient both received the same file.

A string of any length may be turned into an MD5 hash by encoding it into a 128-bit fingerprint. The identical 128-bit hash output will always be produced when encoding the very same string with the MD5 method.

This hash is a little trickier since it includes a salt, a randomized string of information that is added to a password before it is hashed and saved.

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rubisco can bind to co2 or o2 in the calvin cycle. after learning this, a student was interested in photorespiration

Answers

Carbon dioxide is easily excluded in proteins that bind oxygen, such as myoglobin, due to its slight size difference. However, in rubisco, an oxygen molecule can easily bind in the location intended to bind to carbon dioxide. The oxygen is then added by Rubisco to the sugar chain, creating an improperly oxygenated product.

What is Photorespiration ?

The oxidative photosynthetic carbon cycle, also known as the C2 cycle or photorespiration, is a process in plant metabolism where the enzyme RuBisCO oxygenates RuBP, wasting some of the energy produced by photosynthesis.

RuBisCO aids in the Calvin-Benson cycle's CO2 fixation (carboxylation), but it also fixes O2. The latter reaction is where photorespiration begins.

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Sort the phrases based on whether they describe or give an example of facilitated diffusion, active transport, or both.1) Movement to area of lower concentration2) Movement assisted by proteins3) Requires energy4) Sodium ion transport out of the cell5) Glucose transport into cell6) Movement across a membrane

Answers

The characteristic of facilitated diffusion is movement to a area of lower concentration (1) which assisted by proteins (2)), for example glucose transport into cell (5). While active transport is the movement which require energy (3), for example, sodium ion transport out of cells (4). Both of them are the movement across a membrane (6).

The cell membrane regulates the movement of particle in and out of cells. In terms of the concentration gradient and energy, there are some types of movement. Passive movement is a type of movement from high concentration to lower concentration so that doesn’t require energy in form of ATP. For example, osmosis and diffusion. Specially for facilitated diffusion, the movement is assisted by proteins. However the solute is moving down the concentration gradient. A transport of glucose into cells is through a facillitated diffusion.

Conversely, an active transport needs energy from respiration because the movement against the concentration gradient. For example, the sodium ion transport out of the cells.

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Which of the following is a type of lipid or composed of lipids?
All of the reponses are correct
triglycerides
plasma membrane
cholesterol
oils

Answers

The answers are all accurate. Lipids, or substances consisting of lipids, include triglycerides, plasma membranes, cholesterol, and oils.

Lipids are substances that contain lipids, such as glycerides, plasma membranes, cholesterol, and oils.

Glycerol is esterified into three fatty acid chains with distinct lengths and contents to form lipid molecules known as triglycerides. Saturated or unsaturated fatty acid chains are the two types.

The phospholipid bilayers that make up plasma membranes are lipids. Glycerol, a head with a phosphate connection, and two fatty acid tails make up a phospholipid. Hydrophobic interiors and hydrophilic exteriors characterize phospholipids.

In the blood, a lipid called cholesterol is carried by proteins called lipoproteins throughout the body.

Liquid lipids exist in the form of oils. Lipids share a similar chemical composition. They contain glycerol esters attached to fatty acids in the form of long-chain molecules.

As a result, we can conclude that every response is correct. Triglycerides, cholesterol, plasma membranes, and oils are lipids or lipid-containing compounds.

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using colony monitoring devices to evaluate the impacts of land use and nutritional value of forage on honey bee health

Answers

These devices monitor parameters relevant to colony health at frequent intervals, frequently approximating real time.

Further relationships between the fine-scale record of hive state and static or dynamic landscape characteristics, such as weather, climate, colony density, land use, pesticide use, plant class, and fodder quality, are possible. Both beekeepers and researchers are increasingly using colony monitoring tools to check and evaluate the health status of honey bees. Equipped two apiaries with commercial honey bee colonies to track the utilisation of floral resources, the quality of the pollen, and the production of honey. A low-intensity agricultural area housed one apiary, whereas a high-intensity agricultural area housed the other.Scales recorded weight every 15 minutes during the growing season while pollen traps were open for 72 hours every two weeks. Forage yield per day, species identity using DNA sequencing, pesticide residues, amino acid content, and total protein content from collected pollen which affect the health of honeybee. Calculated the cumulative hive weight change over the growing season using scales, which is related to honey output and the final colony weight entering winter. Additionally, hive scales can be used to detect environmental pollen and nectar shortages for honey collection and monitor phenological changes in plant populations.

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The cells undergoing Mitosis are called ___________ cells while the cells undergoing Meiosis are called ______________ cells

Answers

Answer:

The cells undergoing mitosis are called body cells while the cells undergoing meiosis are called sex cells

☐ ☐ 1. How do we produce energy from a fossil fuel?
burning it
decaying it
storing it
extruding it

Answers

Answer:

We produce energy from fossil fuels by burning it. That is why it is so harmful to the environment, burning the fossil fuels relases carbon dioxide.

Explanation:

We produce energy from fossil fuels by burning it

Please help, it's for a Biology class.

Imagine you are designing a movie or video game monster based off the mind-controlling hairworms. Describe how you would translate this real-world creature into a fictional monster. You can use elements of the other parasites discussed in the article and chapter.

Answers

A real-world creature can be turned into a fictional monster through the way the monster is presented.

What is a fiction?

Fiction is any creative work, primarily a narrative work, that depicts imaginary people, events, or places in imaginary ways. As a result, fictional depictions are inconsistent with history, fact, or plausibility.

Monster literature is a literary genre that combines good and evil and aims to elicit a sense of horror and terror in its readers by presenting the evil side in the form of a monster. A monster represented deformity and irregularity. In literary terms, it entailed works that defied logic and morality by presenting excessive and viciously inappropriate scenes and characters.

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What is true about human samples from a body

Answers

The true statement about human samples from a body is hair samples can be different even when taken from the same person. The correct option is d.

What is hair?

A hair sample is often obtained from a person's head and consists of a collection of hair strands. Hair from the previous year is commonly found in hair samples.

Despite the fact that hair growth varies, an average of 5 inches of hair is added in 12 months. These characteristics, as well as hair's resistance to water and stretching, all have an impact on how it looks on a regular basis.

Therefore, the correct option is d, Hair samples can be different even when taken from the same person.

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The question is incomplete. Your most probably complete question is given below:

Hair morphology stays the same as an individual gets older.

Every hair taken from the same scalp has matching physical characteristics.

Physical properties can be used to most accurately individualize hair.

Hair samples can be different even when taken from the same person

Which statement best describes the relationship between the hypothalamus and the pituitary gland?The hypothalamus produces releasing hormones that promote the release of particular hormones from the anterior pituitary

Answers

The statement best describes the relationship between the hypothalamus and the pituitary gland is the hypothalamus produces releasing hormones that promote the release of particular hormones from the anterior pituitary. The correct answer is B

Since your hypothalamus controls it by secreting the "releasing hormones" somatostatin and dopamine through blood vessels in the pituitary stalk, your anterior pituitary interacts with it directly. The production and release of anterior pituitary hormones is either stimulated or inhibited (prevented) by these releasing hormones. Your anterior pituitary and hypothalamus are constantly communicating with one another.

The pituitary gland is referred to as the body's main gland. The anterior pituitary and posterior pituitary are the two primary sections of the pituitary. The pituitary gland releases a number of hormones.

The pituitary gland's operation is controlled by the hypothalamus. Different hormones that release and inhibit are released by the hypothalamus. These hormones function and promote pituitary gland activity. The hypothalamus affects the pituitary gland's secretion of several hormones.

Your question is incomplete but most probably your full question was

which statement best describes the relationship between the hypothalamus and the pituitary gland?

a. the anterior pituitary gland makes hormones that are released by the hypothalamus

b. the hypothalamus produces releasing hormones that promote the release of particular hormones from the anterior pituitary

c. the hypothalamus produces releasing hormones that promote the release of particular hormones from the posterior pituitary

d. the posterior pituitary sends nervous signals to the hypothalamus to prompt the release of hormones

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How many germ (cell) layers are present in acoelomates?

Answers

Answer:

Acoelomates are animals that lack a body cavity, or coelom, and are characterized by having all of their internal organs packed closely together. Because of this, they do not have distinct germ layers, which are the three primary tissue layers that form during embryonic development in animals with a coelom. These three germ layers are the ectoderm, mesoderm, and endoderm, and they give rise to the different tissues and organs in the body. In acoelomates, there is no distinct separation of these tissue layers, so it is not possible to say how many germ layers are present.

Predict what would happen to regulation of the lac operon in the lacI gene were moved 50,000 nucleotides upstream of its normal location.
Regulation of the lac operon should be normal. The location of the lacI gene isn't important, because the gene produces a protein that diffuses within the cell to the operator.

Answers

The lacI protein experiences a conformational shift upon lactose addition, which alters its affinity for the lac O sequences.

However, a protein made by the lacI gene, which controls the lac operon, prevents RNAP from attaching to the operon's operator?

Only once allolactose binds to it and renders it inactive can this protein be eliminated. The lacI gene produces a protein that is referred to as the lac repressor.

If the lac operon system is turned on, what will happen?

Only when lactose is present and glucose is absent do the genes come into play. Catabolite activator protein and lac repressor are the two proteins that control how much glucose and lactose is present in the body. Lac repressor prevents transcription of is an operon. It ceases to function as a repressor when lactose is present.

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vampire bats need to eat often, and their only food is blood. when one bat is unsuccessful at gaining a meal, it returns to a communal roost where another bat is likely to give it a small amount of food. work by carter and wilkinson (2015) suggests that this arrangement meets the conditions needed for love the prisoner's dilemma kin selection reciprocity

Answers

Carter and Wilkinson (2015) suggests that this arrangement meets the conditions needed for __reciprocity____.

What is reciprocity ?


One of the fundamental principles of social psychology is the reciprocity principle, which states that we frequently give to others what we have got in return. In other words, you're likely to repay John for whatever favors he extends to you.

In a famous example of reciprocity, vampire bats feed their famished roost mates with their blood. It has since been discovered that they only share food after developing grooming relationships.

Furthermore, reciprocal food sharing happens between vampire bats who are related and those who are not, and it might be advantageous to fitness both directly and indirectly.

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list the five assumptions of the hardy-weinberg equilibrium principle. describe why the principle was or was not supported by the model population.

Answers

Basic Hardy-Weinberg hypotheses include the absence of mutation, chance mating, the absence of gene flow, the existence of an infinite population, and the absence of selection. For a gene, the population may evolve for that gene if the presumptions are not true.

What are the Hardy-Weinberg principle's five guiding principles, and why are they crucial?

Under the suppositions of no mutation, no migration, no selection, random mating, and infinite population size, Hardy-Weinberg Equilibrium (HWE) is a null model of the relationship between allele and genotype frequencies, both within and between generations.

What makes the Hardy-Weinberg model unreliable?

The Hardy-Weinberg equilibrium can also be changed through gene flow, which happens when two populations reproduce and introduce new alleles into one another. The Hardy-Weinberg equilibrium exists because all of these disruptive factors frequently occur in nature.

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Each of the following molecules is processed by glycolysis to lactate. How much ATP is generated from each molecule?
(a) Glucose 6 -phosphate
(b) Dihydroxyacetone phosphate
(c) Glyceraldehyde 3 -phosphate
(d) Fructose
(e) Sucrose

Answers

(A) Glucose 6 -phosphate ; ATP is created by converting glucose 6-phosphate to lactate 3. As seen in the image, the purple shaded section is repeated twice (since DHAP is isomerized to PGAL), resulting in the generation of four ATPs.

When fructose 6 phosphate is transformed to fructose 1, 6-bisphosphate, one of these four is used. As a result, the net yield is 3 ATP.

(B) Dihydroxyacetone phosphate ; Two ATPs are created from dihydroxyacetone phosphate. Because the cycle only happens once, either from DHAP or PGAL (glyceraldehyde 3-phosphate),

(C) Glyceraldehyde 3 -phosphate;  Two ATPs are created. Because the cycle only happens once, either from DHAP or PGAL (glyceraldehyde 3-phosphate),

(D) Fructose;  Two ATPs are created from fructose. Fructose is first turned into fructose 1-phosphate, which is then transformed into glyceraldehyde. Glyceraldehyde is converted to glyceraldehyde 3 phosphate.

(E) Sucrose: 4 ATPs are created from sugar. Sucrose is broken down into glucose and fructose. 2 ATPs from glucose to pyruvate + 2 ATPs from fructose to pyruvate = 4 ATPs overall. (The net glycolysis yield is two ATPs. 4 ATPs are created and 2 are consumed, for a total of 4 ATPs.

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10. Which one of the following does not produce carbon dioxide? a. a muscle fibre c. a nerve cell b. saliva C. semen

Answers

Answer: C. a nerve cell

Explanation: nerve cells do not produce Carbon Dioxide. Nerve cells produce action potentials

Stress-induced catecholamine release from the adrenal medulla may result in:a. decreased blood flow to the brain.b. elevated blood pressure.c. decreased glycogen synthesis.d. decreased muscle contraction.

Answers

The correct option is A ; decreased blood flow to the brain Reduced blood supply to the brain deprives cells of nutrition, which soon leads to cell dysfunction.

Symptoms of a stroke develop when a portion of the brain ceases to function. During a stroke, the blood supply to the brain is nearly totally cut off, and the cells die within five minutes.

A variety of disorders can restrict or halt blood flow at the back of the brain. Smoking, high blood pressure, diabetes, and a high cholesterol level are the most prevalent risk factors. These are the same risk factors for any stroke..

Catecholamines have rapid effects such as constricting blood vessels in the skin. Increasing the amount of glucose in your bloodstream. Boosting your cardiac output.

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During the water cycle, water moves
A.
in a continuous cycle.
B.
from the atmosphere to the Earth's surface.
C.
from oceans to the atmosphere.
D.
all of these

Answers

The correct option is D

Which of the following is an example of an "autotroph"? A. Deer B. Shark C. Human D. Grass​

Answers

d) grass — creates its own “food”/energy source
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