If you want to protect the plants from insect damage, should you encouraged birds to forage on the plants, or put netting over the plants to keep birds out? explain your reasoning.

Answers

Answer 1

To avoid pest damage, foraging is encouraged on crops.

Birds should be encouraged to forage on crops because they are a natural predator of many harmful insect species. By allowing birds to forage on the plants, insect populations will decline, which will lessen plant damage.

Pest management or pest control is a process for getting rid of or controlling unwanted animals like pests. Rodents, cockroaches, termites, bedbugs, poisonous spiders, and other vermin are some of the pests that pest control services remove.

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Related Questions

How would you predict that doubling the atmospheric co2 concentration would affect c3 plants?.

Answers

C3 plants would grow more quickly, whereas C4 plants would only be slightly impacted.

What effects does a rise in CO2 have on C3 plants?

Because higher [CO2] results in lower transpiration rates and higher CO2 absorption rates in plants, it has been hypothesized that this will boost water use efficiency (WUE) in C3 species.

What effects does rising CO2 have on C3 and C4 plants?

The findings demonstrated that plants' chlorophyll content increased when CO2 concentration increased, particularly in C3 plants when they were intercropped with C4 plants. When CO2 levels were elevated, C3 plants had far heavier roots, stems, and leaves than C4 plants did.

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The measurement of speed and direction of an object​

Answers

Answer: Velocity

Explanation:

2. Identify the products in this reaction: 6H₂O + 6CO2 → C6H12O6 + 602
A. 6H₂O and 6CO2
B. 6CO2 and C6H12O6
D. C6H12O6 and 602
C. 6H₂O, C6H12O6, and 602

Answers

Answer:

D

Explanation:

Everything on the left side of the arrow are reactants, and everything on the right side of the arrow are products.

The products in this reaction are: B. 6CO2 and C6H12O6. The reactants are: A. 6H₂O and 6CO2

What is photosynthesis?

The chemical equation 6H2O + 6CO2 --> C6H12O6 + 602 represents the process of photosynthesis, which occurs in plants, algae, and some bacteria. In this process, carbon dioxide (CO2) and water (H2O) are converted into glucose (C6H12O6) and oxygen (O2).

The reactants are the substances that are present at the beginning of the reaction and are used up during the process. In this reaction, the reactants are 6 molecules of water (H2O) and 6 molecules of carbon dioxide (CO2). These are represented on the left-hand side of the equation, before the arrow.

The products are the substances that are formed during the reaction and are present at the end of the process. In this reaction, the products are 1 molecule of glucose (C6H12O6) and 6 molecules of oxygen (O2). These are represented on the right-hand side of the equation, after the arrow.

So, option B, 6CO2 and C6H12O6, correctly identifies the products of this reaction. Option A, 6H2O and 6CO2, correctly identifies the reactants. Option D, C6H12O6 and 602, incorrectly identifies oxygen as a product and omits carbon dioxide and water as reactants.

Option C, 6H2O, C6H12O6, and 602, includes the reactants and one of the products, but incorrectly identifies oxygen as a reactant instead of a product.

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If a pink snapdragon is self-fertilized, the offspring are red, pink, or white. What type of inheritance pattern does flower color exhibit in this example?.

Answers

The type of inheritance pattern flower color exhibited in this example is incomplete domination (Intermediate).

What is meant by incomplete dominance?

Incomplete dominance or partial dominance is gene expression in offspring based on phenotypic observations that mediate from crosses of parents with different and contrasting characters.

Why intermediate traits can appear in an individual?

An intermediate trait occurs when both heirs are equally strong. The two inheritors of nature are neither closed nor covered. On the other hand, the parents will cover each other because they are just as strong. Offspring with intermediate traits will carry the same combination of traits from both parents.

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Synthesis of a new rna molecule starts at which end of the rna molecule being made?.

Answers

5' to 3'
The main enzyme involved in transcription is RNA polymerase, which uses a single-stranded DNA template to synthesize a complementary strand of RNA. Specifically, RNA polymerase builds an RNA strand in the 5' to 3' direction, adding each new nucleotide to the 3' end of the strand.

A patient has a hemorrhage and loses a large volume of the blood. Which compensatory mechanisms would you expect?.

Answers

Vasoconstriction and a decrease in kidney fluid production in the urine are compensatory processes that take place if a patient experiences a haemorrhage and loses a significant amount of blood.

The body responds to volume loss by quickening the heartbeat and contractility, which is followed by the activation of baroreceptors, which in turn causes the sympathetic nervous system and peripheral vasoconstriction. Usually, a narrowing of the pulse pressure is accompanied by a modest rise in diastolic blood pressure.

Blood loss is referred to as bleeding, sometimes known as haemorrhage. It can refer to bleeding that occurs inside the body (internal bleeding) or outside the body (external bleeding). Almost any part of the body can lose blood. When a blood artery or organ is injured, internal bleeding can occur. When there is a rupture in the skin, external bleeding occurs. Traumatic injury, an underlying medical condition, or a combination of both can cause bleeding. Massive blood volume loss is known as hypovolemia, and significant blood loss death is known as exsanguination. Haemostasis, the act of halting or controlling bleeding, is a crucial component of both first aid and surgery.

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measuring water quality. biochemical oxygen demand (bod) measures organic pollutants in water by measuring the amount of oxygen consumed by microorganisms that break down these compounds. bod is hard to measure accurately. total organic carbon (toc) is easy to measure, so it is common to measure toc and use regression to predict bod. a typical regression equation for water entering a municipal treatment plant is,

Answers

Ensuring water quality. biochemical oxygen demand (bod) measures organic pollutants in water by measuring the amount of oxygen consumed The positive slope of this line says that the two variables BOD.

BOD measures the quantity of oxygen fed on by microorganisms for the procedure of decomposition of the natural matter in the water of our bodies. It shows the number of natural pollutants found in an aquatic ecosystem. It determines the amount of organic matter present in soils, sewages, sediment, garbage, sludge, etc.

Biochemical oxygen demand, or BOD, is a chemical manner for figuring out the amount of dissolved oxygen wished by using aerobic organic organisms in a body of water to interrupt down natural material present in a given water sample at a certain temperature over a particular time period.

The BOD is an important parameter for assessing water pleasant. It offers the quantity of oxygen consumption (mg O2 L− 1) by using aerobic organic organisms to oxidize organic compounds. Sewage with excessive BOD can motivate lower oxygen-receiving waters, which in turn can reason the death of a few organisms.

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which of the following shows a correct flow of electrons through the electron transport chain: complex ii --> nadh --> q --> cyt. c --> complex iii --> complex iv nadh --> complex i --> complex ii --> complex iii --> q nadh --> complex i --> q --> complex iii --> cyt. c --> complex iv nadh --> complex i --> cyt. c --> q --> complex iii --> complex iv

Answers

The correct flow of electrons through the electron transport chain is given below:

NADH --> complex I --> q --> complex iii --> cyt. c --> complex iv; option C.

What is the electron transport chain?

The electron transport chain, ETC, also known as oxidative phosphorylation refers to the chain of reaction in which electrons are transported from the electron carriers NADH and FADH₂ to the final electron acceptor oxygen.

The energy of the electron transport is used to synthesize ATP for the energy requirements of the cells.

The electron transport chain takes place in the mitochondria and consists of four protein complexes namely;

Complex I (NADH dehydrogenase )Complex II (Succinate dehydrogenase)Complex III (Cytochrome b and c1), and Complex IV (Cytochrome c oxidase)

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Help please Match the correct term with the corresponding definition or description.

Answers

The illustration below shows the solution. To read the text, enlarge the image.

Help please Match the correct term with the corresponding definition or description

Answers

The image below has the solution. To read the text, enlarge it.

Check all that are characteristics of the somatic nervous system (SNS).
Consists of two neurons in the pathway
Effector organs are skeletal muscle fibers
Axons are myelinated and thick
Either excites or inhibits effector organs

Answers

The characteristics of the somatic nervous system (SNS) include the effector organs which are skeletal muscle fibers and axons which are myelinated and thick. Thus, the correct options are B and C.

What is Somatic Nervous System (SNS)?

The somatic nervous system or the voluntary nervous system is the part of the peripheral nervous system which is associated with the voluntary control of the body movements via the skeletal muscles.

The characteristic of the somatic nervous system is that it controls the skeletal muscles. Somatic senses inform the nervous system about the external environment, but the response is through the voluntary muscle movements.

Therefore, the correct options are B and C.

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Can someone explain this to me. Try to make a sketch off of it. Doesn't have to be amazing. Its just so I can understand it more

50 POINTS :)

Answers

Answer:

Cold air: less space for water vapour

Warm air: more space for water vapour

What is the name of the structure labeled "D"?Integral Protein

1.)Glycolipid
2.)Peripheral Protein
3.)Cholesterol
4.) Integral protein

Answers

The name of the structure labeled "D" in the attached image is an Integral Protein because it passes all the cell membrane on both sides (Option 4).

What is an integral membrane protein?

An integral membrane protein is any protein located on the cell membrane that can be found on both surfaces of this membrane, thereby this protein is in contact with both the extracellular medium and the cytoplasm of the cell.

A well known example of an integral membrane protein is a channel protein such as aquaporins that allow the passage of water molecules across the cell membrane.

Therefore, with this data, we can see that an integral membrane protein is any protein in a biological membrane such as the cell membrane that can pass through the integrity of this barrier and play different roles such as transport of molecules in the cell.

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What property of the genetic code makes it possible for base substitution mutations in a protein coding region to have no effect on phenotype?.

Answers

The change occurs in the DNA sequence of a non-coding region of the DNA, such as in inter-genic regions (between genes) or within an intron region.

The great majority of base pair modifications (particularly substitutions) have no impact on the phenotype after mutagen treatment. This frequently happens because a mutation in the DNA sequence occurs in a non-coding area of the DNA, such as between genes or inside an intron region. The term "silent mutation" refers to a mutation that, despite affecting a base inside a codon, may not alter the amino acid that it encodes (recall that the genetic code is degenerate; for instance, GCT, GCC, GCA, and GCG all encode alanine). Furthermore, the base substitution might affect an amino acid, but this won't change how the final product works, thus there won't be any phenotypic changes.

Even when the mutant allele is homozygous, a mutation can sometimes result in the full loss of function of a gene without altering the phenotypic. Environmental factors may be to blame for the lack of phenotypic change; while the loss of that gene product might not be noticeable in one environment, it might be in another. As an alternative, genetic redundancy—the encoding of similarly functioning genes at more than one location in the genome—could be to blame for the absence of a phenotype. As a result, the absence of one gene is made up for by another. It is vital to keep in mind that genes with redundant activities cannot be easily discovered by mutant screening, which is a significant restriction of mutational analysis.

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consider five species of toads. species a and b are sister species. species c and d are also sister species. the clade containing species a and b is sister to the clade containing species c and d. species e is sister to the clade containing a, b, c, and d. which species is most likely to share synapomorphies with species e?

Answers

Species  C is most likely to share synapomorphies with species E .

A unique character or character state that has developed from its ancestral form is referred to as an apomorphy in phylogenetics. An apomorphy that is shared by two or more taxa is referred to as a synapomorphy and is thought to have originated in those taxa's most recent common ancestor. Synapomorphy suggests homology in cladistics.

For instance, humans, chimpanzees, monkeys, lemurs, and other lineages of primate have opposable thumbs as a synapomorphy.

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Summarize the role and importance of the muscular system.
Do Not Plagiarize Please

Answers

The muscular system is made up of functional cells called muscle fibers. Their primary function is contraction. Muscles are generally attached to bones and internal organs and works for movement.

Muscular systems Primary function is to help in different motions such as walking, running, and jumping. They are also responsible for handling many involuntary actions, such as beating of heart. The important organs that comprises of muscular system are the skeletal, smooth, and cardiac muscles.

Muscular system are made up from various component of muscle and  each of them play a vital role in the function of the body. Muscles also  allow to move, speak, and chew.

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What does the difference in distribution tell you about the cells in the treated sample?.

Answers

The difference in distribution tell you about the cells in the treated sample, is that the treated cancer cells are arrested at the G1 phase.

They give the body structure, absorb nutrients from meals, turn those nutrients into energy, and perform certain tasks. Additionally, cells have the ability to replicate themselves and contain the body's genetic material. Each component of a cell has a different purpose.

There are two different types of cells: prokaryotic cells, which lack a nucleus but still have a nucleoid area, and eukaryotic cells, which have a nucleus. Eukaryotes can either be single-celled or multicellular, in contrast to prokaryotes, which are single-celled organisms.

The parasitic bacteria Mycoplasma gallicepticum, which inhabits the respiratory, genital, and urinary systems of primates, is thought to be the tiniest known creature capable of autonomous development and reproduction. Mycoplasma is the name of the cell used in the study. It has a 0.0001 mm diameter.

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For mammals living in cold habitats, would smaller or larger species require relatively thicker fur?.

Answers

For mammals living in cold habitats, smaller species might require relatively thicker fur.

As they get closer to the poles, the majority of vertebrate animals gain weight. Numerous animal species benefit from being larger in the colder climates found at high latitudes and elevations. Bergmann's Rule, a phenomenon, explains how heavier animals have a smaller surface area to volume ratio, which aids in reducing heat loss.

Many (non-polar) animals are ectotherms, meaning that their internal heat production is so low that they rely on their surroundings to warm them up to a temperature where their body and enzymes can function well enough for an active and functional life. Smaller animals struggle in cold climates because they have a greater relative surface area to lose heat.

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during the plateau phase of the action potentials of myocardial contractile cells, which ion(s) is/are crossing the membrane

Answers

During the plateau phase of the action potentials of myocardial contractile cells both Ca2+ and K+.

Slow Calcium Channels are responsible for the Plateau Phase, because they allow very long time-scale influx of positive ions that balances the  low efflux of potassium. The voltage-gated K+ channels are slower to open than usual, often not opening much until the end of the plateau.

Calcium ions account for the plateau phase during cardiomyocytes action potential. Prolonged opening of the slow calcium-sodium channels allows calcium ions to enter the fiber,  That accounts for the plateau portion of the action potential.

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Which part of the brain contains the epithalamus, hypothalamus, and the thalamus?.

Answers

The diencephalon is the part of the brain that contains the epithalamus, hypothalamus, and the thalamus.

The diencephalon is located between the cerebrum and the brainstem and is responsible for a variety of functions including:

-Regulation of the body's internal environment

-Homeostasis

-Control of hunger and thirst

-Regulation of body temperature

-Control of wakefulness and sleep

-Emotional regulation

The epithalamus is a small region of the brain that is responsible for the secretion of the hormone melatonin. The hypothalamus is a small region of the brain that is responsible for a variety of functions including:

-Regulation of the endocrine system

-Control of the autonomic nervous system

-Regulation of body temperature

-Control of hunger and thirst

-Control of wakefulness and sleep

-Emotional regulation

The thalamus is a large region of the brain that is responsible for relaying sensory information to the cerebral cortex.

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The movement of substances across the cell membrane that does require the use of energy by the cell is.

Answers

Using the theories of the cells, we got that the movement of substances across the cell membrane that does require the use of energy by the cell is active transport.

The contents of the cell are completely surrounded by its cell membrane or plasma membrane. Thus, any communication between cell and the extracellular medium is mediated by  cell membranes. These cell membranes serves two important functions:

It must retain the dissolved materials of  cell so that they do not simply leaks out into the environment.It should also allow the necessary exchange of the materials into and out of the cell.

There are two major methods for moving molecules across the membrane, and it is related to whether or not the cell energy is used. Passive mechanisms, such as the diffusion, require no energy to function, whereas active transport does. In passive transport, an ion or the molecule crosses a membrane and moves down its concentration or electrochemical gradient. The different types of the transport mechanisms across cell membranes are as follows:

Simple diffusionFacilitated diffusionOsmosis

Hence, the movement of substances across the cell membrane that does require the use of energy by the cell is active transport.

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what physical concepts, known in the time of lord halley, helped formulate the single cell circulation model and the conception of the hadley cell?

Answers

The physical concepts which assisted the formulation of the single cell circulation model and the conceptualization of the Hadley cell are convection as well as pressure gradient force.

Hadley cell is created when warm air surrounding the equator lifts upwards, moves towards the direction of poles and sinks above the subtropics, thereby returning towards the equator. Convection is the process of heat exchange which involves the movement of molecules in a gas or liquid.

The single cell circulation model was developed by George Hadley in the year 1735 to explain the movement of air from the equator as well as around the Earth.

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The new york marathon returns to full capacity this year for the first time since 2019. How many runners were allowed to participate a year ago because of the pandemic?.

Answers

The 26.2-mile course took more than 50,000 participants through all five boroughs.

How long does it take to complete the NYC Marathon?

Following the conclusion of the last wave start, sweep buses will travel the marathon course at a speed of 6 1/2 hours, or 15 minutes per mile. Any participant who wants to drop out can take one of these buses to the post-finish area. The city streets will reopen to traffic once the sweep buses have passed.

How many runners complete a full marathon?

The percentage of Americans who have finished a marathon, according to Run Repeat, is about 0.05%. About 1.1 million runners complete a marathon each year all across the world. That is roughly 0.01% of the entire world's population.

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when this cell completes m phase (mitosis and cytokinesis), will the two daughter cells have identical genetic information?

Answers

After mitosis, the daughter cells won't have the same genetic makeup. Sister chromatids typically share the same genetic material.

One of the sister chromatids on the lower chromosome in the picture, however, is lacking gene h, which means that part of the data is missing.

Two daughter cells that are genetically identical to the original cell and have 2N chromosomes are produced as a result of mitosis.

During mitosis, daughter cells are produced that are genetically identical to their parent cells. The cell divides its chromosomes into equal portions after copying or "replicating" them in order to provide each daughter cell with a full set.

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When biological membranes are frozen and then fractured, they tend to break along the middle of the bilayer. The best explanation for this is that _____.

Answers

When a membrane surface is frozen, any hydrophilic interactions between the two surfaces are lost.

How does a cell membrane solidify?

Enzymatic proteins within a solidifying membrane may become inactive because their activity depends on their ability to move laterally within the membrane. This happens when a membrane's permeability changes due to the process of solidification.

The bilayer splits in half when a membrane is frozen, separating the two layers.

Amphipathic. The bilayer of phospholipids that makes up a membrane splits in half when it is frozen, creating a fracture. A freeze-fractured membrane can be seen in an electron micrograph with the following bumps on its fractured surface: fundamental proteins.

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Use the following scenario to answer the question.
Tim goes over to his friend Joe's house. He arrives and Joe has ice cream sundaes for their snack. Tim
knows this is not going to be good, because of what happens after he eats dairy. He feels sick and will
have smelly gas to follow shortly after. Tim doesn't want to tell his friend Joe that he is lactose intolerant.
He saw how good this sundae spread looked and all the work his friend put into making it. He decides to
take a chance and eat the ice cream.
Which of the following statements is not a qualitative observation about the scenario?
OA. Tim gets sickly after eating ice cream.
OB. It only takes 5 minutes for Tim to start feeling sick.
OC. Tim ate the ice cream knowing it would make him sick.
OD. Joe created an ice cream sundae spread for snack time.

Answers

Answer:d

Explanation:

an individual ate steak and potatoes. write down what is happening at each organ of the digestive system.

Answers

The digestive processes are ingestion, propulsion, mechanical digestion, chemical digestion, absorption, and defecation.

What is digestion?Digestion is a complex process that transforms the food you eat into nutrients that your body uses for energy, growth, and cell repair that it needs to survive. Fermentation processes also involve the production of waste products that must be disposed of.A digestive system breaks down food into nutrients such as carbohydrates, fats and proteins. They are then  absorbed into the bloodstream and can be used by the body  for energy, growth, and repair. Unused material is discarded as a surface. During digestion, muscles push food from the top of the stomach to the bottom. This is where digestive juices and enzymes break down any food  you chew or swallow.It prepares  your body for fuel.

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What air pollution standards provide
public health protection, including
protection of the health of sensitive
populations?

Answers

In accordance with the NAAQS, or fundamental air quality standards, the amount of six criteria pollutants—sulfur dioxide, carbon monoxide gas , nitrogen oxides, ozone, particulate , and lead—must be reached and maintained nationally.

The EPA must establish main and secondary NAAQS for qualifying pollutants in accordance with the Clean Air Act. Primary standards defend the public's health, especially the wellbeing of vulnerable groups including the elderly, children, and people with asthma.

What about air pollution?The main causes of man-made air pollution are vehicle emissions, fuel oils and gas used to heat houses, waste products from manufacturing and electricity generation, mainly from coal-fired power plants, and odors from chemical manufacture.Any substance that alters the natural properties of the atmosphere, whether it's chemical, physical, or biological, is taken into account as an air pollutant.Air pollution can occur inside or outdoors.Common causes of pollution include motor vehicles, industrial operations, household combustion appliances, and forest fires.Heart condition , carcinoma , and respiratory conditions like emphysema are a number of the long-term health repercussions of air pollution.Additionally, long-term exposure to pollution can harm a person's nerves, brain, kidneys, liver, and other organs.Some experts think that birth abnormalities are caused by pollution.When fossil fuels are burned, dangerous chemicals like sulphur oxides and nitrogen oxides are released into the atmosphere.When water droplets interact with these contaminants, they turn acidic and release rain that harms people and animals as well as plants.There are several ways during which air pollution can harm trees and crops.Reduced development and survival of tree seedlings, decreased yields of agricultural crops and commercial forests, and increased vulnerability of plants to disease, pests, and other environmental pressures are all effects of ground-level ozone (such as harsh weather).

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What did the earth look like 750 million years ago compared to 20 million years ago? How did the land formations change? Please help !!

Answers

A cloud of gas and dust contained our planet at its beginning. It has changed into our planet, which has a lot of rocky terrain, a life-supporting environment, and mysterious oceans.

What is earth?

Earth was not always a part of this vast universe, nor was it always a favorable environment for life.

Earth and the rest of our solar system were completely unrecognisable billions of years ago, existing only as a massive cloud of dust and gas.

That dust cloud eventually experienced a disruption due to a strange event that even the top scientists in the world are still unable to explain. This disturbance triggered a series of subsequent events that eventually resulted in the emergence of life as we know it.

Therefore, A cloud of gas and dust contained our planet at its beginning. It has changed into our planet, which has a lot of rocky terrain, a life-supporting environment, and mysterious oceans.

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what would happen if the normal circulation or resorption of cerebrospinal fluid (csf) were blocked?

Answers

If the normal circulation or reabsorption of CSF were blocked, CSF production would continue in the choroid plexus of each ventricle, but the fluid would remain there, causing the ventricles to swell, also known as hydrocephalus.

Cerebrospinal Fluid is the fluid present in the tissues that surround the brain and spinal cord. It is clear and colorless in appearance. The role of the fluid is to cushion the organs and therefore protect them from any injury as well as provide nutrients to the organs.

Choroid plexus is a wide network of blood capillaries present in the brain. The CSF is produced in these capillaries. It can be found in the ventricles of the brain.

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