Answer:
o store the genetic information of the organisms in them.
is the primary link between the endocrine and nervous systems.
The endocrine and nervous systems are two of the most important systems in the body, and they're nearly linked.
The primary link between the two systems is hormones, which are produced by the endocrine system and impact the nervous system. Hormones control the body's metabolic processes, development, and se-xual characteristics. The nervous system can also impact the endocrine system by releasing hormones that affect the endocrine glands and their functions.
For illustration, adrenaline, which is released by the nervous system, can spark the release of hormones that increase heart rate and blood pressure. The two systems work together to maintain homeostasis in the body and regulate vital processes similar as metabolism, reduplication, and growth.
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Sonia is riding with her mom in the car and notices an
abandoned baseball field that has a lot of grass and
wildflowers growing in it. What type of succession is she
observing? Explain your answer.
She is observing an example of secondary succession because the baseball field had some soil and some plant and animal life when it was abandoned.
Which of the following is true about secondary succession?Secondary succession happens in the opposite direction of primary succession. It begins when processes such as forest fires, hurricanes, and other natural disasters damage the existing ecosystem. Secondary succession is the colonization of a habitat that formerly supported plant and animal life but has since been abandoned owing to ecological disruption. Hurricanes and floods are examples of biological disturbances that can deplete a habitat.
Secondary Succession Examples
Fire. Fire is one of the most prevalent sources of secondary succession and an essential component of the rejuvenation and health of many ecosystems.Crop Land Harvesting, Logging, and Abandonment. Disease Renewal Gap Dynamics.
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Answer:
Sample response: She is observing an example of secondary succession because the baseball field had some soil and some plant and animal life when it was abandoned.
Explanation:) hope this helps have a great day.
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how do the sperm or egg cells made in meiosis compare to the original cell?
The sperm or egg cells made in meiosis compared to the original cell are genetically different.
There аre two types of cell division: mitosis аnd meiosis. Most of the time when people refer to “cell division,” they meаn mitosis, the process of mаking new body cells. Meiosis is the type of cell division thаt creаtes egg аnd sperm cells.
Mitosis produces two diploids (2n) somаtic cells thаt аre geneticаlly identicаl to eаch other аnd the originаl pаrent cell, whereаs meiosis produces four hаploid (n) gаmetes thаt аre geneticаlly unique from eаch other аnd the originаl pаrent (germ) cell. Mitosis involves one cell division, whereаs meiosis involves two cell divisions.
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interaction between two species in which both are harmed
Members of two distinct species engage in interspecific rivalry when they use the same scarce resource. Competition is bad for both parties involved since if one species didn't exist, the other would have a stronger chance of surviving and reproducing.
An ecological community is made up of all the populations of various species that coexist in a given area. For instance, if we wanted to characterize the ecological community of a coral reef, we would include the populations of every sort of organism we could locate, from the different coral species to the different fish species to the single-celled, photosynthetic algae dwelling in the corals. When species' ecological responsibilities and needs for survival and reproduction overlap, this is known as having overlapping niches, and this is when species compete. If two species with overlapping niches develop through natural selection to use less similar resources, leading to resource partitioning, competition can be reduced.
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A polypeptide is made from 75 amino acids.
How many peptide bonds would exist in this polypeptide?
How many water molecules were formed in this process?
What type of reaction is involved in making a polypeptide?
1. How many peptide bonds would exist in this polypeptide?
A polypeptide is made up of multiple amino acids that are linked together by peptide bonds. The number of peptide bonds in a polypeptide is one less than the number of amino acids present. So in a polypeptide made from 75 amino acids, there would be 74 peptide bonds.
2. How many water molecules were formed in this process?
The process of linking amino acids together to form a polypeptide is called a condensation reaction. In this process, one water molecule is produced for every peptide bond formed. In this case, since there are 74 peptide bonds in the polypeptide, 74 water molecules were formed.
3. What type of reaction is involved in making a polypeptide?
The process of linking amino acids together to form a polypeptide is a condensation reaction. This type of reaction involves the formation of a peptide bond between two amino acids, which is accompanied by the loss of a water molecule.
Why does our Sun look so much bigger than the stars we see at night?
Answer:
Our Sun looks much bigger than the stars we see at night because it is much closer to us. The stars we see at night are much farther away, so they appear smaller to our eyes.
Answer:
the sun appears much bigger and brighter than all other stars because it is much, much, much closer to you than any other star. Other stars are much further away, and their brightness drops by the distance squared.
A. Use a concept map to illustrate the role of
producers, consumers, and decomposers in the
transfer of energy through ecosystems.
Concept Map of role of producers, consumers and decomposers.
Producers
- Photosynthesis
- Capture energy from sunlight
- Provide energy to consumers
Consumers
- Feed on producers
- Transfer energy to decomposers
Decomposers
- Break down dead organisms
- Return energy to producers
What is the difference between a primary consumer and a secondary consumer? A primary consumer is an organism that obtains its energy by directly eating plants. Primary consumers are herbivores and are the first level in a food chain. They are also known as grazing animals, as they graze on grass and other plant life. Examples of primary consumers include rabbits, deer, sheep, and cows.Secondary consumers, on the other hand, are organisms that obtain their energy by eating primary consumers. Secondary consumers are carnivores and are the second level in a food chain. They feed on primary consumers, such as the rabbits, deer, sheep, and cows mentioned above. Examples of secondary consumers include hawks, wolves, snakes, and foxes.The main difference between primary and secondary consumers is that primary consumers obtain their energy directly from plants, while secondary consumers obtain their energy from eating primary consumers. Primary consumers are also known as herbivores, while secondary consumers are known as carnivores. Additionally, primary consumers are the first level in a food chain, while secondary consumers are the second level.To learn more about role of decomposers refer to:
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Do snails sleep for 13 years?.
No, snails don't take a 13-year nap. When in estivation or hibernation, they can slumber for up to three years.
They can sleep for up to three years at a stretch, which seems like a very long time. Once more, this is their natural instinct for survival. If the situation is not ideal, they will sleep until it is okay to go.
The majority of land snail species have an annual life span; however, some of the bigger species have been found to live up to 10 years in the wild.
Snails can spend a lot of time within their shell during severely hot or cold conditions. Although it is not often, snails will sleep for three years in some extreme circumstances where there are prolonged periods of extreme weather. If you think about it, a snail may sleep for one-third of its life.
It's vital to note that a snail can enter aestivation in addition to hibernating. In order to avoid having to hunt for food or migrate to a warmer climate, animals engage in a period of hibernation. On the other hand, aestivation is a time of protracted dormancy during hot and dry seasons.
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How does a stop codon mutation affect Ada protein from working?.
By halting translation, which results in a protein that is not functional.
The protein-coding portions of an organism's genetic material are known as its genes (DNA). They are expressed in two steps, resulting in useful products such proteins that give organisms a certain phenotype. Transcription and translation are the two steps in gene expression. The gene (DNA) is converted into an RNA molecule during transcription, and this RNA molecule is then read in a sequence of three nucleotides known as CODON during translation. Each codon is converted into an amino acid during translation. A STOP CODON, such as UUC, UUG, or UUA, marks the completion of the translation process and halts it.
Therefore, if Lucy's ADA gene expression results in the production of a stop codon due to a mutation, or change in the nucleotide sequence, the stop codon will indicate that translation has ended.
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Does anyone know these I can’t find them ?
In the third generation, each flock's food percentages and sizes are Flock X = 10.67% 3 birds.
18 birds in flock Y, or 60%
Flock Z = 29.33% 9 birds.
given data
Total number of pieces consumed: Flock X = 32, Flock Y = 180, and Flock Z = 88.
30 birds total are present.
Determine each flock's food consumption rate as a first step.
32/300 * 100 = 10.67% is the flock X value.
Flock Y = (180/300)*100=60%
Flock Z is equal to (88/300) * 100, or 29.33%.
Determine the number of flock sizes in the third generation as a next step.
Flock X is 10.67% * 30 = 3 birds.
18 birds were found in flock Y, or 60% of the total.
Flock Z = 29.33%*30 = 9 birds.
What are flocks?Birds that fly and move in groups called flocks do so in unison.Numerous bird species can be seen in flocks that can number from a few to thousands of birds.In order to increase safety and forage for food more effectively, flocks of birds use coordinated movement and vocal communication.Flocks can form for a number of reasons, such as lowering the risk of predation, locating food, or during migration.Birds may benefit from flocks in a number of ways, including better foraging effectiveness, increased safety in numbers, and increased mobility to cover more land.Depending on the species and circumstances, a flock's precise formation and movement patterns might vary, but they frequently entail the birds aligning themselves to minimise wind resistance and increase visibility.To learn more about flocks from the given link :-
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proteins provide an important dietary source of which mineral element?
Phosphorus. A mineral called phosphorus supports the health of your bones.Additionally, it keeps muscles and blood vessels functioning.Foods high in protein, including such meat, chicken, fish, nuts, beans, or dairy products, naturally contain phosphorus.
What minerals are necessary for the production of proteins?Proteins are crucial biomolecules that play a vital role in a variety of crucial and fundamental life-related processes.Nitrogen is a crucial component of amino acids and is required in the production of proteins.
What elements are found in minerals?The macrominerals calcium, silicon, magnesium, hydrogen, phosphorus, sodium, nitrogen, potassium, silicon, magnesium, oxygen, selenium, and sulphur are often needed in considerable quantities by the plant tissues.
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Is a clam like a snail?.
Compared to clams and snails, squid and clams have undergone different evolutionary processes for less time.
The molecular clock is a method that may be used to determine when two species first diverged by counting the changes between their DNA molecules. According to the Molecular Clock hypothesis, the amount of nucleotide changes between two species would be proportional to the duration of their evolutionary separation, and as a result, some proteins' sequence substitutions would occur at a consistent pace, with proteins acting as the clocks.
The evolutionary links between clams, squid, and snails were determined in the aforementioned inquiry using the molecular clock. According to this investigation, clams and squids are more connected than clams and snails.
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early forms of stem cells are scientifically desirable due to the fact that they
Stem cells are highly desirable among scientists due to their potential for treating a variety of medical conditions and diseases.
Early forms of stem cells, such as embryonic and induced pluripotent stem cells, are particularly valuable because they are able to differentiate into any other type of cell in the body, making them extremely versatile and able to be used for a wide range of treatments.
Additionally, stem cells can be used to regenerate tissue, improve organ functionality, and even provide a renewable source of healthy cells that can be used to replace damaged or diseased cells.
With the tremendous potential of stem cells, scientists are able to explore new treatments and therapies that could one day revolutionize healthcare.
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How might the influence of the protestant reformation and the scientific revolution have contributed.
Many of the contemporary principles we hold dear today were influenced by the Protestant Reformation, including modern democracy, scepticism, capitalism, individualism, and civil rights.
The Protestant Reformation's greatest contribution to the beginning of the Enlightenment was that it caused people to begin doubting the authority and doctrines of the Catholic Church, which led them to search for answers in novel fields like science. By challenging the legitimacy of the Catholic Church, the Protestant Reformation aided in igniting the Scientific Revolution. Throughout the entirety of Europe's mediaeval age, the Church served as the sole arbiter of knowledge and maintained that all discoveries must be consistent with doctrine and dogma. Nearly all academic fields were touched by the Protestant Reformation, particularly the social sciences like economics, philosophy, and history.
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food quality is solely dependent on the nutritional value of food.T/F
False. Food quality is not solely dependent on the nutritional value of food. Nutritional value is an important aspect of food quality, as it provides the necessary nutrients for the body to function properly.
However, other factors such as taste, texture, appearance, and safety also contribute to food quality. Food that is safe to consume, looks and tastes good and has a desirable texture is considered to have high food quality . Additionally, food nutritional value can have cultural and emotional value that also contribute to the overall perception of its quality. Therefore, food quality is a multi-faceted concept that encompasses not only nutritional value but also other aspects of food that are important for consumer satisfaction and well-being.
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Fuels used in transport
Answer:
diesel and gasoline are the two main fuels used in transport and road.
In a cross between two traits, Mendel mated a pea plant of true-breeding round, yellow seeds (RR YY) with a pea plant of true-breeding wrinkled green seeds (rr yy). What is the genotypic ratio of the F1 generation?
The genotypic ratio of the F1 generation is 1:1 when a pea plant of true breeding round, yellow seeds (RR YY) is mated with a pea plant of true-breeding wrinkled green seeds (rr yy).
The segregation of alleles for one gene does not affect the segregation of alleles for another gene during gamete development, according to Mendel's law of independent assortment. Two alleles of a single gene control the colour of seeds. The green-seed gene is recessive, whereas the yellow-seed allele is dominant. All of the F1 hybrid progeny had yellow seeds when true-breeding plants were crossed, when one parent had yellow seeds and the other had green seeds. Peas with round yellow seeds, round green seeds, wrinkled yellow seeds, and wrinkled green seeds were produced when self-pollinating F1 generation pea plants with round yellow seeds were crossed.
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which neurotransmitter is released from the parasympathetic ganglion
Acetylcholine serves as the main neurotransmitter for both preganglionic neurons and the neurons of the parasympathetic ganglia.
The parasympathetic nervous system plays a pivotal part in a variety of physiological processes, including pupil dilation in response to light, lacrimal and salivary stashing, beat- to- beat control of heart rate, coordinated gastrointestinal motility and stashing, evacuation of the bladder and rectum, and kickback penile construction. The preganglionic parasympathetic neurons are set up either in the brainstem or in the intermediolateral cell columns at the S2- S4 parts of the holy spinal cord, and they give off labors to parasympathetic ganglia that are positioned either either outside or inside the walls of the target organ. Acetylcholine is the main neurotransmitter used by preganglionic neurons as well as neurons in the parasympathetic ganglia.
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exemplified by starlings displacing bluebirds from nesting sites
exemplified by starlings displacing bluebirds from nesting sites is called as competition. it may occur for resources such as food, water and shelter.
Ecological competition is the conflict between two organisms over the same resources in an ecosystem. Environmental resources include things like food, water, shelter, light, territory, and substrate that are necessary for surviving and procreating. Competition for mates can also occur among members of the same species. The term "inter-specific competition" refers to rivalry between members of the same species, whereas "intraspecific competition" is used to describe rivalry between members of different species. Since members of the same species share an ecological niche, their needs are essentially the same, and as a result, interspecific competition is typically more fierce than intraspecific competition. Within ecosystems, ecological rivalry helps keep the diversity of species and the organisation of communities.
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Correctly label the following parts of a chemical synapse.
Axon terminal
Mitochondria
Synaptic cleft
Neurotransmitter release
Receptor
Synaptic vesicles
DAR
Axon
Three components make up the chemical synapse: a postsynaptic element, a synaptic cleft, and a presynaptic element (such as an axon termination) (such as a dendritic spine).
The nerve cells act as the generator and conduit for the impulse. Dendrites take in the impulse and send it on to the cell body. The impulse leaves the cell body and travels through the axon to the nerve terminal. The subsequent neuron receives the impulse through the synaptic connection. The proper order for an impulse to pass through a neuron is from the cell body to the axon to the nerve terminal. The presence of tiny, membrane-bound organelles known as synaptic vesicles in the presynaptic terminal, however, is the distinguishing characteristic of all chemical synapses.
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What happens if a human has more than 46 chromosomes?.
The most common forms of trisomy are Down syndrome, Edward syndrome, and Patau syndrome, which occur when a human has more than 46 chromosomes.
Trisomy children typically have a variety of birth anomalies, including delayed development and intellectual disabilities.
Trisomy ('three bodies') occurs when a person has three copies of one of the chromosomes rather than two. This means that they have 47 chromosomes rather than 46.
Down syndrome, for example, is caused by an extra copy of chromosome 21. (trisomy 21). Miscarriage, disease, and growth and development issues can all be caused by chromosomal abnormalities. The most common type of chromosomal abnormality is aneuploidy, which is defined as an abnormal chromosome number caused by an extra or missing chromosome.
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period of nuclear cellular division in which two daughter cells are formed, each containing a complete set of chromosomes______
Period of nuclear cellular division in which two daughter cells are formed, each containing a complete set of chromosomes Mitosis
What is Mitosis?Mitosis is a type of cell division that produces two genetically identical daughter cells from one parent cell. It occurs in eukaryotic cells, which are cells that contain a nucleus and other organelles. During mitosis, the chromosomes in the nucleus are replicated and then divided into two identical sets, each of which is packaged into a new nucleus.
The cell then divides into two daughter cells, each of which has the same number of chromosomes as the parent cell. Mitosis is important for the growth and development of organisms. In addition, it allows for the repair of damaged cells and the production of cells for asexual reproduction.
Mitosis is a continuous process that has four distinct stages: prophase, metaphase, anaphase, and telophase. During prophase, the chromosomes condense and become visible under a microscope.
Metaphase is the stage in which the chromosomes align at the center of the cell. During anaphase, the chromosomes are pulled apart and moved to opposite sides of the cell. In telophase, the chromosomes arrive at opposite sides of the cell and the cell begins to divide into two daughter cells.
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Are clams male or female?.
Clams are generally unisexual, male or female, but sometimes be bisexual, having both the sexes in a single organism.
Clams are typically thought of as either male or female. However, some hermaphrodite species of clams have both male and female reproductive organs in a single person. Typically, a clam's shell form can be used to establish its sex. While female clams have rounder, wider shells, male clams have narrower, more elongated shells.
Clam is the common name for numerous bivalves, most of which are marine organisms. These mollusks are distinguished by their flattened bodies and two shells that are linked at the back and completely encase their bodies. They have two shells that are connected together, and this last attribute is closely related to their name.
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the honing canine tooth is used by nonhuman primates to
Apes are well-suited to cutting and shredding food due to their refined chewing complex. They have huge, triangular-shaped upper canines that are sharp and protrude. Furthermore, the back of these two teeth are sharply angled.
The transition from proto-hominins to contemporary Homo-sapiens has followed a variety of trends. It takes millions of years for these characteristics to develop, not all at once. Generally speaking, the tendencies include the foramen magnum moving forward, canine size decreasing, and molar size increasing. There is reduction of the diastema (space between the incisors and canines), expansion of cranial capacity. The reduction in prognathism (the protrusion of the lower portion of the face), bone weakening, and a rounding of the skull.
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Find a contagious disease and describe the pathogen that causes it, describe the symptoms and how it is spread. Find out if there is a cure or treatment for the disease.
One example of a contagious disease is the flu, also known as influenza.
The flu is caused by a virus known as the influenza virus, which belongs to the Orthomyxoviridae family.
Symptoms of the flu include fever, chills, cough, sore throat, runny or stuffy nose, muscle or body aches, fatigue, and sometimes vomiting or diarrhea. Symptoms typically appear within 1-4 days after infection and can last up to a week.
The flu is primarily spread through respiratory droplets when an infected person talks, coughs, or sneezes. The virus can also be spread by touching a surface or object that has the virus on it and then touching your mouth, nose, or eyes.
There is a cure for the flu. The primary treatment for the flu is antiviral medication, which can shorten the duration of the illness and prevent severe complications. Antiviral drugs can be taken within the first 48 hours of symptoms appearing to be most effective. Vaccination is the best way to prevent the flu. Your doctor can recommend the best treatment course based on your situation.
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You are tudying a population of chicken. You oberve that 16% have yellow kin, which i receive. White kin i dominant. What i the frequency of the receive allele in the population
The frequency of the receive allelel in the population is 0.4 in the population.
The allele frequency is calculated by dividing the total number of alleles in a population by the number of specific alleles of a certain type. The phrase "allele frequency" simply refers to how prevalent an allele is in a population. The Hardy-Weinberg (HW) equation is used by researchers to examine the allele frequency in a population. The Hardy-Weinberg equation looks like this:
1 = p2 + 2pq + q2
The allele frequencies of various alleles are represented by the numbers P and q. The homozygous dominant genotype's frequency is denoted by the word p2. The homozygous recessive genotype frequency is represented by the other term, q2. Even though it would be impossible to count every hidden allele, it is simple to count the population's recessive traits. Two recessive alleles are responsible for recessive traits. By dividing the total number of recessive phenotypes by the total number of individuals, it is simple to determine the value of q2. Let's have a look at an illustration of how this data can be used to determine the frequency of any certain allele.
Recessive population's genotype frequency is
(q2) = (16% or 0.16).
As a result, q = 0.16 = 0.4 = frequency of recessive allele.
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A coronal section divides an organ into superior and inferior portions. True False
False The coronal plane (frontal or Y-X plane) divides the body into dorsal and ventral (back and front) portions. It also separates the anterior and posterior portions.
What is coronal section ?Axial Plane (Transverse Plane) is a horizontal plane that separates the body's upper and lower halves. The body's midline is defined by the median plane, a sagittal plane that divides the body into its right and left halves.
The body is divided into dorsal and ventral (back and front) sections by the coronal plane (frontal or Y-X plane). Additionally, it divides the anterior and posterior parts. The body is divided into superior and inferior (head and tail) sections by the transverse plane, also known as the axial or X-Z plane.
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Ơ
D
4. ***
B
Youngest
f
8
Oldest
Refer to the cross-section above. for each of the following pairs of rock layers identify
the relative dating law that you used to determine which bed was older and which was
younger. Circle the letter of the YOUNGER bed.
The principle of cross-cutting relationships states that any geological feature that cuts across or disrupts another feature must be younger than the feature that is disrupted.
What is relative dating inclusion law?Each succeeding layer in a series of undisturbed stratified rocks is younger than the layer below it. As a result, the youngest rocks are at the top of the sequence and the oldest rocks are at the bottom.
According to the inclusions principle, all rock fragments must be older than the parent rock if they are to be included. A clast in a sedimentary rock or a xenolith in an igneous rock, for instance, must be older than the rock that contains them.
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some scientists claim recent evidence suggests birds should be reclassified to share more taxonomic groups with dinosaurs. what type of evidence would provide the best support for this claim?
Recent research, according to some scientists, indicates that birds should be reclassified to share more taxonomic families with dinosaurs. The likely candidates appear to be proof that dinosaurs and birds had a shared genetic past. Option D is the right response.
Which of the following best illustrates how organisms have evolved?
Complete Resolution. The right response is Fossil. Relationships in evolution are demonstrated by fossils. Because they demonstrate that earlier life on Earth was distinct from the species present now, fossils are crucial pieces of evidence for evolution.
Which better explains why it is thought that animals are heterotrophic?
The organisms known as heterotrophs are unable to produce their own sustenance. They therefore rely on food from other living things. For sustenance, animals rely on either plants or other animals.
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the right atrioventricular valve prevents backflow of blood from the right ventricle into the __________.
Blood cannot leak back into the right atrium from the right ventricle because of the right atrioventricular valve.
What stops the left atrium from experiencing backflow?Blood flow between the left atrium and left ventricle is controlled by the mitral valve. It stops blood from returning to the left atrium after the left ventricle pumps blood to the rest of the body through the aorta.
What portion of the heart controls blood flow?Blood cannot flow backward thanks to the valves. Four valves make up the heart. Separating the right atrium and right ventricle is the tricuspid valve. Between the left atrium and left ventricle is the mitral valve.
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