lavan
g. Select the organisms that perform this type of asexu.
Binary Fission
A. Star fish
B. Bacteria
Budding
Regeneration
Budding
Vegetative reproduction
C. Yeast
D. Hydra
E. White potato

Lavang. Select The Organisms That Perform This Type Of Asexu.Binary FissionA. Star FishB. BacteriaBuddingRegenerationBuddingVegetative

Answers

Answer 1

The organisms that perform binary Fission are Bacteria, Hydra and White potato.

What is Binary Fission?Binary fission is a type of asexual reproduction in a single parent organism splits into two daughter organisms, each having the same genetic information as the parent. It is most commonly used by single-celled organisms such as bacteria and protozoans, but it can also occur in some plants and animals. During binary fission, the nucleus of the parent organism divides into two daughter nuclei, each with the same genetic material as the parent. The parent cell then splits into two daughter cells, each with one of the daughter nuclei. The daughter cells are exact copies of the parent cell and will then go on to replicate themselves in the same way. Binary fission is a very efficient form of reproduction in single-celled organisms since it requires very little energy and can happen quickly. It also allows organisms to spread quickly, as each daughter cell can go on to produce more daughter cells.

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Related Questions

The scientific name for an organism is made up of its____and____

Answers

The scientific name for an organism is made up of its genus and species. This naming method known as Binomial naming system.

A two-name system that is used by scientists is known as the Binomial Naming System. Using a system that identifies the genus and species of the creature, scientists give names to living things like plants and animals. The genus comes first, followed by the species, which is the second word. Only the first letter of the first word is capitalized, whereas the second letter is not. A two-part binomial nomenclature, often known as a scientific name, was suggested by Carl von Linne or Carl Linnaeus in an effort to describe the natural world through the provision of a scientific naming system.

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What would happen if there was no S phase during cell division?

Answers

if there was no S phase during cell division, half of the chromosome will get decreased for each generation.

S phase, also referred to as the "conflation phase," of the cell cycle, which follows after G1 and G2, is when DNA replication takes place. Since adequate genome duplication is required for normal cell division, the conditioning processes that occur during S-phase are tightly controlled and largely conserved. Entering S-phase is controlled by the G1 restriction point (R), which commits cells to the rest of the cell cycle in the presence of adequate nourishment and growth signals. Because this transition is essentially irreversible, even if the terrain is unfavourable after the cell has passed the restrictionpoint, it will still enter the S- phase. In order to control the entry into the S-phase, molecular processes that allow a fast, unidirectional change in cell state are involved.

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Which population would be more likely to be affected by genetic drift?
A: cats in New York City
B: mosquitoes in Wisconsin
C: snails on an island in the Mississippi River
D: oak trees in Canada

Answers

Answer:

I would say C. Snails on an island in the Mississippi River

where are sphincters found? throughout the small intestine between two parts of the digestive tract on the outside of the digestive tract between the pharynx and the mouth save

Answers

Sphincters are found in various parts of the body, including the digestive tract. In the digestive tract, sphincters control the flow of food and other materials through the digestive system.

Some of the most important sphincters in the digestive tract are the esophageal sphincter, the pyloric sphincter, and the ileocecal sphincter.The esophageal sphincter is located at the lower end of the esophagus and prevents stomach contents from flowing back into the esophagus. The pyloric sphincter is located at the end of the stomach and controls the flow of food from the stomach into the small intestine.

The ileocecal sphincter is located at the entrance of the large intestine and controls the flow of food from the small intestine into the large intestine.

Sphincters are also found in other parts of the body, such as in the urinary tract, where the urethral sphincter controls the flow of urine out of the bladder. In the reproductive system, the uterus has a sphincter that controls the flow of menstrual blood. In the respiratory system, the larynx has a sphincter that controls the flow of air into and out of the lungs.

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21. Practice: You perform a serial dilution, using a known concentration of 100 mg/mL in the first tube. Each tube contains 100 µL of diluent.
You withdraw 50 µL from tube 1 and add it to tube 2, and continue with the same dilution protocol for the subsequent tubes. When you reach
tube 11, you discard the 50 µL, leaving 100 µL of diluent in tube 12. List the values of the standard curve found in each well:

Answers

According to the question, List the values of the standard curve found;Tube 1: 100 mg/mL,Tube 2: 50 mg/mL,Tube 3: 25 mg/mL,Tube 4: 12.5 mg/mL,Tube 5: 6.25 mg/mL,Tube 6: 3.125 mg/mL.

What is the curve?

The curve is a mathematical concept that describes the shape of a line when graphed. It is defined as the set of points in a plane that satisfy a given equation or set of equations. The most common type of curve is the parabola, which is a U-shaped curve that is symmetrical around its vertex. Other common curves include the circle, ellipse, and hyperbola. Curves are used in a variety of fields, including mathematics, engineering, economics, and physics, to study the behavior of objects, systems, and phenomena. In mathematics, the study of curves is known as the calculus of variations, and it is used to study the properties of curves, such as their length, area, and curvature.

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Which chemical formula is an example of a compound? O2 H2SO4 O3 2S

Answers

The chemical formula that represents an example of a compound is H₂SO₄.

What is a chemical formula?

Chemical formula is a notation indicating the number of atoms of each element present in a compound.

A chemical compound is a substance formed by the union of two or more chemical elements in a fixed ratio, the union being a chemical bond.

Since a chemical compound is made up of two or more elements chemically combined, the option that depicts a chemical compound is sulfuric acid (H₂SO₄).

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Sulfuric Acid (H2SO4) is a chemical compound made up of two hydrogen atoms, one sulfur, and four oxygen atoms.

What type of compound is H2SO4?

The reason why H2SO4 carries only covalent bonds is because, in the structure, you have S-H bonds and S-O bonds one sulfur atom, and four oxygen atoms. Sulfuric acid is a powerful acid, soluble in water, very polar, and an outstanding solvent. Its applications involve the production of fertilizers and detergents. Sulfuric acid (H2SO4) is a strong acid with hygroscopic and oxidizing things. Sulfuric Acid is a mineral acid with the chemical formula H2SO4.

H2SO4 is an ionic compound but it has covalent bonds. Therefore from the above ending, we can easily conclude that Sulphuric acid has covalent bonds but it ionizes readily building it a very strong acid.

So we can conclude that Sulphuric acid holds covalent and co-ordinate bonds.

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PLSSS HELP IF YOU TURLY KNOW THISS

Answers

Answer:B B B B B B B B B B

Explanation:

Write a scientific argument that addresses the question What best explains the pattern of volcanic activity and earthquakes on the Jalisco Block?

First, state your claim.

Claim 1: Convergent movement between the Jalisco Block and the Rivera Plate best explains the pattern of volcanic activity and earthquakes on the Jalisco Block.
Claim 2: Divergent movement of the Jalisco Block away from the North American Plate best explains the pattern of volcanic activity and earthquakes on the Jalisco Block.
Then, use evidence to support your claim.

For each piece of evidence you use, explain how it supports your claim.

Answers

Claim 1: Convergent movement between the Jalisco Block and the Rivera Plate best explains the pattern of volcanic activity and earthquakes on the Jalisco Block.

Evidence 1: The Jalisco Block is located on the boundary of the Rivera Plate and the North American Plate. The Rivera Plate is subducting beneath the North American Plate, causing the Jalisco Block to be pushed upward. This convergent movement generates pressure and heat, which can lead to the melting of rock and the formation of magma. This magma can then rise to the surface and create volcanic activity.

Evidence 2: Seismic data shows that the majority of earthquakes on the Jalisco Block occur at depths of less than 70 kilometers, which is consistent with the depth of the subduction zone. Additionally, GPS data shows that the Jalisco Block is being pushed upward at a rate of several millimeters per year, which is consistent with the upward movement caused by subduction.

Evidence 3: Volcanic activity on the Jalisco Block is concentrated in specific areas, such as the Colima Volcanic Complex and the Nevado de Colima volcano. These areas are located near the boundary of the Rivera Plate and the North American Plate, which supports the idea that the convergent movement between these plates is driving the volcanic activity.

What is the argument about?

The convergent movement between the Jalisco Block and the Rivera Plate is responsible for the pattern of volcanic activity and earthquakes on the Jalisco Block.

The pressure and heat generated by the subduction process causes the melting of rock and the formation of magma, which can then rise to the surface and create volcanic activity. The majority of earthquakes occur at depths consistent with the subduction zone and GPS data shows the upward movement, which is consistent with the upward movement caused by subduction.

Therefore,  The Volcanic activity is also concentrated in specific areas near the boundary of the Rivera Plate and the North American Plate, which supports the idea that the convergent movement between these plates is driving the volcanic activity.

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in the pancreas, cells secrete insulin, which blood levels of glucose. select one: a. alpha ; raises b. alpha; lowers c. beta; raises d. beta; lowers

Answers

In the pancreas, beta cells secrete insulin, which lowers blood levels of glucose. So the correct option is d.

Insulin is a hormone that regulates the metabolism of carbohydrates, fats, and proteins in the body. It is produced by beta cells in the islets of Langerhans, which are scattered throughout the pancreas. The main function of insulin is to lower blood glucose levels by promoting the uptake and storage of glucose in the body's cells, particularly in the liver and muscle tissue.

When glucose enters the bloodstream, beta cells in the pancreas detect the rise in blood glucose levels and respond by releasing insulin into the bloodstream. Insulin then binds to receptors on the surface of cells, activating a cascade of intracellular signaling pathways that ultimately lead to the uptake and storage of glucose. In this way, insulin plays a crucial role in maintaining normal blood glucose levels, preventing hyperglycemia (high blood sugar) and its associated complications, such as diabetes.

On the other hand, alpha cells in the pancreas secrete glucagon, a hormone that raises blood glucose levels by stimulating the liver to convert stored glycogen into glucose, which is then released into the bloodstream. Thus, alpha cells and beta cells work together to maintain normal blood glucose levels by releasing opposite hormones, insulin and glucagon respectively.

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_____ is the sum of all chemical reactions in the body, while _____ refers to chemical reactions that decompose large molecules into smaller ones.

Answers

Catabolism refers to chemical processes that break down large molecules into smaller ones, whereas metabolism is the total of all chemical reactions occurring within the body.

The organism uses the energy given off by respiration in cells to power its ongoing, enzyme-controlled metabolic activities for the production of new molecules. Scientists define metabolism as the total of the life-sustaining processes of breakdown (catabolism) and synthesis (anabolism). This energy is needed to synthesise new organic material and power essential operations. Our bodies need this energy in order to move, think, and develop. Specific proteins in the body control the chemical reactions involved in metabolism.

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Which one of the following is not a distinction of turf grasses?-Forms a contiguous community-Can withstand traffic-Fixes atmospheric nitrogen-Tolerates frequent mowing

Answers

Answer: your mom

Explanation: your mom

Are humans more likely to use surface water of groundwater as a freshwater source?

Answers

Answer:

hope it helps <3

Explanation:

Since surface water is more easily accessible than groundwater, it is relied on for many human uses. It is an important source of drinking water and is used for the irrigation of farmland.

what is the relationship between cellular respiration and heat production?

Answers

The relationship between cellular respiration and heat production is that cellular respiration is the process by which cells convert energy from food into a form that can be used by the cell.

During this process, heat is produced as a by-product. This heat is generated by the chemical reactions that occur during the process of cellular respiration. The heat produced is used to maintain the temperature of the cell and its environment. This heat is also used to help the cell to perform its metabolic activities.

In addition, the heat produced during cellular respiration helps to keep the cell alive and functioning. Without this heat, the cell would not be able to survive. Therefore, cellular respiration and heat production are closely related.

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what did leeuwenhoek call the tiny creatures he saw under a microscope?

Answers

On October 24, 1632, Antoine van Leeuwenhoek was born in Delft, Dutch Republic. He was baptized as Thonis on November 4. The first tenet of the cell theory is where Leeuwenhoek made his greatest contribution.

Van Leeuwenhoek wanted to be able to operate his draper shop while being able to see the quality of the thread more clearly than was possible with the magnifying glasses available at the time. Although there are little records of his early work, he developed an interest in lens building. By pushing apart the heated portion of a tiny rod of soda lime glass in a hot flame, one can create two long glass whiskers. The end of one whisker is then reinserted into the flame to create a tiny, high-quality glass lens. An important neutron tomography experiment that used a high-magnification Leeuwenhoek in May 2021 gathered images.

Every living thing is built of cells, according to the first tenet of the cell theory, and even an entire organism can be composed of just one cell that is capable of self-replication.

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cell-cycle checkpoints are key transition stages that allow or prohibit the cell's progression to the next stage. what is happening during cell cycle checkpoints?

Answers

These checkpoints are important for ensuring the proper progression of the cell cycle, as well as for preventing the replication of damaged DNA or the division of cells with abnormal chromosomes.

Cell-cycle checkpoints are key transition stages that allow or prohibit the cell's progression to the next stage. During cell-cycle checkpoints, the cell's DNA is checked for damage and its chromosomes are checked for proper alignment and separation. If the cell's DNA or chromosomes are damaged, the cell will either repair the damage or stop the cell cycle and enter a dormant state until the damage is repaired. If the cell's DNA and chromosomes are fine, the cell will continue to the next stage of the cell cycle.

The two major cell-cycle checkpoints are the G1 checkpoint, which occurs at the end of the G1 phase and checks the cell's DNA for damage, and the G2 checkpoint, which occurs at the end of the G2 phase and checks the cell's chromosomes for proper alignment and separation. These checkpoints are critical for preventing the replication of damaged DNA and the division of cells with abnormal chromosomes, which could lead to cancer or other diseases.

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where are the genes that code for specific traits located?

Answers

The genes are located within chromosomes which are mostly found in the nucleus of a cell.

The use of pesticides on crops has been a common farming practice for decades. what has been the greatest effect of natural selection through the use of pesticides on certain insect populations?

Answers

The use of pesticides on crops has had a significant effect on certain insect populations through the process of natural selection.

Pesticides are designed to kill or inhibit the growth of certain species of insects, and over time, this can lead to the evolution of resistance in those populations.

The greatest effect of natural selection through the use of pesticides on certain insect populations is the development of pesticide resistance. This means that certain individuals within a population of insects have acquired genetic variations that protect them from the effects of pesticides.

These individuals are more likely to survive and reproduce, passing on their pesticide-resistant genes to their offspring. Over time, the proportion of pesticide-resistant individuals within the population increases, making it more difficult to control the population with the same pesticide.

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what limits the number of individuals that can live in an ecosystem

Answers

Answer:

Space, food, oxygen, and water are limiting factors

Explanation:

which genotype represents a homozygous dominant allele?

Answers

A homozygous dominant allele is an allele that is the same on both chromosomes, and is the dominant allele of the two. An example of a homozygous dominant allele would be TT, which is the genotype of a person who has two copies of the dominant version of a gene.

The capital letter in the genotype is used to represent the dominant allele, while the lowercase letter is used to represent the recessive allele. So, in the example of TT, both of the alleles are the same, and they are both the dominant version of the gene. This indicates that the person carries the dominant allele in two copies.

A homozygous dominant allele can be inherited from either parent, and can be passed down to the next generation. When two heterozygous alleles (one dominant and one recessive) are combined, there is a 50% chance that the offspring will have a homozygous dominant allele.

In summary, a homozygous dominant allele is an allele that is the same on both chromosomes, and is the dominant allele of the two. An example of a homozygous dominant allele would be TT, which is the genotype of a person who has two copies of the dominant version of a gene.

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the only artery in the body rich in carbon dioxide is called

Answers

The pulmonary artery is the only artery in the body that is particularly rich in carbon dioxide.

Blood veins called pulmonary arteries transport oxygen-deficient blood from the right side of the heart to the lungs. The term "pulmonary" in medical parlance refers to something that affects your lungs. Your pulmonary trunk, or main pulmonary artery, is the only one you have.

The only artery that delivers blood rich in carbon dioxide to the lungs for reoxygenation is the pulmonary artery.

The two principal arteries leaving the right ventricle of the heart are known as the pulmonary arteries. Low-oxygen blood is seen in this lower chamber of the heart. This blood travels to the lungs through the pulmonary arteries. The blood absorbs more oxygen there and exhales carbon dioxide.

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1. The diagram to the right shows a profile view of a bedrock outcropping.
None of the layers have been overturned. How can we tell that the
sandstone is younger than the shale below it?
Use one or more complete sentences.

Answers

Since the lowest layer of rock originates earliest, it is also the oldest. The layer above that is the youngest, and the top layer is the youngest of all.

Which rock unit is the youngest?

A fault or intrusion is younger than the rocks it cuts through, according to the cross-cutting relationships principle. All three sedimentary rock strata (A, B, and C) are traversed by the fault, as well as the intrusion (D). The youngest feature must therefore be at fault.

Because the lowest layer of rock originates earliest, it is also the oldest. The layer above that is the youngest, followed by the layer at the top.

The layers are Cambrian, Ordovician, Silurian, Devonian, Carboniferous (Mississippi and Pennsylvanian), Permian, Triassic, Jurassic, Cretaceous, Tertiary, and Quaternary, in that sequence. The type of rock most likely to contain fossils is sedimentary rock.

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All of the following information about the given pedigree is
correct, except:

A. Two males in the pedigree have the
trait.
B. Two males in the pedigree did not
inherit the trait.
C. Three sets of parents are shown with
offspring.
D. There are 5 females shown in this
pedigree.

Answers

A pedigree chart tracks inherited traits from parents to offspring. Thus, option C is correct.

What is pedigree chart?

A pedigree chart has been simply tracks the inherited traits just from the parents to the offspring. It has been used to establish the genetic relationships between parents and their progeny.

The evidence given shows of the the chart walks through the genetic records of a family line and the parents as well as the offspring's genetic history which can be established by the chart.

Therefore, The chart has then the further which has been used to make predictions about genetic patterns for the family.

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a macromolecule that can exist as linear or cyclized, where it has a polar head group and a majority nonpolar tail group

Answers

Lipid is a macromolecule that can exist as linear or cyclized, where it has a polar head group and a majority nonpolar tail group.

What are the functions of lipid?

Lipids are a broad group of naturally-occurring molecules which includes fats, waxes, sterols, fat-soluble vitamins, monoglycerides, diglycerides, phospholipids, and others.

The main biological functions of lipids include storing energy, as lipids may be broken down to yield large amounts of energy. Lipids also form the structural components of cell membranes, and form various messengers and signaling molecules within the body.

Some examples of lipids include butter, ghee, vegetable oil, cheese, cholesterol and other steroids, waxes, phospholipids, and fat-soluble vitamins. All these compounds have similar features, i.e. insoluble in water and soluble in organic solvents, etc.

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What is the function of osteoblasts and osteocytes?

Answers

Osteoblasts are cells that are responsible for the formation of new bone tissue. They secrete proteins and other particles that form the extracellular matrix of the bone, which serves as the scaffolding for new bone.

In addition, they produce hormones and growth factors that are important for the development and maintenance of bone.

Osteocytes are mature bone cells that are found within the bone matrix. They provide structural support and help to regulate bone metabolism by secreting hormones, growth factors, and other molecules.

In addition, they produce hormones that regulate the activity of osteoblasts and osteoclasts. Osteocytes also play a role in the repair and remodeling of bone by sensing mechanical forces and responding to changes in the environment.

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What organelle stores things like water, salts, proteins, and carbohydrates, for the cell to use later? A. lysosome B. vacuole C. cell membrane​

Answers

Answer:

The answer would be B. Vacuole!

Which of the following types of RNA is used as a template for protein synthesis?

Answers

mRNA or messenger RNA is used as a template for protein synthesis at the time of translation process.

mRNA is produced at the time of transcription, a process in which an enzyme (RNA polymerase) changes the gene into a main transcript (also known as pre-mRNA). Introns, regions that won't ultimately code for the final amino acid sequence remain in this pre-mRNA in most cases. In the course of RNA splicing, they are eliminated, leaving only exons, which are the areas that will really encode the protein. Maturated mRNA is made up of this exon sequence. The ribosome uses the amino acids delivered by transfer RNA (tRNA) to build the protein after reading the mature mRNA. This procedure is called translation. Each mRNA contains instructions for producing a particular protein.

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The complete question is:

Which of the following types of RNA is used as a template for protein synthesis?

1) mRNA

2) rRNA

3) tRNA

harmful mutations are always quickly weeded out of a population.T/F

Answers

Harmful mutations are always quickly weeded out of a population.False.

Mutations that are harmful can result in genetic diseases or cancer. A genetic condition is an illness that results from a mutation in one or more genes. Cystic fibrosis is an example in humans. A single gene mutation causes the body to create thick, sticky mucus, which clogs the lungs and inhibits ducts in digestive organs.

Some mutations have a negative impact on an organism's capacity to live and reproduce. In humans, for example, Marfan syndrome is caused by a mutation in a protein that is part of connective tissue, resulting in cardiac abnormalities and other health issues.

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What is point mutation in biology?

Answers

Point mutation is a type of genetic alteration that occurs when a single nucleotide base (A, C, G, or T) in the DNA sequence is replaced with another nucleotide base.

This can happen spontaneously or as a result of exposure to certain environmental factors, such as UV radiation or certain chemicals.There are several types of point mutations, including transitions, transversions, and frameshift mutations. In a transition, a purine (A or G) is replaced with another purine, or a pyrimidine (C or T) is replaced with another pyrimidine.

In a transversion, a purine is replaced with a pyrimidine, or vice versa. A frameshift mutation occurs when a nucleotide is inserted or deleted from the DNA sequence, causing a shift in the reading frame and altering the amino acid sequence of the protein encoded by the affected gene.

Point mutations can have a variety of effects on the function of the protein encoded by the affected gene. Some point mutations may have no effect on protein function, while others can lead to the production of a non-functional protein. In some cases, point mutations can even result in the production of a protein with altered or enhanced function.

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Part A: Research a Forest
Use credible resources to research the type of forest you chose and address these questions:

Where is this forest located?
What is the climate of this region?
What types of plants and animals live there?
Why is deforestation of this region a threat?
Is deforestation currently occurring in this region? If so, what is the primary cause?
Write a paragraph that answers the questions.

Answers

The selected area is the Atlantic Rain Forest in  Brazil, which include diverse species of insects, mammals, birds, and also reptiles. Deforestation in this area increases the amount of carbon dioxide in the atmosphere, which may trigger unpredictable climatic phenomena in the region.

Why deforestation is a threat to wildlife and humans?

Deforestation is a threat to wildlife and humans because plants are primary producers that increase the amount of available oxygen by consuming carbon dioxide.

Therefore, with this data, we can see that deforestation is a threat to wildlife and humans because plants help to reduce carbon dioxide levels, which is a greenhouse gas.

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What breaks downlactic acid

Answers

Answer:

your liver and kidneys

Explanation:

Lactate is cleared from blood, primarily by the liver, with the kidneys (10-20%) and skeletal muscles doing so to a lesser degree. The ability of the liver to consume lactate is concentration-dependent and progressively decreases as the level of blood lactate increases.

Other Questions
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