what macromolecule will your body break down first to get atp?

Answers

Answer 1

Carbohydrates are preferred and broken right down to synthesize ATP molecules. Glucose is a key carbohydrate that is metabolized thru glycolysis and undergoes oxidative phosphorylation to generate ATP molecules.

Carbohydrates are observed in a wide array of each wholesome and bad ingredients—bread, beans, milk, popcorn, potatoes, cookies, spaghetti, tender drinks, corn, and cherry pie. in addition they are available in a ramification of paperwork. The maximum common and considerable forms are sugars, fibers, and starches.

Carbohydrates are the body's fundamental fuel source. at some stage in digestion, sugars and starches are broken down into simple sugars. they're then absorbed into the bloodstream, where they're referred to as blood sugar (blood glucose). From there, glucose enters the body's cells with the assist of insulin.

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Related Questions

what type of energy is used to break the bonds in glucose

Answers

Answer:

Chemical Energy

Explanation:

Because solar energy is harvested by chemical energy while being in a process that water and carbon dioxide is converted to gluecose.

a pleural fluid specimen is received in the laboratory for aerobic culture. the specimen measures about 0.5 ml. how should the tech process this specimen for culture?

Answers

A pleural fluid specimen received in the laboratory for aerobic culture should be processed as follows:

The specimen should be immediately placed on ice or in a refrigerator to prevent bacterial growth.The specimen should be aliquoted, or divided, into several smaller samples to ensure that enough material is available for all of the necessary tests.The specimen should be plated onto blood agar and chocolate agar plates and incubated at 35-37°C in an aerobic atmosphere.The specimen should also be plated onto a MacConkey agar plate and incubated at 35-37°C in an aerobic atmosphere.The specimen should be incubated for at least 24-48 hours and subcultured onto additional agar plates as needed.The specimen should be examined for the presence of bacterial growth, and the growth should be identified using standard microbiological techniques.

Some key points to remember when processing a pleural fluid specimen for culture include:

Maintaining specimen inappropriate temperature.Aliquotting the specimen.Plating the specimen on different agar plates and incubating it in an aerobic atmosphere.Inspecting the specimen for bacterial growth and identifying it.

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in mendel's classic dihybrid cross experiment with seed color and seed shape, what would the recombination frequency have been in the f2 offspring

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In Mendel's classic dihybrid cross experiment with seed color (yellow or green) and seed shape (round or wrinkled), the recombination frequency would have been 50%.

This is because the genes controlling seed color and seed shape are located on different chromosomes and are inherited independently of each other. The parents used in the dihybrid cross were true-breeding for both seed color and seed shape, meaning that they consistently produced offspring with the same characteristics as themselves.

The parents were heterozygous for both traits, meaning that they had one allele for yellow seed color and one allele for green seed color, and one allele for round seed shape and one allele for wrinkled seed shape.

When the parents were crossed, the F1 offspring all had yellow, round seeds. This is because the dominant alleles for seed color (yellow) and seed shape (round) were present in the F1 generation.

When the F1 generation was self-fertilized, the F2 generation produced a 3:1 ratio of yellow, round seeds to green, wrinkled seeds. The F2 generation also had a recombination frequency of 50%.

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Rocation Car Walen
rahlun. Also

Answers

Answer:

yes

Explanation:

Name the functional units of contraction in a muscle fiber.

Answers

sarcomere is the functional units of contraction in a muscle fiber. it is also the  fundamental contractile unit of the myofibril.

The fundamental unit of contractility for muscle fiber is the sarcomere. Actin and myosin, the active components involved in muscle contraction, make up each of the two primary protein filaments that make up a sarcomere. The sliding filament theory is the most widely accepted theory for how muscles contract. According to this theory, active force is produced as actin filaments move past the myosin filaments, causing a sarcomere to contract individually. Actin-myosin cross bridges are made when the thick myosin filament is joined to the many heads on the thinner actin filaments. In essence, a myosin head resembles a cocked spring that flexes and generates a power stroke when it binds to an actin filament.

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what would happen to hemoglobin if the bpg were removed? it would not bind oxygen it would dissociate into monomers its oxygen binding curve would resemble that of myoglobin all of the choices

Answers

If the BPG (2,3-Bisphosphoglycerate) were removed from hemoglobin, it would not bind oxygen (option A)

Only deoxyhemoglobin can be bound by 2,3-bisphosphoglycerate (BPG). As a result, BPG causes the T ⇌ R equilibrium to move to the left, decreasing hemoglobin's affinity for oxygen.

Hemoglobin is bound to by BPG at one location while having its affinity for oxygen reduced at a different location. Myoglobin's affinity for oxygen is increased by BPG, which facilitates oxygen delivery to tissues.

By attaching to the hemoglobin tetramer's core compartment, the 2,3-BPG modifies its shape and moves the oxygen dissociation curve to the right. Ineffective bisphosphoglycerate mutase (BPGM), a red cell enzyme of the early glycolytic pathway that transforms 1,3-BPG to 2,3-BPG, is the cause of the deficiency. Extremely uncommon and often autosomal recessive, BPGM mutations. Demonstrating a lower P50, excluding out hemoglobin mutations, establishing a decreased 2,3-BPG level, and BPGM enzyme activity all serve to validate the diagnosis.

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The human brain can only remember approximately 22 pieces of information at once. Completing checklists gives people a sense of accomplishment. Checklists prompt providers to remember and appreciate the importance of tasks. None of the above; checklists should not typically be used because they insult the intelligence of providers and staff.

Answers

None of the above. Checklists should not typically be used because they can create a false sense of security and may lead to complacency in providers and staff. Additionally, relying on checklists can lead to an overemphasis on completing tasks, rather than using critical thinking and problem-solving skills. It is important to remember that checklists are a tool to help ensure that tasks are completed, but they should not replace the need for providers and staff to think critically and use their own judgement.

darwin helped save boats which would have been stranded. for this, captain fitzroy honored him by naming what geologic features after him?

Answers

Abstract. Captain of HMS Beagle and second governor of New Zealand Robert FitzRoy has two contradicting reputations among current scholars.

HMS Beagle's skipper at the time was Robert FitzRoy. From 1831 until 1836, the two men lived in close quarters, as evidenced by the letters they exchanged while Darwin left the ship to investigate the countries visited during the Beagle's round-the-world trip.

Because the ship's erratic captain, Robert FitzRoy, didn't like Darwin's nose, Charles Darwin almost didn't sail on the now-famous Beagle trip, which shaped his theory of evolution by natural selection.

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What will happen if a cell is placed in salty or sugar water?

Answers

Explanation:

The cells will shrink if placed in a solution of sugar or salt in water due to osmosis. When an animal cell and plant cell will be kept in a solution of sugar or salt in water, the cell will undergo the process of osmosis.

Which two processes lead directly to the production of large amounts of ATP
by the enzyme ATP synthase?
A. Glycolysis
B. Fermentation
C. The electron transport chain
4
D. The Krebs cycle
SUBMIT

Answers

C. The electron transport chain and D. The Krebs cycle lead directly to the production of large amounts of ATP by the enzyme ATP synthase.

The electron transport chain is the final stage of cellular respiration, which occurs in the mitochondria. It involves the transfer of electrons from electron carriers to oxygen, which creates a proton gradient that drives the production of ATP by ATP synthase.

The Krebs cycle, also known as the citric acid cycle, is a series of chemical reactions that occur in the mitochondria and is responsible for the oxidation of acetyl-CoA to CO2. This process generates NADH and FADH2 which are used to produce ATP during the electron transport chain.  

ATP (Adenosine triphosphate) is a molecule that stores and transfers energy within cells. It is often referred to as the "energy currency" of the cell. ATP is composed of an adenine molecule, a ribose sugar, and three phosphate groups. The bond between the second and third phosphate group is particularly high-energy, and when this bond is broken, energy is released that can be used to power various cellular processes.

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A won builds a hydroelectric dam, separating a population of fish. Years later the dam is demolished, allowing the fish to interact, but they can no longer mate together. What has occurred?
(Just one paragraph)

Answers

If a hydroelectric dam separates a population of fish, and years later the dam is demolished, allowing the fish to interact, but they can no longer mate together, then the process that has occurred here is called speciation (allopatric speciation).

What is the evolutionary process of allopatric speciation?

The evolutionary process of allopatric speciation refers to the emergence of reproductive isolation barriers and further divergence that lead to the generation of two or more species.

Therefore, with this data, we can see that the evolutionary process of allopatric speciation is due to the restrictions in gene flow.

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lichens are symbiotic relationships between ngi and algae or cyanobacteria. the type of lichen that sends to be more prostate seemingly hugging the surface it is on is called?

Answers

Lichens are commonly recognized as a symbiotic association of a fungus and a chlorophyll containing partner, either green algae or cyanobacteria, or both.

What is the symbiotic association in lichens?Lichens are the symbiotic association linking algae and fungi. The algae benefit their fungal partner by producing organic food compounds through photosynthesis. In return, the fungal partner benefits the algae or cyanobacteria by protecting them and gathering moisture and nutrients from the environmentSymbiosis in lichens is the mutually helpful symbiotic relationship of green algae and/or blue-green algae (cyanobacteria) living among filaments of a fungus, forming lichen.Lichens are commonly recognized as a symbiotic association of a fungus and a chlorophyll containing partner, either green algae or cyanobacteria, or both. The fungus provides a suitable habitat for the partner, which provides photosynthetically fixed carbon as energy source for the system

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Rank these events in the order in which they occur in the heart, beginning with the P wave.

Rank from earliest to latest. To rank items as equivalent, overlap them.​
P wave, atrial contraction, QRS complex, ventricular contraction, t wave, ventricular relaxation

Answers

The event that occur in the heart, began with P wave, atrial contraction, QRS complex, ventricular contraction, t wave, ventricular relaxation.

P wave, atrial contraction, QRS complex, ventricular contraction, t wave, and ventricular relaxation were the initial heart events.

The atria and ventricles are first relaxed (diastole). Atria depolarization, represented by the P wave, is followed by atrial contraction (systole). The atria relax after atrial systole has continued till the QRS complex. The ventricular depolarization represented by the QRS complex is followed by ventricular contraction. The onset of ventricular relaxation is signaled by the T wave, which symbolizes the repolarization of the ventricles.

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in the biosynthesis of fatty acids, the acyl carrier protein repeatedly sweeps over a series of enzymes to elongate the fatty acid chain. if the acp started with no fatty acid attached, after 5 repeats of the synthesis cycle, how long will be the newly synthesized fatty acid chain?

Answers

In the biosynthesis of fatty acids, the acyl carrier protein repeatedly sweeps over a series of enzymes to elongate the fatty acid chain. if the acp started with no fatty acid attached, after 5 repeats of the synthesis cycle, the newly synthesized fatty acid chain will be single cycle of fatty acid biosynthesis: Acetyl-A.

Enzyme-containing proteins operate as biological catalysts and hasten chemical processes. Enzymes interact with substrates, and the enzyme converts the substrates into products, which are different molecules. The majority of cellular metabolic processes cannot occur at rates fast enough to support life without enzyme catalysis. Each step in the catalysis of metabolic processes requires the presence of an enzyme. Enzymeology, pseudoenzyme analysis, and the study of enzymes all agree that some enzymes have developed without the ability to carry out biological catalysis. This is frequently reflected in their peculiar "pseudocatalytic" properties and amino acid patterns.

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How do Burmese pythons affect marsh rabbits? Explain. FIRST PERSON WHO ANSWERS GETS BRAINLIEST

Answers

Answer:

As it got hot and wet, predation pressure from pythons increased the population of marsh rabbits, and they were gone by July.” Higher water levels which allow pythons to swim long distances when searching for food and the fact that pythons feed more frequently when it's hot, are possible reasons for this correlation

A _____________________ is any characteristic in a living organism that is inherited from its parent or parents though the reproduction process.

Answers

Answer:

A _________Inheirited____________ is any characteristic in a living organism that is inherited from its parent or parents though the reproduction process.

Explanation:

A trait is any characteristic in a living organism that is inherited from its parent or parents though the reproduction process.

a third-degree burn may not hurt due to scorched nerve endings and will usually appear white or blackened on the surface. question 16 options: true false

Answers

It is accurate what is said. Due to the burnt nerve endings, a third-degree burn may not sting, but the skin will typically be white or blackened. choices for issue 16.

What is a burned nerve?Certain types of chronic pain may be lessened by a technique called nerve destruction (also known as ablation), which stops the transmission of pain signals. It is a safe operation whereby a little part of nerve tissue is removed or damaged in order to stop the transmission of pain signals and lessen discomfort in that location. Numbness, tingling, sensitivity to touch, as well as shooting pains at the injury site, are all signs of nerve damage brought on by burns. These signs may linger after the wound has healed before going away altogether. Due to irreversible nerve damage, you can also go completely without feeling in that location.

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Compare ATP production in the citric acid cycle to the electron transport chain, or aerobic respiration g

Answers

The citric acid cycle and electron transport chain both produces 24 ATP in total.

The tricarboxylic acid( TCA) cycle, also known as the Krebs or citric acid cycle, is the main source of energy for cells and an important part of aerobic respiration. The cycle harnesses the available chemical energy of acetyl coenzyme A( acetyl CoA) into the reducing power of nicotinamide adenine dinucleotide( NADH).

The electron transport chain is a series of four protein complexes that couple redox responses, creating an electrochemical grade that leads to the creation of ATP in a complete system named oxidative phosphorylation.

In the electron transport chain, electrons are passed from one patch to another, and energy released in these electron transfers is used to form an electrochemical grade. In chemiosmosis, the energy stored in the grade is used to make ATP.

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The bacteria on both the positive and the negative control slides are observed to stain pink. This finding will not affect the rest of the slides in the batch.
Select true or false

Answers

The bacteria are shown to stain pink on both the positive and negative control slides. The remaining slides in the batch will be impacted by this discovery. So, the given statement is false.

Gram staining is the microbiology procedure where the staining method helps to differentiate Gram-positive and Gram-negative organisms. In this procedure, the Gram-positive organism retains the crystal violet and is observed as blue to purple-stained colonies. While the Gram-negative organism will retain the safranin (counter stain) and is observed as pink colonies.

In a quality control measure, the positive control shows positive results. But the negative control does not give any result and is considered as negative. Therefore, in the given situation there might be any error occurred during the staining procedure. Therefore, the statement is false.

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Considering the Mendelian traits tall (D) versus dwarf (d) and violet (W) versus white (w), consider the crosses below and determine the genotypes of the parental plants by analyzing the phenotypes of the offspring. Part A Parental Plants Offspring tall, violet x tall, white 1/2 tall, white 1/2 tall, violet Select all that apply.

Answers

Answer:

The genotypes of the parental plants for the cross tall, violet x tall, white are DdWw for the tall, violet plant, and Ddww for the tall, white plant. The offspring of this cross will be DdWw, Ddww, DdWw, and Ddww, respectively.

Which of the following is a true statement about nucleic acids?

A. DNA carries information for making RNA.
B) Nucleic acids are long-chain macromolecules formed by the end to end polymerisation of nucleotide monomers
C) Nucleic acids of only one type are available in any organism
D) Nucleic acids show secondary structures

Answers

The correct option is B;  Nucleic acids are long-chain macromolecules formed by the end to end polymerization of nucleotide monomers.

Long monomer chains known as nucleotides make up nucleic acids. They act in both secondary and tertiary structures, which are eventually referred to as proteins.

One amino acid, which makes up proteins, is coded for by three nucleotides. A sugar component, a nitrogen base like (A, T, G, C, or U), and a phosphate group are the three parts that make up a nucleotide. The building blocks for making proteins are nucleic acids..

Adenine, guanine, thymine, uracil, and cytosine are the nitrogenous bases. RNA is the only source of uracil. A double helix of DNA is created by the nitrogenous bases joining with one another in the same way as adenine and thymine and guanine and cytosine do.

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The attempt to disprove a hypothesis is accomplished by which of the following tasks? a. proposing a theory b. making initial observations c. No answer text provided. d. conducting experiments

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The attempt to disprove a hypothesis is accomplished by the task of (d) conducting experiments.

A hypothesis is a an idea or an explanation that has no proven significance. Hypothesis is the assumption made on the basis of a few evidences. However these evidences are not strong enough to prove the facts.

Experiment is a series of steps carried out in order to obtain the desired results. Experiments are conducted in order to support or refute some hypothesis. Experiments are usually carried out in controlled surroundings. Experiments can also lead to the discovery or invention of something unknown or new.

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What is pseudostratified ciliated columnar epithelium?

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The form of respiratory epithelium that allows for the filtration and humidification of incoming air is called ciliated pseudostratified columnar epithelium, and it may be found in the linings of the trachea as well as other respiratory tracts.

The pseudostratified columnar epithelium is an epithelial tissue composed of a single layer of epithelial cells that vary in height. Every cell's nucleus is located differently, giving the impression that there are numerous layers of epithelial cells rather than just one.

The internal surface of the lower respiratory tract, which includes the trachea and the bronchi, as well as the upper respiratory tract, which includes nasal passages, both have the pseudostratified columnar epithelium.

Some functions of ciliated pseudostratified columnar epithelium are:

1) The respiratory system introduces air into the body, which enables the foreign particle to do the same. In the respiratory tract, pseudostratified columnar epithelium aids in the protection of the respiratory system. These foreign particles are captured by mucus secretion, which the body then excretes through coughing or sneezing. Additionally, the mucus makes the air more humid for nasal inhalation.

2) Mucus is secreted in the vas deferens by the pseudostratified columnar epithelium to aid sperm motility.

3) The stereo ciliated pseudostratified columnar epithelium aids in the absorption of surplus mucus to help the sperm concentrate before ejaculation.

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iyanla is concerned that the bacteria from her ear infection may pass to her baby. she does not need to worry because:

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Iyanla is worried that her ear infection's bacteria would get on her unborn child. She shouldn't be concerned since: Bacteria are huge molecules and won't get to the foetus because the placenta will filter them out.

The placenta is what?

The organ that joins a mother's uterus to the umbilical cord and is frequently referred to as the afterbirth, the placenta, is ultimately in charge of supplying a foetus with nourishment and oxygen.

What are the varieties and purposes of the placenta?

An infant growing in this framework receives oxygen and nourishment. Additionally, it removes waste from the baby's blood. The baby's umbilical cord is created when the placenta joins to the uterine wall. It also creates a number of hormones connected to pregnancy,

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Choose possible alignments of chromatids as migration begins during early anaphase. Select all that apply.

Answers

the possible alignments of chromatids as migration begins during early anaphase are A, B and C from the option. the picture depicts the cell division phases.

A chromatid is one of the two identical halves of a chromosome that has been replicated for cell division. The two "sister" chromatids are linked at the centromere, a constricted region of the chromosome. Spindle fibers attach to the centromere and pull the sister chromatids to opposite sides of the cell during cell division. The cell divides soon after, producing daughter cells with identical DNA. Cell replication is essential for growth and for replacing damaged cells that cannot be repaired. The cells that are present when you get a cut on your skin and the cut heals are a good example of this.

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The existence of "magnetic stripes" traced in the oceanic crust
reflects

Answers

The existence of magnetic stripes traced in the oceanic crust reflect the creation and spreading of oceanic crust along the mid-oceanic ridges.

What do you mean by oceanic crust?

Oceanic crust is the uppermost layer of the oceanic portion of the tectonic plates. It is composed of the upper oceanic crust, with pillow lavas and a complex, and the lower oceanic crust.

The oceanic crust is thin, relatively young and uncomplicated compared to the continental crust, and chemically magnesium-rich compared to continental material. The oceanic crust is the product of partial melting of the mantle at the mid-ocean ridges.

Oceanic Crust Oceanic crust, extending 5-10 kilometers (3-6 kilometers) beneath the ocean floor, is mostly composed of different types of basalts. Geologists often refer to the rocks of the oceanic crust as “sima.” Sima stands for silicate and magnesium.

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the acids in bile salts have both lipid-soluble (hydrophobic) and water-soluble (hydrophilic) surfaces. how is such an organization beneficial for the role of bile salts in digestion?

Answers

Travels through the biliary tract and into the small intestine, bile is a complex fluid made up of water, electrolytes, and variety of chemical molecules, including as bile acids, cholesterol, phospholipids &bilirubin.

What roles do each of the small intestine's three components play?

Proteins and carbs are digested in the jejunum and duodenum, respectively, in terms of absorption. Most fats are absorbed via the jejunum as well. Vitamin B12 absorption, bile salt absorption, and all other digestive products not absorbed in the duodenum and jejunum are also functions of the ileum.

Can one survive without their small intestine?

A portion of the small bowel may be surgically removed in some people. Several reasons exist for doing these: By reducing the amount of calories taken by the small intestine, a malabsorptive bariatric procedure like gastric bypass can treat morbid obesity.

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Which of the following organisms would lose the most water by osmosis across its gills?
a. Marine bony fish
b. Shark
c. Freshwater fish
d. Freshwater invertebrate

Answers

a. Marine bony fish of the following organisms would lose the most water by osmosis across its gills

What role do gills play in active transport?

In a saline environment, they employ active transport to eliminate salt from the gills and maintain the saltwater balance. Freshwater fish have the reverse process; their bodies are hypertonic (greater in salt content) in comparison to the surrounding water.

The gill is the location of independent active salt and chloride intake in fresh water. Na+ uptake is linked to H+ or NH4+ excretion, while Cl- uptake is linked to HCO3- excretion. Thiocyanate inhibits the chloride pump whereas amiloride hinders salt transport.

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the hacek group includes all of the following, except a. clostridium difficile. b. haemophilus spp. c. aggregatibacter actinomycetemcomitans. d. kingella spp.

Answers

The hacek group includes all of the following, except a. Clostridium difficile.

Hacek is a group of organisms belonging to a heterogeneous group of gram-negative rod bacteria that can infect heart valves, which are usually found in the respiratory tract of the human mouth. These organisms will enter through the blood and then attach to the heart valves and can cause fatal consequences. Examples of organisms that include hacek are Haemophilus spp, actinomycetemcomitans aggregatibacter, and Kingella spp.

Clostridium difficile belongs to a group of gram-positive rod bacteria that can cause diarrhea and intestinal inflammation. Gram-positive rods are bacteria that will retain a purple color when washed with alcohol. This type of bacteria has a thick peptidoglycan layer and its cell wall is able to absorb violet color

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A student wants to investigate the role of stolons in buffalo grass reproduction. The
student performs the following steps in an investigation.
Buffalo Grass Investigation Steps
• Plant buffalo grass in two plots of land.
.
Care for buffalo grass until it spreads over a large area in both plots.
• Separate the buffalo grass by cutting the stolons between plants.
.
Which result would provide the best evidence that stolons help the plant reproduce?
(A) The number of plants decreased.
(B) The soil around the plants becomes dry.
c) The separated plants continue to grow.
D) The separated plants' leaves change color.

Answers

The seperated plants will continue to grow this will result in providing the best evidence that stolon help the plant reproduce.

what is stolon defined by ?

Stolons, also known as runners in biology, are horizontal connections between organisms (from Latin stol, genitive stolnis - "branch"). They might be part of the organism or its skeleton; animal stolons are often external skeletons.

Stolons are stems that grow at the soil's surface or slightly below ground and develop adventitious roots and new plants from the nodes. Stolons are also known as runners. Rhizomes, on the other hand, are root-like stems that can develop horizontally at the soil surface or in different directions underneath. Be a result, not all horizontal stems are referred to as stolons. Stoloniferous plants are those that have stolons.

A stolon is a plant multiplication technique that consists of a complex of individuals established by a mother plant and all of its clones.

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