Environmental factors typically active genes in a cell by causing the cell to

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Answer 1
Transcribe

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Answer 2

Answer:transcribe specific DNA segments to mRNA for translation

Explanation:


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the bending of a tip link protein leads to depolarization of the hair cell by allowing ions to diffuse across the membrane into the cell. t or f

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False. The bending of a tip link protein leads to the opening of ion channels, allowing ions to flow in and out of the cell, leading to a depolarization of the hair cell.

The Role of Tip Link Proteins in the Transduction of Sound Waves

The depolarization of the hair cell is an important step in the process of transduction of sound waves in the ear. Tip link proteins are essential in this process, as they act as a mechanical transducer, converting mechanical energy into electrical signals. When these proteins are bent, they open ion channels in the cell membrane, allowing ions to enter and leave the cell, resulting in a depolarization of the hair cell. This depolarization triggers a chain of events, ultimately leading to the generation of a neural signal that is sent to the brain. Thus, the tip link protein is an essential element in the process of hearing.

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glucose is not readily available in the diets of most heterotrophs. so, how do organisms combat this to still go through glycolysis for energy? organisms, like humans, will obtain most of their daily calories from food in the forms of carbohydrates, fats, and proteins. the catabolism of these molecules will allow for their monomers to enter glycolysis and the citric acid cycle. what happens in the absence of food? starvation leads to significant weight loss. in fact, people can lose up to 10 pounds per week with no food consumption. this dramatic and life threatening weight loss stems from the fact that these people are unable to receive the nutrients they need from food to go through glycolysis and the subsequent steps of cellular respiration. a) identify the macromolecule being catabolized to power cellular respiration when a person is starving. b) identify the monomers of the macromolecule identified in part (a). connect your answer from part (a) to justify how this leads to dramatic weight loss in people who are starving.

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An organism is referred to as a heterotroph if it consumes other plants or animals for food and energy. Its origins are in the Greek words hetero, which means "other," and trophe, which means "nutrition."

Depending on how they obtain energy and nutrients, organisms can be divided into two broad categories: autotrophs and heterotrophs. Autotrophs are known as producers because they have the ability to make their own nourishment from basic materials and energy. Examples include many kinds of bacteria, plants, and algae. Heterotrophs are referred to as consumers because they devour producers or other consumers. Heterotrophs include animals like dogs and birds as well as people.

Heterotrophs are found at levels two and three of a food chain, which is a collection of organisms that provide food and energy to other living things. Each food chain is composed of three trophic levels, which describe an organism's role in an ecosystem. Autotrophs, which include plants and algae, make up the first trophic level of the food chain. Herbivores—animals that eat plants—dwell on the second level.

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What are the tiny structures in the kidneys where blood is filtered and urine is formed?

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Nephrons in the kidneys where blood is filtered and urine is formed.

What are the functions of nephrons?

Nephron is the functional unit of the kidney, the structure that actually produces urine in the process of removing waste and excess substances from the blood.

The principal task of the nephrons is to balance the plasma to homeostatic set points and excrete potential toxins in the urine. They do this by accomplishing three key functions—filtration, reabsorption, and secretion.

The nephron is the functional unit of the kidney. The glomerulus and convoluted tubules of the nephron are located in the cortex of the kidney, while the collecting ducts are located in the pyramids of the kidney's medulla.

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what is carrying capacity? question 1 options: all limiting factors in the ecosystem. the amount you can carry in your backpack. how much rainfall an ecosystem can manage. the total number of populations in an ecosysems question 2 (2 points)

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The average size of a species' population in a given habitat is referred to as carrying capacity. Environmental elements including enough food, shelter, water and mates are limiting factors for the species' population. If these requirements are not satisfied, the population will decline until the resource levels increase again.

The amount of population that can exist or is tolerated in a given area depends on the carrying capacity of the place. A balance exists between the number of creatures of a particular species that a specific habitat can support over time and the availability of habitat, and this equilibrium is known as biological carrying capacity. Due to low water levels, ships lost an average of 8,000 tons every voyage, or 11% of their carrying capacity. The bridge is utilized annually by about 155,000 cars.

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[100 PTS] Name one controversy that has resulted from the Human Genome Project. Using college level writing, make a logical argument for one side of the controversy, then make a logical argument for the other side.

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Answer:

One controversy that has resulted from the Human Genome Project is the ethics of genetic engineering and whether it should be used to create so-called "designer babies." Proponents of genetic engineering argue that it has the potential to eliminate genetic disorders and diseases, and that it could improve the overall health and well-being of future generations. For example, parents could use genetic engineering to ensure that their children have a lower risk of developing conditions like diabetes or heart disease.

On the other hand, opponents of genetic engineering argue that it could lead to a number of social and ethical problems. For instance, some people worry that genetic engineering could be used to create a society of genetically superior individuals, leading to inequality and discrimination. Additionally, opponents argue that we do not yet fully understand the potential risks and long-term effects of genetic engineering, and that we should therefore proceed with caution. They also raise concerns about the potential misuse of genetic engineering, such as using it to create individuals with enhanced physical or intellectual abilities for military or other nefarious purposes.

In conclusion, while genetic engineering has the potential to bring many benefits, there are also valid concerns about its potential consequences. It is important for society to carefully consider these issues and to proceed with caution.

Explanation:

What are 3 methods of animal identification?

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The three basic techniques for identifying animals are permanent identification microchips, ear tags, and tattooing. In terms of non-permanent identification, tags, paint, and chalk are used.

Due to the fact that tattooing does not detract from the animal's look or value in any way, it is the finest permanent form of identification for registered animals. The optimal time to get a tattoo depends on the animal's species. When cattle are still young calves, tattooing them is easier.

Animal identification using ear tagging is a technique that may be used to track treatments and withdrawals, identify specific animals, maintain stock inventories, and boost record-keeping accuracy.

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Define the terms dominant and recessive

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Answer:

In genetics, dominant and recessive refer to the two different versions, or alleles, of a gene. A dominant allele is one that is always expressed, or "seen," in an organism's physical traits. A recessive allele is one that is only expressed when two copies of the allele are present in an organism. This means that if an organism has one dominant and one recessive allele for a particular trait, the dominant allele will mask the expression of the recessive allele.

Explanation:

Answer:

dominant is the gene that is likely to be present for exmaple brown eyes and blue eyes, brown eyes would be the dominant gene because it's more common while blue eyes would be receive gene because it less likely to get it

many neurons of joints help to inform the brain about the activity of the joint, including pain or position of the joint. these types of neurons are classified as _____________________ neurons.

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Answer: afferent SOMATIC neurons that we call "proprioceptors".

Explanation:

37 A population of blackbirds in Scandinavia has evolved to migrate to warmer climates in the winter. Evolution has occurred in this population through a _[blank]_.

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A population of blackbirds in Scandinavia has evolved to migrate to warmer climates in the winter. Evolution has occurred in this population through a Behavorial adaptation.

What is Behavorial adaptation?

Behavioural adaptations refer to any action a plant or animal makes to thrive in a given environment. Because the term "behave" is present in the name and refers to how we behave, it is simple to recall that behavioural adaptations are about behaviours.

Organisms use behavioural adaptations to help them survive. Bird migration and calls are two examples of behavioural adaptations. Evolution is the cause of adaptation. A species changes over a lengthy period of time through evolution.

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A population of blackbirds in Scandinavia has evolved to migrate to warmer climates in the winter. Evolution has occurred in this population through a Behavorial adaptation.

What is Behavorial adaptation?

Behavioural adaptations refer to any action a plant or animal makes to thrive in a given environment. Because the term "behave" is present in the name and refers to how we behave, it is simple to recall that behavioural adaptations are about behaviours.

Organisms use behavioural adaptations to help them survive. Bird migration and calls are two examples of behavioural adaptations. Evolution is the cause of adaptation. A species changes over a lengthy period of time through evolution.

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What energy does hydrocarbons provide?

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Natural gas, Crude oil, and coal are all examples of hydrocarbons, which are organic compounds made of hydrogen and carbon. The primary source of energy on the planet is the highly flammable hydrocarbon.

Petrol, kerosene, jet fuel, propane, and diesel are only a few of their applications.

Hydrocarbon molecules are transformed into carbon dioxide and water during the combustion event. Each mole of methane (16 g) burns to provide 810 KJ of energy. Bond energies for all categories of fossil fuels may be used to determine combustion energetics.

Because the total energy of the bonds in hydrocarbons is higher than the total energy of the bonds in carbs, the burning of a hydrocarbon will produce more energy than the combustion of an equal quantity of carbohydrates.

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What does light do when it strikes the chlorophyll molecules of photosystems i and ii

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Electrons are activated by light, gaining energy, and moving along an electron transport chain encased in the thylakoid membrane.

What is an Electron transport chain?

An electron transport chain is a collection of protein complexes and other molecules that connect protons (H+ ions) across a membrane with the transfer of electrons from the electron donors to the electron acceptors via redox processes (both reduction and oxidation occur simultaneously). The ETC receives its electrons from NADH and FADH2 through the cooperation of four big multi-subunit enzyme complexes and two mobile electron carriers. The electron transport chain contains  large number of membrane-bound enzymes.

The electron transport chain is an exergonic process that moves electrons. An electrochemical proton gradient generated by the energy from the redox reactions produces adenosine triphosphate as a result (ATP). In aerobic respiration, molecular oxygen serves as the ultimate electron acceptor, stopping the flow of electrons. Sulfate is one of the other electron acceptors employed in anaerobic respiration.

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Which is the best description of a molecule?

A molecule of an element is composed of at least two types of atoms.
A molecule of a compound is composed of only one atom.
A molecule of a compound is composed of at least two atoms.
A molecule of an element is composed of exactly two types of atoms.

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Answer:

A molecule of element is composed of at least two types of atoms.

what would happen if complexes i-iv of the mitochondrial electron transport chain pumped protons in the opposite direction?

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If complexes I-IV of the electron transport chain pump protons in the opposite direction, no ATP will be synthesized.

Electron transport through complexes I, III, and IV is coupled with the transport of protons out of the mitochondrial interior.

In complex IV, two protons per pair of electrons are pumped across the membrane and two protons per pair of electrons combine with O₂ to form H₂O in the matrix. Thus, in each of these three complexes, the equivalent of four protons per electron pair is transported out of the mitochondrial matrix.

This transfer of protons from the matrix to the intermembrane space plays an important role in converting the energy of the electron transport oxidation/reduction reactions into potential energy stored in the proton gradient.

Thus, if complex IV pumps' protons are in the opposite direction no ATP is synthesized

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the prey of one species might also be the predator of another species.; what will happen to an ecosystem that is experiencing a prolonged drought?; what distinguishes rainforests from temperate forests?; which shows the correct order of increasing trophic level, from producer to tertiary consumer?; how does biodiversity affect the stability of an ecosystem?; how does an ecosystem transition from primary succession to secondary succession?; which ecosystems would you expect to have the greatest access to sunlight?; explain why quaternary consumers occupy the top position in the pyramid of energy.

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When an ecosystem experiences a lengthy drought, the available resources are insufficient to maintain the organisms' population, thus they will either move or start to perish. An ecosystem's population will fluctuate depending on the amount of water available.

When there are too many predators and not enough prey, predators starve to death because they are unable to find adequate food. An overabundance of prey and a dearth of predators contribute to the development of disease and the depletion of resources for prey species and other species that live in their ecosystem.

Because they control the numbers of their prey, predators are crucial to ecosystems. In the absence of predators, prey can overpopulate. In addition to causing disease outbreaks that may spread to domesticated animals, this may also cause harm to nearby flora.

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A scientist compares two DNA samples using gel electrophoresis.

Which statement best describes the results if the samples came from the same species?

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A scientist compares two DNA samples using gel electrophoresis: Each lane would contain DNA fragments of different sizes.

What is gel electrophoresis?

A method called gel electrophoresis is used to divide DNA fragments (or other macromolecules, such as RNA and proteins) according to their size and charge. The procedure of electrophoresis involves passing a current across a gel that contains the target molecules.

Gel electrophoresis is a scientific method used to separate DNA, RNA, or protein combinations depending on their molecular sizes.In gel electrophoresis, the molecules that need to be separated are forced through a gel that has tiny holes by an electrical field.

It is possible to determine the quantity and size distribution of DNA fragments in a sample using electrophoresis. By placing a portion of DNA up against a standard "yardstick" made up of DNA fragments of known sizes, it may also establish the absolute size of the DNA fragment.

Thus, the correct statement that best describes the result if the samples came from the same species: Each lane would contain DNA fragments of different sizes.

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Unlike signal transduction in many other sensory receptors, signal transduction in rods?
a. results in hyperpolarization of the sensory cell.
b. does not involve the participation of a G protein.
c. takes place entirely in the plasma membrane.
d. involves a second messenger.

Answers

Option A. Results in hyperpolarization of the sensory cell. In signal transduction in rods, the Rhodesian protein of the rod photoreceptor absorbs light, which leads to a conformational change in the protein.

Signal Transduction in Rod Photoreceptors: Hyperpolarization of the Sensory Cell

Option A. Results in hyperpolarization of the sensory cell.

When the Rhodopsin protein absorbs light, it activates a G-protein called transducin. This then activates an enzyme called phosphodiesterase, which hydrolyses a molecule called cGMP. The decrease in cGMP causes the membrane potential of the rod photoreceptor to become more negative, which is known as hyperpolarization. This hyperpolarization produces an electrical signal that is sent to the brain and enables us to detect light.

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what event made it possible for photons to begin to travel freely through the universe when the universe was about 380,000 years old?

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The universe had expanded and cooled enough for electrons to combine with nuclei to form neutral atoms.

The universe is all of space and time and its contents, along with planets, stars, galaxies, and all other forms of count number and strength. The huge Bang theory is the winning cosmological description of the improvement of the universe.

The Universe is thought to consist of three types of substance: normal remember, 'dark count number', and 'dark energy. Regular remember consists of the atoms that make up stars, planets, human beings, and every different seen object in the Universe.

The actual spatial length of the universe is unknown. but, through measuring the observable universe, the current length of the universe is approximately ninety-five billion mild-years in diameter.

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a researcher is conducting a phylogenetic study of organisms using genea. in several of the species she is examining, she retrieves three different but similar gene sequences using the same primers. what should she conclude from her results?

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She uses the same primers to get three distinct but related gene sequences from several of the species she is researching.  In numerous species, GeneA has undergone gene duplication.

What relationship between two different species is shown by genetic similarities?A scientist is utilizing GeneA to investigate the evolutionary relationships among organisms. She uses the same primers to get three distinct but related gene sequences from several of the species she is researching.  In numerous species, GeneA has undergone gene duplication.These shared genes show that all life on Earth is connected and that it evolved from a common ancestor. Genes that are shared between or within species are referred to as homologous genes, or shared genes.The introduction of genetic material from one species to another by means other than vertical transmission from parent(s) to offspring is known as horizontal gene transfer, or HGT. Due to these transfers, even species that are phylogenetically unrelated might swap genes.

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Meiosis does PMA twice! That means there is a prophase I and a prophase II.

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Meiosis is in metaphase I or II if in the middle of the cell, there are homologous chromosomes or duplicated chromosomes/sister chromatids .

How does meiosis occur?

Meiosis occurs when a single cell divides twice and proceeds to produce cells of four containing a half of the original form of genetic material buried within the cell. These are known as sex cells -sperm in males and eggs in females.

There are homologous chromosomes (metaphase I) or duplicated chromosomes/sister chromatids (metaphase II) in the middle of the cell. These are when meiosis is recognized as being in metaphase.

The complete question is:

Meiosis does PMAT twice! That means there is a prophase I and a prophase 2. There is a metaphase1 and metaphase 2. Etc... How would you know whether it was in metaphase 1 or metaphase 2

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hydrogen, when combined with oxygen in a chemical reaction, forms water. this is an example of which type of chemical reaction?

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hydrogen, when combined with oxygen in a chemical reaction, forms water is an example of synthesis chemical reaction

An example of a synthesis reaction is formation of water (H2O).

This reaction occurs when hydrogen gas (H2) reacts with the oxygen (O2) gas. The resulting product is the liquid water

Synthesis reactions are the chemical reactions in which two or more reactants (i.e. molecules) are combined to form single, larger product/molecule

(A + B ---> AB).

An example of synthesis reaction is combination of potassium (K) and chlorine (Cl) to form potassium chloride

(2K + Cl2 ---> 2KCl).

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The digestive tract is essentially one long tube. the order of the structures, beginning with the mouth, is:

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The order of the structures, beginning with the mouth, is:

mouthpharynx (throat)esophagusstomachsmall intestinelarge intestinerectumanusWhat is the digestive tract?

This refers to the organs that food and liquid materials move through when ingested, absorb and exit the body as excreta(feces). the digestive tract is included in the digestive system. It is also known as the alimentary tract and gastrointestinal tract.

The process of digestion  includes:ingestionpropulsionmechanical or physical digestionchemical digestionabsorptiondefecation

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according to the world resource institute, biodiversity is the variety of the world's organisms, including their genetic diversity. in a world of genetically modified (gm) crops, agriculture is greatly reducing the genetic diversity of the plants on earth. by ignoring genetic diversity, while we develop gm products, we run several risks that include all but one listed here. responses a reduced biodiversity of important food crops.reduced biodiversity of important food crops. b increase production while reducing environmental impacts.increase production while reducing environmental impacts. c the extinction of many native or indigenous crops.the extinction of many native or indigenous crops. d a disease or pest emerging that will wipe out the gmos.

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In a world of genetically modified (GM) crops, agriculture is greatly reducing the genetic diversity of the plants on earth and by ignoring genetic diversity, the risk of the extinction of many native or indigenous crops that are present in Option C is increased.

What are the harmful impacts of the GM plants?

The genetically modified plants are produced for the superior variety, for more nutrition in a particular food, but the result is not a healthy option for humans because the GM plants are not friendly to the gut bacteria, and there are many other harmful impacts too.

Hence, by ignoring genetic diversity, the risk of the extinction of many native or indigenous crops that are present in Option C is increased.

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The purpose of photosynthesis is to take the reactants _, _, and _

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Answer: carbon dioxide, water and light

Explanation:

Word equation for photosynthesis:

Carbon dioxide + water ---(light)---> glucose + oxygen

what do all carbohydrates (both available available carbohydrates and dietary fiber) have in common?

Answers

carbon, hydrogen, and oxygen all carbohydrates (both available carbohydrates and dietary fiber) have in common.

Traditionally, dietary fibers are thought to have little energy value. Since dietary fiber is not available for energy, the term "available carbohydrate" refers to total carbohydrates excluding fiber from dietary sources. Dietary fibers can be simply divided into soluble and insoluble fibers. Fruits, vegetables, whole grains, and legumes are the main sources of fiber. It aids in maintaining regularity, but it also has numerous other health advantages, especially for those who have diabetes or prediabetes. The total of free sugars (glucose, fructose, galactose, sucrose, maltose, lactose, and oligosaccharides) and complex carbohydrates is referred to as available carbohydrates (dextrins, starch, and glycogen). These are digested, absorbed, and, in humans, glucogenic carbohydrates.

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A folded membrane that forms a network of interconnected compartments in the cytoplasm is called: ______

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A folded membrane that forms a network of interconnected compartments in the cytoplasm is called: Endoplasmic Reticulum(ER)

Endoplasmic Reticulum(ER) is a part of the cell. Every eukaryotic cell contains an Endoplasmic Reticulum. It is a continuous membrane within the cytoplasm of the eukaryotic cell.

Endoplasmic Reticulum can be found in animal cells. In animal cells, more than half of the membranous contents of the cell are usually occupied by Endoplasmic Reticulum. It serves various functions such as helping in a process of synthesis, folding modification, and transport of protein. Depending upon certain physical and functional characteristics Endoplasmic Reticulum can be differentiated into two types, which are called Rough Endoplasmic Reticulum and Smooth Endoplasmic Reticulum.

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what happens if there is a defect in only one of the four enzymatic steps of the urea cycle? the defect will not result in any change until multiple enzymes in the urea cycle are affected. the defect will not result in any change unless carbamoyl phosphate synthetase is also affected. the defect results in hyperammonemia, which is an elevated blood nh4 level. the defect results in hyperammonemia, which is an elevated blood nh4 level.

Answers

Defects in any of the enzymatic steps in the urea cycle can cause C. These defects cause hyperammonemia, which is an increase in the blood level of NH4.

The urea cycle is part of the nitrogen cycle, namely the conversion of ammonia to urea. In mammals the urea cycle occurs in the liver, the urea product is excreted by the kidneys.

Enzymatic failure at any stage of the urea cycle can be fatal, because there is no other mechanism in the body that can eliminate the toxic properties of ammonia other than being converted into urea. Enzymatic failure of the urea cycle causes symptoms of hyperammonemia, liver damage, mental disability and death.

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Where do the preganglionic neurons of the sympathetic division originate in the cns?

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The sympathetic nervous system is crucial for maintaining body balance while at rest and for triggering the "fight-or-flight" response in dangerous situations.

The second, third, and fourth segments of the sacral gland in spinal cord are where the preganglionic nerves of the sacral division of the para-sympathetic nervous system, which innervate the tract, originate. These nerves then go through the pelvic nerves to the distal portion of the large intestine.Increased heart rate, mydriasis of the eye, vasoconstriction, bronchodilation, energy release from the liver, and adrenaline release from the suprarenal gland are all symptoms of stress on the body.To enable a sufficient reaction to a threat or trauma, the sympathetic system activates a number of intricate pathways. Faster breathing, elevated heart rate and blood pressure, dilated pupils, diversion of blood flow to vital organs (such as the brain and muscles), and increased sweating are a few of these physical impacts.

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In their analysis of the ______________ genome, svante pääbo and colleagues found similarities in the remains recovered from southern siberia with living people from populations in ________ and china.

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In their analysis of the Denisovan genome, Svante Pääbo and colleagues found similarities in the remains recovered from southern Siberia with living people from populations in Melanesia and China.

What does genome analysis mean?

In this case,  genome analysis makes reference to observing all differences between genomes that may be used to determine the evolutionary relationships between two or more populations or species such as occurs with Denisovan hominids and the Melanesian group.

Therefore, with this data, we can see that genome analysis can be useful to trace the evolutionary origin of a taxonomic group.

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the lack of movement leads to a reduction in muscle strength due to disuse, a sign of reduced muscle size known as atrophy. true

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The claim that a lack of action causes muscles to weaken owing to disuse and atrophy, an indication of less muscle size, is valid.

The term "atrophy" refers to the withering away or shrinkage of a physical component, which ultimately reduces the function of the affected region. Factors connected to diseases, the environment, lifestyle, or genetics can all contribute to atrophy. A visible weakening in one area of the body or one limb seeming smaller than the other are common signs of atrophy. Atrophy can be brought on by a number of ailments, illnesses, or wounds, some of which we shall discuss in this session.

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If a two-year-old child's mother needs 130 grams of carbohydrate a day to fuel her brain, how many grams does the child need?.

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If a two-year-old child's mother needs 130 grams of carbohydrates a day to fuel her brain, the child needs 100 grams of carbohydrates.

By the time a child is four years old, his brain has grown to 100 grams which is just 300 grams less than an adult's brain, as he learns to walk and talk. The child's ongoing interactions with other people and their environment, as well as correct diet and care, all contribute to the brain's gradual development. Since 90% of brain connections are made by age 6, this is the time when the brain needs the most stimulation. A little organ in the brain called the hippocampus controls memory. However, depending on the type of memory, different parts of the brain, including the cortex and deeper regions called the subcortex, are where memories are actually kept.

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