how does the masticatory-functional hypothesis explain the observed craniofacial changes in conjunction with the shift to agriculture? a. the grit in agricultural foods resulted in higher rates of tooth wear, and the craniofacial bones had to compensate. b. agriculture caused populations to move more, and new populations with different-shaped heads moved into different areas. c. as individuals consumed softer foods, this reduced the size of the chewing muscles, which led to changes in the underlying bone. d. consumption of agricultural foods caused brain size to increase, which led to various craniofacial changes.

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Answer 1

the masticatory-functional hypothesis explain the observed craniofacial changes in conjunction with the shift to agriculture

C. as individuals consumed softer foods, this reduced the size of the chewing muscles, which led to changes in the underlying bone.

According to the masticatory-functional theory, the reduced strain on the chewing muscles caused a change in the shape of the skull. Two phenomena were brought on by the widespread practice of agriculture: a deterioration in the standard of nutrition and an upsurge in infectious diseases.The term "craniofacial" in medicine refers to the facial and skull bones. Birth malformations affecting the face or head are known as craniofacial abnormalities. Some congenital abnormalities, such cleft lip and palate, are among the most prevalent. Some are quite uncommon.

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Related Questions

Why do so many eukaryotic pathogens cause highly refractory and long-term chronic infections that are difficult to treat in contrast with prokaryotic pathogens?

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Globally, eukaryotic microbial pathogens play a significant role in disease and mortality.

Pharmacological resistance has challenged these therapeutic efforts, despite the fact that a large portion of their impact can be reduced by drug therapy, similar to how it is done with prokaryotic germs. Here, we talk about the difficulties brought on by eukaryotic microbial pathogens and how they compare to or diverge from the difficulties brought on by prokaryotic antibiotic resistance.

The treatments employed for a number of significant eukaryotic bacteria are then outlined in detail, along with the mechanisms that have developed to counteract these treatments.

There are significant hazards to global health, which are especially apparent in developing countries, due to the rapid emergence of resistance and the constrained pipeline of new medication therapies.

However, we go into detail on how combining modern technology with biological knowledge, epidemiology, and evolutionary research might help maintain current treatments, foresee the establishment of resistance, or enhance the application of new treatments.

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notch is a receptor protein displayed on the surface of certain cells in developing fruit fly embryos. notch’s ligand is a membrane-bound protein called delta that is displayed on the surface of adjacent cells. when notch is activated by its ligand, the intracellular tail of the notch protein becomes separated from the rest of the protein. this allows the intracellular tail to move to the cell’s nucleus and alter the expression of specific genes.

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Delta's role in regulating cell communication through the Notch signaling pathway is that Delta restricts cell communication to short distances within a developing embryo.

What is cell communication?

Chemical signals are typically used by cells to communicate. These chemical signals, which are proteins or other molecules made by the sending cell and released into the extracellular space, are frequently secreted by the cell. They can then travel to nearby cells by floating there, much like messages in a bottle.

During the development of fruit fly embryos, the receptor protein notch is visible on the surface of some cells. The protein delta, which is membrane-bound and expressed on the surface of neighboring cells, is the ligand for the notch. The intracellular tail of the notch protein separates from the rest of the protein when notch is activated by its ligand. Consequently, the intracellular tail can move to the cell's nucleus and change the way some genes are expressed.

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Explain the theory of plate tectonics and how they have changed Earth’s surface over time. Include the role of plate tectonics in the creation of landforms.

-Please include in your response:
- Identify the evidence for plate movement.
- Explain the different types of plate boundaries and what happens at each plate boundary in the creation of landforms over time.

Answers

Answer:

Plate tectonics is the theory that Earth's outer layer is composed of a number of large, rigid plates that move relative to one another. The movement of these plates is responsible for the creation of landforms and the shaping of Earth's surface over time.

There is a lot of evidence for the movement of these plates. For example, the distribution of earthquakes and volcanoes around the world is consistent with the movement of plates. In addition, the way that the rocks on the Earth's surface are arranged and the way that they have been deformed over time also provide evidence for the movement of plates.

There are three main types of plate boundaries: convergent boundaries, where two plates are moving toward each other; divergent boundaries, where two plates are moving away from each other; and transform boundaries, where two plates are sliding past each other.

At a convergent boundary, one plate will usually be pushed beneath the other, a process known as subduction. This can lead to the creation of mountain ranges, as well as the formation of volcanoes.

At a divergent boundary, the plates are moving away from each other, which can create gaps in the Earth's crust. This can result in the formation of new crust, as well as the creation of features such as rift valleys and mid-ocean ridges.

At a transform boundary, the plates are moving past each other, which can cause earthquakes and the formation of faults. This type of boundary is often associated with the creation of strike-slip faults, where the ground on either side of the fault is moving in opposite directions.

Overall, the theory of plate tectonics helps us to understand how the Earth's surface has changed over time and how landforms are created. The movement of the plates is a slow process, but it is ultimately responsible for the shaping of Earth's surface and the creation of the landforms that we see today.

Explanation:

what difference, if any, would you expect in the rate of cellular respiration in the germinating peas in vial

Answers

The nongerminating peas will show a smaller change in gas volume compared to the germinating peas due to cellular respiration. This is the correct answer.

The non-germinating peas do not require much ATP synthesis since, in addition to the germinating peas, they are not germinating. As a result, when compared to peas that are germinating, non-germinating peas have a substantially lower rate of respiration.

Compared to the peas that were germination, the non-germinating peas used much less oxygen. This is due to the fact that while both germinating and non-germinating peas are alive, the latter require a greater amount of oxygen to be used in order for the seed to keep growing and surviving.

Complete question:

What difference, if any, would you expect in the rate of cellular respiration in the germinating peas in vial #1 compared to the nongerminating peas in vial #2?

1.The nongerminating and germinating peas will show a similar rate of respiration, as both are alive.

2.The nongerminating peas will show a smaller change in gas volume compared to the germinating peas due to cellular respiration.

3.The germinating peas will show a smaller change in gas volume compared to the nongerminating peas due to production of O2.

4.The nongerminating peas serve as a second control and should show no volume change due to cellular respiration.

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the process green plants use to turn water and carbon dioxide into food using energy from sunlight.

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Answer: photosynthesis

if you are considered prehypertensive, what are some steps you can take to lower your blood pressure?

Answers

Answer:

67%

Explanation:

s this a valid statement? if flipper is a dolphin, then flipper is a mammal. flipper is a dolphin. so flipper is a mammal.

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Yes it is a valid statement

Polymers are made of small units called

Answers

the answer is monomers

Answer: Monomers

Explanation: Can I have brainliest?

fats that cannot be transported by the bloodstream are absorbed by the that are located in the villi that line the small intestine.

Answers

Lacteals. One of the lymphatic vessels, the lacteal, which supplies the small intestine with nutrients, becomes white following a meal as a result of the tiny fat globules in its lymph (see chyle).

The Italian physician and professor of anatomy and surgery Gaspare Aselli, who first discovered the lacteals in the late 16th and early 17th centuries, called them venae albae et lacteae ("white and milky fat veins"). The lacteal capillaries, which are the tiniest of the lacteals and are each a tiny capillary running along the middle of a villus, or finger-like extension, in the mucous membrane lining the small intestine, are the smallest lacteals. The submucosa, a connective tissue layer right below the mucous membrane, is where the lacteal capillaries empty into lacteals.

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Select the correct answer from each drop down menu.

Specialized cells such as white blood cells interact with foreign particles in the body. A particular cell belonging to the category recognizes bacteria and forms a covering around it, pinching off the vacuole. The cell then performs 1.______ . The foreign particles recognized by the particular type of cells differ from one’s recognized by another type of white blood cell. The situation indicates that the receptors are 2._______.
Options 1. Endocytosis
Exocytosis
Diffusion
Option 2. The same for all the cells, specific for the cells, never present on cells

Answers

Endocytosis and Receptors are particular to the cells are the right selections .The immune system's white blood cells have specific functions.

Why do white blood cells in the immune system have certain roles to play?The immune system's white blood cells have specific functions. They are essential in keeping the body safe from outside threats like bacteria. This is accomplished by them recognizing the bacteria and forming a coating around it that pinches off the vacuole. This results in a process known as endocytosis being carried out by the cell ( specifically phogocytosis).White blood cells have very unique receptors that they can bind to. As a result, they can distinguish between different foreign substances. For instance, B-cells create antibodies that attach to particular antigens (foreign proteins) and so trigger a particular immune response. To put it another way, a certain type of white blood cell may distinguish a certain foreign substance. This shows that these cells have specialized receptors.    

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A single point mutation in the gene encoding ras protein allows this protein to stay in an active form for longer periods, even in the absence of signal. therefore, this gene is ______________.

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If a single point mutation in the gene encoding ras protein allows this protein to stay in an active form for longer periods, even in the absence of a signal, then this gene is an oncogene.

What is an oncogene?

An oncogene can be defined as a gene that is able to activate cancer pathways when suffering mutation and or expressed in different cells that it is usually not expressed, which may be due to diverse types of genetic alterations such as in this case a point mutation.

Conversely, a tumor suppressor gene is a gene expressed to suppress cancer pathways by inhibiting cell division during the cell cycle.

Therefore, with this data, we can see that an oncogene is a gene capable of leading to cancer when it is expressed in a defective way such as occurring in presence of a mutation that activates it.

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at the end of which week of the ovarian cycle should implantation occur (assuming there is an embryo)?

Answers

Answer:

first week

Explanation:

it takes 2 to 3 days tk get embryo

calculate the maximum sustainable yield for a population whose carrying capacity (k) is 80,000 and whose per capita rate of growth (r) is 0.2.

Answers

The maximum sustainable yield is 4000 yields/ month.

The entire range of human beings or population in a country or region. : the full of people occupying an area or making up a whole.

There are too many of us to percentage the Earth pretty with different species and with future human generations, Earth is overpopulated.

Solution:

From the questions, we get the following information,

K=80,000        r=0.2      

Therefore, we apply logistic growth equation,

dN/dt= rN[1-N/K]

Where, N is the maximum population size, which equals K/2

therefore N=K/2

=80,000/2

=40,000

Here, we get

dN/dt= rN[1-N/K]

=(0.2)(40,000)[1-(40,000)/80,000]

=8000[1-1/2]

=8000[(2-1)/2]

=8000*1/2                OR                8000*0.5

=4000 yields/ month

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the members of a population survive and successfully reproduce due to the specific phenotypes they posses. this is an example of

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Natural selection is the variation in individual survival and procreation brought on by phenotypic variances. The development of a population's heritable features across generations is a fundamental process of evolution.

Natural selection can boost the frequency of the beneficial alleles from one generation to the next, or create microevolution, when a phenotype generated by certain alleles helps organisms survive and reproduce better than their contemporaries. Natural selection affects the entire organism; the individual is the unit of selection. NS is unable to affect specific alleles (genes). The phenotype, not the genotype, is the unit of natural selection. However, it has the potential to alter genotype. Because an organism's phenotype is what interacts with its environment, natural selection focuses on it. The physical characteristics and observable attributes that enable an organism to survive in its environment make up the phenotype. By expressing the proteins that result in the visible features, the genotype regulates the phenotype.

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homo habilis displays a great deal of variability some scientists think that larger homo habilis fossils with wider faces and bigger teeth should be classified in their own species called

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This cranium has a wider, flatter face, a larger brain, and larger teeth than other Homo habilis fossils, prompting some scientists to name it Homo rudolfensis.

The word habilis is based on a Latin word meaning 'handy' or 'skilful'. This species is known as "handy man" because stone tools were discovered near its fossil remains, and it is assumed that this species developed the ability to shape stone into tools. The following year, parts of a boy's skeleton were discovered at the site, and additional fossils from other people were discovered. Their brain size, hand and foot features, and evidence that they may have used stone tools all suggested that a new type of human ancestor had been discovered.

Their brain size, hand and foot features, and evidence that they may have utilised stone tools all suggested that a new type of human ancestor had been discovered.  They were officially recognised as new species in 1964, but their inclusion in the human genus Homo was contentious. Additional fossils, including the 1986 discovery of a partial skeleton, revealed that this species was more ape-like than previously thought.

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A hydrophilic peptide hormone is produced in the anterior pituitary gland located at the base of the brain. The hormone targets specific cells in many parts of the body. Which of the following best explains a possible mechanism that would enable the hormone to efficiently reach all of the target cells in the body? * (1 Point) The hormone moves through cytoplasmic connections between cells until it has reached all cells with the correct intracellular binding sites. The hormone interacts with the nerves at the base of the brain and directs signals to the target cells through the nervous system. The hormone is released into the bloodstream where it can be transported to all cells with the correct receptors. The hormone diffuses into target cells adjacent to the anterior pituitary gland where the hormone is degraded. Describe 1 method/way in which you can make a fruit ripen quicker (think of the video on ripening experiment) * (2 points) Enter your answer

Answers

The possible mechanism that would enable the hormone to efficiently reach all of the target cells in the body will be: The hormone is released into the bloodstream where it can be transported to all cells with the correct receptors.

Hormones are called as the chemical messengers. They are termed messengers because they travel to their site of action and initiate the function they are responsible for. Hormones regulate various functions of the body.

Receptors are the protein compounds that function to accept a molecule called ligand (specific to them) and begin the process of signaling in order to accomplish the function they are supposed to perform.

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Ben uses a reusable storage bag to carry snacks to school. Debbie uses a similar bag to store pencils so her backpack doesn’t get dirty. Which cell organelle performs a similar function?

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The cell membrane serves a similar purpose as an organelle of the cell.

A cell membrane is what?

The cytoplasm is housed inside an organelle called a cell membrane, which also serves to divide the inside environment from the exterior.

This acts as a storage space for various proteins and lipids that are important to the cell's metabolic processes as well as protecting the cell from germs, bacteria, and other hazardous things.

The most suitable organelle for storage and protection is the cell membrane.

Therefore, The cell membrane serves a similar purpose as an organelle of the cell.

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the type of disease cycle in which a pathogen is able to repeatedly spread from plant to plant during the season through the production of secondary inoculum is called

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The type of disease cycle in which a pathogen is able to repeatedly spread from plant to plant during the season through the production of secondary inoculum is called Polycyclic.

"Anything that inhibits a plant from performing to its maximum potential" is the definition of a plant disease. The scope of this term covers both biotic and abiotic plant diseases. Abiotic diseases, often known as non-infectious diseases, are brought on by environmental factors rather than biological organisms. Although they cannot transfer from one plant to another, they are quite prevalent and need to be taken into account when determining the health of any plant. Nutritional inadequacies, soil compaction, salt damage, ice, and sunburn are a few examples of abiotic disorders.

Infectious or biotic diseases: These conditions are brought on by living things. When they infect plants, they are referred to as plant pathogens. We will solely talk about plant disease pathogens when addressing plant pathology. Pathogens can infect and spread from plant to plant.

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The type of escherichia coli that produces a verotoxin similar to the one produced by shigella dysenteriae is ________ e. coli.

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The type of escherichia coli that produces a verotoxin similar to the one produced by shigella dysenteriae is enterohemorrhagic e. coli.

a community isgroup of answer choicespopulations of organisms and the abiotic factors in their environmentpetition for food between individuals in a population.multiple organisms of the same species living in a specific area.all the biotic and abiotic factors in an environment.populations of multiple species interacting with one another in a specific area.

Answers

Populations of organisms and the abiotic factors in their environment.

An ecosystem consists of all biotic and abiotic factors that affect its community. Ecosystem ecologists often focus on energy flow and nutrient recycling. An ecological community is a group of actually or potentially interacting species living in the same place.

Communities are linked by networks of shared environments and the influence of each species on others. An ecosystem is a geographical area where plants animals other living things weather and landscape work together to form a bubble of life. An ecosystem contains living or living parts and abiotic factors or non-living parts.

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suppose a mutation happened within an intron of a gene. could this affect the gene's expression? why or why not?

Answers

An intron mutation would have no impact on a protein's amino acid sequence unless it happened inside the 5′, 3′, or branch point splices, which are eliminated before translation.

Would the expression of a gene be impacted by an intron mutation?

A point mutation or even a sizable deletion in the intron would probably not appreciably lower the expression of the gene unless splicing was affected since the intron regions that affect mRNA accumulation are redundant and scattered.

What takes place if an intron is altered?

a genetic change in the DNA sequence that takes place at the exon-intron boundary (splice site).

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you are trying to identify an organism. this organism contains no muscle tissue. it is not diploblastic. it must be a

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You are trying to identify an organism. It is an animal, but it does not have nerve or muscle tissue. It is neither diploblastic nor triploblastic. It is probably a sponge.

Ectoderm and endoderm are the two principal germ layers in a blastula that has diploblasty. Cnidaria and ctenophora are examples of diploblastic species, which arise from such blastulae and were once included in the phylum Coelenterata but were later split off due to greater understanding of their differences.

They can grow genuine tissue because of the endoderm. The gut tissue and related glands are included in this. On the other hand, the ectoderm develops into the epidermis, the nervous system, and, if any nephridia are present.

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a scientist discovers a new species of fossil tetrapod. the fossil consists only of a few scattered hard parts. which trait would be most likely to allow the scientist to identify the unknown as a mammal?

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The trait which most likely  allow the scientist to identify the unknown as a mammal would be differentiated teeth.

Fossil, remnant, impression, or hint of an animal or plant of a beyond geologic age that has been preserved in Earth’s crust. The complex of facts recorded in fossils globally known as the fossil file—is the primary source of information about the history of the existence of the world.

Only a small fraction of historic organisms are preserved as fossils, and generally, best organisms that have a stable and resistant skeleton are conveniently preserved. most major businesses of invertebrate animals have a calcareous skeleton or shell (e.g., corals, mollusks, brachiopods, bryozoans). other kinds have shells of calcium phosphate (which additionally takes place in the bones of vertebrates), or silicon dioxide. A shell or bone that is buried fast after deposition may additionally preserve these natural tissues, though they become petrified (transformed to a stony substance) over the years.

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Organic compounds ____. A. Cannot be made in the laboratory c. All contain hydrogen b. Occur in living organisms d. All contain amino acids.

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B. occur in living organisms. The first organic substance to be synthesized in a lab was urea, which was created accidentally.

What components make up the four organic compounds?

Carbohydrates, lipids, proteins, and nucleotides are organic molecules are necessary for human body function. Because they have both carbon and hydrogen, these substances are referred to as organic.

Can hydrogen not be present in organic compounds?

This indicates that the presence of carbon and hydrogen atoms is a property shared by all organic molecules. organic molecules may also contain other elements such as oxygen, nitrogen, and phosphorus.

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Which of the following are true about eukaryotic cells? There are 5 correct answers.

Question 16 options:

first cells, prefix meaning "before," thought to be early cells


have organelles and nucleus


large and complex


have ribosomes


have a cell membrane


no nucleus or membrane bound organelles


small and simple


have DNA

Answers

Eukaryotic cells have organelles and nucleus, they are large and complex, have ribosomes, have a cell membrane and have DNA in their nucleus which is membrane- bound.

Organelles of a cell are what?

An organelle found inside a certain type of cell is a specialised unit that serves a particular purpose. There are many different cell organelles, some of which are present in all types of cells, such as cell membranes, nuclei, and cytoplasm. But other organelles, like plastids and cell walls in plant cells, are unique to a certain kind of cell.

How do ribosomes work?

All cells contain ribosomes, which are macromolecular organisms responsible for the biological synthesis of proteins (mRNA translation). To create polypeptide chains, ribosomes combine amino acids according to the codons found on messenger RNA (mRNA) molecules.

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original DNA: TACTTTAATCCCAAATTTACT

DNA: TACTTTAATCCCAAGTTTACT
mRNA: ?
amino acid: ?
what type of mutation is this: ?​

Answers

Answer:

substitution mutation

Explanation:

The original DNA sequence is: TACTTTAATCCCAAATTTACT

The mutated DNA sequence is: TACTTTAATCCCAAGTTTACT

The mRNA transcribed from the mutated DNA sequence is: AUGAAAUUAGGGUUAAUUAGA

The amino acid sequence encoded by the mRNA is: Met-Lys-Ser-Trp-Lys-Lys-Ser

This is an example of a substitution mutation, in which a single nucleotide in the DNA sequence is changed. In this case, the original DNA sequence contains the nucleotide A at position 13, while the mutated sequence contains the nucleotide G at the same position. This change causes a different mRNA sequence to be transcribed and a different amino acid to be encoded. Substitution mutations can have a variety of effects on gene function, depending on the location and nature of the mutation. Some substitution mutations may have no effect, while others may cause the protein encoded by the gene to function improperly or not at all.

consider simple diffusion (sd), facilitated diffusion (fd) and active transport (at) across a membrane. which process requires a concentration gradient of the transported molecule%?)

Answers

Considering simple diffusion FD and AT process requires a concentration gradient of the transported molecule%

Facilitated diffusion is the diffusion of solutes through delivery proteins in the plasma membrane. Facilitated diffusion is a kind of passive delivery.

Even though facilitated diffusion involves delivery proteins, it's far still passive transport because the solute is transferring down the concentration gradient.

In facilitated delivery, membrane proteins assist the diffusion of materials thru the cellular membrane. The protein binds the molecule being transported at the floor of the membrane, then passes it to indoors proteins that usually shape a channel or pore in the membrane.

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all of the following are consequences of population growth except: group of answer choices natural resources being depleted. higher carrying capacity of the earth. decreased availability of clean water. animal habitats being destroyed.

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All of the following are consequences of population growth except higher carrying capacity of the earth

Population growth will unavoidably contribute to pressures that worsen climate change by increasing deforestation, reducing biodiversity, and increasing pollution and emissions. Increases in a population's or a dispersed group's membership are referred to as population growth. The actual annual increase in the human population is about 83 million, or 1.1%.

The need for food, water, housing, energy, healthcare, transportation, and other resources will rise as the population grows. And all that consumption increases the likelihood of major catastrophes like pandemics, increases conflicts, and degrades the environment.

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long-term potentiation enhances the release of which neurotransmitter into the synaptic cleft, resulting in enhanced learning?

Answers

Long-term potentiation (LTP) typically happens at synapses where the sending neuron releases the neurotransmitter glutamate into the synaptic cleft—the area between the sending and receiving neurons.

Over the past 40 years, much research on long-term potentiation (LTP) of excitatory synaptic transmission in the hippocampus has been conducted. However, the precise location and manner of LTP expression continue to be debatable matters.

Both pre- and postsynaptic contributions to LTP expression have received a lot of support. Although it is generally accepted that postsynaptic expression mechanisms play a major role in the production of LTP, the evidence for this assertion is susceptible to other explanations.

We quickly discuss some significant contributions to the "locus" controversy and discuss evidence in favor of presynaptic processes playing a major role.

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if you eat a candy bar, sugar enters your digestive system. some of that sugar eventually leaves the body through the urinary system. where is the body's last chance to take the sugar and recirculate it into the bloodstream for use by cells before it is excreted as urine?

Answers

Swallowing sugar, food passes through your oesophagus and into your stomach, where it is diluted by digestive juices in preparation for later passage through the rest of your digestive tract.

Sugar and carbohydrate sugars move quickly through your stomach and start to break down in your small intestine. With the aid of digestive enzymes found in the lining of your small intestine, all types of sugar are converted into the tiniest sugar molecules. Once sugar has broken down into a monosaccharide, or single molecule, it is absorbed via the intestine and turned into glucose in your blood. In order to remove blood glucose from your body and distribute it to various cells throughout your body for use as fuel, your pancreas secretes the hormone insulin.

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