water plays a critical role in human health. five possible body functions of water are listed below. decide which are functions of water and which are not. body functions function of water not a function of water acts to maintain blood volume signals the release of digestive enzymes from the pancreas provides protection for organs and tissues serves as a coenzyme in metabolic reactions carries waste products in the body

Answers

Answer 1

Function of Water: - Acts to maintain blood volume - Provides protection for organs and tissues - Serves as a coenzyme in metabolic reactions - Carries waste products in the body Not a Function of Water: - Signals the release of digestive enzymes from the pancreas.

What are coenzymes?

Coenzymes are non-protein molecules that work with enzymes to help create metabolic reactions. Coenzymes are usually vitamins or minerals and serve as carriers for chemical groups as they move through a reaction. Without coenzymes, enzymes would not be able to catalyze metabolic reactions at the rate necessary for life.

What are digestive enzymes?

Digestive enzymes are proteins that speed up or catalyze the chemical reactions that break down food into small molecules that can be absorbed and used by the body for energy and nutrition. These enzymes are produced in the mouth, stomach, pancreas, and small intestine. Examples of digestive enzymes include amylase, lipase, pepsin, and trypsin.

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Related Questions

what is the most important biological contributions of the porifera?

Answers

Porifera are important for their roles in ecology, medicine, and commercial products, but they are also important for helping scientists come up with theories about who or what the last common ancestor of all animals might have been.

The amount of bacteria and particles that can be removed from water by sponges is up to 95%, and they can also remove 90% of the dissolved organic carbon. This allows other creatures to feed on the suspended particles and dissolved materials. The diet may contain up to 97% dissolved materials. Sponges are multicellular, heterotrophic parazoan organisms that have a distinctive feeding mechanism compared to other animals. They are the most basic animal kinds that exist, with a cell-based organization in which various cells perform various functions but do not form tissues. The phylum of sponges (Porifera) is primarily marine and includes organisms that live from the intertidal to the abyssal (deepest ocean) zone. Around 8500 identified species of sponge exist in the globe, and they play a significant part in many reef coral groups.

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why is it advantageous for cells to use atp for energy rather than simply break down any chemical bonds available?

Answers

It is advantageous for cells to use ATP for energy rather than simply break down any chemical bonds available because ATP is used by bacteria in addition to humans to provide energy and the quick energy turnover of ATP fulfills the body's fluctuating energy needs.

ATP is a highly effective molecular machine. Because of the phosphate groups connected by phosphodiester bonds, ATP makes a great "currency" molecule for energy storage. These electronegative charges that are associated with the bonds act as a repulsive force on the phosphate groups, making the bonds high-energy. A glucose molecule cannot be effectively broken down without significantly altering its structure, making it more difficult to rebuild. As a result, adding and removing those phosphate groups is much more energy efficient than adding and removing elements from a glucose molecule.

 

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Blood type is a good example of
O multiple alleles © a polygenic trait
environmental influence on gene
expression
© a sex-linked trait

Answers

Answer:

Multiple alleles

Explanation:

An example of multiple alleles is the ABO blood group system in humans. Human gene I (isohaemagglutinin) exists in three allelic forms: Iᴬ, Iᴮ, and i. Iᴬ and Iᴮ produce type A and type B whereas i which is a recessive allele does not produce antigen. Therefore, blood type exists as four possible phenotypes: A, B, AB, & O.

What are 3 applications of the human genome project?

Answers

Molecular medicine, waste management, environmental cleanup, biotechnology, energy sources, risk assessment, and DNA forensics are among the various sectors where the human genome project is applied (Identification).

What is human genome project?

The Human Genome Project was a significant, collaborative, international undertaking that resulted in the first-ever mapping and sequencing of the human genome. conducted between 1990 and 2003

Applications of human genome project:

(a) Molecular Medicine: Genetic testing will allow for quick and accurate diagnostic procedures, making it possible to cure a wide range of illnesses. Heart disease, cancer, and diabetes are among the conditions for which vulnerability can be identified.

(b) Biotechnology: By the year 2000, it is anticipated that sales of biotechnology items will be quite high in the United States. Large firms have increased their investment as a result of the HGP's encouragement of innovative biotechnology.

(c) DNA Forensics (Identification): Forensic experts use 13 DNA regions, or loci, that differ from person to person to identify individuals. They then use the information to develop a DNA profile of that person (sometimes called a DNA fingerprint).

Hence, Human genome projects holds various advantages in the biological field

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Which of the following would NOT be a waste product generated by the action of bacteria in the large intestine?

ammonia
uric acid
hydrogen sulfide
indole and skatole

Answers

Uric acid would not be a waste product generated by the action of bacteria in the large intestine.

Uric acid is a waste product found in blood. It's created when the body breaks down chemicals called purines. Uric acid gets dissolves in the blood, passes through the kidneys and leaves the body in urine. Hence they are not waste product from the large intestine.

Kidneys excrete uric acid as a waste product. The kidneys are responsible for excreting two-thirds of the uric acid produced daily out of which  one third is excreted in the stool and urine.

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lysogenic bacteriophages contribute to bacterial virulence because bacteriophages lysogenic bacteriophages contribute to bacterial virulence because bacteriophages produce toxins. carry plasmids. kill human cells. kill the bacteria, causing release of endotoxins. give new gene sequences to the host bacteria.

Answers

Lysogenic bacteriophages contribute to bacterial virulence because it offers the host bacteria new gene sequences. Lysogenic bacteriophages integrate into the genetic material of the host bacteria and grow alongside it.

A lysogenic bacteriophage is a virus that attacks bacterial cells but then fuses with the DNA of the host cell to produce a prophage, a type of non-infectious phage. So, as opposed to being referred to as a virulent bacteriophage, a lysogenic bacteriophage is sometimes called a temperate bacteriophage.

The viral DNA combines with the genetic material of the host cell during the lysogenic cycle after the virus has inserted its DNA within the bacterial cell. The host cell's genetic material and the viral DNA are subsequently duplicated together as the cell divides.

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chronological transitions help the listener understand the time relationship between the first main point and the one that follows.

Answers

Chronological order is also utilized in speech as explaining a technique or demonstrating a way to do something. a method of speech enterprise in which the primary factors follow a directional sample.

Chronological order is the order in which the events occurred, from first to last. that is the very best sample to write and observe. example: It was regarded as a normal day when she was given up that morning, however, Lynda was approximately to embark at the worst. day of her existence.

The rehearsal dinner might be on Friday night time. in a while, we are hoping that many of the visitors will assist to ease the vicinity for the day after today's wedding. explanation: In these sentences, the transition "afterward" highlights a chronology of occasions (first the dinner, then the cleaning).

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How are plants and animals(including us) dependent on each other in terms of respiration & gas exchange?explain using details of how photosynthesis and aerobic cellular respiration work together in order to maintain balance.

Answers

Animals breathe in oxygen and exhale carbon dioxide during the respiration process. In contrast, plants use this carbon dioxide gas to make food and release oxygen into the atmosphere through the process of photosynthesis.

What is photosynthesis?

Green plants and certain other organisms convert light energy into chemical energy through a process called photosynthesis. Light energy is gathered and utilized during photosynthesis in green plants to change water, carbon dioxide, and minerals into oxygen- and energy-rich organic molecules.

What is aerobic cellular respiration?

Food glucose is converted into energy during an aerobic respiration, a biological process that takes place with the presence of oxygen. the following is the chemical formula for aerobic respiration:Oxygen 6(O2) + Carbon 6(CO2) + Water 6 (H2O) + Energy = Glucose (C6H12O6) (ATP)The chemical equation above states that energy is released by breaking glucose molecules with the aid of oxygen gas. As the by-products or final products of the chemical reaction, energy, water molecules, and carbon dioxide gas are released.The breakdown of the glucose molecule releases 2900 kJ of energy, which is then used to create ATP, or adenosine triphosphate, molecules that the body uses for a variety of functions.All multicellular organisms, including animals, plants, and other living things, engage in an aerobic respiration process.The stomata, which are located in the epidermis of a plant's leaves and stem, allow oxygen gas to enter plant cells during the respiration process in plants. All green plants produce their food and release energy through the process of photosynthesis.

Thus, we can conclude that animals and plants cooperate to exchange gases in the atmosphere.

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If a scientist is monitoring cytokinesis in a cell, then the scientist must be witnessing(1 point).

Answers

Anaphase must be being observed if a scientist is keeping track of cytokinesis in a cell.

What precisely is cytokinesis?

Through a procedure known as cytokinesis, a cell physically divides into two daughter cells. In mammalian cells, it takes place concurrently with the nuclear division processes known as mitosis and meiosis.

What does meiosis' anaphase entail?

Homologous chromosomal separation triggers the start of anaphase I. Nucleoli reappearance and reformation of the nuclear envelope. The centrosomes begin to detach, the chromosomes coil up, and the nuclear membrane begins to degrade. Sister chromatids align with the cell's equator, and spindle fibers grow as a result.

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A gene that controls betacarotene production has been successfully inserted into a common food crop. Name the technique used to do this. Give the full name, not the abbreviation.

Answers

Answer:

The technique that is used in inserting a gene into a crop is genetic modification.

What is genetic modified crop?

A genetically modified organism (GMO) is a living organism whose DNA has been altered using genetic engineering techniques.

Humans have used breeding methods to modify organisms for thousands of years. Over generations, corn, cattle, and even dogs have been selectively bred to have certain desired traits.

The majority of GMO crops grown today were developed to assist farmers in preventing crop and food loss and controlling weeds.

The following are the most common traits found in GMO crops: Resistance to certain harmful insects, and Tolerance to certain weed-controlling herbicides.

Thus, with the help of genetic modification, a gene that controls beta-carotene production can be successfully inserted into a common food crop.

A number of significant dramas such as The Normal Heart, The Baltimore Waltz, and Angels in America were spurred by the ______ crisis.

Answers

A number of significant dramas such as The Normal Heart, The Baltimore Waltz, and Angels in America were spurred by the AIDS crisis.

What led to the AIDS epidemic in the US?

Investigators initially believed the issue was most likely caused by an infectious disease that might be spread through sex, however some hypothesized that recreational drugs or other environmental variables could also be to blame.

When did the US experience the AIDS crisis?

In the United States (U.S.), the first cases of what would later be known as AIDS were recorded in June 1981. In the United States, there are currently more than 1.2 million people living with HIV, and more than 35,000 new infections occur year.

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a protozoan called trypanosoma brucei, carried by the tsetse fly, causes african sleeping sickness. one variable surface glycoprotein (vsg), or surface coat protein, dominates the trypanosome surface. the trypanosome genome encodes over 1000 different versions of vsgs. all of the cells in an initial infection feature the same vsg coat on their surfaces, and the immune system readily recognizes this protein as foreign. however, an individual trypanosome cell in the broader population will switch and randomly begin expressing a different variant of the vsg coat. all the descendants of that cell will have the new and different protein on their surface. as the population with the second vsg coat increases, an individual cell will then switch to a third vsg coat, and so on. how does expressing a different vsg allow t. brucei to evade the immune system?

Answers

VSG can allow t. brucei to evade the immune system in two different ways:

Preventing immune system (innate/acquired) components from accessing invariant proteins on its surface and protecting parasites in the blood from complement system elimination.

Defenses of the host escaping

The innate system (low specificity) and the adaptive response are the two immune response mechanisms available to mammals (antigen-specific).

Avoiding a natural reaction

The initial line of defense against trypanosomes for animals is their innate immune system. Two serum human complexes known as trypanosome lytic factor, which contain apolipoprotein L1 and are endocytosed by the haptoglobinhemoglobin parasite surface receptor, can kill T. b. gambiense and T. b. rhodesiense. Both parasites produce certain proteins that offer them resilience to avoid being destroyed by APOL1.

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What is a gene and an example?

Answers

The fundamental structural and operational component of heredity is a gene. DNA is the component of genes. Example - CFTR.

What are the functions of a gene?

Some genes serve as blueprints for the synthesis of proteins. Many genes do not, however, code for proteins. A few hundred DNA bases to more than 2 million bases make up a gene in a human. Humans are thought to have between 20,000 and 25,000 genes, according to the Human Genome Project, an international research project that aimed to decipher the human genome's sequence and catalogue its genes. Every gene is present in two copies, one from each parent, in every individual. Less than 1% of all genes are slightly varied between individuals, but the majority of genes are the same in all people. Alleles are variations of the same gene with minor variations in the DNA base sequence. Each person's distinctive physical characteristics are influenced by these subtle variations.

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A lesion is located at the ventral-most portion of someone’s spinal cord. Which sense is most likely to be directly affected?.

Answers

A lesion is located at the ventral-most portion of someone’s spinal cord, then sense which is most likely to be affected is : pressure.

What is the function of ventral-most portion of spinal cord?

The ventral nerve cord is a major structure of the invertebrate central nervous system and is the functional equivalent of the vertebrate spinal cord. The ventral nerve cord coordinates neural signaling from the brain to  body and vice versa and integrating sensory input and locomotor output.

In human anatomy, ventral side of the spinal cord corresponds to the anterior side whereas, the dorsal side corresponds to the posterior side.

Damage to the ventral horn affects the anterior spinothalamic pathway, that carries crude touch and pressure sensations.

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What is the difference between Paravertebral and prevertebral ganglia?

Answers

The ganglia which lie between the target organ and the sympathetic ganglia are known as prevertebral ganglia.

The ganglia which lie close to the spinal cord and the vertebrae are said to be paravertebral ganglia.

What is the function of prevertebral ganglia?

The celiac, mesenteric, and hypogastric ganglia are among the prevertebral ganglia, which also receive preganglionic axons from the splanchnic nerves and innervate the abdominal, pelvic, and perineal organs.

They are made up of postganglionic sympathetic main neurons, which supply the viscera in the abdomen and pelvis. Prevertebral ganglia contain a majority of integrating neurons that receive nervous information from preganglionic neurons in the spinal cord and intestinofugal neurons of the myenteric plexus in the gastrointestinal tract, in contrast to paravertebral ganglia, which are made up almost entirely of relay neurons receiving nervous information arising only from preganglionic neurons in the spinal cord. These integrating neurons' primary targets are enteric nervous system neurons.

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suppose a person who is homozygous for no ear lobes reproduces with a person who is homozygous for ear lobes. what percentage of their offspring will have the ee genotype?

Answers

50% of the progeny is going to have the Ee genotype after both people mate.

Let us take the genotype for having no ear lobes be e.

Similarly, the genotype for having ear lobes is going to be E.

This means that whoever is homozygous for no ear lobes will have the genotype ee.

Whoever is homozygous for ear lobes will have the EE genotype.

After a person with the ee genotype mates with a person having the EE genotype, their offspring will have the genotypes - (EE, Ee, Ee, ee)

From this, we can conclude that 50% of the progeny is going to have the Ee genotype.

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Question 1(Multiple Choice Worth 3 points)
(03.08 MC)

A scientist trying to amplify the green fluorescent protein (GFP) gene from a sample of jellyfish DNA would primarily use which technology to separate the GFP gene from the rest of the DNA?

Polymerase chain reaction
Gel electrophoresis
Artificial selection
Genetic engineering

Answers

Artificial selection is the approach used by a scientist trying to amplify the green fluorescent protein (GFP) gene from a sample of jellyfish DNA to separate the GFP gene from the rest of the DNA.

Artificial selection refers to the human recognition of desirable qualities in plants and animals as well as the actions taken to strengthen and maintain such traits in succeeding generations. Artificial selection operates in a similar manner to natural selection, with the exception that in natural selection, these judgments are made by nature without human intervention.

In an evolutionary process known as artificial selection, humans actively choose which traits in organisms to preserve in their offspring or selectively breed from one generation to the next. For thousands of years, people have artificially selected plants and animals.

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What is the main energy conversion during digestion? a Electrical Energy to Radiant Energy b Chemical Energy to Chemical Energy c Thermal ( Heat ) Energy to Positive Energy d Chemical Energy to Thermal Energy

Answers

The main energy conversion which is established during the digestion of food substances is:

chemical energy to thermal and mechanical energy.

The correct answer choice is option e.

How chemical energy involved during digestion of food substances?

Digestion can simply be defined as the process whereby food substances are being broken down into simple particles so it can be easily digested and absorbed by the body system.

However, the food we eat or consume consists majorly of chemical energy which after its consumption can simply be converted into different forms such as thermal energy and then to mechanical energy.

In conclusion, it can be deduced that when we digest food substances, the chemical energy in it is converted to other energy forms.

Complete question:

What is the main energy conversion during digestion?

a. Electrical Energy to Radiant Energy

b. Chemical Energy to Chemical Energy

c. Thermal ( Heat ) Energy to Positive Energy

d. Chemical Energy to Thermal Energy

e. chemical energy to thermal and mechanical energy.

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In which of these disorders does the build-up of oil, bacteria, and dead skin cells block openings to the sebaceous glands or hair follicles?.

Answers

Acne is a skin condition that appears when the oil and dead skin cells in your hair follicles clog them.

Indicate acne.

The whiteheads, blackheads, or pimples are the results. Teenagers are most frequently affected by acne, but anyone can get it at any age.

Even with successful treatments, acne can still linger. Another one seems to come out of nowhere just as the first lump or pimple starts to fade.

Depending on how terrible it is, acne can leave skin scars and create emotional distress. Your likelihood of developing these issues will be reduced the earlier you begin therapy.

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What is the main difference between prokaryotic cells and eukaryotic cells?
Question
What is the main difference between prokaryotic cells and eukaryotic cells?
Responses
A Only eukaryotic cells have its genetic material surrounded by a membrane.Only eukaryotic cells have its genetic material surrounded by a membrane.
B Eukaryotic cells are smaller than prokaryotic cells.Eukaryotic cells are smaller than prokaryotic cells.
C Prokaryotic cells have many organelles, each with their own specialization function.Prokaryotic cells have many organelles, each with their own specialization function.
D Eukaryotic cells have a cell membrane and a cell wall; prokaryotes have a membrane only.

Answers

Answer: The primary distinction between these two types of organisms is that eukaryotic cells have a membrane-bound nucleus and prokaryotic cells do not

Explanation:

Answer would be A since prokaryotes do not have membrane bound organelles

Using a total of only five organs, design a digestive system that can absorb the maximum number of calories from the apple.

Answers

Digestion is a process in which breakdown of food molecules occurs, which provide nutrients to the body.

Digestion of an apple

The organs included in the digestion of an apple are :

Mouth: The apple cut down into smaller pieces by teeth. The saliva present in the mouth breakdown the starch present in the apple.

Stomach: The stomach contain digestive juices like hydrochloric acid and other gastric juices. These juices mix with the apple.

Duodenum : In duodenum, the breakdown of starch molecule happens.

Ileum : Small finger like structure present in the organ called villi, which absorb sugar particles and vitamins and minerals present in the apple.

Colon : The undigested waste travels through the colon and goes to another organ that is rectum.

Rectum : The indigestive waste material went out from the body through rectum.

These are the organs which can absorb the maximum number of Calories from the apple.

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Why is there such thin soil beneath such lush and dense vegetation?

Answers

Answer: In the rainforest, most of the carbon and essential nutrients are locked up in living vegetation, dead wood, and decaying leaves. As organic material decays, it is recycled so quickly that few nutrients ever reach the soil, leaving it nearly sterile

Explanation:

Answer the following questions:

What is GMO?
Where are they?
How long have they been around?

Answers

A genetically modified organism (GMO) is an animal, plant, or microbe whose DNA has been altered using genetic engineering techniques. Many GMO crops are used to make ingredients that Americans eat such as cornstarch, corn syrup, corn oil, soybean oil, canola oil, or granulated sugar. A few fresh fruit and vegetables are available in GMO varieties, including potatoes, summer squash, apples, papayas, and pink pineapples. 1982: FDA approves the first consumer GMO product developed through genetic engineering: human insulin to treat diabetes.

PLSSS HELP IF YOU TURLY KNOW THISS

Answers

Answer:

C. Soil

Explanation:

I'm pretty smart

After being cut in half in part a, the organ pipe is closed off at one end. What is the new fundamental frequency?.

Answers

An open organ pipe's fundamental frequency is 300 Hz.

What is first overtone class 11 of the fundamental frequency?

The fundamental frequency is the lowest resonant frequency, and it is frequently indicated by the letter f1. Any resonant frequency over the fundamental tone or basic frequency is referred to as an overtone. The overtone series is a list of successive overtones for a specific object.

What does the term "fundamental frequency" mean?

The fundamental frequency, or simply the fundamental, is the lowest frequency present in a periodic waveform. The fundamental is the term used to describe the musical pitch of a note that is perceived as the lowest partial present in music.

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the long-looped nephrons of animals adapted to survive with minimal water consumption, such as desert rats, have relatively longer loops of henle than humans have. of what benefit would these longer loops be? group of answer choices

Answers

The advantage of longer Henle's loop in desert animals over the shorter Henle's loop in humans is that longer loop provides greater absorption of minerals such as sodium ions, calcium ions or other ions needed for the body and restricts loss of water.

The metabolism of animals found in dry or arid regions is so designed that they can live with ease. The Henle's loop of desert animals allows greater absorption of water and thus loss of water is minimized due to the extremely concentrated urine. This limits the water needed for their survival. This allows more water to be resent back for hormonal circulation in the body. The major function of Henle's loop is to reabsorb water and sodium chloride ions which are released out by the kidney functions.

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The framework of microtubules that appears in cell division which eventually moves the chromatids apart is called the.

Answers

The framework of microtubules that appears in cell division which eventually moves the chromatids apart is called mitotic spindle.

What is mitotic spindle?

Somatic cells divide during the process known as mitosis, which results in the production of two daughter cells that are exact clones of one another. Somatic cells include all cell types excluding reproductive cells. This comprises, among other things, brain, muscle, and skin cells. In addition to being essential for reproduction, mitosis is also essential for cell development and repair. The four distinct phases of mitosis are prophase, metaphase, anaphase, and telophase.

During the prophase stage of mitosis, a crucial event known as the formation of mitotic spindles occurs. Centrioles, tiny cylinder organelles that assist in locating various cell components, are formed into fibres known as mitotic spindles.

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The spindle apparatus is a framework made of microtubules that forms during cell division and finally causes the chromatids to separate.

What framework, to which the chromatids will affix, is present?

centromeres. that connects the two chromatids together (the daughter strands of a replicated chromosome). The mitotic spindle's microtubules anchor to the centromere, which serves as the kinetochore's site of attachment.

What is the name of the microtubule network that transports chromatids to opposing poles of a cell during mitosis?

Spindle fibers are specialized microtubule elements that control how chromatids and chromosomes move during mitosis. Most cells have microtubules that radiate from a microtubule-organizing core.

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PLEASE HELP ASAP ON THE JUSTIFY THE ANSWER NET FREE WATER MOVEMENT PART!!!!
I WILL GIVE BRAINLIEST TO BEST ANSWERR!!!!

Answers

Explanation:

It's beneficial to cerebral injured

1) osmotic and vasoregulatory - by promoting the flow of excess water from cerebral tissue to the blood via osmosis and decreasing edema in the vascular endothelium of injured tissues, thus lowering vascular resistance and allowing more blood flow;

2) hemodymanic - by effectively expanding plasma volume;

3) immunomodulatory - by preventing leukocytes from becoming activated and adhering to injured neurons and;

4) neurochemical - by counteracting detrimental excitatory amino acids through the normalization of neuronal cell membranes and by restoration of normal electrolyte and neurotransmitter levels in brain cells, and normal cell volumes.

According to the chart given below is It's beneficial to cerebral has been injured and osmotic and vasoregulatory by promoting the flow of excess water from cerebral tissue to the blood via osmosis.

What helps in lowering vascular resistance?

Decreasing the edema in the vascular endothelium of the injured tissues, thus the lowering vascular resistance and just allowing more blood flow and hemodymanic by them effectively expanding the plasma volume immunomodulatory by preventing leukocytes from becoming activated state.

Adhering to the injured neurons and the neuro chemical by counteracting detrimental excitatory amino acids through the normalization of the neuronal cell membranes and by the restoration of the normal electrolyte and neurotransmitter levels in brain cells, and normal cell volumes.

Therefore, According to the chart given below is It's beneficial to cerebral has been injured and osmotic and vasoregulatory by promoting the flow of excess water from cerebral tissue to the blood via osmosis.

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Psychology 201- PLEASE HELP
Which statement describes a contribution of social-cognitive theories of personality?

a) Social-cognitive theories emphasized the separation of the individual and the environment.

b) Social-cognitive theories were grounded in case study research.

c) Social-cognitive theories realized humans are agents altering their environment.

d) Social-cognitive theorists developed the field of positive psychology.

Answers

Social-cognitive theories realized humans are agents altering their environment describes a contribution of social-cognitive theories of personality. Thus option C is correct.

What is social-cognitive theory ?

Social-cognitive Theory is defined as the theory where the impact of individual events, the actions and environmental features occur on individual health behaviors.

This theory used in several sectors like it is used in psychology, education, and communication, holds that parts of an individual's knowledge events, and outside media impacts.

Social Cognitive Theory promotes social support via Teaching expectations, Self-efficacy, and Employing observational learning etc.

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the most prevalent and efficient catabolic pathway for the production of atp, in which oxygen is consumed as a reactant along with the organic fuel.

Answers

The most prevalent and efficient catabolic pathway for the production of ATP, in which oxygen is consumed as a reactant along with the organic fuel is called aerobic respiration.

Catabolic pathway is a type of metabolic reaction. Here, the large-sized macromolecules are broken down into smaller particles. In aerobic respiration, glycolysis is a type of  catabolic reaction in which the macromolecule glucose is broken down to yield pyruvate which is further processed to yield ATP.

ATP stands for Adenosine Triphosphate. It is the most prevalent form of chemical energy substituent used by majority of the living organisms. The breakdown of ATP releases energy.

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Question 210DWhich theory of representation is being used when we elect someone who is going to usetheir best judgement to make decisions for the people that elected them?A Big BandB DelegateC EvolutionD Agency The first signs of adhd may be evident as early as infancy, but the condition is not usually diagnosed until. How many tiles would it take vanessa to cover 1 square foot The speed of a river current is 2 mph. If a boat travels 30 miles downstream in the same that it takes to travel 20 miles upstream, find the speed if the boat in the still water. What are some resources you can learn from now to learn how to use these different devices with different operating systems? Examine the triangles, which are similar.12 mm18 mmy?12 mm 2017 StrongMind. Created using GeoGebra.How many millimeters long is the missing side?Note: The triangles may not be drawn to scale. 1.What are the rational zeros of the functionf(x) = 5x - 35x - 300?A -12,5B-12, -5,5-5, 12D-5, 5, 12 3 pounds (lbs) = how many grams (g). The person in charge has been notified by the regulatory authority that the operation:_____. How does the physical geography of Bangladesh affect its economy? Round the amount of money to the nearest hundred. consider the equation y+4=-1/2(x+8) According to an article in crains chicago, how much is nascar spending to stage its first street-circuit race in chicago next year as part of its 75th anniversary?. Discuss, with examples, the double standard that exists between boys/girls, men/women as it relates to sexuality. Why are boys/men often allowed much greater sexual freedom than girls/women? Is this norm changing, and if so, how? (350 Words or more) Find The Value Of Tan(M-P) Given That Sinm=-(4)/(5)Cosp=-(15)/(17) Both Mand P Are In Quadrant III. At the beginning of spring, Sophia planted a small sunflower in her backyard. When it was first planted, the sunflower was 25 inches tall. The sunflower then began to grow at a rate of 3 inches per week. How tall would the sunflower be after 9 weeks? How tall would the sunflower be afterwww weeks?Please include both awnsers this costed lots of points :/ which of these options correctly characterizes life history traits of an organism with high fecundity and low survivorship? (no partial credit.) select all that apply: which of these options correctly characterizes life history traits of an organism with high fecundity and low survivorship? (no partial credit.) numerous offspring relatively few offspring small offspring large offspring offspring with late maturity offspring with early maturity offspring with low disease resistance offspring with high disease resistance a car is traveling at 50 mi/h when the brakes are fully applied, producing a constant deceleration of 24 ft/s2. what is the distance (in ft) traveled before the car comes to a stop? (round your answer to one decimal place.) 52.1 incorrect: your answer is incorrect. ft Which of the following scales is pictureda. D minorb. A minorc. b-flat minord. C minor 3. According to the authors, what is the most important reason for neuroscientists to study the tools of magic.