What is the most common regulatory method used in eukaryotes?.

Answers

Answer 1

Transcriptional regulation is the most prevalent regulatory strategy in eukaryotes.

Eukaryotic cells, as opposed to prokaryotic cells, have a wide range of levels at which they can control gene expression. Starting with access to the DNA, eukaryotic gene expression is managed. Eukaryotic repressors bind to specific DNA sequences and prevent transcription, just like their prokaryotic counterparts.cIn eukaryotes  organisms, one of the main ways to control gene expression is through the control of transcriptional initiation. The majority of eukaryotic genes are regulated at the transcriptional level by proteins called trans-acting factors that engage with particular gene sequences (cis-acting regulatory sequences).

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suppose that after only white impatiens were found on the island, no more dispersal events occurred, yet a new flower color emerged. which evolutionary process would most likely be at play?

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The only white impatiens were found on the island, no more dispersal events occurred, yet a new flower color emerged due to mutation.

The DNA sequence varies from creature to organism. The order of the base pairs can occasionally shift. We refer to it as a mutation. Changes in proteins that are translated from the DNA by a mutation are possible. In most cases, the cells are able to detect any harm brought on by mutation and fix it before it becomes irreversible.

A abrupt, heritable change in an organism's characteristics is called a mutation. One who demonstrates these heritable changes is referred regarded as a "mutant." Recessive genes are typically produced through mutations.

Hence, mutation provides chance of evolution

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in both prokaryotes and eukaryotes, gene regulation most commonly occurs at the level of (fill the blank) initiation.

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In both prokaryotes and eukaryotes, gene regulation most commonly occurs at the level of  transcriptional initiation.

What are eukaryotes?

Eukaryotes are the organism which have nucleus which is bound in a nucleus membrane. example All animals, plants, fungi are eukaryotes.

What is gene?

Gene is a unit of information inside a living being. gene is also a basic unit of heredity. gene is transferred from parents to their off springs.

What is gene regulation?

Gene regulation is the process or mechanism used by cells to increase or decrease the gene production of specific type of gene product.

Hence, In both prokaryotes and eukaryotes, gene regulation most commonly occurs at the level of  transcriptional initiation.

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under anaerobic conditions, what carbon sources can be metabolized by yeast cells to produce atp from adp?

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Glucose is the cause. A simple sugar, glucose has the atomic formula C6H12O6. It is the most important source of energy for cell respiration

The form of glucose that circulates in animal blood is glucose. It is created during photosynthesis, which uses sunlight to create it from carbon dioxide and water. Inside the yeast, glucose is the favored source of carbon and fermenting is the main pathway for energy generation, even under aerobic circumstances. It is the most important source of energy for cell respiration. Cells that are unable to generate enough energy via oxidative phosphorylation use anaerobic glycolysis as a substitute. Glycolysis generates 2 ATP in tissues with low oxygen levels by diverting pyruvate out from mitochondria and using the lactate dehydrogenase process. Because fermentation only employs glycolysis to make ATP, it only results in a net gain of 2 ATP.

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What does homozygous roan mean?.

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Homozygous 100% of the children born to roan horses carry the genotype Rn/Rn.

An uniform distribution of colored and white hairs on the body distinguishes the horse coat color pattern known as roan, while the head and "points" lower legs, mane, and tail are predominately solid-colored. Roan horses have uniformly spaced white hairs mixed together with any other color. Less or none of the white hairs are present on the head, legs, mane, and tail. Numerous horse breeds have the roan pattern, which is inherited dominantly. Although the particular mutation that causes roan has not been discovered, a DNA test can be used to identify the zygosity for roan in various breeds. True roan is usually present at birth, though it might not be noticeable until the foal coat has shed. The coat may get lighter or darker as the seasons change.

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What are the two types of teeth that are found in the mouth of the bullfrog and that are used to hold prey?.

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It has two rows of teeth. On the roof of the mouth are the vomerine teeth. Around the mouth's outside border are the maxillary teeth. Frogs swallow their food whole without chewing; both are utilized to hold prey.

Maxillary and Vomerine. On the roof of the mouth are the vomerine teeth. Around the mouth's outside border are the maxillary teeth. Both are employed to hold prey.

Bullfrogs in North America have fangs in the roof of their mouths and a powerful tongue that may flip prey into their mouths.

It is one of three frog species that are frequently kept in captivity, along with Pacman frogs and Budgett's frogs, that have sharp teeth and will willingly bite humans when startled or handled.

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sensory memory can be implemented by residual activation, and long-term memory can be implemented as changes in synaptic strengths, and working

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The recollection of a sensory experience, such as what we just saw or heard, is only briefly remembered (approximately three seconds).

Some people liken sensory memory to a fleeting snapshot of the event you just had before it vanishes. The tiny window of time when you can recall information that you have just been exposed to is known as short-term memory. Depending on who is using the term, "short-term" might refer to anything from 30 seconds to a few days.

Even though the two overlap, some researchers refer to working memory as a separate concept from short-term memory.

The capacity of our brains to retain a finite amount of knowledge for usage over an extended period of time is known as working memory. Working memory facilitates the processing of ideas and plans as well as their execution. Working memory can be described as your short-term memory fusing tactics and information from your long-term memory bank to help with computation or decision-making.

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What causes digestive enzymes to be low?.

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Diabetes, pancreatic cancer, cystic fibrosis, and chronic pancreatitis can all result in digestive enzyme deficiencies.

Digestive enzymes are proteins produced by the body to aid digestion and break down food. Digestion is the process of utilizing nutrients found in food to provide energy to the body, assist it in growing, and perform vital functions. Digestive enzymes are a type of enzyme that breaks down polymeric macromolecules into smaller building blocks so that they can be absorbed into the body's cells.

Digestive enzymes are found in the digestive tracts of animals (including humans) and carnivorous plants, where they aid in food digestion, as well as inside cells, particularly in lysosomes, where they function to maintain cellular survival.

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an infection with a lengthy period of infectivity will spread to fewer individuals than an infection with a very short duration of infectivity.

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The capacity to cause or spread infection When sporozoites are cultured with serum from the shielded animals, their infectiousness is reduced, and the parasite's surface develops noticeable antibody deposits.

The ability of an infectious agent to spread disease from a sick person to a susceptible healthy person is known as infectiousness. The severity of an illness brought on by an infectious agent is gauged by its virulence.

The interplay of virulence factors with the host response frequently determines the clinical course of the disease. When the equilibrium between a pathogen's virulence and the host's resistance is upset, infection results.

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true or false? small, nonpolar molecules such as co2 and o2 can diffuse across a phospholipid bilayer by simple diffusion?

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The given statement is true.

Small nonpolar molecules can easily traverse cell membranes because they are soluble in the lipid bilayer. Examples of these molecules are O2 and CO2 which can diffuse across a phospholipid bilayer by simple diffusion. Larger uncharged polar molecules, like glucose, cannot diffuse across cell membranes, but small uncharged polar molecules, like H2O, may diffuse across a phospholipid bilayer by simple diffusion.

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adenoids are enlarged a. lingual tonsils. 9 b. pharyngeal tonsils. c. palatine tonsils. d. cervical lymph nodes. e. axillary lymph nodes.

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The correct answer is: Adenoids are enlarged pharyngeal tonsils.

The nasal cavity's entrance to the pharynx is close to where the pharyngeal tonsils are situated. These tonsils are known as adenoids when they expand to the point that they may obstruct breathing.

Adenoids are a tissue lump located behind the nose in the upper part of the neck. They are a component of the lymphatic system, just as tonsils. The lymphatic system eliminates infection and maintains the proper balance of bodily fluids. The tonsils and adenoids function by capturing germs that enter through the nose and mouth.

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Is a turkey a reptile a bird a mammal an insect an amphibian or an aquatic animal.

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Answer:

A turkey is a bird and is of two specie and it lay eggs

New individuals of a species are created by mixing genetic material from two parents in a process called.

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New individuals of a species are created by mixing genetic material from two parents in process called sexual reproduction

What is sexual reproduction?

It is the creation of a new organism by combining the genetic material of two organisms.

As both parents contribute half of the new organism's genetic material, offspring will have traits of both parents, but will not be exactly like either parent.The gametes have an haploid genome (with a single set of chromosomes, product of a meiotic division) and combines with one another to produce zygote (diploid).Organisms that reproduce sexually by joining gametes, process known as fertilization, must have a mechanism to produce haploid gametes.

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How are the enzymes that nerve cells produce different from the enzymes that blood cells produce?.

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Enzymes that nerve cells produce are different from  the enzymes that blood cells produce.

What are Enzymes?

Enzymes are proteins that act as catalysts in biochemical reactions, increasing the rate at which reactions occur. They are essential for most of the chemical reactions that occur in living organisms.

The enzymes that nerve cells produce are specialized to carry out the metabolic functions specific to nerve cells, such as energy production and the transmission of nerve signals. By contrast, the enzymes that blood cells produce are specialized to carry out the metabolic functions specific to blood cells, such as carrying oxygen and other nutrients, removing toxins, and forming clots.

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one of the functions of the respiratory system is to rid the body of co2. what is the specific biochemical pathway that is responsible for co2 production? select all that apply.

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oxidation of pyruvate to acetyl co-A &  the citric acid cycle are responsible for co2 production.

What is oxidation of pyruvate to acetyl co-A?

Two pyruvate molecules remain at the end of glycolysis and are still very rich in energy that can be extracted. Although ATPATP, A, T, P, end text is directly produced during pyruvate oxidation, it is the next stage in the process of harnessing the leftover energy in the form of ATP.

Glycolysis generates pyruvate in the cytoplasm, while the mitochondrial matrix is where pyruvate oxidation occurs (in eukaryotes). Pyruvate must therefore enter the mitochondrion, pass through its inner membrane, and reach the matrix before the chemical processes can start.

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which statement is accurate about how c4 plants are able to survive hot, dry spells during the growing season?

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RuBP carboxylase is not exposed to the rise in oxygen concentration felt in the leaf when the stomata close due to heat stress. By doing this, the plant can avoid attempting to use oxygen.

C4 plants have developed a method to provide Rubisco with CO2.

Since plants also lose water vapour through their stomata, they are susceptible to dehydration in dry climates where they maintain open stomata for photosynthesis. To avoid drying out, plants close their stomata in response.

In these plants, the initial phosphoenolpyruvate converts carbon dioxide into oxaloacetate in specific mesophyll cells. More biomass can be produced by C4 plants. In general, C 3 plants have a higher rate of photosynthesis per unit of nitrogen.

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the change in acth levels in response to cortex causes a(n) in glucocorticoid secretions from the adrenal .

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Cortisol and androgens are released by the adrenal cortex in response to ACTH. A negative feedback mechanism is provided by the rise in cortisol to lessen the quantity of CRH secreted by the hypothalamus.

What occurs if ACTH is elevated?

Having an elevated level of ACTH might mean: Insufficient cortisol production by the adrenal glands (Addison disease) inadequate hormone production by the adrenal glands (congenital adrenal hyperplasia)

The anterior pituitary gland produces a hormone called adrenocorticotropic hormone (ACTH), which largely influences the production of glucocorticoids and adrenal androgens by the adrenal gland and, to a much lesser extent, also promotes the release of aldosterone.

Your adrenal glands, especially your adrenal cortex, are then stimulated by ACTH to produce cortisol and androgens. Your hypothalamus responds to the resultant rise in cortisol by lowering CRH levels, closing the feedback loop.

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Fructose is a ketohexose monosaccharide found in honey, fruits, and other sources. It is also added to some foods and drinks as a sweetener. Much of the fructose taken in through digestion is taken up and processed by the liver, where it is phosphorylated and cleaved. Which of the following statements accurately describe(s) how fructose metabolism? Two products of the fructose 1 - phosphate pathway can enter glycolysis. The fructose 1 - phosphate gateway can deplete intracellular phosphate/ATP. Fructose enters a separate metabolic pathway from glucose, which enters the glycolytic pathway. The presence of fructose inhibits the entrance of glucose into glycolysis.

Answers

The statement that accurately describes how fructose metabolism is the one that says that the fructose 1-phosphate pathway can deplete intracellular phosphate/ATP.

Fructose metabolism is the metabolism of dietary fructose to yield energy from it. The difference between fructose metabolism and glucose is that glucose is metabolized directly throughout the body, while fructose is metabolized predominantly in the liver by the fructose 1-phosphate pathway. The phosphofructokinase reaction is bypassed and glycolysis can proceed without it.

The fructose 1-phosphate pathway is a derivative of fructose mainly generated by hepatic fructokinase. It can deplete intracellular phosphate or ATP.

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what is the definition to hydrodynamic

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Answer:the branch of science concerned with forces acting on or exerted by fluids ( especially liquids)

Answer:

hy·​dro·​dy·​nam·​ics -iks.

a branch of physics that deals with the motion of fluids and the forces acting on solid bodies immersed in fluids and in motion relative to them compare hydrostatics.

which of the following statements about termination is true? a)no trna can recognize a stop codon. it is recognized by a release factor protein. b)only a single release factor trna can recognize a stop codon. c)'ihere are three release factor trnas that can recognize a stop codon. d)no trna can recognize a stop codon. after the ribosome stalls on the mrna for a certain length of time, it falls oft and termination occurs. e)all trnas can recognize stop codons, and so the last amino acid of all newly formed proteins is random.

Answers

There is no known termination t RNA that can identify stop codons by their anticodon. This is believed to be done by the termination factors.

What is the termination of translation?

Termination is the action that completes translation. A stop codon (UAA, UAG, or UGA) in the mRNA causes termination when it enters the A site. Release factors are proteins that perfectly fit into the P site (but aren't) and recognize stop codons.

A stop codon can be recognized by RNA?

Stop codons cannot be recognize  by a t RNA, hence they do not code for an amino acid. The two ribosomal subunits of the protein are released from the t RNA by proteins known as release factors, allowing them to be recycled separately.

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which is least affected by chemical weathering?(1 point) responses a chair made of plastic a chair made of plastic a pile of tiles made of feldspar a pile of tiles made of feldspar a statue made of marble a statue made of marble a bridge made of iron rods

Answers

The object that will be the least to be affected by chemical weathering is a pile of tiles made of feldspar  .

What is chemical weathering?

Chemical weathering  can be described as the process which involves the interaction of rock with mineral solutions which is been regarded as a chemicals to alter the composition of rocks.

It should be noted that  this process, involves the interaction of water with minerals so as to form various chemical reactions  resulting in the transformation the rocks, in the case above the pile of tiles made of feldspar posses a strong chemical composition hence it will be the one that will be affected least.

Therefore, option C is correct.

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if a mouse with the genotype aadd is crossed with a mouse that has the genotype aadd what will the phenotypic ratios of the offspring be

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The offspring's phenotypic ratio is 9: 3: 3: 1. Normal running speed is a dominant feature in mice. These mice are known as running mice (R). Mice only run in circles due to the recessive characteristic.

What does a mouse with the genotype AA look like phenotypically?

Agouti mice are AA or Aa mice. Regardless of the phenotype at the second locus, mice with genotype aa are albino because all pigment formation is suppressed. The B allele (agouti coat) is dominant to the b allele at the second location (black coat).

What is the offspring's genotypic ratio?

The ratio that represents the various genotypes of a test cross' offspring is called the genotypic ratio. It depicts the pattern of a family's progeny.

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Can warm-blooded animals control their body temperature?.

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Animals with warm blood are those that can control and maintain a consistent body temperature.

Endotherms are defined as mammals and birds. An animal that can regulate its internal temperature is an endotherm. The body temperature of endotherms is often higher than that of their surroundings and typically remains constant.

By decomposing the food you eat, it produces heat. All vertebrates are homoiotherms or warm-blooded creatures since they can produce this internal heat. Mammals often experience temperatures between 97°F to 104°F. The average body temperature of birds is between 106° & 109° F.

Humans are warm-blooded, indicating we can handle our inner body temperature nevertheless of the habitat.

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at certain times in the menstrual cycle, women demonstrate a preference for a mate that has the greatest degree of facial symmetry, facial masculinity, and a muscular physique. these demonstrate a male's degree of .reproductive fitnesspropinquityself-fulfilling prophecy familiarity

Answers

All these mentioned features demonstrate a male's degree of reproductive fitness.

What is reproductive fitness?

The reproductive fitness or fertility reflects an individual's ability to pass on their genes to the next generation. Fitness traits, also called life history traits, are complex phenotypes that integrate measures of fertility and mortality and are direct targets of Darwinian selection. Each population evolves in a specific habitat to maximize fertility. Natural selection can cause microevolution (changes in allele frequency), making fitness-enhancing alleles more common in a population. Fitness is known to be a measure of reproductive success (how many offspring an organism leaves in the next generation)

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Primary endosymbiosis led to the origin of some chloroplasts. This process occurred when a __________ engulfed a _____________.

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Some chloroplasts were created as the result of primary endosymbiosis. This process occurred when a eukaryotic cell engulfed a prokaryote.

What was swallowed up to form a chloroplast?

Chloroplasts and mitochondria most likely developed from engulfed prokaryotes that previously existed as independent organisms. A eukaryotic cell eventually engulfed an aerobic prokaryote, which later established an endosymbiotic bond with the host eukaryote and gradually transformed into a mitochondrion.

One type of symbiotic relationship where two organisms coexist is called an endosymbiosis. An ancestral eukaryotic cell had to internalize prokaryotes in order to produce the mitochondria and chloroplasts. Known as primary endosymbiosis, this process.

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a population of rabbits, introduced to an island, has rapid growth for a few years; then its growth slows. the population becomes stable because:

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The population becomes stable because: the carrying capacity has reached.

What do you mean by Carrying Capacity?

Carrying capacity refers to the species' average population size in a particular habitat. It is limited by environmental factors like adequate food, shelter, water, and mates. If these needs are not met, the population will decrease until the resource rebounds.Four types of carrying capacity includes Physical, Ecological, Economic, and Social carrying capacities. It helps to determine the size of the population that can exist or will be tolerated there.

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The pressure exerted by water moving during osmosis is called _______________ pressure?.

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Osmotic pressure is the force created by the moving water during osmosis.

Is osmosis a water flow process?

In biology, osmosis is the transfer of water molecules from a solution containing a high concentration of water molecules to a solution containing a lower concentration of water molecules through a cell's partially permeable membrane.

Osmosis is the division of two solutions with various solute concentrations by the passage of a solvent through a semipermeable membrane. A solvent is transferred via osmosis from a solution containing a lower concentration of solute to one containing a higher concentration.

Osmotic pressure is the force created when a liquid or solvent diffuses through a membrane. Through the membrane dividing the two solutions, the solvent moves from the diluted to the more concentrated solution.

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Part E: Write Your Paper
Write your research using your outline and the research you’ve collected. Be sure to proofread and revise your writing to catch any errors in grammar, spelling, logic, or cohesion. Remember that you must add a works cited page at the end of your paper to give credit to your sources.
When you have completed your paper, submit it to your teacher along with this activity.

Its a paper about cancer and way its cured(the lay out)
1. The chances and how common it is to get it.

2. Who will most likely get cancer.

3. The amount of people who've had it today and or will.

4. And things like injuries cause cancer.
PLEASE HELPPPPP

Answers

If it remains in complete remission for 5 years or more, it can usually be considered cured. Even so, some cancer cells can remain in the body for many years after treatment and cause the cancer to come back one day.

Abnormal cell development is caused by a defect in the DNA. These changes can be inherited from parents, pop up spontaneously or result from external agents such as cigarettes, viruses, excessive exposure to the sun, obesity and consumption of certain foods. These are the carcinogenic factors.

More than 10 million people die each year from cancer, WHO reveals

How does cancer form?

Cancer arises from a genetic mutation, that is, from an alteration in the cell's DNA, which starts to receive wrong instructions for its activities. Changes can occur in special genes, called proto-oncogenes, which are initially inactive in normal cells.

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drag the terms on the left to the right side to place them in order from largest diameter to smallest diameter think about these in the respiratory tract than one person

Answers

Each major bronchus divides to form a lobar or secondary bronchus. The right lung contains one more lobe than the left, and there are three secondary bronchi on the right side compared to two on the left. Each lobar bronchus serves one lung lobe.

From greatest to smallest, what are the respiratory organs?

The trachea is the biggest part of the airway. This divides into two more smaller bronchi, which pass into the left and right lungs and divide once again into bronchioles. The bronchioles open into the tiniest components of the lung, the clusters of alveoli that resemble little grapes.

What is the proper size hierarchy in the respiratory system?

Bronchi, bronchioles, terminal bronchioles, respiratory bronchioles, alveoli. These are the structures in size order. During inhalation, air passes through these airways in the specified order to reach the alveoli, where it engages in gas exchange with the blood to transport oxygen.

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what is the name of the condition characterized by low energy availability, lack of menstrual periods, and low bone mineral density?

Answers

The menstrual disruption, poor energy availability (with or without an eating disorder), and decreased bone mineral density collectively are known as the female athlete trio (the triad), and it is rather frequent among young women who participate in sports.

Option (C) is the correct answer.

What three elements make up the female athlete triad?

In 1992, the term "female athlete triad" was coined to describe a spectrum disorder with three interconnected components:

(1) Low energy availability due to disordered eating, eating disorders, or inadequate nutrition in relation to caloric expenditure;

(2) Menstrual dysfunction; and

(3) Low bone mineral density (BMD).

What is one of the female athlete triad's symptoms?

Periods that are irregular or absent are indications of the female athlete triad. decrease of weight or a low BMI. tension fractures (tiny cracks in bones)

The female athlete triad syndrome includes what ailments?

1. Low Energy Availability With or Without an Eating Disorder in Female Athletes.

2. Dysfunctional menstruation & Low bone mineral density is third.

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I understand that the question you are looking for is:

what is the name of the condition characterized by low energy availability, lack of menstrual periods, and low bone mineral density?

A) Female anorexia

B) Female bulimia

C) Female athlete triad

D) Binge eating disorder

Path Of A Nerve Impulse
I Need to Fill In the Blanks
The telephone rings. Nerve impulses begin when in the ear picks up the stimulus of the telephone ringing

The nerve impulse moves to __________ in the brain. The __________ interprets the impulses and decides to answer the phone.

Nerve impulses from the brain move to __________. The muscles contract in response, and you pick up the telephone.

Answers

The telephone rings. Nerve impulses begin when the nerves in the ear picks up the stimulus of the telephone ringing.

The nerve impulse moves to neurons in the brain. The brain interprets the impulses and decides to answer the phone.

Nerve impulses from the brain move to arm muscle. The muscles contract in response, and you pick up the telephone.

What are nerve impulses?

Nerve impulses are described as electrical signal that travels along a nerve fiber in response to a stimulus and serves to transmit a record of sensation from a receptor or an instruction to act to an effector.

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