How many ATP molecules are produced during aerobic respiration of one molecule of glucose?A 24B 3C 2D 38

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Answer 1

The number of ATP molecules produced during aerobic respiration per one molecule of glucose is 38 (option D).

What is aerobic respiration?

Aerobic respiration is a chemical process in which oxygen is used to make energy from carbohydrates (sugars). It is also called aerobic metabolism, cell respiration, and oxidative metabolism.

The aim of cellular respiration, including aerobic respiration, is to generate energy in form of ATP for the metabolic activities of the cell.

In aerobic respiration, the full oxidation of one glucose molecule can theoretically yield 38 ATP molecules.

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Answer 2

The correct answer is D) 38 ATP molecules.

What is aerobic respiration ?

Aerobic respiration is a metabolic process that takes place in the cells of living organisms to convert energy stored in nutrients, such as glucose, into a usable form of energy called ATP. The term "aerobic" refers to the requirement of oxygen for this process to occur.

During aerobic respiration of one molecule of glucose, the complete breakdown of glucose results in the production of a maximum of 38 molecules of ATP. This is because glucose is oxidized through several stages in the process of cellular respiration, and at each stage, some energy is captured in the form of ATP.

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Related Questions

what are the three main criteria used to classify viruses?

Answers

Answer:

Viruses are classified on the basis of morphology, chemical composition, and mode of replication.

Explanation:

causing the cells to clump together; the process of proding large cells is called ______.

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The process of prodding large cells and causing them to clump together Is Called "aggregation".

This can occur when certain molecules, such as antibodies, interact with Antigens on the surface of cells. When antibodies recognize and bind to specific antigens, they can cross-link multiple cells, causing them to aggregate or clump together. This process can occur with various types of cells, including red blood cells, white blood cells, and bacteria.

The process of prodding or stimulating large cells is known as activation. This can occur when cells are exposed to certain stimuli, such as chemical signals, physical forces, or other cells.  This process is important in many physiological processes, such as immune responses, wound healing, and tissue regeneration.

Overall, both agglutination and activation are important concepts in cell biology and can have significant effects on the behavior and function of cells in the body.

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which is the following is an example of compartmentation at the intracellular level?

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a and b are correct option. Sarcoplasmic reticulum (SR), an organelle found in skeletal muscle cells, houses sizable calcium ion reservoirs. As the muscle relaxes, the calcium is pumped back.

The kidney eliminates sodium from the body after consuming a salty meal. For the body to survive and work properly, all of its systems must be in a state of balance. The science of physiology examines how the human body functions. From how molecules behave in cells to how systems of organs cooperate, it describes the chemistry and physics underlying fundamental bodily functions.

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which is the following is an example of compartmentation at the intracellular level? Groups of answer choices

a. Skeletal muscle cells have organelles called sarcoplasmic reticulum.

b. sarcoplasmic reticulum contains large stores of calcium ions.

c. Eating a salty meal causes the kidney to excrete sodium from the body.

d. The muscle and fat cells to take in glucose.

The only reaction which actually uses molecular oxygen is
a. Cytochrome C oxidase.
b. NADH-CoQ reductase.
c. succinate-CoQ reductase.
d. Cytochrome A oxidase.
e. Cytochrome bc1 complex.

Answers

The correct option is D; Cytochrome A oxidase. The final complex of eukaryotic oxidative phosphorylation in mitochondria is called cytochrome c oxidase.

In this process, molecular oxygen is converted to water, protons are moved from the internal mitochondrial matrix to the intermembrane space, and electron carriers are reduced during metabolism. Molecular oxygen serves as the final acceptor of electrons in the electron transport chain. Finally, Cyt a3 moves electrons to O2.

In Pseudomonas putida, cytochrome c reductase is a crucial enzyme in the extracellular electron transfer pathway towards transition metal complexes.

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The form in which chemical energy is stored during photosynthesis is?

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Answer:

During photosynthesis, chemical energy is stored in the form of glucose molecules. Glucose is produced when light energy is converted into chemical energy by chloroplasts in plants. This energy can then be used by the plant and other organisms for various metabolic processes.

inflamed and swollen tendons that are caught in the narrow space between the bones within the shoulder joint is called___

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Inflamed and swollen tendons that are caught in the narrow space between the bones within the shoulder joint is called impingement syndrome.

The rotator cuff tendons and subacromial bursa become compressed in the small space beneath the acromion, resulting in shoulder impingement syndrome. As a result, the bursa and tendons become inflamed and swollen.

Impingement syndrome frequently manifests as difficulties reaching behind the back, soreness when using the arm upward, and weakening in the shoulder muscles.

Overuse is a common cause of shoulder impingement. The tendons in your shoulder may enlarge with prolonged use, causing them to "catch" on your upper shoulder bone. Other times, the cause is unknown.

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the fibrous skeleton of the heart is located between the ______.

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The fibrous skeleton of the heart is located between the atria and the ventricles. The fibrous skeleton of the heart is a dense, fibrous connective tissue structure located in the middle of the heart.

As per the question given,

It is positioned between the atria and the ventricles, forming a four-part ring that separates the two chambers. The heart is a fascinating organ that pumps tirelessly day and night to keep us alive. But did you know that there's a hidden structure within the heart that plays a crucial role in its function? It's called the fibrous skeleton, and it's like the backbone of the heart, providing stability and support for the delicate valves that keep our blood flowing in the right direction.

Located between the atria and the ventricles, the fibrous skeleton is like the referee of the heart, ensuring that each chamber plays its part correctly and doesn't interfere with the other. It's also responsible for keeping the heart's electrical signals in check, preventing any chaotic misfiring that could cause heart problems.

So the next time you feel your heart racing with excitement, remember the fibrous skeleton that's keeping it all together, working tirelessly to ensure that your heart beats to the right rhythm.

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Suppose you do an experiment in which you have a culture of algae that is growing pretty well in its current medium. You take samples of the culture, and to half of them you add nitrogen, and to the other half you add magnesium. After one week, the half with the nitrogen added hasn't changed compared to the original culture, but the ones with added magnesium show much more algae growth than the others. What was the limiting nutrient?A. MagnesiumB. Nitrogen C. PhosphorusD. Eutrophication

Answers

In the examination, Magnesium was the limiting nutrient in the first culture. The correct answer is (A) Magnesium.

A restricting supplement is characterized as a supplement that is available at all sums in a biological system where the development and multiplication of organic entities residing in an environment are constrained by restricting the accessibility and centralization of the supplement.

A few normal restricting supplements incorporate bioavailable nitrogen and phosphorus, for example, cyanobacterial blossoms that happen in sea-going conditions following contamination with phosphates. In the given analysis, magnesium is the restricting supplement.

Other than CO2 and light, green growth expects supplements to develop, nitrogen (N) and phosphorus (P) being the main ones. These can be provided as horticultural compost, which is straightforward, and effectively accessible however can be a tremendous expense factor (Braun and Reith, 1993; Chisti, 2008b).

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13) what kind of protein is used as a detector to probe the target protein?

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The type of protein used as a detector to probe the target protein can vary depending on the specific application and detection method being used.

In general, the detector protein should have a high affinity and specificity for the target protein so that it can bind to it selectively and with a high degree of sensitivity.

Commonly used detector proteins in various types of protein assays include antibodies, which can recognize specific epitopes on the target protein, and protein tags, which can be fused to the target protein to enable detection using complementary probes or ligands.

Other types of detector proteins include lectins, which can bind to specific carbohydrate residues on the target protein, and biotin-binding proteins, which can bind to biotinylated target proteins. In addition, some assays use fluorescent or luminescent proteins, such as green fluorescent protein (GFP), as detector proteins to enable direct visualization of the target protein.

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What is the significance of Gram positive vs Gram-negative?

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The significance of Gram-positive versus Gram-negative bacteria lies in their differences in cell wall structure, which has important implications for their biology, pathogenesis, and susceptibility to antibiotics.

Gram-positive bacteria have a thick peptidoglycan layer in their cell walls, which stains purple when exposed to crystal violet and iodine during Gram staining. Gram-negative bacteria have a thin peptidoglycan layer in their cell walls, which is surrounded by an outer membrane that contains lipopolysaccharides (LPS).

The significance of these structural differences between Gram-positive and Gram-negative bacteria lies in their susceptibility to antibiotics. Gram-positive bacteria are generally more susceptible to antibiotics that target the cell wall, such as penicillin and cephalosporins, because the thick peptidoglycan layer is a key target for these drugs.

In contrast, Gram-negative bacteria are more resistant to these drugs because the outer membrane and LPS layer act as a barrier to prevent the drugs from reaching the peptidoglycan layer.

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Which of the following statements can be said about Venus? A. Venus has a very slow rotational speed B. The day-night cycle is longer than one year C. Venus is closer to the Sun than Earth D. All of the above are true. Only A and C are correct

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The following statements can be said about Venus is E. Only A and C are correct. Venus' rotational velocity could be very slow

It turns as soon as in 243.0185 Earth days, while the Earth turns in one. The planet rotates clockwise if considered from the north pole. The solar rises withinside the west. We name this retrograde rotation (backwards as compared to the Earth and maximum different planets). The planet Venus rotates very slowly, with a unmarried revolution taking approximately 243 Earth days, and this rotation fee varies. Additionally, even as the planet turns slowly, its surroundings movements dramatically faster, creating a entire rotation in most effective 4 Earth days, consistent with a assertion approximately the brand new study.

Thus, option E is the correct choice.

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Complete question-

Which of the following statements can be said about Venus? A. Venus has a very slow rotational speed B. The day-night cycle is longer than one year C. Venus is closer to the Sun than Earth D. All of the above are true. E. Only A and C are correct

What is example of punnett square

Answers

Below is an excellent example of Punnett squares in common pea plant seed color- First and foremost, the famous pea plant under discussion here is Pisium sativum.

Mendell enabled the production of true-breeding homozygous plants for both alleles. Yellow and green seeds have these genes. It is a square-shaped diagram used for genotype forecasting in a cross or breeding exercise. This method was developed in 1905 by Reginald C. Punnett. This is used by biologists to determine the probability of a specialist gene being inherited in offspring. The Punnett square is a table that lists all of the potential outcomes of a genetic cross between two people with known genotypes.

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the right common carotid artery branches directly off the

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The right common carotid artery branches directly off the brachiocephalic artery.

What is a brachiocephalic artery?

The second branch to emerge from the aorta is known as the brachiocephalic trunk, sometimes known as the brachiocephalic or innominate artery.

It ascends from the aortic arch into the superior mediastinum and splits into its terminal branches at the right sternoclavicular joint. It helps in the supply of blood to the upper right side of the body.

Thus, the right common carotid artery branches directly off the brachiocephalic artery.

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when a turtle is created, it faces _____

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Recall that when the turtle is created, it faces east. The turtle should turn to face south and create a 150-pixel-long line, then turn to face east and draw a 75-pixel-long line.

The mature carapace can be oval or heart-shaped, depending on the species. Except for the leatherback, the bony shell is made up of fused, expanded ribs, and the backbone is linked to the carapace.

You'll learn about "classes" in your Python book, which will help you grasp it better, but basically, a turtle is an object that you can make by doing: Turtle = x () This isn't a turtle function, but rather something that instructs the Turtle object to generate one for itself (called an init function).

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The cleavage furrow of animal cells is formed with the help of a constricting belt made of the protein ____.

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The cleavage furrow of animal cells is formed with the help of a constricting belt made of the protein actin myosin

calcitonin is produced by the cells in the thyroid gland. (True or False)

Answers

Calcitonin is produced by the cells in the thyroid gland. The given statement is true.

Calcitonin is a hormone that is largely generated by C-cells, also known as parafollicular cells, found in the thyroid gland. The thyroid gland is a tiny, butterfly-shaped gland in the neck that produces and secretes many hormones, including thyroxine (T4) and triiodothyronine (T3), which regulate metabolism.

Calcitonin is created by C-cells in response to elevated calcium levels in the blood. Its primary purpose is to lower blood calcium levels by reducing the action of osteoclasts, which are cells that break down bone tissue and release calcium into the circulation. Calcitonin helps to lower the amount of calcium in the blood by blocking the action of osteoclasts, which can assist to prevent hypercalcemia (high levels of calcium in the blood).

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Which component provides structure and substance to paint pigment?
O A. solvents
OB.polymers
O C.binders
O D. plant fibers

Answers

Answer:

B if not than C

Explanation:

Sorry if I'm wrong!

True/False? the mucosa in the respiratory system is also known as the membrane.

Answers

The mucosa in the respiratory system is also known as the membrane  is true.

What is respiratory system?

Your body's network of tissues and organs, or respiratory system, aids in breathing. This system aids with your body's ability to take in oxygen from the air so that your organs can function. Moreover, it purifies your blood of waste gases like carbon dioxide. Allergies, illnesses, or infections are typical issues.

What is mucosa ?

The soft, inner lining of certain bodily cavities and organs (such as the nose, mouth, lungs, and stomach). Mucus is produced by mucosal glands (a thick, slippery fluid). also known as the mucous membrane.

Therefore, mucosa in the respiratory system is also known as the membrane  is true.

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review your model of protein targeting. proteins such as insulin travel to the plasma membrane and are secreted from the cell. on its way to the plasma membrane, insulin must travel through what organelle?

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The model of protein targeting describes the process by which proteins are directed to specific organelles or compartments within the cell. Insulin, a protein hormone, is targeted to the plasma membrane for secretion from the cell.

To reach the plasma membrane, insulin must travel through the Golgi apparatus, a complex organelle responsible for processing and sorting proteins. Insulin is initially synthesized on ribosomes in the rough endoplasmic reticulum (ER). From there, it is transported to the Golgi apparatus, where it undergoes further processing and sorting. The Golgi is responsible for modifying and packaging proteins, including insulin, into vesicles that will eventually fuse with the plasma membrane for secretion. Once insulin reaches the plasma membrane, it is released from the cell and can enter the bloodstream to regulate glucose levels in the body.

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What is the phylum class and order?

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Phylum is the primary division of kingdom. A class is a taxonomic rank That exists below the phylum and above the order & Class is a Taxonomic group consisting of one or more related orders.

(i) Phylum- Phylum is a level of taxonomic rank that exists below the Kingdom and above the class.

e.g. phylum chordata.

Equivalent of phylum is division in plant kingdom.

(ii) Class- A class is a taxonomic rank that exists below the phylum and Above the order.

e.g. class Mammalia, class aves.

iii) Order- Order is a taxonomic rank that exists below class and above Family. e.g. order primates.

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what is an enzyme that catalyzes the cutting and resealing of dna, and is translated from insertion sequences

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Enzyme responsible for catalyzing  and cutting and resealing of DNA and is translated from insertion sequences is called transposase.

In general , Transposase are enzyme that is used for the production of  transposable elements.  Transposase mediates the catalysis and the excision and insertion of these elements in various locations inside the genome. That result in different gene expression.

Also , these Transposase are very important in the movement of transposable elements . They helps DNA sequences to work as transposable element towards the target site where it will be inserted. their ability of cutting and resealing allows the transposable element to be inserted into the target site.

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Refer to Animation: Gene Expression: Translation. For each of the following organelles or structures, check the corresponding box if the organelle or structure is named or discussed in the animation. (Select all that apply.)A. mitochondria, ribosomesB. ActinC. antiparallel, complementaryD. transfer RNA

Answers

Gene Expression: Translation.

A. mitochondria, ribosomes

D. transfer RNA

What is the role of a ribosome?

The role of a ribosome is to synthesize proteins by decoding messenger RNA (mRNA) into chains of amino acids. Ribosomes are made up of two subunits, one large and one small, and they can be found in both prokaryotic and eukaryotic cells.

During translation, the ribosome reads the mRNA sequence and uses the information to link together amino acids in the correct order to form a protein. The ribosome is also responsible for catalyzing the formation of peptide bonds between the amino acids, as well as proofreading the sequence to ensure that the correct amino acids are added.

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Evaluate the influence of environmental factors on why the trait for sickle-cell disease might be an advantage in central Africa.

Answers

Red blood cells affected by sickle-cell disease have irregular forms that can obstruct blood arteries and result in major health problems. Sickle-cell disease is a hereditary illness that alters red blood cell structure.

What leads to sickle cell anemia?

To be born with sickle cell disease, a child must inherit the sickle cell gene from both of its parents this often happens when both parents are "carriers" of the sickle cell gene, commonly known as having the sickle cell trait.

How dangerous is sickle cell disease?

Older sickle cell anemia sufferers may change and experience more severe medical complications as a result of the lack of oxygen reaching organ tissues. Those who have sickle cell anemia have a higher risk of lung harm to the liver, spleen, and kidneys.

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Question 11 (1 point) If a bacterium adapted to a cold environment were moved to a much warmer environment, what changes to the membrane lipids should the bacterium make? Because increased temperature decreases fluidity, the bacterium should increase the length of fatty acid tails on membrane lipids Because increased temperature increases fluidity, the bacterium should decrease the length of fatty acid tails on membrane lipids Because increased temperature decreases fluidity, the bacterium should decrease the length of fatty acid tails on membrane lipids Because increased temperature increases fluidity, the bacterium should increase the length of fatty acid tails on membrane lipids

Answers

A bacteria that has evolved to a warm environment should shorten the length of the fatty acid tails on its membrane lipids if it is placed in a significantly cooler environment.

A sort of unicellular organism that is a member of the genus bacteria is called a bacterium. Unlike plants and humans, bacteria typically have a single cell and smaller cells. They can be found in a variety of habitats, such as soil, water, and other living things.

The reason for this is that as it gets colder, the membrane loses fluidity; however, longer fatty acid tails can help to prevent this. The bacteria can enhance the amount of van der Waals connections between nearby fatty acid tails by lengthening their tails, which helps to stabilize and maintain the fluidity of the membrane. The bacterium's modification would increase its functionality and enable it to endure the colder climate.

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which two types of archaea thrive in hot environments

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thermophiles and hyperthermophiles. Even though they are among the most inhospitable places on Earth, thermal vents and hot springs support a number of creatures that can survive where most life would perish.  

Thermophiles and hyperthermophiles fall within this category. You are most likely witnessing the effects of a growing Sulfolobus colony of archaeal cells whenever you see a hot, muddy, acidic spring. The archaea that scientists isolate and are most familiar with is this one. Thermophiles' enzymes operate at high temperatures. The Taq polymerase used in PCR is one of these enzymes that is utilised in molecular biology.

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fiber supplements are just as effective as consuming fiber-rich foods.

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False. While fiber supplements can provide some benefits, such as reducing constipation, they are not as effective as consuming whole foods that are naturally high in fiber.

Whole foods contain a variety of nutrients and compounds that work together to promote optimal health, while fiber supplements typically only provide one type of fiber. Additionally, fiber-rich foods often contain other beneficial components like antioxidants and phytochemicals that are not present in fiber supplements. Eating a balanced diet that includes a variety of whole foods is the best way to ensure adequate fiber intake and overall good health.

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Complete Question:

fiber supplements are just as effective as consuming fiber-rich foods. T/F.

using this tool, how long ago did the highland and lowland hummingbirds diverge?

Answers

The highland and lowland hummingbirds diverged approximately 16 million years ago, according to research conducted by the American Museum of Natural History.

The researchers used a combination of DNA sequencing and phylogenetic analysis to calculate the evolutionary divergence between these two hummingbird lineages. The data collected from the DNA of modern hummingbirds revealed that the highland and lowland hummingbirds separated from a common ancestor about 16 million years ago. This separation is believed to have been caused by the uplifting of the Andes mountain range, which created a physical barrier that prevented gene flow between the two populations of hummingbirds. With the lack of gene flow, the two lineages have evolved independently and have become distinct species. This research provides insight into the evolutionary history of hummingbirds, and the results are consistent with previous studies that suggest that the highland and lowland hummingbirds diverged approximately 16 million years ago.

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If a bacterium adapted to a cold environment were moved to a much warmer environment; what changes to the membrane lipids should the bacterium make? A. Because increased temperature decreases fluidity, the bacterium should increase the length of fatty acid tails on membrane lipids B. Because increased temperature increases fluidity, the bacterium should decrease the length of fatty acid tails on membrane lipids C. Because increased temperature decreases fluidity, the bacterium should decrease the length of fatty acid tails on membrane lipids D. Because increased temperature increases fluidity, the bacterium should increase the length of fatty acid tails on membrane lipids

Answers

B. Because higher temperatures make things more fluid, the bacteria should shorten the fatty acid tail on their membrane lipids.

It is anticipated that the content of membrane lipids (phosphatidylcholine fatty acids) will change when the temperature drops in order to preserve homeoviscosity. Triacylglycerol fatty acids, which make up storage lipids, are anticipated to react to temperature changes similarly while having various functions. The fraction of saturated fats in membrane lipids increases noticeably when the ambient temperature rises, while the proportion for unsaturated or branched chain fats decreases simultaneously. Increased temperatures (up to about 40 oC) improve the rate of reaction by increasing the frequency of collisions between both the enzyme and the substrate, which changes how lipase works.

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ear anatomy external

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The external ear, also known as the auricle or pinna, is the visible part of the ear that extends from the outside of the head to the ear canal. It is made up of several structures, including:

Auricle: The auricle is the visible part of the external ear. It is made up of elastic cartilage covered with skin and has a curved shape that helps to direct sound waves into the ear canal.
Earlobe: The earlobe is the fleshy, lower part of the auricle that hangs down and has no cartilage.
Helix: The helix is the outer rim of the auricle that runs along the top and back of the ear.
Antihelix: The antihelix is the inner rim of the auricle that runs parallel to the helix.
Tragus: The tragus is a small, pointed piece of cartilage that protrudes in front of the ear canal.
Antitragus: The antitragus is a small, rounded piece of cartilage opposite the tragus.
Concha: The concha is a deep cavity located in the center of the auricle that leads to the ear canal.

The external ear is responsible for collecting sound waves and directing them into the ear canal. The shape and structure of the external ear help to amplify sound and enhance the directional hearing of humans and many other animals.

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what are the muscles of the shoulder

Answers

The muscles of the shoulder include the deltoid, trapezius, rhomboid, pectoralis, subscapularis, teres minor, infraspinatus and the supraspinatus.

Subscapularis is basically muscle which attaches to the scapula's middle and stretches all the wayto the bottom part of the ball of humerus. Supraspinatus stretches to the top of the humerus which is present at the ball the joint from the top of the scapula. Infraspinatus basically connects to the humerus which is behind the supraspinatus. Teres minor basically attaches to the side of the scapula.

There are two rhomboid muscles which happen tp stretch from the top of the spine to the scapula. Trapezius help us in lifting and lowering shoulders. Deltoids are the muscles which help us in moving our arm. Pectoralis stretched right from our collarbone all the way to the mid-chest.

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music is found in which of the following methods? i. combining sounds ii. digital technology iii. recording iv. voice what laws is protecting private property economic competition Compare and contrast Washingtons advice in the three sections how are his claims regarding unity political parties and alliances similar how are they different what theory must be used to understand how we perceive a 2000 hz tune? determine which sets in exercises 1520 are bases for r 2 or r 3 . justify each answer! who was bring this period brought western reform of government, military, and industry to japan after the fall of the tokugawa shogunate? Most Reality TV shows are photographed using the _________system.A. Multiple Camera SystemB. Single Camera System Decide if the information below demonstrates effective note-taking and choose the best choice from the drop-down menu.w/o water mammals will dieA) Include as isB) Rewrite what accounts for one third of the impact of the total message? What are the Warning Traffic Signs? Insertion definition. Kraft Foods recently increased its advertising and couponing to its current cheese consumers. It appears Kraft is pursuing what kind of opportunity:A. Market penetrationB. product developmentC. market developmentD. mass marketingE. Diversification in the middle ages, a social system in which nobles allowed people to use their land if they fought for and worked for them. Verifying equivalent expressionsthe list isx012Im trying to find the answers to 2 equations, once I find the equation how do I fill out the rest of the table? can you enter the chamber of secrets in hogwarts legacy Are there any other age regressors on this app? Using examples from across a hundred mountains, write an essay in which you develop your point of view as to whether identity is something people are born with, or identify is something people create for themselves. You should consider all characters and how their identities are formed. FULL ESSAY RECEIVES 32 POINTS FILL IN THE BLANK. When performing resection of the stomach the ___ must be detached from the lesser and greater curvatures. what is polar molecules hydrophobic? Which of the following types of RNA molecule delivers amino acids to the ribosomes?a. messenger RNAb. transfer RNAc. ribosomal RNA