what is the action of the pectoralis major muscle

Answers

Answer 1

The pectoralis major function is to adduct and medially rotate the humerus, and adduct the scapular forward, while the clavicular head flexes the humerus, and the sternocostal head extends it.

What is Pectoralis muscle?

The pectoralis major is defined as the superior and largest muscle of the anterior chest wall which is a thick, fan-shaped muscle that lies beneath the breast tissue and forms the anterior wall of the armpit.

The muscles include the fibers which make up the pectoral muscles:

1. Pectoralis major

2.Pectoralis minor

3. Serratus anterior

Thus, the pectoralis major function is to adduct and medially rotate the humerus, and adduct the scapular forward, while the clavicular head flexes the humerus, and the sternocostal head extends it.

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Related Questions

T/F. an increase in blood viscosity will cause an increase in total peripheral resistance.

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True , The relationship between BP and viscosity is such that, assuming a fixed systolic BP, increasing blood viscosity increases total peripheral resistance (TPR), reducing blood flow.

In contrast, as viscosity lowers, blood flow and perfusion rise. Increased whole blood viscosity is linked to a higher risk of morbidity and mortality from a variety of life-threatening conditions, including cardiovascular and cerebrovascular disease. Three elements influence peripheral resistance: Sympathetic action causes peripheral arteries to contract. Pharmacologic agents: vasoconstrictor medicines raise resistance while vasodilators lower it. Increased blood viscosity increases resistance.

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what happens if the ground hog doesnt see his shadow?

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If the groundhog sees his shadow on Groundhog Day, it indicates that there will be another six weeks of winter.

In the United States and Canada, February 2 is Groundhog Day, a holiday that is observed. According to folklore, the groundhog would run away in terror if he sees his shadow when he emerges from his burrow, predicting that winter will linger another six weeks. On the other hand, if the day is gloomy and the groundhog does not see his shadow, spring will arrive sooner. Although there is no scientific basis for this practice, it has developed into a well-known cultural phenomenon that is a celebrated through parades, festivals, and other events.

Many individuals take advantage of the opportunity to predict the weather and make preparations for the upcoming season on Groundhog Day.

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How do extremophiles survive in the most extreme conditions?

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There are several ways that extremophiles can survive in these extreme conditions like: Heat shock proteins, Membrane adaptations, Enzyme adaptations, DNA repair mechanisms and Metabolic flexibility.

Extremophiles are organisms that can survive and thrive in extreme environments that are inhospitable to most other life forms. These environments can include high temperatures, low temperatures, high pressure, low pressure, and other extreme conditions.

Heat shock proteins: Many extremophiles produce special proteins called heat shock proteins that help protect their cells from damage caused by high temperatures.

Membrane adaptations: Extremophiles often have membranes that are adapted to withstand extreme conditions. For example, some thermophilic bacteria have membranes that are rich in saturated fatty acids, which help maintain their structure and function at high temperatures.

Enzyme adaptations: Extremophiles often produce enzymes that are adapted to work at extreme temperatures or pH levels. These enzymes may have different amino acid sequences, and different shapes, compared to enzymes from non-extremophilic organisms.

DNA repair mechanisms: Some extremophiles have specialized DNA repair mechanisms that allow them to repair DNA damage caused by extreme conditions, such as high levels of radiation.

Metabolic flexibility: Extremophiles often have a wide range of metabolic pathways, which allows them to adapt to different nutrient and energy sources in their extreme environments.

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Endocrine glands differ from exocrine glands in that:

Endocrine glands are ductless and exocrine glands release secretions at the body's surface or into ducts.

Endocrine glands release hormones, whereas exocrine glands release waste.

Endocrine glands are formed by epithelial tissue, but exocrine glands are primarily connective tissue.

Endocrine glands are all interconnected; whereas exocrine glands act completely independently.

Answers

Endocrine glands differ from exocrine glands because endocrine glands are ductless and exocrine class release sections at the body's surface or into ducts.

Endocrine glands are ductless glands that secrete directly into the bloodstream. They secrete hormones like estrogen, testosterone, adrenaline, oxytocin, etc. Examples of endocrine glands are:

HypothalamusThymusThyroidParathyroidPituitaryAdrenal glandsGonads (Ovary and Testis)

Exocrine glands secrete into ducts externally. They secrete sweat, saliva, tears, milk, etc. Examples of exocrine glands are:

Sweat glandsSalivary glandsPancreasMammary glands

Pancreas can be included in both exocrine and endocrine glands.

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which of these grist components is sometimes used because it is gluten free?a. Malted wheatb. Malted Sorghumc. Malted Barleyd. Malted Oats

Answers

Option B: Malted Sorghum is the grist components is sometimes used because it is gluten free.

Grist is grain that has been prepared for grinding by being separated from its chaff. It may also refer to grain that has undergone gristmill grinding. Sorghum is a wonderful substitute for grains that contain gluten because it is gluten-free. A family of proteins called gluten is present in several grains and provides food products their stretchy texture and structure.

Sorghum is a whole grain with a high nutritional density that provides more protein, iron, and a variety of other vitamins and minerals than the much-praised quinoa. Malting is the process of converting grains into a malt after steeping, germinating, and drying for industrial and consumption uses.

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Catabolism consists of energy-releasing decomposition reactions. Such reactions break covalent bonds, produce smaller molecules from larger ones, and release energy that can be used for other physiological work.

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The series of metabolic processes known as catabolism reduces molecules into smaller pieces that are then either oxidised to produce energy or utilised in other anabolic processes.

What does a catabolic response mean?

Large molecules are broken down into smaller molecules in a catabolic process. For example, the hydrolysis process is catabolic and opposite to the condensation process described above. • The decomposition of hydrogen is a simple example of catabolic reactions that occur within cells.

What is catabolism?

A group of metabolic processes known as catabolism break down large molecules. This involves breaking down and oxidizing food molecules. The energy and substances required for anabolic reactions are produced by catabolic reactions.  

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True or False: the shock-absorbing pads between the vertebrae are formed of fibrocartilage.

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The fibrocartilage that forms the shock-absorbing cushions between the vertebrae. It's true what is said here.

Why does fibrocartilage serve a purpose?

The articular cartilage of the temporo-mandibular joint and the junction between the clavicle and the sternum are made of fibrocartilage, as are the intervertebral discs, intraarticular cartilages, and wrist, knee, and temporo-mandibular joints.

What stands out as fibrocartilage's most salient feature?

In contrast to other fibrous tissues, fibrocartilage is a strong, tough tissue that is mostly found in intervertebral disks and at the points of ligaments and tendons insertion. It is also similar to other fibrous tissues in that it is composed of chondrocytes and cartilage ground material.

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The lumen of blood vessels is lined by which type of cell?
A. epithelium
B. adipose tissue
C. muscle cells
D. connective tissue

Answers

A. epithelium. It's significant to note that endothelial cells line and shape the lumen of every blood artery in vertebrates.

The blood vessels are lined by what kind of cells?

Depending on the vessel's diameter & function, the amount of fibrous tissue and muscle cells in the vascular wall varies, but the endothelium layer is always present.

The lumen is lined with endothelial cells?

All blood vessels' lumens are lined with endothelial cells.They protect the blood vessel's integrity and stop blood from leaking into the surrounding skin.When the vessel is whole, it offers a thromboresistant barrier that stops the coagulation system from activating.

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The process by which glucose is formed from non-carbohydrate compounds is called__
A. glycogenesis
B. glycolysis
C. glycogenolysis
D. gluconeogenesis

Answers

the correct answer is C: 'gluconeogenesis'

Is Lyme disease Cured?

Answers

Although the majority of instances of Lyme disease may be cured with a 2- to 4-week course of oral antibiotics, individuals can occasionally experience pain, weariness.

This also includes difficulty thinking symptoms that continue for more than 6 months after they stop therapy. "Post-Treatment Lyme Disease Syndrome" is the name given to this disorder (PTLDS). Lyme disease is curable and does not progress for a long time. The disease's consequences, however, might last for weeks, months, or even years in some people.

An oral antibiotic is the conventional course of treatment for Lyme disease. Typically, the course of treatment takes 10 to 14 days. Depending on your symptoms, your treatment may take longer. Although feeling better, it's crucial to take all medications as prescribed.

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What is the Difference Between RNASE A and RNASE ?

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RNASE A and RNASE are two different types of ribonucleases, which are enzymes that break down RNA molecules. The main difference between the two is their structure and specificity.

RNase A and RNase are both enzymes found in cells. RNase A is a ribonuclease that specifically cleaves single-stranded RNA molecules into their component nucleotides, while RNase is a non-specific enzyme that can cleave both single-stranded and double-stranded RNA molecules.

The main difference between them is the specificity of their action - RNase A cleaves only single-stranded RNA, while RNase cleaves both single-stranded and double-stranded RNA.

RNASE A is a single-stranded RNA-specific ribonuclease, which means that it only targets single-stranded RNA molecules. It is a relatively small protein with a molecular weight of about 14 kDa, and it is found in the pancreas of many vertebrates. RNASE A is a member of the RNASE A superfamily, which includes several other ribonucleases with similar structures and functions.

RNASE, on the other hand, is a general term that can refer to any type of ribonuclease, regardless of its structure or specificity. There are many different types of RNASEs, including RNASE A, RNASE H, RNASE III, and RNASE P. Each of these RNASEs has a different structure and targets different types of RNA molecules.

In summary, the main difference between RNASE A and RNASE is that RNASE A is a specific type of ribonuclease that targets single-stranded RNA molecules, while RNASE is a general term that can refer to any type of ribonuclease.

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What are some examples of vestigial structures?

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Vestigial structures are structures that have no apparent function and appear to be remnants of a previous progenitor. Vestigial structures include the human appendix, a snake's pelvic bone, and the wings of flightless birds.

Vestigial traits can take many forms, including behavioral patterns, anatomical structures, and physiological processes. Vestigial features of a given species, like most other physical features, may appear, develop, survive, or disappear at various periods of the organism's life cycle, spanning from early embryonic development to late adulthood.

In biology, vestigiality refers to creatures that maintain organs that appear to have lost their original function. Vestigial organs are well-known evolutionary concepts.

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What role do the teichoic acids play within the cell wall of Gram-positive bacteria?a) They serve to stabilize the cell wall and hold it in place.b)They serve as pores allowing the passage of ions, nutrients, and amino acids into the cell.c) They act as crossbridges, holding the peptides and sugar molecules together.d) They serve as adhesins, allowing bacteria to bind to one another.

Answers

Many gram-positive bacteria have wall teichoic acids, anionic glycopolymers that are highly functionalized in their peptidoglycan layers (WTAs).

What use do teichoic acids serve?

Teichoic acids' major purpose is to attract cations like calcium and potassium, giving the cell wall flexibility. Teichoic acids may be replaced by D-alanine ester residues or D-glucosamine to confer zwitterionic characteristics to the molecule.

What use does the gram-positive bacteria's cell wall serve?

The cell wall of gram-positive bacteria acts as an attachment place for proteins that interact with the bacterial environment, even though its primary purpose is to produce a stiff exoskeleton for defence against both mechanical and osmotic lysis (694, 695)

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Which statement is true?
A. There are more neurons than glia in the brain.
B. Neurons are all the same shape and size.
C. Some neurons have no axons.
D. Glia are not necessary for normal brain functioning.

Answers

Some neurons have no axons. This assertion is correct. Option C is the correct answer in this case.

Neurons are the primary cells in the nervous system that transmit information via electrical and chemical signals. A cell body, dendrites, and an axon distinguish them. Dendrites receive signals from neighbouring neurons or sensory cells, whereas axons send signals to neighbouring neurons, muscles, or glands.

However, not every neuron has an axon. Interneurons, also known as local circuit neurons, have dendrites that receive and transmit signals to other neurons within a local circuit but lack an axon that projects to distant parts of the nervous system. Sensory neurons, for example, may have a very short axon that does not extend far from the cell body.

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In how many different forms does water exist in the atmosphere?

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The three forms of water that are involved in the water cycle are solid, liquid, and gaseous.

The three various states of water—gas, liquid, and solid—are all present in the atmosphere. Common names for these various states include water vapor, liquid water, and ice, respectively. The most prevalent type of atmospheric water is water vapor, an invisible gas that permeates the atmosphere on a continual basis. Clouds, rain, drizzle, and fog are all manifestations of liquid water in the atmosphere. Snow, hail, and ice crystals are all examples of ice that can be found in the atmosphere. Many atmospheric processes, such as precipitation creation, temperature and humidity regulation, and the development of weather patterns, depend heavily on the presence of these various types of water in the atmosphere.

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Which of the following are features of lymphatic vessels? Select all that apply.
1) A tunica interna is present
2) Smooth muscle is present in the vessel wall
3) They resist moderate to high pressure
4) They have thick walls
5) Valves are present

Answers

The Smooth muscle is present in the vessel wall and They have thick walls are the features of lymphatic vessels.

What are the functions of lymphatic vessels?

A thin tube that carries lymph (lymphatic fluid) and white blood cells through the lymphatic system. Also called lymphatic vessel. Enlarge. Anatomy of the lymph system, showing the lymph vessels and lymph organs.

Lymph capillaries are found in all regions of the body except the bone marrow, central nervous system, and tissues, such as the epidermis, that lack blood vessels. The wall of the lymph capillary is composed of endothelium in which the simple squamous cells.

Lymphatic vessels collect and filter lymph (at the nodes) as it continues to move toward larger vessels called collecting ducts. These vessels operate very much like your veins do: They work under very low pressure, have a series of valves in them to keep the fluid moving in one direction.

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what would be the effect of ach binding to its receptor on a skeletal muscle cell?

Answers

A membrane channel that is selectively permeable to both Na+ and K+ changes shape upon binding of ACh to its receptors.

What transpires when skeletal muscle and ACh bind?

Cholinergic opens ligand-gated sodium channels in the cell membrane when it interacts to acetylcholine receptors on skeletal muscle fibres. Then, sodium ions enter the muscle cell, causing the muscle to contract.

What receptors in skeletal muscle cells does acetylcholine bind to?

Nicotinic (nAChR) and muscarinic receptors are two physically and functionally distinct types of receptors that are activated by acetylcholine, the neurotransmitter of skeletal neuromuscular junctions (NMJs) (mAChR). While mAChRs are metabotropic receptors that signal through G-proteins, nAChRs serve as cation channels.

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What is the definition of qualitative observation?

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Qualitative observation is a research approach in which researchers collect data through the use of their five senses, which are sight, smell, touch, taste, and hearing.

It is a subjective way of information collection because it is dependent on the researcher's sense organs. Quantitative observation refers to the objective collecting of data for analysis based on numerical and statistical characteristics.

This observation entails displaying obtained variables in terms of their quantity. The emphasis is on numbers and values. Qualitative observations include texture (smooth or rough), flavor (sweet or salty), temperature (hot or cold), and mood (angry or happy). We use qualitative observations on a daily basis, from purchasing veggies at the grocery store to evaluating personnel at our office.

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Which of the following does not describe a process involved in the transmission of information by the nervous system?
a. Dendrites of neurons receive signals from the axons of other neurons.
b. Motor neurons send signals to muscle cells to produce muscle contractions.
c. Neurotransmitters transfer information across synapses between neurons.
d. Sensory neurons carry impulses from the central nervous system to muscles.

Answers

Answer:

A Dendrites of neurons receive signals from the axons of other neurons.

Which one of the following processes in a developing embryo is a prerequisite for all of the other processes?
A mitosis
B germ layer formation
C cell differentiation
D organogenesis

Answers

One of the processes in a developing embryo is mitosis, which is necessary for all the other processes.

What steps in the development of an embryo, from fertilisation to implantation, are there?

During fertilisation, the sperm and egg join to form a zygote in one of the fallopian tubes. The zygote then develops into a morula after passing through the fallopian tube. The morula grows into a blastocyst once it enters the uterus. Following that, the blastocyst undergoes implantation, during which it enters the uterine lining.

What other names are given to progenitor cells?

Progenitor cells, which are multipotent, are often referred to as precursor cells. Prior to differentiating after becoming stem cells, precursor cells are referred to as the intermediate cell.

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what is found in the space between the pleural layers?

Answers

The pleural cavity, also known as the thin area between the two pleural layers, typically holds a tiny amount of pleural fluid.

What is located within the pleural space?

The visceral pleura, the inner layer, wraps around the lungs and is affixed to them so firmly that it cannot be removed. The inside of the chest wall is lined with the outer layer (parietal pleura). The pleural gap refers to the incredibly thin space between the layers.

What materials make up pleural lining?

The visceral and parietal layers of the pleura are made up of underlying connective tissue and a continuous surface epithelium of mesothelial cells. The parietal pleura lines the ribs, diaphragm, and mediastinum, while the visceral pleura protects the lungs and interlobar fissures.

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Which of the following statements about the Earth's revolution around the Sun is correct?
One revolution requires about one month.
One revolution takes about one year.
The same side of the Earth faces the Sun during revolution around the Sun.
None of these choices are correct.

Answers

The following statements about the Earth's revolution around the Sun are correct: One revolution takes about one year; that is the second option, as the Earth takes approximately 365,24 days to complete one revolution.

What is the significance of the revolution?

The Earth's revolution, which takes about a year, is responsible for the changing of the seasons because the tilt of the Earth's axis causes different parts of the planet to receive different amounts of sunlight.

Hence, the following statements about the Earth's revolution around the Sun are correct: One revolution takes about one year; that is the second option, as the Earth takes approximately 365,24 days to complete one revolution.

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Which enzyme is responsible for linking the fragments of DNA?
A. DNA polymerase III
B. Endonuclease
C. DNA polymerase I
D. DNA ligase

Answers

DNA ligase is the enzyme responsible for linking or joining DNA fragments. The process of joining DNA fragments is called ligation, and DNA ligase is responsible for catalyzing the formation of a phosphodiester bond between adjacent nucleotides.

What is the role of  DNA polymerase III and DNA polymerase I?

DNA polymerase III synthesizes new strands of DNA during DNA replication. In contrast, DNA polymerase I am involved in removing RNA primers and filling the gaps with DNA nucleotides during DNA replication.

What is an endonuclease enzyme?

Endonucleases are enzymes that cleave phosphodiester bonds within a DNA or RNA molecule. These enzymes are important for many cellular processes, including DNA replication, repair, and recombination. Endonucleases are found in many different organisms, including bacteria, plants, and animals.

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A computer will reliably follow a set of instructions without any variation or
mistakes. Which of the following is the best explanation for why random
chance is included in a computer simulation?
A. A living thing rarely repeats a behavior in exactly the same way.
B. It is always a waste of time to repeat the same exact experiment.
C. The scientist who programmed the computer might have made a
mistake.
D. An actual event might occur too fast to be observed in an
experiment.

Answers

Answer:A. A living thing rarely repeats a behavior in exactly the same way .

Explanation:

where specifically does the baby get its nutrients from?

Answers

From the umbilical cord of its mother.

What is gradualism biology?

Answers

Gradualism, also known as "phyletic gradualism," is a pattern of sustained, directed, and progressive evolutionary change that occurs over a long period of time in the history of a species.

(countable and uncountable gradualisms, plural gradualisms) (biology) The concept that evolution progresses at a constant rate, with no abrupt appearance of new species or biological traits from one generation to the next. (transferred meaning) The belief that a certain phenomena occurs gradually over time.

A group of finches begins to vary from the rest of the population by having shorter beaks and black stripes on their wings. Finally, the two unique groups of birds are regarded completely independent species.

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In mice, coat color is incompletely dominant. Black and white are homozygous. Brown mice are heterozygous. Cross a brown mouse with a white mouse. What is the possibility that the offspring could have the white coat color?

Answers

The possibility of production of mice with white coat color is 0% because all mice will be brown coated (Bb) due to incomplete dominance.

What is incomplete dominance?

When both traits are not dominant over each other, then this is called incomplete dominance. For example, in mice, coat color is incompletely dominant. Black and white are homozygous. Brown mice are heterozygous.

When a black-coat mouse (BB) is crossed with a white-coat mouse (bb), then all offspring will be brown-coat mice (Bb) because of incomplete dominance. Therefore, the probability of the formation of white coat mice is 0%. The image is attached below.

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In 1-2 sentences, explain the role memory plays in animals' sensory systems and provide an example of this role in action.

Answers

The role memory plays in animals' sensory systems is to save the information for later use.

Which role does the brain play in an animal's sensory system?

The brain analyzes the sensory information that is received by the brain. It tells the body what to do in response of that information. Animals use sensory information to search food, avoid danger, and find their mates. When animals process information which they have received, they store it for use later in the form of memories. These memories help to affect their future actions.

Brain control the functions of the body and it is responsible for movement, communication, memory, emotion and all other activities surround by the general behavior.

So we can conclude that the role memory plays in animals' sensory systems is to store information as memories.

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Question: Label The Blood Types According To Their Description. Type O ABO Blood Types Anti-A Antibodies Blood Type Neither Surface Antigen A Nor B Type AB A And B Surface Antigen A Surface Antigen B Surface Antigens Erythrocytes Neither Anti-A Nor Anti-B Antibodies Type A Plasma Plasma Anti-B Antibodies Type B Both Anti-A And Anti-B Antibodies Reset Zoom

Answers

Blood group O has both anti-A and anti-B antibodies in the plasma but no antigens.

Which types of blood have anti-Rh antibodies?

The Rh positive factor prevents the body from producing anti-Rh antibodies. The antibodies are only produced by people with Rh negative factors. As a result, someone with Rh+ blood can receive transfusions of both Rh+ and Rh- blood, while someone with Rh- blood can only receive Rh- blood.

What sort of blood does not produce anti-A or anti-B antibodies?

Individuals in Group AB don't have any anti-A or anti-B antibodies in their plasma. Thus, group AB plasma, often known as the universal plasma donor, can be administered to patients of any ABO blood group.

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proteins are a chain made up of links. each link is an amino acid. there are 20 different amino acids. what binds the links together?

Answers

A protein molecule is made from a long chain of these amino acids, each linked to its neighbor through a covalent peptide bond Proteins are therefore also known as polypeptides.

Organic substances known as amino acids have both amino and carboxylic acid functional groups. Alpha-amino acids, which make up proteins, are by far the most significant amino acids in nature, despite the fact that there are hundreds of them.  In the genetic code, only 22 alpha amino acids are present.

Alpha-, beta-, gamma-, or delta-amino acids can be categorized according to where the main structural functional groups are located; further classifications relate to polarity, ionization, and the kind of side chain group (aliphatic, acyclic, aromatic, containing hydroxyl or sulfur, etc.)

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