what is bald eagle feather?

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Answer 1

The adult Bald Eagle's wings are a solid dark gray or gray-brown color, perhaps with a very little whitish patch at the base.

A raptor bird found in North America is the bald eagle. It is a marine eagle with two recognized subspecies and forms a species pair with the white-tailed eagle, which lives in the same Palearctic habitat niche as the bald eagle. All of the contiguous United States, northern Mexico, and the majority of Canada and Alaska are all included in its range. It can be found close to huge open water bodies where there is an abundance of food and old-growth trees for breeding.

The eagle is the toughest and bravest bird there is. Because of this, Native People picked the eagle and its feathers as a representation of what is noblest, bravest, strongest, and most sacred.

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Most of the remaining free energy produced during the citric acid cycle is A. used to synthesize GTP. B. used to reduce electron carriers. C. lost as heat. D. used to reduce

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Most of the remaining free energy produced during the citric acid cycle is B.used to reduce electron carriers.

The citric acid cycle, also known as the Krebs cycle or the tricarboxylic acid cycle, is a series of chemical reactions that occur in the mitochondria of eukaryotic cells. The cycle oxidizes acetyl-CoA to carbon dioxide and water, producing high-energy electron carriers such as NADH and FADH2. These electron carriers are then used in the electron transport chain to generate ATP through oxidative phosphorylation. The electron carriers generated in the citric acid cycle carry electrons to the electron transport chain, which uses the energy from the electrons to pump protons across the inner mitochondrial membrane, creating a proton gradient. The energy stored in this gradient is then used to drive ATP synthesis. Therefore, most of the remaining free energy produced during the citric acid cycle is used to reduce electron carriers.

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describe the cells of the upper epidermis.

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Answer:

Upper epidermis

This is a single layer of cells containing few or no chloroplasts. The cells are quite transparent and permit most of the light that strikes them to pass through to the underlying cells. The upper surface is covered with a waxy, waterproof cuticle, which serves to reduce water loss from the leaf.

Explanation:

the right common carotid artery branches directly off the

Answers

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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what is three components of blood?

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Explanation:

plasma

red blood cells

platelets

Can someone make a cladogram for the organism "Giant Mantaray" please

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Answer:

See Attachment for a cladogram for the organism "Giant Mantaray"

Explanation:

Here is some additional information that may be helpful in constructing a cladogram for the giant manta ray:

The subclass Elasmobranchii is part of the class Chondrichthyes, which also includes the subclass Holocephali (chimaeras).Chondrichthyes is part of the superclass Gnathostomata, which includes all jawed vertebrates.Gnathostomata is part of the subphylum Vertebrata, which includes all vertebrates.Vertebrata is part of the phylum Chordata, which includes all animals with a notochord at some point in their life cycle.

Mendel hypothesized that reproductive cells have only one factor for each inherited trait. This hypothesis is supported by which observation? answer choices A. Haploid cells are produced by mitosis. B. Diploid cells are produced by mitosis. C. Haploid cells are produced by meiosis. D. Diploid cells are produced by meiosis.

Answers

Answer:

dipliod cells produced meiosis

How are eukaryotic cells different from prokaryotic cells? Select the TWO answers that are correct. O Prokaryotic cells have a nucleus, whereas eukaryotic cells do not. O Prokaryotic cells use RNA, whereas eukaryotic cells use DNA. O Eukaryotic cells have organelles, whereas prokaryotic cells do not. O Eukaryotic cells have ribosomes, whereas prokaryotic cells do not. O Prokaryotic cells are generally smaller than eukaryotic cells.

Answers

Answer:

O Eukaryotic cells have organelles, whereas prokaryotic cells do not.

O Prokaryotic cells are generally smaller than eukaryotic cells.

Explanation:

Eukaryotic cells have membrane-bound organelles.

Prokaryotic cells are generally smaller than eukaryotic cells because they grow and reproduce too fast.

an analogous trait between sharks and some mammals, such as dolphins, can be found in the shared streamlined bodies for moving rapidly through the water. group of answer choices true false

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True. Sharks and some mammals, such as dolphins, share the analogous trait of having streamlined bodies that allow them to move rapidly through the water.

How these analogous trait helps in moving rapidly through the water?

The streamlined body shape reduces drag and allows for more efficient swimming, which is beneficial for both predators and prey in aquatic environments. This is an example of convergent evolution, where different species evolve similar traits independently in response to similar environmental pressures.

Convergent evolution refers to the process by which unrelated organisms evolve similar traits or characteristics due to living in similar environments and facing similar selective pressures. In other words, two or more unrelated species living in similar environments can evolve similar body structures or functions to adapt to their environment and increase their chances of survival.

In the case of sharks and some mammals, such as dolphins, they live in aquatic environments where the ability to swim rapidly and efficiently is crucial. Therefore, both sharks and dolphins have evolved similar streamlined bodies to reduce drag and increase their swimming speed. Sharks have a fusiform body shape, which is elongated and tapered at both ends, allowing them to move through the water with minimal resistance. Similarly, dolphins also have a fusiform body shape, which is streamlined and hydrodynamic, allowing them to swim rapidly through the water.

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If a mutation in p53 gene is detected at the g1 checkpoint what mechanism is present that may prevent a cell from becoming cancerous?

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If a mutation in p53 gene is detected at the g1 checkpoint, the mechanism which is present that may prevent a cell from becoming cancerous is as cell destruction mechanism.

What is Mutation?

This is referred to as an alteration in the nucleic acid sequence of the genome of an organism, virus, or extrachromosomal DNA.

Cells in which p53 is deleted or mutated lose the G1 checkpoint and no longer arrest at the G1/S transition. However, the self-destruction mechanism ensures that damaged DNA is not passed on to daughter cells and is important in preventing cancer.

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The rough ER is so named because it has an abundance ofA.MitochondriaB.LysosomesC.Golgi bodiesD.Ribosomes

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The reason that rough Endoplasmic reticulum is thus called is that it contains many ribosomes.

Endoplasmic reticulum is referred to as "rough" because ribosomes are present on its outer surface, which is the surface that comes into touch with the cytoplasm.

RER is distributed throughout the cytoplasm in clusters of flat cisternae. In hepatocytes, it is more frequently found in the periinuclear, pericanalicular, and subbasilar regions, and it is more prevalent in periportal cells than that in centrilobular cells.  The translocon is the ribosome's binding location on the endoplasmic reticulum.

(The rough ER is so named because it has an abundance of __ on it.

A) Mitochondria B) Lysosomes C) Golgi bodies D) Ribosomes E) Vesicles)

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What is called, varieties developed by combining genetic material from other populations

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Varieties developed by combining genetic material from other populations are called hybrids. Hybrids are created by cross-breeding two or more distinct populations or species to produce offspring.

This technique is commonly used in agriculture to produce crops with desirable characteristics such as improved yield, disease resistance, and drought tolerance. In addition to agriculture, hybridization can occur naturally in the wild and is an important mechanism for the evolution of new species.

Hybridization is a common practice in plant and animal breeding, where breeders intentionally cross-genetically different parents to create offspring with specific traits beneficial for human use. For example, hybrid crops are commonly produced in agriculture by crossing two different parent varieties to produce a new hybrid variety with improved characteristics such as better yield, quality, and disease resistance.

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What is called, varieties developed by combining genetic material from other populations?

what do we call a microbial culture consisting of two or more species of bacteria?

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A microbial culture which consists of two or more than two species of bacteria is known as a mixed culture.

Bacteria are basically unicellular prokaryotes which do not happen to contain a well-defined, membrane bound nucleus or organelles in its cell body and has a single circular chromosomes. Bacteria mostly exist in colonies and can be grown in labs and the process is known as culturing of bacteria.

There are a number of different types of bacterial cultures. One of them is pure culture. A pure culture is a bacterial culture which contains only one type of bacteria, A mixed culture is a culture which contains two or more than two types of bacteria.

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both the tricuspid and mitral valves have string like structures that ancore them and prevent them from inverting. what is the name of these heart strings?

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The string-like structures that anchor and prevent the tricuspid and mitral valves from inverting are called chordae tendineae.

As per the question given,  

These are strong fibrous cords that connect the valves to the papillary muscles, which are small muscles located in the heart wall. The chordae tendineae act like guide ropes, keeping the valve leaflets from flipping inside out or bulging into the atria when the ventricles contract.

The strength and integrity of these chordae tendineae are crucial for maintaining proper heart function and preventing valve disorders, such as regurgitation, where blood flows back into the atria instead of forward into the rest of the body.

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The rate of diffusion increases if the _____.(a) concentration gradient decreases.(b) the temperature of a solution decreases.(c) the viscosity of a solution decreases.(d) All of these are correct.

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(c) the viscosity of a solution decreases. Diffusion can change at a different rate depending on the physical characteristics of the particular solution.

Diffusion is influenced significantly by environmental factors including temperature and solvent density. Depending on the kinds of molecules present in the solution, the viscosity of a particular solution can differ. Molecular mixing that takes place during diffusion is less likely as viscosity rises. Thus, as viscosity decreases, the rate of diffusion increases. Diffusion is significantly influenced by viscosity and density. Lower diffusion rates are anticipated. The particles can move more quickly and diffuse more rapidly if the medium is less thick or viscous.

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Question 30. Which of these statements does not offer support for the scientific importance of the schuenzel et al study?schuenzel et al submitted. Docx few hypersaline sediment microcommunities have been sampled. Bacteria communities were sampled temporally (over multiple years) and spatially (over multiple locations). Bacteria were identified using the gene 16s rrna. Microbial communities play a major role in the ecosystem including contributing to nutrient cycling

Answers

Biology is the study of living things and how they relate to one another and to other elements of their environment.

This is crucial since, according to Cain et al., the definition of environment is the group of abiotic, or non-living, species that interact with live organisms, you can conclude that biology investigates energy to the extent that it is used by organisms.

According to research on rat learning and brain structure (Greenough et al., 1990; Wallace et al., 1992), early psychological exposure impacts the nervous system's development and determines a person's susceptibility to psychiatric problems later in life.

Learning organizes and reorganizes the brain, and various sections of the brain might be ready to learn at different periods. Learning alters the physical structure of the brain and structural changes affect the functional organization of the brain.

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What are the bones in hand called?

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The bones in the hand are called as the "metacarpal bones and the phalanges".

The metacarpal bones are the five long bones that connect the wrist to the fingers, while the phalanges are the smaller bones that make up the fingers. There are 14 phalanges in total, with three phalanges in each finger (except for the thumb, which has two phalanges) and two phalanges in the big toe.

The metacarpals are numbered 1 to 5, starting with the bone connected to the thumb and ending with the bone connected to the little finger. The metacarpal bones play an important role in providing support and stability to the hand, as well as facilitating movement and fine motor control of the fingers.

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Why are ectomycorrhizal fungi, or EMF, aptly named? a. Their hyphae form tree-like branching structures inside plant cell walls. b. They are mutualistic. c. Their hyphae form dense mats that envelop roots but do not penetrate the cell walls. d. They transfer nitrogen from outside their plant hosts to the interior.

Answers

Their hyphae form dense mats that envelop roots but do not penetrate the cell walls are known as Ectomycorrhizal fungi or EMF aptly.

What are Ectomycorrhizal fungi?

Ectomycorrhizal fungi (EMF) form mutualistic associations with the roots of many tree species. Unlike arbuscular mycorrhizal fungi (AMF), which penetrate the plant root cells, EMF form a dense sheath around the root tips and grow between the cells of the root cortex, forming a mantle or "enveloping" the roots. This mantle is composed of a network of hyphae that do not penetrate the root cell walls, hence the name "ecto-" (meaning outside) mycorrhizal fungi. The hyphae of EMF also form a dense mat or web-like structure in the soil surrounding the root system, which aids in nutrient and water absorption by the plant.

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which term describes the excessive stretching of a ligament?

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Ligaments, the strong bands of fibrous tissue that unite two bones in your joints, can be stretched or torn, resulting in a sprain.

Your ankle is where sprains occur most frequently. A muscle or tendon that has been stretched or pulled will experience an acute strain. Overusing muscles and tendons through extended, repetitive action causes chronic strains. A strain could result from not obtaining adequate rest when working hard.

A muscle or tendon that has been stretched or pulled will experience an acute strain. Overusing muscles and tendons through extended, repetitive action causes chronic strains. A strain could result from not obtaining adequate rest when working hard.

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Listed are the general terms for the different segments of the lymphatic pathways of the body. Place them in the correct order, starting at the tissues and ending at the veins in the thorax.A)Lymphatic capillariesB)Lymphatic vesselsC)Lymphatic trunksD)Lymphatic ducts

Answers

The correct answer to the question is (A) Lymphatic Capillaries. Lymphatic capillaries form organ networks, collecting lymphatic fluid containing redundant interstitial fluid, waste products, and cell debris.

Lymphatic capillaries combine to form larger lymphatic vessels.  The lymphatic pathways begin as small lymphatic capillaries' dead-end tubes. Lymphatic capillaries are thin-walled vessels closed at one end and drain interstitial fluid from the napkins.  

For illustration, the lumbar box drains lymph from the lower branches, lower abdominal wall, and pelvic organs; the intestinal box drains the abdominal viscera; the intercostal and bronchomediastinal caddies drain lymph from portions of the abdomen; the subclavian box drains the upper branch; and the jugular box rainspouts.

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which type of neural activity action potential or synaptic potential produces the eeg explain your answer speculate as to why the egg may be influenced in hyperventilation

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The eeg explain your answer speculate as to why the egg may be influenced in hyperventilation Electroencephalogram.

What is electroencephalogram used for?

The main use of an EEG is to detect and investigate epilepsy, a condition that causes repeated seizures. An EEG will help your doctor identify the type of epilepsy you have, what may be triggering your seizures and how best to treat you.

What are the risks of EEG?

EEGs are generally safe and painless, but there's a small risk of having a seizure during the test if you have epilepsy and flashing lights are used during the test. It's important to let your doctor know if you've had a seizure triggered by flashing lights in the past before receiving an EEG.

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how can the cell theory help to determine if the material is living or nonliving?

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The cell theory is a fundamental concept in biology that states that all living organisms are composed of one or more cells and that cells are the basic unit of life.

Nonliving materials, on the other hand, do not have cells and cannot carry out the processes that are essential for life. Therefore, the presence or absence of cells is a key factor in determining whether a material is living or nonliving.

Additionally, the cell theory states that cells arise from pre-existing cells through the process of cell division. This means that living organisms can reproduce and pass on their genetic information to their offspring through their cells. Nonliving materials, on the other hand, cannot reproduce through cell division.

By considering the principles of the cell theory, we can differentiate between living and nonliving materials based on the presence or absence of cells and the ability to reproduce through cell division.

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the mastoid sinuses are found in wich bone?

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The posterior (rear) portion of the temporal bone, one of the skull's bones, is called the mastoid portion. Many muscles can be attached to it (through tendons) thanks to its rough surface, which also possesses blood vessel holes.

Behind the ears is where you'll find the mastoid sinuses bone. It feels like a bony protrusion if you run your fingers up the neck behind the ear. The mastoid bone's inside is ventilated.

It is hence hollow as a result. The posterior portion of the temporal bone is known as the mastoid. The mastoid process is the name for the inferior conical projection of the mastoid portion.

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Correct Question:

Where are the mastoid sinuses located?

Many babies are born with light-colored hair. As they grow and become older, their hair color naturally becomes darker and will eventually become gray. Explain how gene expression causes these changes in hair color.

Answers

Answer:

An abundance of one type of melanin, called eumelanin, gives people black or brown hair. An abundance of another pigment, called pheomelanin, gives people red hair. The type and amount of melanin in hair is determined by many genes, although little is known about most of them.

Explanation:

the steroid hormone aldosterone has a short half-life for a steroid hormone—only about 20 minutes. what would you predict about the degree to which aldosterone is bound to blood proteins?

Answers

Aldosterone may not be as tightly linked to plasma proteins as other steroid hormones, according to the short half-life.

The action of aldosterone is completely opposed to that of the atrial natriuretic peptide released by the heart. The renin-angiotensin-aldosterone system includes aldosterone. Its half-life in plasma is under 20 minutes. The majority of aldosterone's effects are mediated through traditional nuclear receptors, which change gene transcription. Signaling mechanisms in traditional epithelial target tissues are fairly well understood. Aldosterone, however, has significant effects in tissues that are not epithelial, such as increased production of pro-inflammatory molecules and reactive oxygen species. It is still unknown how these effects are managed and how receptor specificity is kept.

The combination of genetic and environmental factors can be seen in the variation in aldosterone production. Despite the fact that environmental influences are extensively understood

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occurs when an animal responds to a second stimulus similar to the original CS without prior training with the second stimulus. EX: Pavlov trained dogs to salivate at the sight of a circle, and then found they would salivate at the sight of an oval as well.

Answers

The phenomenon described in the question is called stimulus generalization. It occurs when an animal or person responds not only to a specific stimulus but also to other stimuli that are similar in some way to the original stimulus.

In classical conditioning, stimulus generalization occurs when an animal or person responds to a conditioned stimulus (CS) that is similar but not identical to the original conditioned stimulus.

In the example given, the dogs were trained to salivate at the sight of a circle, which was the conditioned stimulus. After conditioning, they also salivated at the sight of an oval, which was similar in shape to the circle. This is an example of stimulus generalization.

Stimulus generalization is an important concept in learning and behavior because it helps explain how animals and people respond to stimuli in the environment. It can also be used to help train animals for specific tasks or to treat phobias and anxiety disorders in humans.

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which of the molecules listedd bwloc can form hydrogen bonds? for which of the molecules would dispersion forces be the only intermolecular forces

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Out of the listed molecules the molecules that can form hydrogen bonds for which of the molecules would dispersion forces be the only intermolecular forces are NH3 and HF.

The reason is that in order to form a hydrogen bond, a molecule must contain a hydrogen atom bonded to a highly electronegative atom like oxygen (O), nitrogen (N), or fluorine (F). Both NH3 and HF meet this requirement, as they have a hydrogen atom bonded to nitrogen and fluorine, respectively. In these molecules, the hydrogen atom carries a partial positive charge, while the electronegative atom carries a partial negative charge, creating a dipole-dipole interaction that can form a hydrogen bond with other molecules containing the same or similar electronegative atoms. H2 and HCl, on the other hand, cannot form hydrogen bonds as they do not contain hydrogen atoms bonded to highly electronegative atoms. H2 is a nonpolar molecule with no permanent dipole moment, so the only intermolecular force acting between H2 molecules is dispersion force. HCl is a polar molecule and can experience dipole-dipole interaction. However, it does not contain a hydrogen atom bonded to a highly electronegative atom, so it cannot form hydrogen bonds. Therefore, in HCl, the intermolecular forces are primarily dipole-dipole interaction and dispersion forces.

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The complete question is:

Which of the molecules listed below can form hydrogen bond? For which of the molecules would dispersion forces be the only intermolecular force? Give reasons for answer.

A. H2

B. NH3

C. HCl

D. HF

which characteristic do carbohydrates and triglycerides have in common?

Answers

The characteristic which is shared by the carbohydrates as well as the triglycerides is that they are formed by the same three elements which are the hydrogen, oxygen and carbon and are used in providing energy to the body.

Every single cell that is present in the body needs energy to perform its specific functions. This energy to the body and its cells is provided by the food that we take in our diet. The carbohydrates or the sugars are basically the main source of energy for the body followed by the proteins and the fat.

The triglycerides make up the fats and the carbohydrates are made up of a number of monomers and both of these macromolecules basically are formed of carbon, hydrogen and oxygen.

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Many scientists believe the oceans are becoming more acidic. They have studied these topic with regard to the earths oceans

Answers

Answer:

yes

Answered By Unish ©

Verified Answer ✅

Explanation:

Yes, many scientists believe that the oceans are becoming more acidic as a result of human activities, such as the burning of fossil fuels and deforestation. This is known as ocean acidification, and it occurs when carbon dioxide (CO2) from the atmosphere dissolves in seawater, producing carbonic acid. This process increases the concentration of hydrogen ions in the water, which lowers the pH and makes it more acidic.

Ocean acidification can have a number of negative impacts on marine life, including reducing the ability of organisms like corals and shellfish to form their hard protective structures, disrupting the food chain, and altering the behavior of fish and other animals. It can also have broader impacts on the Earth's climate system, as the oceans play a critical role in regulating the amount of CO2 in the atmosphere.

Scientists have been studying ocean acidification for several decades and have conducted numerous experiments to better understand its causes and impacts.

Answered By Unish ©

Verified Answer ✅

bodily movement produced by skeletal muscles is called

Answers

Answer:

it is called Physical Activity

Explanation:

Francis Crick proposed the adaptor hypothesis, and later the adaptor was discovered to be:
A) siRNA
B) amino acid
C) tRNA
D) mRNA
E) micro RNA

Answers

Francis Crick put forth the adaptor hypothesis, and tRNA was later found to be the adaptor. The correct answer is option(c).

Francis Crick OM FRS was an English microscopic wildlife expert, biophysicist, and neuroscientist. He, James Watson, Rosalind Franklin, and Maurice Wilkins acted important functions in understanding the curling form of the DNA particle.

Transfer RNA (shortened tRNA) is a narrow RNA fragment that plays a key duty in protein combination. Transfer RNA serves as a link (or adaptor) 'tween the emissary RNA (mRNA) particle and the increasing chain of amino acids that compensate for a protein.

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