phagocytosis, pinocytosis, and receptor-mediated endocytosis all involve

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Answer 1

Particles that cannot passively penetrate the cell membrane due to their size are taken inside via endocytosis. Large food particles are ingested via phagocytosis, whereas liquid particles are ingested via pinocytosis.

What is a "cell"?

the smallest unit of biology that may live independently and consists of all living creatures as well as the tissues of the body. A body's three basic structural elements are indeed the outer layer, nucleus, the cytoplasm. The membrane that surrounds each cell controls which chemicals enter and leave the cell.

Who created the definition of a cell?

Robert Hooke discovered the cell in 1665. Robert Hooke observed small structures that resembled miniature rooms when he examined a piece of bottle cork under a compound microscope. Because of this, he called these "rooms" "cells."

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Phagocytosis, Pinocytosis, And Receptor-mediated Endocytosis All Involve

Related Questions

Which of the following options is correct?The region of a long bone between the end and the shaft is known as the _____.a. Epiphysisb. Diaphysisc. Metaphysisd. Osseophysise. Medullary cavity

Answers

The region of a long bone between the end and the shaft is known as the  C. Metaphysis.

What is Metaphysis?

Metaphysis is the study of the underlying structure and meaning of language, literature, and thought. It is a branch of linguistics and philosophy that focuses on the analysis of words and symbols in their structural and functional contexts. Through the study of metaphysis, scholars can gain insight into the deeper meanings of language, literature, and thought. Metaphysis also examines the relationship between language and culture, as well as the relationship between language and the human mind. By understanding the underlying structure and meanings of language, literature, and thought, we can better understand ourselves and the world around us.

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which type of rna carries genetic instructions for building a specific protein?

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The form of RNA that includes the statistics for creating a protein is known as messenger RNA (mRNA) as it contains the statistics, or message, from the DNA out of the nucleus into the cytoplasm.

Each kind protein has a completely unique amino acid series and a particular characteristic withinside the cell. ribosomal RNA (rRNA) – a form of RNA that assists withinside the protein-making process. Three primary sorts of RNA are concerned in protein synthesis. They are messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA). rRNA bureaucracy ribosomes, which can be crucial in protein synthesis. A ribosome includes a big and small ribosomal subunit. Messenger RNA (mRNA) contains the genetic code from DNA in a shape that may be diagnosed to make proteins. The coding series of the mRNA determines the amino acid series withinside the protein produced.

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eukaryotes traditionally studied by microbiologists include the protozoa, helminths, and microscopic algae and

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Protozoa, helminths, tiny algae, and fungi are examples of eukaryotes that are typically investigated by microbiologists.

What of the following eukaryotes do microbiologists typically study?

Microbiologists traditionally focus on a few number of eukaryotes.These include helminths, microscopic fungus, microscopic algae, and protozoa. Infections in humans are not brought on by algae.

Which four groups do eukaryotic microbes belong to?

The most widely used classification acknowledges the "Whittaker" 5 kingdom structure and the four eukaryotic kingdoms as Versatility (prokaryotes), Animalia (Metazoa), Pteridophytes, Fungi, and Protista.

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Which of the following correctly describe(s) peptidoglycan?
- a network of many molecules that surround the cell
- a complex polymer containing both peptide and glycosidic bonds
- a single molecule
- the outer layer that protects cells from turgor pressure

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Peptidoglycan is describes the outer layer that protects cells from turgor pressure. Some have an outer layer of complex polysaccharide

Polysaccharides are one of several significant types of biomolecules. Carbohydrates are composed of long monosaccharide molecule chains.

These complex biomacromolecules are both structural components of plant cells and an essential source of energy for animal cells.

Examples of polysaccharides include starch, cellulose, and glycogen.

In the food sector, polysaccharides are employed as stabilisers and dietary fibre.

Bacteria can also create polysaccharides, such as when yoghurt is being made.

a large glucose molecule. It contains a number of small, chemically linked sugar molecules. sometimes referred to as glycosyl

A disaccharide and isomer of lactose and maltose are all common ingredients in our diet.

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Why did surrealists take up Freud's ideas about the unconscious mind? Explain, citing evidence from the text and the images

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The Surrealists took up Freud's ideas about the unconscious mind as a way to challenge the traditional beliefs and to explore the irrational and subconscious aspects of human experience.

Who are Surrealists?

Surrealism was a cultural movement that emerged in the late 1910s and early 1920s. It was a reaction against the percieved rationalization of society and was influenced by the works of Sigmund Freud and other psychoanalytic theories.

The movement is best known for its visual artworks and writings that feature dream-like, irrational, and absurd imagery. The goal of the movement was to access the unconscious mind and reveal the innermost desires, anxieties, and conflicts of the individual. Surrealists sought to challenge the conventions of reality and representation in art and literature.

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Your question is incomplete, but most probably your full question was:

Why did Surrealists take up Freud's ideas about the unconscious mind? Explain, citing evidences from the text and the images.

which type of mutation is most likely to undergo genetic drift in a population?

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The correct choice is (a) small population. Genetic drift happens whilst random activities alternate the allele frequencies in a populace.

This is maximum in all likelihood to arise in small populations, in which small random adjustments in allele frequencies will have a sizeable impact at the populace as a whole. Two essential examples of genetic drift are the bottleneck impact, wherein populace length is significantly decreased and allele frequencies are altered, and the founder impact, wherein a small variety of organisms depart a populace to located a brand new population with a specific gene pool. Small populations generally tend to lose genetic variety extra speedy than big populations because of stochastic sampling error (i.e., genetic glide). This is due to the fact a few variations of a gene may be misplaced because of random chance, and that is much more likely to arise whilst populations are small.

Thus, the correct option is a.

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Complete question:

which type of mutation is most likely to undergo genetic drift in a population?

(a) small population.

(b) widespread population.

(c) the absence of natural selection.

(d) response to natural selection.

having two different alleles for a particular gene are called?

Answers

Answer:

it is called heterozygous

which system is used first by the body to meet a sudden high energy demand?

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When there is a fast spike in energy demand, like when commencing a workout, initiating explosive hill sprints, throwing a discus, phosphagen system of energy transfer, which is anaerobic, does not require oxygen, is activated.

Which power source is used first?

Phosphagen System-

The system of phosphagen (ATP-PC) comes first. Adenosine triphosphate, or ATP as it is more often known, is a chemical that powers all motion, if you can remember biology from high school. To power each every action, from standing up to scaling a racing wall, your body breaks down ATP.

What is the body's fastest energy system?

The ATP-PC system, also known as the phosphoglycerate system, is the body's most immediate energy source. The body produces quick energy through this system, which also has a fast rate of delivery.

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whats the diffetrent of dorsal vs ventral

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Dorsal and ventral are terms used to describe the anatomical positioning of an organism or part of an organism relative to its surroundings. The dorsal side of an organism is the back or upper surface, while the ventral side is the underside or front surface.


The difference between dorsal and ventral is their location in the body. The term "dorsal" refers to the back or upper side of an organism, while the term "ventral" refers to the front or lower side of an organism.

For example, the dorsal fin of a fish is located on the top of its body, while the ventral fin is located on the bottom of its body. Similarly, the dorsal side of a human is the back, while the ventral side is the front of the body.

In anatomical terms, the dorsal side is also referred to as the posterior side, while the ventral side is referred to as the anterior side. These terms are used to describe the location of structures in the body relative to each other.

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Proteins make amino acids using L-amino acids, but peptidoglycan is made with D-amino acids. What are the different forms of amino acids called?

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A fine sheet of Y e and D e acid amino-alternating peptidoglycan, often known as murein, makes up the cell wall of gram-negative bacteria.

What exactly is an amino?

Histidine, isoleucine, hcl, arginine, homocysteine, phenyl, mercapto, tryptophan, and valine are the necessary amino acids. Alkylated, asparagine, aspartic acid, aspartic acid, and tyrosine are the non-essential amino acids. The monomer that compose proteins are amino acids.

An acid is what?

Acids give certain dyes a reddish tint and have a sour flavour. Some body-produced acids, such as stomach acid, can support organ function. Hydrochloric acid is a kind of acid. While a basic corrosive material changes red litmus paper to blue, an acid/ substance changes red litmus paper to red. An illustration of an acidic material

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In 3-5 sentences, describe the different forms of evidence you might use to analyze the evolution of alligators.

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About 245 billion years ago, the first Alligator ancestor was evolved.

what is evolution?

A process of development of living organisms from earlier forms in the history until now, is called evolution. It can also be defined as development of organisms over time in response to their environment.

During evolution of an alligator, first alligator ancestor evolved around 245 billion years ago that is late Triassic period. Earliest alligators were Postosuchus which was different from modern alligator in three aspects:

Leg formskull shapewalking/running gaits

Therefore, above evidences describes evolution of alligators.

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Name several advantages of the extensive compartmentalization that occurs in eukaryotic cells

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Increased efficiency, control, and specialization of cellular activities are made possible by compartmentalization in eukaryotic cells, which positively impacts cellular survival and function.

Several benefits result from the substantial compartmentalization that occurs in eukaryotic cells:

Effective separation of biochemical processes: Through compartmentalization, various biochemical reactions and processes that might not be compatible with one another can be divided.Compartmentalization allows accurate regulation of biochemical events and signaling pathways, improving control over cellular activities. For instance, oxygen availability, which may be managed at the level of the cell or the organism, can influence the activity of enzymes in the mitochondria.Protection of cellular components: Membranes can operate as a physical barrier to keep cellular components safe from toxins or other agents that could harm them.

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________ is the process by which nerve cells are coated with insulation that enhances the speed and efficiency of the information traveling through the nervous system.

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The process by which nerve cells are coated with insulation that enhances the speed and efficiency of the information traveling through the nervous system is called myelination.

Myelin is a fatty substance that forms a sheath around nerve fibers, allowing electrical impulses to travel along the nerve cell more quickly and efficiently. Myelination starts in infancy and continues through childhood and adolescence, with different parts of the brain and nervous system myelinating at different rates.

Myelination is required for normal nervous system function, and disruptions in the process can result in a variety of neurological disorders.

Multiple sclerosis (MS), for example, is a disease in which the myelin sheath is damaged and the nervous system is unable to effectively transmit signals, resulting in a variety of symptoms such as weakness, numbness, and difficulty with coordination and balance.

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8. What is an active site?

a. the reactant to which an enzyme binds

b. the specific place where a substrate binds on an enzyme

C. a molecule that acts as a biological catalyst

d. a mixture that maintains the pH of a solution within a specific range

Answers

Answer:a

Explanation:

What adaptation does a cactus plant have to protect itself?

Answers

Cactus plants have several adaptations to protect themselves in their arid environments, including: Spines, Thick, waxy skin, Reduced leaves, and Water storage.

Spines: Cactus plants have sharp, needle-like spines that deter animals from eating them and also help to reduce water loss by creating a barrier around the plant that reduces air flow and evaporation.Thick, waxy skin: Cactus plants have thick, waxy skin that helps to prevent water loss through transpiration.Reduced leaves: Many cactus species have reduced leaves or no leaves at all, which reduces surface area for water loss and conserves water.Water storage: Cactus plants have specialized water storage tissues, such as thick stems or enlarged roots, that allow them to store water for long periods of time and survive in arid environments.

These adaptations allow cactus plants to survive in harsh, water-limited environments by reducing water loss and increasing their ability to store and conserve water.

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true or false: Bacterial cells only contain one molecule of peptidoglycan per cell.

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There is just one peptidoglycan molecule per bacterial cell. This statement is false.

Bacterial cells generally contain multiple molecules of peptidoglycan, which is a unique structural component of their cell walls. Peptidoglycan is a polymer made up of repeating units of two sugar molecules, N-acetylglucosamine and N-acetylmuramic acid, which are linked together by peptide bonds.

In most bacterial cell walls, the peptidoglycan forms a mesh-like structure that surrounds the cell membrane and provides structural support and protection to the cell. The thickness and composition of the peptidoglycan layer can vary between different bacterial species, and can also be influenced by environmental factors and growth conditions.

In some bacterial species, such as Gram-positive bacteria, the peptidoglycan layer can be very thick, while in others, such as Gram-negative bacteria, the layer is relatively thin and surrounded by an outer membrane. The exact structure and organization of the peptidoglycan layer can also be influenced by the presence of other proteins, enzymes, and polysaccharides in the bacterial cell wall.

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Consider the following situations, and determine when a simple stain could be used instead of a Gram stain. a.) An unknown species of bacteria is being characterized and identified. b.) A wound specimen is being examined. c.) A microbiologist is trying to determine whether a specimen contains bacteria or fungi. d.) A specimen is suspected to contain multiple species of bacteria.

Answers

When a simple stain  used instead οf a Gram stain ,A specimen is suspected to contain multiple species οf bacteria.

What is Gram stain pοsitive and negative?

Purple is the cοlour of a Gram stain. In a sample, the bacteria will either remain purple or change tο pink or red when the stain and bacteria combine. Gram-pοsitive bacteria are those that remain purple. Bacteria are Gram-negative if they turn pink or red.

Why is Gram staining impοrtant and what does it entail?

The mοst significant staining technique used in microbiοlogy is the gramme stain. Gram pοsitive and negative organisms are distinguished from one another using it. It is therefοre a differential stain. Cell wall differences between gramme pοsitive and gramme negative organisms allow for differentiation.

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why do you think scientist need to organize earths history into a time scale?

Answers

Answer:

The reason behind why they organize the earths history is:

It makes studying earth a lot easier and it helps so they can see when major events takes place or took place.

Explanation:

How important is the geologic time scale in Earth's history?

The time scale is a important tool reason is it helps scientist to determined the earths history.

A human gene carries a certain disease from a mother to her child with a probability rate of 0.36. That is, there is a 36% chance that the child becomes infected with the disease. Suppose a female carrier of the gene has three children. Assume that the infections, or lack thereof, are independent of one another. Find the probability that all three of the children get the disease from their mother. Round to three decimal places.
A. 0.147 B. 0.262 C. 0.953 D. 0.047

Answers

P(all three children get the disease) = [tex]0.36 * 0.36 * 0.36 = 0.047[/tex] (rounded to three decimal places)

Therefore, the answer is (D) 0.047.

What is independent assortment?

Independent assortment is the random distribution of homologous chromosomes during the formation of gametes. This process is independent of other chromosome pairs and increases the genetic diversity of offspring.

Assuming that the probability of a child getting the disease from its mother is 0.36, the probability of a child not getting the disease is 0.64. Since the infections are independent events, the probability that all three children get the disease is the product of the probabilities of each child getting the disease:

P(all three children get the disease) = [tex]0.36 * 0.36 * 0.36 = 0.047[/tex] (rounded to three decimal places)

Therefore, the answer is (D) 0.047.

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which statement best describes asexual reproduction but not sexual reproduction

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The statement that best describes asexual reproduction but not sexual reproduction is A. reproduction with a single parent.

What is involved in Asexual reproduction?

Asexual reproduction involves the formation of offspring from a single parent, without the fusion of gametes. This process can occur through various mechanisms such as budding, fission, fragmentation, or spore formation. In contrast, sexual reproduction involves the fusion of gametes from two parents, resulting in offspring with genetic variation.

Pollination is a process that occurs in sexual reproduction, where pollen grains from the male reproductive organs of one flower are transferred to the female reproductive organs of another flower, leading to the formation of seeds.

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The complete question is:

which statement best describes asexual reproduction but not sexual reproduction

A. reproduction with a single parent

B. reproduction with no parents

C. pollination

D. reproduction with two or more parents

Give explanation please

true or false: Soil microbes from the tropics are an excellent source of new antibiotics because of the minerals present in the soil.

Answers

Soil microbes from the tropics are an excellent source of new antibiotics because of the minerals present in the soil is true.

Since the Alfisols and Ultisols make up the vast majority of tropical soils. Despite the fact that these soils are ancient and have decreased fertility, the nutrients might remain in place because of the dry season. Most of the time, the tropical rain forest receives enough rain, but the soil lacks organic matter due to the quick breakdown processes.

The soil microbes contains various microorganisms, including bacteria, fungi, and others that aid in the decomposition of dead plants and animals. By dissolving the corpses of plants and animals into tiny particles, these bacteria aid in cleaning the environment. As they consume these dead organisms, these bacteria release nitrogenous compounds that are necessary for plant growth.

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List and define key vocabulary needed to understand how anesthesia works. (At least 5)​

Answers

The key vocabulary needed to understand how anesthesia works include :

AnestheticLocal anesthesiaNeuromuscular blocking agentsAnesthesiologist

What are some key terms in anesthesia ?

Anesthetic is a  drug or substance that induces a loss of sensation or consciousness. A type of anesthesia that induces a loss of sensation in a specific area of the body, but does not cause unconsciousness is called local anesthesia.

Drugs that paralyze muscles, which are often used in conjunction with anesthesia to facilitate medical procedures are called Neuromuscular blocking agents and an anesthesiologist is a medical doctor who specializes in administering anesthesia and monitoring the patient's vital signs during medical procedures.

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A distinct sequence of nucleotides forming part of a chromosome, the order of which determines the order of monomers in a polypeptide or nucleic acid molecule which a cell (or virus) may synthesize.Choose matching term1Gene2Dna3Mutation4Chromosome

Answers

The matching term for the given definition is Gene. A gene is a specific sequence of nucleotides present in DNA that encodes information for the synthesis of a functional RNA molecule or a protein.

The sequence of nucleotides in a gene determines the order of amino acids in a protein, which is critical for its structure and function. Genes are present on chromosomes, and mutations in their sequence can lead to changes in the encoded protein, which can have various consequences for the organism. Thus, genes are the basic units of heredity, and their expression is crucial for the proper functioning and development of all living organisms.

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If a solute has really strong bonds between its particles, would you expect the resulting solution to get hot or cold? explain your reasoning.

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If a solute has really strong bonds between its particles, such as ionic bonds or covalent bonds, it would be expected that the resulting solution would get hot upon dissolution.

The dissolution process involves breaking the bonds between the solute particles and allowing the solvent molecules to surround and interact with the solute particles. In order for the solute to dissolve, the solvent molecules need to overcome the strong intermolecular forces holding the solute particles together.

This process requires energy, and when the bonds between the solute particles are particularly strong, it will take a lot of energy to break them apart.

As the solute particles are surrounded by solvent molecules, they become more stable and have lower potential energy than they did when they were in a pure state. This release of energy, known as the heat of the solution, can cause the solution to get hot.

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what type of epithelial tissue is best suited to form the outer layer of the skin if the skin is exposed to friction and has a protective function?

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Stratified squamous epithelium is the best suited tissue to be in the outer layer of skin, providing protection against any mechanical loss or friction.

Epithelial tissues are present in core parts of the body and different types of tissue perform varied functions. Stratified squamous epithelium tissue serves as a protective function against invasion of microorganisms, controlling water loss etc.

These are the outer tissues present right above your skin and also known as Epidermis. The well sustained functioning of this layer is also due to the presence of two layers in its structure i.e dermis and epidermis(thin outer portion).

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One billion people in developing countries depend on fish for their primary
source of protein How can this protein from seafood, like fish, help an
individual maintain good health?

Answers

Answer:

Seafood, particularly fish, is an excellent source of protein, vitamins, and minerals that are essential for good health. Fish is low in saturated fats and high in omega-3 fatty acids, which have been linked to a variety of health benefits, including reducing the risk of heart disease, stroke, and some types of cancer.

Protein is essential for building and repairing tissues in the body, and it is especially important for maintaining and building muscle mass. Fish protein is a high-quality protein, meaning it contains all the essential amino acids needed for the body to function properly.

In addition, seafood is a good source of vitamin D, which is essential for healthy bones, teeth, and muscles. It also contains minerals such as zinc, iron, and selenium, which are important for maintaining good health.

For people in developing countries who depend on fish for their primary source of protein, consuming fish can help prevent malnutrition and other health problems associated with protein deficiency. However, it is important to note that overfishing and environmental pollution can affect the quality and availability of fish in certain areas, which can have negative impacts on the health of those who depend on fish for their diet.

What is the difference between superior and posterior?

Answers

Superior is the upper region. While posterior is the back region.

which of these choices is not one of the characteristics that supports the hypothesis that land plants evolved from green algae?

Answers

Living in freshwater settings is not among the traits that supports the theory claim land plants originated from green algae. Green algae as well as land plants both do.

What is green algae, exactly?

Green algae are creatures that are distinguished by their whiplash-smooth flagella containing chlorophylls a and b as the primary photosynthetic pigments, starch found within the chlorophyll as the primary storage product, and these traits.

Where can you find green algae?

In fresh water, green algae can be seen floating freely. The majority of species inhabit lakes, wetlands, and waterways and are minuscule. If there are enough of these algae, the entire lake may turn green and look painted. Early to midsummer is when green algal blooms are most common.

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The complete question is:

Which of these choices is not one of the characteristics that supports the hypothesis that land plants evolved from green algae?

a. Green algae and land plants both live in freshwater habitats.

b. Green algae and land plant chloroplasts contain the photosynthetic pigments chlorophyll a and b and the accessory pigment β-carotene.

c. The cell walls, sperm, and peroxisomes of green algae and land plants are similar in structure and composition.

d. The chloroplasts of green algae and land plants synthesize starch as a storage product.

would a deletion of two base pairs have a greater consequence if it occurred in an intron or in an exon?

Answers

The deletion of two base pairs will have a greater effect on the exon because introns are ultimately removed from the pre m-RNA but exons remain within.

Exons are the segment of gene in the RNA molecule that code for some characteristic and thus are kept intact when the splicing process occurs over pre m-RNA. Any change in the genetic sequence of exon can lead to disruption in gene expression.

Pre m-RNAs are the primary transcript formed from the DNA by the process of transcription. This is not a fully functional m-RNA because it consists of various gene segments not required for gene expression called introns.

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Question: Without Autonomic Nervous System Input Resting Heart Rate Would Be Approximately \[ \Begin{Array}{L} 70-80 \Text { Beats/Min } \\ 50-60 \Text { Beats/Min } \\ 100-120 \Text { Beats/Min } \\ 200-220 \Text { Beats/Min } \End{Array} \]

Answers

Without Autonomic Nervous System Input Resting Heart Rate Would Be Approximately 100-120 beats per minute.

Heart rate is regulated by the Autonomic Nervous system which includes the combined work of sympathetic and parasympathetic nervous system.

Heartbeats generate from rhythmic pacing and they get discharged at the sinoatrial node (SA). This whole process of generating and discharging occurs within the heart itself.

Sinoatrial node is located at the right atrium and is a part of the intrinsic nervous system. In the absence of external hormonal signals and neural signals, the pacing rate of the SA node will be 100-120 beats per minute.

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