what are deep ocaen currents

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Answer 1

Deep ocean currents are described as continuous, directed movement of sea water generated by a number of forces acting upon the water, including wind, the Coriolis effect, breaking waves, cabbeling, and temperature and salinity differences.

Where are deep ocean currents?

Deep ocean currents generally occur in the higher latitude regions of the Earth, such as North Atlantic Deep Water and Antarctic Bottom Water, and from these frigid poleward regions the deep currents flow at a relatively slow pace towards the equator.

The deep ocean currents play an important role in controlling the climate by moving heat from the equator toward the poles.

They also carry nutrients and food to organisms that live permanently attached in one place, and carry reproductive cells and ocean life to new places.

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which division of the piriform cortex produces representations of the features of odorant molecules?

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The anterior division of the piriform cortex produces representations of the features of odorant molecules.

Piriform cortex is a region of the brain also called as pyriform cortex, situated in the cerebrum region. Its function is to regulate the mechanisms of the olfactory experiences. It is at the junction of the temporal and frontal lobes.

Odorant molecules are the ligands that bind to the odorant receptors present at the neurons of the body involved in the olfactory responses. They are names odorants because they perceive smell. The receptors of the odorant molecules are GPCRs. Odorants are of various types based on the type of functional group they possess.

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the archenteron of a mesolecithal embryo with holoblastic cleavage eventually develops into which structure?

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The archenteron of a mesolecithal embryo with holoblastic cleavage eventually develops into digestive tract.

What do you mean by archenteron?

The archenteron (gastrocoel) is a hollow within an animal embryo there at gastrula stage of development. The anus, or , and the blastopore, which serves as the animal's entrance and entry to the outside world, are both formed by this opening. The stomach cavity is finally formed, in whole or in part, by the archenteron.

Where may one find archenteron?

The growing embryo's primitive gut, known as the archenteron or digestive tunnel, develops during gastrulation. It is the core cavity inside an embryo at the gastrula stage of development.

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what is generally the starting material for whole-genome shotgun sequencing of genomic dna? see section 16.1

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The starting material for whole-genome shotgun sequencing of genomic DNA is overlapping fragments of genomic DNA.

The DNA sequence of an organism's genome can be ascertained in a lab using shotgun sequencing. The process entails randomly dividing the genome into tiny DNA fragments that are then individually sequenced. To reconstruct the genome, a computer program searches for overlaps in the DNA sequences and uses those overlaps to put the fragments back together in the right order.

Shotgun sequencing involves randomly slicing the genome into small, sequencing-ready pieces (1 to 2 kbp in length). After being ligated into an appropriate vector, the fragments are partially sequenced. Each fragment can yield 400–500 bp of sequence in a single sequencing run.

Hence, small fragments are sequenced and organized with computer.

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Which of the following is a characteristic of offspring produced by meiosis, and does not characterize offspring produced by mitosis?

A.
four haploid cells with chromosomes and alleles that are genetically different than the parents

B.
four haploid cells with chromosomes and alleles that are genetically identical to the parents

C.
two diploid cells with chromosomes and alleles that that are genetically different than the parents

D.
two diploid cells with chromosomes and alleles that are genetically identical to the parents

Answers

Answer:

the answer is B I did this last week

Why are the differences between prokaryotic and eukaryotic translation of mRNA useful to humans?

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For the regulation of genes during nutritional shortage and stress, development and differentiation, nervous system function, aging, and illness, translational control in eukaryotic cells is essential. Prokaryotes are able to respond quickly to environmental cues because transcription and translation happen simultaneously in the cytoplasm.

what are Prokaryotes ?

Any organism without internal membranes is referred to as a prokaryote, usually written procaryote. These organisms lack a defined nucleus and other organelles.

what is eukaryotic ?

eukaryotic can be explained as a living things with nuclei in their cells. Eukaryotes include all animals, all plants, all fungi, and many unicellular creatures.

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Use complete sentences to explain how important the shape of an enzyme is.
Use the words: active site and denatured​

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Answer:

The shape of an enzyme is important because it determines the enzyme's function. The active site is the specific area on the enzyme where chemical reactions occur. The active site is specific to the type of substrate that the enzyme is designed to work with, and its shape must match the shape of the substrate in order to facilitate a chemical reaction. If the shape of the enzyme changes, the active site may no longer match the shape of the substrate, and the enzyme will no longer be able to function properly. This process is known as denaturation, and it occurs when the enzyme's shape is altered due to changes in temperature, pH, or other environmental conditions. When an enzyme is denatured, it becomes inactive and is no longer able to catalyze chemical reactions. Therefore, the shape of an enzyme is critical to its function, and any changes to its shape can significantly impact its ability to carry out chemical reactions.

Explanation:

how to proteins with nuclear localization signals, that are bound to nuclear import receptors enter the nucleus question 3 options: by hydrolyzing a molecule of atp to adp and phosphate by interacting with the phenylalanine-glycine (fg) repeats on the fibril proteins of the nuclear pore complex by cleaving the nuclear localization signal from the cargo protein by binding a molecule of ran-gdp

Answers

Proteins with nuclear localization signals, that are bound to nuclear import receptors enter the nucleus through nuclear pore complex.

How does proteins with nuclear localization signals enter the nucleus?

Proteins having nuclear localization signals are transported inward through the nuclear pore complexes, whereas RNA molecules and newly made ribosomal subunits contain nuclear export signals that direct the active transport outward through pore complexes.

Nuclear proteins are transported actively through nuclear pores by a selective and mediated process. The process is mediated by nuclear localization signal and can be divided into two steps, that are : targeting to the pores and translocation through the pores.

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This form of contraception works by preventing ovulation, making cervical mucus thicker, and changing the lining of the uterus. which form of contraception does this describe?

Answers

Answer:

inplant

Explanation:

Which of these shows an example of an insertion mutation?

Answers

The figure 3 shows an example of an insertion mutation.

What do you mean by insertion mutation?

An insertion is the addition of one or more nucleotide base pairs into a DNA sequence. This can often happen in microsatellite regions due to the DNA polymerase slipping.

Moreover, an insertion changes the DNA sequence by adding one or more nucleotides to the gene. As a result, the protein made from the gene may not function properly.

An insertion mutation occurs when an extra nucleotide is added to the DNA strand during replication. This can happen when the replicating strand "slips," or wrinkles, which allows the extra nucleotide to be incorporated.

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When chuncks of a big mass start to separate

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Fixed-size chunk de-duplication is carried out at routers rather than on hosts. The considered packet is first intercepted in a router in real time or at the network endpoints.

What is Chunk size?

The largest physical disc unit devoted to database server data storage is called a chunk. Administrators can allocate disc space in a comparatively big unit thanks to chunks. The largest possible chunk size is 4 TB. The maximum number of chunks is 32,766.

She divided the fruit into big pieces. She speaks on the phone for a sizable portion of her day. He invested a lot of time on the undertaking.

A total of 65,536 blocks are divided into chunks that are 16 blocks wide, 16 blocks long, and 256 blocks high.

MongoDB uses chunk sizes that are 128 MB by default. You have the option of changing the chunk size. Think about the effects of altering the default chunk size: At the expense of more frequent migrations, small pieces result in a more even distribution of data.

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an oversimplified or exaggerated generalization used to describe or distinguish a group is called

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Answer: An oversimplified or exaggerated generalization used to describe or distinguish a group is called a stereotype.

size of braincase cranial shape- is the skull longer front to back? sagittal crest? sagittal keel? what is the shape of the occipital region? is there a nuchal torus? height of skull. how much skull is above the supraorbital ridge?

Answers

The modern human is thought to have the largest cranium, measuring between 120 and 1700 cubic centimetres 3. The head shrank in size and grew more compact, reaching its widest point at the base of the skull.

Brain/body size ratio = cranial capacity (in cubic centimetres). body mass (in kg) Complete the table with the specified species. Species skull capacity (cc) Body Weight Approximation on Average (kg) Body to Brain Ratio gorilla 395 54 7.31 chimpanzee 506 120 4.22 6. The scapular is extended at the suprascapular area and is shorter and broader, making it more mobile and arboreal, whereas the humeral head is rounded and globular. These faunal remains were discovered at Station 1 with the specimen at Station 2 Paleoenvironment.

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sometimes, plants will reward their pollinators with something that benefits them. what is an example of a plant attractant that is also a pollination reward?(1 point)

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Animals that perform pollination while visiting the bloom are rewarded with floral nectar, which is placed inside the flower close to the reproductive organs.

The majority of people are aware that flowers frequently generate nectar, which is vital for promoting pollination and supplying food for hummingbirds and insects. Few people are aware of the extra-floral nectaries, nectar-producing glands that are structurally separate from the flower and found in more than 2,000 plant species in more than 64 families, though they exist in these plants.

Animals that perform pollination while visiting the bloom are rewarded with floral nectar, which is placed inside the flower close to the reproductive organs. Extra-floral nectar has a role in so-called indirect defense by luring predatory herbivores—usually ants—or by discouraging them from feeding on the plant.

Therefore, the two forms of nectar-producing partnerships between plants and animals have long served as textbook illustrations of symmetric mutualism, in which plants supply food or benefits to animals in exchange.

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Answer: Nectar

Explanation:

The otter allele is found in Lane 2. To which population does it belong

Answers

DNA fingerprints are all the genetic markers used to differentiate individuals or populations. In the exposed example, the otter from lane two belong to population 2, Esther passage, because its band is 890 PB in length.

What is DNA fingerprint?

We can refer to DNA fingerprint as the group of genetic markers that differentiate an individual from another individual, or a population from another population.

Genetic markers are unique DNA fragments that are not identical in all individuals or populations. These fragments provide unique information about the individual or the population, so they are usually used to analyze differences, identify a progenitor, or solve a crime.

DNA prints are used to identify the population origin of an individual, or filial relationships, among others.

In the exposed example, we have DNA samples of 8 individuals belonging to three different populations.

Two alleles are used as markers to identify the individual belonging to each group.

Population 1 ⇒ Unakwik inlet ⇒ 610 and 890 bp band length ⇒ both allelesPopulation 2 ⇒ Esther passage ⇒ 890 bp band length ⇒ one allelePopulation 3 ⇒ Wells bay ⇒ 610 bp band length ⇒ the other allele

To identify individuals belonging to each group, we just need to count the number of band they express.

In the case of individual number 2 (lane 2), there is only one band. So we can dismiss population 1 (because this population has the two alleles).

The expressed band is approximately 890 pb length. It means that it belongs to population 2, Esther passage.

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In chloroplasts, _____ is the source of the electrons needed for photosynthesis.

Answers

Answer: In chloroplasts, water is the source of the electrons needed for photosynthesis.

Explanation:

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antibodies are capable of binding up several antigens at once in order to reduce the number of infectious agents that need to be dealt with. this function of antibodies is known as group of answer choices opsonization. neutralization. agglutination. complement fixation.

Answers

Antibodies are capable of binding up several antigens in order to reduce infectious agents that need to be dealt with, this function of antibodies is known as agglutination.

Antibodies are proteins that defend you while an unwanted substance enters your body. Produced via your immune device, antibodies bind to these undesirable substances which will put off them out of your gadget.

Antibodies are proteins produced by means of the immune gadget in reaction to contamination. They're an vital part of the frame's defence device as they work to smash sickness-causing organisms and block them from infecting human cells.

Antibodies are positioned in various areas of your frame, such as your skin, lungs, tears, saliva and even breast milk. In reality, high quantities of antibodies are present in colostrum.

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trace the movement of a hormone from the organ that produces it to its target binding site (organ or tissue). how does this hormone get from the organ/gland that produces it to its binding site

Answers

Once hormones find a target cell, they bind with specific protein receptors inside or on the surface of the cell and specifically change the cell's activities.

The endocrine organs, which produce chemicals—the hormone—into the extracellular fluid, are responsible for sending these messages. Throughout the body, hormones are largely delivered via the circulation, where they connect to receptors on target cells to produce a specific reaction. Because it has the hormone's receptors, a target cell reacts to the hormone. In other words, a cell is a target cell for a hormone if it has functional receptors for that hormone, and a cell cannot be directly impacted by a hormone if it does not have a functioning receptor. Blood, which is pumped throughout the circulatory system, carries hormones throughout the body. Hormones have the power to control activity in tissues and organs that are not located near the glands that produce them.

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a major function of th1 cells is to activate macrophages. which molecules expressed by th1 cells are essential for this function?

Answers

A major function of th1 cells is to activate macrophages. IFN-γ is the  molecules expressed by th1 cells are essential for this function.

IFN-, a cytokine secreted by Th1 cells that is unique to them, stimulates macrophages and DCs, improving their capacity to destroy intracellular microorganisms and deliver antigens to T lymphocytes. Tumor necrosis factor (TNF), lymphotoxin, and IL-2 are among substances that Th1 cells can release that help with antimicrobial defence.

Through cell interaction and localised IFN- release, TH1 cells stimulate infected macrophages. This causes a sequence of metabolic reactions that transform the macrophage into an effective effector cell for fighting microorganisms.

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plagioclase feldspar has the chemical formula, caal2si2o8. is plagioclase feldspar a mafic or felsic silicate mineral?

Answers

Plagioclase  feldspar is a silicate of aluminum. A type of aluminum-containing silicates known as feldspar is often referred to as "non ferromagnesian silicates" or "light silicates" because they don't include iron or magnesium.

Plagioclase ((Ca,Na)AlSi₃O₈) and orthoclase (KAlSi₃O₈) are two types of feldspars. Keep in mind that the additional metals provide the plagioclase a distinct advantage over the orthoclase; the latter has potassium while the former has calcium or sodium. The feldspars are comparable in terms of their physical characteristics, and their lusters can range from glassy to pearly. They are relatively hard, with a Mohs hardness of around 6, and feature two planes of cleavage that intersect at or close to 90°.

The feldspar series also includes anorthite (CaAlSiO₈) and albite (NaAlSi₃O₈). These feldspar series members are on the extreme end.

The earth's feldspars are the most prevalent minerals.

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which autonomic ganglion, located anterior to the ear, receives parasympathetic axons from the glossopharyngeal nerve (cn ix)?

Answers

Parasympathetic, sympathetic, sensory, and motor roots can all be found in the otic ganglion.

All branches of the mandibular division of the trigeminal nerve receive postganglionic parasympathetic secretomotor fibres from the otic ganglion. Additionally, the parotid gland receives sympathetic vasomotor fibres from it. The infratemporal fossa's medial side and the tiny parasympathetic ganglion known as the otic ganglion are both situated just below the foramen ovale. It functions as the glossopharyngeal nerve's functional partner and innervates the parotid gland to stimulate salivation. The auriculotemporal nerve most likely sends signals to the superficial temporal artery from the otic ganglia. Because migraine attacks involve the superficial temporal artery, this is clinically intriguing.

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The founder effect is an example of _______.

Answers

Answer:

The founder effect is an example of genetic drift

explanation:

A population has members with the same appearance and features, such members encounter similar problems in the environment they live in. Some members of the population start living in a different place due to some reason. In that new area, they form a colony and start to adapt to different environments. This is called the founder effect. This brings change into sets of genes causing genetic drift.

which hormone is absolutely necessary for ovulation to occur? group of answer choices progesterone estrogen fsh lh

Answers

Follicle-stimulating hormone (FSH) regulates the menstrual cycle and increases egg development in the ovaries of women.

What is ovulation?

The process through which a mature egg is released from the ovary is known as ovulation. The egg is released and travels down the fallopian tube, where it can be fertilized for 12 to 24 hours.

What is FSH?

Follicle-stimulating hormone is produced by the brain's pituitary gland (FSH). The proper operation of both men and women's reproductive systems depends on this hormone.

In women, FSH controls both the menstrual cycle and egg production in the ovaries. Throughout a woman's menstrual cycle, her FSH levels fluctuate, peaking just before she gives birth to an egg (ovulates).

The level of FSH in men normally stays constant after puberty, and it aids in controlling sperm production in males.

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4. MSUD is found in one newborn in 200,000 throughout the United States, but one newborn in 200 in the Amish and Mennonites of Lancaster County, Pennsylvania has the disease. Why is there such a difference in the prevalence of the disease?​

Answers

Answer:

MSUD stands for Maple Syrup Urine Disease. It is very rare, it occurs in about 1 of every 185,000 births worldwide. A child is born with MSUD when both parents are carriers of three specific gene mutations (changes) – one copy from each parent. These three specific amino acids are leucine, isoleucine and valine. Without the needed enzymes, the three amino acids build up and so do their toxic byproducts that are known as ketoacids.

MSUD occurs more often in communities that have little genetic variation (such as the Mennonite and Amish community) These groups have a closure of people (like they marry with their closed relatives) who are carriers of the mutated gene.

Select all true statements regarding gamma decay.

Answers

Gamma rays are the spectral particles with the highest energy and shortest wavelength. This form of decay does not result in the release of any particles from the nucleus.

What is a nucleus, and what does it do?

The spindle holds the alleles, which are the structures that house the genetic traits, and governs and regulates the functions of the cell. The nucleoplasm is the gel-like membrane that contains the nuclear parts are suspended.

Why is the nucleus the most significant cell?

Due to its role in the storage, retrieval, and copying of genetic material, the nucleus is regarded as among the most significant components of eukaryotic cells. The genetic material is housed in an organelle with two membranes.

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Please help will mark brainliest
I’m this image the cell is using which type of molecular transport?
A. Exocytosis
B. Diffusion
C. Osmosis
D. Endocytosis

Answers

This statistics says that diffusion employs a certain kind of molecular transport.

What is a molecular example?

Molecules used to create inorganic chemicals known as molecular substances. Common substances as co2 and water (H2O) are examples (CO2). These compounds are very different from ionic compounds like sodium chloride (NaCl).

What is called molecular?

Molecules are made up of one or even more increased compared. If they contain and over one, they may contain different atoms or the same atoms (for instance, an oxygen molecule has two oxygen atoms) (a water molecule has two hydrogen atoms and one oxygen atom). The amount of atoms in biological compounds like proteins and DNA can reach thousands.

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do all living things have the same number of genes?

Answers

The end outcome is the biodiversity we are familiar with today. However, it is impossible to directly compare species because their genes are varied and they do not all have the same number of genes.

Does each individual possess the same number of genes?

Does everyone share a genome? Most people have a similar human genome. The genome does, however, contain variants. Differences in look and health are a result of this genetic variation, which makes up roughly 0.001 percent of each person's DNA.

Do all forms of life have genes?

All plants and animals are composed of cells, and those cells contain genetic material in the form of genes and chromosomes (usually in the nucleus).

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which of the following will increase the rate of transcription? histone acetylation leading to chromatin decompaction d. histone methylation leading to chromatin compaction removal of rna polymerase

Answers

Option C. is correct, Gene expression levels have long been known to be significantly influenced by the state of chromatin, the packaging of DNA in eukaryotes. Several chromatin-altering techniques, such as ATP-dependent remodelling.

The cell uses histone modification to control the transcription of certain genes. Since several histone acetyltransferases have been discovered and further studied in recent years, histone acetylation is one of them that is most thoroughly understood. chromatin remodelling and histone acetylation A restrictive barrier to transcription is represented by chromatin. This molecular barrier is a highly dynamic structure that can fit the complete genome's DNA inside the limits of a nucleus while yet allowing access to the genetic material stored inside.

Which of the following will increase the rate of transcription?

a. Activation of a transcriptional repressor

b. Inhibition of a transcriptional activator

c. Histone acetylation leading to chromatin decompaction

d. Histone methylation leading to chromatin compaction Removal of RNA polymerase

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refer to the genetic code in the list of materials to answer this question. which amino acid corresponds to the codon acc?

Answers

Threonine amino acid corresponds to the codon ACC.

Proteins are composed of amino acids, which are also utilized to create polypeptides. Codons, a set of three nucleotides, are used to code for amino acids. The amino acid threonine is encoded by the codon ACC. Numerous codons specify the majority of the amino acids. This is not shocking at all. For instance, four codons indicate glycine, valine, proline, threonine, and alanine, whereas six codons specify leucine, serine, and arginine.

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what is the likely cause of the change in frequency of melanic moths in michigan (mustard-colored diamonds), in pennsylvania (blue squares), and at caldy common in england (red dots)?

Answers

Air pollution has decreased in all regions is the likely cause of the change in frequency of melanic moths in michigan (mustard-colored diamonds), in pennsylvania (blue squares), and at caldy common in england (red dots)

The peppered moth's evolution is an example of how air pollution during the Industrial Revolution caused directional colour changes in the moth population.

At that time, a manifestation of industrial melanism was the rise in the number of dark-colored moths. Later, as pollution levels dropped, the light-colored form once more took control. Charles Darwin's theory of natural selection underwent its first test with the industrial melanism in the peppered moth, which is still used as a standard illustration for explaining evolution.

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A primary difference between transcription and replication is that transcription

Answers

Answer: Replication is the duplication of two-strands of DNA.

Explanation:

Transcription is the formation of single, identical RNA from the two-stranded DNA.

Transcription and replication are two closely related processes that are essential for the functioning of cells. However, they are not the same thing and have some important differences.

Transcription is the process by which the information in a gene is copied into a molecule of RNA. This involves the enzyme RNA polymerase binding to a specific sequence on the DNA molecule and using the information in the DNA to synthesize an RNA molecule that is complementary to the DNA. Transcription is the first step in the process of gene expression, which is the way that cells convert the information in genes into proteins and other functional molecules.

Replication, on the other hand, is the process by which cells make copies of their DNA. This is necessary for cells to divide and produce new cells, and it also plays a crucial role in maintaining the integrity of the genetic information over time. Replication involves the enzyme DNA polymerase binding to the DNA molecule and using it as a template to synthesize new strands of DNA. This process results in two identical copies of the DNA molecule, one for each of the daughter cells that will be produced during cell division.

In summary, the primary difference between transcription and replication is that transcription involves the synthesis of RNA from DNA, whereas replication involves the synthesis of DNA from DNA. Transcription is a crucial step in gene expression, whereas replication is essential for cell division and the maintenance of genetic information.

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