When building a new
complementary strand, each
strand of the DNA molecule
serves as which of these?

Answers

Answer 1

During DNA replication, each of the two strands that make up the double helix serves as a template from which new strands are copied.

What is template?

The DNA polymerase enzyme bases the replication of DNA on a single strand of DNA known as a DNA template.

The double-stranded DNA is divided into two single-stranded molecules during the replication process. After working with these single strands, the DNA polymerase creates a fresh second strand of DNA on each of the two single strands. You just need one strand of DNA, which may be used as a template to replicate the missing strand of DNA thanks to complementary base pairing in DNA (A-T and G-C).

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Related Questions

during the refractory period, the cell a. is insensitive to further stimulation; b. responds to even weak stimuli; c. reverses the direction of the action potential; d. generates many local potentials e. increases the strength of the action potentia

Answers

During the refractory period, the cell responds to even weak stimuli.

Option B is correct.

What takes place during the refractory stage?

The time period immediately following an orgasm during which a person is not sexually responsive is known as the refractory period. Both mental and physical repercussions may result from the refractory phase. A person may become uninterested in or incapable of having intercourse during the refractory period.

Why is it vital to understand the refractory period?

An essential component of neural signaling is the pace of generation of action potentials, which is constrained by the refractory period. The refractory period also makes it easier for the action potential to go in a single direction along the axon.

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what is the name of the paired parts of a hemostat that span between the box lock and the finger rings?

Answers

Shanks are the paired parts of a hemostat that span between the box lock and the finger rings.

A hemostat (too called a hemostatic clamp, blood vessel forceps, or pean after Jules-Émile Péan) could be a surgical instrument utilized in numerous surgical strategies to control bleeding.

For this reason, it is common within the starting stages of surgery for the introductory cut to be lined with hemostats near blood vessels anticipating ligation. The hemostat has handles that can be held in put by their locking mechanism.

The locking instrument is regularly an arrangement of in an ever altered locking teeth, s on each handle, that permit the client to alter the clamping drive of the pincers. When bolted together, the drive between the tips is around 40 N (9 lbf).

The most punctually known drawing of a turning surgical instrument dates back to 1500 BC on a tomb at Thebes, Egypt.

Afterward Roman bronze and steel pivot-controlled rebellious were found in Pompeii. Within the ninth century Advertisement, Abulcasis made outlines of turning disobedient for tooth extraction.

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Conider an organim that ha two pair of homologou chromoome in each of it diploid (2n) omatic cell. How many chromoome would the organim' cell have during each of the following tage?

Answers

Humans have diploid (2n), which means that the majority of their chromosomal come in matching recreate as homologous chromosomes.

What in biology is homologous?

Having the same standard position and structure. When referring to two anatomical features or behavioral qualities in distinct animals that descended from a component or trait in their shared ancestral creature, biologists use the term homologous.

What does homologous mean?

These forelimbs are descended from the same ancestor tetrapod structure as the wings of birds and bats and the arms of great apes, the front flippers of whales, and also the forelegs of membered vertebrate animals like dogs and crocodiles.

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• 100% 0.1% 1% ● ● Each level on the energy pyramid above represents one of these amounts of energy: 6 B 0.01% 10% E Every level in an energy pyramid represents a different amount of energy. Can you identify the energy available for each of the organisms shown below? Add the percentage of energy given to the butterfly to the energy of the eagle and the energy of the frog. This number is your code to advance to the next level. Make sure to include the % sign in your code (example: 25.23%).​

Answers

each level only takes up 10 percent of the trophic level before it due the the energy used by the organisms in the previous trophic level.

what kind of protist is this? group of answer choices ciliate plasmodial slime mold flagellate foram

Answers

The kind of this protist is plasmodial slime mold.

Thus, the correct option is B.

What is protist?

Protists аre simple eukаryotic orgаnisms thаt аre neither plаnts nor аnimаls or fungi. Protists аre unicellulаr in nаture but cаn аlso be found аs а colony of cells. Most protists live in wаter, dаmp terrestriаl environments or even аs pаrаsites.

Kingdom Protista is classified into the following:

ProtozoaSlime mouldsChrysophytes, Dinoflagellates and Euglenoids

What is plasmodial slime mold?

Plasmodial slime molds (myxomycetes) are а group of fungus-like orgаnisms usuаlly present аnd sometimes аbundаnt in terrestriаl ecosystems. The myxomycete life cycle involves two very different trophic (feeding) stаges, one consisting of the uninucleаte аmoebаe, with or without flаgellа, аnd the other consisting of а distinctive multinucleаte structure, the plаsmodium.

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5. what is one challenge that a species may face when they are reintroduced to their previous native range? and what is a challenge they may face when released outside of the native range? (1 pts)

Answers

Challenge that a species face when they are reintroduced to their previous native range is:  single event catastrophes. Challenge they face when released outside of the native range is:  preying on native species.

What is the challenge faced when species are reintroduced?

Although, species are bred successfully in captivity and even if they learn to survive in the wild on its own then also there is the concern that a single event such as a hurricane, drought or disease could decimate the  reintroduced population.

The goal of species reintroduction is to establish a healthy and genetically diverse population to an area where it has been extirpated.

The direct threats of invasive species is preying on native species , outcompeting native species for food, causing disease and preventing native species from reproducing or killing a native species' young.

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accessing the insertion of serrated anterior by curling your fingers around the medial border of the scapula, your fingers will inherently have to work through the bellies of

Answers

To access the insertion of serrated anterior by curling fingers around the medial border of the scapula, your fingers will have to work through the bellies of : trapezius and rhomboids.

What are trapezius and rhomboids?

The rhomboids consists of two separate muscles that are the major and minor muscles which are present immediately deep to the trapezius. It inserts at  medial border of scapula, near the base of the spine of the scapula.

Middle trapezius and rhomboids are the two major scapular retractors but these two muscles vary in their actions. The middle fibers of the trapezius functions as pure scapular retractors while the rhomboids acts to retract  scapula and also rotate it to depress the glenoid fossa.

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in horses, crossing a chestnut brown horse with a creamy white horse can result in a palomino horse that is light brown in color (see below). this is an example of:

Answers

Example is Incomplete dominance leads to the inheritance of the palomino coat color in horses.

How does incomplete dominance differ from codominance?

There are two different types of genetic inheritance: full dominance and codominance. Codominance basically means that neither allele is able to suppress or obstruct the expression of the other allele. However, incomplete dominance occurs when a dominant allele only partially obscures the effects of a recessive gene.

How can you determine if something has partial dominance?

When a dominant allele, or form of a gene, does not entirely block the effects of a recessive allele, the resultant physical appearance of the organism reveals a mixing of both alleles. It is also referred to as partial or semi-dominance.

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true or false? during atrial contraction, the papillary muscles are relaxed, and av valves are open

Answers

TRUE. During atrial contraction, the papillary muscles are relaxed and av valves are open..

The cardiac cycle is accompanied by brief negative deflections in the primarily forward-moving blood in the veins caused by atrial contraction of the heart, which produces pulse waves that are conveyed from the heart into the venous system.

Just before ventricular systole, atrial contraction gives the ventricular volume one more boost. When the pressure in the ventricle surpasses the pressure in the atrium due to ventricular contraction, the mitral valve closes.

The atrial contraction, also known as the atrial kick, is the last stage. It occurs when the cardiac muscle in the atrium contracts, increasing pressure and causing more blood to flow past the mitral valve. 20% to 30% of the total diastolic volume crosses the mitral valve at this final stage.

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in a population, 25% of individuals exhibit albinism which is a lack of production of the pigment melanin. it is caused by two recessive allele (q2). what is the frequency of the recessive allele (g) in this population?

Answers

The frequency of the recessive allele (gg) in a population where 25% individuals exhibit albinism is 0.5.  

According to Hardy weinberg principle, the frequencies of the genotypes can be determined by an equation: [tex](p+q)^{2}[/tex] = [tex]p^{2}[/tex] + 2pq + [tex]q^{2}[/tex], where [tex]p^{2}[/tex] represents the frequency of homozygous dominant allele and [tex]q^{2}[/tex] represents frequency of homozygous recessive alleles. As albinism is caused by recessive alleles ([tex]q^{2}[/tex]), the frequency would be half of the total frquency, that is 0.5 of 1, because p + q = 1.

Making one of the many proteins involved in the manufacture of melanin is controlled by a number of genes. Melanocytes, which are cells present in your skin, hair, and eyes, are responsible for producing melanin. A change in one of these genes leads to albinism. Albinism is indeed inherited or passed down through families. When a person inherits an albinism gene from their parents, they are born with the condition.

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When cells have a higher concentration of electrolytes outside the cell than inside, water will flow.

Answers

When cells have a higher concentration of electrolytes outside the cell than inside, water will flow into the cell until the concentration equalized.

What are electrolytes ?

In a solution An electrolyte is a substance  when molten, ionizes and conducts electricity, it can be either  weak or strong electrolyte.

A weak electrolyte is defined as a solution in which only  small fraction of the dissolved solute exists as ions where as in strong electrolyte complete electrolyte dissolves  in water.

Weak electrolyte has medium level of conductivity, Strong electrolyte Contains a complete solute, so it has strong conductivity and Non-electrolyte has little or no conductivity.

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describe the following types of assisted reproductive technology:
a) Conventional in vitro fertilization
b) Intracytoplasmic sperm injection
c) laser - assisted hatching
d) Artificial insemination

Answers

Conventional in vitro fertilization refers to the development of embryos in the laboratory conditions, intracytoplasmic sperm injection refers to the add of sperm cytoplasm to the egg cell, laser-assisted hatching helps the egg cell to reach the zona pellucida while artificial insemination helps to development of a zygote by artificial fertilization.

What does assisted reproductive technology mean?

The medical term assisted reproductive technology makes reference to all methods and strategies aimed at enhancing or helping the development of the zygote or embryo after fertilization, which may be in vitro fertilization (laboratory conditions) or in vivo conditions into the reproductive system.

Therefore, with this data, we can see that assisted reproductive technologies refer to a broad differential category of strategies and methods aimed at helping with the development of zygotes and embryos in the reproductive system of a woman or in the lab conditions.

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you are a leading paleomicrobiology exploring western australia. you come across a sample that might resemble a fossil stromatolite and take it back to your lab to identify its origin. what data would assist in confirming the sample is indeed a fossil stromatolite formed by cyanobacteria? multiple answers could be correct.

Answers

Stromatolites, the most prevalent type of microbialites, are important fossils for comprehending the beginning and evolution of life and are prevalent in rocks older than 500 million years, which account for roughly two-thirds of the State.

What is Paleomicrobiology ?

The methodologies and key discoveries in this new area of study, which straddles anthropology, history, and microbiology, are presented in "Paleomicrobiology - Past Human Infections."

Numerous unrelated health issues were present in his body, according to a paleomicrobiological examination of microbial ancient DNA (aDNA). In addition to having gallstones and hardening arteries, Tzi had parasitic whipworm eggs in his intestines (Trichuris trichiura).The Iceman is the oldest known human to have been infected by the bacterium that causes Lyme disease; Helicobacter pylori aDNA and the genetic signature of Borrelia burgdorferi were detected in his DNA. As a result, one of the coldest cases in human history was thoroughly investigated thanks in large part to the science of paleomicrobiology.What is Fossil stromatolite & Cyanobacteria ?Stromatolites are strange fossils whose biological origins weren't fully understood until a recent period of time. Stromatolites are layered colonial formations that are mostly generated by cyanobacteria, according to the majority of scientists today.The Stromatolites' surface layer is where the bacteria are active, and the underlying build-up is a lithified residue of previous microbial surface communities that might be considered a trace fossil. A single 1m building may be 2,000–3,000 years old because of how slowly these deposits accumulated.The phylum of gram-negative bacteria known as cyanobacteria, commonly referred to as cyanophyta, produces energy through photosynthesis. Although they are typically not formally categorized as algae, the word "cyanobacteria" relates to their hue, which also serves as the basis for the colloquial moniker "blue-green algae."

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If your power could have been harnessed and the energy converted to electricity, how many 100-w bulbs could you have kept burning during your climb?

Answers

When the power is harnessed and the energy converted to electricity, the person could have climbed using only one 100-W light bulb.

What is power?

Power is defined in physics as the amount of energy transferred or converted per unit time. The watt is the unit of power in the International System of Units, equal to one joule per second.

It can be defined as the rate at which work is completed in a given amount of time. Watt (W) is the SI unit of power, which is joules per second (J/s).

And, because our estimate is very rough, we can say that the person's power output is comparable to the power output of a 100 W light bulb. Let's say that the mass is 80kgbabs it takes 30 seconds to climb 5 meters of stair, the energy will be:

= mgh

= 80 × 9.81 × 5

= 3924J

Power will be:

= 3924 / 30

= 130W

Based on the results obtained, we can conclude that the person's power output is comparable to the power output of one 100-W light bulb, and that the person could have continued to burn only one 100-W light bulb during the climb.

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Complete question

How does your power output in climbing the stairs compare to the power output of a 100-watt light bulb? if your power could have been harnessed and the energy converted to electricity, how many 100-watt bulbs could you have kept burning during your climb?

The expanded articular end of an epiphysis that is separated from the shaft by a narrower neck is called a.

Answers

The expanded articular end of an epiphysis that is separated from the shaft by a narrower neck is called a Head.

The body constantly remodels the living, active tissues that make up bones. They sustain the body's structure, safeguard important organs, and provide movement of the body. They also serve as a space for the bone marrow, which the body uses to produce blood cells, and a repository for minerals, particularly calcium.

There are two different forms of tissue that make up bones.

A hard, dense, robust, and long-lasting outer layer is called compact (cortical) bone. It creates the outer layer of bone and accounts for around 80% of mature bone mass.The remaining 20% of bone is made up of trabecular (or spongy) bone, which is made up of a network of rod-like structures called trabeculae. Compared to compact bone, it is lighter, less thick, and more flexible.

Head is a conspicuous, rounded bone extension that is a component of a joint. It has a neck that separates it from the bone's shaft. Inside a synovial capsule, the head is often coated in hyaline cartilage.

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atrial fibrillation (a-fib) is irregular electrical activity in the atria causing an arrthymia. where would you see a change from the normal ekg during an a-fib event?

Answers

During an a-fib occurrence, the P wave and PR interval differ from the normal ekg.

How does it feel to have an A- Fib?

The atria, the upper chambers of the heart, beat erratically and chaotically during atrial fibrillation, which causes the ventricles, the heart's lower chambers, to beat out of time Shortness of breath, weakness, or a rapid, hammering heartbeat which causes the ventricles,

Why does an A Fib event occur?

But as Gahanna pointed out, there are a variety of factors that might cause A fib, including alcohol, strenuous activity, dehydration, stress, and eating a lot of food to beat out of time Shortness of breath.

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Evaporation of 1 quart of perspiration releases about ______ kilocalories of heat energy from the body.

Answers

Answer:

Evaporation of 1 quart of perspiration releases about 600 kilocalories of heat energy from the body.

Explanation:

what techniques could be used to demonstrate that a mutation in a man with hemophilia is due to the insertion of an alu element into the coding sequence of the x-linked gene for factor viii, one of the proteins needed for efficient blood clotting in humans?

Answers

Therefore, if a guy inherits an X chromosome that has a mutation in either the factor VIII or factor IX gene, they may develop a disease similar to hemophilia. Hemophilia can also affect women, however this is far less common. In these situations, either both of the X chromosomes are afflicted, or one is affected while the other is absent or inactive.

What is Mutation ?

A mutation in biology is an adjustment to the nucleic acid sequence of an organism's, virus's, or extrachromosomal DNA. DNA or RNA can be found in the viral genome.

Mutations that are harmful can result in cancer or genetic diseases. A genetic disorder is a condition brought on by a change in one or more genes. Cystic fibrosis is a human example. A single gene mutation causes the body to create thick, sticky mucus that obstructs digestive organ ducts and clogs the lungs.

Missense, nonsense, insertion, deletion, duplication, and frameshift are just a few categories of gene mutations. The advent of lethal diseases like cancer is one of the main consequences of a gene mutation.

What is Hemophilia ?

An genetic bleeding ailment called hemophilia causes the blood to clot improperly. This may result in both spontaneous bleeding and bleeding after injury or surgery. Blood contains a variety of clotting proteins that can aid in halting bleeding.

A moderate form of hemophilia A or B usually results in substantial bleeding after an accident. Additionally, you can have bleeding after an injury if you have hemophilia A or B in its most severe forms. spontaneous bruising of the muscles or joints

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What are the three common patterns of population distribution? a. clumped, random, and curved b. evenly spaced, clumped, and curved c. clumped, evenly spaced, and random d. random, curved, and evenly spaced please select the best answer from the choices provided a b c d

Answers

The three common patterns of population distribution are c. clumped, evenly spaced, and random.

According to three basic patterns of population distribution, describe all the three ways?

organisms in a given population can display:

1) Uniform Dispersion: Uniform dispersion is the distribution of organisms within a population such that they are evenly spaced from one another and are more or less evenly distributed throughout an area.

2) Random dispersion- This is evident when the organisms in a population are dispersed randomly, meaning that there is no discernible pattern between them.

3)Clumped: This is a term used to describe creatures that create clumps or clusters when they are present.

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plasma membranes are selectively permeable. this means that question 3 options: anything can pass into or out of a cell as long as the membrane is intact and the cell is healthy. the plasma membrane allows some substances to enter or leave a cell more easily than others. glucose cannot enter the cell. plasma membranes must be very thick.

Answers

The correct option is plasma membrane allows some substances to enter or leave a cell more easily than others.

The cell membrane's selective permeability is its capacity to distinguish between various types of molecules, permitting some to pass while preventing others. This selective quality is somewhat influenced by the inherent membrane diffusion rates of certain compounds.

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The purpose of messenger RNA, or mRNA, is to.

Answers

Explanation:

mRNA transcribes the genetic code from the DNA into a mRNA stand and carries the codons out of the nucleus to a ribosome where it is translated.

a cell acquires a new mutation that raises its immediate direct fitness but lowers the inclusive fitness it will have later. will there be natural selection for the new mutation or against it when it first appears? group of answer choices

Answers

When a mutation first appears, the selection would occur against it as it lowers the inclusive fitness.

A technique for gauging the effectiveness of evolution is inclusive fitness. It is the capacity of an individual to pass on genes, including those shared with relatives, to the following generation.

However, advantageous mutations will proliferate and boost the population's overall fitness. They produce unique protein variations that help organisms adapt to changes in their environment. Most of the time, natural selection boosts evolutionary fitness and causes organisms to adapt to their environments. Thus, in this case the selection would be against the mutation.

Positive mutations are essential for evolution to occur. They increase an organism's likelihood of surviving or procreating, so they are likely to spread over time and become more widespread.

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Complete question is:

A cell acquires a new mutation that raises its immediate direct fitness but lowers the inclusive fitness it will have later. will there be natural selection for the new mutation or against it when it first appears? group of answer choices

A. selection for the mutation

B. the two effects will cancel out

C. selection against the mutation

D no selection will occur

why are most stray cats short haired cats

Answers

Most stray cats are short haired cats because according to the American Humane Society, roughly 95% of all cats are short hair cats.

What are cats?

The cat is a domestic species of small carnivorous mammal which is the only domesticated species in the family Felidae and is commonly referred to as the domestic cat or house cat to distinguish it from the wild members of the family.

So most cats have shorts hairs and doesn't just apply to stray cats. Research claims that some people claim that long hair cats are more expensive and rare, so the owner is likely to take better care of them and keep them indoors.

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swelling; fluid leaks out into tissue spaces: a.edema b.dyscrasia c.ecchymoses d.autologous transfusion e.petechiae

Answers

Edema occurs when fluid leaks into tissue spaces during swelling.

What is edema?

Edema, as mentioned, is the swelling that is caused due to excess fluid in our body’s tissues. It may effect any part of our body, but most commonly is noticed in hands, feet, ankle, etc. Your skin can be stretched due to edema, and the swelling can increase, if not treated on time and cause serious health issues.

There are many causes of edema which include pregnancy, medications, infections and even excess sodium. It is also caused due to congestive heart failure or a block in leg vein.

Therefore, edema is nothing but swelling caused due to excess accumulation of fluid in tissues.

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periods in which new species appear relatively quickly are associated with the theory of . a. punctuated equilibrium b. reproductive isolation c. microevolution d. mutation

Answers

New species appear relatively quickly are associated with the theory of . (a) punctuated equilibrium. So option (a) is the correct answer.

A pattern of rapid evolutionary change followed by long periods of stagnation is a pattern explained by an interrupted equilibrium. Punctuation equilibrium states show that organisms do not change much as they appear in the fossil record.

Interrupted equilibrium predicts that many species evolutionary changes occur on short time scales associated with speciation events.

An intermittent equilibrium occurs as genetic variation passes more rapidly, increasing the rate of evolution and speciation. Tyrannosaurus fossils and mollusks species from the Turkana Basin are examples of intermittent equilibrium.

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Connect explain the relationship between the carbon in a molecule of glucose and the cellulose found in a plant cell wall

Answers

Answer:

The cell walls of plants are mostly filled with cellulose, which provides support to the cell. Wood and paper are the most cellulosic in nature. Cellulose is made up of glucose monomers that are linked by "bridges" between particular carbon atoms in the glucose molecule.

Plants' cell walls, which provide the cell its structural support, are mostly formed of cellulose. Glucose monomers that are connected by bonds between certain carbon atoms in the glucose molecule make up cellulose.

What is plant cell wall made up of?

Cellulose is the primary component of plant cell walls, and it is responsible for providing the cell with the necessary structural support. The majority of wood and paper are cellulosic in their natural state. Cellulose is made up of glucose monomers that are joined together by bonds between certain carbon atoms in the glucose molecule. These bonds are what give glucose its structure.

A network of cellulose microfibrils and cross-linking glycans are embedded in a highly cross-linked matrix of pectin polysaccharides to form the cell wall. The cell wall is formed of this network. Lignin may be deposited in the secondary cell walls of the plant.

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PLS HELP ITS FOR MY EATH SCIENCE CLASS?!?!

Our closest exoplanet and Earth-sized planet is Proxima Centauri b.
Proxima Centauri b is in the habitable zone, but why is it not a suitable
Earth 2.0?

A enormous amounts of radiation from mega flares hit the planet
roughly once every year

B it lacks an atmosphere, therefore most likely lacks water

C extreme temperature changes on the surface

D all of the above

Answers

Answer:

A

Explanation:

https://phys.org/news/2018-04-proxima-centauri-flare-powerful-visible.html

B cannot be correct because there is in fact, water on Proxima Centauri B.

It most likely isn't C, I researched for any truth in answer C but I couldn't find any.

Hope this helps! I'm really sorry if I'm wrong because I tried very hard to look for a solid answer :[

in which ventricular dysrhythmia do three or more pvcs occur in a row with a ventricular rate greater than 100 bpm?

Answers

The ventricles can cause ventricular tachycardia, a rapid dysrhythmia with heart rates of 100 to 250 per minute.

What is ventricular heartbeat?

Extra heartbeats known as premature ventricular spasms (PVCs) start within one of the brain's two lower pump chambers (ventricles). The normal pulse rhythm is disrupted by these extra beats, which can occasionally make the chest feel as though it is fluttering or skipping beats.

What is a normal ventricular?

The heart's left ventricle serves as its primary pumping chamber. It forces air blood up into the aorta, the main artery in your body, to supply the rest of your body. Based on the American Heart Association, a typical ejection fraction ranges from 50% to 75%. An ejection fraction that is on the edge can be from 41% and 50%.

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Compare the water cycle to other cycle you have learned about cience. How are they the ame? How are they different?
*

Answers

The hydrological cycle is a real-world occurrence. Transpiration is the process through which water from the air or the leaves of plants evaporates.

What does the company Cience do?

Through multi-channel prospecting, CIENCE aids businesses in expanding. With predictable outcomes, we begin with highly reliable statistics (>200M Contact universe), than offer lead generation & outbound sales processes to establish qualified engagements with our clients' ideal customers.

Is a generation a lead?

In order to improve future sales, the process of attracting potential consumers' interest is known as lead generation. A lead is a potential customer who has expressed interest in a firm's products or services yet may not yet be eligible to make a purchase.

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DNA carries the cell’s genetic information; however, it cannot leave the __________________. Because of this, it copies part of its nucleotide sequence into a complementary copy of ______________ during the process called _____________________. During this process, ___________Polymerase separates the DNA strands. It then uses one strand of DNA as the __________________ from which nucleotides are assembled into a strand of RNA. Each three letter sequence on the mRNA is called a ______________. The start codon is ____________ and the three stop codons are _____________, ____________, _____________. Once the mRNA leaves the nucleus it goes to the ____________________ to prepare for protein synthesis which is called ___________________. During this process, a ______________ molecule brings the _________________________ to the ribosome. The amino acids are hooked together by ____________________bonds. The tRNA is able to match up to the mRNA by its _______________________. When the stop _________________ is reached, the __________________ chain is released into the ______________________.

Answers

DNA carries the cell’s genetic information; however, it cannot leave the nucleus. Because of this, it copies part of its nucleotide sequence into a complementary copy of mRNA during the process called transcription.

How to illustrate the information?

During this process, helicase polymerase separates the DNA strands. It then uses one strand of DNA as the template codon from which nucleotides are assembled into a strand of RNA. Each three-letter sequence on the mRNA is called an AUG. The start codon is ____________ and the three stop codons are UAG UGA UAA.

Once the mRNA leaves the nucleus it goes to the ribosome to prepare for protein synthesis which is called translation. During this process, a tRNA molecule brings the amino acid to the ribosome. The amino acids are hooked together by peptide bonds. The tRNA is able to match up to the mRNA by its complimentary bases. The protein chain is released into the cytoplasm when the stop is reached.

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what is one major difference between federal and unitary governments what mass of methane will occupy the same volume as 0.0325 mol 0.0325 mol of propane at 1.00 atm 1.00 atm and 298 k? Which variable is most important to the following problem?A company has 95,000 shares of stock to sell. A stockbroker decides to buy equal shares of the stock for each of her 250 clients. If the company has 75,000 shares of stock remaining after she makes her purchase, how many shares did each client receive? prior to 1863 when lincoln issued the emancipation proclamation, his central goal was not abolition, but what? leadership of the southern convention. maintaining the system of indentured servitude. preserving the union. balance of power of legislatures within states. Which is an antonym for belligerent, ugly or peaceful fermentation products can include commonly known compounds such as lactic acid and ethanol, but many other products like butanol, acetic acid, and succinic acid are also possible because how many cubes are added Find the domain and range og tje ff. Rational function f(x) = 2/x+1 what distinguishes the imagery in the chauvet cave from that of the great gallery in horseshoe canyon? group of answer choices the images are pictographs. the figures are naturalistic. the figures are in hierarchic scale. the artist included hieroglyphs. 4. Use the rules of measurement to add:12.32 L +251 L +4225 L how has your own background influenced the types of problems you want to solve, the people you want to work with, and the impact you hope your work can have?(500 words or less) would you break a ten or a hundred when you subtract 282-47 2021, remsco has taxable income of $80,000 and a charitable contribution limit modified taxable income of $30,800. remsco donated cash of $9,300 to a qualified public charity. what is remsco's current-year charitable contribution deduction assuming remsco makes any elections necessary to maximize its charitable contribution deduction? the molar heat of fusion of water is 6.02 kj/mol. calculate the energy required to melt 46.8 g of water. social monogamy is rare in mammals but common in birds. what difference is hypothesized to explain this observation? An iocele triangle ha a bae length of 126 unit and a height of 16 unit find the length of one of thoe leg ______ are important because they provide utilities to consumers and have a significant positive impact on the economy. a ground-state h atom absorbs a photon of wavelength 93.78 nm, and its electron attains a higher energy level. the atom then emits two photons: one of wavelength 2626 nm to reach an intermediate level, and a second to reach the ground state. what was the wavelength of the second photon emitted? please help me asap I need to find X and Y Simplify. (x+1)+(x-2)(x+3) show all work