What resistance would produce a current of 120 amps from a 6 V battery?

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Answer 1

Answer:

R=VI R=6*120=720

Explanation:

I know you don't read in class so my suggestion is more time you give in study


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I NEED THIS RIGHT NOW PLEASE

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Lactic acid production increased in virus affected cells. ATP production decreased in virus affected cells.

Why are viruses so exhausting?

The immune system releases cytokines during viral infection, which induce inflammation and many of the typical signs of viral infection (eg, tiredness, aches and pains, malaise)

Although you may be progressively feeling better, it can take up to a year or longer for people to recover totally from post-viral fatigue. Another virus that triggers glycolysis is the non-enveloped double stranded DNA virus adenovirus. Non-tumorigenic breast epithelial cells infected with adenovirus 5 produced more lactic acid and consumed more glucose, while using less oxygen.

Percentage increase in lactic acid production will be (0.7-0.4)/0.7 i.e. 0.42 percentage increase.

ATP production decreased by (0.7-0.5)/0.7 i.e. 0.285 percentage.

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increased sympathetic stimulation causes vasodilation, bringing elevated blood pressure back to normal.true or false

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False, according to the statement. Vasoconstriction is a result of increased sympathetic activation; this raises blood pressure.

Vasoconstriction—the narrowing of blood vessels—can be brought on by sympathetic activation of blood vessels. The release of hormones that induce the smooth muscles of the blood arteries to contract, including adrenaline and norepinephrine, may be the reason for this. Consequently, the blood supply to some parts of the body is reduced and blood pressure rises. A number of medical illnesses can be treated with sympathetic stimulation, including respiratory disorders, some mental health conditions, bladder and intestinal disorders, pain management, and heart conditions such arrhythmias or irregular heart rhythms. It is also used to assist regulate breathing, increase energy, lower anxiety, and improve performance.

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in what way do megasporangia differ from microsporangia?

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Megasporangia are distinct from microsporangia in that they generate spores that become female gametophytes while microsporangia generate spores that become male gametophytes.

The majority of vascular seedless plant species are homosporous: Like the majority of ferns, they only have one type of sporangium that produces one type of spore, which typically transforms into a bisexual gametophyte. A heterosporous species, on the other hand, produces both megasporangia and microsporangia, two different types of spores.

The majority of vascular plants with seeds and all seed plants are heterosporous, meaning they have both megasporangia and microsporangia.

Microsporangia and megasporangia are distinct structures that do not interbreed.

In comparison to the microspores produced by microsporangia, the megaspores produced by megasporangia are comparatively larger but not more numerous.

Sporopollenin shields all plant spores.

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The above question is incomplete. Check complete question below -

In what way do megasporangia differ from microsporangia?

A. megasporangia develop female spores and microsprongia develop male spores.

B. megasporangia develop male spores and microsprongia develop female spores.

C. megasporangia produce microspore and microsprongia  develop megaspore

D. They are both the same

muscle group of the lateral leg plantar flex and evert the foot

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The tibialis posterior muscle performs two functions: plantarflexion and foot inversion. It is a deep muscle in the back of the leg.

The gastrocnemius, soleus, and plantaris muscles are the major plantar flexors of the foot, and their tendons converge to create the tendo calcaneus or Achilles' tendon. At the hip joint, the sartorius flexes, abducts, and laterally rotates the thigh. It also helps with knee flexion and medial rotation of the leg in this posture. The sartorius is a long band-like muscle that spans lateral to medial across the front of the leg.

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what types of proteins are found in the cytoplasmic membrane? what types of planar lipids? what is the function of each of these components?

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transmembrane, embedded, and membrane-bound planar. lipids are sterols and hopanoids.

Transmembrane proteins, also known as integral proteins, are found embedded in the phospholipid bilayer. These essential proteins frequently act as pathways for chemicals to cross cell membranes. In the absence of non-biological solvents, mixes of pure lipids are used to create planar lipid bilayer membranes. The substantial specific capacitance of the solventless bilayers (586-957 nF/cm2), which is equivalent to that of cell membranes but far higher than that of traditional lipid/decane bilayers, distinguishes them from other types of bilayers. Hopanoids can intercalate into phospholipid bilayers and alter the fluidity of membranes by interacting with their intricate lipid components, actions that are thought to be very similar to those of sterols in the membranes of animals and plants.

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1 The fluids leave the capillaries at the arterial end because... A) the net filtration pressure of the blood is higher at the arterial end than it is at the venous end. B) the net filtration pressure of the blood is higher at the venous end than it is at the arterial end. C) the net filtration pressure of the interstitial fluid is higher at the arterial end than it is at the venous end. D) the net filtration pressure of the interstitial fluid is higher at the venous end than it is at the arterial end. E) the osmotic pressure is higher at the arterial end than it is at the venous end.2 The fluids reenter the capillaries at the venous end because... A) the net filtration pressure of the blood is higher at the arterial end than it is at the venous end. B) the net filtration pressure of the blood is higher at the venous end than it is at the arterial end. C) the net filtration pressure of the interstitial fluid is higher at the arterial end than it is at the venous end. D) the net filtration pressure of the interstitial fluid is higher at the venous end than it is at the arterial end. E) the osmotic pressure is higher at the venous end than it is at the arterial end.3 Approximately what percent of fluid that exits the capillaries at the arterial end renters the capillaries at the venous end? A) 60% B) 70% C) 80% D) 90% E) 100%4 The lymphatic capillaries reabsorb as much as 20% of the fluid lost by the blood capillaries. A) True B) False5 The net osmotic pressure is equal at both the arterial and the venous ends of the capillary. A) True B) False

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Due to the blood's net filtration pressure being higher just at arterial end that it is at the venous end, fluids exit the capillaries there.

Explain the function of capillaries?

Your body is filled with tiny blood channels called capillaries. To the cells in the organs and bodily systems, they deliver blood, nutrients, and oxygen. The tiniest blood veins in your circulatory system are called capillaries.

Capillaries join veins and arteries to complete the circulatory system:

Your organs receive oxygen-rich blood from your heart through arteries.The body uses veins to eliminate waste and low-oxygen blood.

Many organs and systems are supported by capillaries as well. They advocate for the

by allowing fresh blood cells to infiltrate your bloodstream, bone marrow.blood-brain barrier, which is formed by the brain. This structure protects against the passage of contaminants while supplying nutrients to the brain.Endocrine system, which does this by sending hormones to particular organs

Thus, due to the blood's net filtration pressure being higher just at arterial end that it is at the venous end, fluids exit the capillaries there.

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The correct question is-

Why do fluids leave the capillaries at the arterial end?

- The net filtration pressure of the blood is higher at the arterial end than it is at the venous end.

- The net filtration pressure of the blood is higher at the venous end than it is at the arterial end.

- The net filtration pressure of the interstitial fluid is higher at the arterial end than it is at the venous end.

- The net filtration pressure of the interstitial fluid is higher at the venous end than it is at the arterial end.

- The osmotic pressure is higher at the arterial end than it is at the venous end.

What is the main function of the Calvin cycle in plants?

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The goal of the Calvin cycle is to create three-carbon sugars that can be used to build other sugars, such glucose, starch, and cellulose, that are beneficial for human consumption.

The Calvin cycle first generates three-carbon sugars, which are then used by plants as building blocks to construct other sugars including glucose, starch, and cellulose.Airborne carbon molecules are instantly transformed into plant matter by the Calvin cycle.The plants' special qualities allow them to make meals on their own in a number of ways.The Calvin cycle refers to the reactions of photosynthesis that use the energy built up by the light-dependent activities to produce glucose and other carbohydrate molecules.

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What ion enters a neuron causing depolarization of the cell membrane? a. sodium b. chloride c. potassium d. phosphate.

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When voltage-gated sodium channels open, positively charged sodium ions flood into a neuron, resulting in depolarization. The correct option to this question is A

Depolarisation Different ions that pass the neuron membrane result in action potentials. Sodium channels first open in response to a stimuli. Because the inside of the neuron is negative in comparison to the exterior and there are much more sodium ions on the inside, sodium ions rush within the cell.The entry of sodium and calcium ions, which happens as a result of membrane channels opening, causes the depolarization.A sharp increase in membrane potential that opens sodium channels in the cellular membrane and causes a significant influx of sodium ions causes depolarization.

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the accompanying figure is a pedigree of a fairly common human hereditary trait; the boxes represent males and the circles represent females. filled in symbols indicate the abnormal phenotype. given that one gene pair is involved, what is the inheritance pattern of the trait?

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This inheritance pattern of a trait in the given statement is X-linked recessive traits.

What do you mean by inheritance?

The term "inheritance" describes the possessions that a person leaves to their cherished ones following they pass away. Cash, investments like stocks or bonds, as well as other things like jewelry, cars, works of art, antiques, including real estate can all be included in an inheritance.

What is the secret in the inheritance?

Lauren is surprised to discover a strange, old, scruffy man imprisoned by the neck in an underground shelter she discovers after following her dying father's instructions. This same hostage reveals he is Trevor (Jake Gyllenhaal), and old acquaintance of his Archer, after being bribed with steak and pie.

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what is the mode of inheritance of black and brown fur color in mice?

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Explanation:

O single gene with two alleles controlling fur color black fur is dominant to brown brown fur is dominant to black multiple genes controlling fur color Suhmit

what is the advantage of gene expression profiling with cdna chips where rna is reverse transcribed compared to microarray where rna samples are used directly?

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Following are the advantage of gene expression profiling with cdna chips where rna is reverse transcribed compared to microarray where rna samples are used directly

One of the advantages of gene expression profiling with cDNA chips where RNA is reverse transcribed, compared to microarray where RNA samples are used directly, is that cDNA chips can provide more accurate and sensitive measurements of gene expression levels.

Reverse transcription of RNA into cDNA allows for amplification of the RNA samples, which can increase the sensitivity of the assay.

This is because the reverse transcription process converts RNA molecules into cDNA molecules, which are more stable and less susceptible to degradation than RNA molecules.

In addition, the amplification step increases the amount of cDNA available for analysis, which can improve the accuracy of the measurements.

In contrast, with microarrays where RNA samples are used directly, there is no amplification step.

As a result, microarrays may be less sensitive and accurate than cDNA chips, especially when analyzing low-abundance transcripts or small amounts of starting RNA.

Additionally, RNA samples are more prone to degradation and variability, which can introduce noise into the data and affect the accuracy of the measurements.

Overall, gene expression profiling with cDNA chips where RNA is reverse transcribed offers the advantage of increased sensitivity and accuracy, which can lead to more reliable and meaningful results. However, it is important to note that both approaches have their own strengths and weaknesses, and the choice of assay should be based on the specific research question and experimental design.

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Which cell type is involved in the initiation of head and neck cancer?A. Squamous cellsB. Epithelial cellsC. Nerve CellsD. Muscle cells

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The cell type is involved in the initiation of head and neck cancer is : A. Squamous cells.

Which cell type leads to the initiation of head and neck cancer?

Cancers that are known as head and neck cancers begin in squamous cells that line mucosal surfaces of the head and neck. These cancers are referred as squamous cell carcinomas of head and neck.

About 8 out of 10 skin cancers are basal cell carcinomas and are also called basal cell cancers. These cancers start in basal cell layer, which is the lower part of epidermis and these cancers usually develop on sun-exposed areas, especially face, head, and neck.

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describe the following characteristics when a gene is active: o is the gene tightly or loosely wound around histones? o are there many or few methyl molecules attached to the gene? o are there many or few acetyl molecules attached to the genes associated with histones? o are there many or few mrna transcripts?

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There are many or few mRNA transcripts.

When proteins referred to as transcription factors bind to two essential pieces of DNA, an enhancer and a promoter, transcription of a gene begins. Nobody understood how near they needed to be to one another for transcribing to take place considering how far apart these are.

The transcription factor binds to the promoter and then activates the RNA polymerase complex. This causes the gene to be transcribed into a messenger RNA, which is then translated into a protein in the cytoplasm. Protein translation and a physiological response happen as a result of gene transcription being activated.

By attaching to a promoter sequence in the gene's DNA, transcription factors start the process of gene expression. Gene expression is influenced by the physical makeup of DNA, which is bundled with proteins into chromatin, by regulating access to DNA.

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energy required by the cell is generated in the form of atp. atp is hydrolyzed to power many of the cellular processes, increasing the pool of adp. as the relative amount of adp molecules increases, they can bind to glycolytic enzymes, which will lead to the production of more atp. the best way to describe this mechanism of regulation is:

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Option B) Allosteric activation  and activation is the process of controlling the shape of an enzyme's active site to allow or prevent substrate entry.

Energy required by the cell is generated in the form of ATP. ATP is hydrolyzed to power many of the cellular processes, increasing the pool of ADP. As the relative amount of ADP molecules increases, they can bind to glycolytic enzymes, which will lead to the production of more ATP. The best way to describe this mechanism of regulation is allosteric activation

Some enzymes have more than one active site. The other site(s) is called allosteric site.

In this case, ADP released from the glycolytic reactions binds to the allosteric sites of glycolytic enzymes, activating them and causing further breakdown of glucose, hence ATP continues to be generated.

ATP + H2O ---> ADP + Pi + free energy

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Full Question: Energy required by the cell is generated in the form of ATP. ATP is hydrolyzed to power many of the cellular processes, increasing the pool of ADP. As the relative amount of ADP molecules increases, they can bind to glycolytic enzymes, which will lead to the production of more ATP. The best way to describe this mechanism of regulation is ________.

a. transcription

b. allosteric activation

c. feedback inhibition

d. cellular respiration

if two people with normal color vison have two sons one with color clindness, what percentage will the daughter normal vision

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if two people with normal color vison have two sons one with color blindness, XbX (daughter who is a carrier but has normal vision), XX (daughter with normal vision who is not a carrier).

If a couple with one colorblind son and one with normal eyesight has daughters, none of the daughters will be colorblind. To have a colorblind daughter, she must inherit the colorblind gene from both her mother and father. This implies that her father is colorblind and her mother is either colorblind or a carrier for the gene. Because both parents have normal eyesight, we know that the father does not carry a colour blindness gene, hence they cannot create colour blind daughters.

The colour blindness gene is found on the X chromosome, which is a sex chromosome. Females have XX chromosomes, while males have XY.

Crossing a woman with normal vision but is a colour blindness carrier (XbX) with a man with normal vision (XY), we can see that the possible genotypes are XbX (daughter who is a carrier but has normal vision), XX (daughter with normal vision who is not a carrier), XbY (son who is colour blind), and XY (son with normal vision).

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Complete Question is:

Two people with normal vision have two sons; one is color-blind and one has normal vision. If the couple also has daughters, what proportion of them will have normal vision? Explain.

what is the nitrogen source for the carbamoyl phosphate in pyrimidine synthesis?

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The amino acid glutamine is commonly employed as the nitrogen supply for the carbamoyl phosphate used in the production of pyrimidines.

Bicarbonate, ATP, and ammonia, which is produced from glutamine by the enzyme glutamine synthetase, are used in this process to produce carbamoyl phosphate. The pyrimidine nucleotides, which are necessary components of DNA and RNA, are created by further modifying carbamoyl aspartate, which is created by using the carbamoyl phosphate in the first stage of pyrimidine synthesis. Alternative nitrogen sources, such as ammonia or urea, can also be utilized by some species to produce carbamoyl phosphate, but glutamine is often the main nitrogen donor. Cell growth and proliferation depend on the production of pyrimidine nucleotides, and disturbances in this system can cause sickness or aberrant development.

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which of the following is true of neurons? group of answer choices they usually have several axons. each has only one axon. they all have the same number of dendrites. they are all remarkably similar in size.

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Each neuron typically has only one axon, which can branch out into multiple axon terminals to communicate with other neurons or muscle cells.
So the correct option is: "Each has only one axon."

While neurons come in a wide range of sizes and shapes, they all share certain fundamental features, such as a cell body (soma) containing the nucleus, dendrites that receive input from other neurons, and an axon that transmits output to other neurons or muscle cells. However, the number and shape of dendrites, as well as the length and branching of the axon, can vary widely depending on the specific function and location of the neuron within the nervous system.Neurons are specialized cells that are responsible for transmitting information throughout the nervous system. They use electrical and chemical signals to communicate with one another and with other cells in the body.

The cell body, or soma, of a neuron contains the nucleus and other cellular machinery necessary for protein synthesis and energy production. Dendrites, which are typically highly branched, receive input from other neurons and can be thought of as the "input" side of the neuron. The axon, which is typically a long, thin projection that extends from the cell body, transmits output to other neurons or muscle cells and can be thought of as the "output" side of the neuron.
Axons can range in length from a few millimeters to over a meter, depending on the location of the neuron within the nervous system. Some neurons have only a single axon, while others can have multiple axons that branch out to communicate with different cells. However, each individual axon is typically responsible for transmitting signals to a single target, whether it be another neuron or a muscle cell.

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true or false? a chromosome and chromatid are the same thing.

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chromosome and chromatid are the not same thing its false. A chromatid is one of the two identical halves of a chromosome that has been replicated in preparation for cell division. The two “sister” chromatids are joined at a constricted region of the chromosome called the centromere.

Chromatid Replication of cells is crucial for growth and for replacing damaged cells that cannot be repaired. The cells that are present when you acquire a cut on your skin and the cut heals are a good illustration of this. The old cells' exact replicas are present in the new cells. Your chromosomes, which contain the genetic material that determines who you are, must be replicated and sent to each of the new cells as part of cell replication. These chromosome copies, called chromatids, are connected by a unique structure that permits their meticulous division into new daughter cells while preserving the proper amount of chromosomes in each cell.

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(q030) which mechanism best describes the process by which a budding yeast cell designates the site of new bud formation during cell division?

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The easiest way to characterize budding is as asexual reproduction that produces genetically identical offspring.

A type of asexual reproduction in which offspring develop from the parent organism's reproductive system. Although some species have buds practically everywhere on their bodies, buds frequently only appear in certain places. In yeast, budding typically happens when there is a plentiful supply of nutrients. As the mother grows, this reproductive process results in tiny shoots. The parent yeast nucleus then divides into two, one of which moves into the bud. Yeast often reproduces asexually through a process known as budding. On the parent cell, a little button or bud develops, matures, and finally divides into a new yeast cell. Genetically speaking, the parent cell and this new yeast cell are identical.

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a pea plant can have smooth (r) or round (r) seeds, and yellow (y) or green (y) seeds. what is the probability of forming a gamete that contains ry alleles?

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The probability of forming a gamete that ry alleles is 1/4.

As per the question, a pea plant can have smooth (R) or round (r), and yellow (Y) and green (y) seeds. The gametes it will form are- RY, Ry, rY, and ry. Thus, the probability of forming a gamete that contains ry alleles is 1/4.

The type of cross depicted here is dihybrid cross. A dihybrid cross comprises of inheritance of two traits simultaneously. The two characters being inherited here are the seed shape and the seed color. Mendel was the one who worked on pea plants to provide various laws describing the inheritance of characters among organisms.

The seed color yellow is dominant over green, while seed being round is dominant over wrinkled. According to Mendelian inheritance, the gametes segregate independently without the influence of each other.

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Muscles are not likely to tear from their bones because Select one: a. the tendons are partially ossified at their attachment points to the periosteum. b. a circumferential lamella sandwiches the ends of the tendon onto the surface of an adjacent lamella. c. perforating fibers of collagen attach the tendons and periosteum to the cortical surfaces of bone. d. elastin fibers in the tendon can allow for stretching and recoil of the muscle.

Answers

Collagen attach the tendon and periosteum to the cortical surface of the bone. Option C is correct.

Tendons are tough, fibrous connective tissues that attach muscles to bones, and they are designed to withstand the tension and stress generated by muscle contractions. The collagen fibers that make up tendons are arranged in a highly organized manner, providing strength and stability to the tendon.

Perforating fibers of collagen are bundles of collagen fibers that penetrate the periosteum, which is the dense connective tissue that covers the surface of bones. These fibers attach the tendon to the cortical surface of the bone, anchoring the muscle to the bone and providing a strong connection that resists tearing.

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Musk oxen are large animals that roam the Arctic in groups called herds. When approached by a predator, adult musk oxen form a ring with
calves (baby musk oxen) in the middle of the circle. The adult musk oxen face the outside of the circle with their horns facing the predator.
Which three true statements provide evidence that this group behavior of musk oxen increases the survival success of individual calves in the
herd? Move the statements into the box.
Evidence Statements
Musk oxen calves are born without horns.
Musk oxen have sharp horns and will use them while charging at enemies.
Musk oxen have a double coat of long, shaggy hair that protects them from the cold.
Musk oxen calves are most likely to be eaten by wolves when they are separated from the herd.

Answers

Musk oxen have sharp horns and will use them while charging at enemies.

What are musk oxen?

The muskox belongs to the subtribe Ovibovina (also known as the tribe Ovibovini), tribe Caprini (also known as the subfamily Caprinae), subfamily Antilopinae, family Bovidae. It belongs to its own genus, Ovibos, and is more closely related to sheep and goats than oxen.Along with the smaller takin, it is one of the two largest extant members of the caprine family.While the takin and muskox were originally thought to be perhaps related, genetic investigation reveals that their lineages actually split off early in caprine development since the takin lacks common ovibovine traits like the muskox's unique horn morphology.Instead, the gorals of the genus Naemorhedus, which are now widespread in several nations in central and east Asia, appear to be the muskox's closest surviving cousins.

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Which of these is NOT true of the Kingdom Aveolata?
a. Some members of this kingdom are decomposers, showing ecological convergence with the fungi.
b. Some member of this kingdom a free-living and covered with cilia.
c. Some members of this kingdom cause human diseases that require an insect vector.
d. Some members of this kingdom are an important component of the phytoplankton.

Answers

The incorrect statement about kingdom Alveolata is: (a) Some members of this kingdom are decomposers, showing ecological convergence with the fungi.

Kingdom Alveolata comprises of the organisms which are eukaryotic. They are characterized by the presence of cortical alveoli, mitochondria with tubular cristae and the organisms may be free-living or parasitic. Their mode of nutrition is majorly autotrophic although some heterotrophic organisms are also present.

Decomposers are the organisms which feed upon the organic material by the breaking down of dead organisms. These organisms are also known by the name detritivores. The examples are: fungi, insects, earthworms, and some bacteria.

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Image of a box divided in half by an imaginary line. The concentration of atoms is higher on the left than on the right.

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The image shows a box divided in half by an imaginary line. The left side of the box has a higher concentration of atoms than the right side.

What is imaginary line?

An imaginary line is a line of demarcation that does not actually exist in the physical world. It is a concept used to separate two different areas, demarcate boundaries, or create imaginary borders. Imaginary lines are often used in literature, art, music, and other forms of creative expression. They can be used to illustrate a theme, draw the focus of attention, or create a sense of separation. Imaginary lines can also be used to mark off specific areas of a map or delineate a nation's boundaries. By definition, imaginary lines are non-existent and cannot be physically observed, but they can be used to represent something in a creative or meaningful way.

This is an example of a heterogeneous mixture, where the composition of the mixture varies in different parts of the box. The difference in concentration of atoms is due to the unequal distribution of molecules across the boundary.

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Glyphosate is the active ingredient in the herbicide called ROUND-UP. What common blological molecule does glyphosate resemble A. water B. a nucleotide C. a carbohydrate D. an acyl chain E. an amino acid

Answers

The main component of the herbicide ROUND-UP is glyphosate. Amino acids are a common biological substance that glyphosate resembles.

Glyphosate is a synthetic herbicide that was first introduced in the 1970s. It is the active ingredient in many herbicide products, including the popular brand name herbicide Roundup. Glyphosate is used to control the growth of unwanted plants, such as weeds, and is widely used in agriculture, forestry, and gardening. Glyphosate works by inhibiting the activity of the enzyme 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) in plants. EPSPS is involved in the shikimate pathway, which is a metabolic pathway that is essential for the biosynthesis of certain amino acids and other aromatic compounds in plants. By inhibiting EPSPS, glyphosate blocks the production of these compounds, which leads to the death of the plant.

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Which characteristic of a planet indicates whether the planet is made of solid rock or gas?
Atmosphere
O Presence of moons
O Presence of rings
O Surface composition

Answers

Answer:Surface composition

Explanation:The surface composition of a planet will tell you what the planet is composed of. Solid rock planets are able to have rings and moons if their gravitational pull is strong enough, therefore the only correct answer is surface composition.

Answer:

So the answer is: O Surface composition

Explanation:

The surface composition of a planet indicates whether the planet is made of solid rock or gas. If a planet has a solid surface, it is likely composed of solid rock. If a planet does not have a solid surface, it is likely composed of gas.

The presence of moons, the presence of rings, and the atmosphere of a planet do not necessarily indicate the composition of the planet, so those options are not correct.

So the answer is: O Surface composition

12 In order to prepare for a future outbreak of Ebola, a harmful virus, two vaccines were tested. In order for either of these vaccines to be effective, they must?​

Answers

In order to prepare for a future outbreak of Ebola, a harmful virus, two vaccines were tested. In order for either of these vaccines to be effective, they must be safe and have thermal stability.

What is a Vaccine?

This is referred to as a biological preparation that provides active acquired immunity to a particular infectious or malignant disease.

An effective commercial vaccine should not harm the person being vaccinated and must be stable so as to be withstand different environmental changes such as temperature etc thereby making it the correct choice.

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what is the lowest temperature chickens can tolerate

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Cold tolerance of chicken is aparantly high and they can survive even in zero degree weather.

Adult hens in good health can survive in almost any environment. They will be alright as long as they have protection from the weather, including rain, snow, wind, and snow. In severe environments, chickens should have an enclosed coop. Heat should be considered one of the extreme circumstances.

This post will go through how cold is too cold for your birds, signs that your flock is becoming too cold, winter survival tips, and robust chicken breeds. Chickens are extremely tough and can survive in zero-degree weather. However, they prefer hotter climates. Between 70 and 75 degrees Fahrenheit is the ideal range for hens. You need to take steps in the cold to keep your chicks warm.

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bioinformatics most typically analyzes what cellular macromolecules?

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Bioinformatics is an interdisciplinary field that applies computational methods and tools to analyze and interpret biological data.

One of the primary types of biological macromolecules that bioinformatics typically analyzes is nucleic acids, specifically DNA and RNA.

Bioinformatics tools are used to analyze the structure and function of nucleic acids, including the sequence of nucleotides in DNA and RNA, the expression patterns of genes, and the interactions between genes and their products. This information is used to study gene expression, genetic variation, gene function, and the evolution of genes and genomes.

In addition to nucleic acids, bioinformatics can also be used to analyze and interpret data related to proteins, including their sequence, structure, and function, as well as their interactions with other molecules. This type of analysis is often referred to as structural bioinformatics or protein bioinformatics.

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what layer of the epidermis who actively mitotic cells are found in ?

Answers

The stratum basale layer of the epidermis of skin exhibits the highest mitotic activity. The stratum basale, the deepest and innermost layer of the epidermis, is made up of keratinocytes, which are epithelial cells that are actively growing and dividing.

The epidermis, which is made of stratified squamous epithelium, and the dermis, which is composed of areolar and thick irregular connective tissue, are the two layers that make up the skin. The epidermis is non-keratinized in the internal skin and keratinized in the exterior skin of the body to assist defend against abrasion and water loss. There are various layers that make up the epidermis. Constant mitosis occurs in the stratum basale or stratum germinativum to replenish the skin's surface-exfoliated cells. The newly formed cells advance towards the top of the intervening or transitional layers. The stratum spinosum, sometimes known as the "spiny layer," is made up of cells connected by fibrous desmosomes that allow the skin to be dragged and stretched without the cells separating.

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