what enzyme catalyzes the attachment of an amino acid to trna? what enzyme catalyzes the attachment of an amino acid to trna? aminoacyl-trna synthetase rubisco dextrinase argininosuccinate lyase nuclease

Answers

Answer 1

Enzymes are proteins that are responsible for the catalysis of biochemical reactions. They are involved in a variety of cellular processes, including metabolism, replication, and gene expression. One of the most important enzymes in biology is aminoacyl-tRNA synthetase.

This enzyme is responsible for the attachment of an amino acid to its corresponding transfer RNA (tRNA) molecule, which is then used in the process of translation.

Aminoacyl-tRNA synthetase binds to an amino acid and its corresponding tRNA molecule and catalyzes the formation of an aminoacyl-tRNA complex. This complex is then used to initiate the translation process, in which ribosomes decode the genetic code within mRNA molecules and use the information to construct proteins. Without this enzyme, the translation process would not be possible.

Other enzymes involved in metabolism, replication, and gene expression include rubisco, dextrinase, argininosuccinate lyase, and nuclease. Rubisco is an enzyme involved in photosynthesis, which is the process by which plants use light energy to produce food. Dextrinase is a carbohydrate-degrading enzyme that breaks down complex carbohydrates into simple sugars. Argininosuccinate lyase is an enzyme involved in the production of urea, which is an important waste product of the body. Nuclease is an enzyme that cleaves DNA or RNA molecules into smaller fragments.

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Related Questions

Mariam applied for a job, but the owner of the company refuses to hire her. Miriam’s friend tells her that the owner won’t hire anyone of color because he is prejudiced against people who aren’t white. What do the owner’s actions BEST represent?

A.
stereotypes

B.
discrimination

C.
assimilation

D.
amalgamation

Answers

the answer is A. i took the test not that long ago

synthetic polymer fibers, which all originate with petroleum products, are cellulose-based fibers. t or f

Answers

It is true that cellulose serves as the basis for synthetic polymer fibers, which are all made with petroleum chemicals.

The most popular kind of regenerate fiber is rayon, which is made from cellulose and is primarily a plant-based material. Cellulose-based fibers include synthetic polymer fibers, which all come from petroleum. However, polyester is rapidly destroyed by strong, mild acids despite having characteristics similar to nylon.

The term "synthetic fibers" refers to man-made fibers created by chemically modifying natural materials or polymers generated from coal or petroleum. They are typically semicrystalline polymers that can be extruded and drawn into different cross-sectional shapes. Cellulose-based fibers include synthetic polymer fibers, which all come from petroleum. While polyester shares many characteristics with nylon, it is more easily dissolved by weak and concentrated acids. Textiles or fabrics are made from fibers.

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Review the table detailing the mass of Jupiter’s moons and their distance from the planet.

A 3 column table with 4 rows. The first column is labeled Moon with entries Io, Europa, Ganymede, Callisto. The second column is labeled mas in x 10 Superscript 19 Baseline kilograms with entries, 8.932, 4.8, 14.819, 10.759. The last column is labeled Distance from Jupiter in meters with entries, 421700, 671034, 1070412, 1882709.

Which of Jupiter’s moons has the greatest gravitational force with Jupiter?

Io
Europa
Ganymede
Callisto

Answers

The Jupitar moon that would have the greatest gravitational force with Jupiter is Ganymede. Option C

What is the gravitational force?

We know that the gravitational force has to do with the force that is exerted by one object on the other owing to the fact that they are all with the gravitational field of the universe. We must know that the universe is a great gravitational field.

The gravitational force that acts on objects in the universe is an attractive force. Hence we know that masses that are in the universe are able to  be attracted to each other by reason of the force of gravity that is operating in the universe.

We know that the magnitude of the gravitational force depends on the mass of the objects as well as on the magnitude of the distances that separates the objects in the universe.

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Answer: c Ganymede

Explanation:

The kidneys remove ______ from the blood.
a. oxygen
b. urea
c. cells
d. carbon dioxide

Answers

The correct answer is urea. Kidneys are responsible for filtering blood and removing waste products
The answer to this is b)urea

which best illustrates a result of natural selection?a bat that is born with a wing that is missing the webdark-colored hares living in a snowy areamosquitoes that transmit disease to humansgiraffes having increasingly longer necks over time

Answers

Giraffes having increasingly longer necks over time best illustrates a result of natural selection.

Natural selection is the process by which individuals with different phenotypes survive and reproduce differently. It is a critical component of development, the adjustment of the heritable qualities normal for a populace overages. The giraffes' long necks are a great illustration of how animals adapt to their natural environment. Giraffes have a competitive advantage because they can now eat leaves that others can't reach thanks to their long necks. Those with longer necks were able to reproduce and pass on the trait to the next generation because they had access to better food.

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Which of the following organisms are ectothermic, or rely on the temperature of their environment to maintain their internal body temperature? Choose all that apply.

a)fish
b)iguanas
c) sea otters
d)whales
e)camels

Answers

Fish, amphibians, and reptiles are examples of ectotherms. Warmer climates are typically more favorable for these creatures.

What types of animals are ectotherms?

Any animal that is considered to have cold blood, or whose ability to regulate body temperature dependent on outside factors like sunshine or a warm rock surface Fish, amphibians, reptiles, and crabs are all ectotherms.

Can people have ectothermia?

Endotherms employ thermoregulation to keep a reasonably constant internal body temperature although when their exterior environment fluctuates, as opposed to ectotherms, which rely on their outer world and for body heat. Endotherms include people, other mammals, and birds.

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explain how privatizing endangered species (private ownership) will save them from extinction. give an example.

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Extinction is defined as the elimination of species due to natural or human-made factors. The species are necessary to preserve the ecosystem and biodiversity.

Private ownership of threatened or extinct species can prevent the extinction of those species. Their likelihood of being hunted, exported, traded, preyed upon, losing their habitat, and dying from natural disasters will all be decreased by private ownership. To stop them from going extinct, animals like elephants, monkeys, crocodiles, snakes, and lions are divided into private ownership categories.

The prohibition on the trade in endangered species may or may not prevent the extinction of the species, but it also may backfire and cause market booms. The ban will enable traders to engage in animal trafficking and theft, which may speed up the rate of extinction. There will be an increase in wildlife deaths as a result of poaching for their meat, fur, teeth, and skin being sold on the black market.

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Describe how natural selection explains the changes in species over time .

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English naturalist Charles Darwin discovered the idea of natural selection.

Over time, natural selection process leads to the evolution of species. This is one way to explain how millions of species have existed on Earth. For example, the long necks of giraffes give them a competitive advantage to feed on leaves over other organisms that have shorter necks.

The beneficial characteristics spread throughout the population over time. Favorable traits are transmitted through generations which results in natural selection. Natural selection can result in speciation, the process by which one species gives rise to another that is utterly distinct from it.    

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Arrange the levels of the taxonomic hierarchy from the group containing the most species to the group containing the fewest.Choices:FamilyKingdomClassOrderGenusPhylumDomain

Answers

The levels of the taxonomic hierarchy from the group containing the most species to the group containing the fewest are as:

Domain, Kingdom, Phylum, Class, Order, Family, Genus

Taxonomy is a subfield of biological science that deals with the representation, identification, naming, and classification of different types of living things. Each level or rank in the taxonomy has a greater number of species than the level or rank that comes after it, although all of the animals possess some qualities in common. The taxonomic ranks (groups) that contain the most species, working their way down to the group that contains the fewest, are as follows:

Domain, Kingdom, Phylum, Class, Order, Family, Genus

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macroevolution: changes above the level of species-how would you explain this to another person?

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Macroevolution is evolution that happens at or above the species level. It is the outcome of several generations of microevolution. Macroevolution may encompass evolutionary changes between two biotic interactions, as in coevolution, or it may necessitate the occurrence of one or more completely new species.

Macroevolution is commonly defined as the evolvement of structural components and characteristics that go far beyond the intraspecific variation observed in microevolution. In other words, macroevolution is the evolution of taxa above the species level. Anatomy and developmental biology, molecular biology, biogeography, and fossils provide evidence for large-scale evolution, also known as macroevolution. Anatomy shared by various species may be homologous due to ancestry or analogous because of similar selective pressures.

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in which phase of periodontal disease progression does pge2 mediate bone destruction by stimulating large numbers of osteoclasts to resorb alveolar bone? group of answer choices a) initial lesion b) established lesion c) early lesion d) advanced lesion

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(d) Advanced lesion/ periodontitis is the phase in which periodontal disease progression does pge2 mediate bone destruction by stimulating large numbers of osteoclasts to resorb the alveolar bone.

A severe gum illness called periodontitis. It is brought on by germs that have been let to build up on your teeth and gums. Your teeth and bones may be harmed when periodontitis worsens. The harm can be prevented, though, if periodontitis is treated quickly and good dental hygiene is maintained.

The gum inflammation known as gingivitis is the precursor of periodontitis. Your gums bleeding when you brush or floss your teeth is one of the early symptoms of gingivitis. You could see some tooth discolouration as well. Plaque refers to this. A accumulation of germs and food particles on your teeth is called plaque.

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FILL IN THE BLANK. if a drosophila female has a homozygous mutation for a maternal effect gene, _____.

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If a drosophila female has a homozygous mutation for a maternal effect gene, all of her offspring will show an abnormal phenotype.

The phenotype of an organism is defined by this phenomenon, independent of the organism's own zenotype, and will be determined by what the mother's genotype is. Here, it is revered for its distinct zenotype. In actuality, the supply of m r is what is principally responsible for this result in this case. It is a result of the arena's supply and the proteins from the mother's side that are present here. We can see from this example that a female roseola, or mutation, will manifest if the mutation is metal and maternal effect recessive.

Therefore, we will state that the maternal gnome controls the functioning of that chemical in this instance.

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what hormones do the follicular cells produce and secrete, and what are the functions of these hormones?

Answers

Answer:

These follicular cells are the derivates of the endoderm and secrete thyroid hormone. The circulating form of this hormone is thyroxine, which is tetraiodothyronine (T4) along with a small quantity of triiodothyronine (T3).

why are 4 h needed for every atp synthesized and exported by mitochondria, even though only 3 h need to be translocated by the atp synthase complex to synthesize one atp?

Answers

The 1 H+ needed to cotransport the Pineeds must be taken into account in the equation since the ATP synthase activity would stall if there was not enough Pi available.

Because the conversion of ADP to ATP depends on the oxidative processes taking place in the mitochondria, this procedure is referred as oxidative phosphorylation. The final phase of OXPHOS, the ATP synthase, is driven by a continuous proton motive force, which also powers the synthesis of ATP. To cotransport the Pi required for the ATP synthase complex to phosphorylate ADP, the phosphate translocase needs one H+. The 1 H+ needed to cotransport the Pineeds must be taken into account in the equation since the ATP synthase activity would stall if there was not enough Pi available.One FADH2 molecule creates 2 molecules of ATP, while one NADH molecule generates 3 molecules of ATP. In ETS, 10 NADH molecules are generated, but only 2 FADH2 molecules. This means that 34 molecules of ATP were produced overall from these NADH & FADH2 molecules.

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what change occurred in each population of bacteria from the early generation to the later generation ?

Answers

The maximal population of some bacterial species at the end of the log phase can reach a density of 10 to 30 billion cells per milliliter under ideal circumstances.

Since the very beginning of life on Earth, bacteria have existed.

There is strong evidence that bacteria have existed since the early Precambrian Period, or roughly 3.5 billion years ago, as evidenced by the discovery of fossilized bacteria in rocks from the Devonian Period (419.2 million to 358.9 million years ago).

At least since the Paleoproterozoic period, which lasted for around 1.8 billion years, when oxygen was produced by cyanobacteria and entered the atmosphere, bacteria have been present in large numbers on Earth.

As a result, bacteria have had plenty of time to evolve into a variety of offspring forms and adapt to their environs.

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explain the importance of exocytosis (secretion) in cellular communication and the regulation of metabolic processes, including digestion.

Answers

Exocytosis effectively ousts the loss from the cells to keep a stable interior climate. During the course of endocytosis, cells use proteins and lipids from the plasma layer to deliver vesicles.

The exocytosis cycle conveys proteins, lipids, and carbs to the plasma layer or the extracellular space to support plant cell development, improvement, and reaction to natural boosts. Endocytosis is the course of effectively moving atoms into the cell by immersing them in its layer. Endocytosis and exocytosis are utilized by all cells to ship atoms that can't go through the film inactively. Exocytosis gives the contrary capability and pushes particles out of the cell. Endocytosis and exocytosis are significant systems for bringing substances into and out of a phone. Cells use exocytosis to discharge proteins. A significant number of the proteins made on the harsh endoplasmic reticulum and handled by the Golgi device are arranged into vesicles bound for the plasma layer.

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what is one difference between the naturally occurring crispr system and the engineered crispr system used in the lab?

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The difference between the naturally occurring CRISPR system and the engineered CRISPR system used in the lab is there is a single guide RNA that interacts with Cas9 in the naturally occurring system.

The vital first step in genome editing is to precisely target a particular DNA sequence. Target sequences in biological systems can be found thanks to the interaction between the Cas9 protein and the guide RNA.

The Cas9 protein finds and cleaves the target DNA in CRISPR/Cas systems that are both natural and artificial. The six domains that make up the Cas9 protein are the REC I, REC II, Bridge Helix, PAM Interacting, HNH, and RuvC domains.

The interaction with guide RNA is carried out by Rec I, the biggest domain. The function of the REC II domain is currently unknown. The target DNA must start the cleavage process once it has attached to the arginine-rich bridging helix.

What is one difference between the naturally occurring CRISPR system and the engineered CRISPR system used in the lab?

a. Cas9 makes single-stranded cuts in the DNA in the naturally occurring system

b. there is a single guide RNA that interacts with Cas9 in the engineered system

c. the PAM is required only for the function of the engineered system

d. there is a single guide RNA that interacts with Cas9 in the naturally occurring system

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how do genetics counselors provide genetic/genomic information to patients and families in a nondirective manner?

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Genetic counselors provide genetic/genomic information to patients and families in a nondirective manner by presenting all facts and available options in a manner that neither promotes nor excludes any legally permitted decision or action.

The genetic information of a person may contain information about their own genetic testing, the genetic testing of their family members, and information about the occurrence of a disease or other issue in their family. Family medical history is included in the idea of genetic information since it is frequently used to determine a person's increased risk of contracting a disease, ailment, or condition in the future. Genetic information also includes any embryo that is legitimately possessed by a person or a member of their family utilizing an assisted reproductive technique, as well as any fetus that is being carried by the person or a pregnant family member of the person. It also encompasses an individual's request for or receipt of genetic services, as well as an individual's or a family member's engagement in clinical research that makes use of genetic services.

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the cell bodies of sensory neurons are found in an enlarged area of the dorsal root called the gray commissure. the cell bodies of sensory neurons are found in an enlarged area of the dorsal root called the gray commissure. true false submit

Answers

It is false that the cell bodies of sensory neurons are found in an enlarged area of the dorsal root called the gray commissure.

The cell bodies of sensory neurons are in the dorsal root ganglia. The cell bodies of motor neurons are found in the gray matter of the spinal cord in the ventral region.

A collection of neurons is referred to as a nucleus if it is found in the central nervous system; a ganglion (PNS) is the name given to it if it is found in the peripheral nervous system. Ganglia are the structures that lie between the central and peripheral nervous systems together with the anterior white commissure, which connects the two halves of the spinal cord, the grey commissure is a thin strip of grey matter that surrounds the central canal of the spinal cord. In the Rexed classification, it is lamina X. Commissure in grey.

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what is the specific role of the enzyme indicated by b during the formation of the new dna strands?

Answers

Joining the nucleotides that form the new DNA strand is the specific role of the enzyme indicated by b during the formation of the new dna strands.

  DNA polymerase catalyzes formation of bonds between sugar groups and phosphate groups that link the DNA nucleotides together.

DNA and RNA's fundamental building units are nucleotides. They can move genetically. Enzymes need coenzymes called nucleotides to catalyse a range of biological processes. Our body uses ATP to store energy. They also take involved in metabolic processes, enzyme activity, and cell signalling.

One of the structural components, or building blocks, of DNA and RNA is the nucleotide. A nucleotide is made up of a base (one of the four compounds: adenine, thymine, guanine, or cytosine), a sugar molecule, and a phosphoric acid molecule. A nucleotide is also called as a "nucleoside monophosphate," "nucleoside diphosphate," or "nucleoside triphosphate" when all three are connected, depending on how many phosphates are in the phosphate group.

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Which method is used to extract minerals from stream bends and along coasts?
A)
placer mining
B)
subsurface mining
C)
surface mining
D)
reclamation
E)
weathering


Please select the best answer from the choices provided

A
B
C
D
E

Answers

Answer:

C. Surface mining

Explanation:

surface mining is a category of mining that involves removing overlying mineral deposits

Describe the Earth-sun-moon system including the cyclic patterns of lunar phases, eclipses of the sun and moon, and seasons.

Answers

Answer:

The Earth-sun-moon system involves the interactions of three celestial bodies: the Earth, the sun, and the moon. One of the most notable phenomena is the cyclic patterns of lunar phases. An eclipse of the sun occurs when the moon passes between the Earth and the sun. An eclipse of the moon, or lunar eclipse, occurs when the Earth passes between the sun and moon. This can result in a total lunar eclipse or partial lunar eclipse.

The Earth-sun-moon system also plays a role in the seasons on Earth. For example, summer is summer in the northern hemisphere and winter in the southern hemisphere.

FILL IN THE BLANK. a terminator in mrna synthesis is a(n) __________.

Answers

Answer:

Specific nucleotide sequence in DNA that signals a stop

Explanation:

A terminator in mRNA synthesis is a specific nucleotide sequence in DNA that signals a stop.

The formation of simple to complex organic molecules leading to emergence of life on the earth occurred in the reducing atmosphere of primitive earth. Such phenomenon was facilitated by
A. absence of carbon.
B. absence of oxygen.
C. presence of nitrogen.
D. presence of hydrogen.​

Answers

Answer:

D. presence of hydrogen.​

Explanation:

The formation of simple to complex organic molecules leading to the emergence of life on Earth occurred in the reducing atmosphere of the primitive Earth. Such phenomenon was facilitated by the presence of hydrogen.

The early Earth was a very different place than it is today. The atmosphere was rich in reducing gases such as methane, ammonia, and water vapor, but it was relatively poor in oxygen. This lack of oxygen, combined with the presence of hydrogen and other reducing gases, provided the conditions necessary for the formation of simple organic molecules.

Over time, these simple organic molecules combined to form more complex molecules, such as proteins and nucleic acids. These molecules eventually gave rise to the first living cells, marking the beginning of life on Earth.

The presence of hydrogen was critical to this process. Hydrogen is a highly reactive gas, and it can easily react with other molecules to form more complex compounds. In the reducing atmosphere of the primitive Earth, hydrogen played a key role in the formation of simple organic molecules, which eventually gave rise to life.

In summary, the formation of simple to complex organic molecules leading to the emergence of life on Earth occurred in the reducing atmosphere of the primitive Earth. This phenomenon was facilitated by the presence of hydrogen, which played a key role in the formation of simple organic molecules and the emergence of life.

This type of phenomenon was facilitated by presence of hydrogen.​

How are simple to complex organic molecules formed on Earth?

Life on Earth arose from the formation of simple to complex organic molecules in the depleting atmosphere of the primitive Earth, which was facilitated by the presence of hydrogen.

The early Earth was a very different place when it compares to today. The atmosphere was rich in reducing gases like methane, ammonia, and water vapor, but it was relatively low in oxygen due to which it combined with the presence of hydrogen and other reducing gases providing the prerequisites for the formation of complex organic molecules.

The presence of hydrogen was critical to the process because it is a highly reactive gas that can readily react with other molecules to form more complex compounds. In the depleting atmosphere of the primitive Earth, hydrogen played a key role in the formation of the complex organic molecules that gave rise to life.

Thus, this type of phenomenon was facilitated by presence of hydrogen.​

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what would you expect to see if you plated some of your transformed bacteria onto a plate without antibiotic? would there be an advantage to doing this (in terms of understanding your results)? explain.

Answers

We would observe the emergence of new types of contaminating microorganisms.

This would be beneficial since it would show how the changed bacteria would interact with the bacteria that are naturally present around them.

Bacteria may be able to quickly adapt to their surroundings by modifying their environmental DNA. This may help bacteria by promoting the spread of antibiotic resistance, but it may also be detrimental if it eliminates advantageous genes from a population.

Sanger sequencing is the most accurate method of confirming your recombinant colonies. The first step is to separate the plasmid DNA from an overnight bacterial growth.

When everything is finished, the insert can be located using sequencing primers designed for the chosen vector.

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why might the cricket genome have eleven times as many base pairs as that of drosophila melanogaster?

Answers

More non-coding DNA must exist in crickets. They encode a DNA synthesis enzyme that starts with an RNA template.

Why is it more challenging to discover eukaryotic genes using genomic methods than bacterial genes?

Regulating sequences, like exon-intron boundaries, are unfortunately varied, more so in eukaryotes than in prokaryotes, and not all genes in eukaryotes have the same set of regulatory sequences. Therefore, it is difficult to find genes using these.

Why could the number of genes in the genome be less than the variety of proteins that an organism produces?

Since many genes are subjected to alternative splicing, the same gene can create a variety of proteins with various exon arrangements.

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henry has a cut on his thigh that becomes infected. the lymph nodes in his __________ enlarge.

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Henry has a cut on his thigh that becomes infected. The lymph nodes in his inguinal region enlarge.

A lymph node or lymph gland, is a kidney-shaped lymphatic and immune system component. The lymphatic veins connect a huge number of lymph nodes to one another throughout the body.

The lower section of the anterior abdominal wall is the part of the body where inguinal region, (also referred to as the groin) is located.

Lymph nodes play an important role in fighting viral or bacterial invasion in the host system by multiplying to promote phagocytosis thus, typically leads to swollen lymph nodes.

Inguinal lymph nodes are another name for groin lymph nodes. Any type of skin infection or injury to the leg, including thigs, can result in swollen lymph nodes in the groin.

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reheating food to a temperature sufficient to kill bacteria is helpful in making food safer. however, is there a way that one can get food poisoning despite food having been reheated?

Answers

Toxins may be heat-stable above temperatures that kill germs in some situations.

Bacteria are not destroyed at temperatures below 40 degrees. Bacterial growth is inhibited but not stopped. Cooking food at temperatures of 165 degrees or above is the only technique to destroy microorganisms by temperature. Bacteria are also killed in very acidic situations, such as pickle juice.

Cooking and reheating are the most efficient methods for removing bacterial risks from food. Most foodborne germs and viruses can be eliminated when food is cooked or reheated for an extended period of time at a high enough temperature. Food should have a core temperature of at least 75°C.

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why are many contaminants found at higher concentrations in polar bears and people living in greenland than they are in bears and people living in temperate and tropical areas?

Answers

Global atmospheric circulation carries airborne toxins toward the poles, where their deposition exceeds evaporation.

Polar bears are known for their calm temperament. They are naturally non-aggressive and will only attack humans when they feel threatened. In general, they are fairly gentle creatures who love to play and swim. These bear species become aggressive when they feel threatened or when their territory is invaded.

Black bears, for example, are generally less aggressive and more tolerant of humans. Although they often live near human settlements, grizzly bears prefer to stay away from human settlements and are often exterminated from heavily used or populated areas. are more robust than polar bears.

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Picture of the question is below

Answers

The key function of the plasma is in the movement of the platelets around the body.

What is plasma?

We know that the circulatory system is composed of the blood and the plasma that moves round the body. The plasma is the tool that together with the blood carries all the nutrients that the individual needs in the body.

We know that the plasma can be found in the lymph nodes and they are help in the transport of materials one of the materials that can be carried in the blood are the digested food as well as the blood platelets.

The blood platelets is the part of the blood that can be able to fight against the invaders and the disease causing organisms that may be able to enter into the body. This would help the body to remain strong.

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Why were the events described in the telegram considered an act of war? What steps did President Lincoln take in response?Use the telegram to answer the question. Your response should be a paragraph in length.Telegram Announcing the Surrender of Fort Sumter, 1861S.S. BALTIC.OFF SANDY HOOK APR.EIGHTEENTH.TEN THIRTY A.M. VIA NEW YORK. .HON.S.CAMERON. SECY.WAR. WASHN. HAVING DEFENDED FORT SUMTER FOR THIRTY HOURS UNTIL THE QUARTERS WERE ENTIRELY BURNED THE MAIN GATES DESTROYED BY FIRE. THE GORGE WALLS SERIOUSLY INJURED. THE MAGAZINE SURROUNDED BY FLAMES AND ITS DOOR CLOSED FROM THE EFFECTS OF THE HEAT. FOUR BARRELLS AND THREE CARTRIDGES OF POWDER ONLY BEING AVAILABLE AND NO PROVISIONS REMAINING BUT PORK. I ACCEPTED TERMS OF EVACUATION OFFERED BY GENERAL BEAUREGARD BEING ON SAME OFFERED ON THE ELEVENTH INST. PRIOR TO THE COMMENCEMENT OF HOSTILITIES AND MARCHED OUT OF THE FORT SUNDAY AFTERNOON THE FOURTEENTH INST. WITH COLORS FLYING AND DRUMS BEATING. BRINGING AWAY COMPANY AND PRIVATE PROPERTY AND SALUTING MY FLAG WITH FIFTY GUNS. ROBERT ANDERSON. MAJOR FIRST ARTILLERY. COMMANDING. Pleaseeee helppppp meeeeee a metabolic pathway capable of producing adenosine triphosphate (atp) rapidly without the involvement of o2 is termed . Xavier makes a conjecture that the sum of two odd integers is always an even integer. Which choice is the best proof of his conjecture?. Whats the surface area of this prism ? complete the paragraph on sense of smell by clicking and dragging the labels to the correct location. (some labels will not be used.) a die is rolled until the first time t that a six turns up, what is the probability distribution for t the positive integers are arranged in the patterm illustrated below: if this pattern continues indifinetely, what is the number immediately above 39863 total per set of covers direct materials $ 31,878 $ 15.40 direct labor $ 6,210 3.00 variable manufacturing overhead (based on direct labor-hours) $ 4,347 2.10 $ 20.50 during august, the factory worked only 500 direct labor-hours and produced 1,700 sets of covers. the following actual costs were recorded during the month: total per set of covers direct materials (5,000 yards) $ 25,500 $ 15.00 direct labor $ 5,440 3.20 variable manufacturing overhead $ 4,080 2.40 $ 20.60 Managerial accounting, as compared to financial accounting:a) must conform to GAAP.b) places a great deal of emphasis on historical transactions.c) uses frequent and prompt control reports.d) focuses on information prepared for the investors and creditors. Sam wanted to graph the equationy = 2x -7. She plotted her y-interceptpoint and started to count the slope.Which of the following should she do?A. count up 2, and left 1B. count down 2, over 0C. count down 2, and right 1D. count up 2, and right 1 You have physically added a wireless access point to your network and installed a wireless networking card in two laptops that run Windows. Neither laptop can find the network. You have networking card in two laptops that run Windows. Neither laptop can find the network. You have come to the conclusion that you must manually configure the wireless access point (AP). come to the conclusion that you must manually configure the wireless access point (AP). Which of the following values uniquely identifies the network AP? Which of the following values uniquely identifies the network AP?