in this case study, the main focus has been on the organism vibrio cholerae and the toxin it produces. many organisms are capable of producing toxins that allow for pathogenesis, while others are able to infect the host directly and cause disease. in this activity, you will place the organism in a bin based on its ability to cause an infection, an intoxication, or both.
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increased ventilation that results in an increase in blood ph is called . hyperventilation hyperpnea acclimatization apnea
Increased ventilation that results in an increase in blood pH is called hyperventilation. Hyperventilation is fast and profound relaxing.
Ventilation alludes to the whole course of moving air all through the lungs and the human body. Now and again, for example, in instances of respiratory disappointment, mechanical ventilation might be required.
Increased ventilation that outcomes in an expansion in blood pH is called hyperventilation. it is fast and profoundly relaxing. It is likewise called over-breathing, and it might amaze you feeling. The ascent in blood pH will make the blood essential and lead to a condition known as respiratory alkalosis. Hyperventilation wipes out CO2 quicker than it is being created and, subsequently, pH increments; hypoventilation dispenses with CO2 more leisurely than it is being delivered and, therefore, pH diminishes.
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What kind of review is required by an institutional review board IRB when the study poses more than minimal risk to the subjects?
Full review is required by an institutional review board IRB when the study poses more than minimal risk to the subjects.
Research that doesn't meet the criteria of the former review orders( generally involves further than minimum threat) is classified as a full review. This means that a quorum( aka maturity) of IRB commission members must meet, bandy, and have a maturity vote on the exploration offer.
“ Exempt ” mortal subjects exploration is asub-set of exploration involving mortal subjects that doesn't bear comprehensive institutional review board IRB review and blessing because the only exploration exertion involving the mortal subjects falls into one or further specific impunity orders as defined by the Common Rule.
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Can you regain eyesight after glaucoma?
While glaucoma treatment cannot restore vision that has already been lost, it can preserve remaining vision. Many types of glaucoma are typically treated with daily eye drops or a laser procedure.
Is there a way to preserve vision in the early stages?There is evidence that visual function can be restored in the early stages of glaucoma. However, there is currently only one known method of detecting such early loss. This is a type of in-office testing known as Pattern Electroretinography (PERG). Unfortunately, because PERG is both expensive and time consuming, very few eye doctors have the necessary equipment.
What exactly is glaucoma?Glaucoma is a common eye condition caused by damage to the optic nerve, which connects the eye to the brain. It is usually caused by fluid accumulation in the front of the eye, which raises intraocular pressure. Glaucoma can cause vision loss if it is not detected and treated early.
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how is the relationship between photosynthesis and cellular respiration an indication of the interdependence of organisms?
The relationship between photosynthesis and cellular respiration is an indication of the interdependence of organisms because the end product of Photosynthesis is glucose that is used in cellular respiration to make ATP.
Photosynthesis is a process used by plants and other organisms to convert light energy into chemical energy that, through cellular respiration, can later be released to fuel the organism's activities.
Photosynthesis releases oxygen into the environment which is used in the process of cellular respiration. Photosynthesis utilizes the carbon dioxide that is produced by cellular respiration. Because respiration releases energy it is chemically the reverse of photosynthesis, which uses energy from the Sun to make organic molecules. Photosynthesis and respiration are also connected ecologically because the vast majority of organisms use the oxygen produced by photosynthesis for respiration.
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What is somatic and germline mutation?
Answer: Germline mutations are changes to your DNA that you inherit from the egg and sperm cells during conception. Somatic mutations are changes to your DNA that happen after conception to cells other than the egg and sperm.
Explanation: Hope this helps!!
What are the main characteristics of viruses?
The main components that all viruses have are they contain Genetic material which is consist of DNA and mRNA for their reproduction as well as the Caspids protein.
What are the evidences of occurrence of viruses?The earliest evidence for the occurrence of viruses was the discovery of an infectious agent in the sap of a tobacco plant. Experiments were set with different filters from which bacteria could pass but viruses being even smaller than bacteria could not pass.
Viruses were difficult to study because they are very small and couldn't be seen even under a microscope.Wendell Stanley made his studies on the tobacco mosaic virus (TMV).
Therefore, The main components that all viruses have are they contain Genetic material which is consist of DNA and mRNA for their reproduction as well as the Caspids protein.
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Duplicated helium refers to the structure of DNA.
Ensures that amino acids are delivered to the ribosome where they may be assembled into polypeptides or proteins. One amino acid is encoded by each set of three nucleotides in DNA.
By severing the hydrogen bonds holding together the nitrogenous base pairs, an enzyme known as helicase unwinds the DNA. Code is often degenerate more than one codon per amino acid since there are only 20 amino acids and 64 possibilities of four nucleotides taken three at a time. The translation adaptor molecule is tRNA. DNA helicases unwind DNA at locations known as origins during DNA replication, where synthesis will begin. The replication fork, so named because the two strands seem forked as they are unzipped apart, is a structure that is created while DNA helicase proceeds to unwind the DNA.
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How were Claire's symptoms related to metabolism?
One of Claire's symptoms is poor vision, which made her concerned and caused tears to start streaming from her eyes. Metabolism and homeostasis are linked.
It demonstrates that she has recently been dissatisfied with her job because it was challenging for her to see well due to vision problems. An organism's ability to maintain its life depends on a number of chemical processes called metabolism (/mtblzm; from the Greek: o metabol, "change"). The conversion of food energy into cellular energy, the disintegration of food into its component proteins, lipids, and certain carbohydrates, and the elimination of metabolic wastes are the three main goals of metabolism. These enzyme-catalyzed activities enable organisms to develop and reproduce, retain their structural integrity, and respond to their surroundings.
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Can meiosis be diploid?
A haploid cell is created from such a diploid cell through the process of meiosis. A diploid parent cell triggers the start of meiosis.
Is meiosis haploid or diploid?A haploid cell is created from a diploid cell through the process of meiosis. Haploid and diploid cells vary from each other in that diploid cells have two entire sets of chromosomes whereas haploid cells only have one complete set. Meiosis is the process through which a diploid (2n) parent cell divides.
Meiosis in haploid cells is it possible?A diploid cell (2n) divides into two haploid cells (n) during the meiotic phase of cell division. Therefore, the haploid cell is unable to divide further. The chromosomal number is denoted by "n." A haploid cell cannot go through meiosis since meiosis reduces the number of chromosomes by half.
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Can you stop glaucoma?
Although there is currently no known treatment for glaucoma, vision loss can be prevented if it is identified early enough.
Reason for glaucomaDamage to the optic nerve, which results in loss of visual field, is the cause of the chronic, progressive eye disease known as glaucoma. Eye pressure is among the major risk factors. Fluid can accumulate in the eye due to an issue with the drainage system, which can result in excessive pressure that harms the optic nerve.
Can eye treatment for glaucoma be performed?Surgery can help protect your vision and keep it from declining, but it cannot treat glaucoma or turn back vision loss. There are several glaucoma surgery techniques that can reduce eye pressure, including: For glaucoma implants, trabeculectomy (tra-BECK-yoo-LECK-toh-mee) surgery is performed.
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Are genetically modified foods good for society?
Yes, genetically modified foods are good for society.
The DNA of genetically engineered (GE) foods has been altered using genes from those other plants or animals. Scientists take a desired trait gene from one plant or animal and insert it into the cell of another plant or animal.
Plants, animals, bacteria, and other extremely small organisms can all be genetically engineered. Scientists can use genetic engineering to transfer desired genes through one animal or a plant to another. Genes could also be transferred from one animal to another. GMOs are another term for genetically modified organisms.
The process of developing GE foods differs from selective breeding. This entails selecting animals or plants with desirable characteristics and breeding them.
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which event during the evolution of land plants probably made the synthesis of secondary compounds most beneficial?
The rise of herbivory during the evolution of land plants probably made the synthesis of secondary compounds most beneficial.
The emergence of herbivory in the Carboniferous was a watershed moment in the development of terrestrial ecosystems. Not only did it give animals greater ecological diversity, but it also increased their influence on the development of land plants. As allelopathic agents (allelochemicals that influence competition among plant species), attractants (pigments or scents) for pollinators and seed-dispersing animals, and as protection against herbivory and microbial infection, secondary compounds have significant adaptive significance. It appears that ecological interactions with other species are the primary area in which these secondary compounds are crucial.
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Can you feel high eye pressure?
A very high eye pressure (likely 35 or higher) can result in pain in and around the eye as well as nausea or vomiting. A mildly high eye pressure does not result in any noticeable symptoms or pain.
Does glaucoma always result in elevated eye pressure?Although some people with normal eye pressure do develop glaucoma, not everyone with high eye pressure does. The amount of pressure your optic nerve can withstand differs for each person, and it determines whether you will develop glaucoma. Eye pressure over 21 is considered abnormal for the majority of people.
Can stress raise eye pressure?The findings showed that intraocular pressure and heart rate were elevated in people with high anxiety-states and/or high trait anxiety.
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Does DNA replication begin at one end and proceeds to the other? (Yes or No question)
Answer:The correct answer is No
Explanation:
What structure is found in viruses and cells?
The genetic code for the production of all proteins is encoded in each virus's nucleic acid, much like in cells.
What skeletal system do cells and viruses share?RNA or DNA can both be found in the genetic makeup of viruses. Double-stranded DNA (dsDNA) serves as the genetic building block for all living things, including people, animals, plants, and microorganisms. In contrast, viruses have genomes, or genetic material, that can be made of either DNA or RNA (but not both).
What's the most common virus structure?The structure of viruses varies. DNA or RNA are contained within a ca psid, a protective protein coat, to form viral particles. From one viral type to another, the capsid's form may change.
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How do you calculate bacterial growth rate?
The generation time, which also refers to the period of time during which the population of bacteria doubles, is used to express the exponential growth rate of a bacterial culture.
The growth rate formula is as follows.For the period being studied, the difference between the starting and ending values is divided by the starting value to calculate growth rates.
The CFU formula is what?CFU/ml = (colonies x dilution factor) / volume of culture plate. Let's say the 106 dilution plate produced 130 colonies when counted. So, the following formula can be used to determine how many bacteria were present in 1 ml of the original sample: Bacteria per milliliter is (130 x 106) = 1.3 108, or 130,000,000
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What happens if endoplasmic reticulum is destroyed in the cell?
New plasma membrane proteins, lysosomal enzymes, Golgi apparatus proteins, and proteins for external secretion cannot be synthesized by the cell without the RER (rough endoplasmic reticulum). Because the RER is where these types of proteins are produced
RER has several important functions that are related to protein synthesis since ribosomes are linked to it. Protein folding also takes place in the RER's empty areas. Now, if RER is destroyed, eukaryotic cells' ability to synthesize proteins would diminish significantly. These cells won't be able to live for very long without proteins. RER is responsible for "packing of proteins" into transport vesicles, which are then sent to the Golgi apparatus for additional alterations. Proteins cannot reach their mature structure and functional state without this effective system. Incorrectly folded proteins will cause apoptosis.
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Based on the distribution of these molecules, what would most likely happen after a period of time ?
A. The concentration of O2 will increase inside the cell
B. The concentration of CO2 will remain the same inside the cell
C. The concentration of O2 will remain the same outside the cell
D. The concentration of CO2 will decrease outside the cell
Answer: The concentration of O2 will increase inside the cell.
Explanation:
A team of ecologists are studying four different ecosystems with varying levels of biodiversity. The ecologists categorize the different levels of biodiversity for the four ecosystems as shown in the table below.
Based on the information above, which ecosystem would most likely recover the fastest from a natural disruption?
answer choices
Ecosystem A
Ecosystem B
Ecosystem C
Ecosystem D
Based on the table, the ecosystem that is most likely to recover the fastest from natural disturbances is ecosystem B
Biodiversity refers to the number and relative abundance of species living together in a community. It is very important to maintain the stability of the ecosystem and its recovery after disturbance.
The ecosystem that recovers the fastest from natural disturbances is ecosystem B.
Genetic diversity refers to variations in the genetic structure/composition of a population, species, or community. This is the key to adapting the population to different environments.Habitat diversity refers to the number of habitats found in the same geographic area.Ecosystems with many species and greater genetic diversity can quickly recover from natural disturbances.Learn more about ecosystems recover the fastest from natural disturbances at https://brainly.com/question/30030588
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What the difference between bacterial and viral pathogens?
Bacteria can thrive in many types of environments. Most bacteria causes no harm but there exceptions like Strep throat, Tuberculosis, urinary tract infections, food poisoning, and a few more.
Viruses are smaller than bacteria and require a living host such as animals, plants, and humans to multiply and survive. When a virus enters your body it invades some of your cells and redirects it to produce the virus. Some examples of viral deceases are Chickenpox, AIDS, and Common colds to name a few.
Sometimes it can be hard to know whether a bacteria or virus is causing your symptoms as some things like pneumonia, meningitis, and diarrhea can be caused by either bacteria or virus.
what changed in metabolic pattern would result from a mutain in the muscle carnitine acyltransferase 1 in which the mutant protein has lost its affinity for malony
Malonyl-CoA would no longer hinder fatty acid entry into the mitochondrion and beta-oxidation, potentially leading to a futile cycle of cytosolic fatty acid synthesis and mitochondrial fatty acid breakdown.
When there is no food intake, the liver produces ketones by breaking down fatty acids. This safeguards the brain, which cannot oxidize fatty acids during the nocturnal fast or longer periods of starvation. Malonyl-CoA, the substrate of fatty acid synthesis, was discovered to be an inhibitor of fatty acid oxidation in 1977. Subsequent experiments confirmed this discovery and advanced our comprehension of molecular metabolism.
During the overnight fast and, more relevantly, during prolonged fasting or starvation, the decrease in malonyl-CoA concentration saves lives. It can, however, be fatal in uncontrolled type 1 diabetes, where significantly increased concentrations of long-chain fatty acids shift the chemical state from modest ketosis to full-blown ketoacidosis if not treated.
Individuals with genetic deficiencies in the enzymes that regulate carnitine levels and fat oxidation face a more significant problem than transient lowering of malonyl-CoA.
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(HELP ME) Look at the distance vs. age graph. Describe the relationship between age and distance. Does the relationship support the continental drift theory? Provide at least one piece of support for your answer by referencing your graph.
During one or more geologic periods, continents moved horizontally at a huge scale in relation to one another and to the ocean basins.
Supporting data for the continental drift theory
A Comparison of Continents (Jig-Saw-Fit)
The coastlines of South America and Africa are in striking and unusual alignment with one another.
Bullard developed a map in 1964 to discover the proper fit of the Atlantic margin using a computer programme, and it turned out to be unremarkable.
Rocks across oceans that are the same age
The development of rocks found on many continents across the ocean have been linked using radiometric dating techniques.
The ancient rock belts on the Brazilian coast correspond to those in Western Africa.
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Is it possible to predict the RNA sequence from a given protein sequence?
Can RNA sequence be predicted from a known protein sequence? Different nucleotide sequences can encode the same amino acid sequence because the genetic code is redundant.
How does the RNA sequence influence the final protein product?The mRNA interacts with the ribosome, a specialized complex that "reads" the sequence of mRNA nucleotides. An individual amino acid is typically coded for by each group of three nucleotides known as a codon.
Can mRNA levels predict the levels of protein?According to our findings, the amounts of mRNA and protein expression are generally correlated positively. The mild and diverse associations, however, imply that forecasting protein expression levels using mRNA expression may occasionally be possible but is undoubtedly far from accurate.
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soil is a no renewable resource drop down
Answer:
Soil is considered a renewable resource because it can be restored on a human timescale
Answer:
Soil is a non-renewable resource; its preservation is essential for food security and our sustainable future.
Explanation:
A single mRNA molecule can be read by more than one ribosome simultaneously. True or False
True. An mRNA molecule transports a piece of the DNA code to those other parts of the cell for synthesis.
A single mRNA molecule can be translated by many ribosomes at once, but each ribosome must start at the first codon and proceed along the mRNA strand one codon at a time until it reaches the stop codon. When transcription occurs, mRNA is produced. RNA polymerase decodes a single strand of DNA during transcription, which results in the synthesis of mRNA. Both of the two distinct subunits found in ribosomes are necessary for translation. In eukaryotes, the large subunit "60S" catalyzes the synthesis of peptide bonds while the tiny subunit "40S" decodes the genetic message.
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A patient was admitted to the ICU in December 2000 [...].
Ipenem is the MOST efficient. The provided data makes it abundantly evident that the patient develops the least resistance to this antibiotic. Ampicillin is the least reliable.
Ampicillin is used to treat bacterial infections of the sinuses, throat, lungs, reproductive organs, gastrointestinal tract, and urinary system. Another problem it is used to treat is meningitis, an infection of the membranes enclosing the brain and spinal cord. Amoxicillin and ampicillin have a lot in common. They belong to the same drug class and are structurally related to one another. Although they have slightly differing indications and dose, they have comparable adverse effects and medication interactions. Infections caused by a number of bacteria can be treated with ampicillin. It is an antibiotic similar to penicillin. It acts by preventing bacterial development.
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What is NOT one of the Gestalt laws of organization?
A.
law of harmony
B.
law of similarity
C.
law of proximity
D.
law of closure
Answer:
A. law of harmony
Explanation:
What are the 8 living organisms?
I'm guessing you're asking for the 8 characteristics one must have to be considered a living organism, so here's your answer.
Something must have all 8 of these traits to be considered a living thing. These characteristics are:
reproduction
heredity
cellular organization
growth and development
response to stimuli
adaptation through evolution
homeostasis
metabolism
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What is an example of a somatic mutation?
Sporadic cancer is an example of a somatic mutation. The most common type of cancer is caused by somatic mutations in somatic cells, that results in uncontrolled cell growth. Approximately 80% of cancer cases are sporadic.
A somatic mutation is one that arises after the emergence of a zygote in somatic cells or non-germ cells. These mutations are not acquired since they do not take place in the living organism's sex cells. Instead, they are encoded in the 22 pairs of somatic or autosomal chromosomes' genes.
Somatic mutations occur at a rate of approximately 2-6 mutations per million bases, and approximately three somatic mutations for every healthy human individual.
Cancer tumors are a distinct class of somatic mutations. Cancer is characterized by the breakdown of normal cell regulatory mechanisms, uncontrolled cell division, and the mobility of proliferating cells to certain other parts of the body. New cell division and differentiation are highly regulated processes. When this regulatory mechanism fails, a cell starts to develop the capability to undergo uncontrolled repetitive division, forming a clone of cells. There is no compliance.
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