which of the following factors would increase the amount of oxygen discharged by hemoglobin to peripheral tis- sues? a. decreased temperature b. decreased ph c. increased tissue po2 d. none of the above

Answers

Answer 1

The answer is option (d) is none of the above.

What is oxygen?

Its atomic number is 8, making oxygen a chemical element. When oxygen is present at normal pressures and temperatures, it forms the chemical compound (O2), which has two atoms and is a colorless gas.

What is hemoglobin ?

In addition to carrying oxygen from the lungs to the tissues and facilitating the return of carbon dioxide, hemoglobin also functions as a two-way respiratory carrier. Hemoglobin's high affinity for oxygen and low affinity for carbon dioxide, organic phosphates, hydrogen ions, and chloride ions in arterial circulation are characteristics that distinguish them from one another.

Therefore, answer is option (d) is none of the above.

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Related Questions

Which type of fungi fungi decompose dead matter?
a) saprophytic
b) parasitic
c) symbiotic
d) heterotrophic

Answers

Answer:

a.saprophytic

Explanation:

I hope its useful

(08.05 mc) an endangered species of lake trout is discovered living in a national wildlife refuge. which of the following statements explain how being listed as endangered under the endangered species act could help save the fish from extinction? the endangered species act calls for relocation of the trout to captive tanks for studying. the endangered species act prohibits fishers from catching the trout or interfering with its habitat. the endangered species act allocates federal funds to help add predatorial fish to the refuge to help promote only the survival of the heartiest trout.

Answers

endangered species act save the fish from extinction through relocation of the trout to captive tanks, prohibits fishers from catching the trout and allocates federal funds

The Endangered Species Act of 1973 (ESA; P.L. 93-205, 87 Stat. 884, 16 U.S.C. 1531–1544) was created to protect species that have been designated as vulnerable or endangered. Specifically, the ESA was created to To meet the goals of the treaties and conventions outlined in paragraph (a) of this section, it is necessary to offer a means for the ecosystems that are needed for the conservation of endangered and threatened species, as well as a program for their preservation.

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A dna molecule that is produced by combining dna from different sources or organisms is called.

Answers

Answer:Recombinant DNA (rDNA) molecules are DNA molecules formed by laboratory methods of genetic recombination (such as molecular cloning) that bring together genetic material from multiple sources, creating sequences that would not otherwise be found in the genome.

Explanation:its easy vote me brainiest

what does the organism consume when it uses the only nitrogen source provided in the medium, and what does that do to the ph?

Answers

In synthetic media, some amino acids, purines, pyrimidines, and urea are organic sources of nitrogen. Both nitrate and ammonia serve as supplies of nitrogen for bacteria in addition to being energy sources.

Other elements that microbes need include nitrogen and phosphorus. The synthesis of proteins, amino acids, DNA, and RNA all depend on nitrogen. Nitrogen-fixing bacteria are those that get nitrogen straight from the atmosphere. Ammonium sulfate and the combination of ammonium sulfate and amino acids were the most effective nitrogen sources for the rate of fermentation. The quantity of volatile chemicals created varied according to the type of nitrogen used. With the addition of nitrogen, some volatile chemicals' production rose while others decreased. Nitrogen is a substance that exists in soils, plants, the water we drink, and the air we breathe.

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the presence of neandertal dna in modern human genomes suggests our ancestors interbred. how was this thought to have occurred?

Answers

However, research has shown that modern humans overlapped with the Neanderthal and Denisovan populations over a period, and that they had children together (interbreeding).

As a result, many people living today have a small amount of genetic material from these distant ancestors. The first conclusive evidence that humans and Neanderthals mated came from the analysis of a draft Neanderthal genome, largely obtained from remains found in Croatia. As a result of these encounters, humans from outside of Africa carry traces of Neanderthal DNA, around 1% to 2% of their genomes. Neanderthals and anatomically modern humans overlapped geographically over a period of more than 30,000 years after human migration out of Africa. During this period, Neanderthals and humans interbred, as evidenced by the Neanderthal portions of the genome carried by non-African individuals today. The researchers estimate that much of the Neanderthal DNA in modern human genomes came from interbreeding events that took place around 50,000 to 55,000 years ago. in the Middle East. Thousands of years later, humans moving into East Asia interbred with the Denisovans.

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Correct the wrong terminology in each of the
following sentences. A word bank is provided.
carit
4. The water cycle is the process of evaporat-
ing sea water so that the water and salt
separate.
5. Types of nekton
include sea stars
and clams.

Answers

Answer:

Explanation: number 4 is distillation and number 5 is echinoderms.

Do you think there will be enough valuable minerals for everyone in the future? Why or why not? Which mineral do you think will be soon scarce? Explain.

Answers

Minerals are essential raw materials in our daily lives, and are vital for economic, social and technological development. For example, in the following: Agriculture: Phosphate rock, potash and lime are used in agricultural fertilisers and other mineral products are used to improve soil.

what will most likely result after a fire or other natural disaster damages an ecosystem in a certain area

Answers

Natural disasters have more of an affect on an ecosystem than they do to humans. This can be a positive or negative impact. In terms of a wildfire, a positive impact maybe be that the land gains fresh ground and soil to rebuild and grow from as well as removal of trash, certain invading species, and even chemicals. Negative would be that a large majority of the animals and wildlife would be deceased and toxic gases would be released into the atmosphere.

angiotensin ii is a substance made by the body to lower blood pressure during stress. group of answer choices true false

Answers

False: Angiotensin II is a substance made by the body to lower blood pressure during stress. group of answer choices

Your body produces a substance called angiotensin that makes your blood arteries smaller. Your blood pressure may rise as a result of this narrowing, which also makes your heart work harder. In order to lower your blood pressure and facilitate your heart's ability to pump blood, angiotensin II receptor blockers work to relax your veins and arteries. Angiotensin II receptor blockers stop the action of angiotensin II. As a result, the medication enables the widening of your arteries and veins (dilate).

By acting on blood vessels, angiotensin II narrows them. Additionally, it stimulates the adrenal gland's aldosterone production, which in turn stimulates the kidneys' salt and water absorption, raising fluid volume and blood pressure.

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To cells that are defective in primer removal, you add fluorescent ribonucleotides when the cells are undergoing DNA replication. In this case, you observe that one strand glows more than the other not only near the replication fork but also at intervals along its length. Which strand glows in this way and why?
a. The lagging strand glows in this way because it is synthesized continuously.
b. The leading strand glows in this way because it is synthesized continuously.
c. The leading strand glows in this way because it is synthesized discontinuously.
d. The lagging strand glows in this way because its RNA primers are required for each Okazaki fragment.

Answers

The reason the lagging strand lights in this manner is because each Okazaki fragment requires its RNA primers.

what is Lagging strand ?

A single DNA strand called as the lagging strand is replicated in the 5′ - 3′ direction during DNA replication (opposite direction to the replication fork). The lagging strand undergoes periodic infusions of DNA known as "okazaki fragments."

What do you understand DNA synthesis?

DNA replication is the process by which cells obtain a copy of the genome's DNA. A cell must first copy (or reproduce) its entire genome to be able to divide, ensuring that each daughter cell has a complete genome during split.

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Suppose that for a certain gene, nearly 100 percent of the normal level of expression is required to produce the normal phenotype.Based on this requirement, one could predict that a _______ mutation would be _______.A) gain of function; recessiveB) loss of function; dominantC) loss of function; recessiveD) nonsense; recessiveE) loss of function; a conditional mutation

Answers

For a certain gene, nearly 100 percent of the normal level of expression is required to produce the normal phenotype, we predict loss of function mutation would be dominant . So, option B is correct.

Gene regulation is fundamental for infections, prokaryotes and eukaryotes as it expands the flexibility and versatility of a creature by permitting the cell to communicate protein when required

Guideline of gene expression, or quality regulation,[1] incorporates a great many instruments that are utilized by cells to increment or diminishing the development of explicit quality items (protein or RNA). Refined projects of quality articulation are broadly seen in science, for instance to set off formative pathways, answer ecological upgrades, or adjust to new food sources.

Practically any step of gene expression can be regulated, from transcriptional commencement, to RNA handling, and to the post-translational change of a protein. Frequently, one quality controller controls another, etc, in a quality administrative organization.

Hence, option B is correct.

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Scientists have been measuring increasing levels of greenhouse gases in earth's atmosphere. How do the increasing levels affect ecosystems?.

Answers

An increase in the atmospheric concentrations of greenhouse gases produces a positive climate forcing, or warming effect.

When energy from a planet's host star passes through its atmosphere and heats the planet's surface, greenhouse gases in the atmosphere prevent some of the heat from returning directly to space, resulting in a warmer planet.

The greenhouse effect occurs when some of the Sun's infrared radiation passes through the atmosphere, but the vast majority is absorbed and re-emitted in all directions by greenhouse gas molecules and clouds. This has the effect of warming the Earth's surface and lower atmosphere.

Greenhouse gases have serious environmental and health consequences. They contribute to climate change by trapping heat, which affects a variety of species in already arid environments. Extreme weather, wildfires, droughts, and food supply disruptions are all exacerbated by climate change caused by greenhouse gas emissions.

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Why does it make sense that acetyl-coa stimulates the activity of pyuruvate carboxylase?.

Answers

Acetyl-CoA indicates that the conversion of fat to carbs is necessary. Acetyl-CoA carboxylase accumulation indicates a lack of citrate. NADH is produced for energy when pyruvate carboxylase is activated by acetyl-CoA.

Why is it logical that acetyl-CoA would cause pyruvate carboxylase to be activated?

Acetyl-CoA selectively activates pyruvate carboxylase. When acetyl-CoA concentrations are high, organisms use pyruvate carboxylase to divert pyruvate from the TCA cycle because acetyl-CoA is a crucial metabolite in the TCA cycle that generates a lot of energy.

How does pyruvate carboxylase become activated by acetyl-CoA?

The production of more oxaloacetate is triggered by an excess of mitochondrial acetyl-CoA. When lipolysis is induced, for instance, intramitochondrial acetyl-CoA levels rise, allosterically activating pyruvate carboxylase to produce more oxaloacetate for gluconeogenesis.

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I need some help with this question:
Similar to enzymes, the viral antigens that bind to the surface of the host cell work using a very specific "lock-and-key" mechanism. This is why each virus can only infect one type of cell. If you were a scientist developing an antiviral drug that would block binding of the virus to the host cell how would you do that? Include the terms antigen and active site. Underline these terms in your answer.

Answers

A scientist developing an antiviral drug that would block the binding of the virus to the host cell should study the molecular structure of envelope viral proteins such as the spike protein in the case of corona in order to develop an antibody that binds to an antigen in the active site of this enzymatic protein.

What is the active site of an enzymatic protein?

The active site of an enzymatic protein is the molecular domain which uses this enzyme to bind to a certain substrate such as in the case of an envelope viral protein to the plasma membrane of the host cell.

Therefore, with this data, we can see that the active site of an enzymatic protein has antigen domains that may bind to an antibody in order to fight against viral infections.

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which is a limitation associated with the use of traditional anti-vascular endothelial growth factor (vegf) agents that are used to treat both amd and dme

Answers

Current anti-VEGF medications have a big limitation that they are not durable, need regular injections to maintain low VEGF levels in the eye.

What is Vabysmo used for?

On January 28, the U.S. Food and Pharmacological Administration (FDA) granted approval to a potential new drug therapy for patients with either neovascular age-related macular degeneration (nAMD) or diabetic macular edoema (DME). This news has given millions of Americans fresh hope.

The first injectable medication, Vabysmo, formerly known as faricimab-svoa, targets both eye disorders at once.

Additionally, it is the first to use two different therapy paths to combat the disorders.

The macula, the core region of the retina that provides the clearest straight-ahead vision, is susceptible to fluid leakage in both nAMD and DME due to weak arteries.

Vascular endothelial growth factor-A (VEGF-A) and angiopoietin-2 (Ang-2) are two proteins that, by means of various pathways, contribute to blood vessel instability, inflammation, and fluid leakage into the macula. Vabysmo successfully neutralizes these two proteins.

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a crustacean increasing the amount of oxygen binding pigment in its blood in response to low oxygen in the environment is an example of: group of answer choices a genotypic change a phenotypic change an evolutionarily stable strategy a co-dependency

Answers

A crab responding to low oxygen levels in the environment by increasing the quantity of oxygen-binding pigment in its blood is an example of a phenotypic change.

The correct option is b.

Hemoglobins, hemerythrins, and hemocyanins are the three categories of oxygen-transporting proteins that may be separated in nature based on the active site.

In reaction to low oxygen levels in the environment, a crab increases the quantity of oxygen-binding pigment in its blood. This cannot occur unexpectedly. It is a change in phenotype.

A cell or organism can change from one phenotype to another, or two cells or organisms might exhibit distinct phenotypes despite having the same genotype. This process is known as phenotypic change.

Because phenotypic variations may result from changes in the long-term programming of gene activity rather than variation in gene sequences per se, studies of the foundation for inter-individual phenotypic variability should consider epigenetic variants in addition to genetic sequence polymorphisms.

The complete question is:

A crustacean increasing the amount of oxygen binding pigment in its blood in response to low oxygen in the environment is an example of:

group of answer choices

a. a genotypic change

b. a phenotypic change

c. an evolutionarily stable strategy

d. a co-dependency

e. an adaptation

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• how do an individual's experiences in bronfenbrenner's macrosystem impact their views on or practices surrounding death?

Answers

Individuals in Bronfenbrenner's macrosystem view practices on death based on societal culture and other systems surrounding an individual. Their experiences in Bronfenbrenner's macrosystem are also influenced by ideologies and attitudes of their culture, which influence their perceptions of death (Hofer et al., 2020).

What part of a neuron functions as the integrating center, where the membrane potential reflects the summed effect of all epsps and ipsps?.

Answers

Axon hillock is the region of the neuron that serves as the working efficiency and is where the cell membrane reflects the combined impact of all epsps and ipsps.

One postsynaptic neuron may have a cell body and dendrites that receive input from chemical synapses that have tens of thousands of cholinergic synapses.

The quantity of neurotransmitters produced by the presynaptic neuron is one of several variables that affect the size of the postsynaptic potential at any given synapse.

A postsynaptic potential acts as a graded potential, getting smaller the further away it is from the synapses. Therefore, a single EPSP is typically too tiny to cause a nerve impulse in a postsynaptic neuron by the time it reaches the axon hillock.

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According to anchoring effects, our brains usually use the first piece of info we learn about the value of something to establish a _____ from which to begin negotiations.

Answers

According to anchoring effects, our brains often create a starting point for negotiations from the first piece of information we hear about something's value.

The anchoring effect refers to the propensity for people to base their judgments significantly on the initial piece of data they learn. The anchoring effect is an example of cognitive bias, a form of deliberate thinking error that impairs judgment and decision-making.

When you concentrate on one particular piece of data when making a choice or finding a solution to a problem, you develop an anchoring bias, which is a flawed heuristic. Due to improper changes from an initial number, people produce erroneous final estimations.

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Shay creates a wave that has a frequency of 20 waves every ten seconds. How does the energy that her wave carries compare to a wave that has a frequency of 5 waves every ten seconds? Justify your response.

Answers

A frequency which produce 20 waves every ten seconds has more frequency and less wavelength than that which produces 5 waves every ten seconds.

What is Frequency?

Frequency is the number of waves that pass through a fixed place in a given period of time. So, if the time taken for a wave to pass is 1/2 second, the frequency is 2 per second. If it takes 1/100 of an hour, the frequency will be 100 per hour.

The frequency of 20 waves every ten seconds can be simplified as 2 waves produced per second.

The frequency of 5 waves produced every ten seconds can be simplified as 1 wave produced every two seconds or 1/2 wave produced every second.

Therefore, the frequency of first wave is more than the second wave and the wavelength of first wave is less than the second wave as wavelength is inversely proportional to the frequency of wave.

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What do you think would happen to the population of zebras if there was a severe drought?

Answers

Answer:Lower

Explanation: no food or water

which of the following mechanisms can cause two different proteins to be produced from the same gene?

Answers

The mechanisms which can cause two different proteins to be produced from the same gene is b)mRNA splicing. So, correct option is b.

mRNA splicing is defined as a process in molecular biology where a newly-made precursor messenger RNA (pre-mRNA) works as a transcript and transformed into a mature messenger RNA (mRNA). It actually works by removing all of the introns (non-coding regions of RNA) and splicing back together the exons (coding regions).

For nuclear-encoded genes, splicing occurs in the nucleus either during or immediately after transcription. For eukaryotic genes that contain introns in them , splicing is usually needed to create an mRNA molecule that can be translated into protein.

For eukaryotic introns, splicing occurs as the series of reactions which are catalyzed by the spliceosome, a complex reaction of small nuclear ribonucleoproteins (snRNPs).

Hence, correct option b.

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(Complete question) is:

which of the following mechanisms can cause two different proteins to be produced from the same gene?

a)RNA editing

b)mRNA splicing

c)posttranslational modifications

d)All of these.

Copy number variation (CNV) describes DNA segments of at least _____ in size which exhibit copy number differences among members of _____..

Answers

Copy number variation (CNV) describes DNA segments of at least  1000bp in size which exhibit copy number differences among members of the same species .

Copy number variation (abbreviated CNV) is a condition in which the number of copies of a certain section of DNA differs between individuals. Individual versions might be small or long, with thousands of bases.

A change in copy number necessitates a change in chromosomal structure, which connects two previously separated DNA regions.

These intersections provide vital information about how the structural shift occurred. Many of the adjustments have recurring end-points.

Copy number variations (CNVs) are instances when the number of repetitions changes across individuals and can account for almost 10% of a person's genome.

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In eukaryotic organisms, interaction between which organelles is most important for cell shape, tensile strength, and communication between cells?cytoskeleton and cell membrane

Answers

In eukaryotic organisms, interaction betweeh Cytoskeleton  and cell membrane organelles is most important for cell shape, tensile strength, and communication between cells.

The cytoskeleton is a complicated, dynamical system of interrelating protein filaments found in all cells, including bacteria and archaea. It extends from the cell nucleus to the cell membrane in eukaryotes and is made up of similar proteins in different organisms. In a eukaryotic cell, the cytoplasm is everything inside the cell membrane that is not the nucleus. The cytoskeleton is a "skeleton" that runs through the cytoplasm. Microtubules, intermediate filaments, and microfilaments are the three major cytoskeleton fibres.

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A given species has a bond order of 112. What does this fractional bond order indicate? select all that apply.

Answers

Delocalized electrons are present in the species. Resonance hybrids make up the species.

What kind of organism has a net dipole moment?

As a result, a molecule like H2O has a net dipole moment. The oxygen, which is the more electronegative atom, should be concentrated with negative charge, and the two hydrogen atoms should be concentrated with positive charge. H2O can form hydrogen bonds with other polarized or charged species, including other water molecules, thanks to this charge polarization.

How can you determine how many bonds there are in a Lewis structure?

A neutral atom has the same number of bonds as its entire valence shell electron count (2 or 8 electrons), less the number of valence electrons.

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All of the following statements are true. Which one statement describes the biggest impact that sickle-cell disease has over the organs and organ systems of the body?Mutated hemoglobin molecules result in misshapen red blood cells that cannot function to transport oxygen in the body.

Answers

Affected red blood cells have abnormal shapes and are unable to carry oxygen throughout the body because of mutated hemoglobin molecules describes the biggest impact that sickle-cell disease has on the organs and organ systems of the body.

The disease sickle cell affects every major organ. The abnormal functioning of sickle cells and their inability to properly flow through the small blood vessels can cause harm to the liver, heart, kidneys, gallbladder, eyes, bones, and joints. There could be a number of issues, such as infection rates that are up. Red blood cells that are produced by people who have sickle cell disease are peculiarly shaped and can block blood vessels in addition to having a shorter lifespan than healthy blood cells. Despite the fact that treatment can often help manage the symptoms, sickle cell disease is a serious and lifelong health condition.

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what happens during coal formation after plants die and fall to the bottom of a swamp?(1 point) responses heat and pressure build up. heat and pressure build up. sediment and rock pile on top. sediment and rock pile on top. overall plant growth declines. overall plant growth declines. carbon-rich coal is formed.

Answers

The correct option is C ; Sediment and rock build on top of each other when plants die and sink to the bottom of a marsh during coal production.

What exactly do you mean by "coal formation"?

Coal formation is described as the process through which dead plant matter decomposes into peat and is turned into coal over millions of years by the heat and pressure of deep burial.

When a plant dies and falls to the swamp's bottom, sediments and boulders pile up on top over millions of years. It changes plants from organic to inorganic forms, resulting in coal synthesis.

As a result, silt and rock accumulate on top of each other as plants die and sink to the bottom of a marsh during coal formation.

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Full Question ;

What happens during coal formation after plants die and fall to the bottom of a swamp? (1 point)

A Carbon-rich coal is formed.

B Heat and pressure build-up.

C Sediment and rock pile on top.

D Overall plant growth declines.

What range of tolerance is and how it impacts an ecosystem

Answers

Organisms have specific requirements for successful growth, development and reproduction. Example: There may be a coldest temperature and hottest temperature an animal can survive in their environment. That is their range of tolerance.

If you were a subject in a scientific study measuring body fatness, the scientists might assess your body composition using any of a variety of anthropometric measurements. Click and drag to match each measurement technique to its description.

Answers

The foundation of  anthropometric measurements approach is the idea that the muscle circumference measurement is reflective of the entire body.

What four measurements are taken anthropometrically?

Height, weight, head circumference, body mass index (BMI), waist, hip, and limb circumferences to measure adiposity, and skinfold thickness make up the basic components of anthropometry.

What are the two anthropometry metrics that are most frequently used for adults?

The body mass index (BMI) is the most frequently used indirect indication of obesity and body adiposity today, and weight and height are the most generally utilized anthropometric measurements (3, 4, 5).

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The role of pam and ned are played by pink and blue pegs, which you can insert into the model relacars in order to help you discuss the lab with your groupmates. Which is pink and which is blue?.

Answers

Pam is blue, whereas Ned is pink.

Pam and Ned's tenants are who?

White woman named Pam resides in Tobin's trailer park. She is Laura's stepmother and the mother of Bliss, Sandra, Kristen, and an unnamed baby girl. She uses crack, and so does her lover, Ned. When Pam and her family are kicked out of Tobin's trailer park, Pam is pregnant.

How did Arleen In evicted fare?

Landlord expelled Arleen Bell and her boys Jori and Jafaris after learning of the damage. Arleen and her sons relocated to the Lodge, a refuge. Later, they went from house to house.

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Other Questions
Which phenotype is recessive? *O mmO MmO BlackO Black and white spotted Some authorities suggest that academic freedom is a less powerful leagal defense than it was in the past. When basing a defense on academic, one of the following must be true if the defendant expects to prevail, namely ______.A. it must be demonstrated conclustively that the teacher did not defy legitimate state and local cirriculm directivesB. it must be shown that the teacher has establised a long history of voilating cirriculm guidelines, not merley in the present careC. the teacher must focus the cirriculm on matters of little consequence to the communityD. the teacher must demonstrate that existing policy voilates his or her personal belief system. Consider the market for auto insurance. Insurers will gain some useful information about the riskiness of student drivers by enquiring about their academic grades.True/False What are the phenotypic and genotypic ratios of of the following cross: tall, round (TTRR) x short, wrinkled (ttrr) when supplementary information (si) is presented separately from the audited financial statements, how should the auditors report on si be presented? wants to invest but is worried about risk. in particular, she is worried that bad management and increased competition in the wireless phone market will make these companies less profitable than expected. what type of risk is genevieve most concerned with? Angelica goes to a very diverse school with students from a range of cultural backgrounds. She wants to have a slumber party, but a close friend lets her know that her family is from a very conservative culture and will not let herspend the night at someone's house. How could Angelica respond and show her social awareness?A. Encourage her friend to sneak out and spend the night.B. Eliminate slumber parties since not all of her friends can participate.C. Find an alternative that would be acceptable to her friend's family.D. Get friends whose values are more along the lines of hers. required: post the entries in the general journal above to the accounts receivable account in the general ledger and to the appropriate accounts in the accounts receivable ledger for valentino company. A red ball with a velocity of +3. 0 m/s collides head-on with a yellow ball of equal mass moving with a velocity of -2. 0 m/s. What is the velocity of the yellow ball after the collision?. Fill in the blank: the main difference between effort estimation and time estimation is that time estimation includes _____. What number for C would make the equation below a perfect square trinomial.x^2 +22x+c(A)121(B)72(C)81(D)96 What type of figurative language is the song of the crab in Moana In which type of transistor does current flow from the base to the emitter? the reason(s) behind doctors getting paid much higher than janitors is/are . group of answer choices because they are culturally valued more for their training because they rationally contribute more to society arbitrary both a and c If you drop the sand bag out of the cart right at the equibrium location, what effect will that have on the amplitude of your oscillation?. A building with a wall 50m long by 4m high with sixty percent (60%) of the wall area occupied by 10 mm thick plate glass and the remainder is of 20 cm thick concrete blocks with solid concrete cores is being designed. If expected condition for site of the building has average dally air temperatures of 35C and the interior temperature of the building will be kept at 25 C by designed air conditioning syster, calculate the rate of heat transfer from outside to inside (heat load) due to this wall. If the required reserve ratio is 10% and the fed conducts an open market purchase of $100, what is the maximum possible change in the money supply?. malek is purchasing the cable to use in setting up small office networks. he wants to stock up on commonly used cable. what type of cable do most networks use? Social security is 6. 2% of your total income. Suppose that your weekly pay is $850. For any given month, what is your total contribution to social security? hint: assume there are 4 weeks in a month. A. $198. 32 c. $208. 95 b. $205. 65 d. $210. 80. explain how risk is measured, and how this measure is used to adjust the firms wacc to account for differential project riskiness.