Which of these could lead to the conversion of a proto-oncogene into an oncogene?.

Answers

Answer 1

Activation is the process through which a proto-oncogene becomes an oncogene. A number of genetic processes, such as transduction and insertional mutagenesis, can activate proto-oncogenes.

What function do oncogenes serve in cancer?

They also control the cell cycle & apoptosis, as well as cell development, differentiation, and proliferation. Growth factors, growth factors, signal transducers, transcriptional, apoptotic regulators, and chromatin remodelers are some of the byproducts of oncogenes.

What sort of oncogene is that?

The HER2 gene, which generates the HER2 protein, is an illustration of an oncogene. This protein aids in regulating the growth and division of healthy breast cells. Extra copies of the this gene may result in an overproduction of the HER2 protein, which accelerates cell growth.

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Related Questions

the three domain system of taxonomic classification now places protists into their own single kingdom. true or false

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Living organisms are now classified into a single kingdoms under third domain system of taxonomical, as shown above.

Given statement is true.

What is taxonomic example?

Studying living things including animal, plants, microorganisms, and people in order to categorize them and increase our understanding of them is known as taxonomy. For instance, although from some views people and whales are separate animals, both are classified as mammals and share a common ancestor.

Why is taxonomic classification used?

In order to more effectively communicate biological information, it aids in the classification of species. Through hierarchical classification, taxonomy allows scientists to understand and categorize the variety of life on Earth.

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an organism's genomic dna is analyzed and found to contain 22% thymine. what percentage of that organism's dna is guanine? group of answer choices 22% 56% 28%

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The organism has 28% Guanine In its DNA.

In DNA the amount of thymine = amount of adenine

Thus A + T = 22% +22% = 44%

Rest of the DNA is made of Guanine and Cytosine

Thus G + T = 100 + 44 = 56 %

Since amount of Guanine = amount of Cytosine

Thus amount of Guanine = 56 % / 2  =  28%.

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when pyruvate is used to make one molecule of glucose, 1) how many molecules of atp/gtp are consumed? 2) how many are generated? 3) what is the total cost of gluconeogenesis?

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When pyruvate is used to make one molecule of glucose

4 ATP, 2 GTP are used.2 ATP and 2 NADH are  generated.4ATP, 2 GTP, and 2 NADH are used.

In gluconeogenesis, glucose is created. It is essentially glycolysis carried out reverse; the standard free energy is favorable thanks to three new processes involving four new enzymes. ATP is used by the gluconeogenesis pathway, which gets its energy mostly from oxidizing fatty acids.

The molecule can be transferred from the mitochondria thanks to the conversion to malate. After entering the cytoplasm, mitochondria convert it back to oxaloacetate.

Malate + NAD+ Oxaloacetate + NADH in the cytoplasm

PEP GDP Oxaloacetate + GTP

It then passes through the same intermediates as glycolysis from this point on. The endoplasmic reticulum hosts the final reaction.

G6P glucose is present in the endoplasmic reticulum (catalyst: glucose-6-phosphatase). A glucose transporter shuttles the glucose out into the extracellular space.

For every molecule of glucose synthesized from two molecules of pyruvate, 4 ATP, 2 GTP, and 2 NADH are used.

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according to the punnet square offpsirng from these parents have a (fill in the blank) chance of inheriting one b allele and one b allele

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According to the punnet square offspring from these parents have a 50%  chance of inheriting one B allele and one b allele,

The genotypes of a certain cross or breeding experiment are predicted using the Punnett square, a square diagram. It bears Reginald C. Punnett's name, who developed the method in 1905. Biologists use the figure to calculate the likelihood that a child will have a specific genotype.

The term "allele" is used to refer to a gene's alternate form or variants. For each autosomal gene, one allele is inherited from each parent, and we often group the alleles into groups. Usually, we refer to them as normal, wild-type, aberrant, or mutant alleles.

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Similarities in what molecular structure is considered the greatest predictor of cross-reactivity with a cephalosporin in a patient with a confirmed penicillin allergy?.

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Amoxicillin is the greatest predictor of cross-reactivity with a cephalosporin in a patient with a confirmed penicillin allergy.

What are penicillin and cephalosporins cross-reactivity?

Healthcare professionals often overestimate cross-reactivity linking penicillin and Cephalosporins. The device of cross-reactivity was previously believed to be related to a common β-lactam ring, but new evidence suggests it is instead related to the split of identical R-group side chains. Penicillin and cephalosporins exhibit limited and incomplete cross-reactivity of up to 7% which may be related to the 'cohort' of cephalosporin. 1 In clinical practice it is not uncommon for cephalosporins to be given to penicillin-allergic patients, especially if the history of penicillin reaction was not life.

So we can conclude that cross-reactivity between penicillin and cephalosporins occurs when the R1 side chain is identical as formerly reported.

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Which sentence from "Putting the Brakes on Driverless cars" BEST support the inference that driverless cars could give rise to new safely issues that are potentially worse than current safety issues?

A: "It seems that people have a genuine dependence on technology in everyday life."
B: "Designers claims that they will eliminate the need for human drivers and prevent traffic collisions."
C: "First, drivers will likely be less aware of their surroundings than if they had been driving all along."
D: "While great advancements do help society, the driverless car is not one that needs to be pursued."

Answers

B. Designers claims that they will eliminate the need for human drivers and prevent traffic collisions."

Our autonomous vehicles will be trained to steer clear of crashes, particularly with people. However, what if a woman with a stroller suddenly jumps out into the road and the automobile does not have time to stop? The auto industry is well aware of all these ethical concerns, which is why Daimler, the owner of Mercedes-Benz, is hosting the first-ever conference on "Autonomous Driving, Law, and Ethics" this fall and manufacturers are consulting philosophers and ethicists.

However, consensus thinking is not a skill that philosophers are recognized for, even if it will be necessary to address these problems at a corporate level.

Nobody is naive enough to think that law-abiding autonomous cars, with all of its cameras, sensors, radars, and faster response times than a human, won't cause accidents—90% of which are now caused by driver mistake.

On rare occasions, they will crash, possibly killing someone. Several of the ones undergoing testing in the US have already been in accidents.

According to Ben Howarth, policy advisor at the Association of British Insurers, "there are significant practical and legal difficulties that need to be addressed, notably around who would ultimately be responsible for an autonomous car.

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Remember the law of conservation of mass. The human body uses cellular respiration to make energy. Using the chemical equation for
cellular respiration, explain how the amounts of oxygen and carbon dioxide inhaled by the lungs is different from the amounts exhaled.
Explain your answer in 1-2 sentences. I NEED HELP

Answers

Answer:

cellular respiration uses chemical energy the carbon dioxide is released and glucose is broken down to give energy to the body in cellular respiration .

when we brethe in our lungs expanding size and the ribs move upwards and inwards

when we brethe out our lungs get smaller in size and the ribs move downwards and outwards..

21% oxygen and 0.04% carbon dioxide are present in the air we take in, whereas 16.4% oxygen and 4.4% carbon dioxide are present in the air we exhale.

What is cellular respiration?

This is due to the fact that when we breathe in air, our cells convert oxygen into energy while also producing carbon dioxide as a byproduct.

The same number of carbon and oxygen atoms that were transformed into carbon dioxide during respiration was also released.

With saving mass or material in this way, respiration has abided by the rule of conservation of mass.

Therefore, cellular respiration is the process by which the chemical component glucose is broken down with oxygen to create carbon dioxide and water.

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Which of the following courses might a genetic engineer take in college?
O Introduction to Horticulture
O Principles of Plant Agriculture
O Maneuvering Controlled Vehicles
O Recombinant DNA Applications

Answers

The course that a genetic engineer might opt for in a college is: Recombinant DNA applications.

Genetic engineering is the branch of biological science that deals with the manipulation of the genetic composition of an organism in order to alter some traits in the organism. Recombinant DNA technology has various applications which are beneficial for the society.

Recombinant DNA technology can help the genetic engineer to determine which genes can be modified in plants as well as animals so as to create genetically modified organisms, which are superior in certain characteristics as compared to their ordinary counterparts. For example genetically modified plants are pest-resistant.

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reactive oxygen species are? select one: a. produced in the mitochondria b. oxygen free-radicals c. found in antioxidant skin creams d. a and b e. a, b and c

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A correct answer is option (D). Reactive oxygen species are oxygen free-radicals that are produced in mitochondria.

It is thought that oxidative damage to cellular macromolecules is what causes aging and the emergence of many disease conditions. Reactive oxygen species, including superoxide, hydrogen peroxide, and hydroxyl radicals, are the culprits behind this damage. The species are free radicals that are deprived of oxygen. The majority of cells' mitochondria serve as the primary manufacturing site for reactive species. The main reactive oxygen species produced in the mitochondria is superoxide, which superoxide dismutase mostly converts to hydrogen peroxide.

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During volume changes in the thoracic cavity, what is primarily responsible for changes in length?.

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During volume changes in the thoracic cavity, the diaphragm is primarily responsible for changes in length.

The diaphragm flattens and tightens during inhalation, and the chest cavity widens. A vacuum is produced by the contraction, drawing air into the lungs. The diaphragm relaxes and assumes its dome-like form during exhalation, forcing air from the lungs. This implies that when the volume of the thoracic cavity changes during inhalation and exhalation, the diaphragm plays a vital role in length.

The external intercostal muscles, internal intercostal muscles, innermost intercostal muscles, sub-costalis, and transversal thoracic are the five muscles that make up the thoracic wall. During respiration, the volume of thoracic cavity is predominantly altered by these muscles.

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Describe the relationship between the body mass and total surface area of air sacs?

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The relationship between the body mass and the total surface area of air sacs is that a person's weight is determined by their body mass and the TSA of the air sacs indicates that there are spaces within an organism with air sacs.

Weight is a measurement of a person's body mass. A living thing with air sacs has voids inside of them, as indicated by the air sacs' total surface area. This air is constantly present in these air sacs.

In insects, air sacs are little sacs that protrude from the larger breathing tubes (tracheae). In birds, air sacs are extensions of the lungs, and in the lungs of certain other vertebrates, air sacs are the end organs.

They do this by providing a sizable superficial surface for the passage of gas, which helps to boost respiratory efficiency.

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which of the following is not a function of the digestive system? a.all of these are functions of the digestive system b.break down of food to smaller molecules c.take in food d.absorption of water, electrolytes, and other nutrients

Answers

All of the given options are the functions of digestive system. These are:

break down of food to smaller molecules.take in food.absorption of water, electrolytes, and other nutrients.

Digestive system is the organization of organs, hormones and enzymes that work together to break down the complex biomolecules taken in the form of food into smaller soluble molecules. The organs involved in this are: mouth, throat, esophagus, stomach, small intestine, large intestine and the anus.

Electrolytes are the minerals inside the body that are present dissolved in the blood or other body fluids. They perform functions like balancing the water level of the body or the pH of the body.

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Compare the transport of glucose with the transport of fats and cholesterol in the body

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Cholesterol is conveyed by complex particles is known as lipoproteins whereas Glucose transporter (GLUT) is a transport protein responsible for the transportation of glucose.

What transports cholesterol throughout the body?

Cholesterol proceeds through the blood on proteins called “lipoproteins.” Two types of lipoproteins carry cholesterol all around the body: LDL (low-density lipoprotein) cholesterol, sometimes called “bad” cholesterol that makes up most of your body's cholesterol. Cholesterol.

This is transported by compound particles, called lipoproteins, which have specific proteins on their surface. These proteins, called apolipoproteins, have a crucial function in the metabolism of lipoproteins.

So we can conclude that Lipoproteins transport cholesterol and fatty acids throughout the body. Cholesterol is a major elector of every mammalian cell membrane.

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Organisms resemble their most recent ancestors more closely than distant ancestors.
*
1 point
True
False

Answers

Answer:

True

Explanation:

PLS HELP FOR MY EATH SCIENCE?!?

Plate tectonics play a key role in regulating Earth's climate by aiding in the cycling of materials such as carbon and water. What topographic feature can possibly indicate a planet is "healthy" and geologically
active?
A mountain ranges
B rivers
C plateaus
D plains

Answers

A planet's "health" and geological activity may be indicated by geographic features of the plains.

The correct answer is D

How does a planet stay healthy?

Caregivers can track a patient's treatment over time with the use of integrated tools in the Epic Healthy Planet module. This gives them the ability to take action, regardless of where a patient receives care, to maintain or improve chronic illnesses.

Why would someone need a topographic map?

On a two-dimensional surface, topographic maps depict the features of the Earth precisely and in scale. Topographic maps are a great planning aid and guide that also contributes to the enjoyment and safety of outdoor activities.

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f the temperature should drop to 30 degrees overnight, which individual would stand a better chance of survival? an individual whose cell membrane was made up of phospholipids with saturated fatty acid tails or phospholipids with unsaturated fatty acid tails. explain your respons

Answers

In the cold temperature, when energy is less saturated phospholipids are organised in a compacted manner. On the contrary, the curved structures of the unsaturated fatty acid makes it difficult for them to come close to each other.

The phospholipid bilayer with unsaturated fatty acid has more flexibility and liquidity due to the existence of curves in the carbon chain.

The fatty acid design of the saturated phospholipid is straight whereas the unsaturated fatty acid is curved at distinct places in the carbon chain.

Therefore, the unsaturated phospholipid nurture its liquidity even in cold temperatures.

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Please help due tonight.

Answers

Answer:

The answer would be increased airplane travel

During _____of the cell cycle, the cell grows and replicates both its organelles and its chromosomes.

Answers

Answer:

Your answer is interphase:

During _interphase____of the cell cycle, the cell grows and replicates both its organelles and its chromosomes.

Explanation:

People who embrace _________ use biological factors to justify inequalities between racial and ethnic groups.

Answers

People who embrace racism use biological factors to justify inequalities between racial as well as ethnic groups.

A viewpoint that asserts that racial distinctions result in a specific race's inherent superiority and that race is the main factor influencing human characteristics and abilities. Racism is any form of prejudice based on characteristics such as race, body color, religion, culture, etc., according to the social studies discipline.

Racists frequently discriminate against individuals and blame their prejudice on biological characteristics, like their birth into a low-caste household. Racism seems to remain a constant in practically every civilization, despite the fact that many individuals throughout the world are battling against those who embrace it.

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each chamber of the heart has a particular role in maintaining cellular oxygenation. which chamber is responsible for receiving oxygenated blood from the lungs?

Answers

Blood that is rich in oxygen is drawn from the lungs and pumped to the left ventricle by the left atrium.

The heart has two atria and two ventricles, making up its four chambers. Blood with low oxygen content is drawn from the body and pumped to the right ventricle via the right atrium. The blood with less oxygen is sent to the lungs via the right ventricle. Blood that is rich in oxygen is drawn from the lungs and pumped to the left ventricle by the left atrium.

What about human heart?A fist-sized organ, the heart circulates blood throughout your body. It serves as your circulatory system's main organ. Four major muscle-driven chambers make up your heart; they are each powered by electrical impulses. Your nerve system and brain control how your heart beats. A little to the left of centre, in the chest, is the heart. It is located between the lungs and behind the breastbone.There are four different chambers in the heart. The left and right ventricles are located at the bottom, whereas the left and right atria are located at the top. The heart is made up of four chambers in humans, other mammals, and birds: upper left and right atria and bottom left and right ventricles. The right atrium and ventricle are frequently referred to as the right heart and its left counterparts as the left heart. According to Gray's Anatomy, the heart measures 12 cm in length, 8.5 cm in width, and 6 cm in thickness. Additionally, the average weight of the heart is 230-280 g for women and 280-340 g for men.

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what is the effect of increased parasympathetic activity and decreased sympathetic activity on both heart rate and blood pressure?

Answers

Blood pressure, breathing, heart rate, and sweating all drop as digestion increases.

The hormone acetylcholine is released by the parasympathetic nervous (PNS) to slow the heart rate. Your heart rate may briefly increase due to stress, coffee, and excitement, but it may momentarily decrease due to meditation or deep, steady breathing. Patients with hypertension exhibit decreased parasympathetic activity in contrast to sympathetic stimulation activity, indicating an imbalance between the sympathetic and parasympathetic nervous systems [39,40,41]. In diabetic individuals with impaired parasympathetic regulation, blood pressure, hypertension is more common. Construction of pupils is the result of parasympathetic nervous system stimulation. reduced blood pressure and heart rate. The sympathetic branch is stimulated, which facilitates function and raises heart rate.

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in the head, postganglionic fibers leaving the cervical chain ganglia supply the regions and structures innervated by which cranial nerves?

Answers

The sympathetic chain ganglia, made up of the cervical, are the ganglia next to the sympathetic chain.

Post ganglionic: What is it?

Postganglionic fibers are the ones that run from the ganglia to the effector in the autonomous nervous system. Through metabolic modification and neurotransmitter release, post-ganglionic axons are directly in charge of alterations in the function of the target organ.

What exactly are preganglionic and postganglionic?

Acetylcholine is used by preganglionic neurons in the sympathetic nervous system as well as postganglionic neurons in the parasympathetic system (ACh). Norepinephrine and epinephrine are used by the sympathetic nervous system's postganglionic neurons. However, there are few exceptions to this, which are shown below.

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Marine Science What causes turbulence?
a. exposure to ultraviolet rays
b. being too high in the atmosphere
c. severe weather in the troposphere
d. unusually high ocean temperatures

Answers

being too high in the atmosphere

Make identical strands of DNA:
CCG GAT TTT AAT TAG CTA CTA TCG TAC TAC GTT GGT GCT

Answers

C goes with G
A goes with T, so

Answer:
GGC CTA AAA TTA ATC GAT GAT AGC ATG ATG CAA CCA CGA

once a neurotransmitter has done its job it is pulled back into the terminal buttons. this process is termed:

Answers

Neurotransmitters can either be deactivated by enzymes or reuptake, a type of chemical recycling, can reabsorb them from the terminal button.

What occurs once a neurotransmitter has completed its task?

After finishing its task, a neurotransmitter can either be destroyed or reabsorbed. After serving as a chemical messenger, a neurotransmitter is either eliminated by an enzyme like monoamine oxidase or it is reabsorbed by the neuron that produced it, as Julius Axelrod discovered.

The process of a neurotransmitter being reabsorbed by the terminal button is known as?

Once a neurotransmitter has completed its job of conveying a neuronal impulse, it is reabsorb able by a neurotransmitter transporter found along the plasma membrane of an axon terminal or glial cell.

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suppose that the genetic code involved five nucleotides per codon but that there were only two different types of nucleotides. how many different codons would be possible?

Answers

Answer:

Explanation:

there would be 32 different types of codons would be possible

A diagram of an animal cell is shown below. Each arrow points to a different organelle. Correctly label each organelle.

Answers

Answer:

Can we see the diagram...?

or just look up animal cell online and copy from there.

scientists studying the origin of life have accomplished which of the following steps? scientists studying the origin of life have accomplished which of the following steps? abiotic synthesis of rna 's bases ( a , c , g , u ) abiotic synthesis of protocells with self-replicating, catalytic rna formation of protocells that use dna to direct the polymerization of amino acids formation of vesicles that use rna as a template for dna synthesis

Answers

The steps achieved by scientists studying the origin of life are:

abiotic synthesis of RNA 's bases ( A, C, G, U ).abiotic synthesis of protocells with self-replicating, catalytic RNA.

RNA is the Ribonucleic Acid. It contains a ribose sugar and the nitrogenous bases are: adenine, guanine, uracil and cytosine. There are two types of RNAs: the coding RNA and the non-coding RNA. m-RNA belongs to the category of coding RNA while r-RNA and t-RNA belongs to the category of non-coding RNAs.

Protocells are the self-organizing spherical ball of lipids that have the potential to give rise to life. It acts as the stepping stone for the origin of life.

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

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

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

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

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

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Complete question is:

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

A. selection for the mutation

B. the two effects will cancel out

C. selection against the mutation

D no selection will occur

when viruses are exposed to compounds or uv-light which make them non-infectious what are they called?

Answers

when viruses are exposed to compounds or UV light which makes them non-infectious are they called Inactive.

All virus particles have a protein coat that surrounds and protects their nucleic acid genome. This protein envelope is called a capsid, and the instructions for making the protein subunits of the capsid are encoded in the viral nucleic acid genome. Infections are caused by microscopic bacteria that enter the body and cause problems.

Some but not all infections are transmitted directly from person to person. Infections that are transmitted from person to person are considered contagious. Antibiotic resistance occurs when bacteria viruses fungi and parasites change over time and become unresponsive to drugs. This makes infections more difficult to treat and increases the risk of disease spreading serious illness and death.

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Biology is the study of life and living organisms. Experimentation is one method by which biologists pursue scientific explanations. How would a biologist know if the results of their experiments are valid? Give an explanation.A. They are repeatableB. They match their hypothesisC. They are not measurable or repeatableD. They can be used to design another experiment During the 1920s, what place became most associated with jazz music and the emergence of a black urban identity?. Enter all real solutions to $(m-4)^4 = \left(\frac 1{16}\right)^{-1}$. Any one had to write an explanatory essay on how the United States government actions affected the lives of native Americans? Help How fast must a 2.0 kg basketball be thrown upward to achieve 160 J of potential energy? The school play ran for 3 nights. 185 tickets were sold for the first night. 160 tickets were sold for the second night. 192 tickets were sold for the third night. The tickets cost $4 each. What information is NOT necessary to calculate the total amount of money raised from ticket sales?A) 192 tickets were sold the for the third night.B) The school play ran for 3 nights.D) 185 tickets were sold for the first night.C) The tickets cost $4 each. this term is used to define the provision which allows the bond issuer to settle the payments towards the bond before the maturity. explain the differences between gel electrophoresis and column chromatography. address the principles behind each separation. why do large molecules migrate more easily in one method and with more difficulty in the other? which method generated the most precise results? What are the domain and range of the function f(x)=3/4x+5? cost benefit analysis a. considers only short-term effects. b. values costs over benefits focusing on internalities. c. is a value-free social-scientific approach. the process of building and maintaining relationships with people whose interests are similar or whose relationship could bring advantages to the firm is called . what is a reason that the use of licensing to enter international markets has increased significantly in recent years? How should the U.S. respond if Japan keeps attacking China? 3. to prevent ovulation, drugs called either gnrh agonists (e.g., leuprolide, nafarelin acetate) or antagonists (e.g., ganirelix, cetrorelix acetate) are used. these prevent ovulation by preventing a particular hormone from being released. which hormone is stopped from being released? the cooper foundation contributes $20,000 per year into an annuity fund for building a new zoo. the fund earns 7.5% interest. find the amount in the fund at the end of 10 years. (round your final answer to two decimal places.) What do your data tell you about how theamount of sugar affects the rate of cellularrespiration performed by the yeast?Remember that a rate involves a change inamount over time. Does this answer makesense? Why or why not? (6 points)CE I will do brainliest if answered In 3-5 COMPLETE sentences, what do you think was the most significant/challenging issue that indigenous African and/or Asian resistance movements faced as they attempted to stop European colonization of their home lands the best definition of inflation is a(n) group of answer choices temporary increase in prices. increase in the price of one important commodity such as food. persistent increase in the general level of prices as measured by a price index. Vehicle tail lights must be visible from _____ feet to the rear in normal sunlight. What is the formula unit for the ionic bond between Sodium (Na) and Phosphorus (P)?Na P