Which statement best describes an environmental consequence of unsealed landfills?

A. Materials in landfills undergo decomposition for hundreds of years.

B. Heavy metals are released as leachate into surrounding waterways.

C. Long-term exposure to mercury and lead in landfills can cause cancers.

D. Landfills can produce carbon dioxide that leak into the atmosphere.

Answers

Answer 1

Landfills can produce CO2 that leaks into the atmosphere.

The contaminants in landfill leachate build up and have a negative impact on the ecology and food chains, which may cause genotoxicity, acute toxicity, and cancer in humans.

What about landfills?A method of rubbish disposal where waste is buried under layers of soil to raise low-lying terrain.Solid waste is disposed of in well-managed, well-engineered landfills nowadays.So as to assure compliance with federal rules, landfills are strategically placed, planned, managed, and monitored.Additionally, they're made to safeguard the environment against toxins that might be found in the waste stream.While "whole filled with rubbish" might be your first impression when you hear the phrase, landfills are frequently just a way of stabilizing the ground for construction.Garbage dumps are sometimes mentioned as landfills, even when they are not physical pits that are filled and covered.A big pollutant source with a host of unfavorable consequences.In landfills, trash decomposes very slowly and poses an issue for future generations.Toxins, leachate, and greenhouse emissions from landfills are the three primary issues.Landfills may emit offensive odors, and waste gas may seep through the bottom and gather in surrounding structures.Ammonia, sulfides, methane, and CO2 are the landfill gasses that cause the most worry.The majority of landfill smells are caused by ammonia and hydrogen sulfide.

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Related Questions

How many o2 particles are in 2. 50 moles of o2 at standard temperature and pressure (stp)?.

Answers

The answer is 1.51 x 10^24 particles in 2. 50 moles of o2 at standard temperature and pressure.

What is mole?

The mole, symbol mol, is the unit of amount of substance in the International System of Units. The quantity amount of substance is a measure of how many elementary entities of a given substance are in an object or sample. The mole is defined as containing exactly 6.02214076 x 10^23 (Avogadro number) elementary entities.

According to mole concept, 1 mole of any element contains 6.022 x 10^23 number of atoms. We need to find the number of particles or atoms present in 2.50 moles of O2 :

2.50 moles of O2 will have = 2.50 x 6.022 x 10^23 = 15.10 x 10^23 = 15.1 x 10^24 particles. Therefore, the answer is 15.1 x 10^24 particles.

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If a cell's actual size is 0.01 mm but it
has an image size of 0.5 mm, what is
the magnification of the microscope?

Answers

Answer:

Their magnification factors vary between 5X and 30X with the most commonly used eyepieces having a value of 10X-15X. Total visual magnification of the microscope is derived by multiplying the magnification values of the objective and the eyepiece.

Explanation:

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which form of cardiomyopathy is usually caused by an infiltrative disease of the myocardium, such as amyloidosis, hemochromatosis, or glycogen storage disease?

Answers

Restrictive cardiomyopathy is usually caused by an infiltrative disease of the myocardium, such as amyloidosis, hemochromatosis, or glycogen storage disease.

In restrictive cardiomyopathy the lower chambers of the heart become stiff and hence cannot be filled with blood properly and sometimes they are also not able to squeeze out the blood properly. The general symptoms of this condition are: shortness of breath, palpitations, bloating, nausea, etc.

Myocardium is the middle muscular layer of the heart. It is the thickest layer that facilitates the contraction and relaxation of heart. They are also involved in the conduction of electrical impulses in the heart.

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Which of the following two forms of energy are at play in Darnell's design?

A. chemical energy and nuclear energy B. electromagnetic radiation and kinetic energy
C. electrical energy and gravitationla potential energy
D. gravitational potential energy and kinetic energy

Answers

Chemical reaction is the power stored in the bonds between atoms and molecules. Items like cells, biofuels, oil, natural gas, & coal all contain chemical energy. Asset A

energy in illustration It is what?

There are numerous shapes that energy can take. Among these are energy sources like light, heat, mechanical movement, gravitational attraction, chemical reactivity, nuclear and atomic energy, and so on. Every form has the capacity to change or transmute into every other form.

Why is energy such a big deal?

Energy is a major factor in the daily lives as it is a basic need for humans. Energy not only heats but also cools the structures that humans have built. to wiggle your finger, stand up from the couch, or even just stroll down the sidewalk.

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Yeast are:
A, unicellular fungi B, unicellular spores

C, none of the above D, multicellular spores​

Answers

Answer:

A) Unicellular fungi

Explanation:

- Yeast is by design unicellular since it comprises of one cell so choices C and D are out as they don't mention that fact

- That lead to choices B and A in order for a specimen to be a spore they need to be able to reproduce sexually and asexualy yeast most of the time only can reproduce asexully though so B is not the correct answer so by process of elemation A is the answer

a cell that has four pairs of chromosomes is undergoing meiosis. what is the number of possible chromosome combinations in the gametes produced by that cell?

Answers

the answer is 16 atleast

The small intestine is adapted for exchanging materials because it has a large surface area, a thin membrane, and an efficient __________ supply. What word completes the sentence?.

Answers

The small intestine is adapted for exchanging materials because it has a large surface area, a thin membrane, and an efficient blood supply.

Small intestine of the essential part of digestive system where the maximum digestion as well as absorption of the digested food takes place. The length of small intestine can be about 22 feet but due to its highly compact and folded structure, it occupies very less space.

Blood is the fluid that mediates the transport of various substances in the whole body. The digested food is also transported to different organs through blood in the form of small globules or vesicles. Hence the intestine should be enriched in blood supply to mediate efficient transport.

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When a person eats a pieces of chicken, which is filled with protein, it is digested by the body into small nutrients. These small nutrients are then absorbed by cells. The nutrients that came from this piece of meat could be put back together into what kinds of compounds? (has to be at least 2)

Answers

Food proteins are digested by enzymatic action. Amino acids are released from these proteins and carried to the consumer's cells where they are used to build new proteins. The nutrients that came from this piece of meat could be put back together into new proteins.

What are proteins and amino acids?

Proteins are polymers with a tridimensional structure needed to accomplish the molecules' functions. These functions depend on the protein, the cell requirements, and the organism that produces them.

Proteins are composed of several amino acids together. These amino acids are monomers.

During protein synthesis, tRNA selects the correct amino acids to build the new protein according to the genetic information provided by mRNA. By working together, mRNA, rRNA, and tRNA arrange amino acids and produce a new protein that will accomplish certain functions.

Some of the amino acids used to build the proteins can not be produced by the organism, so they need to be ingested. These amino acids are introduced to the cell when food is digested and nutrients are absorbed.

The organism breaks down proteins from food into different amino acids that are transported into the cells where they are used.

In the exposed example,

1) the person eats the chicken,

2) the chicken's proteins are digested by enzymatic action,

3) During the chicken's protein digestion, amino acids are released

4) These free amino acids are taken to the person's cells' interior

5) Inside the person's cells, these amino acids are available to be used again by the person's cell.

6) During protein synthesis, tRNA selects the correct amino acids to grow the new polypeptide.

The nutrients that came from this piece of meat could be put back together into new proteins synthesized by the person's cells.

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Organisms have changed over time; new species have appeared while other species have gone extinct. This is a description of.

Answers

This is a description of macroevolution.

What is macroevolution?

Macroevolution is basically the evolution that is above the level of species. It refers to the study of birth, death, diversification. Macroevolution basically focuses on the development of groups.

Macroevolution often requires evolution of entirely new structures, like new organs.

Mostly, macroevolution may not be able to be observed directly, as multiple mutations are necessary for large scale changes.

An example of macroevolution would be tetrapods. Tetrapods are animals with limbs. The study of fossils, geological and modern organisms are how evidence of macroevolution is obtained.

So, organisms that have changed over time, and new species have appeared and other species have gone extinct is a description of macroevolution.

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when the sympathetic nervous system is stimulated, the interstitial cells of cajal, pacemaker cells of the gi tract, react by

Answers

The pacemaker cells of the GI tract, the interstitial cells of Cajal, respond to the stimulation of the sympathetic nervous system by reducing the amplitude or eliminating the slow waves that regulate the spontaneous oscillations in membrane potentials.

The pacemakers are thought to be the interstitial cells of Cajal, which are clustered between the layers of smooth muscle tissue. These cells exhibit slow waves, which are rhythmic, spontaneous oscillations in membrane potentials that occur anywhere between three times per minute in the stomach and twelve times per minute in the duodenum. Parasympathetic innervation affects the vagus nerve's reaction. Because of increased vagal activity, which may result in diarrhoea, GI motility is improved.

The gastrointestinal system contains interstitial cells known as Cajal cells (ICC). There are various ICC types, each serving a different purpose. In order to serve as a SIP functioning syncytium, ICC and another type of interstitial cell known as platelet-derived growth factor receptor alpha (PDGFR) cells are electrically connected to smooth muscle cells through gap junctions. The pacemaker cells known as myenteric interstitial cells of Cajal (ICC-MY) produce the bioelectrical phenomena known as slow waves. Phase-locked contractions result from slow waves conducting to smooth muscle cells.

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correctly link each of the following minerals to its primary function in the body.. - chromium - potassium - magnesium - iodine a. helps maintain fluid balance b. helps to transport calcium and potassium into cells c. works with insulin to control blood glucose d. part of the hormone thyroxine which influences energy production

Answers

Here chromium forms a correct pair with C, potassium with A, magnesium with B, and iodine with D.

In addition to helping insulin better metabolize fat, chromium(III) also helps maintain appropriate blood sugar and cholesterol levels turning protein into muscle and transforming sugar into energy.

The body uses potassium primarily to support the maintenance of healthy fluid levels in our cells. Calcium and potassium are transported into the cells with the aid of magnesium.

Iodine is a component of the thyroid hormones thyroxine (T4) and triiodothyronine (T3), which control gene transcription to control both the basal metabolic rate and body growth and development.

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which answer option best reflects the difference in oxygen binding by fetal hemoglobin versus maternal hemoglobin? please choose the correct answer from the following choices, and then select the submit answer button. answer choices there is a binding affinity difference such that fetal hemoglobin can remove oxygen from maternal hemoglobin. maternal and fetal hemoglobin can become saturated much more quickly than adult hemoglobin. maternal hemoglobin becomes fully saturated at a higher pressure than fetal hemoglobin. maternal and fetal hemoglobin can more easily pick up oxygen from the lungs.

Answers

The option which best reflects the difference in oxygen binding by fetal hemoglobin versus maternal hemoglobin is that there is a binding affinity difference such that fetal hemoglobin can remove oxygen from maternal hemoglobin and is denoted as option A.

What is Hemoglobin?

This is referred to as the protein found in the red blood cells which binds to oxygen during respiration and ensures that it is distributed to different parts of the body for adequate functioning.

The fetal hemoglobin has an increased affinity to oxygen which is why it is usually more saturated than maternal hemoglobin at any given partial pressure of oxygen.

It also has a binding affinity difference such that fetal hemoglobin can remove oxygen from maternal hemoglobin which is the reason why option A was chosen.

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gas exchange in the respiratory system involves the movement of respiratory gases between what locations?

Answers

Gas change within the respiration system entails the motion of respiration gases among blood and systemic tissues, blood, and alveoli.

At the quit of each bronchiole is a cluster of little air sacs called alveoli. Alveoli are wrapped in tiny blood vessels called capillaries. The air you breathe fills those air sacs with oxygen-rich air. that is in which the trade of gases takes place.

At some point in gas exchange oxygen actions from the lungs to the bloodstream. At an equal time, carbon dioxide passes from the blood to the lungs. This happens within the lungs among the alveoli and a network of tiny blood vessels known as capillaries, which might be placed inside the walls of the alveoli.

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syphilis is a sexually-transmitted infection caused by the bacteria treponema pallidum. syphilis was once treated by infecting the patient with the protozoa that causes malaria, plasmodium falciparum. malaria is a disease spread by an insect vector that is characterized by repeated cycles of fever, shaking, and chills. why would this treatment control syphilis? select all correct answers.

Answers

Syphilis is a sexually-transmitted infection as a result of the microorganism treponema pallidum Malaria will improve the host's frame above the most useful increased temperature of T. pallidum. and fever can result in the production of iron-binding proteins so this crucial nutrient isn't to be had to T. pallidum or P. falciparum.

Syphilis is a sexually transmitted disease (STD) due to the bacterium Treponema pallidum.

Syphilis is a sexually transmitted infectious (STI) sickness because of the bacterium Treponema pallidum. This bacterium reasons infection when it receives into damaged pores and skin or mucus membranes, commonly of the genitals. Syphilis is most often transmitted through sexual touch, even though it additionally may be transmitted in different methods.

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Consider the two major classes of hormones and their actions, which class of hormones would you expect to be ideally suited for long-term processes such as growth and development?.

Answers

The steroid hormones class of hormones is ideally suited for long-term processes such as growth and development.

Because they have the ability to turn particular genes on or off, the steroid hormone class of hormones is best suited for long-term processes like growth and development.

A steroid hormone is a steroid that has hormone-like properties. Corticosteroids and sex steroids are two categories into which steroid hormones can be divided. According to the receptors they connect to, these two kinds of chemicals can be divided into five types: glucocorticoids, mineralocorticoids, androgens, estrogens, and progestogens.

Steroids are essential for the organization of cellular differentiation that represents apoptosis and sexual dimorphism as well as for the activation of phenotypic changes linked to structural plasticity.

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Certain prokaryotes, such as e. Coli , can alter its own metabolic activity. What allows it to do so?.

Answers

Certain prokaryotes, such as e. Coli can alter their own metabolic activity. Bacteria allow doing so because of the operon system.

What are prokaryotes?

Prokaryotic cells are the most primordial type of cells; they are found solely in unicellular organisms and do not divide. These cells lack real cell organelles and a nucleus; instead, DNA is present in coil form in the cytoplasm. They have ribosomes, and the organisms are bacteria with prokaryotic cells.

An operon is a functional unit of DNA that contains a group of genes controlled by the same promoter. In addition to regulatory genes, the lac operon in E. coli contains three structural genes.

Therefore, certain prokaryotes, such as E. Coli, have the ability to change their metabolic activity. Because of the operon system, bacteria allow this.

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which of the statements about hemoglobin is accurate? please choose the correct answer from the following choices, and then select the submit answer button. answer choices some plants use hemoglobin to bind oxygen in order to deliver cellular oxygen to cells. the similarity of vertebrate and invertebrate hemoglobins suggests that a shared form of hemoglobin evolved in a common ancestor of these lineages. hemoglobin decreases the amount of oxygen in vertebrate blood one hundredfold. hemoglobin is only found within blood cells in animal bodies.

Answers

Only in the blood cells of animals does hemoglobin exist. These claims about hemoglobin are accurate. Red blood cells contain the iron-rich protein known as hemoglobin. Hemoglobin in the blood binds to oxygen as it enters the lungs and delivers it to bodily tissues.

The body lacks the oxygen it needs to function when a person's red blood cells are insufficient or are not functioning properly. Anemia is the diagnosis here. If you have a disease or condition that affects your body's ability to produce red blood cells, your hemoglobin levels may drop. If your hemoglobin level is low, which means your body isn't getting enough oxygen, you'll feel incredibly weak and exhausted.

Thus, we can state that hemoglobin is only found in the blood cells of animals. These statements regarding hemoglobin are true.

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One piece of statistical evidence used against ms. Gilbert was a low p-value for the pattern of death observed on her shifts. What does this p-value mean and what is the relevance of the p-value to the trial?.

Answers

The chance of getting a result that is equal to or more extreme than what was actually seen is what is meant by the term "P value," which is defined as the probability under the null hypothesis of no effect or difference.

P value definition What does it mean and for what purposes is it used?

The p-value is a figure that, when determined from a statistical test, indicates how likely it is that you would have discovered a specific collection of observations if the null hypothesis were correct. In hypothesis testing, P-values are used to determine whether to accept or reject the null hypothesis.

What does the term "p-value" mean?

For a specific statistical model, the P value represents the likelihood that the null hypothesis Statistical analysis would match or exceed the actual observed results, if the hypothesis is correct.

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True or false: integral proteins are important to maintain the strength of the cell membrane.

Answers

Answer:

true

Explanation:

FILL IN THE BLANK. according to the opponent process theory of color if ___ cells are stimulated ___ cells will become inhibited. according to the opponent process theory of color if ___ cells are stimulated cells will become inhibited. yellow; blue yellow; green blue; green red; green red; blue

Answers

The opposing process hypothesis of color states that when Blue cells are blocked, Yellow cells will get stimulated.

In which cells does the opposing process theory originate?

The trichromatic theory explains the ability of the three types of cones to differentiate between different light wavelengths. Different light wavelengths stimulate or inhibit opposing cells, according to the opponent process theory, which also explains how the cones connect to the ganglion cells.

What does the opponent process theory explain?

According to the opposing process hypothesis, humans' perception of color is determined by three competing processes. Blue, yellow, red, and green are the four unique colours that we require to describe how people see color. According to this theory, our vision is split into three opposing channels.

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osmosis requires all of the following except: question 55 options: glucose. a selectively permeable membrane. dissolved solutes. water.

Answers

A selectively permeable membrane is necessary for osmosis. The pressure needed to stop water from passing through the semipermeable barrier is called osmotic pressure.

Osmosis needs what in order to work?

Osmosis can only take place when the membrane is permeable to water but impermeable to the solute, and when the concentration of the solute on the two sides of the membrane differs.

Does osmosis require any energy?

Osmosis and diffusion are both passive transport mechanisms, which means they don't require any extra power to function. In both diffusion and osmosis, particles move from an area of higher concentration to one of lower concentration.

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100 points
I’m doing a biomolecule four room pop-up project and I’m confused on how to fill out this chart

Answers

The genetic code of an organism—the order of nucleotides that defines the amino acid sequence of proteins—is uniquely .

A loose word for molecules found in organisms and necessary for one or more typical biological processes, such as cell division, morphogenesis, or development, is "biomolecule" or "biological molecule."

What is Biomolecule ?Biomolecules are essential to life because they help organisms develop, endure, and procreate. By interacting with one another, they play a role in the development of organisms, from simple cells to complex living things like people. The variety of their functions is made possible by the variety of their shape and structure.The unique role of storing an organism's genetic code—the sequence of nucleotides that defines the amino acid sequence of proteins, which are of crucial importance—lies with nucleic acids, specifically DNA and RNA.The number of double bonds in the fatty acid chain is what distinguishes saturated fat from unsaturated fat. Unsaturated fatty acids have at least one double bond in the fatty acid chain while saturated fatty acids have no double bonds between the individual carbon atoms. itical significance to

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which antifungal drug acts by inhibiting biosynthesis of essential components of the fungal cell wall, which interferes with growth and reporduction

Answers

Micafungin is one of the antifungal drugs that act by inhibiting the biosynthesis of essential components of the fungal cell wall, which interferes with growth and reproduction.

A compound from the newly discovered class of antifungal drugs called echinocandins that prevent the synthesis of cell walls. Echinocandins prevent the production of 1,3-D-glucan, a crucial element of the fungal cell wall that is absent in mammalian cells. Micafungin injections are used to aid the body in fighting off serious fungus infections like candidemia, acute disseminated candidiasis, candida peritonitis and abscess without meningoencephalitis or ocular dissemination, and esophageal candidiasis.

Several different fungal infections are treated with this medicine. Patients receiving stem cell transplants can also use it to avoid developing fungal infections. Echinocandins are the group of medications that micafungin is a member of. Drugs that contain an antifungal ingredient help treat fungi. They have the ability to stop fungi from growing and flourishing or to directly kill them.

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osmosis is best defined as the movement of water molecules across a semipermeable membrane from an area of solute concentration to an area of solute concentration.

Answers

Osmosis is described as Movement of water molecules from a region of higher concentration to a region of lower solute concentration through a semipermeable membrane.

Osmosis is a process by which the molecules of a solvent use to pass from a solution of low concentration to a solution of high concentration through a semi-permeable membrane. This process is passive in nature.

Hence, the statement that best describes osmosis is water moves across a membrane from areas of lower solute concentration to areas of higher solute concentration.

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What is the outcome of amino acids if someone overeats protein and kcalories in general?.

Answers

The amino acids are saved as glucose is the final outcome of amino acids if a person overeats protein and kcalories in general.

Extra protein does now no longer get saved. Instead, extra amino acids get transformed to carbohydrate or fats. Your frame makes use of amino acids to make proteins. The extraordinary styles of amino acids and the manner they are prepare decide the feature of every protein. If amino acids are oversupplied, the frame will put off the extra out of the frame with the aid of using excreting their amine corporations withinside the shape of urine or sweat.

The ultimate residue will then be transformed to fats or glycogen with the intention to meet the power wishes of the frame. Extra protein isn't always used correctly with the aid of using the frame and can impose a metabolic burden at the bones, kidneys, and liver. Moreover, high-protein/high-meat diets will also be related to expanded hazard for coronary coronary heart disorder because of intakes of saturated fats and ldl cholesterol or maybe cancer.

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Your friend is on the cross country running team. They tell you they need to "carbo-load" ahead of their big race in a couple days as they want to store extra carbohydrates in their muscles.Identify what macromolecule should they eat more of over the next couple of days? Identify that molecule's function.

Answers

The macromolecule that they should eat in order to carbon-load in preparation for their big race should be carbohydrates. Carbohydrates supply human bodies with energy.

What is carbon loading?

Carbohydrate loading, otherwise known as carb-loading, refers to the practice by athletes to maximize the storage of glycogen in their tissues prior to taking part in athletic events.

By storing up adequate glycogen in their body tissues before the day of the event, the body system will have enough substrate to break down for energy reserve in the midst of actions.

The body stores up excessive carbohydrates as glycogen in the liver and muscles through the actions of an enzyme known as insulin. During intense sporting activities when the body is short of carbohydrates to make energy, the stored glycogen is converted back to carbohydrates and is made use of to generate energy.

Thus, carb-loading involves eating a lot of carbohydrates to store up glycogen prior to endurance sporting activities.

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How do you list all rational roots?.

Answers

According to the rational root theorem, if you divide all of the constant term factors in a polynomial by all of the main coefficient factors, you will get a list of all of the polynomial's potential rational roots.

Step 1: Using the rational zero theorem, It to compile a list of every conceivable rational zero.

Step 2: Replace each of the values from Step 1 in f(x) and determine which value would cause f(x) to equal 0. The real rational zeros will result from this.

Step 3: Subtract each of the real rational zeros from Step 2 from the supplied polynomial.

Step 4: Find the quotient of the aforementioned division and set it to zero. To determine the additional zeros, solve the resulting equation.

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When coal, oil, and natural gas are used, what two chemicals escape into the air?.

Answers

Answer:

carbon monoxide and sulfur dioxide

Explanation:

when the lac repressor is removed from the operator, what would you expect to occur? group of answer choices rna polymerase can bind and express lac genes all of these are correct the bacteria will be able to utilize lactose for metabolism the lac operon will be turned on to express lac genes

Answers

All are the correct statements about lac operon:

RNA polymerase can bind and express lac genes.the bacteria will be able to utilize lactose for metabolism.the lac operon will be turned on to express lac genes.

Lac operon is a cluster of genes that work together to regulate one single promoter in the bacteria for the metabolism of glucose. There are three gene involved in the process. These are: gene z, gene y and gene a.

RNA polymerase is the enzyme that functions to synthesize the RNA transcript from the DNA strand. This process occurs in three steps: initiation, elongation and termination.

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In the lewis structure of clf, the formal charge on cl is ________, and the formal charge on f is ________.

Answers

In the lewis structure of clf, the formal charge on cl is 0, and the formal charge on f is 0. Hence, option b.

Any atom inside a molecule has a charge that is known as its formal charge. In this scenario, atoms exchange electrons with one another. In contrast to Lewis structures, which ignore the octet rule, formal Charge is used to produce or provide a correct structure that abides by the octet rule.

Formal charge is calculated as follows: [valence electron count] - [non-bonded electrons + bonds]

This equation may be used to ascertain the formal charge on each atom. Chlorine contains seven valence electrons, six unbonded electrons, and one bond between Cl and F.

Formal charge on Cl is equal to 0 when 7 - [6+1]

Formal charge on F is equal to 0 when 7 - [6+1]

As a result, choice b, 0, 0 is the right response.

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Question correction:

In the Lewis structure of ClF, the formal charge on Cl is __________ and the formal charge on F is __________.

a. -1, -1

b. 0, 0

c. 0, -1

d. +1, -1

e. -1, +1

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