changes in the chemical conposition of the atmosphere that may produce acid rain are most closely associated with

 Changes In The Chemical Conposition Of The Atmosphere That May Produce Acid Rain Are Most Closely Associated

Answers

Answer 1

Answer:

run off from acid soils.

Explanation:

Acid rain drops on to soil so its mostly associated with acid soil.

Answer 2

The chemical composition of the atmosphere that may produce acid rain is industrial smoke stack emissions.

What is acid rain?

Acid rain is the rain that happens due to accumulation of acid rain gases in the environment. Acid rain is very harmful for the environment. The smoke from the factories and vehicles results in harmful gases.

Thus, the correct option is D, industrial smoke stack emission.

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Related Questions

Generally good folate sources are?

Answers

Good sources of folate include a variety of foods, particularly those that are rich in leafy green vegetables, legumes, fruits, and whole grains. Here is a more detailed explanation:

1. Leafy Green Vegetables: Vegetables such as spinach, kale, collard greens, and broccoli are excellent sources of folate. They provide a significant amount of this vitamin and are also packed with other essential nutrients.

2. Legumes: Lentils, chickpeas, black beans, and kidney beans are examples of legumes that contain a good amount of folate. These foods are not only rich in folate but also high in fiber, protein, and other nutrients.

3. Citrus Fruits: Citrus fruits like oranges, grapefruits, and lemons are a good source of folate. They also provide a healthy dose of vitamin C, which helps with the absorption of folate.

4. Avocado: Avocado is a nutrient-dense fruit that contains a moderate amount of folate. It is also rich in healthy fats and other beneficial compounds.

5. Whole Grains: Whole grain products, such as fortified cereals, bread, and pasta, can be a good source of folate. It's important to choose whole-grain options over refined grains to maximize nutrient intake.

6. Liver and Organ Meats: The liver is one of the richest sources of folate. However, it is important to consume these foods in moderation due to their high vitamin A content.

It's worth noting that some foods are also fortified with folic acid, the synthetic form of folate. These include certain breakfast cereals, bread, and other grain products. Incorporating a variety of these folate-rich foods into your diet can help ensure an adequate intake of this essential vitamin.

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PLEASE HELP!!

water quality tests from a local river show low levels of two heavy metals under the acceptable, legal limit. however, the residents of the town are suffering from numerous stomach ailments and are showing signs of long-term kidney damage. what can scientists infer about the possible reason for the illnesses in the town?

A. heavy metals cause acute effects but not chronic effects.

B. the first metal causes and acute effect compared to the other.

C. the heavy metals have a synergistic relationship when combined.

D. the heavy metals have an antagonistic relationship when combined.

Answers

C. the heavy metals have a synergistic relationship when combined

can scientists infer about the possible reason for the illnesses in the town.

What heavy metals are responsible for renal failure?

As a result, high metal exposure may be hazardous. The kidney is the first organ to be affected by heavy metal poisoning due to its tendency to reabsorb and accumulate divalent metals. The degree of kidney damage caused by heavy metals is determined by the type, dosage, route, and duration of exposure.

Toxic metals, especially "heavy metals," are metals and metal compounds that are harmful to people's health. This article discusses certain poisonous semi-metallic elements, such as arsenic and selenium. Many of these metals are required in trace amounts to sustain life.

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The original template for the process of protein synthesis is—
a. DNA
b. Messenger RNA
c. Transfer RNA
d. Ribosomal RNA

Answers

Answer:

I think the answer is gonna be B

Role of hormones in bullet points
Please help!

Answers

Answer:

There is growing evidence to indicate that age-related declines in growth hormone (GH), insulin-like growth factor (IGF)-1, and androgen and estrogen production play a role in the pathogenesis of sarcopenia (an age-related decline in muscle mass and quality). Although GH supplementation has been reported to increase lean body mass in elderly individuals, the high incidence of adverse effects combined with a very high cost has limited the applicability of this form of therapy. The assessment of an alternative approach to enhance the GH/IGF-1 axis in the elderly by using GH-releasing hormone and other secretagogues is currently under way and is showing some promise. Testosterone replacement therapy may increase muscle mass and strength and decrease body fat in hypogonadal elderly men. Long-term randomised, controlled trials are needed, however, to better define the risk-benefit ratio of this form of therapy before it can be recommended. Available data are currently insufficient to decide what role estrogen replacement therapy may play in the management of sarcopenia. Therefore, although the evidence linking age-related hormonal changes to the development of sarcopenia is rapidly growing, it is still too early to determine the clinical utility of hormonal supplementation in the management of sarcopenia.

Two parents are concerned that their new baby, who has blonde hair, may have been switched in the hospital. The mother is homozygous for her brown hair, and the father is heterozygous with brown hair as well. Some members of the family have blonde hair. Is this possible? Did the hospital make a mistake? Justify your answer. Be very detailed in your explanation in order to receive full credit. Be sure to include the genotypes the parents would need to have.

Answers

Answer:

Yes, this is possible because the baby could have inheritted it fromthe parents family

Explanation:

Although the genes passed down from a child's parents determine hair color, variations can result in a child having a different hair color than both parents. The genetics of hair color is the result of many genes working together to control the amount and type of melanin

Read the following and then answer the questions: Jimena was quietly enjoying her lunch when an unexpected knock on the door startled her. She found two people in suits standing on her front porch. They explained they were medical scientists from Columbia University in New York, and they were visiting her to talk about some old blood samples from a transfusion she had back in the 1970s. They showed Jimena a consent form that she had signed. It had allowed scientists to store and study her blood to help advance their medical knowledge. Now she was worried. Did she have some terrible disease? She invited them in and sat down in case the news was bad. The researchers explained that they were part of a team that searches for viruses in old blood transfusion samples. Their work was aimed at finding new transfusion-transmissible viruses that ought to be screened for in the donated blood supply to further protect patients. They were looking at samples from the 1970s because, unlike today, the only virus screened for back then was Hepatitis B. These lightly screened samples might lead to discovery of previously unrecognized viruses. Sadly, lack of broader screening for bloodborne viruses meant that thousands of people were infected with Hepatitis C and human immunodeficiency virus (HIV) by way of contaminated blood transfusions during the 1970s and 1980s. People with hemophilia, a blood-clotting disorder, had an unusually high prevalence of Hepatitis C virus and HIV. This is because managing hemophilia in the 1970s and 1980s often involved administering clotting factors derived from human blood. Before the stricter screening went into effect, at least 6,000 hemophiliacs in the United States are believed to have contracted Hepatitis C from blood transfusions. Of course, hemophiliacs were not the only ones who suffered: Anyone who got a transfusion for any reason at that time was at high risk for exposure to these viruses. In 1976, during her last trimester of pregnancy, Jimena had developed severe anemia. She remembered receiving a blood transfusion a few weeks before she delivered her son, Jose. The transfusion was done to ensure that her blood levels could support both her and her child during delivery. She knew this must have been the reason the doctors were visiting her now. She asked them if they were here to tell her she had HIV or hepatitis––she had been feeling very tired lately, and wondered if this was the cause. The doctors hastened to explain that the blood she received was not infected with Hepatitis C or HIV. But they had found something else: a new virus never seen before in humans. They examined the medical records of all the people who had received blood with this virus, and it did not seem to cause disease. However, they wanted to investigate more. They were here to get a more detailed medical history from Jimena, along with a new blood sample. They also wanted to reach out to Jose, Jimena’s son, and see if he’d be willing to take part in the study, too. Jimena’s eyes became moist as she explained that Jose had died of cancer eight years ago. The doctors expressed their sympathy, but pressed Jimena for the type of cancer he had developed. She said it was liver cancer. "Are you sure we didn’t catch hepatitis C from the transfusion?" she asked the researchers. "I know that can cause liver cancer, right?" "Yes, it can," they replied.
1. How could old samples of donate blood be screened to search for new viruses?
3. How could researchers isolate and grow a particular virus from the Jimenas blood?

Answers

The researchers could isolate and grow a particular virus from Jimena's blood through the following procedure: The process of isolating and growing a particular virus from Jimena's blood is called virus cultivation.

Researchers begin by collecting a blood sample and treating it with a substance that ruptures the host cells while leaving the viral particles intact. After that, they transfer the suspension to a suitable host cell and incubate it. The host cell is used to propagate the virus. If the virus reproduces, it is allowed to infect the host cells. Then the infected cells are checked regularly to see how the virus is doing in the host cell.  This enables the researchers to research the virus and take measures to protect people from being infected by it.

Researchers can isolate and grow a particular virus from Jimena's blood by following several steps. First, they would collect a blood sample from Jimena. Next, they would separate the blood components, such as plasma and red and white blood cells, to identify the presence of the virus. Once they have located the virus, they would extract it from the blood sample.

To grow the virus, researchers would then introduce it into a suitable cell culture or host organism, which provides the necessary environment for the virus to reproduce. They would monitor the growth of the virus and collect new viral particles as they are produced. Throughout this process, researchers would ensure the cell culture or host organism is kept under controlled conditions, such as temperature and humidity, to optimize viral replication.
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compare and contrast the passive and active cellular uptake of glucose molecules and ions​

Answers

Passive transport does not require energy for the transport of molecules where active transport requires energy for transport.

Active transport VS passive transport A glucose is a large molecule so its diffusion across a membrane is difficult that's why it diffuses across membranes through facilitated diffusion against the concentration gradient.While on the other hand, Active transport is the movement of molecules into or out of a cell through the cell membrane, from a region of lower concentration to a region of higher concentrationso we can conclude that passive transport does not require energy for the transport of molecules where active transport requires energy for transport.

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What letter represents a trench?
a. A
b. B
c. C
d. D
e. E

What letter represents a trench?a. Ab. Bc. Cd. De. E

Answers

The answer is b because there are cracks in the ocean that are caused by two plates crashing

how do we find explanations for events in the natural world

Answers

Finding explanations for events in the natural world involves a scientific approach based on observation, experimentation, and analysis. Scientists employ various methods to understand phenomena.

They begin by carefully observing and gathering data about the event or phenomenon they want to explain. They formulate hypotheses, which are educated guesses about the underlying causes or mechanisms at play. These hypotheses are then tested through controlled experiments or further observations, and the results are analyzed using statistical methods.

If the data consistently supports a hypothesis, it may become a scientific theory, providing a reliable explanation for the event. Scientists utilize mathematical models, simulations, and computational techniques to simulate and predict natural phenomena. The process of finding explanations is iterative and often involves peer review, replication of experiments, and continuous refinement of theories to account for new evidence or observations.

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The complete question is:

How do we find explanations for events in the natural world?

define biota in diffrent words

Answers

Answer:

bioata:

Explanation:

a specim of life in a specific area, rime period, or habitat

what is the minimum value for the kevin temperature scale, and what would happen at that temperature?​

Answers

Answer:

The answer would be absolute value. At absolute zero temperature (0 K°), all forces in the universe are gone: strong force, weak force, electromagnetic force, gravity force, there is no movement, no structure… it is unimaginable, utterly horrible.

Explanation:

One thing is: Don’t worry, that will never happen.

This universe is spontaneously, simultaneously thermodynamically balanced in natural thermodynamic entropy mutual transformation cycles (Q↓→E↑) ↔ (E↓→ Q↑) in their corresponding order conversion efficiency of (ɳ=E/Q) ↔ (1/ɳ=Q/E), ∑ ∆(mc² + mv) = ∑ ∆(mx + mc), (16), in the black hole --- galaxy complex: ∑ (mc² + mv) ↔ ∑ (mx + mc), (17). In quantum level thermodynamic entropy transformation unit of the black hole --- galaxy complex as the only concentrative – dissipative structure in the universe, it will keep the basic thermodynamic entropy mutual transformation unit thermodynamically balanced, and thermodynamic balance will keep all other balances. And due to these basic thermodynamic units composed of the universe, the whole universe is balanced in every way.

This world had been like this from startles past and will be like this to endless future.

Natural process spontaneously keeps thermodynamic existence balanced continuation but to do so, it spontaneously cuts off the information existence evolutionary continuation to allow that to happen.

Though the nature does give intelligent lives a way out to allow the rare rationally rational being to use their rationality ability to form a rational open process to connect the limited natural processes to reach the endless future. Due to this rational life is a tiny proportion of the mass of the universe, and they are so much rational, they will never disturb the thermodynamic balance of this universe --- they coexist with this universe as eternal life, they are the real meaning of this universe --- the effective information E.

You may wonder, can the temperature ever drop below absolute zero?

Negative absolute temperature is indeed possible. In fact, researchers achieved this in 2013.

Here’s the thing though: Negative absolute temperature isn’t colder than absolute zero; it’s actually hotter than infinity (that’s messed up, right?).

Achieving this depends on the use of the general thermodynamic definition of temperature, rather than the “kinetic” definition that everyone learns in high school (i.e. that temperature is a measure of the average kinetic energy of the molecules in a system).

Turns out that the kinetic definition isn’t entirely general. So, instead, thermodynamics defines temperature using:

\(\frac{1}{T} =\frac{\alpha S }{\alpha E }\)

Or, in words:

\(\frac{1}{\text{Temperature}} =\frac{\text{Change in Entropy}}{\text{Change in Energy}}\)

So how do you get negative temperature from that?

Well, the way that a system normally appears in nature is that its molecules have high probability of being found in low energy states, and a low probability of being in high energy states. This is true even for things that are conventionally very hot.

When we add energy to such a system, we promote some of its molecules to higher energy states. Since entropy is proportional to the natural log of the number of microstates of the system, it follows that the entropy of the system increases as its molecules attain higher energy (the number of possible arrangements, or microstates, of the system increases).

So entropy increases with energy. That makes \(\frac{\alpha S}{\alpha E}\) positive and so  T  is positive.

Suppose, though, that you find a way to invert that system, so that its molecules have high probability of being found in high energy states, and low probability of being found in low energy states. And, suppose, further, that the molecules of that system have an upper bound on the energy they can absorb.

Adding energy to the inverted system, then, causes it to tend toward a state where all the molecules have their energy maximized. As there are only a small number of ways to arrange such system, the system’s entropy will tend toward zero as energy increases. And that means that entropy is decreasing.

So, in the inverted system, entropy decreases with increasing energy. That makes  \(\frac{\alpha S}{\alpha E}\) negative, and so T

is negative. We’ve achieved negative temperature!

In between the increasing entropy state and the decreasing entropy state, there will be a maximum entropy state. If you’ve taken first year calculus, you’ll remember that, as we approach that maximum, \(\frac{\alpha S}{\alpha E}\) approaches zero. This means that  T

 must be approaching infinity.

Positive temperatures occur to the left of the peak, and negative temperatures to the right of the peak. The insets show the distribution of molecular energies at the corresponding temperatures.

Note that the contrived negative temperature system we’re discussing here cannot be measured conventionally, by putting a thermometer into equilibrium with the system.

what stucture is attached to the nuclear membrane​

Answers

The structure that is attached to the nuclear membrane is the rough endoplasmic reticulum (RER).

The nuclear membrane is made up of two membranes, i.e. an outer membrane as well as an inner membrane. Both these membranes contain phospholipids that are arranged in the form of a bilayer. The perinuclear space segregates the outer and the inner membrane.

The structure attached to the outer membrane, i.e. the rough endoplasmic reticulum (RER) is a cell organelle that is associated with the transport of proteins. It bears ribosomes, which are the prime site of protein synthesis, on its surface. The nuclear lamina is present beneath the inner nuclear membrane.

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A microcope ha three objective len 4x 10x and 40x. The objective on a microcope that will magnify an object 40x i?

Answers

Students in grades 1-8 will often purchase a monocular compound microscope with three objective lenses: 4x, 10x, and 40x for a total magnification of 400x.

A high-power objective lens paired with a 10x eyepiece yields a total magnification of 400x, providing you with a remarkably detailed image of the specimen in the slide.

A microscope typically has three or four objective lenses. They usually invariably include powers of 4x, 10x, 40x, and 100x. When used in conjunction with a 10x (common) eyepiece lens, the overall magnification is 40x (4x times 10x), 100x, 400x, and 1000x.

Because 40 x 10 = 400, the total magnification of this microscope using the 40x lens would be 400 times.

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What are two more ways you could think of that would lessen the waste you create?

Answers

Some ways to lessen the waste that human create are:

- Recycling the materials you use;

- Reduce the use of plastic;

- Compost organic waste;

- Use reusable products (reusable bags, cups, bottles;

- Purchase wisely to reduce the waste from impulsive purchases.

Describe how scientists make inferences on whether water is polluted or not

Answers

Answer: Water that's safe to drink should ideally be clear with no odor or funny taste. One way to tell if water is contaminated is to look for turbidity, or cloudiness. While cloudy water isn't necessarily dangerous to your health, it could signal the presence of unsafe pathogens or chemicals.

Explanation:

Drinkable water should ideally be transparent and taste and smell normal. Look for turbidity, or cloudiness, as one indicator that water is contaminated.

What is drinkable water?

Surface water and groundwater are the two sources of potable water, also referred to as drinking water. The level of treatment applied to this water satisfies both state and federal standards for potable water.

The indirect potable reuse (IPR) and direct potable reuse (DPR) processes are the two basic ways to turn wastewater into potable water (DPR).

Foggy water may not always be harmful to your health, it may indicate the presence of germs or chemicals that are toxic.

Therefore, Drinkable water should ideally be transparent and taste and smell normal. Look for turbidity, or cloudiness, as one indicator that water is contaminated.

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Which event or principle CANNOT have its validity directly tested by laboratory experiment?
Select one:

a. the big bang theory

b. the conservation of energy

c. the periodicity of element properties

d. the acceleration of objects due to gravity

Answers

 because the Big Bang theory has to do with space and earth

What 2 ducts form the common bile duct?

Answers

The common bile duct is formed by the union of two ducts: the common hepatic duct and the cystic duct.

The common hepatic duct is responsible for draining bile from the liver, which is produced by the hepatocytes. It is formed by the convergence of the right and left hepatic ducts, which drain bile from the corresponding lobes of the liver. The cystic duct, on the other hand, connects the gallbladder to the common bile duct and allows bile to flow from the gallbladder into the common bile duct. Together, these two ducts form the common bile duct, which carries bile to the small intestine, where it helps with the digestion and absorption of fats.

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name the food material on which lipase act upon and name the end products​

Answers

Cooking oil and the products are glycerol and fatty acid

lipids----(lipase pancreatic/gastric/intestinal)----->Fatty acids+Glycerol

The food material is the one on the left and the end products the one on the right.

what supports a cell and allows materials to move in and out of it

Answers

The cell membrane supports a cell and allows materials to move in and out of it.

The cell membrane is the structure that supports a cell and allows materials to move in and out of it. It is a thin and flexible layer of lipids and proteins that surrounds the cell and separates the cell's internal environment from the external environment.

The cell membrane is selectively permeable, which means that certain materials can pass through while others cannot enter or leave the cell.

Diffusion, facilitated diffusion, active transport, and endocytosis/exocytosis are some of the transport mechanisms used to accomplish this through cell membrane.

Thus, the cell membrane regulates the exchange of materials with the external environment, which helps to maintain the cell's integrity and function.

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PLS HELP
What is the phenomenon called that occurs when changes in a protein appear to
accumulate at a constant rate over time?

A)morphological comparison
B) evolution stopwatch
C) molecular clock
D) homologous structure

Answers

when changes in a protein appear to accumulate at a constant rate over time is called option (c) i.e, Molecular clock.

What does molecular clock mean?

The term "molecular clock" refers to a method that estimates the time in prehistory when two or more life forms diverged by analyzing the mutation rate of biomolecules. Typically, nucleotide sequences for DNA, RNA, or amino acid sequences for proteins serve as the biomolecular data for these calculations.

Hedges, a biology professor at Penn State, claims that the molecular clock counts the mutations that accumulate through time in the gene sequences of various species rather than counting seconds, minutes, and hours.

Mutation and recombination, the two fundamental biological processes that give rise to all heritable variations, are the foundation of molecular clocks. Mutations are modifications to the genetic code of DNA, for as when the nucleotide Guanine (G) turns to Thymine (T).

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What is the relationship between wavelengths and frequency of electromagnetic waves

Answers

Answer:

The relationship among the speed of propagation, wavelength, and frequency for any wave is given by vW = fλ, so that for electromagnetic waves, c = fλ, where f is the frequency, λ is the wavelength, and c is the speed of light.

Explanation:

hope this helps you sorry if it doesn't help you

12) A(n) __________ is a collection of pigments such as chlorophyll that are used to absorb light in the light-dependent reactions of photosynthesis.

Answers

The answer is photosystem

Which medical advancements are possible using these stem cells? What ethical issues could erise from using embryonic cells to adult stem cells?

Answers

Answer:

Stem cells are used to restore or replace tissues that were damaged by disease or injury such as heart attack, also it used to type 1 diabetes which is caused when immune system destroy the beta cells in the pancreas that are responsible to make insulin. Spinal cord injuries can also be cured with the Stem cell therapy. Embryonic stem cell research is ethically controversial because it involve the destruction of human embryo or human life for research.

Explain the role of water potential in the movement of water from soil through the plant and into the air.

Answers

Water potential, which determines the potential energy present in waters and controls how water flows through plants, For photosynthesis to occur, plant use water uptake to move water to the leaves.

What is water potential?

The energy needed to move an infinitesimally small amount of water first from sample to a comparative pool or pure free water is known as the water potential. Controlling the blood's water potential is referred to as osmoregulation. The blood is difficult because it contains so many ions, proteins, and other things.

Why does water potential exist?

Pressure, gravity, and zeta potentials are a few variables that have an impact on water potential. A system's maximum potential energy grows with increasing pressure potential (p); a system's maximum possible energy falls with decreasing p. Cells constantly use up different substances, some more frequently than others depending on the time of day, night, sweat, tears, etc.

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Identify functions of ATP. Multiple select question. To power transport across cell membranes To power the movement of cells To accept electrons during oxidation-reduction reactions To drive energetically unfavorable reactions To store information within the cell

Answers

From the given options, the functions of ATP include:

To power transport across cell membranes.To power the movement of cells.To drive energetically unfavorable reactions.

Adenosine Triphosphate (ATP) is defined as the energy molecule that is derived from the metabolic oxidation of glucose.

This ATP is used for a variety of processes which include:

Active transport: It provides the energy that is needed to move materials against a concentration gradient. This leads to the transport of the materials across cell membranes.Movements: Muscle contraction and ciliary movement which brings about movement in cells, requires energy from the hydrolysis of ATP.Thermodynamically unfavorable reaction: This can be driven by the hydrolysis of ATP energy molecule in a cell.

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If it wasn't for the Sun and the ___ cycle, our current atmosphere might not exist, and weather on Earth would be minimal.
A. Water
B. Carbon
C. Oxygen
D. Nitrogen
Please give an explanation

Answers

Answer:

B. Carbon cycle

Explanation:

The operation of the carbon cycle is one of the most important in this regard as it ultimately controls levels of oxygen and carbon dioxide in the atmosphere. The carbon cycle is responsive to changes in climate and oceanography and is coupled to nutrients cycles.

The correct answer is B. Carbon

The inheritance pattern of one gene will not affect the inheritance pattern of another gene. This is known as(1 point).

Answers

The inheritance pattern of one gene will not affect the inheritance pattern of another gene is known as the Principle of Independent Assortment.

This principle describes the random inheritance of genes that are present in independently reproducing organisms, and they separate when they develop. It was developed by Mendel and he explained it with the help of peas.  It normally occurs due to meiosis in eukaryotic cells.

This happens normally when chromosomes are divided into various genes. It mentions the genetic inheritance from both parents. It helps in recombination.

Recombination is a process that breaks and recombines DNA to form new genes. Independent assortment takes place during metaphase one  in meiosis.

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7. What is the formula that describes what happens to an object with mass
when it is acted upon by an external force? |

Answers

Answer:

F = MA

Explanation:

Newton’s first law says that an object remains in uniform motion unless acted on by a net force. When a net force is applied, the object accelerates.

Answer:

F = MA

Explanation:

Question 2 of 10
What is the likely effect of increasing the use of fossil fuels?
O A. Pollution levels and their effects will decrease.
B. Global warming will steadily decrease.
C. Biodiversity will decrease in most ecosystems.
D. Ecosystems will become more resilient.

Answers

It’s c because the other 3 things are good for the environment so it has to be the one that is bad

Kenneth and Catherine Lohmann of the University of North Carolina explored the orientation or direction-finding abilities of loggerhead sea turtle hatchlings under varying magnetic conditions. Hatchlings were placed in a tank of water in a laboratory either in the natural magnetic field of the earth OR in a reversed magnetic field in which north and south were flipped. The researchers then measured the direction that the hatchlings swam. The experiments were carried out in the dark and at night since that is when most newly hatched turtles migrate from their sandy nests into the ocean. The results of the Lohmanns' experiments are most likely to be considered credible if Group of answer choices a great deal of time had been spent collecting hatchlings and running experiments. the experiments were funded by a government grant. the results were published in a peer-reviewed journal. the Lohmanns are famous scientists.

Answers

Answer:

the results were published in a peer-reviewed journal.

Explanation:

When the results of any study or a research is published in a well renowned and a peer reviewed journal, then the study is considered to be credible and authentic and is accepted by the intellectual society.

In the context, two young scientists are performing an experiment on the direction finding or the orientation finding abilities of the loggerhead sea turtle which are hatching under the varying magnetic fields.

The finding of these experiment or the result will be considered credible only when the results of the experiment will be published in a peer reviewed journal.

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