The fact that trees are more likely to be vertical or horizontal than slanted is an example of ____.

Answers

Answer 1

The fact that trees are more likely to be vertical or horizontal than slanted is an example of natural selection.

As the tree grows, it is subject to the forces of gravity, wind, and other environmental conditions. Gravity pulls the tree downwards, while wind and other environmental conditions push against the tree in various directions.

Over time, the forces of gravity and the environment shape the tree into a vertical or horizontal position as the tree seeks to achieve the most stability and support. The vertical or horizontal orientation of the tree gives it the best chance to survive and thrive in its environment.

This natural selection helps the tree to be better adapted to its environment, as its shape will help it to better withstand strong winds, support more weight, and absorb more sunlight. Trees that are slanted are often suffering from external forces such as strong winds, or are in a location that is not ideal for its environmental needs.

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Related Questions

Which base is found only in RNA

Answers

uracil instead of thymine in dna

Uracil is the base that is found only in RNA and is not present in DNA. In RNA, uracil replaces thymine, which is one of the four bases found in DNA. This difference in the nitrogenous bases is one of the key distinctions between RNA and DNA.

RNA stands for ribonucleic acid. It is a single-stranded molecule that is made up of nucleotides, which are the building blocks of RNA.

The nitrogenous bases found in RNA are adenine (A), guanine (G), cytosine (C), and uracil (U). But uracil is the only base found in RNA. The reason for this difference in bases is due to the fact that RNA is a single-stranded molecule, while DNA is double-stranded.

The presence of uracil in RNA allows it to form complementary base pairs with adenine, which helps to stabilize the RNA molecule.

Therefore, the nitrogenous base that is found only in RNA is uracil. This base plays an important role in RNA structure and function, allowing it to form complementary base pairs with adenine and contribute to the stability of the RNA molecule.

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In diffusion, when the concetration of molecules is equal or even, this is called what? equality equilibrium unequality paralibrium

Answers

Answer: paralibrium

Explanation:

Imagine that an endangered frog lives near an area where Bd was just found. How could
you help protect that frog species?

Answers

Answer:

by taking it to moist area

Explanation:

frog is always find in moist area

and it their habitat

Answer:

There are many methods to protect species

Explanation:

Spread the word to the public that an endangered species of animal lives in an area to which they should try to preserve its well being. Lower pollution and clear up trash in its habitat. Try not to interfere with its natural routine.

If its home is needing assistance, try making a make shift home or fix its habitat.

describe the relationship between the total number of mutant alleles in an individual and the concentration of cysteine in the urine.

Answers

There is no clear relationship between the total number of mutant alleles in an individual and the concentration of cysteine in the urine. While mutations in certain genes can lead to disorders that affect cysteine metabolism and excretion, the number of mutant alleles alone does not necessarily indicate the severity of the condition or the resulting concentration of cysteine in the urine.

Other factors, such as dietary intake and overall health, can also influence cysteine levels in the urine. Therefore, it is important to consider multiple factors when evaluating cysteine levels in an individual.The total number of mutant alleles in an individual refers to the number of altered copies of a gene that an individual possesses. These mutant alleles can lead to abnormal production or function of the gene's product, which in this case is an enzyme responsible for the metabolism of the amino acid cysteine. When an individual has one or more mutant alleles that affect the metabolism of cysteine, it can result in a reducedability to break down cysteine properly. This, in turn, can lead to an increased concentration of cysteine in the urine.

In summary, the relationship between the total number of mutant alleles in an individual and the concentration of cysteine in the urine can be described as a direct relationship, where an increase in the number of mutant alleles may lead to an increase in cysteine concentration in the urine. This is because the presence of mutant alleles can affect the proper metabolism of cysteine, leading to its accumulation and excretion in the urine.

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Word Bank
protein molecule: structure
trait: variation
Why do these sisters have different traits? Use the above words in your response, describing what would determine these traits at the molecular scale.

Word Bankprotein molecule: structuretrait: variationWhy do these sisters have different traits? Use the

Answers

Differences at the molecular level or in the genes will result in variations in the proteins for which the genes code, resulting in trait variation.

Why these sisters have different traits?

Each child inherits two copies or variants of each gene, one from their mother and one from their father. Because each offspring might inherit a unique mix of gene versions, siblings can exhibit features that differ from one another and from their parents. The right girl has straight hair, whereas the left girl has curlier hair. A gene encodes a particular protein that is involved in the expression of a characteristic. Because proteins perform much of the chemical activity inside the cell, they primarily decide the qualities and whose they are. Another thing to keep in mind is that genes are made up of molecules. Like a spiral staircase, thin threads curled around each other.

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5. Do you think it's good for tourists to swim with whale sharks? Why or why not? National Geographic

Answers

Probably not it might make them anxious or something

Let’s say Gene 1 produces a mutated version of the CFTR gene (the one that causes
cystic fibrosis), and you are a geneticist studying ways to prevent this protein from
forming. Based on the simulation, what molecule do you think would be MOST useful to
investigate and why?

Answers

Based on the simulation, the molecule that would be most useful to investigate for preventing the formation of the mutated CFTR gene is a small molecule inhibitor that specifically targets the mutated protein.

1. Identify the problem: The problem is to find a molecule that can prevent the formation of the mutated CFTR gene, which causes cystic fibrosis.

2. Understand the context: The simulation provides information about the gene mutation and its impact on protein formation.

3. Consider the objective: The objective is to find a molecule that can specifically target and inhibit the mutated CFTR protein.

4. Review available options: Explore various molecules that have been studied for their inhibitory effects on specific proteins.

5. Evaluate specificity: Look for a molecule that can selectively target the mutated CFTR protein without affecting other cellular processes.

6. Assess effectiveness: Determine the potential of each molecule to effectively inhibit the formation of the mutated CFTR protein.

7. Consider practicality: Consider factors such as cost, availability, and feasibility of using the molecule in further research or potential therapeutic applications.

8. Make a decision: Select the molecule that shows the most promising inhibitory effects on the mutated CFTR protein based on the simulation data.

9. Justify the choice: Explain why the chosen molecule is expected to be the most useful based on its specificity, effectiveness, and practical considerations.

10. Conclusion: The selected molecule, a small molecule inhibitor targeting the mutated CFTR protein, is the most promising candidate for further investigation and potential prevention of cystic fibrosis.

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What are 2-3 ways that pollen can travel from one flower to another? Why do you think many plants produce sweet nectar?

Answers

Answer:

wind, water, birds, insects, butterflies, bats, and other animals that visit flowers.

Explanation:

How does pollen get from one flower to another? Flowers must rely on vectors to move pollen. These vectors can include wind, water, birds, insects, butterflies, bats, and other animals that visit flowers. We call animals or insects that transfer pollen from plant to plant “pollinators

Flowers produce nectar as a reward for pollination

An UNCONFINED
(able to flow) aquifer
that intersects with the surface of the
earth creates which of these?

Answers

A water desk--or unconfined--aquifer is an aquifer whose higher water surface (water desk) is at atmospheric pressure, and accordingly is capable of upward push and fall.

An unconfined aquifer, additionally known as a water-desk aquifer, is an aquifer which has the water desk as its higher boundary. Unconfined aquifers arise close to the floor surface. In each unconfined and limited aquifers, groundwater flows from areas of excessive hydraulic head (recharge zones) to areas of low hydraulic head (discharge zones).

Warming oceans are inflicting polar ice sheets to soften faster, with the intention to make sea degrees upward push even more. The aggregate of melting ice and increasing water may want to reason sea degrees to upward push via way of means of as much as a meter via way of means of 2100.

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Vacuole Cell membrane Nucleus CUID DIID Chloroplast Cell wall How does the cell membrane in the diagram above help to maintain the health of this cell? By manufacturing protein to provide energy for the cell O By providing support and structure for the cell O By storing food as future energy for the cell O By regulating the transport of materials in and out of the cell​

Answers

Answer:

By providing support and structure for the cell

Explanation:

From what I am able to understand from this question, the second answer makes the most sense.

What type of invertebrate are robber crabs

Answers

Answer:

Phylum Arthropoda

Explanation:

They’re correct^^ :)

Two similar waves are traveling through the same medium. Wave A has a frequency that is 3 times that of wave B. How do their wavelengths compare?

a. λA=1/9 λB
b. λA=λB
c. λA=1/3 λB
d. λA=3 λB

Answers

Answer:

The wavelength of wave B will be greater than wavelength of wave A which has greater frequency.

What is wavelength?

The wavelength of a wave is the distance traveled by the wave.

The relationship between wavelength and frequency of a wave is given as;

v = fλ

λ = v/f

At a constant speed of sound, increase in frequency causes a decrease in the wavelength of a given wave.

Thus, the wavelength of wave B will be greater than wavelength of wave A which has greater frequency.

Explanation:

The wavelength of wave B will be greater than wavelength of wave A which has greater frequency. It means λA=1/3 λB. The correct option is c.

What is wavelength?

The distance over which a periodic wave's shape repeats is known as the wavelength in physics. The distance a wave travels is measured by its wavelength.

The following is the formula for a wave's relationship between wavelength and frequency:

v = fλ

λ = v/f

A given wave's wavelength decreases as its frequency rises with a constant speed of sound.

Thus, the correct option is c.

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what is the correct order of protein production?
1) ribosome
2) endoplasmic reticulum
3) secretory vesicles
4) golgy apparatus

a) 1,2,3,4
b) 2,4,3,1
c) 1,2,4,3
d) 3,2,4,1

Answers

Answer:

The correct order of protein production is:

c) 1,2,4,3

Ribosome: Protein synthesis begins in the ribosomes, which are located either in the cytoplasm or attached to the endoplasmic reticulum.

Endoplasmic Reticulum: After the initial stages of protein synthesis in the ribosomes, the newly synthesized protein is transported into the endoplasmic reticulum (ER) for further processing and modification.

Golgi Apparatus: The proteins synthesized in the ER undergo further processing and modifications in the Golgi apparatus. This includes sorting, packaging, and modifying the proteins to their final functional forms.

Secretory Vesicles: Once the proteins are properly processed and modified in the Golgi apparatus, they are packaged into secretory vesicles. These vesicles transport the proteins to their destination, such as the plasma membrane for secretion outside the cell.

Therefore, the correct order is 1, 2, 4, 3.

Answer:

The correct order of protein production is ribosome, endoplasmic reticulum, Golgi apparatus, and secretory vesicles. So the correct answer would be c) 1,2,4,3.

Many proteins destined for the endoplasmic reticulum, the Golgi apparatus, lysosomes, the plasma membrane, and secretion from the cell are synthesized on ribosomes that are bound to the membrane of the endoplasmic reticulum. The Golgi apparatus then distributes these proteins and lipids that it receives from the ER.

CALLING ALL BOYS I NEED UR HELP.

Whats an Allele? Plz

Answers

.... why boys thooooo

*giving follow brainiest and 5 +thank you*
What can mRNA do that DNA cannot?
A. Copy itself
B. Leave the nucleus
C. Enter the nucleus
D. Leave the cell

Thank you for help! I promise to deliver if correct.

*giving follow brainiest and 5 +thank you*What can mRNA do that DNA cannot?A. Copy itselfB. Leave the

Answers

Answer:

B leave the nucleus

Explanation:

tRNA uses (anticodons/codons) to match to the mRNA.

Answers

Answer:

anticodons

Explanation:

codons are for mRNA

tRNA uses anticodons to match to the mRNA.

Which one does tRNA uses?

tRNA (transfer RNA) molecules are responsible for carrying specific amino acids to the ribosomes during protein synthesis.

They have an anticodon region that consists of three nucleotides that are complementary to the codons on the mRNA (messenger RNA). The codons on the mRNA determine the sequence of amino acids in the growing polypeptide chain.

The anticodon on the tRNA base pairs with the complementary codon on the mRNA, ensuring that the correct amino acid is incorporated into the growing protein chain. The matching between the anticodon and codon is essential for the accurate translation of genetic information into protein synthesis.

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24. a sample is dated using uranium-235 (half-life 704,000,000 years), and it has 1/4 of the original amount of uranium. how old is the sample?

Answers

A sample is dated using uranium-235 (half-life 704,000,000 years), and it has 1/4 of the original amount of uranium. the age is 1.408 billion years old.

A half-life represents the time it takes for half of the radioactive material to decay. In this case, we need to find how many half-lives have passed for the sample to have 1/4 of its initial uranium-235 content. After one half-life, the sample would have 1/2 of the original uranium-235. After another half-life, half of the remaining uranium-235 would decay, leaving 1/4 of the original amount. Therefore, two half-lives have passed.

Now, we can calculate the age of the sample by multiplying the number of half-lives by the duration of each half-life. In this case, the sample has undergone two half-lives of 704 million years each: Age = 2 (half-lives) × 704,000,000 years (half-life duration) = 1,408,000,000 years. So therefore, the sample dated using uranium-235 (half-life 704,000,000 years), and it has 1/4 of the original amount of uranium is 1.408 billion years old.

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Explain the process and bonds involved in the ability of RNA to fold into complex 3-D shapes, similar to those of tertiary proteins.

Answers

RNA molecules fold into complex 3-D structures when base pairing occurs between nitrogen base pairs. The bonds forned are hydrogen bonds.

What are RNA molecules?

RNA molecules refers to nucleic acids which are built from ribose sugar molecules instead of deoxyribose as in DNA molecules.

RNA molecules as in DNA are composed of a sugar backbone, a nitrogenous base, and phosphodiester linkages.

The nucleotides found in RNA molecules are:

uraciladeninecytosine andguanine

RNA is able to form complex 3-D structures even though they are single-stranded because of base pairing that occurs between adenine and uracil, and guanine to cytosine.

The bonds present in thebase pairs are hydogen bonds.

Hydrogen bonds are bonds which are formed between hydrogen and a highly electronegative atom such oxygen, nitrogen, chlorine, and fluorine.

In the RNA molecule, hydrogen bonds form betweenthe oxygen and nitrogen atoms of the either uracil, adenine, cytosine, or uracil.

These hydrogen bonds results in three-dimensional structures of RNA.

In conclusion, RNA molecules are single-stranded nucleic acids materials.

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PLEASE RESPOND FAST!!!!!!!!!
_____ pressure is what gives plants that are not woody their rigid structures.
Hypertonic
Hypotonic
Turgor
Turgid
Isotonic

Answers

Answer:

I'd say C.)

Explanation:

Turgor pressure, also called turgidity when occurring in trees and most plants are the pressure of cell contents exerted against the plant cell wall including tree leaf and stem cells. ... This force consequently gives a succulent plant rigidity and helps non-woody plants to keep erect.

The answer is it’s answer c

Which three processes happen as a multicellular organism grows?
A. Its cells take in water and nutrients
B. The amount of DNA in its body cells decreases
C. Its cells get larger in size
D. The number of cells in its body increases.

Answers

Answer:It is C D and A

Explanation:

Answer: C, D, and A

Explanation:

What process is taking place in the image below?

What process is taking place in the image below?

Answers

You can see in this particular structure, there is a hydrogen bond between a hydrogen on the hydronium ion and the oxygen on the other water molecule.

Hydronium ions don’t exist in on their own, they’re required to have some way of balancing the charge that comes from the additional hydrogen ion. This balancing is typically done by the water surrounding the hydronium ion (H3O+H3O+) since water will outnumber the amount of hydronium atoms by orders of magnitude (there’s a lot more water than ions).

The hydronium ion in cold water is typically surrounded by 6 water molecules (probably oxygen towards the extra hydrogen but I can’t access the journal to confirm). There are some other structures like the one above, and another called the Eigen cation where the hydrogen is at the center of four water molecules (one is technically the hydronium). There’s also a very large structure that’s called the magic structure that has a hydronium ion surrounded by twenty water molecules (it’s called magic because it’s extra stable for its size).

please just pair them i really needed help on this one like really

please just pair them i really needed help on this one like really

Answers

phenotype-b

genotype-d

homozygous dominant-a

homozygous recessive-c

heterozygous-e

i believe this is correct i’m doing the same thing in my class

hope this helps :)

arrange the steps that describe how a message is transmitted from one neuron to another.

Answers

The steps that describe how a message is transmitted from one neuron to another are: 1) reception, 2) integration, 3) transmission, and 4) reception by the next neuron.

When a message is transmitted from one neuron to another, it goes through several steps. First, the message is received by the dendrites, the branched extensions of the receiving neuron. These dendrites contain receptors that bind to neurotransmitter molecules released by the sending neuron. This reception of neurotransmitters initiates an electrical signal called a graded potential.

The graded potential then undergoes integration at the cell body of the receiving neuron. Here, the incoming signals from multiple dendrites are combined and summed. If the combined signals reach a certain threshold, an action potential, or a brief electrical impulse, is generated.

The action potential travels along the axon, the long, slender projection of the neuron. It is propelled by the opening and closing of ion channels along the axon membrane, which allows the flow of ions and the propagation of the electrical signal.

At the end of the axon, the electrical signal is translated into a chemical signal. This occurs through the release of neurotransmitter molecules into the synapse, the small gap between the sending and receiving neurons. The neurotransmitters then bind to receptors on the dendrites of the next neuron, initiating the process anew.

The transmission of a message from one neuron to another involves reception of neurotransmitters, integration of signals, transmission of an action potential along the axon, and reception by the next neuron through neurotransmitter binding.

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Which is not part of the conducting portion of the respiratory system?
A. Alveoli
B. Trachea
C. Larynx
D. Nasal cavity
E. Bronchi

Answers

The conducting section of the respiratory system does not include alveoli.

What does the term "respiratory system" mean?

The respiratory system is a biological system found in both plants and animals that is made up of certain organs and structures used for gas exchange. The anatomy and physiology that contribute to this vary considerably depending on the size of the creature, its habitat of habitation, and its evolutionary history.

The respiratory system is what?

Your lungs, airways, and blood arteries are part of it. The respiratory system also includes the muscles that move your lungs. Together, these elements aid in the body's oxygen circulation and waste gas elimination.

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All organic compounds are essential for life. Some compounds act as building blocks for muscle tissue and hair. Others are
responsible for determining which traits are inherited by an organism. Which of the following combination of macromolecules
provide energy for basic life functions?
water and carbohydrates
lipids and nucleic acids
lipids and carbohydrates
Onucleic acids and protein
6*
Wild es....pdf

Answers

According to the research, the correct answer is lipids and carbohydrates. The combination of these macromolecules provide energy for basic life functions.

What are macromolecules?

They are essential molecules are present both in living organisms and in the inert elements that are necessary for life.

In this sense, lipids are a set of organic molecules, most of them biomolecules, and are linked to the body's long-term energy reserve, and carbohydrates, which are biomolecules, also provide energy to the body.

Therefore, we can conclude that lipids and carbohydrates are macromolecules immediate energy sources for the cell for basic life functions.

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. the medium ground finch (geospiza fortis) and the cactus finch (geospiza scandens) are similar in size and appearance. a. which physical trait varies the most between these two species? b. the medium ground finch and the cactus finch are adapted to consume different types of foods. can you think of a situation in which the medium ground finches would have a survival advantage over the cactus finches? a disadvantage?

Answers

Cactus finches have longer beaks than medium ground finches, which is the physical difference between these two species that differs the most.

What species of ground finch are associated to huge cacti?

Taxonomy. Darwin's finches, a group of closely related birds that developed on the Galápagos Islands, includes the Espanola cactus finch. The Tiaras grassquits, which may be found in South America and the Caribbean, are linked to the group.

What became of the medium-sized finches?

Due of low population sizes, there has been an inbreeding depression in the medium ground finch population. When fitness declines as a result of people mating with genetic relatives, it is known as inbreeding depression. Normal outcomes include a decrease in heterozygosity and a loss of genetic diversity.

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How mitochondrial failure is involved in shallow breathing, shivering, and Weak pulse.

Answers

Explanation:

Mitochondrial failure is involved in shallow breathing, shivering, and weak pulse in several ways.

First, shallow breathing can be a result of mitochondrial failure in the cells that make up the respiratory muscles. These cells require a constant supply of energy from the mitochondria in order to contract and relax, allowing the lungs to expand and contract and move air in and out of the body. If the mitochondria in these cells are not functioning properly, they will not be able to produce enough energy to support the contraction of the respiratory muscles, leading to shallow breathing.

Shivering is also related to mitochondrial failure, as it is a mechanism that the body uses to try to generate heat when it is cold. When the body is cold, the muscles contract and relax rapidly, producing heat through the process of muscle metabolism. This process requires energy from the mitochondria, and if the mitochondria are not functioning properly, the body will not be able to generate enough heat through shivering to keep warm.

Finally, weak pulse can be a result of mitochondrial failure in the heart muscle. The heart is a muscle that requires a constant supply of energy from the mitochondria in order to contract and pump blood throughout the body. If the mitochondria are not functioning properly, the heart muscle will not be able to contract effectively, leading to a weak pulse.

Overall, mitochondrial failure can be involved in shallow breathing, shivering, and weak pulse by interfering with the ability of the cells that produce these processes to generate enough energy to function properly.

Please help me!!!!!!!!!!
Which organisms undergo Carnegie stages?

Please help me!!!!!!!!!! Which organisms undergo Carnegie stages?

Answers

Answer:

Only the sheep will undergo carnegie stages, because sheep are mammals.

Carnegie stages refer to how we mammals reproduce, more specifically the stages in which embryos form.

Hope this helps :)

Answer:

sheep and salamander

you're welcome :)

building social capital supports conventional behavior and inhibits deviant behavior. a. true b. false

Answers

True.  Social capital refers to the connections and relationships within a community, which can encourage individuals to conform to social norms and discourage deviance.

Building social capital, which refers to the networks, norms, and trust that exist within a community or society, tends to promote conventional behavior and discourage deviant behavior. This is because individuals who are embedded in strong social networks and have strong relationships with others in their community are more likely to conform to shared norms and values, and to feel a sense of obligation to their peers. On the other hand, individuals who lack social capital or who are disconnected from their community may be more likely to engage in deviant behavior, as they may not feel a sense of social responsibility or accountability.

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explain the correlation between solar radiation and kelp biomass.

Answers

Given what we know, we can confirm that although sunlight is beneficial to plant growth, intense solar radiation has been proven to be detrimental to the survival of kelp, thus reducing its biomass.

How does solar radiation affect kelp?

Solar radiation is not harmful in very low amounts.

However, when exposed at long intervals or high intensity, it has been shown to cause tissue damage.

This tissue damage will inhibit the kelp's ability to undergo photosynthesis.

This means it will not be able to grow, and its biomass will be reduced.

Therefore, given the effect of solar radiation in damaging the kelp's ability to photosynthesize and thus reducing its growth, we can confirm that intense or prolonged exposure to solar radiation reduces kelp biomass.

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Ella's height is 175 cm, concct to the nearest 5cm.Write down the upper bound of Ella's height. [H+] [OH-] =NEED HELP ASAP!!! lung cancer caused by railroad how to get a settlement? Why does the coral snake have bright colors? Today why are fossil fuels more commonly utilized than alternate energy? Find the complete solution in radians of each equation. 2cos+sin=1 who claimed the pacific ocean for spain? Simplify: 2 - 6Responses-4-48844-8 What is the best choice for a blank when calibrating the spectrophotometer when you will later measure the absorbance of beverages?. You are trying to decide whether to trade in your laser printer for a more recent model. Your usage pattern will remain unchanged, but the old and new printers use different toner cartridges. Are the following items relevant or irrelevant to your decision?. solve (2x^((2)/(3)))^(-6) elizabeth is awake and alert while playing a video game. her brain activity will most likely be characterized by grady exchanges property with a basis of $39,333 and fair market value of $47,200 for 60% of the stock of eadie corporation. pedro acquired the other 40% of the stock five years ago. calculate grady's current income, gain, or loss and the basis he takes in his shares of eadie stock as a result of this transaction. Which of the following statements concerning the influence of culture on ethnic identity formation is accurate? One will reject ethnic identity if cultural stereotypes are encountered. If ones ethnicity is different from the dominant cultural group, then ones ethnic identity will become weakened. If an ethnic group is accepted by dominant culture, then ethnic identity formation can be a difficult process. Similarity to the dominant culture can determine how easy it is for one to accept ethnic differences. Answer the following question in 1-2 complete sentences. Why did Christian art become publicly accepted during the third century? Please i need this its the last question !!!! All of the following benefits are available under Social Security EXCEPT:A) old-age or retirement benefits.B) disability benefits.C) welfare benefits.D) death benefits. How does a Free Market System and Centrally Planned System impact consumers and producers differently? Soon after Rinehart rewrote the record books, a battle of dueling century riders in Long Island, New York, attracted national attention. Irene Brush of Brooklyn started things off by pedaling 200 miles in 22 hours on May 7 and 8, 1899. A month later, she rode 300 miles in 29 hours and in mid-July, 400 miles in 48 hours. Brush's achievements soon were eclipsed by two new marathon cyclists. In late July, Jane Yatman, a 24-year-old former bookstore clerk from Manhattan, powered through five centuries in 58 hours. In early September, Jane Lindsay of Brooklyn pedaled 600 miles in 72 hours. Later that month, on September 16, Jane Yatman set out to ride 700 miles, a feat which she accomplished in 81 hours, 5 minutes. "Miss Yatman plainly showed the effects of the terrible strain in her countenance," reported the New York Times, "and said that the ride was torture during the last twenty-five miles." Those miles, and indeed the entire last century, were ridden in a drenching rainstorm. Wheels of Change, Sue Macy What central idea do the statistics help the reader understand? A- Rinehart held the longest cycling record. B- Women bicycle racers were very competitive. C- Not everyone supported women racers. D- Cycling races were popular to watch. How much did he invest in Fund B, if both guns together returned a 8% profit.