I Kudzu is a vine imported from Japan to the US in the 1800s. By the 1930s, farmers were encouraged by the government to plant kudzu for erosion control. Now common throughout the southeastern U. S. , the vine grows fast and kills native species by blanketing vegetation with leaves and choking trees by encircling them with vines.





II The brown marmorated stink bug is an agricultural pest, native of mainland China and first observed in Pennsylvania in 1998. It is thought to have entered the US by stowing away on packing crates of cargo ships. Piercing mouth parts cause serious damage to apples, persimmons, peaches, cucumbers, grapes, and other crops.



III Around 1987, zebra mussels were discovered in the Great Lakes region where they became a serious nuisance. Native to the Black and Caspian Seas of Eurasia, these mollusks coat the undersides of docks and boats and clog pipes and plumbing.



What do kudzu, zebra mussels, and brown marmorated stink bugs have in common?

Answers

Answer 1

Kudzu, zebra mussels, and brown marmorated stink bugs are all invasive species that were introduced to the United States from other parts of the world.

They have all caused significant damage to the environment, including killing native species, damaging crops, and clogging pipes and plumbing.  They were introduced from other countries (kudzu from Japan, zebra mussels from Eurasia, and brown marmorated stink bugs from China) and have caused significant ecological and economic damage to their new environments, as they negatively impact native species, agriculture, and infrastructure. Kudzu—or kuzu (クズ)—is native to Japan and southeast China. It was first introduced to the United States during the Philadelphia Centennial Exposition in 1876 where it was touted as a great ornamental plant for its sweet-smelling blooms and sturdy vines.

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Related Questions

Use the drop-down menus below to complete the following statement. the system contains glands that secrete hormones into the bloodstream, whereas the system secretes substances through ducts.

Answers

The endocrine system contains glands that secrete hormones into the bloodstream, whereas the exocrine system secretes substances through ducts.

The endocrine system is responsible for producing and secreting hormones directly into the bloodstream to regulate various bodily functions, such as growth and development, metabolism, and reproduction.

These hormones act as chemical messengers and travel throughout the body to target cells or organs that have specific receptors for that hormone. The glands of the endocrine system include the pituitary gland, thyroid gland, adrenal gland, and pancreas, among others.

On the other hand, the exocrine system includes glands that secrete their products through ducts or tubes into a particular organ or onto a surface, such as the skin or digestive tract.

These secretions may include enzymes, mucus, or sweat, and serve various functions, such as aiding in digestion or protecting the skin from dehydration or infection.

Examples of exocrine glands include the salivary glands, sweat glands, and mammary glands.

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Answer: here's your answer

Explanation

 ✔ endocrine

endocrine✔

✔ endocrineexocrine pituitary gland✔

endocrine thyroid gland

endocrine✔ exocrine salivary glands

Discuss how human impact on the environment that could lead to a change in an organism's dna and alter the growth and reproduction of individuals. please provide an example of an organism.

Answers

Answer:

A human impact such as increased land use can lead to changes in different organisms DNA. As we take up more space and destroy increasing numbers of habitats to build infrastructure and places to live for the growing population, organisms are forced to relocate to new habitats and ecosystems. Because of this, there organisms are introduced to a new food web, which can alter how they interact with their environment. If they are competing with another breed of animal who is able to obtain a certain food source and they are not because of a certain feature on their bodies, throughout the process of evolution they could develop that trait that they were missing previously and become more equal on the playing field with the species that had been there long before them.

1. The pyramid shown represents a single food chain in an ecosystem. What happens to the energy as it moves from one trophic level to the next?

2. Why is a pyramid like the one shown a good representation of the energy in a food chain?

Answers

A pyramid of energy is a useful tool for understanding the flow of energy through an ecosystem and the efficiency of energy transfer between trophic levels.

What happens to energy in a food pyramid?

As the energy moves from one trophic level to the next in a food chain, it decreases. This is because only a fraction of the energy that is consumed by organisms at each trophic level is passed on to the next level. This fraction is typically around 10%, with the remaining energy being lost as heat or used for metabolic processes.

A pyramid like the one shown is a good representation of the energy in a food chain because it illustrates the decreasing amount of energy available at each successive trophic level. The base of the pyramid represents the primary producers, which have the most energy available to them.

As the energy is transferred up the pyramid to higher trophic levels, the amount of energy available decreases, resulting in a smaller biomass at each level.

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Question 9 (1 point)


Choose ALL that apply for raft spiders.


Raft spider sight weight and large surface area allow it to walk on water.


Raft spider's heavy weight and small surface area allow it to walk on water


Raft spiders sprint along submerged plants to catch underwater prey.


Raft spider's legs have a waxy surface that repels water


Cortion 11

Answers

Raft spiders, also known as fishing spiders, are fascinating creatures that inhabit wetland habitats throughout the world. The correct option is A. Raft spider sight weight and large surface area allow it to walk on water.

C: Raft spiders sprint along submerged plants to catch underwater prey.

D. Raft spider's legs have a waxy surface that repels water

These spiders are unique in that they have evolved to sprint along submerged plants in order to catch their underwater prey. This incredible ability allows them to move quickly and efficiently across the water's surface, making them one of the most successful predators in their environment.

Raft spiders are well adapted to life in wetlands and have a number of unique adaptations that allow them to survive in this challenging environment. They have large, flat legs that enable them to move quickly across the water's surface without sinking. They also have specialized hairs on their legs that allow them to detect the slightest movements in the water, helping them to locate prey.

One of the most interesting things about raft spiders is their hunting strategy. These spiders use a combination of speed and stealth to catch their prey. They sprint along the surface of the water, using their specialized hairs to detect the movements of potential prey. Once they have located their target, they pounce on it with lightning speed, using their powerful jaws to immobilize it.

Overall, raft spiders are fascinating creatures that have evolved unique adaptations to help them survive in their watery world. Their ability to sprint along submerged plants and catch underwater prey is truly remarkable and makes them one of the most impressive predators in the animal kingdom.

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Ruby was recently diagnosed with anemia. ruby's doctor wanted to prescribe medication for her. however, different drugs help different patients
ruby's doctor filled out a form with information about her parent's medical history, include drug allergies. he also decided to do a dna test. he took a
sample of cells from inside ruby's cheek and sent it to a laboratory. the lab report showed which medications were most likely to help ruby feel beter
choose the words that correctly complete each sentence.

Answers

Ruby was recently diagnosed with anemia, which means that she has a deficiency in red blood cells or hemoglobin. To treat this condition, her doctor wanted to prescribe medication for her. However, different drugs work differently for different patients, and some may cause side effects or interact with other medications that she is taking.

To determine which medication would be best for Ruby, her doctor took a comprehensive approach. He filled out a form with information about her parent's medical history, including any drug allergies that they may have had. This information is important because some medications can cause allergic reactions or have adverse effects in individuals with certain medical conditions.

Additionally, Ruby's doctor decided to do a DNA test by taking a sample of cells from inside her cheek and sending it to a laboratory. The lab report showed which medications were most likely to help Ruby feel better based on her genetic makeup.

By taking these steps, Ruby's doctor was able to personalize her treatment plan and prescribe a medication that was safe and effective for her specific needs. This approach is becoming increasingly popular in healthcare, as it allows doctors to provide targeted treatment options and improve patient outcomes.

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Day 1 and day 2 in kokomo started with the same amount of water vapor in the air parcels over kokomo. it rained at the end of day 1 it did not rain at the end of day 2. what could have happened to the air in the parcel to cause rainfall on day 1?

Answers

The air parcels over Kokomo on day 1 and day 2 likely started with an equal amount of water vapor in the atmosphere.

However, the air parcel on day 1 likely had a different set of conditions than the air parcel on day 2. On day 1, the air parcel may have been more unstable, meaning the atmosphere was warmer near the ground and cooler higher up. This difference in temperature causes air to rise, creating an updraft.

As the air rises, it cools, causing the water vapor to condense and form clouds. As the clouds become thicker and more numerous, they can become heavy with water vapor and eventually rain. The lack of rainfall on day 2 could have been due to a lack of instability in the air parcel.

This could be due to a more even distribution of temperature, meaning warmer air higher in the atmosphere and cooler air closer to the ground, which would not create an updraft for the formation of clouds and rain.

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Suggest a reason for placing a grid at the bottom of the composting unit rather than a base plate?​

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The reason for placing a grid at the bottom of the composting unit instead of a base plate is to allow for better drainage and aeration.

Composting requires an adequate supply of air, water, and microorganisms to break down the organic matter. By placing a grid at the bottom, excess water can drain out of the compost, preventing waterlogging and promoting the growth of aerobic bacteria that require oxygen to function.

The grid also allows air to flow freely through the compost, providing the necessary oxygen for aerobic respiration. On the other hand, a base plate can trap moisture and reduce the flow of air, leading to anaerobic conditions that can slow down the decomposition process and produce unpleasant odors.

Therefore, using a grid at the bottom of the composting unit is a more effective method for ensuring optimal conditions for composting.

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Would samples that were digested with ecori have a different pattern than the same sample digested with smal?

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Yes, samples that were digested with EcoRI would have a different pattern than the same sample digested with SmaI.

This is because EcoRI and SmaI are two different restriction endonucleases, which are enzymes that have the ability to cut DNA at specific sites. The DNA substrate of EcoRI has a recognition sequence of GAATTC, meaning that the enzyme will recognize and cleave the phosphodiester bond located between the G and A bases.

On the other hand, SmaI's recognition sequence is CCCGGG, meaning that the enzyme will recognize and cleave the phosphodiester bond located between the C and G bases. Therefore, EcoRI and SmaI will both recognize different sequences in the same sample and consequently cut the DNA in different places, resulting in a different pattern after digestion.

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Answer this question

Answers

Based on Table 1, the severe PKU condition is associated with a substitution mutation of Isoleucine to Threonine in the PAH enzyme.

What is the disease PKU?

PKU is brought on by mutations in the gene that produces the enzyme  PAH or phenylalanine hydroxylase. The body requires this enzyme to convert the amino acid phenylalanine into other compounds.

The amino acid phenylalanine, which is harmful to the brain system, accumulates as a result of PKU. PKU might result in intellectual problems if left untreated.

Severe PKU condition is associated with a substitution mutation of Isoleucine to Threonine in the PAH enzyme. This mutation results in less than 10% of the wild-type enzyme activity and leads to a phenylalanine blood concentration of over 1200-1800 UM and severe intellectual disability.

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a very odd life form is found in a cave in kentucky. compared to all other biological systems, this critter has a different number of amino acids and a different number of nucleotides. in research to determine the number of nucleotides necessary to specify a single amino acid, proflavin was used to induce frameshift mutations. when one, two or three nucleotides were added to a nucleotide sequence, the resultant polypeptide chains were all similar to the original polypeptide chain. what does this suggest about the number of nucleotides that specify a single amino acid?

Answers

The fact that adding one, two, or three nucleotides to the nucleotide sequence did not alter the polypeptide chain's similarity to the original polypeptide chain suggests that the genetic code is degenerate or redundant.

In other words, different nucleotide sequences can specify the same amino acid, which is why a frameshift mutation caused by proflavin did not change the resulting polypeptide chain's similarity to the original.

Therefore, this suggests that the number of nucleotides necessary to specify a single amino acid is more than one, and likely to be three, which is the standard codon size in the genetic code.

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At the end of _____ and cytokinesis, haploid cells contain chromosomes that each consist of two sister chromatids. at the end of _____ and cytokinesis, haploid cells contain chromosomes that each consist of two sister chromatids. interphase metaphase ii telophase i telophase ii telophase submit

Answers

At the end of meiosis II and cytokinesis, haploid cells contain chromosomes that each consist of two sister chromatids. Meiosis II is the second division of meiosis and it follows meiosis I. During meiosis II, the two sister chromatids of each chromosome are separated from each other, resulting in the production of haploid daughter cells.

The process of meiosis involves two rounds of cell division, each consisting of different stages. In meiosis I, the homologous chromosomes pair up and exchange genetic material in a process called crossing over. The chromosomes are then separated, resulting in the production of two haploid daughter cells that each contain a mix of genetic material from both parents.

In meiosis II, the sister chromatids of each chromosome are separated from each other. This results in the production of four haploid daughter cells, each containing a single set of chromosomes that each consist of two sister chromatids. These haploid daughter cells can then go on to participate in sexual reproduction, combining with another haploid cell to form a new, genetically diverse individual.

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Final answer:

At the end of Telophase I and cytokinesis, haploid cells contain chromosomes that each consist of two sister chromatids. At the end of Telophase II and cytokinesis, haploid cells contain chromosomes that each exist independently.

Explanation:

The question is asking about the specific stages in meiosis where haploid cells contain chromosomes that each consist of two sister chromatids. At the end of Telophase I and cytokinesis, haploid cells contain chromosomes that each consist of two sister chromatids. This happens because during Telophase I, chromosome pairs reach the poles of the cell, and the cytoplasm divides. Each resulting haploid cell, therefore, has the half number of chromosomes, and each chromosome consists of two sister chromatids. On the other hand, at the end of Telophase II and cytokinesis, haploid cells contain chromosomes that each exist independently, not as sister chromatids, because during Anaphase II, the sister chromatids separate.

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What do these two changes have in common?

rust forming on a metal gate
an old sandwich rotting in a trashcan

A. Both are physical changes

B. Both are caused by heating

C. Both are chemical changes

D. Both are caused by cooling

Answers

Answer:

Explanation:

Neither of the changes are caused by heating or cooling, so options B and D can be eliminated.

Rust forming on a metal gate is a chemical change, while an old sandwich rotting in a trashcan is also a chemical change.

Therefore, the correct answer is C. Both rust forming on a metal gate and an old sandwich rotting in a trashcan are chemical changes.

A single species that has evolved into several different forms that live in different ways has undergone.

Answers

Answer:

Adaptive radiation.

Explanation:

A single species that has evolved into several different forms that live in different ways has undergone adaptive radiation.

Which two viral characteristics provide evidence to support the



argument that viruses are more similar to living components than to



nonliving components of an ecosystem?




A. Viruses contain genetic material.




B. Viruses are made of cells.




c. Viruses use and store energy to grow.




D. Viruses reproduce independently.




E. Viruses evolve through mutation and natural selection

Answers

Viruses share several characteristics with living organisms, such as containing genetic material, being made of cells, using and storing energy to grow, reproducing independently, and evolving through mutation and natural selection.

Here, all the options are correct.

This evidence reveals that viruses are capable of many of the same functions as living organisms. For example, viruses use and store energy to power their growth and evolution, just like living organisms. They also possess genetic material and can reproduce independently, which is a trait shared by all living organisms.

Additionally, viruses can mutate and evolve, which is a necessary component for the continued survival of any species. These evidence-based characteristics demonstrate that viruses are more similar to living components than to nonliving components of an ecosystem.

Therefore, all the options are correct.

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Where would you expect to find a convection current that occurs between land and water?

Answers

Answer:The Earth's mantle

Explanation:

Which structure serves to increase the speed with which a signal travels within a neuron?.

Answers

The structure that serves to increase the speed with which a signal travels within a neuron is called the myelin sheath.

The myelin sheath is a layer of insulation that surrounds the axon of a neuron and helps to speed up the transmission of electrical signals (or action potentials) along the axon.

The myelin sheath is made up of specialized cells called glial cells (oligodendrocytes in the central nervous system and Schwann cells in the peripheral nervous system) that wrap themselves around the axon, leaving small gaps or nodes of Ranvier between them.

These nodes allow the electrical signal to jump quickly from one node to the next, resulting in faster conduction of the signal.

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Figure 6 shows the inheritance of flower colour in two species of plant.
In pea plants and in snapdragon plants, flower colour is controlled by one pair of alleles.
In figure 6 the parental generation plants are hom0zygous for flower colour.
In heterozygous pea plants, the allele for red flower colour is dominant
In heterozygous snapdragon plants, the alleles for flower colour are both expressed.
What is the genotype of the red-flowered pea plants in the F1 generation?
What is the genotype of a white-flowered snapdragon plant?

Answers

In the F1 generation, the red-flowered pea plants have a genotype of Rr, where R represents the dominant allele for red flower color, and r represents the recessive allele for white flower color.

The genotype of a white-flowered snapdragon plant is ww, where w represents the recessive allele for white flower color.

Pea Plants:

The red-flowered pea plants have a genotype of Rr, where R represents the dominant allele for red flower color, and r represents the recessive allele for white flower color.

This means that the red-flowered pea plants have inherited one dominant allele (R) from one parent and one recessive allele (r) from the other parent. The dominant allele (R) determines the red flower color, while the recessive allele (r) does not show its characteristic in the presence of the dominant allele.

Snapdragon Plants:

The white-flowered snapdragon plant has a genotype of ww, where w represents the recessive allele for white flower color. In this case, the snapdragon plant has inherited two recessive alleles (w) from both parents.

Since the recessive allele (w) is present in both copies, the white flower color is expressed in the snapdragon plant.

It's important to note that the information provided only describes the genotypes of the red-flowered pea plants (Rr) and the white-flowered snapdragon plant (ww) in the F1 generation.

It does not provide any information about the phenotypes or genotypes of the other plants in the F1 generation or any subsequent generations.

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This term means the return of substances into the blood stream from the filtrate.

Answers

This term means the return of substances into the blood stream from the filtrate. It is called A) reabsorption.

The process of urine formation in the kidneys involves three main steps: filtration, reabsorption, and secretion. The filtrate, which includes water, salts, and small molecules, moves through the nephron, and during the process of reabsorption, essential substances are returned to the bloodstream while waste products continue to be eliminated.

Reabsorption is the process by which substances in the filtrate that are necessary for the body are returned to the bloodstream. This process occurs in the renal tubules and collecting ducts of the nephron, and involves the transport of various molecules, such as glucose, amino acids, ions, and water, from the filtrate back into the blood.

Reabsorption is a crucial step in maintaining the body's fluid balance and electrolyte concentrations, as well as ensuring that essential substances are not lost in the urine.

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Complete question :

This term means the return of substances into the blood stream from the filtrate.

A) reabsorption

B) filtration

C) secretion

D) excretion

E) none of these choices

which of the following is not a growth factor for harmful bacteria a)water b)oxygen c)protein d)minerals

Answers

All of the options are growth factors for bacteria.

What are bacterial growth factors?

The growth factors of bacteria generally include:

Water: Bacteria require water to survive and grow, as it is necessary for various metabolic processes.

Oxygen: Some bacteria require oxygen to grow (aerobic bacteria), while others can grow without it (anaerobic bacteria).

Protein: Bacteria require protein to build and maintain their cellular structures and perform various metabolic functions.

Minerals: Bacteria require various minerals, such as iron, magnesium, and potassium, to carry out metabolic processes.

In other words, all of the options listed can be considered growth factors for harmful bacteria, depending on the specific type of bacteria and the conditions under which they are growing.

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Map skills worksheet

Answers

Answer: where is the question ?

Explanation:

which of the options is not a general requirement for complex multicellular life? cells must communicate with one another. cells must participate in a network of genetic interactions that regulate cell division. cells must stick together. all of these choices are correct. individual cells must retain a full range of functions, including reproduction.

Answers

The option that is not a general requirement for complex multicellular life is (e)."individual cells must retain a full range of functions, including reproduction." is correct option.

In fact, in complex multicellular organisms, cells specialize and differentiate into various types with specific functions, and reproduction is often performed by specialized cells or structures. The other three options, namely, cells must communicate with one another, cells must participate in a network of genetic interactions that regulate cell division, and cells must stick together are all essential requirements for complex multicellular life.

Therefore, the correct option is (e).

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Hidaya and saburi
mother’s genotype:
father’s genotype:
offspring genotype %: offspring phenotype %:

Answers

Hidaya and Saburi’s genotype refers to the genetic makeup of the parents. Genotype is the set of genes that an individual carries for a particular trait. In the case of Hidaya and Saburi, their genotype would determine the traits that their offspring may inherit.

The offspring genotype percentage is the probability of the offspring inheriting a particular set of genes from their parents. This percentage is determined by the laws of inheritance and the parents’ genotype. The offspring phenotype percentage is the probability of the offspring expressing a particular physical trait based on their genotype.

For example, if Hidaya and Saburi both have the genotype of Aa, the offspring genotype percentage would be 25% AA, 50% Aa, and 25% aa. The offspring phenotype percentage would depend on the specific traits that the A and a alleles code for. In general, if the dominant allele (A) codes for a trait such as brown eyes, and the recessive allele (a) codes for blue eyes, then 75% of the offspring would have brown eyes, and 25% would have blue eyes.

It’s important to note that genetics is not always straightforward, and there may be variations and exceptions. However, understanding the basics of genotype and phenotype percentages can help predict the traits that offspring may inherit from their parents.

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complete question is:

Show the cross between Hidaya and Saburi:

Mother’s genotype: ____________ Father’s genotype: ____________ Genotype %: _________________ ____________________________ Phenotype %:________________

what theory states - organs that are similar in origin but not necessarily in function. (8 letter word)​

Answers

Answer:

hi

Explanation:

Homologous organs are organs that evolve from the same ancestor. They have the same organ structure but different organ functions. Eg, the Forelimbs of humans, whales, cats, and dogs. Homologous organs are a result of divergent evolution.

HELP!!!!!!!!!!!!!!! Please quick

Answers

Another organism in a marine ecosystem is a producer. Option C is correct.

In a marine ecosystem, the sun’s energy is trapped by producers to synthesize food through photosynthesis. The most abundant and widespread producer in a marine ecosystem is the phytoplankton. Apart from this seaweeds and seagrasses also form the producers in the marine ecosystem.

Consumers are heterotrophic and they depend on producers such as phytoplanktons for their energy needs. In a marine ecosystem, zooplanktons are herbivores. They are at the second level in the trophic level and they consume phytoplankton. Zooplankton are further consumed by carnivores like fish and jellyfish. After this comes the second-level and third-level carnivores which include large fish, squid, and octopus.

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What happens if a living thing dies

Answers

Answer:

As a living organism it would either decay and rot away due to the biological material it has—fungus would take over and have the living thing mold and rot away.

Why does an action potential travel in one direction down an axon?.

Answers

An action potential is an electrical signal that travels down the axon of a neuron. One of the key features of an action potential is that it travels in one direction only, from the cell body of the neuron to its axon terminal.

This directional flow of the action potential is due to the refractory period of the neuron. After an action potential is fired, the neuron enters a brief refractory period during which it is unable to generate another action potential in the same direction.

This refractory period ensures that the action potential moves only in one direction, preventing the signal from moving backward and interfering with other signals in the nervous system.

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When did the first homo sapiens arrive in the americas?.

Answers

Answer:

18,000 years ago

Explanation:

Most archaeologists accept that humans were in the Americas 18,000 years ago

Cellular respiration occurs in the muscle cells in a horse's thigh. Glucose is broken down producing carbon dioxide and water. What is the result of this cellular activity for the horse?​

Answers

The result of cellular respiration in the muscle cells of a horse's thigh is the production of ATP (adenosine triphosphate) that can be used for energy.

During cellular respiration, glucose (C₆H₁₂O₆) is oxidized and broken down into carbon dioxide (CO₂), water (H₂O), and energy in the form of ATP. In the presence of oxygen, this process is known as aerobic respiration, which is the primary means of producing ATP in eukaryotic cells.

The carbon dioxide produced in this process is carried to the lungs where it is exhaled, while the water produced can be used to help maintain the body's hydration.

The ATP produced is then used by the horse's muscle cells to carry out various functions such as movement, maintenance of body temperature, and other metabolic processes. Therefore, cellular respiration plays a vital role in providing the horse with the energy it needs to carry out its daily activities.

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Which is a consequence of global warming?cooling oceansgrowing glaciersless frequent hurricanesrising sea levels

Answers

The consequence of global warming is rising sea levels.

As the Earth's temperature increases due to the accumulation of greenhouse gases in the atmosphere, the melting of ice sheets and glaciers causes the sea levels to rise.

This rise in sea levels can lead to increased flooding, erosion, and loss of habitat for coastal ecosystems and wildlife. Additionally, as sea levels rise, saltwater intrusion can occur in coastal aquifers, affecting freshwater resources.

The increase in temperature can also cause changes in ocean currents and weather patterns, leading to more frequent and intense hurricanes, typhoons, and cyclones. It is crucial to reduce greenhouse gas emissions and implement measures to adapt to the impacts of global warming to prevent further damage to the Earth's ecosystems and the well-being of its inhabitants.

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big bend national park in west texas is mostly desert, where rainfall averages only about 25 centimeters per year. yet, it is not uncommon when hiking in this extremely arid zone to encounter mosses and ferns in certain areas. what adaptive characteristics of both mosses and ferns makes it possible that they can survive for many generations in dry deserts when water becomes infrequently available?

Answers

Based on these additional observations the “flower of stone" are inferred as it is a fern and the cone-like structures are sori, the correct option is B.

The presence of cone-like structures emitting spores of two different sizes is a characteristic feature of ferns, and these structures are called sori. Therefore, it can be inferred that the "flower of stone" is a fern.

Additionally, the fact that the plant does not produce seeds but reproduces through spores further supports the inference that it is a fern. The Y-shaped structure of the roots branching only at the growing tip is a characteristic feature of ferns as well, the correct option is B.

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The complete question is:

Big Bend National Park in Texas is mostly Chihuahuan desert, where rainfall averages about 25 centimeters per year. Yet, it is not uncommon when hiking in this extremely arid zone to encounter mosses and ferns. One such plant is called the "flower of stone." It is not a flowering plant, nor does it produce seeds. Under arid conditions, its leaflike structures curl up. However, when it rains, it unfurls its leaves, which form a bright green rosette on the desert floor. Consequently, it is sometimes called the "resurrection plant." At first glance, it could be a fern, a true moss, or a spike mosS Upon closer inspection of the leaves of "lower of stone," one can observe tiny, cone-like structures. Each cone-like structure emits spores of two different sizes. Further investigation also reveals that the roots of the "flower of stone" branch only at the growing tip of the root, forming a Y-shaped structure. Based on these additional observations, which of the following can be properly inferred about the "flower of stone"?

A) It is heterosporous and has separate male and female gametophytes.

B) It is a fern and the cone-like structures are sori.

C) It is heterosporous, it is a fern, and the cone-like structures are sori.

D) It is heterosporous, it is a lycophyte, and it has separate male and female gametophytes.

Other Questions
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