Which idea of evolution is supported by the existence of vestigial structures?

Answers

Answer 1

The existence of vestigial structures supports the idea of evolution by natural selection.

Anatomical traits known as vestiges are those that, as a result of evolution, have lost their original purpose over time. These structures are frequently the remains of characteristics that were once beneficial to an organism's progenitors but are no longer required for the organism to survive or reproduce in its current environment.

Vestigial structures are indicators of the evolutionary history of life on Earth and are found in all living things. It implies that organisms have changed over time and that certain once-useful structures have been rendered useless as a result of adaptations to new surroundings and natural selection.

According to the theory of evolution by natural selection, organisms with beneficial qualities have a higher chance of surviving and reproducing, passing those traits on to subsequent generations.

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dna size is identified by the number of base pairs (bp). a 100 bp dna fragment and a 200 bp dna fragment are separated by gel electrophoresis. which band should be farther from the wells?

Answers

Here in this question, a 100 bp DNA fragment and a 200 bp DNA fragment are separated by gel electrophoresis. The size of DNA fragments can be identified by the number of base pairs (bp). A 200 bp DNA fragment will travel farther from the well than the 100 bp DNA fragment.

What is gel electrophoresis?

Gel electrophoresis is a laboratory method used for the separation of DNA fragments based on their size. Gel electrophoresis works by creating an electric field that drives negatively charged DNA fragments through a gel matrix. Smaller fragments move faster and travel farther than larger fragments.The DNA fragments are placed into wells at one end of the gel and an electric current is applied. The negatively charged DNA fragments move towards the positive electrode. The agarose gel matrix slows down the migration of the fragments with the larger sizes.

This results in the separation of DNA fragments by size.In the given problem, the 200 bp DNA fragment should be farther from the wells as compared to the 100 bp DNA fragment. The size of the DNA fragment is directly proportional to the distance it travels from the well. Therefore, a 200 bp DNA fragment will travel farther from the well than the 100 bp DNA fragment.

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what cellular machinery is involved in translation? select the two answers that are correct. mitochondria mrna nucleus ribosome cell membrane

Answers

The cellular machinery that is involved in translation includes the ribosome and mRNA. The correct option is b and d.

What is Translation?

Translation is the mechanism by which genetic information contained in an mRNA molecule is decoded by the ribosome to produce a protein chain. In prokaryotes, transcription and translation occur in the cytoplasm simultaneously since the mRNA produced in transcription is promptly used as a template for protein synthesis.

Selecting the Right Answers

Two of the five options given are right answers for this question, which asks about the cellular machinery that is involved in translation. The two right answers are ribosome and mRNA.RibosomesRibosomes are RNA-protein complexes that are in charge of producing proteins. Ribosomes consist of two subunits that are distinct in their composition and are assembled in the nucleolus. The ribosome subunits are transported into the cytoplasm, where they engage with mRNA to initiate protein synthesis. The ribosome's function is to read the mRNA transcript in the 5' to 3' direction and then create a complementary polypeptide chain.

Messenger RNA (mRNA)Messenger RNA is a form of RNA that is transcribed from DNA in the nucleus and functions as a template for protein synthesis. RNA polymerase reads the DNA template and synthesizes a complimentary mRNA transcript. Once the mRNA is transcribed, it is processed and transported to the cytoplasm, where it binds to the ribosome to begin translation. mRNA serves as a blueprint for protein synthesis and determines the sequence of amino acids that will make up the polypeptide chain.

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How were Darwin's and Lamarck’s theories different?



A. Darwin said it was traits that organisms were born with that were passed on while Lamarck said it was traits the organisms acquired during their lifetime.



B. Lamarck said it was traits that organisms were born with that were passed on while Darwin said it was traits the organisms acquired during their lifetime.




C. Lamarck and Darwin’s theories were the same, but they did not agree on the time it would take for an organism to evolve.

Answers

A. Darwin said it was traits that organisms were born with that were passed on while Lamarck said it was traits the organisms acquired during their lifetime.

Answer: Their theories are different because Lamarck thought that organisms changed out of need and after a change in the environment and Darwin thought organisms changed by chance when they were born and before there was a change in the environment.

Explanation:

which body part does a flatworm first use to catch its prey? responses digestive enzymes digestive enzymes mouth mouth gastrovascular cavity gastrovascular cavity pharynx

Answers

Pharynx. Hope this helped you!

Answer:

Your answer is: pharynx

Explanation:

properties such as cell shape and organization and cellular movement depend upon the direct action of which type of cellular component?

Answers

Answer:

enzymes

Explanation:

I took the test

The properties of cell shape, organization and movement depend upon the direct action of the cytoskeleton.

The cytoskeleton is a network of proteins and filaments that provide structure and support to the cell and regulate its movements.

It is composed of microfilaments, intermediate filaments, and microtubules.

The microfilaments are made up of actin and are involved in cell shape changes and muscle contraction. Intermediate filaments provide structural support and stability to the cell.

The microtubules are made up of tubulin and provide a scaffold for the cytoskeleton, allowing for the movement of organelles and the formation of cilia and flagella. They also help in the assembly and disassembly of the cytoskeleton and in cell division.

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at low population densities, the flocking behavior of some species of birds is disrupted to the extent that the population growth rate is lower at very low densities than it is at somewhat higher densities. this is an example of

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Some bird species' flocking behavior is so disrupted that at very low densities is an example of Option D: an Allee effect.

An Allee effect is the term used to describe the behaviour you mentioned. It alludes to a relationship that is favourable between population density and personal fitness. Several bird species' flocking habits become disrupted at low population densities, and as a result, the population growth rate is slower at very low densities than it is at slightly higher densities.

This may be as a result of a number of factors, including a challenge in locating mates, an increase in the risk of predators, and a decrease in cooperative defense against predators.

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Complete question is:

At low population densities, the flocking behavior of some species of birds is disrupted to the extent that the population growth rate is lower at very low densities than it is at somewhat higher densities. this is an example of

a.) an Allee effect b.) genetic drift c.) environmental stochasticity d.) dampened oscillations

hich gas began to increase in the atmosphere as a result of photosynthesis by autotrophic prokaryotes approximately 2.7 billion years ago?

Answers

Oxygen began to increase in the atmosphere as a result of photosynthesis by autotrophic prokaryotes approximately 2.7 billion years ago. This process, called oxygenic photosynthesis, uses energy from sunlight to convert carbon dioxide and water into organic matter (carbohydrates) and oxygen gas. This new source of oxygen led to an increase in atmospheric oxygen, which had previously been low, and allowed for the evolution of more complex forms of life.

Oxygenic photosynthesis is carried out by autotrophic prokaryotes, or “oxygenic phototrophs”, which are organisms that use energy from sunlight to convert inorganic molecules into organic molecules. These phototrophs use light to break down carbon dioxide molecules, and form simple organic molecules, such as glucose. The byproducts of this process are organic molecules and oxygen gas. As a result of this reaction, the amount of oxygen in the atmosphere began to increase.

This increase in oxygen allowed for the evolution of more complex life forms. Before the rise of oxygenic photosynthesis, the atmosphere was largely composed of carbon dioxide and nitrogen, which prevented the evolution of complex organisms. With the rise of oxygen, more complex organisms could thrive, as oxygen allowed for respiration, which is the process of breaking down food molecules to create energy. As a result, the diversity of organisms increased and eventually led to the evolution of multicellular organisms.

In conclusion, oxygen began to increase in the atmosphere approximately 2.7 billion years ago as a result of oxygenic photosynthesis carried out by autotrophic prokaryotes. This allowed for the evolution of more complex forms of life and the development of multicellular organisms.

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what are at least three different types of asexual reproduction and give an example of an organism that reproduces in that way

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Answer:

Three types of asexual reproduction are binary fission, budding, and fragmentation. Prokaryotes reproduce asexually, through binary fission. Jellyfish reproduce asexually through budding. Fungi reproduce asexually through fragmentation.

Explanation:

:)

which of the statements describes a polygenic trait? a trait that is influenced by both alleles of a single gene a trait that is influenced by a single, dominant allele of a single gene a trait that is influenced entirely by environmental factors a trait that is influenced by more than one gene

Answers

A trait influenced by two or more genes is referred to as a polygenic trait. Examples of such traits include height and skin tone.

Polygenic traits do not inherit according to Mendelian principles since numerous genes are involved. Multifactorial qualities, which include many polygenic features, also have environmental influences.

Many of the most significant health issues of our time, including diabetes, cancer, and heart disease, have a genetic component that results from the interaction of several genes. Thus, polygenic, or having numerous genes. As researchers have delved deeper into these disorders, they've come to the realisation that there is a huge possibility for improving human health by using the methods we already have for forecasting the dangers associated with polygenic features.

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Which statement best explains why these freshwater Mesosaurus fossils are found today in some rock layers in both South America and Africa?

Answers

Answer:

The continents were once connected as a single land mass

Explanation:

the diameter of bronchioles varies under the control of neurons, which cause the diameter to .

Answers

The diameter of bronchioles can vary due to the stimulation of neurons, which can cause bronchioles to either constrict or dilate.

Bronchoconstriction is the tightening of the airways and occurs when the sympathetic nervous system is activated. This causes a narrowing of the airways and a decrease in the diameter of the bronchioles. On the other hand, bronchodilation is the widening of the airways and occurs when the parasympathetic nervous system is activated. This causes an increase in the diameter of the bronchioles.
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why are some microbes, including streptococcus spp., unable to perform aerobic respiration, even in the presence of oxygen?

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Streptococcus spp. are unable to perform aerobic respiration, even in the presence of oxygen, because they lack the metabolic pathways and enzymes necessary for aerobic respiration.

Aerobic respiration is a metabolic process that involves taking in oxygen from the environment and converting it into energy.

This process is powered by a series of chemical reactions that rely on enzymes, which break down the oxygen molecules into simpler compounds and release energy.

However, Streptococcus spp. are unable to do this because they lack the enzymes needed for aerobic respiration. This means that even though oxygen is present in their environment, they are unable to utilize it in order to generate energy.

Aerobic respiration is an important process for many microorganisms, as it helps them obtain energy and thrive in their environment. In the absence of oxygen, microorganisms must rely on anaerobic respiration, which is a less efficient form of respiration that does not use oxygen.

Therefore, Streptococcus spp. are limited in their ability to produce energy and survive in their environment when oxygen is present.

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when two kinds of organisms live together for prolonged periods in close physical contact that is mutually beneficial, this relationship is referred to as symbiosis.

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Answer: When two kinds of organisms live together for prolonged periods in close physical contact that is mutually beneficial, this relationship is referred to as symbiosis. Symbiosis is a term used to describe the connection between two or more different species that live together. The connection can be advantageous, harmful, or non-consequential, and it can be short-term or long-term.

The term symbiosis is used to describe a wide range of interactions between different species, from mutualistic to parasitic. Symbiotic relationships exist between a range of different species, including animals, plants, fungi, and bacteria.

Symbiosis is a type of interaction between two species that live together in a close relationship. The association can be beneficial or harmful to one or both organisms, or it can be neutral, with neither partner affected by the relationship. Symbiotic relationships are divided into three categories: mutualism, commensalism, and parasitism.




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Mass of crucible = l0g
Mass of crucible and soil before heating = 28g
Mass of crucible and soil after heating = 18g.
Determine the percentage of water in the given soil sample.

Thank you!​

Answers

Answer:

Mass of soil = (mass of crucible and soil after heating) - (mass of crucible) = 18g - 10g = 8g

Mass of water in soil = (mass of crucible and soil before heating) - (mass of crucible and soil after heating) = 28g - 18g = 10g

Percentage of water in soil = (mass of water in soil / mass of soil) x 100%

= (10g / 8g) x 100%

= 125%

Therefore, the percentage of water in the given soil sample is 125%. However, it is not possible to have more than 100% of a substance in a mixture. This result may indicate that there was an error in the measurements or calculations.

Answer:

Explanation:

To determine the percentage of water in the soil sample, we need to find the mass of water lost during heating.


Mass of water lost = Mass of crucible and soil before heating - Mass of crucible and soil after heating

= 28g - 18g

= 10g


Now, we can calculate the percentage of water in the soil sample.


Percentage of water = (Mass of water lost / Mass of crucible and soil before heating) * 100

= (10g / 28g) * 100

= 35.71%


Therefore, the percentage of water in the given soil sample is approximately 35.71%.


hope it helps!

a particular cell has half as much dna as some other cells in a mitotically active tissue. the cell in question is most likely in which stage?

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A cell with half as much DNA as some other cells in a mitotically active tissue is most likely in the interphase stage. During this stage, the cell prepares for mitosis by replicating its DNA and other activities.

The cell in question is most likely in the interphase stage. Interphase is the period between two successive mitotic phases in the cell cycle. During interphase, the cell is in growth and replication, which involves DNA synthesis. DNA replication is the process of copying the cell's existing DNA, resulting in two identical sets of chromosomes. Thus, it makes sense that the cell in question would have half as much DNA as some other cells in a mitotically active tissue, as it has only recently undergone replication.
In interphase, the cell's nuclear and cytoplasmic activities are increased as it prepares for mitosis. During this stage, the chromosomes replicate, the centrosomes divide and migrate, and microtubules begin to form a spindle apparatus. Additionally, the cell grows in size, and organelles and cell wall components are produced.  

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estradiol is a type of estrogen whose hormone effects promote female sex characteristics. its structure consists of various carbon-hydrogen rings and it is a lipid, but not a prostaglandin. knowing the structure, how would you expect this hormone to cause a response in a target cell?

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Estradiol is a type of estrogen whose hormone effects promote female sex characteristics. its structure consists of various carbon-hydrogen rings and it is a lipid, but not a prostaglandin. knowing the structure, this hormone to cause a response in a target cell by binding to its receptor on the surface or within the cell.

The binding of receptor leads to the activation of several downstream signaling pathways that promote estrogen-dependent gene expression. The estradiol hormone is a type of estrogen that is lipid-based and has several carbon-hydrogen rings. This hormone is expected to cause a response in the target cell by binding to the estrogen receptor present in the target cell's cytoplasm.

The steroid hormone receptor family includes the estrogen receptor, which is located in the nucleus or cytoplasm and is activated by ligand binding. In target cells, these receptors can interact with the chromatin DNA and other transcriptional regulators, allowing for the activation or inhibition of gene transcription. It is this interaction that can trigger the transcriptional activity of the target gene, leading to the creation of a response in the target cell.

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from the list of organ systems, select the ones that play a major role in homeostasis. (check all that apply.)

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The nervous, endocrine, respiratory, cardiovascular, renal, digestive, and integumentary systems all play a major role in maintaining homeostasis.

Homeostasis refers to the body's ability to maintain a stable internal environment despite external changes. Several organ systems work together to maintain homeostasis.

The following are the organ systems that play a major role in homeostasis:

Nervous System: The nervous system is responsible for sending and receiving signals from various parts of the body. It plays a significant role in maintaining homeostasis by detecting changes in the internal and external environment and coordinating appropriate responses to restore balance.Endocrine System: The endocrine system is responsible for producing and releasing hormones into the bloodstream. Hormones regulate various physiological processes, including metabolism, growth and development, and the body's response to stress. The endocrine system works closely with the nervous system to maintain homeostasis.Respiratory System: The respiratory system is responsible for exchanging gases between the body and the environment. It helps to maintain homeostasis by regulating the levels of oxygen and carbon dioxide in the blood.Cardiovascular System: The cardiovascular system is responsible for transporting blood and nutrients throughout the body. It plays a crucial role in maintaining homeostasis by regulating blood pressure, heart rate, and blood flow to various organs.Renal System: The renal system, also known as the urinary system, is responsible for removing waste products from the body and regulating the levels of water and electrolytes in the blood. It helps to maintain homeostasis by ensuring that the body's internal environment remains within a narrow range.Digestive System: The digestive system is responsible for breaking down food and absorbing nutrients. It plays a crucial role in maintaining homeostasis by regulating the levels of nutrients and electrolytes in the blood.Integumentary System: The integumentary system includes the skin, hair, and nails. It helps to maintain homeostasis by regulating body temperature and protecting the body from external threats.

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a pcr set up with a dna template not known to have the phosphatase gene is a [ select ] and you expect to see

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A PCR set up with a DNA template not known to have the phosphatase gene is a positive control and you expect to see amplification of the target DNA fragment.

What is PCR?

PCR is a technique for amplifying DNA sequences in a sample, allowing for the production of millions of copies of the DNA sequence. The PCR method is based on the ability of DNA polymerase, a thermostable enzyme, to copy DNA strands. The PCR technique is widely used in genetics, molecular biology, and other fields.

What is a positive control in PCR?

A positive control is an experiment performed to show that the test will produce a valid result under normal circumstances. It is a control in which a known quantity of an analyte is added to a sample to see if the assay can detect it. A positive control is often used in experiments to show that the experiment is functioning properly and that the samples are generating reliable results.In PCR, a positive control is a control that includes the target DNA template in the reaction. A positive control helps to confirm that the PCR reagents are working properly and that the amplification will take place as predicted. The target DNA fragment should be amplified in the positive control, indicating that the PCR reaction has been successful.

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Why can you say that all calico cats are females?

Answers

Answer: Hope this helps also love this question

im cat person lol

Explanation:

It's a fact that almost all calico cats are female because of the unique chromosomal makeup that determines the color variations in their coats.

The sex chromosomes (X and Y) determine whether a cat will be male or female. Each cat has a pair of sex chromosomes with the possible combinations of XX (female) and XY (male). The X chromosome also carries the coding gene for the black and orange colors in a calico's coat.

Female calico cats have two X chromosomes, and therefore have two chromosomes with color code. Only if the cat gets one orange-coded X and one black-coded X, will she be calico, expressing both black and orange coloration.

We can say that all calico cats are females because the majority of calico cats are female.

It is not accurate to say that all calico cats are females. However, the majority of calico cats are female. The reason behind it is that the calico coloration is linked to a specific gene on the X chromosome. Since female cats have two X chromosomes, they can inherit two copies of the gene and thus have a higher chance of expressing the calico pattern.

On the other hand, male cats have only one X chromosome, and the calico gene is typically suppressed by the dominant non-calico gene on the other chromosome. However, there are rare cases where male calico cats can exist, but they are extremely rare. These males are usually sterile and have an additional genetic abnormality. Therefore, it is not appropriate to generalize that all calico cats are females, but most of them are.

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some damaged fruits release a chemical called ethylene, which attracts fruit flies. as the fruit flies eat the fruit, they cause more damage, resulting in more ethylene release, attracting more fruit flies and so on. this is an example of

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Some damaged fruits release a chemical called ethylene, which attracts fruit flies. as the fruit flies eat the fruit, they cause more damage, resulting in more ethylene release, attracting more fruit flies and so on. this is an example of a positive feedback loop.

Ethylene gas has a major role in the ripening and ripening process of climacteric fruits such as apples, bananas and mangoes. The presence of ethylene makes the previously green-skinned fruit turn yellow, release its aroma, and soften the flesh until it becomes overripe and spoiled. Ethylene will attract fruit flies to come closer.

In a positive feedback loop, a change in a system triggers a chain of events that further amplifies the original change. In this example, the release of ethylene attracts fruit flies which causes more damage, resulting in more ethylene release, which attracts even more fruit flies and so on.

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True/False: viruses, liposomes, and direct injections are techniques used to introduce a normal into an individual who has a certain disease or genetic condition.

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The given statement "Viruses, liposomes, and direct injections are techniques used to introduce normal genes into an individual who has a certain disease or genetic condition." is True. This process is known as gene therapy.

Gene therapy is a medical technique that is used to correct or replace faulty genes in order to treat or prevent disease. In some cases, a normal gene may be introduced into an individual's body to replace a missing or non-functional gene. In other cases, a gene may be corrected or repaired to prevent the development of a disease.

Viruses are one of the most common vehicles used to deliver genes to the body's cells. Specifically, scientists use viruses that have been altered so that they are no longer harmful to introduce normal genes into the body. These viruses are often used because they are very efficient at entering cells and delivering genetic material.

Liposomes are another technique used to introduce normal genes into an individual's body. Liposomes are tiny spheres made up of a fatty substance that can encase genetic material. These spheres are then introduced into the body, where they can fuse with cell membranes and deliver the genetic material.

Direct injection is also a technique that is used in gene therapy. In this technique, a normal gene is injected directly into the tissue where it is needed. For example, if a patient has a genetic disease that affects their liver, a normal gene may be injected directly into the liver tissue.

Overall, gene therapy is a promising field of medicine that has the potential to treat or even cure a wide range of genetic diseases. However, there is still much research to be done in order to fully understand the safety and efficacy of these techniques.

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1. penicillin is made by a fungus and used to kill bacterial cells. therefore, penicillin is an example of a(n)

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Penicillin is made by a fungus and used to kill bacterial cells. Therefore, penicillin is an example of an antibiotic.

Antibiotics are a type of medicine that is used to treat bacterial infections. Penicillin is an antibiotic that is made from a fungus. It is used to kill bacterial cells by preventing them from making cell walls, which causes them to die. Penicillin is one of the most widely used antibiotics in the world and has saved countless lives. It was discovered by Alexander Fleming in 1928 when he noticed that a mold had contaminated one of his petri dishes and had killed the bacteria that were growing on it.

Since then, penicillin has been used to treat a wide variety of bacterial infections, including strep throat, pneumonia, and skin infections.

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photosynthesis first emerged in the archean, however the oxygen content of the atmosphere remained negligible until the proterozoic. why?

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Photosynthesis first emerged in the Archean, however the oxygen content of the atmosphere remained negligible until the Proterozoic because the earth's atmosphere was initially devoid of oxygen.

Initially, oxygen was absent from the Earth's atmosphere, and it was only present in the atmosphere after the evolution of photosynthetic organisms.

The photosynthetic bacteria used carbon dioxide from the air to make organic compounds such as carbohydrates, and they emitted oxygen as a by-product.

The oxygen produced by these organisms was immediately consumed by other forms of life or chemically reacted with minerals on the surface of the Earth, therefore, the oxygen concentration remained insignificant until the Proterozoic.

During the Great Oxygenation Event, which occurred between 2.4 billion and 2.2 billion years ago, oxygen levels rose dramatically, which enabled the development of larger and more complex organisms.

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In pea plants, short plants are recessive to tall plants. Cross two homozygous recessive individuals (tt).

Answers

Answer:

100% probability -- homozygous tt (genotype), short (phenotype)

Explanation:

If you cross two homozygous recessive individuals, the probability that their offspring's genotype is tt is 100%; this corresponds to a 100% probability of a short pea plant since short plants are recessive to tall plants. The question can be modeled by a 2x2 Punnett square labeled tt x tt.

What should the scale be?

Answers

I personally would put the x-scale to 2-unit increments like you have it, and the y-scale to 25 or 30, but 25 would perfectly put that final week of growth right at the top.

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some researchers take the view that the sleep patterns exhibited by different animals, including humans, are the result of evolutionary adaptation. they believe sleep patterns evolved as a way of:

Answers

According to some academics, the various sleep habits displayed by animals, including humans, are a product of evolutionary adaptation.

What is the premise of the evolutionary theory of sleep as to why people sleep?

One of the first hypotheses on sleep, called the adaptive or evolutionary notion, holds that organisms lack of activity at night is an adaptation that performed a survival function by keeping them safe when they would otherwise be more vulnerable.

Why is it thought that the evolution of our sleep habits was a protective reaction to predatory risks?

According to a different sleep-related evolutionary theory, our sleep habits developed as a protective mechanism against predatory threats, which rise throughout the night. Hence, to lessen the possibility of damage, we sleep in secure locations.

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What are linked genes? Do linked genes sort independently?

Answers

Linked genes refer to genes that are located close together on the same chromosome. Linked genes assort independently.

They tend to be inherited together as a result of genetic linkage. During the process of meiosis, linked genes tend to sort together and are not inherited independently. This is because they are situated on the same chromosome and are thus inherited together.

In other words, linked genes tend to remain together and are transmitted to the offspring as a single unit. They are usually located close together on the same chromosome and are inherited together during meiosis. Thus, the genes are linked and are not inherited independently. Chromosomes are made up of thousands of genes, and the closer two genes are located to each other on the same chromosome, the greater the likelihood that they will be inherited together.

Genes that are located far apart on the same chromosome tend to sort independently during meiosis. As a result, their inheritance is not dependent on one another, and they are not linked. Therefore, whether genes are linked or not is dependent on their location on the same chromosome.

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What is carbon compounds

Answers

Answer:

Carbon compounds are chemical compounds that contain carbon atoms bonded with other elements such as hydrogen, oxygen, nitrogen, sulfur, and many others. Carbon is unique in its ability to form strong covalent bonds with a variety of elements, which makes it the basis of many organic and inorganic compounds.

The vast majority of compounds found in living organisms are carbon-based, including carbohydrates, lipids, proteins, and nucleic acids. Carbon compounds are also present in a wide range of synthetic materials, such as plastics, pharmaceuticals, and fuels.

The study of carbon compounds is known as organic chemistry.

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if a neurotransmitter binds to the receptor on the postsynaptic cell and the response is a depolarization. True or False

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The statement "if a neurotransmitter binds to the receptor on the postsynaptic cell and the response is a depolarization" is true.

When a neurotransmitter binds to a receptor on the postsynaptic cell, it can cause a response such as depolarization.

This depolarization is the result of an influx of positively charged ions into the postsynaptic cell, which causes a change in the cell's membrane potential.

This change in the postsynaptic cell's membrane potential can trigger a variety of downstream responses, such as the opening of ion channels or activation of other second messenger systems

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the ability of the heart, lungs, and blood vessels to supply oxygen to the skeletal muscles during sustained activity is

Answers

Answer: Cardiorespiratory endurance

Explanation:

Answer:

your body getting flowing threw your body

Explanation:

bc it give your heart lungs and blood throwing

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