in the late stages of sickle cell anemai the spleen undergoes fibrosis and atrophies which makes the spleen barely visible. what is the name of the progression.

Answers

Answer 1

The name of the progression in which the spleen undergoes fibrosis and atrophies in the late stages of sickle cell anemia and becomes barely visible is called auto splenectomy.

What is sickle cell anemia?

Sickle cell anemia is a type of hemoglobin disorder in which an abnormal hemoglobin protein called hemoglobin S is present in the blood. As a result, the red blood cells become rigid, sticky, and take on a sickle shape, obstructing the blood flow in small blood vessels and causing various complications such as pain, organ damage, and strokes.

In the late stages of sickle cell anemia, the spleen undergoes fibrosis and atrophy, which causes the spleen to shrink and become barely visible. This process is known as autosplenectomy, and it is a common complication of sickle cell anemia. Because of the decreased size and function of the spleen, sickle cell patients are more vulnerable to infections and other medical conditions.

What is auto splenectomy?

The spleen is an important organ that helps to filter the blood and remove old or damaged red blood cells, bacteria, and other foreign substances from the body.

Autosplenectomy is a medical term used to describe the progressive shrinkage and fibrosis of the spleen that occurs in some diseases, such as sickle cell anemia, where the spleen is damaged and eventually disappears altogether.

It is characterized by a gradual replacement of functional splenic tissue with fibrotic and adipose tissue, resulting in a small and atrophic spleen.

As a result, the patients are prone to infections from encapsulated bacteria, such as pneumococci, and require prophylactic antibiotics to prevent infections.

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Related Questions

a golden retriever shows an extremely rare black marking on a portion of the face. assume that the golden color is the result of the ee genotype as with the yellow labradors. the best genetic explanation for the black marking is

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The coat colour of labrador retrievers is polygenic, or determined by multiple genes. The gene for black or chocolate is epistatic to the gene for golden colour.

What a golden retriever's genetic makeup?

All Golden Retrievers have the recessive gene pair ee at location E, which causes their red/yellow colouring. Regardless of whether a person is black or chocolate, yellow is located in a completely different location on the chromosome. The ability to disperse dark pigment in the coat is controlled by the gene pair at site E.

Do Golden Retrievers have a black gene?

Because the golden colour of purebred golden retrievers is the product of two recessive genes, they cannot be black.

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suppose that the regulators that control cyclin production are no longer produced. hypothesize two possible outcomes?

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Cyclins are a family of proteins that regulate the progression of the cell cycle by binding to and activating cyclin-dependent kinases (CDKs). If the regulators that control cyclin production are no longer produced, it would likely have a significant impact on the cell cycle and cell division. Here are two possible outcomes that could occur:

Uncontrolled cell division: One possible outcome of the loss of cyclin regulators is uncontrolled cell division. Without the proper regulation of cyclin production, cells may continue to divide and replicate uncontrollably, leading to the formation of tumors or cancer. Cyclin overproduction can lead to abnormal cell division, and the absence of cyclin regulators could cause this to happen. Cell cycle arrest: Another possible outcome is cell cycle arrest. Without proper regulation of cyclin production, the cell cycle may become disrupted, leading to the arrest of cell division. This could result in a lack of cell proliferation, which could impact the growth and development of the organism. Cell cycle arrest could occur if there is not enough cyclin to activate CDKs, which are required for cell cycle progression.

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what are the distinguishing characteristics of the free-living members of sarcodina mastigophora and ciliphora

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The distinguishing characteristics of the free-living members of Sarcodina Mastigophora and Ciliphora are that they are unicellular and move using pseudopodia. Mastigophora have flagella while Ciliphora lack them.

Additionally, Mastigophora have a single nucleus while Ciliphora have multiple nuclei.

Free-living members of Sarcodina, Mastigophora, and Ciliophora have several distinguishing characteristics.

They are: Amoeboid (Sarcodina): These organisms are amoeboid, which means they are unicellular organisms with no definite shape, but they have a pseudopodium which helps them to move around in their environment.

Whipped tails (Mastigophora): They have one or more whipped tails known as flagella. This group includes many free-living freshwater, marine, and soil protozoa that can cause various diseases, as well as mutualists such as many gut inhabitants.

Tiny hairs (Ciliophora): They have tiny hairs known as cilia, which are used for motion and for feeding purposes. The majority of ciliates are either free-living in aquatic environments or in the digestive tracts of animals that aid in their digestion.

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what do marine biologists study that relates to food chains?

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Marine biologists study a variety of factors related to food chains in marine ecosystems, including the composition and structure of the food web, the interactions between different species in the food chain, and the flow of energy and nutrients through the ecosystem.

Some specific areas of research in marine biology related to food chains include:

Trophic interactions: Marine biologists study the relationships between different organisms in the food web, including predator-prey relationships and symbiotic interactions. Understanding these interactions can provide insights into the dynamics of the food chain and how changes in one species can impact others.Nutrient cycling: Nutrient cycling is the process by which nutrients such as carbon, nitrogen, and phosphorus are recycled through the food web. Marine biologists study the processes involved in nutrient cycling, including the roles played by different organisms in breaking down and recycling nutrients.Primary production: Primary production refers to the process by which plants and other photosynthetic organisms convert sunlight into energy. Marine biologists study primary production in marine ecosystems, as it forms the basis of the food chain and provides energy for all other organisms in the ecosystem.Fisheries management: Many marine biologists work on fisheries management, which involves understanding the interactions between different species in the food web, as well as the impacts of human activities such as fishing on marine ecosystems. Fisheries management aims to ensure that fisheries are sustainable and that marine ecosystems remain healthy and productive.

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Explain the evolutionary relationship between Homo sapiens and Homo neanderthalensis.

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The evolutionary relationship between Homo sapiens and Homo neanderthalensis is that both are hominids, members of the family Hominidae. Homo sapiens and Homo neanderthalensis are two species of the genus Homo.

Homo sapiens and Homo neanderthalensis evolved from the same group of Homo heidelbergensis that lived in Europe, Asia, and Africa around 800,000 years ago. Scientists have been able to establish the evolutionary relationship between the two species through the study of their DNA. The DNA evidence shows that Homo sapiens and Homo neanderthalensis share 99.7% of their DNA. This indicates that they are very closely related and that they share a common ancestor.


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What phenotype would be expected in balanced translocation heterozygotes in the absence of position effects?
a) Normal, because they have a normal amount of genetic material
b) Abnormal, because they lack some genetic material
c) Normal, even though they have too much genetic material
d) Abnormal, because they have too much genetic material

Answers

In balanced translocation heterozygotes, Normal phenotype is expected in the absence of position effects.

Balanced translocations arise as a result of a chromosomal rearrangement that causes the swapping of chromosome segments between two different chromosomes. It occurs when two chromosomes have exchanged fragments, but there has been no loss or gain of genetic material. This implies that there is a normal amount of genetic material, but the position of the genes has changed.When there is no positional effect, heterozygotes with balanced translocations are phenotypically normal.

However, when there is a positional effect, the presence of the chromosomal rearrangement causes various phenotypic abnormalities.What is a phenotype?Phenotype refers to the observable physical, physiological, and biochemical characteristics of an organism, which is determined by its genetic makeup (genotype) and the environment in which it lives. The genotype comprises the genetic material that determines the phenotypic characteristics of the organism.

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the circular arrangement of muscles around an opening that controls the passage of material through the alimentary canal is known as a .

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The circular arrangement of muscles around an opening that controls the passage of material through the alimentary canal is known as a sphincter.

Alimentary canal or the digestive tract is a muscular tube which runs from the mouth to the anus. It measures around 9 meters and it is divided into various parts such as esophagus, stomach, small intestine, large intestine, rectum, and an-us.Sphincters: There are several types of sphincters in the human body. A sphincter is a muscle that controls the opening and closing of a tube-like structure. It acts as a valve and helps to regulate the flow of liquids, gases, and other materials in the body.Some of the commonly known sphincters include:Urethral sphincter - It helps in controlling the flow of urine. The urethral sphincter is present in both males and females.An-al sphincter - It helps in controlling the release of feces from the rectum.Oddi sphincter - It controls the flow of bile from the gallbladder into the small intestine.Ureteral sphincter - It controls the flow of urine from the kidneys to the bladder. The alimentary canal is lined with a layer of smooth muscle. These muscles help in pushing food through the canal during digestion. The digestive system uses a combination of circular and longitudinal muscles to move food along the canal. The circular arrangement of muscles around an opening that controls the passage of material through the alimentary canal is known as a sphincter.

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the upper abdominal cavity and contents are supplied with blood by an aorta. what major branch of this structure divides into the artery that supplies the urinary bladder?

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The aorta divides into two main branches: the descending thoracic aorta and the abdominal aorta. The abdominal aorta gives rise to several major branches, including the superior mesenteric artery, the inferior mesenteric artery, and the celiac artery.

The artery that supplies the urinary bladder is called the vesical artery, which arises from the anterior division of the internal iliac artery. The internal iliac artery is a branch of the common iliac artery, which is formed by the bifurcation of the abdominal aorta into the left and right common iliac arteries. Therefore, the major branch of the abdominal aorta that ultimately gives rise to the vesical artery is the common iliac artery.

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the genomic differences between individuals in populations result of____

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The genomic differences between individuals in populations are due to genetic variation.

What is genomic variation? Genomic variation is the term used to describe differences between the DNA sequences of individuals. Each person has a unique genomic sequence that is distinct from that of other individuals because of genetic variation.

Genetic variation is one of the most important factors in evolution, as it is responsible for the differences between organisms that allow for natural selection to occur. It can also be used to identify individuals or groups based on their genetic profiles.

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What specific cells attack invaders that are "marked for death"?

a
tRNA
b
mHelper cells
c
Killer Bee Cells
d
Killer T-Cells

Answers

The specific cells that attack invaders that are "marked for death" are Killer T-Cells. So, option D is correct.

White blood cells referred to as killer T-cells or cytotoxic T-cells are a crucial component of the immune system's response to cancer and infections. They are referred to as "killer" T-cells because they are able to identify and eliminate malignant or contaminated cells in the body.

The bone marrow produces killer T lymphocytes, which then develop in the thymus gland. When they come into contact with an antigen (a molecule on the surface of an infected or malignant cell) that matches their receptor, they become activated. Once activated, they multiply quickly and undergo differentiation to become effector cells, which can either destroy the target cell directly or release cytokines to draw in other immune cells to assist fight the infection or malignancy.

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Which of the following equations represents the right chemical process that occurs in photosynthesis? Question 15 options: A) Six molecules of carbon dioxide plus six molecules of water plus light energy converts six molecules of oxygen plus sugar. B) Six molecules of carbon dioxide plus sugar plus light energy converts six molecules of carbon and six molecules of oxygen. C) Six molecules of water plus six molecules of hydrogen plus six molecules of oxygen converts light energy plus sugar. D) Six molecules of oxygen plus six molecules of water plus light energy converts six molecules of carbon dioxide plus sugar.

Answers

The correct equation that represents the chemical process that occurs in photosynthesis is: A) Six molecules of carbon dioxide plus six molecules of water plus light energy converts six molecules of oxygen plus sugar.

What is the correct equation that represents the chemical process of photosynthesis?

This equation (Option A) shows that carbon dioxide and water are converted into oxygen and sugar, with the help of light energy. This is the process of photosynthesis that occurs in plants, algae, and some bacteria.

Option B is incorrect because it suggests that carbon dioxide and sugar are converted into carbon and oxygen, which is not the case.

Option C is also incorrect because it shows that water and hydrogen are converted into sugar, which is not accurate.

Option D is also incorrect because it suggests that oxygen and water are converted into carbon dioxide and sugar, which is not the correct process.

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HELP ME PLEASE ILL GIVE 100

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In the winter time, the weasel sheds it’s brown fur (pelage) and grows white fur to blend in with the snow, furthering their chances of being preyed upon by other animals.

Seasonal diets change birds during the spring time. Birds begin to eat more insects as spring comes around along with calcium from laying eggs.

Butterflies hibernate during the winter in trees, logs and bark. They’re darker color helps them blend in and not stand out to predators


Conclusion: In conclusion, animals change throughout the seasons to help them survive and not stand out to predators.

at what levels does gene regulation occur in bacteria?

Answers

Gene regulation in bacteria occurs at both the transcriptional and post-transcriptional levels.

At the transcriptional level, gene expression is regulated by controlling the rate of transcription. This can be done through the binding of regulatory molecules to the promoter region of a gene.

At the post-transcriptional level, gene expression is regulated by controlling the stability, translation, and/or processing of the mRNA molecule. This can be done by the binding of regulatory molecules to the mRNA molecule or to its associated proteins.

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What would happen if a tendon in
your finger were cut?

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Answer:

If your extensor tendons are damaged, you'll be unable to straighten one or more fingers. If your flexor tendons are damaged, you'll be unable to bend one or more fingers. Tendon damage can also cause pain and inflammation (swelling) in your hand.

Explanation:

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Put action potential steps in order.Put the steps required for production of an action potential in the correct order.Rank the options below ( From 1-9)voltage-gated potassium channels closevoltage-gated sodium channels opensodium-potassium pump restores resting potentialsodium enters the cellcell depolarizespotassium leaves the cellvoltage-gated sodium channels close and voltage-gated potassium channels opencell hyperpolarizesstimulus moves voltage above threshold

Answers

The correct order is:

Stimulus moves voltage above thresholdVoltage-gated sodium channels openSodium enters the cellCell depolarizesVoltage-gated sodium channels close and voltage-gated potassium channels openPotassium leaves the cellCell hyperpolarizesVoltage-gated potassium channels closeSodium-potassium pump restores resting potential

An action potential is a rapid change in the electrical potential across a cell membrane that occurs in response to a stimulus. It is an important process in the transmission of signals in the nervous system. The steps of an action potential are as follows:

Resting membrane potential: The membrane potential of the neuron is at a resting state, typically around -70 mV.

Depolarization: A stimulus depolarizes the neuron, causing the membrane potential to become more positive. This may cause voltage-gated sodium channels to open, allowing positively charged sodium ions to enter the neuron, further depolarizing the membrane.

Threshold: If the depolarization is large enough to reach a threshold potential, an action potential is triggered.

Rising phase: Voltage-gated sodium channels open, allowing a rapid influx of sodium ions into the neuron. This further depolarizes the membrane and creates a positive feedback loop that rapidly drives the membrane potential towards a positive value of around +40 mV.

Falling phase: Voltage-gated sodium channels close and voltage-gated potassium channels open. Potassium ions flow out of the neuron, making the membrane potential more negative, and returning it towards the resting membrane potential.

Undershoot: The membrane potential briefly becomes more negative than the resting potential, due to the continued efflux of potassium ions.

Return to resting state: The sodium-potassium pump restores the ion concentration gradients across the membrane, returning the neuron to its resting membrane potential.

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the ____________________ perform photosynthesis, have chlorophyll, and produce oxygen as a by-product.

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The plants perform photosynthesis, have chlorophyll, and produce oxygen as a by-product. The process of photosynthesis in plants is the process of converting light energy into chemical energy.

During this process, plants use carbon dioxide and water to synthesize glucose (a type of sugar). Oxygen is also released as a by-product of photosynthesis. Oxygen is then used by living organisms to produce energy through cellular respiration.

Plants contain a green pigment called chlorophyll, which is the primary pigment involved in photosynthesis. Chlorophyll is located in the chloroplasts of plant cells. Chloroplasts are organelles that contain chlorophyll, along with other pigments and enzymes required for photosynthesis.

Plants are the primary producers in most ecosystems. They are also the foundation of the food chain, as they provide food for herbivorous animals (which in turn are preyed upon by carnivorous animals). Plants are essential to the survival of most living organisms on Earth.

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What is the key characteristic of a transformed cell?A) has acquired tumor-forming propertiesB) is producing toxins affecting neighboring cellsC) is producing budding virusesD) has undergone chromosomal rearrangementsE) is infected with a lytic virus

Answers

The key characteristic of a transformed cell is A) has acquired tumor-forming properties.

Normal cells can become transformed by this process, which gives them the capacity to divide uncontrollably and become tumors. Transformed cells are able to evade planned cell death (apoptosis), ignore signals to cease growing, and expand even in the absence of normal growth signals, which are all characteristics of cancer cells.

Changes in genes that regulate cell growth and division, exposure to chemicals or radiation, specific viruses, or other causes can all result in transformation. However, not all altered cells go on to develop tumors; in other cases, additional mutations or alterations to the microenvironment are necessary for the development of malignancies.

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how does Genetic diversity happen

Answers

Answer:

Genetic diversity occurs when mutations create new alleles over time.

Explanation:

Answer:

Genetic diversity happens when mutations create new alleles over a period of time.

What is genetic diversity?

Genetic diversity in a very simple term is the natural variation that exists within the individuals of an species.

The first rule of Darwin's theory says, there is a natural variation. Leaving apart identical twin cases, no 2 individuals of the population are exactly similar, no matter how close they are. There are two factors that are responsible for this variation :

Phenotypic factors: the external factors like food, climate, the way of nurturing etc. These variations are not inheritable.Genotypic factors: these characters are gene governed and are inheritable.

The variations because of (2) are called “genetic diversity” of a particular species. The rich genetic diversity is of immense use to us and also to nature. Development of improved plants or race improvisation of domestic animals is possible through this.

We are fast narrowing down the global natural genetic diversity of animals and plants by our un mindful modernization activities. The loss is great and unrepairable.

microbiologists use e. coli bacterium in the biotechnology filed to make a human gene product because? group of answer choices it does not secrete most proteins. its genes are well known. endotoxin may be in the product and it does not secrete most proteins. it cannot process introns. endotoxin may be in the product.

Answers

Microbiologists use E. coli bacterium in biotechnology to make a human gene product because its genes are well known.

The genome of the well-researched bacterium E. coli has undergone considerable sequencing and annotation. As a result, it serves as a useful tool for biotechnology projects including the creation of human gene products.

E. coli has a well-characterized genome and is simple to cultivate and work with in the lab. Its genome can be modified using genetic engineering techniques to create particular proteins, and it can be grown in vast quantities on cheap media.

E. coli does not secrete the majority of proteins, yet this is not always a drawback for biotechnology applications. In reality, the absence of protein secretion can be advantageous since it makes it easier to purify the necessary protein.

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explain how the circular processes of photosynthesis and cellular respiration result in the cycling of carbon within ecosystems.

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The circular processes of photosynthesis and cellular respiration lead to the cycling of carbon within ecosystems which enables carbon to be moved and reused within ecosystems.

Photosynthesis, a process that occurs in green plants, uses light energy to convert carbon dioxide into glucose or sugar. This glucose is then used as a source of energy to fuel cellular respiration in the plant's cells. The carbon dioxide released during cellular respiration is then released back into the atmosphere or consumed by other organisms.

This process enables carbon to be cycled through the ecosystem as organisms consume one another and utilize carbon for respiration. The process of cellular respiration breaks down glucose in the presence of oxygen to release energy. Carbon dioxide and water are produced during the process.

Cellular respiration occurs in the cells of all organisms and is essential for the breakdown of glucose for energy. When plants utilize carbon dioxide to make glucose through photosynthesis, they store the carbon within their tissues. When glucose is consumed by an organism, the carbon is utilized during cellular respiration, releasing carbon dioxide back into the atmosphere.

The carbon dioxide released by the organism during cellular respiration can then be consumed by another organism for photosynthesis. This cyclic process of carbon cycling enables carbon to be moved and reused within ecosystems.

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Operant conditioning emphasizes ________, whereas respondent conditioning emphasizes ________.
A) active learning; passive learning
B) punishment; reward
C) an animal's learning ability; a human's learning ability
D) effects on one's physical world; effects on one's social world

Answers

Operant conditioning emphasizes active learning, which is the process of learning through an individual's own actions, whereas respondent conditioning emphasizes passive learning.

Here, correct option is A.

Through operant conditioning, a person can learn to modify their behavior as a result of the consequences they receive. This type of learning is based on reinforcement and punishment, which are consequences that are either positive or negative. It can be used to modify behavior quickly and effectively.

Respondent conditioning, on the other hand, emphasizes passive learning, which is the process of learning through a stimulus-response relationship. This type of learning is based on the principle of classical conditioning, which states that an individual can learn to associate a stimulus with a response.

Therefore, correct option is A.

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Humans have a lot of homologous structures in common with other animals, and several of these structures are no longer in working order in human bodies. These nonfunctioning structures are called vestigial structures. They still show evidence of common ancestry, but they do not do the same things in humans as they do in other animals.%0D%0A%0D%0AListed below are mostly vestigial structures. Select the one that serves a purpose in humans.%0D%0A%0D%0A(1 point)%0D%0AResponses%0D%0A%0D%0Atail: tail bone in humans versus long tails for balance and communication in other animals like lizards and wolves%0D%0Atail: tail bone in humans versus long tails for balance and communication in other animals like lizards and wolves%0D%0A%0D%0Aear muscles: ability to wiggle ears in humans versus rotating ears to hear predators in prey animals like deer and rabbits%0D%0Aear muscles: ability to wiggle ears in humans versus rotating ears to hear predators in prey animals like deer and rabbits%0D%0A%0D%0Apelvis: supports upper body and attaches to lower body in humans versus being tiny and nonfunctional in legless animals like whales and snakes%0D%0Apelvis: supports upper body and attaches to lower body in humans versus being tiny and nonfunctional in legless animals like whales and snakes%0D%0A%0D%0Ahair raising: goosebumps in humans versus raising hackles to appear larger and aggressive in other animals like cats and monkeys%0D%0Ahair raising: goosebumps in humans versus raising hackles to appear larger and aggressive in other animals like cats and monkeys

Answers

The vestigial structures listed in the given responses are tail, ear muscles, and pelvis. However, the one structure that serves a purpose in humans is the ability to raise hair, which causes goosebumps. While this response also mentions the purpose of raising hackles in other animals, the ability to raise hair in humans still serves a purpose in response to cold temperatures, fear, or strong emotions. Therefore, the correct response is "hair raising: goosebumps in humans versus raising hackles to appear larger and aggressive in other animals like cats and monkeys".

Why is the existence of vestigial structures important evidence for evolution?

Answers

Vestigial structures are important evidence for evolution because they are remnants of structures that were once useful to an organism's ancestors, but have since become functionless or reduced in size and function in the descendants.

These structures imply that rather than being created in their current form, organisms have evolved over time.

The theory of evolution, which holds that organisms change through time through the process of natural selection, is consistent with the existence of vestigial structures. This idea states that organisms with superior environmental adaptation are more likely to live, procreate, and pass on their advantageous features to their offspring. This process can result in the creation of new structures across many generations as well as the destruction or alteration of old buildings.

Vestigial structures, which were formerly beneficial to an organism's progenitors but are now functionless or smaller in size and function in the descendants, serve as proof of this process.

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help I NEED THIS DONE TODAY

Answers

Answer:

trench

Explanation:

because my mom said so!

Animals of one common phylum are NOT bilaterians but are eumetazoans. What phylum is it? A. Chordata B. Annelida C. Porifera D. Cnidaria.

Answers

Animals of one common phylum that are NOT bilaterians but are eumetazoans are Porifera. The correct answer is Option C.

What is Porifera?

Porifera is a phylum of sponges, which is a class of multicellular organisms that is diverse in size and shape. Sponges are sedentary creatures that dwell in water, and their bodies contain numerous pores and channels.

The features of the phylum Porifera include being multicellular, lack of organs and tissues, the presence of a network of pores and channels through which water is passed for feeding, and an asymmetrical body plan. The Porifera phylum includes all sponges that live in both marine and freshwater habitats.

The body plan of sponges is a radially symmetrical or asymmetrical sack, with water passing through the channels and pores of the body. Sponges are the most primitive type of animal, and they lack the complex organ system and specialized cells that are found in more advanced animals such as mammals, reptiles, or birds. Sponges have a simple immune system that can recognize foreign cells and aid in digestion.

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Why do we dye our gels with Ethidium bromide or Gel Red dyes?
- these dyes stain the double stranded DNA in our gel
- these dyes will stain the proteins in our gel
- these dyes will only stain the single stranded RNAs in our gel

Answers

Ethidium bromide or Gel Red dyes are used to dye the gel because: (1) these dyes stain the double stranded DNA in our gel.

Ethidium bromide is the most commonly used fluorescent material in the electrophoretic gels, particularly the agarose gels. The dye needs to be handles as with utmost care because it is a mutagen and may also cause irritation of the mouth, upper respiratory tract, skin, or eyes.

DNA stands for Deoxyribonucleic Acid. It is a genetic material in most of the organisms. DNA is a double stranded helical structure joined where the strands are joined together by the hydrogen bonds between the nucleotides. The several dyes fit themselves between these base-pairs and this is how the stain becomes visible on the DNA.

Therefore, the correct answer is option 1.

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how do forces change the growth of plants or fungi according to gravitropism?

Answers

Gravitropism is the phenomenon where plants or fungi respond to gravitational forces by growing in a particular direction. In the case of plants, gravity causes the roots to grow downwards and the shoots to grow upwards, while in fungi, the hyphae grow towards or away from the gravitational force.

The response of plants and fungi to gravity is mediated by specialized cells called statocytes, which contain starch-filled organelles called amyloplasts. These organelles are sensitive to changes in gravitational force and move to the bottom of the cell under the influence of gravity.

In fungi, the movement of the amyloplasts similarly triggers a signaling cascade that leads to changes in the distribution of growth-promoting factors. In some fungi, the hyphae grow towards the gravitational force, while in others, they grow away from it, depending on the species.

Overall, the response of plants and fungi to gravitational forces is a complex process that involves the coordinated action of various signaling pathways and growth-promoting factors.

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Why might different areas of the brain be more active than others at certain times?

Answers

Answer:

The brain is a complex organ that controls all our bodily functions and processes information from the world around us. At any given time, different areas of the brain may be more active than others, depending on the task at hand. This is because each area of the brain is responsible for a specific function, such as movement, language, memory, and emotion.

For example, when we are talking to someone, the language centers in our brain become more active as we process and understand what they are saying. Likewise, when we engage in physical activity such as running or dancing, the motor cortex in our brain becomes more active to control our movements.

Other factors that may affect which areas of the brain are more active include mood, attention span, and even sleep patterns. For example, during REM sleep (the sleep phase in which we dream), certain areas of the brain associated with memory consolidation become more active.

In summary, different areas of the brain may be more active at certain times than others due to their specialized functions and the way they respond to external stimuli. Understanding these patterns can help us better understand how our brains work and how we can optimize their performance.

Brain  please

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which solutes are reabsorbed from the nephron loop? select all that apply.
a) sodium loops
b) glucose and amino acids
c) chloride
d) water
e) potassium ions

Answers

The solutes which are reabsorbed from the nephron loop are sodium ions, chloride and potassium ions that is option A, C and E.

The million nephrons that make up the human kidney, an intricate and highly vascular organ, serve as its filtering units. Each one removes water and other substances from the blood as it travels through it and into the hollow between the cup's walls. The second piece resembles a U-shaped loop that carries the filtered fluid all the way to the medulla.

The process by which the nephron takes water and solutes from the tubular fluid (pre-urine) and returns them to the circulating blood is known as reabsorption or tubular reabsorption in the field of renal physiology. The reason it is called reabsorption and not absorption is because these substances have already been absorbed (especially in the intestines) and the body is reclaiming them from a postglomerular fluid stream that is about to turn into urine.

If they are not reabsorbed from the tubule into the peritubular capillaries, they will soon be lost to the urine. The Na+/K+ATPase in the basolateral membrane of the epithelial cells causes sodium to be transported from the lumen into the circulation in this manner.

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you found out that a cell synthesizes an enzyme that works in cold water for a laundry additive. you know that you can enhance the effectiveness of this enzyme by changing one amino acid. how would you do it? group of answer choices irradiating the cells. enrichment selective breeding. site-directed mutagenesis selection

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To enhance the effectiveness of the enzyme synthesized by the cell that works in cold water for a laundry additive by changing one amino acid, site-directed mutagenesis would be the appropriate method to use.

Site-directed mutagenesis is a method for altering a gene's DNA sequence to produce a desired protein with different characteristics. This method entails changing the amino acid sequence of the resultant protein by specifically altering the DNA sequence of the gene encoding the enzyme.

In this instance, adding a mutation at the DNA level could alter the amino acid sequence of the enzyme to improve its efficacy. The mutation would alter the amino acid sequence of the enzyme, possibly enhancing its activity in cold water.

Site-directed mutagenesis is a potent method that enables scientists to make exact alterations to DNA sequences, enabling the precise manipulation of the properties of the resulting protein.

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