Diferencia entre fecundación interna y fecundación externa

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Answer 1

Answer:

La fertilización interna, a diferencia de su contraparte, la fertilización externa, trae más control a la hembra con la reproducción.

Explanation:


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neural tissue has minimal extracellular matrix. which is involved in this support and protection of neural tissue?

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The cells that provide this support and protection in neural tissue are called glial cells, also known as neuroglia. Although neural tissue has a minimal extracellular matrix, it still requires support and protection.

Glial cells are non-neuronal cells that surround and support neurons in the nervous system. They make up about half of the total volume of the nervous system and have a variety of functions, including providing structural support and protection to neurons, regulating the extracellular environment around neurons, and aiding in neuronal signaling. There are several types of glial cells, including astrocytes, oligodendrocytes, microglia, and ependymal cells, each with their own specific functions.

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chromatin immunoprecipitation and dna sequencing (chip-seq) can be used to identify regions of the genome that can indicate promoters, enhancers, and transcription factor-binding motifs. chip-seq is an example of:

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Chromatin immunoprecipitation and DNA sequencing (ChIP-seq) can be used to identify regions of the genome that can indicate promoters, enhancers, and transcription factor-binding motifs. ChIP-seq is an example of Next-Generation Sequencing (NGS).

Next-Generation Sequencing (NGS) is a term that refers to technologies that allow researchers to sequence millions of small fragments of DNA at the same time.

ChIP-seq is an example of NGS, which combines the power of chromatin immunoprecipitation (ChIP) with next-generation sequencing to map the genome-wide binding sites of proteins, such as transcription factors, histones, and polymerases, that interact with DNA.

ChIP-seq enables researchers to determine which parts of the genome are bound by a protein of interest, making it an effective tool for identifying promoters, enhancers, and other regulatory elements.

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how is glycolysis related to the ability of hemoglobin to bind oxygen? in what type of cell is this reaction important? how is the allosteric effector of hemoglobin 2,3-bisphosphoglycerate (2,3-bpg) related to glycolysis?

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As glycolysis interacts with deoxygenated hemoglobin beta subunits, it lowers their oxygen affinity and allosterically encourages the release of the oxygen that is still present.

In other words, by attaching to hemoglobin, 2,3-BPG lowers hemoglobin's affinity for oxygen, moving the entire oxygen-binding curve to the right. This explains how hemoglobin can efficiently transport oxygen throughout the body, releasing around 66% of it to working muscles.

2,3-Bisphosphoglycerate (2,3-BPG) is a metabolite that is primarily the allosteric effector for hemoglobin and is found in high quantities in RBCs. In the RBC, 2,3-DPG controls the allosteric characteristics of hemoglobin. Hemoglobin's affinity for oxygen is reduced and the T-state conformation is stabilized when 2,3-DPG is attached to it.

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what phenotype can male cats NOT express?

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Answer:

Hope you're doing well.

Explanation:

Male cats cannot express the phenotype of being a heterozygous carrier of a sex-linked trait located on the X chromosome because they only have one X chromosome. In male cats, the sex-linked traits are always expressed, whether dominant or recessive, because they have no corresponding gene on the Y chromosome to mask the expression. As a result, any sex-linked trait on the X chromosome is always expressed in male cats, regardless of whether it is dominant or recessive.

a white-eyed male fly is crossed with a homozygous red-eyed female fly. what phenotypic proportions would be expected in f1 and f2?

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The F1 generation would have a phenotypic proportion of 1:1 with red-eyed and white-eyed flies. In the F2 generation, the phenotypic proportion would be 3:1 with 3 red-eyed flies and 1 white-eyed fly.

Phenotypic proportions are the percentage of individuals in a given population that express a particular phenotype, such as color or height. It is determined by the genetic makeup of the parents and the probability of inheritance.In the given case, the cross is between a white-eyed male fly and a homozygous red-eyed female fly.

We know that the white-eyed male fly is recessive and that it has the genotype way. The homozygous red-eyed female fly, on the other hand, is dominant and has the genotype w+y+.F1 generation: In F1 generation, all the offspring will have the W+y phenotype, i.e., they will be heterozygous for white eye and red eye alleles.

As the phenotype for red eye is dominant over white eye, all the offspring will show red eye phenotype. The phenotypic ratio in F1 generation will be 100% for red eye.F2 generation: In the F2 generation, we cross F1 heterozygous individuals with each other.

The probability of offspring will be as follows:25% will have the homozygous dominant phenotype (red-eyed)50% will have the heterozygous phenotype (red-eyed)25% will have the homozygous recessive phenotype (white-eyed)Thus, the phenotypic proportions in the F2 generation will be 3:1 for red-eye: white-eye phenotype.

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is the disease shown in the following pedigree caused by a dominant or a recessive allele? why? based on this limited pedigree, do you think the disease allele is rare or common in the population? why? (3 points)

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The underlying reason for the illness shown in the pedigree is a dominant allele. To be dominant, a trait must be possessed by both parents. No generation would be exempt from prevailing traits.

How can you tell whether a disease is dominant or recessive in a pedigree?

To be dominant, a trait must be possessed by both parents. No generation would be exempt from prevailing traits. Since they may both be heterozygous, a recessive characteristic can only exist if one or both parents have it.

Can a pedigree assess disease risk?

In general, the likelihood that a child will be a carrier if one parent is not is: three time. In other words, we multiply the chance of transferring a disease allele, 12, by the chance that the parent actually carries the illness allele.

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the chromosomes (dna) in this cell have been dyed blue and the cytoskeletal components have been dyed green. which phase of mitosis is this cell in?

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This cell is in the metaphase phase of mitosis. In this phase, the chromosomes (dyed blue) are aligned in the center of the cell and the spindle fibers (dyed green) are connecting the chromosomes to the spindle poles.

Phases of Mitosis:

Mitosis is the process of cell division that results in two identical daughter cells. It can be divided into four distinct phases that are discussed below.

Prophase: In this phase, chromosomes condense and become visible. Chromosomes pair up to form an "X" shape, with each pair comprising a pair of sister chromatids. Cytoskeletal structures called microtubules start to form, which will eventually form the spindle apparatus. The nuclear envelope begins to disintegrate.

Metaphase: The chromosomes align at the cell's equator during this stage. The spindle apparatus and microtubules attach to the kinetochores on the chromosomes. The centrosomes migrate to opposite poles of the cell, forming the spindle's poles.

Telophase: The spindle apparatus disintegrates, and new nuclei begin to form at either end of the cell. The chromosomes relax, and their characteristic shape disappears. Cytokinesis, or the splitting of the cell into two daughter cells, begins at this stage.

Anaphase: The sister chromatids are pulled apart and drawn toward the spindle poles during this phase.

The spindle apparatus shortens as microtubules shorten, pulling the chromatids in opposite directions. As a result, each chromatid is now regarded as an individual chromosome. The cell becomes more oval-shaped as the spindle pulls the chromosomes towards the poles until they are completely separated.

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What does upwelling mean, what is the definition?

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This is a big question and it is also important for climate studies and I am only going to answer it in simple terms but let’s not forget there are quantitative answers at global scales.

When the wind blows onshore it moves the surface water towards the shore. If the shore is a wall like a harbour wall then the moving surface water raises the water level at the wall. This raised water level at the wall puts pressure on the deeper water below (which moves away from the base of the wall to regions of lower pressure or away from the wall at the bottom). The water at the wall moves downward to compensate and this is called downwelling. More surface wind (stress) and more downwelling.

When the wind blows off shore. The surface water moves away from the wall. Sea level falls at the wall and water rises up the wall from the bottom. This is called upwelling.

Ekman worked out that in the open ocean the transport of surface water moves to the right of the wind direction due to the effects of the Earth’s rotation (in the northern hemisphere). So when the wind is parallel to a shore there will be upwelling or downwelling depending on the wind direction. Imagine a straight shoreline aligned towards the south (or north). If the wind blows to the south (from the north or a north wind) then the surface water moves offshore to the right of the wind and upwelling occurs.

These upwelling regions bring up cooler water rich in inorganic nutrients and surface phytoplankton growth is increased. This happens particularly seasonally off West Africa and Venezuela. There is also Equatorial Upwelling with zonal wind so some corals won’t die out so quickly with global warming.

why is it important for substances to be moved about inside of the cell by the cytoskelelton instead of just allowing the substnaces to float to their destination

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It is important for substances to be moved about inside the cell by the cytoskeleton instead of just allowing them to float to their destination because:

The cytoskeleton provides a direct route for molecules.The cytoskeleton helps to provide structure and support.The cytoskeleton allows for molecules to be targeted to specific locations.The cytoskeleton is able to change its shape in order to respond to external stimuli.

The cytoskeleton is a complex network of protein fibers that helps to maintain the structure and shape of the cell and provides a scaffold for intracellular transport. The cytoskeleton can also interact with motor proteins that use ATP to move along the cytoskeletal fibers and transport various substances, such as organelles, vesicles, and molecules, to their intended destinations. Without the cytoskeleton, substances within the cell would simply diffuse randomly and it would be difficult for the cell to control where they end up. This would be especially problematic in larger cells, where the distances between different parts of the cell can be significant.

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the process used to remove bacteria, necrotic tissue, and organic debris from the root canal is called

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Answer: The process used to remove bacteria, necrotic tissue, and organic debris from the root canal is called "Root canal therapy".

"What is Root Canal Therapy?

Root canal therapy is a dental treatment that is used to eliminate bacteria and decayed or infected tissue from the inner section of your tooth. It can also be referred to as endodontic therapy. The method helps to stop the spread of infection to other regions of your teeth, gums, and jawbones.

Root canal therapy is a simple, painless procedure that is performed on an outpatient basis. The dentist, also known as an endodontist, or a specialist in internal tooth structure and related dental issues, will use a series of tools to gently clean and disinfect the inside of the tooth, including the root canals. They may also place a crown over the tooth to protect it and restore its function.

What are the benefits of Root Canal Therapy?

It is simple and painless.

It is an outpatient procedure.

It can save your natural teeth from extraction.

It prevents the spread of infection.

It can help to alleviate pain and discomfort.

It is a cost-effective alternative to tooth replacement.

It offers long-lasting results without the need for additional maintenance or treatment.



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stramenopiles are a branch of sar that are distinguished from other members based on the presence of

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Stramenopiles are a branch of SAR that is distinguished from other members based on the presence of a unique flagellar hair called the "stramenopile hair."

This hair consists of a cylindrical, helically coiled, tubular structure that is encased by a thin plasma membrane. It is composed of two specialized tubulin proteins called alpha-tubulin and beta-tubulin, which are arranged in a unique pattern. This pattern gives the hair its characteristic "flagellar" shape.

The stramenopile hair is present on the flagella of all stramenopiles, which are a diverse group of eukaryotic organisms that includes diatoms, brown algae, and oomycetes. It is thought to have evolved as a mechanism for increasing the surface area of the flagellum, thereby increasing its effectiveness at swimming or transporting nutrients.

In addition to their unique flagellar hair, stramenopiles also share other features that distinguish them from other members of SAR. For example, they possess a unique form of chlorophyll called fucoxanthin, which gives them their characteristic brown or golden color. They also have a unique type of cell wall that is composed of cellulose and other polysaccharides.

Despite their many similarities, stramenopiles are a diverse and evolutionarily complex group. Some, like the diatoms, are photosynthetic and play a key role in the oceanic food chain. Others, like the oomycetes, are parasitic and can cause devastating diseases in plants and animals. Still others, like brown algae, are commercially valuable as a source of food, fuel, and other products.


Overall, the stramenopiles are a fascinating and diverse group of organisms that play a key role in the ecology and evolution of life on Earth. Their unique features, including their flagellar hair, make them an important focus of research in biology and other fields.

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you perform the catch and release method on raccoons in your neighborhood. you catch and marked 12 raccoons in your first sample. in the second sample, you catch 16 more raccoons, only 4 of which are marked. what is the approximate population size of raccoons in your neighborhood? show your work.

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The approximate population size of raccoons in the neighborhood, using the Lincoln-Petersen Index formula, is 48.

To estimate the approximate population size of raccoons in your neighborhood using the catch-and-release method, we need to follow these steps:

Step 1: Record the number of raccoons marked in the first sample. In this case, you marked 12 raccoons.

Step 2: Record the total number of raccoons caught in the second sample. In this case, you caught 16 raccoons.

Step 3: Record the number of marked raccoons in the second sample. In this case, there are 4 marked raccoons.

Step 4: Use the Lincoln-Petersen Index formula to estimate the population size. The formula is:

Population Size = (Number of raccoons marked in the first sample * Total number of raccoons caught in the second sample) / Number of marked raccoons in the second sample

Step 5: Plug the numbers into the formula:

Population Size = (12 * 16) / 4

Step 6: Calculate the population size:

Population Size = 192 / 4

Population Size = 48

Therefore, the approximate population size of raccoons in the neighborhood is 48.

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yeast cells growing aerobically on glucose are exposed to a drug that raises the ph of the intermembrane space of mitochondria. what will happen?

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When yeast cells growing aerobically on glucose are exposed to a drug that raises the pH of the intermembrane space of mitochondria: the electron transport chain (ETC) is disrupted.

As a result, ATP production is lowered and glucose breakdown is diminished. The drug would have prevented the ETC from functioning because it is an electron carrier inhibitor. Electron transport chain and pH of intermembrane space: When the electron transport chain is disrupted, the pH of the intermembrane space increases.

This is due to the fact that the electron transport chain pumps H+ ions out of the mitochondrial matrix and into the intermembrane space. This generates an electrochemical gradient that is used to generate ATP. However, if the electron transport chain is disrupted, the electrochemical gradient is lost, and ATP production is lowered.

As a result, glucose breakdown is diminished. This is because glucose is broken down to form ATP through the process of oxidative phosphorylation in the mitochondria of the cell. In summary, raising the pH of the intermembrane space of mitochondria in yeast cells that are growing aerobically on glucose would impair ATP production and glucose breakdown.

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most water-breathing animals excrete nitrogen mainly as ammonia. for this reason, they are called...

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Most water-breathing animals excrete nitrogen mainly as ammonia. For this reason, they are called Ammonotelic.

Ammonotelism is the term used to describe organisms that excrete ammonia or ammonium ions as the major waste product. It is a metabolic process that takes place in aquatic animals and some terrestrial animals.

Ammonia is formed in cells during the metabolic process of protein degradation. Because ammonia is a toxic compound, aquatic animals must expel it rapidly. And because it is extremely soluble in water, it can be readily excreted by aquatic animals without expending a lot of energy.

Hence, most water-breathing animals excrete nitrogen mainly as ammonia and are called ammonotelic.

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Where does the Golgi apparatus ship proteins to?

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Answer:

the Golgi apparatus sends proteins to lysosomes

Juan makes the comment to his classmate, Tasha, saying, "You have brown eyes,
and your parents have green eyes. You must have gotten your brown eyes from
your Uncle Dan." Is Juan's statement correct? Explain why or why not.

Answers

Answer:

Juan's statement is not necessarily correct, and it is not a reliable way to determine the inheritance of eye color. The inheritance of eye color is a complex trait that is determined by multiple genes, and it is not always predictable based on the eye color of an individual's parents or other relatives.

It is possible that Tasha inherited her brown eyes from a grandparent or great-grandparent, or from a more distant ancestor. It is also possible that Tasha's parents carried genes for brown eyes, even though they themselves have green eyes, and that these genes were passed on to Tasha. Alternatively, Tasha may have acquired her eye color due to a random genetic mutation.

Therefore, while it is true that genetics plays a role in determining eye color, it is not accurate to make assumptions about an individual's eye color based solely on the eye color of their parents or other relatives.

Nutrition is best described as the study of _____.
a. stress and its effects on health
b. foods and health
c. the medicinal properties of food
d. food safety and disease prevention

Answers

Answer:

The best description of nutrition is option b: foods and health.

Explanation:

Nutrition is the scientific study of how food affects the body, including how it is digested, absorbed, and metabolized, as well as how it affects growth, development, and overall health. Nutrition also involves the study of dietary patterns and the role of specific nutrients in the prevention and treatment of disease. Option a is incorrect because stress is not the primary focus of nutrition, although stress can have an impact on health. Option c is also incorrect because while some foods may have medicinal properties, the study of nutrition is not solely focused on this aspect of food. Option d is partially correct, but it does not fully encompass the breadth of the field of nutrition, which also includes the study of how foods can promote health and prevent disease.

an s-shaped curve that shows slow increase at first, rapid increase in the middle, and then little to no increase at the end as the curve flattens out at a stable number describes what type of population growth?

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An S-shaped curve that shows slow increase at first, rapid increase in the middle, and then little to no increase at the end as the curve flattens out at a stable number describes: logistic population growth.

Logistic population growth is a type of growth where the population starts off slowly and then increases rapidly up until the point where the carrying capacity is met, after which it will remain constant.

This can be seen in the S-shaped curve, where the initial slow increase is due to the resources being plentiful and the population able to increase, however, as the population continues to increase the resources become scarcer and the rate of increase decreases. Eventually, the population reaches a stable number where it will remain until resources are increased or a disturbance occurs.

The equation for logistic population growth is: ()= × (0)−

Where () is the population at time , is the carrying capacity, (0) is the initial population, is Euler’s number, and is the intrinsic rate of increase.

This equation describes the S-shaped curve which is a logistic growth. It starts off with a slow rate of increase due to resources being plentiful and then increases rapidly up until the carrying capacity is reached, after which it will remain constant until resources are increased or a disturbance occurs.

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which test involves preparing suspensions of an unknown bacterium in saline, adding different antisera, and checking for clumping?

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The bacterial agglutination test is a test that involves preparing suspensions of an unknown bacterium in saline, adding different antisera, and checking for clumping.

This test is used to identify bacterial species by the clumping or agglutination reaction that results when certain antibodies, known as agglutinins, are added to a bacterial suspension.

The antigenic specificity of the agglutinins corresponds to that of the unknown bacterium, so that if clumping occurs, the identity of the unknown bacterium can be determined.

To perform the bacterial agglutination test, first a suspension of the unknown bacterium is prepared in sterile saline.

Different antisera, each specific to a different species of bacteria, are then added to the suspension, one at a time.

The antisera contains agglutinins, which will bind to the antigens on the surface of the unknown bacterium, causing the bacteria to clump if a match is found. If no clumping occurs, this indicates that the unknown bacterium is not the same species as the antisera that was tested.

By repeating this procedure with different antisera, the species of the unknown bacterium can be identified.  

The bacterial agglutination test is a useful way to identify unknown bacterial species. By adding different antisera to the bacterial suspension and checking for clumping, the identity of the unknown bacterium can be determined.

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which of the following innovations may help to lessen world hunger for years to come? multiple select question. self-watering crops drought-resistant crops self-fertilizing crops pest-resistant crops

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Among the options presented, the innovation that can help reduce world hunger in the coming years is drought-resistant crops. This agricultural technology allows crops to survive in drought conditions, which means that farmers can continue to produce food, even in areas with reduced rainfall.

The other options are not as effective in fighting hunger.

Self-watering and self-fertilizing crops can help reduce production costs, but do not have a direct impact on the amount of food produced.On the other hand, pest resistant crops can protect crops from certain diseases and pests, but they do not necessarily improve food production.

In conclusion, the development of drought resistant crops is an important innovation in the fight against hunger and food security around the world. It is important to continue investing in research and development of agricultural technologies that make it possible to produce food in a sustainable and affordable way, especially in the regions most vulnerable to water scarcity and drought.

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people infected with hiv, the virus that causes the disease aids, can become unable to fight off infections by organisms that normally do not harm people. why is this so?

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People infected with HIV, the virus that causes the disease AIDS, can become unable to fight off infections by organisms that normally do not harm people because: HIV weakens the immune system.

The virus does this by attacking and destroying CD4 cells (also known as T-cells), which are a type of white blood cell that is essential for defending the body against infections.

HIV invades CD4 cells and copies itself, which causes the cell to die. This process causes the body to lose CD4 cells, and without them, it is unable to fight off infections by other organisms. Without treatment, HIV can also spread to other organs and tissues in the body, causing further damage to the immune system.

Ultimately, this makes it difficult for people infected with HIV to fight off infections by organisms that usually do not cause any harm.

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restriction-digested dna from two organisms is analyzed by southern blotting. restriction fragments of 2.0 and 3.5 kb are observed on the southern blot of one organism, and bands of 2.0 and 3.0 kb are observed for the other. what are the genotypes of these organisms?

Answers

The restriction-digested DNA from two organisms is analyzed by Southern blotting; restriction fragments of 2.0 and 3.5 kb are observed.

On the Southern blot of one organism the genotypes of these organisms are that they are heterozygous for a restriction site.

Southern blotting is a molecular biology technique used to identify specific DNA sequences in a sample. It was developed by the British biochemist Edwin Southern in 1975.

The method combines transfer of electrophoresis-separated DNA fragments to a filter membrane and subsequent fragment detection by probe hybridization.

The Southern blot technique includes four steps.

1. Restriction digestion: The first step is to digest the DNA sample with a restriction enzyme that cuts the DNA at specific sequence locations. The digestion creates DNA fragments of different lengths.

2. Gel electrophoresis: After restriction digestion, the DNA fragments are separated by size via electrophoresis, which separates the DNA fragments on the basis of their charge, size, and shape.

3. DNA transfer: The separated DNA fragments are transferred from the electrophoresis gel onto a nitrocellulose or nylon membrane, which is a process called blotting.

4. Hybridization: The membrane with the transferred DNA fragments is probed with a labeled DNA probe that is complementary to the target sequence. The hybridization process forms a stable bond between the labeled probe and the target DNA sequence.

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what is the term for the release of a mature ovum near a fallopian tube?

Answers

Answer: ovulation

Explanation:

when a young person reaches puberty, they begin to ovulate a process in which a mature egg cell also called an ovum that is ready for fertilization by a sperm cell is released from one of the ovaries two reproductive organs located in the pelvis

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explain the life cycle of a star with a mass of 10,000

Answers

The life cycle of a star with a mass of 10,000 will begin with the formation of a protostar within a cloud of gas and dust.

Life cycle of a star

A star with a mass of 10,000 times that of the Sun will follow a life cycle that begins with the formation of a protostar within a cloud of gas and dust.

As the protostar accretes more mass, it will eventually reach a critical point and ignite fusion reactions, becoming a main-sequence star. After several million years, the star will exhaust its hydrogen fuel and expand, becoming a red giant.

In this phase, the star will fuse heavier elements in its core, leading to the formation of a dense core of iron. Once the core reaches a critical mass, it will collapse in a supernova explosion, leaving behind either a neutron star or a black hole. The surrounding gas and dust will be expelled into space, where it may eventually form new stars and planets.

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a child with myopathy was found to have reduced oxidative phosphorylation but no mutations to the mt dna. interestingly, transcription rates were greatly reduced in mt of the child. what could explain these results?

Answers

The results could be explained by a defect in the mitochondrial transcription machinery.

This would lead to reduced transcription rates, which could then explain the reduced oxidative phosphorylation observed in the child with myopathy.

Mitochondrial transcription is essential for the production of proteins which are essential for oxidative phosphorylation, which is a fundamental metabolic process. In this case, the reduced transcription rates indicate a defect in the mitochondrial transcription machinery, likely a mutation or deficiency in one or more of the transcription factors that are responsible for the production of these proteins. This defect could lead to reduced oxidative phosphorylation in the affected individual, as is observed in this case. Thus, this explains the observed results of reduced oxidative phosphorylation but no mutations to the mtDNA.

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what happens if an immature b cell binds to a multivalent self antigen after the cell has emerged from the bone marrow?

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If an immature B-cell binds to a multivalent self-antigen after emerging from the bone marrow, it undergoes central tolerance to check if it is self-reactive.

An immature B-cell is a type of cell that has not yet encountered a specific antigen. They are produced in the bone marrow and subsequently enter the bloodstream as immature cells. They are not yet capable of producing antibodies. The process of maturation takes place after a B-cell has encountered an antigen. They undergo a transformation, eventually becoming plasma cells or memory B-cells. During this time, they produce and secrete antibodies to fight the invading antigen.

After emerging from the bone marrow, B cells undergo a process known as central tolerance to check if they are self-reactive. This means that immature B-cells that recognize self-antigens are identified and eliminated before they leave the bone marrow. As a result, they cannot cause damage to the body's own cells and tissues.

Hence, If immature B-cells evade this mechanism and recognize multivalent self-antigens, they undergo negative selection and are deleted or become functionally inactive.

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Experiment 2: genetic drift post-lab assessments 1. What observations can you make regarding the gene pool and gene frequency of the surviving individuals?

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As the number of survivors decreases, so does the gene pool, indicating that survival rates are entirely random. The total genetic diversity of a population or species is called a gene pool.

Over time, species have developed characteristics that enable them to thrive in their natural environment and maintain their existence in shifting environments. A species' ability to withstand disease, other stresses, and changeable conditions is enhanced by having more diverse genes.

The size of a population's gene pool is thought to have an impact on its capacity for adaptation and evolution. An enormous and different genetic supply, for instance, may work on a populace's opportunities for future transformation to changing natural circumstances.

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How many total oxygen, hydrogen, and carbon atoms are there in the reactants of cellular respiration?

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The reactants side consists of three different types of atoms: carbon, hydrogen and oxygen. There are 6 carbon atoms, 12 hydrogen atoms and 18 oxygen atoms.

The reactants side consists of three different types of atoms: carbon, hydrogen and oxygen. There are 6 carbon atoms, 12 hydrogen atoms and 18 oxygen atoms.

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explain the gentic relationship between the sharptail grouse and prairie chicken, assuming that both birds have a common ancestoer

Answers

The genetic relationship between the sharptail grouse and prairie chicken is one of common ancestry and shared genetic traits, as well as genetic differences that have accumulated over time through the processes of evolution.

If the sharptail grouse and prairie chicken both have a common ancestor, it means that they share a genetic relationship as they both inherited genetic traits from that common ancestor. As species evolve, genetic mutations occur and accumulate, leading to genetic differences between populations and eventually new species.

Over time, the sharptail grouse and prairie chicken populations likely became geographically isolated from each other, which could have led to the accumulation of genetic differences between the populations due to genetic drift, mutation, and natural selection. As a result, they eventually evolved into two separate species.

However, since they share a common ancestor, they likely share some genetic similarities as well. For example, they may have similar DNA sequences, particularly in genes that code for similar traits such as feather color, beak shape, or mating behaviors. Additionally, they may share similar genetic adaptations to their shared environment, such as foraging or nesting behaviors.

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at the mid atlantic ridge North america and south america move west while europe and africa move east what conclusin can you draw about the atlantic oceans size millions of years ago

Answers

This indicates that the distance between North America & Europe is increasing at a rate similar to how quickly your fingernails grow.

What leads to poor fingernails?

Fingernail issues are frequently brought on by trauma, infections, and skin conditions including eczema and psoriasis. Trauma, uncomfortable footwear, poor blood flow, inadequate nerve supply, and infection are all potential causes of toenail issues.

Can diabetes be detected in the fingernails?

Some diabetic patients develop brittle nails with a yellowish tint. This is frequently connected to how sugar is metabolized and how it affects the collagen in toenails. This yellowing of the nails occasionally may be a sign of an infection.

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the area of the figure f scores are normally distributed with a mean of 35 and a standard deviation of 10, what percent of the scores is: (a) greater than 34? tangible factors group of answer choices include the price and terms of agreement. are psychological motivations that influence the negotiations. include the need to look good in negotiations. cannot be measured in quantifiable terms. include the need to feel respected SOMEONE HELP PLEASE Kiki runs 4 3/7 miles during the first week of track practice she runs 6 2/3 miles during the second week of track practice. How much longer does kiki run during the second week of track practice than the first week of track practice a cell has an internal glucose concentration of 10mm and is placed into a solution containing 35mm glucose. the plasma membrane has glucose transporters present. what will happen to the internal glucose concentration in the cell? True or False: Compared to West European countries, political parties in the United States are stronger and better organized. An Olympic swimming pool is 25 meters wide. How many decimeterswide is an Olympic swimming pool? at the beginning of an oral presentation, skyler uses a quotation from abraham lincoln. skyler is attempting to . Types of incidental physical activity? household jobs and gardening theodore roosevelt's aggressive involvement in the panamanian revolt had the general international effect of 9. A helicopter spots two landing pads below. The straight-line distancefrom the helicopter to the pads is 14 miles to Landing Pad A and 8 milesto Landing Pad B. If the landing pads are 20 miles apart, find the angleof depression from the helicopter to Landing Pad B. The perimeter of a rectangular garden is 30 ft. The length is 3 ft more than the width. Find the length and the width of the garden. if you stand 8 m in front of a plane mirror and focus a camera on yourself, for what distance is the camera now focused? I need help with this1)Hypothesis: what you expect 2)Aim:To determine3) Apparatus/material4)Variables Controlled: Keep constant Manipulated-Change this Reporting -What you expect to change5) Expected results6) Limitations7)Source of errors8)Precaution PLEASE ANSWER!!29. Define the terms.exclusive jurisdiction:concurrent jurisdiction:original jurisdiction:appellate jurisdiction: a bag contains red balls, green balls, and yellow balls. if balls are drawn one at a time without replacement, the probability that the first yellow ball is drawn on the eighth draw is , what is the value of ? Using the words make up a sentence. Which one of the following selections uses a conversational but professional tone?a. Due to increasingly present vicissitudes in the market, this writer will be employing several corrective actions. b. GR8 news. The hag in marketing got fired. c. Janice, please implement the solution we discussed last week. can someone please write me a non fiction story that is 34 words :) you tell me, how could new york city possibly lose money if they sold central park to real estate developers?