in a series of dihybrid crosses, pea plants with round, green seeds were crossed to plants with wrinkled, yellow seeds. all of the progeny had round, yellow seeds. what conclusions can be drawn from this data? multiple choice question. round is dominant to wrinkled and yellow is dominant to green wrinkled is dominant to round and yellow is dominant to green round is dominant to wrinkled and green is dominant to yellow wrinkled is dominant to round and green is dominant to yellow

Answers

Answer 1

Answer: yellow and round are dominant

Explanation: dominant traits are always expressed in heterozygous individuals. if all offspring are yellow and round, that means those are the dominant traits.


Related Questions

What is proposed explanation for an observation?

Answers

A hypothesis is a theory put up to explain a phenomenon. A hypothesis must be tested via the scientific process in order to be considered scientific (s).

What is the name of the explanation of an observation?

A hypothesis is a provisional explanation for an observation, occurrence, or scientific issue.

What kind of observation would this be?

A simple observation might be to observe an apple drop from a tree. Another observation is realising that the fish only visit a specific area of the river in the morning. Another illustration of observation is the smell of waste rotting.

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bone grafting can result in rebuilding some bone lost because of disease. group of answer choices true false

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True , Bone grafting is a surgical process in which diseased or damaged bones are repaired and rebuilt using donated bone. A bone transplant can be used to heal bones practically anywhere in your body.

To accomplish the transplant, your surgeon may remove bone from your hips, legs, or ribs. Deepened pocket depths with alveolar bone loss result in tooth movement, drifting, flaring, and eventually loss of the afflicted tooth as periodontal tissue deterioration progresses. In severe situations, where multiple teeth are damaged, these anomalies cause the biting function to collapse.

When plaque and tartar accumulate beneath the gumline, bacterial toxins begin to degrade bone and connective structures. The immune system responds to combat the infection, but this alone will not prevent bone loss.

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What level of protein structure is associated with the sequence of amino acids?

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The level of protein structure that is associated with the sequence of amino acids is the primary structure.

What are amino acids?

Amino acids are the monomers that will form proteins, they are organic molecules that will have two ends that characterize them: one end where it has an amino group and one end with a carboxyl group.

The amino acids through amide bonds (or better named peptide bonds) will come together to form peptides. This reaction will happen in the cytoplasm of the cells thanks to the ribosomes that will generate these unions. There are different types of amino acids and they can be classified into three groups: essential, non-essential and conditional amino acids.

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Pa help po pls.... I really need help po. I'll mark brainliest who answered po.

Design Your Offspring:
Create your imaginary offspring. Bring in a picture or drawing of yourself and of your sweetheart, favorite celebrity, or dream girl or guy (this pictures are not included).

1. Attach your picture to your poster (this pictures are not included). Next to each picture, describe the traits and give each a genotype. (Use your imagination)
2. Identify two different possible children. Show and describe the phenotypes and genotypes for each children.
3. Show a monohybrid cross using your trait. (Example. Mm x mm). Show the Punnet and the ratios produced. Include the genotype and phenotype in the punnet square.

Answers

The monohybrid cross of the given trait of height represented by H and h is given in the attached picture.

The phenotypic ratio is 3 : 1

What is a monohybrid cross?

A monohybrid cross is made up of two organisms that have distinct variants at the same genetic locus. In a monohybrid cross, two or more variations for a single gene site control the trait under study.

The trait that is used in this cross is height, where H represents the allele for tallness and h represents the allele for shortness.

H is dominant over h

Hh x Hh = HH, Hh, Hh, and hh

Hh and HH are the phenotypes for tall

hh is the phenotype for short

The phenotypic ratio is 3 : 1

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how do the descending limb of the loop of henle function with the thick ascending limb of the loop of henle, and the vasa recta to reabsorb na , cl- and water?

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Because the descending region of the loop of Henle is extremely permeable to water and less permeable to ions, water is easily reabsorbed here while solutes are not.

Water is particularly permeable in the thin descending limb and is reabsorbed due to the existing concentration gradient in the medulla. While being fully impermeable to water, sodium, chloride, and potassium are readily reabsorbed in the thick ascending limb.

Simple squamous epithelium lines the slender limbs (descending and ascending). The thin descending loop is permeable to water (which is easily transported to the interstitium) but not to solutes. The thin ascending limb, on the other hand, is extremely permeable to sodium but impermeable to water.

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These are not visible in the cell during interphase

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Cells spend most of their time in a stage called interphase.

What is visible in the cell during interphase?

During interphase, single chromosomes are not visible, and the chromatin appears diffuse and cluttered. In general, the nucleolus is visible only in interphase cells. attendant with the condensation of chromosomes as the cell detains mitosis, the nucleolus is observed to decrease in size, then vanish as RNA synthesis stops.

Chromatin is in its least condensed stage through the interphase stageInterphase is the portion of the cell cycle that does not go with visible interphase changes under the microscope, and involves the G1, S, and G2 phases These are not visible in the cell during interphase. Mitosis. This is the name for when one cell divides into two. Haploid.

So we can conclude that The interphase is the time when the cell is in a non-dividing state and this can be in different stages

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from the time it is formed until it reproduces, the cell undergoes growth and carries out its functions in the body. what is the name for this portion of the cell's life cycle? from the time it is formed until it reproduces, the cell undergoes growth and carries out its functions in the body. what is the name for this portion of the cell's life cycle? growth and development interphase life phase functional phase

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The name for this portion of the cell's life cycle is the interphase, while the name of the period from the time it is formed until it reproduces, the cell undergoes growth and carries out its functions in the body is the functional phase.

What is the interphase of the cell cycle?

The interphase of the cell cycle is the period in which the cell grows and produces all required for cell division including DNA duplication.

Therefore, with this data, we can see that the interphase of the cell cycle where the cell increases its size.

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dr. van nostrand is trying to understand how messages are sent between the nervous system and endocrine system. he has no practical application in mind. what type of work is he doing?

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Dr. Van Nostrand is doing pure research.

Pure basic research is research that is done only for the purpose of advancing knowledge, without considering the long-term economic or societal advantages, and without making any conscious efforts to directly adapt the findings to real-world issues or to the sectors that will be using them.

Understanding fundamental traits and functions are the main goal of pure research. For instance, determining the components and characteristics of drinking water is pure research. The utilization of knowledge to produce practical materials is the subject of applied research. Understanding fundamental traits and functions are the main goal of pure research.

The utilization of knowledge to produce practical materials is the subject of applied research. Pure and practical research can occasionally blur together.

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passive gene–environment correlations are __________.

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Since childhood, there have been links between passive gene-environment and the family environment.

What kinds of gene-environment relationships are there?

The gene-environment correlation (rGE) phenomena states that genetics can affect an individual's susceptibility to bad and/or protective circumstances. There are three distinct varieties of rGE: passive, evocative/reactive, and active.

What exactly does the term "gene-environment correlation" mean?

The idea of gene-environment correlation states that our genes have an impact on the surroundings to which we are exposed. Males are more likely to be impacted when an X chromosome-based deleterious allele is present. The term "passive gene-environment correlation" describes the relationship between a child's genotype—which they receive from their parents—and the environment in which they grow up.

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How is gene linking an expectation of the law of independent assortment 

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Answer:different genes and their alleles are inherited independently within sexually reproducing organisms. During meiosis, chromosomes are separated into multiple gametes. Genes linked on a chromosome can rearrange themselves through the process of crossing-over.

Explanation:During meiosis, chromosomes are separated into multiple gametes. Genes linked on a chromosome can rearrange themselves through the process of crossing-over.

media used to isolate specific types of microorganisms from saliva, feces, or any other sample that contains many microbial species are called

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Media used to isolate specific types of microorganisms from saliva, feces, or any other sample that contains many microbial species are called selective media.

When isolating or identifying a specific organism, the use of selective and differential mediums is necessary. The growth of other sorts of organisms is inhibited by selective media, which only enable particular kinds of organisms to flourish. There are a few different approaches that can be taken to achieve selectivity.

For instance, organisms that are able to consume a certain sugar can be easily tested for utilization of that sugar by making that sugar the only carbon source present in the medium. The addition of dyes, antibiotics, salts, or specialized inhibitors that have an effect on the metabolism or enzyme systems of the organisms is another method that can be used to produce selective inhibition of certain types of bacteria.

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The spindle apparatus is fully formed by the end of?

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The spindle fibers apparatus is fully formed by the end of prophase in the cell cycle.

Spindle fibers are An essential component of the segregation of chromosomes during cell division is the spindle machinery. Its creation is important for the precise segregation of chromosomes during mitosis and meiosis. It is made of microtubules and related proteins.

Centrosomes, the primary microtubule organizing structures in cells, travel to the opposite poles of the cell during prophase and start to arrange the microtubules into a bipolar array. The condensed and visible chromosomes are subsequently interacted with by these microtubules, which aid in separating and aligning the chromosomes at the metaphase plate.

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why is sensation important for bionic limbs? group of answer choices for feedback, e.g., so you know how hard you're squeezing something

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For the iconic limb to progress in terms of sensation, reintegration/embodiment of the mechanical limb, and controllability, the sensation is crucial.

According to the type of tissue interfaced, bionic limbs can be divided into three primary categories: direct muscle, direct nerve, and nerve-transferred muscle interfacing (also known as targeted muscular reinnervation).

The residual nerves in the amputated stump are transferred to the accessible muscles through a process called targeted muscular reinnervation (TMR).

Direct intramuscular implants for direct muscle interfacing capture muscle contractions, which are subsequently wirelessly transmitted through a coil built into the socket to initiate prosthesis movement.

In the third category, prosthetic sensors are directly interfaced with residual nerves via implantable electrodes, allowing for the receiving of electrical signals. This may enhance the phantom limb's sense of touch.

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due to the psa and other conservation efforts, forest cover within costa rica has recovered since 1983 to cover how much land today?

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In 1983, the country had lost approximately 50% of its original forest cover, but since then, there has been a concerted effort to restore and protect the remaining forested areas.

As of 2021, it is estimated that forested areas cover in Costa Rica now covers approximately 52% of the country's land area. This recovery is largely due to the establishment of the National System of Conservation Areas (SINAC) in 1989, which established several protected areas, including the creation of the famous PSA (Payment for Environmental Services Program).

The PSA and other conservation efforts have been successful in preserving and restoring forested areas in Costa Rica. This has not only had positive impacts on the country's biodiversity, but it has also contributed to the local economy by attracting eco-tourism and supporting sustainable development initiatives.

Overall, the recovery of forest cover in Costa Rica is a testament to the effectiveness of conservation efforts and the positive impact that they can have on the environment and local communities.

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Chromatin, which consists of dna and associated proteins, undergoes coiling and condenses during cell division to form?

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Chromatin, which consists of DNA and associated proteins, undergoes coiling and condenses during cell division to form chromosomes.

DNA and histones, which are bundled into fine, string-like fibers, make up chromatin. Although these chromatin fibers are not condensed, they can exist in heterochromatin, which is a compact form, or in a less compact form (euchromatin). In euchromatin, procedures like DNA replication, transcription, and recombination take place. Chromatin condenses to produce chromosomes during cell division.

Condensed chromatin is arranged in single-stranded clusters called chromosomes. Chromosomes replicate throughout the mitosis and meiosis cell division processes to make sure that each new daughter cell receives the appropriate number of chromosomes. A duplicated chromosome bears the well-known X shape and is double stranded. The centromere, which is located in the center, is where the two identical strands are joined.

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daphnia (water fleas) usually reproduce asexually by cloning. what causes individuals to switch to sexual reproduction?

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Daphnia or the water fleas usually reproduces via asexual method of cloning but it is also able to switch to sexual reproduction as a response to environmental stimuli.

Daphnia is basically a free-living aquatic organism whose habitat is in freshwater environments.  They can be found in almost every nutrient-rich fresh body of water which are surrounded by numerous other freshwater organisms as well as plants. The highest concentrations of Daphnia are found in the vegetation of the most lakes and ponds.

They reproduce predominantly via asexual means but can also switch to sexual reproduction as a response to the environmental stimuli.

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If a competitive inhibitor is present in an enzymatically catalyzed reaction, then:
A. Km↑ & Vmax↓
B. Km↓ & Vmax↑
C. Km↑ & Vmax is same
D. Km is same & Vmax↓

Answers

An inhibitor is a substance that competes for active site on enzyme with substrate. Therefore, Km↑ & Vmax is same because this is always a reversible reaction.

What is inhibitor?

An Inhibitor is a substance that slow down the rate of reaction or reduces the efficiency of a catalyst. Inhibitor is also a substance which when added to an environment in small concentrations, it leads to corrosion. Inhibitors are of two types Anodic and Cathodic Inhibitors. Inhibitors can slowdown the corrosion by forming a protective film. Inhibitors are frequently biological molecules that interact with a specific chemical reaction, either during the reaction or by preventing the reaction from occurring at all.

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need answer 15-29 thank you!!

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Two types of cell division occur: Meiosis and Mitosis. Meiosis results in four genetically distinct daughter cells, each with half the number of chromosomes as the parent cell.Potential evolutionary changes can occur more frequently due to the rapid rate of mutation and genetic variation.

What is Two types of cell division?This type of cell division is essential for sexual reproduction and the creation of sperm and egg cells.Mitosis, on the other hand, is a type of cell division that results in two identical daughter cells, each with the same number of chromosomes as the parent cell. Mitosis is important for the growth and repair of tissues and the maintenance of a constant number of chromosomes in a cell.In summary:Meiosis results in four genetically distinct daughter cells, each with half the number of chromosomes as the parent cell.Mitosis results in two identical daughter cells, each with the same number of chromosomes as the parent cell.Potential evolutionary changes can occur more frequently due to the rapid rate of mutation and genetic variation. Evolution is the process of gradual change in species over time, driven by the accumulation of genetic changes. The frequency of potential evolutionary changes is influenced by the rate of mutation and the availability of genetic variation.When mutations occur more frequently, there is a greater likelihood that new genetic variations will arise, and when genetic variation is abundant, there is a greater chance that natural selection will act on these variations to drive evolutionary change. Thus, when the rate of mutation and genetic variation is high, the potential for evolutionary change is also high, leading to more frequent evolutionary changes.In summary: Potential evolutionary changes can occur more frequently due to the increased rate of mutation and genetic variation, leading to the possibility of new genetic variations and the influence of natural selection on these variations.

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Describe issues of using animals in research and use the studies to verify the points made.

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ANIMALS RESEARCH

Using animals in research raises a number of ethical, scientific, and practical concerns. Here are some of the most commonly cited issues:

Ethical concerns: There is a strong argument that it is morally wrong to subject animals to procedures that may cause pain, suffering, or death, especially when there are alternative methods available. This is especially true for animal species that are capable of experiencing pain and suffering, such as monkeys, dogs, and cats.

Scientific validity: Some studies have shown that results obtained from animal research may not accurately reflect human physiology or disease processes. This is due in part to the fact that animals may respond differently to drugs or diseases than humans do. Additionally, some animal models may not fully capture the complex nature of human diseases, leading to a lack of generalizability of results to the human population.

Practical limitations: There are also practical limitations to using animals in research, including the cost and time involved in conducting studies and the difficulty of obtaining and maintaining large animal colonies. Additionally, there may be legal and regulatory barriers to using certain animal species in research, particularly those that are endangered or protected.

Know more about the topic:

There is a growing body of research that supports the concerns listed above. For example, a systematic review of preclinical studies found that only about 6% of drugs that were found to be effective in animal studies were later found to be effective in humans (Crunelli and Leresche, 2002). Another study found that animal models often failed to predict human outcomes for a variety of diseases, including cancer, stroke, and heart disease (Schmidt and Woo, 2006).

In conclusion, while animal research has been an important tool in advancing medical knowledge, it is clear that there are significant ethical, scientific, and practical limitations to using animals in research. These limitations have led to increased efforts to develop alternative methods that are more humane, scientifically valid, and practically feasible.

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The use of animals in research has been a subject of ethical debate for many years. Here are some of the key issues related to using animals in research and some studies to verify these points:

Pain and Suffering: One of the primary concerns with using animals in research is the potential for pain and suffering. This can occur as a result of invasive procedures, confinement, or other stressors. Studies have shown that many animals used in research experience significant pain and distress, which can impact their well-being and compromise the validity of the results.
Species Differences: Another issue with using animals in research is the difference between species and their responses to various stimuli. For example, what works in mice may not work in humans. This can limit the validity and applicability of the results from animal studies to humans.
Cost and Efficiency: Conducting animal studies can be expensive, time-consuming, and resource-intensive. This can result in limited funding for other types of research and slow the overall pace of discovery. Additionally, animal studies often produce conflicting or inconclusive results, which can be a hindrance to progress.
Ethical Considerations: The use of animals in research raises important ethical questions about the value of animal life and the rights of animals. Many people believe that it is wrong to subject animals to harm, pain, or death, regardless of the potential benefits to humans.
Several studies have addressed these issues and have shown that the use of animals in research has significant limitations. For example, a meta-analysis of animal studies found that only about a quarter of treatments that are effective in animals are effective in humans. Another study found that the use of animals in research is associated with significant limitations in terms of the predictability and generalizability of results.

While animal studies play an important role in advancing medical knowledge, it is important to consider the limitations of this type of research and to balance the potential benefits with the ethical concerns

Do you think the skater will make it over the first hump?
(no friction on the track)

A- no, because his potential energy will be converted to thermal energy
B- no, because he doesn’t have enough potential energy
C- yes, because all of his potential energy will be converted to kinetic energy
D- yes, because some of his energy will be potential and some kinetic

Answers

Answer:

B- no, because he doesn’t have enough potential energy

simple is that

the sites from which the spindle fibers form, separate to opposite poles during_______

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The sites from which the spindle fibers form, separate to opposite poles during anaphase.

After metaphase, after dna is replicated are divided and the new self chromosomes are transferred to opposing poles of the cell, there occurs a phase of mitosis called anaphase.  Every daughter cell obtains an equivalent set of chromosomes thanks to anaphase.

A protein structure called a spindle fibre divides a cell's genetic material. Both mitosis and meiosis, two kinds of nuclear division, require the spindle to divide the chromosomes in a mother cell into two daughter cells in an equal number. The spindle fibres are known as the mitotic spindle during mitosis.

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a cell, like those found in the embyro, that can develop into any cell type is described as being

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A cell that may differentiate into any type of cell, such as those seen in the embryo, is said to be pluripotent.

These embryo stem cells are pluripotent, which means they can divide to create other stem cells or any form of cell in the body. In the body, stem cells have the capacity to differentiate into a wide variety of cell types. They act as the body's system for repairs.

Adult stem cells and embryonic stem cells are the two primary categories of stem cells. The inner cell mass and trophectoderm cells are both present in early mammalian embryos during the blastocyst stage. The zygote repeats its chromosomes through a process known as mitosis.

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which hormone's secretion promotes the loss of sodium ions and water by the kidneys and inhibits renin release?

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Principal cells absorb sodium and release potassium into the lumen in response to aldosterone.

A steroid hormone called aldosterone is released by the adrenal glands. Its major function is to control how much salt and water the body retains, which has an impact on blood pressure. Your kidneys and intestines get a signal from aldosterone to increase the quantity of sodium or potassium they release into your urine or deliver into your circulation. The action of aldosterone on salt elevation allows your body to retain water within your blood, increasing blood volume. Principal cells absorb sodium and release potassium into the lumen in response to aldosterone.A substance called antidiuretic hormone (ADH) is created in the brain and makes the kidneys release less water, which reduces the volume of urine produced. The body produces less pee when ADH levels are high.

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why is it acceptable to transfuse an ab person with a packed cells but unacceptable to transfuse type a whole blood?

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Because it may result in a potentially fatal disease known as a hemolytic transfusion reaction, it is not appropriate to transfuse type A whole blood into an AB person.

Red blood cell destruction results from the body of the recipient attacking the transfused blood cells because type A whole blood includes A antigens that are incompatible with the recipient's B antigens. Packed cells are a safer option for transfusion since they do not have the same antigen composition as whole blood. Blood is transfused by attaching a tube from the donor's vein to the recipient's vein and pumping the blood via the tube. A skilled medical professional usually performs blood transfusions in a hospital or clinic setting.

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if a pollen spore is unable to carry s proteins in its pollen coat, can plants still prevent the germination of this pollen if it is too genetically similar?

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Plants have evolved various mechanisms to prevent self-fertilization and to promote outcrossing, which can increase genetic diversity and increase the fitness of the offspring. One mechanism is the prevention of germination of genetically similar pollen.

Plants' ability to avoid self-fertilization has been linked to the pollen coat's S-protein content. These proteins adhere to the female stigma, where the plant's self-incompatibility mechanism detects them. The self-incompatibility system will block pollen germination if it determines that the pollen and the female plant are too genetically similar.

However, the plant's self-incompatibility system might not be able to identify a pollen spore as being too genetically similar if it is unable to contain S-proteins in its pollen coat. In this situation, it's possible that the pollen will grow, fertilize the ovules, and cause self-fertilization.

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Which factor(s) can prevent permanent fixation of an allele (i.e. maintain genetic diversity)?
a. Genetic drift
b. Gene flow
c. Natural selection
d. Mutation

Answers

It is possible to prevent an allele from becoming permanently fixed by controlling gene flow and mutation factors (i.e. maintain genetic diversity).

Why is there no allele fixation?

There are only two methods to make a fixed allele unfixed: either by accidental mutations that produce new alleles or through immigration.

How does allele fixation's genetic diversity work?

If fixation frequency is low and fixation duration is brief, single alleles will slowly spread throughout a population, resulting in little genetic diversity. A population will often have more segregating alleles as a result of high fixation probability or long fixation durations, increasing genetic diversity.

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what is a distinctive feature of all eukaryotic cells?

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A distinctive feature of all the eukaryotic cells is the presence of membrane bound organelles and a presence of a well defined nucleus.

Eukaryotic organisms basically include algae, fungi, protozoans, plants, and animals. Some of the eukaryotic cells are independent as well as single-celled microorganisms, whereas other eukaryotic cells are a part of multicellular organisms. Eukaryotic cells are basically defined by the presence of well defined a nucleus which is surrounded by a complex nuclear membrane.

Eukaryotic cells also have a presence of membrane-bound organelles in their cytoplasm. The genome of these cells is found to be packaged in multiple, rod-shaped chromosomes compared to the single as well circular-shaped chromosome that characterizes most prokaryotic cells.

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What conditions are required for enzymes to work?

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For enzymes to function, there are three requirements.

1. Temperature: Enzymes denature beyond their optimal temperature; below it, they remain inactive.

2. pH: Enzymes work best at their ideal pH. Enzyme denaturation results from ionization of ions occurring at the active site above the optimal level.

3. Focus on the substrate Because there is less substrate bound to the active site of the enzyme at low substrate concentrations, the reaction proceeds slowly. After there is a high concentration of the substrate, the reaction's rate increases and stabilizes when all of the enzymes have been completely bound to the substrate and no more enzyme-substrate complexes are forming.

In the mild conditions of the cells' temperature, pH, and pressure, enzymes work as catalysts to speed up chemical reactions. They stand out for their exceptional specificity and efficacy. The things that enzymes operate on are called substrates. The name of the substrate that an enzyme modifies (such as urease and tyrosinase) or the sort of reaction it catalyzes is followed by the suffix -ase to name an enzyme (dehydrogenase, decarboxylase). Some have illogical names (pepsin and trypsin). Each enzyme is given a name and a number by the International Union of Biochemistry and Molecular Biology to identify it.

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what happens to the field of view in a compound light microscope when the total magnification is increased?

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The field of view in a compound light microscope decreases as the total magnification increases.

The concept of the field of view in a compound light microscope refers to the comprehensive expanse of the specimen under scrutiny that can be discerned through the ocular of the instrument.

As the total magnification is augmented, whether by incorporating more powerful objective lenses or by escalating the magnification factor of the eyepiece, the field of view necessarily dwindles.

This reduction in the field of view is an inevitable outcome of the increased magnification, which hones in on a restricted portion of the specimen, thereby affording a more meticulous and magnified representation of that specific region, but at the cost of a curtailed general panoramic view of the specimen.

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What are some examples of endothermic and exothermic reactions that you can see in your everyday life?

please use your own examples guys

Answers

Answer:Endothermic reactions are chemical reactions that absorb heat from their surroundings. Examples include:

Dissolving an effervescent tablet in water (releasing carbon dioxide gas)

Photosynthesis in plants

Melting of ice

Exothermic reactions are chemical reactions that release heat into their surroundings. Examples include:

Combustion of fossil fuels (e.g. gasoline, coal)

Cooking food (e.g. baking, grilling)

Rusting of iron

Respiration in humans and animals

Chemical hand warmers that release heat when activated.

Explanation:

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During the obama administration, firms developing lowcost batteries for electric cars received large amounts of federal funding via subsidies. meanwhile, american households gave a higher priority towards minimizing their environmental impact. consider the market for zeroemissions electric vehicles, where there is an upwardsloping supply curve and a downwardsloping demand curve.Requied:Which direction will demand and supply shift? how many ways can we assign the 8 teachers in 4 schools if each school is to receive at least one teacher and n more than 3 g the two man-headed bulls facing each other that are symmetrical on either side of the central figure are in what type of composition? for a normal distribution, what standard score (z-score) has 80% of the distribution above it? find the closest value listed on the table. A survey stopped men and women at random to ask them where they purchasedgroceries, at a local grocery store or online. Results are shown in the table below, butsome values are missing. Fill in the missing values. Jackson kept track of how long it took to finish his homework each day.Time Jackson spent on homeworkDay MinutesMonday 48Tuesday 39Wednesday 35Thursday 35Friday 41According to the table, what was the rate of change between Thursday and Friday?minutes per day Once organisms like virus and fungi invade a body do they leave quickly what is a main idea? (1 point) responses an action that leads to the main event in a text an action that leads to the main event in a text a short statement of the main events of a text a short statement of the main events of a text a lesson that is not stated in a text a lesson that is not stated in a text a concept introduced in the middle of a text during the current year, merchandise is sold for $869000. the cost of the merchandise sold is $465000. what is the amount of the gross profit the nurse is teaching a group of nursing students about the physiologic consequences of hypotension and reduced perfusion to the kidney. which compensatory mechanism occurs immediately after renin release from the kidney? A+b+c=90 and 12a+10b+6c=870 solve for a,b, and c This graph shows the solutions to the inequalities y> 3x+ 14 and y 1. Christopher states the hypothesis that a mouse's body temperature decreases as the air temperaturearound the mouse decreases. He wants to design an experiment to test his hypothesis. What shouldthe dependent/ outcome variable be in this experiment?A. The air temperatureB. The mass of the mouseC. The mouse's body temperatureD. The amount of time for the experiment the town of mamou has two judges that hear all of the traffic violations from the previous week. each judge can only preside over one violation at any given time. the database that has been developed has a judge table and a violation table. what type of relationship exists between these tables? T/F perceptive listeners are mainly concerned with extra-musical connections or associations. Group maintenance roles affect a group's ability to achieve its common goal by focusing onbehaviors that help get the job done.True or False the beginning balance in accounts payable was $4,000 and $100 of supplies were purchased on account. if the ending balance in accounts payable is $3,400, the the amount paid for supplies purchased on account was blank and is found on the blank of the accounts payable t-account. multiple choice question. based on the first chapter, a. what do you think some of the conflicts in the novel are going to be? cite evidence from the text to support your predictions. b. what do you think the themes might be? cite evidence from the text to support your predictions. data mining has evolved in recent years. kroger is an example of how data mining can be used as a separate revenue generating model. how does kroger use third party aggregators to sell consumer information back to the supply chain? what benefits does the customer obtain by allowing the use of purchase information? The table shows the number of students graduating from a university in selected years. Use a calculator to write a cubic model for the number of graduates in a given year since 1990. Then use the model to estimate the number of graduates in 2001. P(x) 27.13x3 473.44x2 + 2829.33x 4381.69The estimated the number of graduates in 2001 is 5,565. P(x) 473.44x2 + 2829.33x 4381.69The estimated the number of graduates in 2001 is 4,133. P(x) 473.44x2 2829.33x + 4381.69The estimated the number of graduates in 2001 is 3,535. P(x) 27.13x3 + 473.44x2 2829.33x + 4381.69The estimated the number of graduates in 2001 is 2,504.