many vaccinations are given to babies in the first few months after birth. the measle vaccine, however, is not needed by babies until they are almost one year old. which staement explain why newborn are NOT given the measles vaccine? A. newborns are affected by different disease than their mothers are. B. the immune system of a newborn is already fully matured and developed. C. newborns receive some antibodies from their mothers through the placenta. D. the antibodies of the vaccine would destroy the antibodies already present in the newborn.​

Answers

Answer 1

Answer:

C. newborns receive some antibodies from their mothers through the placenta.

Explanation:

This is because some of mother's virus-fighting antibodies may still be in a baby's body―providing some limited immunity but making the vaccine less effective until about 1 years old. Still, the early dose can offer some added protection when there is a high risk of measles exposure.


Related Questions

For neutral atoms with nonbonded electron pairs, nucleophilicity and basicity ____ from left to right across a period. Thus _____ is the most nucleophilic element in period 2

Answers

For neutral atoms with nonbonded electron pairs, nucleophilicity and basicity decrease from left to right across a period.

For neutral atoms with nonbonded electron pairs, nucleophilicity and basicity decrease from left to right across a period. This is due to the decreasing size of atoms from left to right across a period. As the size of atoms decreases, the nonbonded electron pairs are held closer to the nucleus, resulting in a greater degree of electron-electron repulsion. This makes it more difficult for the atom to donate its electrons to form new bonds, decreasing its nucleophilicity and basicity.
Thus, fluorine is the most nucleophilic element in period 2. Fluorine has the smallest size and the highest electronegativity of all the elements in period 2, making it the most attractive to other electron-rich species. Its nonbonded electron pair is also held very close to the nucleus, resulting in a high degree of electron-electron repulsion, which makes it highly reactive as a nucleophile. Its small size also allows it to approach other atoms very closely, which increases its reactivity as a nucleophile. As a result, fluorine is the most nucleophilic element in period 2.

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Sickle cell anemia is known to run in a family. A pedigree chart for this family is shown below.

The parents are shown at the top and from left to right appear as a half-shaded circle labeled 1 next to a half-shaded square labeled 2. The two are connected by a straight line. Below the parent pair is a vertical straight line connecting to the next row of circles and squares which are the offspring. Starting from left an unshaded square labeled 1, half-shaded circle labeled 2, another half-shaded circle labeled 3, and a completely shaded square are shown labeled 4. All of these are also connected by a horizontal straight line.

What best describes offspring 4?
A. A female carrier of the disease
B. A female having the disease
C. A male carrier of the disease
D. A male having the disease

Answers

The offspring labeled 4 in the pedigree chart is a male having the disease, option D is correct.

Based on the information provided in the pedigree chart, we can see that the parents (1 and 2) have had four offspring (1, 2, 3, and 4). Offspring 1 and 2 are unaffected by the disease, while offspring 3 is a female carrier of the disease.

Offspring 4 is shown as a completely shaded square, indicating that they have inherited two copies of the sickle cell gene and thus have the disease. Since offspring 4 is a completely shaded square, we can determine that they are male. Therefore, the best description for offspring 4 is "a male having the disease", option D is correct.

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how many total alleles are in the population’s gene pool at timepoint b?

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Without additional information about the specific population and genetic traits eing studied, it is impossible to determine the total number of alleles in the gene pool at time point b.

.The gene pool refers to all of the alleles present in a population for a particular gene or set of genes. It is influenced by factors such as mutation, migration, genetic drift, natural selection, and non-random mating.

To calculate the total number of alleles in a gene pool, one would need to know the number of individuals in the population and the frequency of each allele. This information could be obtained through genetic sampling and analysis.

It is important to note that changes in the gene pool over time can have significant impacts on the genetic diversity and health of a population. Monitoring and understanding the gene pool is therefore important for conservation efforts and the management of genetic diseases.

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when the ear suffers trauma, tearing of the overlying tissue from the cartilaginous plate may result in fluid accumulation, thus causing:

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When the ear suffers trauma, tearing of the overlying tissue from the cartilaginous plate may result in a condition called hematoma auris, which is characterized by fluid accumulation in the ear.

Hematoma auris is commonly seen in athletes involved in contact sports such as wrestling and rugby. The accumulation of fluid can put pressure on the cartilage, which can cause permanent damage if left untreated. The treatment for hematoma auris involves draining the fluid and applying pressure dressings to prevent further accumulation. If left untreated, hematoma auris can lead to complications such as infection, scarring, and deformity of the ear. Therefore, it is important to seek medical attention if you suspect you have suffered an ear trauma to prevent any long-term damage.

When the ear experiences trauma, it can lead to the tearing of the overlying tissue from the cartilaginous plate. This damage may result in fluid accumulation, which consequently causes a condition known as auricular hematoma. The accumulated fluid, often blood, can cause swelling, pain, and pressure on the surrounding tissues. If left untreated, an auricular hematoma can lead to complications such as infection, tissue death, or the development of cauliflower ear, a permanent deformity of the outer ear. Immediate medical attention is crucial to prevent these complications, and treatment typically involves draining the fluid, applying pressure dressings, and sometimes, surgical intervention to repair the damaged tissue.

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list the specific instruments you would use in trimming and finishing the provisional.

Answers

For trimming a temporary, the more popular selections include acrylic laboratory burs and discs.

What is provisional trimming?

Provisional trimming refers to a preliminary or temporary trimming process applied to sequencing data during bioinformatics analysis.

In next-generation sequencing (NGS) technologies, raw sequencing reads often contain low-quality bases, adapter sequences, or other artifacts that can impact downstream analysis and interpretation.

During provisional trimming, these unwanted portions of the sequencing reads are removed or trimmed to improve the quality of the data.

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how is penicillin removed from the blood? multiple choiceglomerular filtrationtubular secretiontubular reabsorptionphagocytosispassive transport

Answers

Penicillin removed from the blood through tubular secretions.

B is the correct option.

The renal tubules actively and quickly secrete all of the penicillins, and the majority are almost entirely unchangedly removed in the urine. The majority are expelled in little amounts in the bile, however this is one of the main ways that nafcillin is removed from the body.

Oral bioavailability of penicillin G ranges from 15% to 30%. Due to gastric acid degradation, the stomach's environment reduces its absorption. Oral penicillin G absorbs more readily in hypochlorhydric patients, such as older people, because their gastric pH is rising.

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The complete question is:

how is penicillin removed from the blood? multiple choice

A. glomerular filtration

B. tubular secretion

C. tubular reabsorption

D. phagocytosis

E. passive transport

one of the explanations for why imprinting occurs in mammals is that it balances the paternal interest in fathering large, robust babies with the maternal need to balance resources between herself and the developing fetus. this is called the

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The given statement "one of the explanations for why imprinting occurs in mammals is that it balances the paternal interest in fathering large, robust babies with the maternal need to balance resources between herself and the developing fetus" is called the parental conflict hypothesis.

It suggests that imprinting in mammals evolved as a means of resolving the potential conflict between the mother and father's interests in offspring development. Paternal genes may favor larger, more resource-demanding offspring, while maternal genes may favor smaller, less demanding offspring. Imprinting allows for a balance between these conflicting interests, as the offspring's development is influenced by both parents but still maintains a level of independence.

This hypothesis is supported by observations in several mammalian species, such as mice and humans, where imprinting plays a role in regulating fetal growth and development.

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after mitosis, what percentage (%) of the original cell's genetic information can now be found in each daughter cell?

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After Mitosis 100% of the original cell's genetic information can now be found in each daughter cell.

The two daughter cells that emerge from mitosis are perfect replicas of the parent cell. With 30 chromosomes, each daughter cell will have 30. Each cell (i.e., gamete) would have 15 chromosomes by the conclusion of meiosis II, which is half of the original number.

The cell has two 46-chromosome groups when mitosis is finished, each encased in its own nuclear membrane. The cell then undergoes a process known as cytokinesis to divide into two identical copies, each of which has 46 monovalent chromosomes.

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What term is used to describe how well an organism functions in its
environment?
OA. Selection
OB. Fitness
OC. Evolution
OD. Variation
SUBM

Answers

Answer:  A. Selection

Explanation:

slowing the krebs's cycle will have what immediate affect on: the concentration of atp produced?

Answers

Slowing down the Krebs cycle will result in a decrease in the immediate production of ATP.

The Krebs cycle, also known as the citric acid cycle or the tricarboxylic acid cycle, is an important metabolic pathway that occurs in the mitochondria of cells. It plays a crucial role in the production of ATP, the primary energy currency of cells. During the Krebs cycle, a series of chemical reactions take place, leading to the generation of high-energy electron carriers, such as NADH and FADH2, which are then used in the electron transport chain to produce ATP.

Slowing down the Krebs cycle would disrupt the flow of reactions and reduce the generation of NADH and FADH2. As a result, there would be a decrease in the availability of these electron carriers for the subsequent steps of ATP production in the electron transport chain. This would directly impact the immediate production of ATP, leading to a lower concentration of ATP being generated. Thus, slowing down the Krebs cycle would have an immediate effect of reducing the concentration of ATP produced.

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environmental contaminant that causes potential harm to living organisms a.otc b.sti c.addiction d.pollutant

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The answer is D. A pollutant is an environmental contaminant that has the potential to cause harm to living organisms.

Living organisms are entities that have certain characteristics such as the ability to reproduce, grow and develop, maintain homeostasis, respond to stimuli, and carry out metabolism. These organisms can range from simple single-celled bacteria to complex multicellular organisms such as plants, animals, and humans.

Living organisms are made up of cells, which are the basic unit of life. Cells are able to carry out various functions necessary for the organism's survival, including obtaining nutrients, eliminating waste, and producing energy. Living organisms interact with their environment and other organisms within it. This interaction can take many forms, including competition for resources, cooperation for survival, and predation.

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the bones in the front fins of wahles and the bones in the human arm evolved from a common ancestor but carry out different functions this is an example of

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The bones in the front fins of whales and the bones in the human arm evolved from a common ancestor but carry out different functions. This is an example of homologous structures. The correct option is A.

What are homologous structures?

Similar physical characteristics found in species with a shared origin are known as homologous structures, although these characteristics have entirely different biological purposes.

The limbs of humans, cats, whales, and bats are examples of homologous structures. Despite sharing a similar progenitor, they have undergone distinct modifications to perform varied tasks.

Analogous organs have comparable functions, while homologous tissues share a similar embryonic origin.

For instance, the bones in a human arm and a whale's front flipper are anatomically similar. The constructions here are not comparable. The wings of a butterfly and a bird are similar but not identical.

Thus, the correct option is A.

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Full Question ;

The bones in the front fins of whales and the bones in the human arm evolved from a common ancestor but carry out different functions. This is an example ofA. homologous structures.B. vestigial structures.C. embryonic structures.D. analogous structures.

the genetic material of all living things is dna, as far as we know. viruses, however, may also use ______ as their genetic material.

Answers

The genetic material of all living things is DNA, or deoxyribonucleic acid. DNA contains the instructions for the development, growth, and reproduction of all living organisms.

The genetic material of all living things is DNA, or deoxyribonucleic acid. DNA contains the instructions for the development, growth, and reproduction of all living organisms. It is a long, complex molecule made up of four building blocks, or nucleotides, arranged in a specific sequence. However, viruses are not considered living organisms, and they may use different types of genetic material.
Some viruses use RNA, or ribonucleic acid, as their genetic material instead of DNA. RNA is a similar molecule to DNA, but it is single-stranded and uses a slightly different type of nucleotide. RNA viruses include retroviruses like HIV and influenza viruses.
Other viruses may use other types of genetic material, such as double-stranded DNA or even circular DNA. Some viruses, like the bacteriophage, can have both DNA and RNA as their genetic material.
Overall, while DNA is the primary genetic material for all living things, viruses can use a variety of genetic materials depending on their structure and life cycle.

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why it is important to use only a small amount of bacteria when preparing a smear.

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Using only a small amount of bacteria when preparing a smear is important to avoid overcrowding on the slide, which can lead to inaccurate results and difficulty in distinguishing individual cells.

A bacterial smear is a technique used to prepare bacterial cells for microscopic examination. It involves spreading a small amount of bacterial culture onto a clean glass slide, allowing it to air dry, and then fixing it with heat or chemicals. The purpose of a smear is to observe the bacterial cells under the microscope and identify their morphology, arrangement, and staining properties.

Using too much bacterial culture on the slide can lead to overcrowding, which can make it difficult to distinguish individual cells or clusters of cells from one another. This can also lead to inaccurate results and misinterpretation of the cell morphology or arrangement. Additionally, overcrowding can cause the cells to become distorted or damaged, making it harder to observe their staining properties or other features.

In contrast, using only a small amount of bacterial culture on the slide ensures that the cells are evenly spread out and easy to observe. This allows for accurate identification of the bacterial morphology, arrangement, and staining properties. Overall, using a small number of bacteria when preparing a smear is important to ensure the accuracy and reliability of the results obtained from the microscopic examination.

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a lytic virus has infected a patient. which of the following would best describe what is happening inside the patient?The virus is incorporating its nucleic acid with that of the patient's cells. The virus is causing the death of the infected cells in the patient. The virus is not killing any cells in the host. The virus is slowly killing the patient's cells. The virus is infecting cells and then releasing only small amounts of virus.

Answers

If a lytic virus has infected a patient, it means that the virus is actively replicating and causing damage within the host.

The best description of what is happening inside the patient is that the virus is causing the death of the infected cells in the patient.

This is because lytic viruses replicate rapidly and destroy host cells by bursting them open, releasing new virus particles to infect neighboring cells.

As the virus spreads, it can lead to tissue damage and symptoms of infection. Unlike some other types of viruses, lytic viruses do not incorporate their nucleic acid with that of the patient's cells, nor do they slowly kill cells over time or release only small amounts of virus.

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the cells that produce testosterone in the testis are called . the cells that produce testosterone in the testis are called . spermatocytes interstitial endocrine cells sustentacular cells spermatogonia

Answers

The cells that produce testosterone in the testis are called interstitial endocrine cells, which are also known as Leydig cells. Option (B)

These cells are located in the interstitial tissue of the testis, which is the tissue surrounding the seminiferous tubules where sperm is produced. Interstitial endocrine cells are responsible for synthesizing and secreting testosterone, the primary male sex hormone, which plays a critical role in the development of male reproductive tissues, secondary sexual characteristics, and the maintenance of male reproductive health.

In addition to testosterone, these cells also produce small amounts of other androgens and estrogen precursors.

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Full Question: What are the cells that produce testosterone in the testis called?

A. Spermatocytes

B. Interstitial endocrine cells

C. Sustentacular cells

D. Spermatogonia

xplain why the number of alleles per gene in an individual can be different from the number of alleles per gene in a population

Answers

The number of alleles per gene in an individual can be different from the number of alleles per gene in a population because an individual only inherits two alleles (one from each parent) for a particular gene, while a population can have multiple individuals with different alleles for the same gene. This means that the total number of alleles in a population can be greater than the number of alleles an individual carries for that gene. Additionally, new alleles can arise through mutations or gene flow in a population, increasing the number of alleles in the population over time. Therefore, the number of alleles per gene can vary between individuals and populations.
The number of alleles per gene in an individual can be different from the number of alleles per gene in a population due to genetic diversity. In an individual, there are generally two alleles for each gene, one inherited from each parent. However, in a population, there can be multiple variations of the same gene, leading to a higher number of alleles per gene. This diversity within the population arises from mutations, genetic recombination, and migration, contributing to the overall genetic variation and adaptability of the species.

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Explain the role of antidiuretic hormone when there is less water in the human body​

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Antidiuretic hormone (ADH) plays a crucial role in regulating the amount of water in the human body.

When there is less water in the body, ADH is released by the pituitary gland in the brain to increase water reabsorption in the kidneys. The kidneys are responsible for filtering waste products from the blood and excreting them as urine. In normal conditions, excess water is excreted along with the waste products. However, when the body is dehydrated and needs to conserve water, ADH signals the kidneys to reabsorb more water from the urine and return it to the bloodstream. This reduces the amount of urine produced and helps to retain water in the body. ADH works by binding to specific receptors in the kidneys, which activates a signaling pathway that leads to the insertion of water channels (aquaporins) into the cells lining the kidney tubules. These channels allow water to be reabsorbed from the urine and returned to the bloodstream. As a result, less water is lost through urine and more is retained in the body. In summary, the role of ADH when there is less water in the human body is to increase water reabsorption in the kidneys, which helps to conserve water and prevent dehydration.

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mineral deficiency can impair the body's response at altitude, and consumption of rich foods may help facilitate the necessary increase in red blood cell production
T/F

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True. A mineral deficiency can impair the body's response at altitude due to the reduced oxygen concentrations found at higher elevations.

Minerals such as iron, copper, and zinc are essential for red blood cell production, which is essential for the body to respond effectively at higher elevations.

Consuming foods high in these minerals can help increase red blood cell production and improve adaptation to reduced oxygen concentrations at altitude.

For example, iron can be found in foods like red meat, legumes, and nuts; copper is found in animal organs and seafood; and zinc can be acquired through various nuts, seeds, legumes, and whole grains. Eating a healthy, balanced diet with adequate amounts of these minerals could bolster a better response to altitude and its related effects.

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a disease of the light-sensitive innermost layer of the eyeball is called a disease of the light-sensitive innermost layer of the eyeball is called leukocoria. retinopathy. scleropathy. papilledema. retinoblastoma.

Answers

Retinoblastoma is a rare type of cancer that affects the retina, the light-sensitive tissue at the back of the eye. It most commonly occurs in young children and can lead to vision loss or even loss of the eye if not treated promptly. The correct answer is d. retinoblastoma.

Symptoms may include leukocoria or a white reflection in the pupil of the affected eye, strabismus, and vision problems.

Leukocoria is not a disease but a symptom that can occur in several eye conditions, including retinoblastoma. It refers to a white reflection in the pupil instead of the normal red-eye reflection seen in photographs. Retinopathy refers to damage or disease of the retina, while scleropathy refers to disease of the sclera, the white outer layer of the eye. Papilledema refers to swelling of the optic disc, the point where the optic nerve enters the eye, and is often associated with increased pressure inside the skull.

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PLEASE HELP
For this assignment, you can write a paragraph explaining how the digestive system breaks down macromolecules into molecules the body can use. Be sure to include any websites you used to research this.

Exercise and Homeostasis Lab Report *

Answers

Answer:

The digestive system breaks down macromolecules into molecules that the body can use through a process involving several organs and enzymes. The breakdown begins in the mouth, where mechanical digestion breaks food into smaller pieces, and salivary amylase initiates the breakdown of carbohydrates. In the stomach, gastric juices, including hydrochloric acid and pepsin, break down proteins into amino acids. The majority of digestion takes place in the small intestine, where pancreatic enzymes like amylase, lipase, and proteases further break down carbohydrates, fats, and proteins, respectively. Bile, produced by the liver, aids in the digestion and absorption of fats. The final breakdown products, such as monosaccharides, fatty acids, glycerol, and amino acids, are absorbed by the enterocytes in the small intestine lining. These molecules are then transported via the bloodstream to cells throughout the body, where they are utilized for energy production, growth, and repair.

Sources:

- Tortora, G. J., Derrickson, B., & Grabowski, S. R. (2017). Principles of Anatomy and Physiology. Wiley.

- Martini, F. H., Nath, J. L., & Bartholomew, E. F. (2017). Fundamentals of Anatomy & Physiology. Pearson.

Explanation:

(a) write the complete animal class. your implementation must meet all specifications and conform to the behavior shown in the tale

Answers

The animal class in the tale is a group of creatures that are personified and possess human-like characteristics and behavior.

The main characters such as the tortoise, the hare, and other supporting characters like the fox, the owl, and the raccoon.

The implementation of the animal class must meet the specifications of the tale, where each animal is given a unique personality and attributes that contribute to the plot and the moral of the story. For example, the hare is portrayed as arrogant and overconfident, while the tortoise is depicted as humble and persistent.

Moreover, the behavior of the animals must be consistent with their real-life counterparts. For instance, the tortoise's slow and steady pace is reflective of its actual behavior in nature, while the hare's swift movements also align with its natural abilities.

Overall, the animal class in the tale serves as a metaphor for human behavior and teaches valuable lessons about humility, perseverance, and the consequences of overconfidence.

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formulate a plausible pathway from arginine to putrescine, using this intermediate. drag the appropriate labels to their respective targets. labels can be used once, more than once, or not at all.

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The plausible pathway from arginine to putrescine involves the intermediate ornithine.

Arginine is first converted to ornithine through the action of the enzyme arginase. Ornithine is then decarboxylated by ornithine decarboxylase to produce putrescine. The pathway can be represented as follows:
Arginine --> Ornithine --> Putrescine

Thus, the intermediate in the pathway is ornithine.
Pathway: Arginine → Ornithine (intermediate) → Putrescine
1. Arginine is first converted to Ornithine by the enzyme Arginase.
2. Ornithine is then decarboxylated by the enzyme Ornithine Decarboxylase, resulting in the formation of Putrescine.
In this pathway, Ornithine acts as the intermediate connecting Arginine and Putrescine.

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C. What is the precision of the scientific study?​

Answers

Explanation:

The precision of a scientific study refers to how exact and consistent the measurements or results of the study are. A study is considered precise if it produces consistent and reproducible results with little variation between repeated measurements.

Precision is often expressed in terms of the standard deviation or standard error of the mean, which measures the amount of variation in the data. The smaller the standard deviation or standard error, the more precise the results are considered to be.

In general, scientific studies aim to achieve high levels of precision in their measurements and results in order to ensure the accuracy and reliability of their findings.

The precision of a scientific study refers to the degree of exactness or reproducibility of the measurements or results obtained from the study. In other words, it reflects the level of consistency and accuracy of the data collected in the study.

Dominguez et al. (2004) suggest that by studying genes that determine growth and tissue specification in the eye of Drosophila, much can be learned about human eye development. Part A What evidence suggests that genetic eye determinants in Drosophila are also found in humans? a. A number of studies have shown that different genes influence eye development in O insects and vertebrates. Such genes, that have different sequences but similar functions, are called orthologs. b. Although Drosophila and humans have genes with similar sequences, the genes do not have similar functions and therefore are not orthologous genes. c. A number of studies have shown that genes of one family influence eye development in all the species. Such genes, that have identical promoters, are called orthologs. d. A number of studies have shown that similar genes influence eye development in both insects and vertebrates. Such genes, descended from common ancestral genes that have the same function in different species, are called orthologs.

Answers

D). The evidence that suggests genetic eye determinants in Drosophila are also found in humans is that similar genes influence eye development in both insects and vertebrates.

These genes are called orthologs, which are descended from common ancestral genes that have the same function in different species. This means that the genes responsible for eye development in Drosophila have counterparts in humans that are responsible for human eye development.Furthermore, a number of studies have shown that different genes influence eye development in both insects and vertebrates. Although the genes may have different sequences, they have similar functions and are called orthologs. This suggests that there is a conserved mechanism for eye development that has been retained across different species over time.

It is important to note that although Drosophila and humans have genes with similar sequences, the genes do not necessarily have similar functions and are not orthologous genes. However, the fact that there are orthologous genes between different species suggests that studying the genes that determine growth and tissue specification in the eye of Drosophila can provide insights into human eye development.

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when excess macromolecules are converted to triglycerides and stored in fat cells.

Answers

Excess macromolecules are stored in the form of triglycerides in fat cells.

When we consume more calories than our body needs, the excess macromolecules are converted into triglycerides by a process called lipogenesis. These triglycerides are then stored in adipose tissue as a form of energy reserve. When the body needs energy, it can break down these triglycerides through a process called lipolysis. However, if we continue to consume more calories than we burn, these triglyceride stores can become too large, leading to obesity and other health issues. Therefore, maintaining a healthy diet and regular exercise routine is essential for preventing the accumulation of excess triglycerides in the body.

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natural family planning, or fertility awareness, is a method that can be used to achieve or prevent pregnancy. it is based on the ability to predict ovulation. measuring which hormone would be the best predictor for ovulation and why? view available hint(s)for part a natural family planning, or fertility awareness, is a method that can be used to achieve or prevent pregnancy. it is based on the ability to predict ovulation. measuring which hormone would be the best predictor for ovulation and why? progesterone estrogen luteinizing hormone follicle-stimulating hormone

Answers

Natural family planning, or fertility awareness, is a method that can be used to achieve or prevent pregnancy. It is based on the ability to predict ovulation. Measuring luteinizing hormone would be the best predictor for ovulation.

After thirty-six to forty hours of the rise of the blood level of Luteinizing hormone, ovulation is triggered, this phenomenon is known as the LH surge. Detection of LH surge in blood serum or urine is generally very optimal for ovulation, providing accuracy and figuring the capacity of the conception.

Luteinizing hormone is an anterior pituitary hormone also called as the gonadotrophic hormone.

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according to charles darwin's theory of natural selection, evolution occurs with individuals or populations?

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According to Charles Darwin's theory of natural selection, evolution occurs with populations.

Darwin proposed that evolution is driven by the process of natural selection, which involves the differential survival and reproduction of individuals within a population based on their inherited traits. The traits that confer an advantage in a particular environment are more likely to be passed on to the next generation, while traits that are disadvantageous are more likely to be lost over time.

As a result of these selective pressures, populations can gradually accumulate genetic changes that enable them to adapt to changing environmental conditions over many generations. It is important to note that natural selection operates on the level of the individual organism, but its effects are seen at the population level over time.

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.Which of the following does not occur during prophase I of meiosis?
A) Chromosomes begin to condense.
B) Crossing over between homologous pairs occurs.
C) Pairs of homologous chromosomes are formed.
D) Spindle microtubules form.
E) Homologous pairs of chromosomes align at the metaphase plate.

Answers

The following does not occur during prophase I of meiosis: Homologous pairs of chromosomes align at the metaphase plate. The correct option is E.

This is because during prophase I of meiosis, homologous pairs of chromosomes undergo synapsis and crossing over occurs between them. The chromosomes condense and the nuclear envelope breaks down. The spindle microtubules form and attach to the kinetochores of the homologous chromosomes.

However, it is during metaphase I that the homologous pairs of chromosomes align at the metaphase plate, and this is a critical step in ensuring the proper segregation of chromosomes during meiosis.

Therefore, Homologous pairs of chromosomes align at the metaphase plate, as it occurs during metaphase I and not prophase I of meiosis. It is important to understand the steps involved in meiosis to better understand the mechanisms of genetic diversity and inheritance. The correct option is E.

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welcome to australia! you sit at the bank of a subtropical river and notice a funny creature: the duck-billed platypus (a monotreme, or egg laying mammal endemic to australia). both ducks and platypuses have bills which are adaptations to their aquatic habitats, where they search for food. the bills of ducks and platypuses are an example of: group of answer choices reinforcement monophyly homology apomorphy convergence

Answers

The correct option is C, The bills of ducks and platypuses are an example of homology.

Homology is a term used in biology to describe a similarity between different organisms or structures that are derived from a common ancestor. Homologous structures have similar anatomical features or genetic sequences that suggest a shared evolutionary history. For example, the wings of a bat, the arms of a human, and the flippers of a whale are homologous structures because they share a common origin in the forelimbs of their shared ancestor.

Homology can also refer to genetic similarities between different organisms. Genes that are homologous in different species are believed to have evolved from a common ancestor gene. Homologous genes can be used to track evolutionary relationships between organisms. Overall, homology is an important concept in biology because it provides evidence for evolutionary relationships between organisms and helps to uncover the history of life on Earth.

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