No recombination of homologs occurs?

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Answer 1

No recombination of homologs occurs in mitosis.

Mitosis is a stage of the cell cycle during which replicated chromosomes are separated into two new nuclei. Mitosis results in the formation of genetically identical cells with the same number of chromosomes. As a result, mitosis is also referred to as equational division.

Mitosis is only found in eukaryotic cells. Prokaryotic cells, which lack a nucleus, divide through a process known as binary fission. Mitosis differs from organism to organism. Animal cells, for example, go through "open" mitosis, in which the nuclear envelope breaks down before the chromosomes separate, whereas fungi go through "closed" mitosis, in which the chromosomes divide within an intact cell nucleus.

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Related Questions

Most of the radiation incident upon the Earth falls within the ________ part of the spectrum.
A) short wave
B) long wave
C) infrared
D) x-ray
E) radar

Answers

Answer:

A) short wave

a group of scientists is studying the effect of a particular herbicide on the activity of plant cells. they want to observe the impact of the chemicals on the molecular structures inside the cell. which microscope would be the best tool for this research?

Answers

Answer:

...

Explanation:

Why are researchers interested in sequencing eukaryotic genomes?

Answers

The researchers are interested in genome because  -The information can be used to better understand evolutionary relationships among organisms.

Genome sequencing is the process of sequencing an organism's entire genome. Many technologies for high-throughput sequencing and data handling have been developed. The clone-by-clone method and whole genome shotgun sequencing are the two most common genome sequencing methods.To identify genetic variations, two methods, whole exome sequencing and whole genome sequencing, are increasingly used in healthcare and research; both rely on new technologies that allow rapid sequencing of large amounts of DNA. These methods are referred to as next-generation sequencing (or next-gen sequencing).

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fat digestion results in ________.

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Fat digestion results in monoglyceride and free fatty acids.

Complete emulsification of lipids is necessary for effective fat digestion. Increased lipase activity exposure area is made possible by this emulsification. Bile salt includes phospholipids, cholesterol, and bile acid (lecithin). The molecule of bile acid is similar to that of detergent. Known as emulsification, this structure aids in the dispersion of fats into smaller packets (fat water mixer).

Gastric lipase, bile emulsification, and pancreatic lipase are all involved in the digestion of triglycerides. Free fatty acids and monoglycerides are the end product. Similar to this, dietary cholesterol esters go through de-esterification to become free cholesterol.

Monoglycerides and fatty acids that were absorbed went through epithelial cells and created chylomicron. Triglycerides and other lipids are present in the lipoproteins known as chylomicrons (cholesterol, fat-soluble vitamins, etc.). Through lymphatic vessels, the chylomicrons enter the bloodstream.

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What is it called when animals release carbon?

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For a cell to produce the energy it requires, it must breathe. Cellular respiration is the term for this process. By mixing glucose with oxygen from the air, organisms create energy during the process of respiration.

Diffusion is the primary mechanism used to exchange gases. At the lungs' alveoli's surface, gases are exchanged externally. Internal gas exchange occurs at the tissue surface. Animals breathe, releasing carbon dioxide into the atmosphere and absorbing oxygen.

What is the term for the release of carbon by plants?

Through respiration, plants release half of the carbon dioxide they have absorbed through photosynthesis into the atmosphere. Additionally, plants release oxygen into the air through photosynthesis.

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Fertilization occurs when _____.

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ANSWER:

Fertilization happens when a sperm cell successfully meets an egg cell in the fallopian tube.

EXPLANATION:

Once fertilization takes place, this newly fertilized cell is called a zygote. From here, the zygote will move down the fallopian tube and into the uterus. The zygote then burrows into the uterus lining.

What process do consumers use to break down food molecules?

Answers

Cellular respiration is a process used by consumers to obtain the energy required for metabolic processes. The process by which glucose and oxygen are transformed into energy, carbon dioxide, and water is known as cellular respiration.

What is the name of the procedure where molecules are broken down?

Complex molecules are broken down during catabolism. Glucose, amino acids, and fatty acids are broken down from complex substances during catabolism to create substrates for metabolic pathways. Anabolism and catabolism are the two main components of metabolism.

What is released by consumers as they digest food to get energy?

During cellular respiration, the reaction between glucose and oxygen produces ATP. As byproducts, water and carbon dioxide are released.

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The multicellular descendant of the united sperm and ovum that implants on the wall of the uterus is known as the?

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The multicellular descendant of the united sperm and ovum that implants on the wall of the uterus is known as the Blastocyst

A normally developing embryo will have six to ten cells three days after fertilization. The fertilized egg is known as a blastocyst — a rapidly dividing ball of cells — by the fifth or sixth day. The embryo will be formed by the inner group of cells. The outer group will develop into the cells that feed and protect it.The blastocyst grows and develops within the womb lining during weeks 4 to 5 of early pregnancy. The outer cells extend their reach to connect with your blood supply. They will eventually form the placenta (afterbirth). The embryo develops from the inner group of cells.

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what will happen if excess oxygen in plants does not excrete​

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the plant will end up dying not not prouduce oxygen

Excess oxygen in plants can lead to oxygen toxicity, causing oxidative damage, impaired photosynthesis, and potentially cell death.

Excess oxygen in plants, if not properly excreted, can lead to oxygen toxicity. This condition occurs when oxygen levels exceed the plant's capacity to utilize or release it. Oxygen toxicity triggers the production of reactive oxygen species (ROS), which are highly reactive molecules that cause oxidative stress and damage to cellular components. This damage impairs photosynthesis, stunts growth, and can eventually lead to cell death.

To counteract oxygen toxicity, plants have evolved mechanisms such as producing antioxidants and enzymes to neutralize ROS. Additionally, plants with well-developed root systems release excess oxygen into the soil, where it can be utilized by other organisms. These adaptations help plants maintain a balance in oxygen levels and ensure their survival and growth.

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The complete question is:

What will happen if excess oxygen in plants does not excrete​?

A cell underwent mitosis but not cytokinesis. What would the result be?

A. One cell with one nucleus containing twice the normal number of chromosomes.

B. One cell with two nuclei, each containing a normal number of chromosomes.

C. Two daughters cells that are unusually small.

D. Two daughter cells twice the number of chromosomes.

Answers

Answer:

B. One cell with two nuclei, each containing a normal number of chromosomes.

Explanation:

Cytokinesis is the final step of mitosis in which the contents of the cell (cytoplasm and nuclei) are separated into two distinct, identical daughter cells. Mitosis without cytokinesis results in a cell with more than one nucleus but a connected cytoplasm (syncytium).

which of the following statements best describes the role of adenylyl cyclase in the epinephrine signaling pathway?

a. It converts polymer to its monomer subunits.
b. It move sudstances acruss the plasma membrane
c. It accelerates the production of second messenger
d. It transfers phosphate groups from ATP protein substrates

Answers

Adenylyl cyclase stimulates the generation of a second messenger as part of the epinephrine signaling cascade.

An enzyme called adenylyl cyclase is able to change ATP molecules into cyclic adenosine monophosphate AMP (cAMP). The cAMP molecule is regarded as a second messenger that carries the epinephrine hormonal signal inside the cell. cAMP then binds to and activates cAMP-dependent protein kinase A, which in turn triggers molecular signaling events (PKA). Last but not least, this protein (PKA) phosphorylates many proteins that regulate a wide range of complex biological activities.

Thus, Adenylyl cyclase stimulates the formation of second messengers as part of the epinephrine signaling cascade.

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What is the ratio of the offspring with white petals to the total number of offspring?.

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The ratio of the offspring with white petals to the total number of offspring Is 1:4 or 25%.

Heterozygous is different forms of a particular gene that is inherited from parent. e.g Gene A has form of A and a

A cross between two heterozygous pea plants

Pea plant A is Aa

Pea plant B is Aa

Therefore, a cross between the 2 plants will give

Aa×Aa

I

AA Aa Aa aa ,The total number of offspring is 4 (AA, Aa,Aa,Aa)

where AA,Aa and Aa are Purple pea plant and aa is a white pea plant. Since the number of pea plant is 4, the ratio of the offspring with white petals will be 1:4 in the number of offspring in % will be

1/4*100= 25% of the total population.

Therefore, The ratio of the offspring with white petals to the total number of offspring is 1:4 and the express this in a percentage is 25%.

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the respiratory system supplies oxygen to the blood in the body, while removing carbon dioxide. which system directly interacts with the respiratory system to maintain homeostasis?

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The system directly interacts with the respiratory system to maintain homeostasis is nervous system.

The nervous system is the primary control system for homeostasis among all physiological systems. It monitors, responds to, and regulates all processes in the human body and other species. It works from the smallest level of individual cells to the entire body at once.

Inside and outside the body, receptors are continually monitoring situations and looking for changes. When a bodily system departs from its regular operating range and goes outside of its set point, signals are transmitted across the nervous system, triggering reactions to bring the system back into its typical operating range.

This is the homeostasis process. Over millions of years, very complex and sophisticated mechanisms have developed. Skin thermoreceptors and mechanoreceptors, for example, detect changes in temperature and pressure.

The signals transmitted from them to the brain allow them to recognize circumstances that might result in damage or death. This ability to sense and react to the environment is crucial for sustaining homeostasis in the body.

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Why do cells have different characteristics?

Answers

Explanation:

The cell types in a multicellular organism become different from one another because they synthesize and accumulate different sets of RNA and protein molecules. They generally do this without altering the sequence of their DNA.

How does empathy help other people?

Answers

Empathy helps people to understand how others are feeling so we can respond appropriately to the situation.

Empathy is crucial because it allows us to understand how others are experiencing so that we can respond properly. It is commonly related with social behavior, and there is a large body of research demonstrating that increased empathy leads to more helpful behavior.

The researchers discovered that when individuals witnessed members of ethnic groups other than their own in pain, a brain region called the anterior cingulate cortex, which is frequently activated when we see others in suffering, was less active.

However, in other cases, feeling less empathy for a specific group of individuals may be beneficial. In a conflict, for example, it may be advantageous to feel less empathy for those you are attempting to kill, especially if they are also attempting to hurt you.

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What 4 factors do bacteria need to grow?

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Bacterial growth necessitates the following 4 conditions: temperature, moisture, pH and environmental oxygen.

Food must be handled properly to avoid food poisoning since optimal temperature is critical for the growth of any particular kind of bacteria. In most circumstances, but not all, refrigerating or freezing food is sufficient to inhibit the growth of disease-causing germs like Staphylococcus aureus.

Bacteria require moisture to develop and perish without it. Bathrooms and kitchens, for example, are particularly prone to bacterial development. The presence of water in food also offers an ideal habitat for many different species of bacteria to flourish.

Food acidity is another major element influencing bacterial development. To assist inhibit bacterial development and allow for longer storage, preservatives that raise the acidity of food, such as citric acid, are routinely added. Lemon juice and vinegar have a comparable effect.

Bacterial growth can be strongly influenced by the presence of oxygen. Many disease-causing bacteria prefer or require an oxygen-rich environment to thrive. While low oxygen levels limit the growth of certain types of bacteria that might ruin food, others flourish in the absence of oxygen.

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Each gram of fat you consume provides over twice as many calories as a gram of protein or carbohydrates. what does this tell you about your body’s ability to burn off these three fuels? which would require the most energy to burn?

Answers

Since each gram of fat you consume provides over twice as many calories as a gram of fat, this tells us that it requires more energy to burn off fats than it does to burn off protein or carbohydrates. It takes the longest amount of time to burn off fats, then proteins and carbohydrates are the easiest to burn off.

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which of the following is not a normal response to physical exercise? multiple choice increased blood flow to the skeletal muscles increased blood flow to the abdominal viscera increased ventricular contraction increased heart rate

Answers

Increased blood flow to the abdominal viscera in digestive system is not a normal response to physical exercise.

How beneficial is physical exercise ?

Exercise helps your circulatory system function more effectively and distributes oxygen and nutrients to your tissues. Additionally, you have greater energy to complete daily tasks as your heart and lung health improves.

In humans, increased sympathetic vasoconstriction, which reduces blood flow to the visceral organs during exercise, is accompanied by an increase in sympathetic neural activity in the working muscle group.

Your internal systems start sending signals to various body parts as soon as you start exercising, instructing them to respond in various ways. Your digestive system slows down so that your heart and lungs can take precedence, and your pupils enlarge, boosting the amount of glucose that is available in your blood for energy.

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What is the probability of a phenotype?

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These percentages are based on the fact that each of a Punnett square's four offspring boxes is 25%. (1 out of 4). Only 25% of phenotypes will be G, whereas 75% will be Y. Every time a new child is born to parents with YG genotypes, these are the chances.

We can forecast gene expression in next generations of organisms thanks to phenotypic ratio. We map particular parental alleles and estimate the likelihood that they will be expressed in the offspring using phenotypic ratio estimates.

Although it is feasible to determine the very simple genetic make-up of the parents by looking at visible qualities (phenotypes) in their offspring, knowledge of allele dominance is necessary.

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What is the growth rate of bacteria?

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Bacterial generation times range from 12 minutes to more than 24 hours. In the laboratory, the generation period for E. coli is between 15 and 20 minutes, while in the digestive tract, the generation time is thought to be between 12 and 24 hours.

What is the growth rate of bacteria?

Bacterial Growth Model is Validated by Proteomics Data Reasons it matters Bacteria double every 4 to 20 minutes, making them one of the fastest reproducing species in the world.

Why is bacterial growth rate important?

Growth of bacterial cultures is defined as an increase in the total number of bacteria present as opposed to a change in cell size.

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The presence of high levels of fecal coliform bacteria in a water source indicates that the water: ________

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answer :

disease-causing organisms ( pathogens )

could be in the water system.

The presence of high levels of fecal coliform bacteria in a water source indicates that the water: is contaminated with human waste.

High coliform counts in the water indicate human waste contamination.

Escherichia coli, or coliform bacteria, can be found in the intestines of humans. It is an efficient bacteria. These microorganisms enter the water when feces are released by people near water bodies.

The count of E. coli colonies per 100 milliliters of water is used to measure water contamination. Coliform microbial density is the name of the test. There should be no colonies in drinking water, 200 in bathing and swimming pool water, and 1000 in recreational (fishing and boating) water, according to the standards for water quality.

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explain why every replication of a linear molecule of dna leads to a shortening of the dna molecule.

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Every replication of a linear molecule of DNA leads to a shortening of the DNA molecule Because there is no free 3' -OH, DNA Polymerase is unable to fill.

The chromosomes of eukaryotes differ from those of prokaryotes. The chromosomes of prokaryotic organisms are not linear, whereas those of eukaryotic organisms are. The replication process will differ between eukaryotes and prokaryotes due to this fundamental structural difference. To overcome some of the difficulties posed by linear chromosomes, eukaryotic replication requires the assistance of multiple enzymes.

During replication, gaps are left at the ends of linear chromosomes, which DNA Polymerase is unable to fill because there is no free 3' - OH group. This is one of the main issues with linear chromosomes. This leaves the end open to debasement.

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"Members of the team know their boundaries (rules/limits) and ask for help before the resuscitation attempt worsens."
Match the statement with the most appropriate element of team dynamics listed.
answer choices
Knowledge sharing
Summarizing and reevaluation
Constructive intervention
Knowing your limitations

Answers

The statement of "Member of the team know their boundaries (rules/limits) and ask for help before the resuscitation attempt worsens" is the element of knowing your limitations.

What is mean about knowing your limitations?

Knowing your limitations is one of a element of team dynamics in CPR. The other elements is closed loop communication, knowledge sharing, summarizing and re-evaluation, mutual respect, clear messages, clear roles responsibilities, and constructive intervention.

Team dynamics in CPR is the one of most important aspect when trying to save a life with multiple rescuers. So, elements of team dynamics play an important role to ensure team dynamics work well and can save people's lives.

For the statement it tell us about the members of the team know their boundaries which it mean they know their limitations. Thus, the most appropriate element is knowing your limitations.

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FILL IN THE BLANK. in response to stimuli from the sympathetic nervous system, the arrector pili ________.

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The response to stimuli from the sympathetic nervous system is that the arrector pili: are responsible for goose bumps.

The sympathetic nervous system is the part of the nervous system that is responsible for exciting the body. It is involved in body's flight-or-fight response. The system is activated when the body is stresses, in danger or is physically active.

Arrector pili is the tiny muscle that is present at the base of the hair follicle and attached to it from one end and with the dermal tissue from the other end. The muscles are responsible for the production of heat in the body when it is cold and it does so by making all the body hairs stand straight up.

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What is the mutation that causes 70% of cases of cystic fibrosis?

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ΔF508 mutation that causes 70% of cases of cystic fibrosis.

What is Cystic Fibrosis?

Cystic fibrosis is an inherited life-threatening disorder characterized by damage to the lungs and digestive tract which affects the cells that produce mucus, sweat, and digestive juices, making these fluids thick and sticky. They then plug the tubes, ducts, and passageways.

It is a disease that is passed down through families and is caused by a faulty gene that causes the body to make an abnormally thick and sticky fluid, called mucus. This mucus is produced in the airways of the lungs and in the pancreas.

CF mutations are mainly caused by F508del which is thought to be a processing mutation. The F508del mutation removes a single amino acid from the CFTR protein.

Thus,  ΔF508 mutation that causes 70% of cases of cystic fibrosis.

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What was it called when slaves were taken from Africa?

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The transatlantic slave trade, also known as the Triangular Trade, was the name given to the historical practice of forcibly transporting millions of African people to the Americas as slaves.

What are Slaves?

Slaves are people who are owned by another person and forced to work without pay. Slaves have no rights and are treated as property, and they cannot leave their master’s control unless they are freed. Slavery has been practiced in many cultures throughout history and is still practiced in some parts of the world today.

Transport of enslaved Africans, primarily to the Americas, by slave traders is known as the Atlantic slave trade, transatlantic slave trade, or Euro-American slave trade. From the 16th to the 19th centuries, the triangular trade route and its Middle Passage were frequently used in the slave trade.

What is the Transatlantic slave trade?

The Transatlantic slave trade was the forced transportation of millions of Africans to the Americas between the 16th and 19th centuries. The slaves were forcibly taken from their homes in Africa and sold to European colonists, who then put them to work on plantations in the Caribbean, the Americas, and other parts of the world. The slave trade is widely considered to be one of the most horrific periods in human history.

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farnesyl transferase is an enzyme which catalyzes the attachment of a long hydrophobic chain to the ras protein. what do you think is the purpose of this chain and what would be the effect if the enzyme was inhibited? g

Answers

Ras is created in the cell's cytoplasm, but it can only work properly when it is affixed to the cell membrane.

What is hydrophobic, and what does it look like?

Non-polar molecules that make up hydrophobic compounds repel water bodies while drawing in other neutral molecules & non-polar solvents. Alkanes, oils, and generalized fats are examples of these compounds.

How can water become hydrophobic?

The polarity of water and its capacity to form potent hydrogen bonds with the other polar molecules are the two characteristics that cause hydrophobic interactions. Because of its polarity, water is able to easily create hydrogen bonds with other polar molecules, which allows it to dissolve them.

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How was Mendel able to cross pollinate his pea plants and keep them from self-pollinating?

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Mendel had to prohibit self-pollination since he was only interested in the progeny of two distinct parent plants. The flowers of some of the plants used in his tests had their anthers removed. After that, he manually pollinated them using pollen from other parent plants of his choosing.

Pea plants self-pollinate by nature. Pollen grains from anthers on one plant are transferred to stigmas of flowers on the same plant during self-pollination. Cross-pollination is the process by which pollen from one plant fertilizes another plant of the same species. Hybrids are the children that emerge from such a cross. Any offspring produced by the mating of two genetically separate individuals is referred to as a hybrid in this context.

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What are 3 common features between prokaryotic and eukaryotic cells?

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Prokaryotes and eukaryotes share a lot of the same organelles including a nucleus, ribosomes,and a cell membrane as well as many other organelles. Prokaryotes differ from eukaryotes as prokaryotic cells contain a cell wall and chloroplasts.

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Which term refers to the unique stinging intracellular structures of cnidarians?

Answers

All cnidarians have nematocysts or cnidocysts as a common trait.

They are sizable organelles that are secreted by the nematocyte or cnidocyte, a kind of specialized cell, the Golgi apparatus. Nematocysts are mostly utilized for prey acquisition and defense, however they can also be used for movement. The phylum Cnidaria, which includes sea urchins, corals, hydroids, and jellyfish, is typified by cnidocytes, commonly referred to as stinging cells [1,2,3]. The cnida or cnidocyst organelle seen in these cells is the result of prodigious Golgi discharges. The stinging structures known as nematocysts are among the most common and varied cnidae, the complex internal structures that bind cnidarians together. Nematocytes are a kind of cell found inside the bodies of the numerous organisms belong to a Cnidaria phylum.

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