cell organelle that is stained darker due to high protein concentration within is called the Nucleolus.
The Nucleolus is a membrane-bound organelle located within the nucleus of a cell. It is easily recognizable due to its dark staining properties when stained with certain dyes, which is a result of its high concentration of ribosomal RNA and proteins. The nucleolus is the site of ribosome biogenesis and is responsible for the assembly of ribosomal subunits that are later transported to the cytoplasm to carry out protein synthesis. The nucleolus also plays a role in other cellular processes such as cell growth and division, and has been implicated in various diseases such as cancer. Despite its importance, the nucleolus is not well understood, and more research is needed to fully understand the molecular mechanisms that regulate its function and behavior. Overall, the nucleolus is a critical component of the cell that plays a crucial role in protein synthesis and other cellular processes.
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What effect did reducing U.S. inflation from 13.5% in 1980 to 3% in 1983 have?
A) Wealth was shifted from lenders to borrowers.
B) The unemployment rate fell to 4%.
C) The country experienced a recession.
D) Per capita income increased by 18 % in 3 years.
Option A is the correct choice,
The transfer of wealth from lenders to borrowers resulted in a decline in U.S. inflation, which fell from 13.5% in 1980 to 3% in 1983.
Reducing inflation from 13.5% in 1980 to 3% in 1983 had a significant effect on the US economy. One of the effects of reducing inflation was a shift in wealth from lenders to borrowers. When inflation is high, the value of money decreases, so borrowers benefit because they are paying back their loans with cheaper dollars. On the other hand, lenders lose because the money they receive from borrowers is worth less than when they loaned it. When inflation is reduced, the value of money increases, so lenders benefit, and borrowers are disadvantaged because they have to pay back their loans with more expensive dollars.
It is important to note that the effects of reducing inflation can also be complex and can have a variety of consequences, including impacts on employment, income, and economic growth. For example, reducing inflation can also help to reduce the risk of a recession, but it can also lead to higher unemployment in the short term as the economy adjusts to lower inflation.
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How do you clone a gene into a plasmid?
Cloning a gene requires researchers to break open the plasmid and "paste" in the gene.
Cloning is a procedure used by scientists to create perfect genetic duplicates of living beings. Cloning is possible for genes, cells, organs, and even complete animals. In nature, some clones already exist. When single-celled organisms like bacteria reproduce, they generate identical clones of themselves. Identical twins are akin to clones in humans.
They have nearly identical genes. When a fertilized egg divides in two, identical twins are formed. In the lab, scientists also create clones. They frequently clone genes to research and better understand them. To clone a gene, scientists extract DNA from a live organism and put it into a carrier such as bacteria or yeast. When that carrier reproduces, a new copy of the gene is created.
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Of all the green algae, which are most closely related to land plants?
The most comparable relatives of land plants are charophyte green algae.
Conjugating charophyte green algae, or Zygnematophyceae, are thought to be the most closely related group of algae to terrestrial plants (Embryophyta).
Since the shift to land was one of the most significant events in plant evolution and Earth history, they are the perfect model species for investigating stress tolerance systems related to this event.
Terrestrial members of the Zygnematophyceae family, as well as Coleochaetophyceae, Chlorokybophyceae, and Klebsormidiophyceae, are frequently exposed to situations of naturally occurring abiotic stress, such as desiccation, freezing, and high levels of photosynthetic active (PAR), as well as ultraviolet (UV) irradiation.
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bacterial smear on a microscope slide before staining what heat
The bacterial smear on a microscope slide is heat fixed before staining in order to kill the bacteria and fix the cells in the slide so as prevent them from being washed off.
Bacterial smear is the thin layer of the bacterial cells which are spread across the microscopic slide for observation of the desired results. These cells for smear preparation are obtained from a bacterial culture. Drying and heat-fixing of the bacterial smear is a very crucial step.
Staining is the process of enhancing and contrasting the specimens in microbiology by bathing them in certain colored stains. This makes the observation under the microscope easy and reliable.
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The given question is incomplete, the complete question is:
Why is the bacterial smear on a microscope slide heat fixed before staining?
for the biological species concept, what mechanism of evolution (natural selection, genetic drift, or gene flow) holds the gene pool of a species together? explain in your own words.
It is the natural selection that holds the gene pool together in biological species concept.
According to the biological species concept, a species is a group of creatures that may reproduce sexually among themselves. They breed in groups and pass on their DNA to future generations. In the biological species idea, natural selection is what maintains the gene pool together.
The biological species idea explains how species form (speciation). A biological species is a collection of people who can mate (panmixia). They cannot, however, breed with other groups. In other words, the group is reproductively isolated from the rest of the species. This is still the most prevalent reason for species separation, and it is known technically as allopatric speciation. It is in contrast to sympatric speciation, which occurs even when all individuals dwell in the same region.
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Choose the statements that are true about alcohol. Required for human function, Supplies about 9 kcal per gram Supplies about 7 kcal per gram. Not considered an essential nutrient.
Alcohol is an organic compound that contains an aliphatic carbon atom with a hydroxyl (OH) functional group. Because OH is the functional group of all alcohols, the general formula ROH is frequently used to represent alcohols, where R is an alkyl group.
Alcohol is abundant in nature.
Chemistry recognizes three types of alcohol: isopropyl, methyl, and ethyl alcohol. Each of these types of alcohol has distinct characteristics.
According to the nutritional value, alcohol provides the human body with approximately 7 calories or 29 kilojoules.
Alcohol is not a necessary nutrient (it causes harm when consumed in large quantities).
Vitamins, protein, carbohydrates, and other essential nutrients are examples.
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accelerated build-up of nutrients caused by humans.
a. thermal pollution
b. bio-magnification
c. Water pollution
d. artificial Eutrophication
Artificial eutrophication is a cycle that expands the number of supplements in a waterway through human exercises, like garbage removal and land seepage.
Eutrophication is a state wherein enormous waterways, for example, lakes, portions of the sea, and different repositories have an overflow of algal development because of unreasonable supplements like phosphorus and nitrogen. Eutrophication happens normally however can be seriously advanced because of human movement.
Supplement contamination is the interaction where such a large number of supplements, for the most part, nitrogen, and phosphorus, are added to waterways and can carry on like compost, causing over-the-top development of green growth. Supplements can run off of the land in metropolitan regions where grass and nursery composts are utilized.
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the most important contribution to the stability of a protein's conformation appears to be the: group of answer choices .Aentropy increase from the decrease in ordered water molecules forming a solvent shell around itBmaximum entropy increase from ionic interactions between the ionized amino acids in a proteinCsum of free energies of formation of many weak interactions between its polar amino acids and surrounding water moleculesDsum of free energies the hundreds of amino acids in a protein
The total of the free energy of numerous weak interactions between a protein's polar amino acids and surrounding water molecules appears to be the most essential contribution to the stability of its shape.
These interactions, known as hydrophobic and hydrophilic contacts, contribute to maintain a protein's three-dimensional structure, and their strength affects the protein's conformational stability. The hydrophobic effect, which occurs as a result of water molecules being ordered around non-polar groups of a protein, can also contribute to the stability of a protein's shape. However, the total of the weak interactions between polar groups in a protein and the surrounding water molecules plays the most important function in protein conformation stabilization.
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Describe each stage of early animal development. Make sure to include the following vocabulary: zygote, mitosis, blastula, ectoderm, mesoderm, endoderm, coelom
The description of the stage of early animal development is given below:
The StagesZygote: The first stage of animal development starts with the fusion of a sperm and an egg, forming a single cell called the zygote.
Mitosis: The zygote divides into multiple cells through a process called mitosis, resulting in an increasing number of cells in the embryo.
Blastula: As the number of cells increases, they form a ball-shaped structure called the blastula.
Germ Layers Formation: The cells of the blastula differentiate and form three primary germ layers: ectoderm, mesoderm, and endoderm.
Ectoderm: The ectoderm gives rise to the outermost layer of the developing embryo and will eventually form the skin, hair, and nervous system.
Mesoderm: The mesoderm gives rise to the middle layer of the developing embryo and will eventually form the muscles, skeleton, and circulatory system.
Endoderm: The endoderm gives rise to the innermost layer of the developing embryo and will eventually form the digestive and respiratory systems.
Coelom: In some animal species, a fluid-filled cavity called the coelom forms from the mesoderm, providing support for the internal organs and allowing for movement.
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what were the two major plans that were presented to deal with the population and representation issue?
Explanation:
The two major plans presented to deal with the population and representation issue in the United States prior to the drafting of the Constitution were the Virginia Plan and the New Jersey Plan.
The Virginia Plan - This plan, presented by James Madison, proposed a bicameral (two-chamber) legislative system, with representation in the lower house based on population and in the upper house based on equal representation for each state.
The New Jersey Plan - This plan, presented by William Paterson, proposed a unicameral (one-chamber) legislative system with equal representation for each state, regardless of population.
Both plans were discussed during the Constitutional Convention of 1787, and a compromise was eventually reached in which representation in the House of Representatives would be based on population, and each state would have two senators in the upper house of the legislative branch, the Senate. This compromise was enshrined in the Constitution as the Connecticut Compromise, also known as the Great Compromise.
Select the correct responses to the questions from the drop-down menus.
What do the repetitive patterns in a mineral form?
What is the term for the ability of a mineral to break into flat surfaces?
What is the term for an irregular way a mineral breaks apart?
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Answer:
Explanation:
What do the repetitive patterns in a mineral form?
Crystalline structure
What is the term for the ability of a mineral to break into flat surfaces?
Cleavage
What is the term for an irregular way a mineral breaks apart?
Fracture
what differences did you see between the number and location of endospores in the older culture of bacillus compared to a new culture? why was there a difference?
An earlier Bacillus culture was stored under unfavourable conditions, such as high temperatures, or was subjected to repeated cycles of stress, the endospores may be more extensively spread throughout the culture because the bacteria produced more endospores in response to the stress. On the other hand, if the new Bacillus culture was housed in ideal circumstances or was not subjected to as much stress, there may be less endospores.
Endospores are structures created as a survival mechanism by several bacteria, including Bacillus. They are extremely resistant to environmental stresses like heat, radiation, and desiccation. A variety of factors influence the number and location of endospores in a Bacillus culture.
Furthermore, the amount and position of endospores might be affected by the growth stage of the Bacillus culture. Endospores are formed during the stationary phase, when the bacteria's growth rate slows or stops. If the older Bacillus culture has been in stationary phase for a longer amount of time, there may be more endospores produced, whereas the new culture may have less endospores.
Finally, the variation in the amount and position of endospores in older vs new Bacillus cultures can be related to a range of factors such as storage conditions, stress exposure, and growth stage. Understanding these characteristics can aid with Bacillus culture cultivation and preservation.
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Describe the mechanism for Ca2+ release from the SR during skeletal muscle contraction. Is this the case for cardiac muscle?
Ca2+ is released from of the SR into intracellular fluid so when wave of depolarization crosses its muscle cell membrane & descends the T tubules. The significant release if calcium from the SR is triggered by this very localized calcium rise, unlike the skeletal muscle.
What really is skeletal muscle versus muscle?Skeletal muscles are parts of something like the vertebrate postural muscles or are normally connected to the skeleton's bones through tendons. Muscle fibers are frequently referred to as muscle cells since the muscular cells in skeletal muscles are substantially longer than those in other kinds of muscles.
What role does the skeletal muscle play?Humans use their skeletal muscles to move about and carry out daily tasks. They aid in maintaining balance and posture and are crucial to respiratory mechanics. Additionally, they safeguard the body's critical organs.
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1. What is a blastula?
O a biomolecule that is involved in the formation of chromosomes
O a hollow ball of cells that all animals develop from
O an organelle responsible for cellular respiration
O a type of cell involved in asexual reproduction
During the development of an embryo, a blastula, a hollow sphere of cells, or blastomeres, is created by repeatedly cleaving a fertilized egg, hence option B is correct.
What is the structure of a blastula?The cells of the blastula produce the blastoderm, an epithelial (covering) layer that encloses the blastocoel, a cavity filled with fluid.
After a zygote divides into two cells, a hollow structure called a blastula is created; it contains roughly 6-32 cells. A fertilized egg is repeatedly divided during the development of an embryo, which results in the creation of a blastula.
Therefore, the blastula is a hollow ball of cells that all animals develop from repeatedly cleaving a fertilized egg.
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What is shin spints?
How many human chromosomes are common to both males and females?
Answer:
Twenty-two
That's how many human chromosomes are common to both males and females
A pigeon has cells containing 80 chromosomes. if a female pigeon undergoes meiosis, how many chromosomes would be found in the resulting unfertilized egg?
Parthenogenesis, is the formation of embryos in unfertilized eggs. In several invertebrates, it is a common method of reproduction.
Even though parthenogenesis happens naturally in more complex animals, such as birds, it is typically an unsuccessful process. The progressive development of parthenogenetic embryos is actually halted by a number of limiting factors, including delayed and disorganized development as well as adverse conditions forming inside the unfertilized egg during incubation. In birds, automictic and facultative diploid parthenogenesis results in solely male offspring. The mechanisms governing parthenogenesis in birds, however, remain poorly understood. Even fairly recent research suggests that these pathways might impair typical fertilization and subsequent embryonic development.
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The following is an example of stimuli and the hormones released in response to the given stimuli. Answer with the appropriate "Stimulus-Type."
PTH is released in response to changes in the p[Ca++].[Ca++].
A. neural
B. hormonal
C. humeral
This is an example of humoral stimuli. When the release of any hormone is triggered by the nervous system, it is called neural stimuli.
A hormone produced by endocrine system glands is referred to as a neurological stimulation. The neurological system triggers the endocrine system to release neural impulses in this non-voluntary process.
For instance, the sympathetic nervous system activates the adrenal gland to release the neurotransmitters noradrenaline and adrenaline when a stress response is required (also known as epinephrine and norepinephrine). The "fight-or-flight" reaction and physiological stress events like dehydration or dangerously low blood pressure are examples of the kinds of stress scenarios that stimulate the endocrine system and release brain impulses as a result.
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What is the probability of homozygous plants for both dominant characters in F2 generation of a dihybrid cross?
a. 1/16
b. 3/16
c. 4/16
d. 9/16
1/16 is the probability of homozygous plants for both dominant characters in F2 generation of a dihybrid cross. The right answer is 1/16.
What is meant by generation?
A group of people who were born and are still alive at the same time and make up one stride in the lines of ancestry from an ancestors. the younger generation. A group of people who share a status (such being students at a school) but only for a brief period of time.
Two character:- Homozygous ND Dominant
RRGG 1/16
F2 : 16 genotype
Homozygous recession : RRYY 1/16
We frequently measure time in terms of generations, but how long exactly is a generation. The average time between the conception of a parent and also the creation of a child is nearly 24 years, however individual circumstances may affect this.
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Where does transduction occur in the ear?
Transduction in the ear occurs in specialized sensory hair cells located in the cochlea, which is part of the inner ear.
The cochlea is responsible for converting sound vibrations into electrical signals that are transmitted to the brain for interpretation as sound.
In the cochlea, the hair cells have hair-like projections called stereocilia that are embedded in the tectorial membrane. When sound vibrations cause the tectorial membrane to move, the stereocilia are bent, opening ion channels and triggering a cascade of events that leads to the generation of electrical signals. This process is known as mechanotransduction, and it is the first step in the process of converting sound vibrations into electrical signals in the ear. The electrical signals are then transmitted to the brain via the auditory nerve.
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mutations that change the codon uuu to the codon ucu are
Mutations that change the codon UUU to the codon UCU are point mutations.
A single nucleotide in DNA can change in a point mutation. The severity of this mutation is typically lower than that of a chromosomal change. A point mutation is one that transforms the codon UUU into the codon UCU. Point mutations may be nonsensical, missense, or silent. UUU codes for phenylalanine while UCU codes for a different amino acid called serine. This is a missense point mutation.
A mutation is a change in the DNA's nucleotide sequence. Evolution requires mutations to take place. All newly acquired genetic material—new alleles—in a species comes from them. Some mutations are advantageous, even if the majority of mutations have no impact on the organisms in which they arise. Even damaging mutations seldom result in significant modifications to organisms.
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why i choose biotechnology essay
Biotechnology is a rapidly growing field that offers numerous opportunities for innovation and discovery. There are many reasons why someone might choose to study biotechnology.
Why biotechnology?Advancements in biotechnology have the potential to improve human health and well-being by creating new treatments for diseases, enhancing the effectiveness of existing therapies, and even developing cures for previously incurable conditions.
Biotechnology is a rapidly growing field with a wide range of applications, from agriculture and food science to environmental sustainability and renewable energy. This makes it a dynamic and exciting area of study that offers a wealth of career opportunities.
The development of new biotechnologies is often interdisciplinary, requiring knowledge from multiple fields such as biology, chemistry, engineering, and computer science. This interdisciplinary approach can be appealing to individuals who enjoy working at the intersection of different fields.
Biotechnology offers the opportunity to work on important global issues, such as food security, energy production, and the environment. This can be incredibly rewarding, as individuals in the field have the ability to make a significant impact on the world.
Biotechnology is constantly evolving, so individuals in the field have the opportunity to work on cutting-edge research and be at the forefront of technological advancements.
Overall, biotechnology is a fascinating and challenging field that offers numerous opportunities for innovation, discovery, and making a positive impact on the world.
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Imagine two heterozygous parents. Each has a dominant allele (b) for brown eyes and a recessive allele (b) for blue eyes. What would the genotypic ratio of the offspring be?.
Answer:
The genotypic ratio would be 3:1
How do you label the structure of DNA?
Adenine (A), cytosine (C), guanine (G), and thymine (T) are the four nitrogenous bases that can be used to identify the structure of DNA (T).
What is DNA?DNA (Deoxyribonucleic Acid) is a molecule that houses the genetic information necessary for the growth and operation of every known living thing.
Base pairs, which are formed by these bases and the DNA molecule's sugar-phosphate backbone, hold the two strands of DNA together. The DNA molecule has a double helix shape, with two strands that run in opposite directions and are joined by hydrogen bonds between base pairs.
The base pair sequence that encodes an organism's genetic material is formed when the nitrogenous bases on each strand line up with the corresponding bases on the other strand.
The precise arrangement of these base pairs, which determines the genetic information, is essential for cells to function properly.
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write the scientific name of the catbird?
Answer: Dumetella carolinensis
Explanation:
dentify one or two major discoveries or advances of the period and explain how these contributed to the change in worldview
The Scientific Revolution and Enlightenment were two major periods of discovery and advancement in human history.
One major discovery of the Scientific Revolution was the laws of motion and universal gravitation by Sir Isaac Newton. This discovery revolutionized the way people understood the physical world and challenged the previously accepted Aristotelian view that objects naturally come to rest.
Newton's laws showed that the motion of objects could be described mathematically and that the same natural laws apply universally, leading to a more systematic and rational understanding of the world.
Another major advance of the period was the development of the scientific method by philosophers such as Francis Bacon and René Descartes.
The scientific method emphasized the importance of empirical evidence, systematic experimentation, and critical observation in the pursuit of knowledge. This shift towards a more evidence-based approach to understanding the world marked a significant change in the way people thought about and investigated natural phenomena, leading to many new discoveries and advancements in fields such as medicine, physics, and astronomy.
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How long does it take the specific immune system to become active?
It takes 1 to 2 weeks for the particular immune system to become activated.
The adaptive (active) immune response takes 1 to 2 weeks to fully activate, which is substantially longer than the twelve hours necessary to fully activate innate immunity. With the development of a adaptive immune response comes a phenomena known as immunologic memory, which is an immunological defence that may endure a lifetime and give future protection if the same antigen is re-exposed.
Active immunity can be developed spontaneously or by vaccinations. A youngster infected with chickenpox or varicella-zoster is one example of this. The child's immune system will create a specialized response to the virus during this sickness, and the youngster will have immunity going forward. This is a normal, vigorous immunological response. Vaccination with both the live attenuated varicella vaccine is an example of acquired immunity against varicella. The individual has never been infected with the pathogen by this approach.
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after using the phone, the laboratory tech. sprayed the receiver with a chemical spray. this process will kill a defined scope of microorganisms. what is this process called?
This is known as "disinfection."
Disinfection is the process of destroying or removing bacteria on a surface. A frequent way of disinfection is for the laboratory technician to employ a chemical spray. The spray contains microorganism-killing disinfectants that can successfully diminish their presence on the phone receiver.
Disinfection is essential in laboratory settings to avoid the spread of hazardous bacteria and to keep the environment clean and safe for laboratory employees and visitors. Bacteria and viruses are easily conveyed from one surface to another, and if not properly disinfected, they can spread and cause infection or illness.
Furthermore, it is critical to constantly disinfect commonly touched surfaces, such as phones, to prevent the collection and spread of bacteria. The laboratory technician is taking a critical step toward protecting themselves, their coworkers, and their work environment from the potential harm posed by bacteria by using a disinfectant spray.
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a potential donor yields a blood pressure of 190/100 while undergoing a physical exam. what is the result of this finding?
A potential donor yields a blood pressure of 190/100 while undergoing a physical exam. The result of this finding will be evaluation by blood bank medical director.
Blood is pushed through the circulatory system by blood pressure. Blood pressure is a vital force because, in the absence of it, the circulatory system would not be able to push nutrients and oxygen to nourish tissues and organs.
White blood cells, antibodies for immunity, and hormones like insulin are all delivered via blood pressure, which is another important factor.
The fresh blood that is delivered is able to pick up the toxic waste products of metabolism, including the carbon dioxide we exhale with every breath and the toxins we clear through the liver and kidneys. This ability to pick up these waste products is just as crucial as providing oxygen and nutrients. Individuals may have different definitions of normal blood pressure, however the American Heart Association advises aiming for readings under 120 mm Hg for both the systolic and 80 mm Hg diastolic.
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Red blood cells, which transport oxygen throughout the body, are also known as?
Red blood cells, which transport oxygen throughout the body, are also known as erythrocytes.
Red blood cells, also known as erythrocytes, deliver oxygen to the tissues in the body. Oxygen turns into energy and the tissues release carbon dioxide. Red blood cells bring oxygen to the tissues in the body and release carbon dioxide to the lungs to exhale. Oxygen turns into energy, which is an essential function to keep the body healthy. Red blood cells are responsible for transporting oxygen from the lungs to the body tissues. The tissues produce energy with the oxygen and release a waste, identified as carbon dioxide. So, the red blood cells take the carbon dioxide waste to the lungs to exhale. Red blood cells develop in the body’s soft bone tissue (bone marrow) and release into the bloodstream after they fully mature, which takes about seven days.
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