The enveloped viruses differ from nonenveloped viruses in the sense that they have a membrane-like outer covering.
A phospholipid bilayer envelope and its accompanying proteins surround the nucleic acid and capsid proteins that make up enveloped virions like HIV. The viral envelope contains glycoproteins that are used to bind to host cells. Non-enveloped viruses are more resistant to changes in temperature, pH, and some disinfectants than are enveloped viruses because of the fragility of the envelope. Non-enveloped viruses do not possess a membrane-like outer covering called an envelope.
Acellular means that viruses are biological entities without a cellular structure. As a result, they are deficient in the majority of cell components, including the plasma membrane, organelles, and ribosomes. A virion is made up of a nucleic acid core, an outer protein coating called a capsid, and occasionally an outer envelope comprised of membranes made of protein and phospholipids that come from the host cell.
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what is the genetic relationship between a gametophyte and the gametes it produces?
The genotype ratio is 1:2:1, often known as RR: Rr: Rr. The ratio of round to wrinkled seeds in phenotypic is 3:1.
When compared to females, males have XY chromosomes. A heritable mutation is a change in the DNA's nucleotide sequence. Among the 23 pairs of chromosomes found in humans, there are 22 pairs of autosomes and 1 pair of sex chromosomes. The gamete will therefore have 23 chromosomes. The term "genotype" is used in a broad sense to refer to either the genes themselves or the whole gene pool of an organism. The phrase can also refer to a gene's alleles, or distinctive variations, in a more limited sense. A scalar variable called speed can be used to describe how quickly an item moves or how much its location changes over time. It is often shortened to "s."
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) what kind of chromosomal aberration is shown? (c) this woman is phenotypically normal. does this surprise you? why or why not? under what circumstances might you expect a phenotypic effect of such a rearrangement?
Balanced translocation chromosomal aberration is shown in this case. The woman is phenotypically normal. This is surprising.
B) This is showing balanced translocation.
C) In the event that the child inherits the mother's derived chromosome, a phenotypic consequence is anticipated.
Since the woman carries a balanced translocation and the amount of genetic material in her genome has not changed, it is not surprising that her phenotype is normal.
If a child receives a derivative chromosome from the mother and a normal chromosome from the father, phenotypic effects of a balanced translocation may be anticipated because the child will either lack a portion of chromosome 2 (genes C and D) and possess an additional portion of chromosome 3 (genes G and H), or the opposite may occur.
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why doesn’t the surface of a wooden boat reflect light as the surface of water does?
Wood is not a reflective material, so wooden boats do not reflect light in the same way that water does.
Water has a smooth, flat surface that reflects light from all directions, making it extremely reflective.
The surface of wood, on the other hand, is more rough and absorbs light better than it reflects. All wood surfaces are rather evenly permeable to water vapour.
Again, liquid water penetrates wood particularly readily near the ends of the wood, parallel to the grain. Perpendicular to grain is less common.
The "cell pipe model" makes this very evident. A pipe receives water from the ends rather than through the wall.
By releasing water vapor, wood dries. The surface of the wood contains vaporize water.
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Which statement is true regarding sea anemones?(a) Although sea anemones lack definitive brains, they do possess ganglia that serve a similar function to the paired ganglia of flatworms.(b) None of the other answer options is correct.(c) Sponges, not sea anemones, possess what is considered to be the "simplest" nervous system found in animals.(d) Because sea anemones are "simple" organisms, these animals only possess motor neurons; sensory neurons or interneurons are never found in sea anemones.(e) Although sea anemones possess "net-like" nervous systems, these animals have brains located at their bases (near where they would attach to rocks).
The correct option regarding sea anemones is (b) i.e. None of the other given options of answer is correct. The order Actiniaria contains several marine creatures, including sea anemones. They resemble anemones, a kind of terrestrial plant, in look and name.
There is no free-swimming medusa stage in sea anemones. Invertebrates of the order Actiniaria that are predatory in the sea include sea anemones. The eggs and sperm produced by the polyp itself are fertilised to create a planula larva. It immediately grows into polyps. They are capable of having both sexual and asexual offspring. They are unable to produce their own food or engage in photosynthesis. As a result, sea anemones and single-celled algae form facultative mutualistic partnerships. The oral disc and tentacles are home to the algae, which are exposed to sunlight and protected from other feeders. The algae provide the sea anemones with food and oxygen. The stinging cells also protect the algae, making it less likely that herbivores would eat them up.
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What are the structures and functions of a chloroplast?
Answer:
Chloroplast has a structure called chlorophyll which functions by trapping the solar energy and is used for the synthesis of food in all green plants. Produces NADPH and molecular oxygen (O2) by photolysis of water. Produces ATP – Adenosine triphosphate by the process of photosynthesis.
The grana, stroma, inner membrane, and outer membrane make up the chloroplast, a kind of plastid.
What are the chloroplast's structural elements?Oval structures called chloroplasts have an inner and an outer membrane. The distance between the outer and inner membranes, known as the intermembrane gap, is 10–20 nm wide. The inner membrane's gap is filled by the stroma, a viscous liquid found inside chloroplasts.
What purposes do chloroplasts serve?Chloroplasts produce energy to support plant development and crop output through the processes of photosynthesis and oxygen release. As a result, active substances such amino acids, phytohormones, nucleotides, vitamins, lipids, and secondary metabolites are biosynthesized by chloroplasts.
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A gardener cut a branch from a shrub and planted it in a small pot where it grew into a new shrub. This method of growing a new shrub is a type of?
Answer:
Propagation by cuttings.
Explanation:
Propagation is the process of growing new plants from existing ones. There are various methods of plant propagation, including seeds, division, and cuttings.
A gardener cut a branch from a shrub and planted it in a small pot where it grew into a new shrub. This method of growing a new shrub is known as propagation by cuttings. In this method, a cutting is taken from an existing plant, and the cutting is rooted in soil or water to form a new plant. The new plant will have the same characteristics as the parent plant.
Propagation by cuttings is a popular method for shrubs and other woody plants as it allows for the easy and efficient production of new plants from existing ones.
Fill in the blanks...please. It is urgent.
A seed remains __________________ until it is warm and its
internal ______________ content reaches nine percent. Then,
respiration_________________ and stored starches are broken
down for energy. The root tip begins growing first, and then
the shoot tip, pushed onwards by the division happening in
the _____________. As the root tip grows, it starts
to_______________; meanwhile, the shoot tip grows upwards,
unfolding its leaves and starting the process of
___________________.
The words that best complete the sentences are underlined below:
A seed remains dormant until it is warm and its internal water content reaches nine percent.
What happens to the seed?Then, respiration increases, and stored starches are broken down for energy.
The root tip begins growing first, and then the shoot tip, pushed onwards by the division happening in the radicle.
As the root tip grows, it starts to elongate; meanwhile, the shoot tip grows upwards, unfolding its leaves and starting the process of photosynthesis.
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when a pollen grain sticks to a stigma of a different plant of the same species
When a pollen grain sticks to a stigma of a different plant of the same species the pollination is referred to as (A) geitonogamy.
Pollination is the process by which pollen grains are transferred from the anther of one bloom to the stigma of another blossom, whether on the same plant or one that is different. Wind, water, and so-called pollinating insects can all move pollen grains from the flower's stigma to the flower's stigma. Depending on the origin of the pollen grains, pollination can be split into three categories.
Geitonogamy is the process by which pollen from one flower's anther moves to the stigma of another blossom on the same plant. In terms of functionality, geitonogamy is known as cross-pollination, but in terms of genetics, it is known as self-pollination since the pollen grains of the same plant are transmitted to the same plant's stigma.
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currently, approximately how many bacterial, viral, and fungal infections are characterized as sexually transmitted diseases (stds)?
Currently, approximately 24 bacterial, viral, and fungal infections are characterized as sexually transmitted diseases (stds).
What are sexually transmitted diseases?
The majority of sexually transmitted diseases (STDs) and illnesses are spread through sexual interaction. Blood, semen, vaginal fluid, and other bodily fluids can carry the bacteria, viruses, or parasites that cause sexually transmitted diseases from one person to another.
These infections can occasionally be spread non-sexually, such as when women give birth to their babies or when they receive blood transfusions or share needles.
STDs occasionally go unnoticed. Sexually transmitted diseases can be acquired from individuals who appear to be in excellent condition and may not even be aware that they are infected.
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based on the data in the figure, what type of selection for body size appears to be occurring in these marine iguanas?
Stabilizing selection is the right response. The form of body size selection that appears to be taking place in these marine iguanas is stabilizing selection.
Disruptive selection's opposite is stabilizing selection. It prefers the intermediate variants rather than people with extreme traits. The more severe phenotypes are typically eliminated through stabilizing selection, which leads to the reproductive success of the average or typical phenotypes.
High and low birth weights are associated with decreased survival in both males and females, making birth weight a classic example of a feature that is subject to strong stabilizing selection (22).
The median of the population stabilizes and primarily favors the middle-ground variations.The antithesis of stabilizing selection is disruptive selection. The more severe traits are eliminated in this sort of selection.
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Which of the following would NOT contribute to the level of organization seen within a protein?
-pH
-None of these. All of the choices contribute to the level of organization of a protein.
-Denaturation of protein
-Amino acid sequence
-Temperature
Denaturation of protein does not contribute to the level of organization seen within a protein.
Amino acid sequence, pH and temperature all of theses contribute to confirmation of proteins. It is the primary sequence of amino acids that provide all of the information needed for folding of a protein.
What is denaturation of protein?The unfolding of native structure of protein and all its bonds to its primary structure that is nonfunctional is called denaturation of protein.
What is amino acid?Amino acids are building blocks of proteins.
What is temperature?Temperature is the degree of hotness or coldness of a body.
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Type the correct answer in each box
26
Fe
Iron
55.845
This is the periodic table entry for iron. The atomic number for iron is ___ . The number of electrons in a neutral iron atom is ___
This is the periodic table entry for iron. The atomic number for iron is 55.845 . The number of electrons in a neutral iron atom is 26.
What is the periodic table?
The periodic table of the elements, is described as rows and columns arrangement of the chemical elements which is widely used in chemistry, physics, and other sciences, and is generally seen as an icon of chemistry.
In the example, in the given periodic table entry for iron the atomic number of iron is 26.
Furthermore, it is known that in a neutral atom the number of protons equal the number of electrons.
We then can conclude that there are 26 electrons in the given neutral iron atom.
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_____ are usually caused by overuse or improper conditioning of the leg muscles
Shin splints are usually caused by overuse or improper conditioning of the leg muscles.
This can be caused by activities such as running, jumping, and other high-impact sports, as well as by poor conditioning of the leg muscles. Shin splints can be identified by a dull, aching pain along the shinbone (tibia) or calf muscle.
The pain is usually worse during exercise and can be accompanied by swelling and tenderness. Treatment typically involves rest, ice, compression, and elevation of the affected leg. Strengthening exercises, stretching, and better conditioning of the leg muscles can help prevent shin splints from recurring.
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Why is the transporter in the figure above considered to be an example of "secondary transport"?1. It is moving two substances.2. The two transported substances are moving in opposite directions.3. It is driven by the proton gradient that was created by energy from ATP.4. It is driven by ATP which was created by energy from a proton gradient.
The transporter is considered to be an example of "secondary transport" because 3. The proton gradient brought about by ATP energy drives it.
When it comes to moving molecules into or out of a cell, passive transport is an excellent method. Simply allowing the molecules to diffuse into the cell is all that is required, making it inexpensive and simple. Because glucose naturally prefers to diffuse out rather than flow in, the cell cannot import glucose for free here using diffusion. Instead, the cell must use active transport to bring in additional glucose molecules. In active transport, the cell expends energy (such as ATP) to move a substance against its concentration gradient, in contrast to passive transport.
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Based on your knowledge of other biological macromolecules, what are reasonable assumptions about your macromolecule? Choose one or more: A. It contains carbon-carbon bonds. B. Its cellular synthesis is directed by enzymes. C. It is synthesized via hydrolysis of monomers.
D. Monomers in the molecule are connected to each other via hydrogen bonds.
Based on your knowledge of other biological macromolecules, the reasonable assumptions about your macromolecule are:
A. It contains carbon-carbon bonds.B. Its cellular synthesis is directed by enzymes.Macromolecules have a carbon backbone. Carbon is the most basic component of macromolecules. Carbon has the unusual attribute of being able to form four bonds due to the existence of four valence electrons. Carbon-carbon bonding coexists with other molecules in many macromolecules. The binding or linking of a specific collection of monomers results in the biological production of macromolecules. Chemical linking processes guided by certain enzymes combine these monomers to generate polymers.
Macromolecules are polymers, which are long chains of molecular constituents called monomers. Carbohydrates, proteins, and nucleic acids all include long polymers. They are classified as macromolecules due to their polymeric composition and huge size.
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What happened after the patient who suffered from seizures called H.M. brain surgery?
Although H.M.'s epileptic seizures were ultimately reduced by surgery, he suffered greatly from anterograde amnesia, which made it difficult for him to acquire new words, memorize facts, or remember who he had spoken to before they left the conversation.
What consequences of seizures called H.M. brain surgery?The corpus callosum, which joins the brain's left and right hemispheres, is cut during surgery. However, seizures are prevented from moving from one side of the brain to the other.
Tonic or atonic drop seizures, which can result in serious injury, are the most common reason why doctors advise this surgery.
Therefore, The entire hemisphere is dysfunctional in these patients, which is what is generating the seizures. The "hemi" in "hemispherectomy" refers to the cerebral (brain) hemisphere, which is the smaller of your two brain halves.
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Although H.M.'s epileptic seizures were ultimately reduced by surgery, he suffered greatly from anterograde amnesia, which made it difficult for him to acquire new words, memorize facts, or remember who he had spoken to before they left the conversation.
What consequences of seizures called H.M. brain surgery?The corpus callosum, which joins the brain's left and right hemispheres, is cut during surgery. However, seizures are prevented from moving from one side of the brain to the other.
Tonic or atonic drop seizures, which can result in serious injury, are the most common reason why doctors advise this surgery.
Therefore, The entire hemisphere is dysfunctional in these patients, which is what is generating the seizures. The "hemi" in "hemispherectomy" refers to the cerebral (brain) hemisphere, which is the smaller of your two brain halves.
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What is the primary function of homeostasis?
The major function of homeostasis is to maintain the internal conditions that an organism needs to survive and function at its best.
What is Homeostasis?The capacity of an organism or system to maintain a steady internal environment in response to changes in environmental factors is known as homeostasis.
What is the function of Homeostasis?For instance, homeostasis assists animals in maintaining proper body temperature, fluid balance, blood sugar levels, and other physiological processes. The body will activate cooling processes, such as perspiration and increased blood flow to the skin, if the temperature rises owing to a fever or outside heat. Similar to this, when blood sugar levels fall, the body releases hormones like insulin to bring them back to normal.
Homeostasis controls physiological processes as well as preserving population and ecosystem stability. For instance, in an ecosystem, predators and prey as well as other elements like resource availability and competition for those resources manage the populations of various species.
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How many gallons of blood are pumped through the heart each day?
2,000 gallons of blood are pumped through the heart each day.
The heart is the muscle in the body that is responsible for the greatest amount of physical work. The average human heart is capable of pumping 2,000 gallons of blood in a single day. The average human heart will beat more than 2.5 billion times during the course of a lifetime of 70 years.
When at rest, the average human heart pumps around 5 liters of blood every single minute. But when you exercise, especially when you run, your heart may pump three to four times as fast to ensure that your body receives the oxygen and fuel it needs.
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Professor Dr. Utpal Pal studied the Borrelia burgdorferi bacterium at the University of Maryland. Dr. Pal found that Lyme disease is caused by your immune system. When the body is infected with Lyme disease, it overreacts causing inflammation in the joints. Although antibiotic resistance has not been observed for B. burgdorferi, create an argument defending the control of antibiotic use to the public.
If diseases are being caused by your immune system. Utilizing antibiotics to treat this and recover is a fantastic idea is a to argument defending the control of antibiotic use to the public.
What is the immune system's four components?
The thymus and bone marrow, lymph nodes and veins, spleen, skin, and other organs and tissues are vital to the immune system's normal operation.
What purposes do antibiotics serve?
They treat bacteria by either killing the bacteria or by making it difficult for them to grow and multiply. Germs are bacteria.
Antibiotics are crucial medications. Numerous medicines are effective in treating bacterial infections (bacterial infections). Disease can be stopped from spreading by antibiotics. And antibiotics can lessen the dangerous side effects of illness.
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From the answers below, what is the most likely reason for the large number of tyrosinemia cases in Chicoutimi?Explain the reason for your choice. This means explain why you chose your answer and explain why you did not choose the other answers.
(A)A high mutation rate.
(B)A selective advantage for tyrosinemia in this part of Quebec.
(C)Founder effect.
(D)Nutritional patterns in the people; large quantities of tyrosine in the diet.
(E) Pleiotropy where the allele for tyrosinemia has beneficial effects as well as harmful effects.
From the answers below, the most likely reason for the large number of tyrosinemia cases in Chicoutimi is:
(B) A selective advantage for tyrosinemia in this part of Quebec.
Tyrosinemia, also known as tyrosinaemia, is a metabolic disorder in which the body is unable to adequately break down the amino acid tyrosine. Untreated tyrosinemia can cause liver and renal problems. Tyrosinemia causes liver failure if left untreated. Tyrosinemia is increasingly being found on newborn screening tests prior to the onset of symptoms.
People with tyrosinemia develop normally, are healthy, and live normal lives with early and lifetime care that includes a low-protein diet, special protein formula, and sometimes medication. Tyrosinemias are inherited in an autosomal-recessive pattern and are caused by gene malfunction in the phenylalanine and tyrosine catabolic pathway. Treatment varies depending on the kind; in most situations, a low-protein diet combined with the use of a specifically formulated protein formula is necessary.
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what are the five conditions for hardy-weinberg equilibrium
Answer:
1. Mutations must not occur to introduce new alleles to the population.
2. No gene flow can occur to increase variability in the gene pool.
3. A very large population size is required to ensure allele frequency is not changed through genetic drift.
4. Mating must be random in the population.
5. Natural selection must not occur to alter gene frequencies.
The 5 conditions for Hardy Weinberg Principle are: no mutation, random mating, no gene flow, infinite population size, and no selection.
The Hardy Weinberg Principle states that the genetic variation remains constant from one generation to another if left undisturbed. The H-W Equilibrium can be used to analyze the number of homozygous and heterozygous carriers based on allele frequency.
Mutations are the change in the normal sequences of DNA. These mutations can be of one base pair or over a long strand. Such mutations are termed point mutations and frameshift mutations. They may often lead to diseases in an individual.
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What are the two types of simple machines in this compound machine?lever, wheel and axlelever, pulleyscrew, incline planescrew, lever
a screw and lever. Modern screws and screwdrivers are thus a mix of the inclined plane and the lever, two simple mechanisms.
The wheel evolved from a potter's tool to a carnival ride over the previous 5,000 years. The six simple machines are the lever, wheel and axle, pulley, screw, inclination plane, and wedge. The fixed axle of this cart allows for a tight turning radius while spokes make wheels less heavy. By crossing a rope over a wheel or wheels, pulleys are created. They are frequently employed to hoist large objects since pulling downward on one end of the rope causes an upward force to be applied to the other.
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What feelings does the reward pathway in the center of our brain drive?
The mesolimbic system, also known as the reward system, is made up of regions in the brain that is in charge of mediating the physiological and cognitive processing of reward.
Additionally, this system is also known as the reward system. The pathway in the brain that processes rewards is connected to regions that are responsible for behavior and memory respectively. It all starts in the ventral tegmental region, which is where neurons that are responsible for pleasure release dopamine into the system. The brain starts to form connections between the activity and the pleasure, which makes it more likely that we will engage in the behavior again in the future.
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Match these events of mitosis to the correct name of the stage.
metaphase
telophase
anaphase
prophase
1. The muscle membrane disappears; spindles appear
2. Chromosomes line up along the equator of the cell
3. Duplicated chromosomes separate and are pulled toward centrioles
4. Chromosomes elongate into chromatin threads; nuclear membranes and nucleoli appear
Rollers occur as muscular membrane slips. In the cell's metaphase, chromosomes line up to the equator. Chrom rework split or be tied to oocyte phase Nuclear coats & by all arise, & cells grow to dna threads.
Muscle is covered by what membrane?The epimysium, a connective tissue sheath, encases each muscle. Outside of the epimysium, connective tissue called fascia envelops and divides the muscles.
What leads to instability in the muscular membrane?The oscillations of a membrane potential, which oscillate and grow less negative until a threshold is achieved, are thought to be the cause of the instability of a muscle fiber membrane. A propagating AP, also known as a fibrillation potential, is induced after threshold is reached.
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How does the structure of plant cells help them perform the functions of photosynthesis
Plants produce their own food with the help of light. This process is called Photosynthesis.
Photosynthesis is possible because of the special structures present in plant cells, which allow them to capture maximum light from the sun and convert it into food which is utilized by plants.
Leaves contain mesophyll cells which capture light energy. Chloroplast which is the main organelle for photosynthesis contains various pigment systems like P700, P680, carotenoid, etc. these Pigment system captures the light energy and convert them into chemical energy.
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Do you agree with Descartes that there’s no sure test to tell whether or not you are awake or dreaming? Describe a dream you had where, in that dream, you thought you were actually awake. Was there anything you could have done in that dream, short of waking up from it, to show that you were in fact dreaming?
Philosophy question ! HELP PLS. TYPE A BRIEF AND LENGTHY RESPONSE ! 50 POINTS!
Answer:
I can tell you that René Descartes, the French philosopher and mathematician, argued in his philosophical treatise "Meditations on First Philosophy" that the distinction between waking life and dreams is not always clear, and that there is no sure test to determine whether one is dreaming or awake. He claimed that the experiences in a dream can seem just as real as those in waking life, and that it is only after waking up that one realizes it was a dream.
In terms of identifying that one is in a dream, there are certain dream signs that can indicate that one is dreaming, such as physical impossibilities, repetitive events or actions, and a distorted sense of time. However, these signs are not foolproof and can be difficult to recognize in the moment, especially if the dream feels real.
In summary, Descartes' argument is that there is no sure way to determine whether one is dreaming or awake, and that the experiences in a dream can be just as vivid and convincing as those in waking life.
Do antioxidants form stable radicals?
The answer is no that a antioxidants form stable radicals because antioxidants are thus molecules which help prevent oxidation of the other molecules.
The radicals formed during oxidation are largely reactive and unstable, and can beget damage to the cells. Antioxidants are suitable to contribute electrons to the revolutionaries, therefore negativing them and precluding farther damage.
The antioxidants themselves can also be come with other redicals, but these revolutionaries are snappily killed by the antioxidants themselves, or by other motes in the cell. therefore, the antioxidants don't form stable revolutionaries and rather help to cover the cell from radical damage.
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Can someone please help me for 50 pts
A slump is a form of mass wasting that is when a coherent mass of loosely consolidated materials or a rock layer moves a short distance down a slope, hence for questions 1- 4, 2- 8, 3- 11, 4-1, 5-3, 6-7, 7- 10, 8-5, 9- 2, 10-6 and 11-9.
What are the different terms used in geology?
> Mechanical weathering also called physical weathering braks the rock without changing their composition.
> Runoff water flows over the earth surface.
> Soil - a mixture of organic matter, weather rock, water, and air.
Therefore, chemical weathering, is a process in which the composition of the rock changes.
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What are the 3 cavities of the human body?
The three cavities of the human body are The thoracic cavity is the area where the internal organs ventrally above the diaphragm are located. Abdominopelvic cavity: the combined abdominal and pelvic cavities. The abdominal cavity is the area filled by the ventral internal organs that are superior to the pelvic cavity and inferior to the diaphragm.
Which body cavity has the most space?The greatest hollow area in the body is the abdominal cavity. The upper plane of the pelvic cavity serves as its lower barrier, while its diaphragm, a layer of muscle and connective tissue, serves as its upper limit.
The brain is protected by which bone?The skull shapes the face while safeguarding the brain. The spinal column, or backbone, guards the spinal cord, which serves as a communication line between the brain and the body.
Can cardiac issues be caused by cavities?Periodontal disease may be brought on by oral health problems such cavities and untreated tooth decay. According to a study published in the Journal of the American Heart Association, periodontal disease-related inflammation raises the chance of developing heart disease.
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Which type of epithelial tissue lines the urinary bladder?
The lining of the urine bladder is made up of a particular type of stratified epithelium called the urothelium.
Urinary structures, including the ureter, urinary bladder, and proximal urethra, are the only places where the urothelium may be found.
Urine is temporarily stored in the urinary bladder, which functions as a reservoir. It can be found in the pelvic cavity, below the parietal peritoneum, and posterior to the symphysis pubis. The urinary bladder expands and contracts according to the volume of urine it stores and the amount of pressure it is subjected to from the organs that are located in close proximity to it.
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