Answer:
Explanation:
1965-70 there population dropped majorly and from 1970-75 the wolf population sprung back up
Answer:
AThere was a steady decrease and then a sudden increase in population.
B It increased slowly for a few years and suddenly decreased.
Explanation:
Homeostasis literally means the same or steady state. A plant’s health depends upon the availability of water, air, light, and nutrients. Which statement BEST describes how plant organelles help the plant to maintain homeostasis?
Homeostasis, which is the ideal state for a healthy plant, is defined as the same state. Additionally, the health of plants is reliant on the availability of nutrients, light, water, and air, all of which are utilised by plant cells.
Plant cells have solid walls that house organs that control the health and development of the plant.
In ecology, homeostasis refers to an ecosystem's capacity to keep itself generally stable in the face of disruptions. It comes about as a result of both species interactions and biodiversity in the natural world. - An balance is kept in the ecology.
Evaporative cooling is provided via transpiration. Heat is transferred with the water when it exits the plant tissues and enters the atmosphere.
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What are the 4 steps of the carbon cycle?
Respiration, combustion, decomposition, and photosynthesis. Carbon enters plants and other living things through the atmosphere.
Using light energy, plants and some other organisms engage in a process known as photosynthesis that results in the creation of oxygen and high-energy carbohydrates like sugars and starches.
Respiration is the process by which a living thing or cell absorbs oxygen from the atmosphere or water, disperses it for oxidation, uses it, and releases products of oxidation.
Combustion is the process of burning fuels to create heat and light.
Decomposition is the disintegration of organic material
Which 4 spheres make up the carbon cycle?In all four of the planet's major spheres—the biosphere, atmosphere, hydrosphere, and lithosphere—carbon is a very prevalent element.
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FILL IN THE BLANK. primates known as anthropoids include all of the following groups except ________.
The primates called anthropoids include all of the given organisms except: (A) lemurs.
The term anthropoids refers to the living organisms that belong to the infra-order Anthropoidea of the order Primates. These are also known by the name simians. Anthropoids in simpler terms refers to 'man-like'. The example of organisms belonging to this are: humans, apes, Hominini, etc.
Lemurs are the mammals that belongs to the family Lemuridae of the order Primates. Lemurs are native to the island of Madagascar. The characteristics of lemurs are: small and pointed snout, large eyes, and a long tail. They are called the wet-nosed primates.
The given question is incomplete, the complete question is:
Primates known as anthropoids include all of the following groups except ________.
(A) lemurs
(B) Old World monkeys
(C) New World monkeys
(D) humans
(E) gorillas
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specific adaptations that animals have developed to survive in humid subtropical climates
Answer:
Animals that live in humid subtropical climates have developed a variety of adaptations to help them survive and thrive in these conditions. Some examples of these adaptations include:
:Thick, insulating fur or feathers: Many animals in humid subtropical climates have thick fur or feathers that help to keep them warm and dry in wet conditions. This can help to prevent heat loss and maintain body temperature, which is especially important in environments where the air is cool and damp.
:Waterproof skin or scales: Many animals in humid subtropical climates have skin or scales that are waterproof or water-repellent. This helps to prevent them from getting waterlogged and can make it easier for them to move through wet environments.
:Webbed feet or other adaptations for swimming: Some animals in humid subtropical climates, such as amphibians and aquatic mammals, have webbed feet or other adaptations that allow them to swim efficiently. This can help them to move through wet environments and avoid predators.
:Behavior patterns that minimize exposure to heat and moisture: Many animals in humid subtropical climates have behavior patterns that help them to avoid the heat and moisture that can be common in these environments. For example, some animals may become inactive during the hottest parts of the day, or may seek shelter in cool, damp areas during times of extreme heat or moisture.
:Specialized digestive systems: Some animals in humid subtropical climates have specialized digestive systems that allow them to extract nutrients from wet or damp foods, such as grasses and leaves. This can help them to survive in environments where food may be scarce or difficult to access.
Overall, the specific adaptations that animals have developed to survive in humid subtropical climates vary depending on the species and the specific conditions of the environment. However, these adaptations generally help animals to regulate their body temperature, move efficiently through wet environments, and access food and other resources in these conditions.
Explanation:
the temperature felt by the human body when wind makes it feel colder than the actual temperature.
The temperature felt by the human body when the wind makes it feel colder than the actual temperature. this is called wind chill.
A term used to describe how the combination of cold temperatures and winds blowing on exposed skin makes the air temperature feel to the skin is known as wind chill. Simply put, the colder the air and the faster the wind, the colder your skin will feel when you are outside.
Therefore, even if the temperature stays the same but the speed of the wind increases, it will actually feel colder on your skin. The heat that we naturally produce is carried away from our bodies by the wind as it moves across our bodies. Our body heat is taken away from us more quickly and we feel colder the faster the wind blows. The process is analogous to blowing on a hot bowl of soup to cool it down. The "Wind Chill" is the temperature that feels like it's outside because of the temperature of the air and the speed of the wind.
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explain where. in the world. the hbs allele is mostly likely to be prevalent and why the allele persists in spite of the danger associated with having two hbs alleles
The hbs allele is most likely to be common in regions with high rates of malaria like African area. The heterozygotes are not negatively impacted and are provided a benefit in these areas, therefore the allele survives.
What does the Hbs allele correspond to?Sickle cell anemia, which develops when two copies of the Hbs allele are inherited, is a serious, chronic condition that can be fatal. Hemoglobin becomes aberrant as a result, forcing the red blood cell to assume a crescent-shaped form and becoming hard as opposed to flexible. The red blood cell's shape is slightly altered by inheriting one copy of the Hbs allele (becoming a carrier), but not significantly enough to impair function as in the full disorder.For more information on Hbs allele kindly visit to
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Can a recessive gene become dominant?
The specific DNA difference that causes the trait is what makes it recessive. So one way for a trait to progress from recessive to dominant is for a new dominant DNA difference that causes the same trait to arise.
What factors contribute to a gene's dominance?A dominant relationship exists between two versions of a gene. Individuals inherit two copies of each gene from each parent, which are referred to as alleles. Only one allele of a gene will be expressed if two alleles differ; this is the dominant gene. The effect of the other, recessive allele is obscured.
How recessive genes are passed down to future generations?Because recessive inheritance necessitates the abnormality of both genes in a pair for disease to occur. Carriers are individuals who only have one of the two defective genes. These people are frequently oblivious to the condition. However, they can pass on the abnormal gene to their children.
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What is a germline cell?
Because older adults are more prone to injury, exercise programs: __________
Because older adults are more prone to injury, exercise programs Should focus on low impact aerobic approaches
Injury-prone is defined as "frequently injured or frequently sustaining injuries" by dictionaries. When people say "injury-prone," they usually mean someone with a history of injuries. The phrase itself is unconcerned with the types of injuries or the causes of them. Low-impact exercises require you to lift at least one foot off the ground. Cycling, elliptical machine cardio, hiking, yoga, Pilates, and dancing are a few examples. These exercises are gentler on the joints and muscles because they have less impact. Low-impact exercises also provide a gentle workout on easy days and can help with recovery on difficult days. High-impact exercises are on the other end of the spectrum. These exercises are hard on the joints.
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A model of natural selection is shown here with a small beetle population. Some green beetles in the original population are shown as dying by predation. The resulting population several generations later is shown on the right. Which of these explanations should be selected to account for the changes in the population of beetles shown here?
The explanation which should be selected to account for the changes in the population of beetles in this scenario is that beetles with brown coloration survived with greater frequency in the original population, resulting in a greater frequency of brown beetles in subsequent populations which is therefore denoted as option D.
What is Population?This is referred to as the total number of organisms which are present in an area over a given period of time and is dependent on various factors such as environment etc.
In this scenario, beetles with brown coloration survived with greater frequency in the original population. This therefore led to them undergoing reproduction with the others who have such color in the ecosystem.
The result will therefore be a greater frequency of brown beetles in subsequent populations due to it being a dominant color thereby making it the correct choice.
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The options are:
A) Individual green beetles evolved to be less adapted, resulting in a change in allele frequencies in future generations.
B) Individual brown beetles evolved in the presence of the predator to be better adapted, making it more common in future generations.
C) Green beetles that survived the presence of the predator migrated to different populations, decreasing their frequency in the subsequent populations.
D) Beetles with brown coloration survived with greater frequency in the original population, resulting in a greater frequency of brown beetles in subsequent populations
during a cold spell, florida orange growers often spray a mist of water over trees during the night. why is this done?
During a cold spell, Florida orange growers often spray a mist of water over trees during the night because The large latent heat of vaporization for water keeps the trees from freezing.
The thermal energy needed for a liquid to vaporize to a gas, or the amount released when a gas condenses to a liquid, is referred to as the latent heat of vaporization. The enthalpy of vaporization is another name for the latent heat of vaporization.
A substance's latent heat of vaporization is a physical property. It is defined as the amount of heat required to alter one mole of liquid at its boiling point at standard atmospheric pressure. It is measured in kg/mol or kJ/kg.
The highest known heat of vaporization of water. The heat of vaporization is described as the amount of heat required to convert 1 g of a liquid into a vapor without causing the liquid's temperature to rise.
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when a population overshoots its carrying capacity, as you saw in the lesson of the kaibab lab activity, what typically follows?
when a population overshoots its carrying capacity, There may be no more resources left. If all of the resources are used up, populations may die out.
The world's keeping potential appears to be largely determined by a number of factors, including environmental or biological phenomena. It's possible that nutrients will be completely depleted in a community that has outlived its ability to hold on for such a long time. When a creature's population grows faster than the ecology can support it, it may become extinct. When all resources are used up, communities may slowly deteriorate. Drink, food, shelter, and energy would all be limited as humans reach their maximum capacity. In order for people to thrive, they need to be dissatisfied with the food and other factors.
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When Mendel crossed true-breeding purple and white pea plants What is the phenotypic ratio of offspring in the F1 generation?
The F1 offspring of the P cross are all heterozygous for both traits. Using a Punnett square, the resulting 9:3:3:1 F2 phenotypic ratio is calculated. Yellow peas (Y) and white peas (p) are dominant over purple blooms (P) and green peas (p) respectively in pea plants (y).
The genotypes PpYY, PpYy, ppYY, and ppYy are among the options. For a 1:1 ratio of each phenotypic, the first two genotypes would produce plants with purple flowers and yellow peas, whereas the second and third genotypes would produce plants with white flowers and yellow peas. Because two of the alleles are homozygous, you only need a 2X2 Punnett square (four squares total) to do this analysis.
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How many phenotypes are possible with 4 alleles?
We all have alleles, or versions, of every gene. Being homozygous for a selected gene approach you inherited equal versions many phenotypes are possible with 4 alleles are 16.
It's the alternative of a heterozygous genotype, in which the alleles are distinct. People who've recessive traits, like blue eyes or purple hair, are continually homozygous for that geneAlleles make contributions to the organism's phenotype, that is the outward look of the organism. Some alleles are dominant or recessive.
When an organism is heterozygous at a selected locus and includes one dominant and one recessive allele, the organism will explicit the dominant phenotype.Since every figure has 4 distinct combos of alleles withinside the gametes, there are 16 feasible combos for this cross.
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What are the 3 main themes presented in Of Mice and Men?
Of Mice and Men is a novella written by Nobel Prize-winning author John Steinbeck. The three main themes presented in Of Mice and Men are:
1. The American Dream: The novel examines the nature of the American Dream and its possibilities for achievement. The characters strive to attain the dream of owning their own ranch, but their efforts are ultimately thwarted by the realities of their situation.
2. Friendship: Of Mice and Men explores the value of friendship and stands as a testament to the power of companionship in the face of struggle. The novel's central relationship between George and Lennie is a strong example of how two people can rely on each other for support and motivation.
3. Power and Prejudice: Of Mice and Men examines the power dynamics at play in 1930s America, as well as the prejudices against marginalized groups such as women and racial minorities. The novel shows the consequences of unequal power relations and the ways in which racism and sexism can be used to oppress those without power.
What is Of Mice and Men?
John Steinbeck's 'Of Mice and Men' is a classic novel of friendship, tragedy, and the struggles of the working class. Set in the 1930s during the Great Depression, the novel follows two men, George and Lennie, as they travel across California looking for work. George is the more intelligent of the two, while Lennie is mentally challenged and often gets into trouble. Despite their differences, they form a strong bond of friendship that is tested when Lennie accidentally kills a woman. The story explores themes of loneliness, the pursuit of the American Dream, and the power of relationships. It is a timeless tale of hope and resilience in the face of adversity.
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If the partial pressure of oxygen in both air and water is 100 mm hg, then the concentration of the oxygen is the same in the air and water.
a. true
b. false
If the partial pressure of oxygen in both air and water is 100 mm Hg, then the concentration of the oxygen is the same in the air and water. This statement is False.
A gas's partial pressure is the force it exerts. The sum of the partial pressures in a gas mixture equals the overall pressure. When forecasting gas flow, partial friction is extremely important. Remember that gases in two connected regions tend to equalize their pressure.
The arterial blood gas is the primary method for determining the partial pressure of oxygen.
This provides a direct measurement of the partial pressure of oxygen, the partial pressure of carbon dioxide, acidity (pH), oxyhemoglobin saturation,and bicarbonate concentration in arterial blood.
The sum of the partial pressures of the gases in an ideal gas mixture is the total pressure. A gas's partial pressure is a measure of the thermodynamic activity of its molecules.
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You find a soldier lying face down. The soldier is conscious and tells you that he thinks he has injured his back. What should you do? select the best answer.
A soldier lying face down with injuries his back injured must be handle with proper care and at the earliest. First of all I will look for the place at his back where he was injured and how much he was injured. And then very carefully lift him up and will look for a stretcher or gurneys and will look out for some help. I will try to arrange some vehicle and rush him to the nearest medical care.
Write a short paragraph that explains the central idea of the article. Use at least two details from the article to support your response.
Dozens of earthquakes hit Hawaii as the world's largest volcano erupts
On November 27, Mauna Loa erupted for the first time in nearly 40 years. Located in Hawaii, Mauna Loa is the world's largest active volcano. Volcanoes are openings or vents where lava, small rocks, and steam erupt onto the Earth's surface. Melted rock that comes up from inside the Earth and out of a volcano is lava. The Mauna Loa eruption occurred at the Moku'āweoweo summit caldera. This is a large sunken basin at the summit — or highest point — of the volcano.
Following the eruption, dozens of earthquakes swarmed the region — one of them a magnitude 4.2 quake. Magnitude is a number that characterizes the relative size of an earthquake from 1 to 9.
Remain Vigilant
Officials issued an ashfall advisory for Hawaii's Big Island and asked residents to remain vigilant. So far the eruption's lava flows pose no risk to people living downhill from the eruption, according to Hawaii's Tourism Agency.
Map showing lava flow of Mauna Loa from the years 1843 to 1984.
Image 1. The volcano's last eruption was in 1984, when it sent a lava flow close to the city of Hilo.
"At this time, lava flows are contained within the summit area and are not threatening downslope communities," said officials from the U.S. Geological Survey (USGS). The USGS is a government agency that collects information to help monitor natural hazards such as earthquakes. They warned, however, that the location and advance of lava flows can change rapidly.
The USGS's Hawaiian Volcano Observatory noted that it is set to perform flights to assess the eruption. They warned that "winds may carry volcanic gas and possibly fine ash and Pele's hair downwind." Pele's hair are thin strands of volcanic glass formed from cooling lava. The glass is sometimes carried into the air by strong winds and is sharp enough to tear skin and eyes.
Monitoring The Volcano
Mauna Loa takes up more than half of Hawaii's Big Island. It rises 13,679 feet (4,169 meters) above the Pacific Ocean, according to the USGS. The volcano is fairly active, having erupted 33 times since its first well-documented eruption in 1843. Its last eruption was in 1984 when it sent a lava flow close to the city of Hilo. After that, Mauna Loa entered its longest dormant period in recorded history. Periods of time when the volcano is not erupting, but could in the future, are volcanic dormant periods.
Scientists tracked an uptick in earthquake frequency beginning in June with five to 10 earthquakes a day. By September, the warning signs of an eruption increased. The number of earthquakes grew to around 40 a day in October.
The central idea that the text has is that it tells us of the fact that the scientists were talking about the eruption as a way of sending out warning to the people.
The parts that agree with this are: By September, the warning signs of an eruption increased. Officials issued an ashfall advisory for Hawaii's Big Island and asked residents to remain vigilant
What is the central idea of a passage?The most significant thought that the author wishes to convey to the reader is the key theme of a passage or story. It is possible to state the main notion immediately. The main idea is stated by the author.
The key thought or concept that the author wishes to convey to the readers about the subject is the main idea of a paragraph.
The main premise of the text is that it informs us of the fact that experts were discussing the eruption as a means of alerting the public.
The following passages support this: By September, there were more eruption warning indicators.
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Select the correct term. The sciatic nerve divides into the tibial and POSTERIOR FEMORAL CUTANEOUS / COMMON FIBULAR nerve.
The sciatic nerve divides into the tibial and COMMON FIBULAR nerve.
Leg discomfort, weakened sensation, numbness, or tingling are all symptoms of sciatica. The sciatic nerve is harmed or put under pressure, which causes it. Sciatica is a sign of a health issue. By itself, it does not constitute a medical condition.
When the sciatic nerve is squeezed, sciatica develops. A herniated disc in the spine or an expansion of bone, commonly referred to as bone spurs, on the spinal bones are the usual causes. Occasionally, a tumour may irritate the nerve. Alternatively, a condition like diabetes can harm the nerve.
A significant nerve that innervates the lower extremity is the common peroneal nerve, commonly referred to as the common fibular nerve. It gets fibres from the posterior divisions of L4 through S2 and is one of the sciatic nerve's two main branches.
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Structure A is _______. ATP synthase phospholipid an electron acceptor sensory protein an electron donor
Synthesizing ATP an electron donor is a sensory protein, and phospholipid is an electron acceptor so the answer is Intermembrane space Mitochondrial matrix for Structure A.
ATP synthase in the mitochondrial matrix phospholipid O O a sensory protein O an electron donor O an electron acceptor the "ATP synthases" enzyme complexes are where the proton flow happens.
Synthesizing ATP An electron donor is a sensory protein, and phospholipid is an electron acceptor. The space existing between or involving two or more membranes is known as the intermembrane space (IMS). It is most frequently referred to in cell biology as the space between a mitochondrion's or chloroplast's inner and outer membranes. Although it is frequently referred to as the perinuclear space, it also describes the region of the nuclear envelope that is between the inner and outer nuclear membranes. The IMS of mitochondria is essential for coordinating a wide range of cellular processes, including the control of respiration and metabolic processes. The IMS of the chloroplast does not appear to have any clear function, in contrast to the IMS of the mitochondria.
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Is sclerosis the same as arthritis?
Between the two diseases ( Sclerosis and Arthritis) there are many similarities including some symptoms like the kinds of issues that arise, and how each condition develops over time. Rheumatoid Arthritis and Multiple Sclerosis are autoimmune illness . The immune system attacks healthy body parts after mistaking them for alien invaders.
Similarities between the Multiple sclerosis(MS) and Rheumatoid arthritis(RA) are
Consequences: Chronic inflammation that arises as a result of an overactive immune system causes harm in both RA and MS.Damage to tissues: Both RA and MS induce damage to the tissues, which results in motor dysfunction in the muscles, which affects walking and running.Symptoms: MS and RA share some symptoms, such as weakness and fatigue. Both illnesses eventually affect movement in a variety of ways.Treatment: Medication to reduce inflammation and to suppress the immune system so it can't do more harm is frequently used in the treatments developed for both diseases.Know more about arthritis here
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How many phenotypes are possible with 8 alleles?
There are 36 feasible phenotypes and genotype for the are possible with 8 alleles for an autosomal gene with eight alleles.
Examples of phenotypes encompass top, wing length, and hair color. Phenotypes additionally encompass observable traits that may be measured withinside the laboratory, consisting of ranges of hormones or blood cells.
Phenotype" really refers to an observable trait. "Pheno" really means "observe" and springs from the equal root because the word "phenomenon". And so it is an observable kind of an organism, and it may seek advice from whatever from a not unusualplace trait, consisting of top or hair color, to presence or absence of a disease.
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true or false: neurons have a pacemaker potential.
True. The ability of pacemaker neurons to produce rhythmic bursting activity is a characteristic feature of these cells.
Understanding how many rhythmic activity in neural networks are produced by voltage- and time-dependent ion fluxes in single neurons may be largely dependent on this phenomenon. In addition to rhythmic motor activity, rhythmically active neural networks also contribute to seemingly non-rhythmic behaviors including sleep, arousal, addiction, memory, and cognition. Pacemaker neurons are found in several of these networks. The slow, positive increase in voltage across the cell membrane (the membrane potential) that takes place between one action potential and the start of the next action potential is known as the pacemaker potential or pacemaker current in the pacemaking cells of the heart, such as the sinoatrial node.
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Predict the end result if a chloroplast's light-independent enzymes developed a mutation that prevented them from activating in response to light
a. ATP and NADPH accumulation
b. Water accumulation
c. G3P accumulation
d. Carbon dioxide depletion
Predict the end result if a chloroplast's light-independent enzymes developed a mutation that prevented them from activating in response to light "water accumulation".
Depletion of carbon dioxide. ATP as well as NADPH buildup are the final consequence of a chloroplast's light-independent enzymes.
The assembly of a glucose molecule would be the final step in the light-independent processes, also known as the Calvin cycle. This stage of photosynthesis necessitates the CO2 that the plant absorbs from the atmosphere. In essence, the plant requires the carbon in the CO2 to make the components of glucose.
Therefore, the correct answer will be option (b)
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(Lab 12: The Heart Pre-Lab Assignment 17C Questions 1-10 Nucleus Sarcolemma Desmosome Sarcomere Intercalated discs Sarcoplasmic reticulum Mitochondria Myofibril Muscle cells (fibers) Gap junction
A cell is the basic unit of life in an organism. It is a small, compartmentalized structure that contains all of the necessary components for life, including genetic material, a cell membrane, and various organelles.
Cells perform many functions, such as producing energy, synthesizing proteins, and exchanging materials with their environment. There are many different types of cells, each specialized to perform specific functions within an organism.
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Which issue in a game would a developer most likely address by adding an
option to change the color palette?
A. Accessibility for color-blind users
B. Bias toward users who prefer bright colors
C. Accessibility for users who are blind
D. Bias against users of a certain gender
Answer:
A) accessibility for those who are color blind
Explanation:
C is impossible because they're blind, D is offensive, and B doesn't make sense.
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If an egg cell containing the (n+1) number of chromosomes combines with a sperm cell containing the (n) number of chromosomes, what is the result?
If an egg cell containing the (n+1) number of chromosomes combines with a sperm cell containing the (n) number of chromosomes, then somatic cells of the future organism will contain the (2n + 1) number of chromosomes.
What are Chromosomes? Chromosomes are the very long DNA fibers coated with packaging proteins which contains all of the genetic information about the organisms. Every DNA has a 23 pairs of chromosomes .Out of these 23 pairs the 23rd pair is known as Sex Chromosome which also differ in Male and female.Somatic cell:It is a biological cell forming the body of any multicellular organism.it is also known as vegetal cell.To know more about chromosomes visit
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about one-half of leukocytes are __________.
About one-half of leukocytes are Neutrophils.
In humans, neutrophils (one half of the leukocytes), also known as neutrocytes or heterophils, comprise up 40% to 70% of all white blood cells and are the most prevalent form of granulocyte. They are a crucial component of the innate immune system, and depending on the species, they serve varied purposes.
Neutrophil-killer and neutrophil-cager subpopulations are differentiated from stem cells that are produced in the bone marrow. They have a short lifespan and are very mobile because they may access tissues that other cells or chemicals cannot. Segmented neutrophils and banded neutrophils are two types of neutrophils (or bands). They are a member of the family of polymorphonuclear cells (PMNs), along with basophils and eosinophils.
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What is used for chemical symbols?
Most chemical elements are represented symbolically by letters, generally the first two in their name.
An element symbol is a type of shorthand for representing an element. A chemical symbol is a letter or combination of characters that represents a chemical element.
Chemical symbols and element symbols are used interchangeably. A chemical symbol is analogous to an abbreviation; for example, a doctor would write MD after her name to indicate that she is a doctor of medicine.
Because it is shorter and easier to write, the chemical symbol for an element is used when expressing the chemical formula for a molecule or when formulating a chemical equation. A subscript may be used in conjunction with the symbol to indicate the presence of more than one atom of that element.
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80 percent of transmission fluid is: _________
a. Lubricating oil
b. Detergents
c. Dispersants
d. Friction modifiers
Lubricant oil comprises 80% of transmission fluid.
A family of lubricants known as lubricating oil, sometimes known as lubricant or lube, is used to lessen wear, heat, and friction between mechanical components that are in touch with one another. Motor oil and transmission fluid are two specific names for lubricating oil, which is used in motorised vehicles. Vegetable-derived materials are preferable for lubricant base oil application. High oleic canola oil, castor oil, palm oil, sunflower seed oil, rapeseed oil, and tall oil from tree sources are examples of common ones. Oil-based, water-based, and silicone-based lubricants are the three main categories.
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