Are haiku poems only about nature?
No haiku poems aren't only about nature, Although many haikus focus on the expression of various emotions, such as love, sadness, and despair, they may also include images of nature.
Haikus are a type of poetry from Japan that is known for being short and easy to write. The fact that these brief poems have only three lines and 17 syllables in total forces the author to concentrate on the poem's language and diction. No, haikus don't need to be about nature. Although many haikus focus on the expression of various emotions, such as love, sadness, and despair, they may also include images of nature. Because they require only a few words to convey a unique image, haikus are a favorite among writers. Because the haiku is so minimalist, poets must keep their writing to the essentials and make each word or even syllable count.
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What would happen if there were no ribosomes?
Answer: There would be no life. Life would not be.
Explanation: Without ribosomes, there would be no proteins. Ribosomes contain RNA and proteins that cells need for survival. Cells can't survive without proteins. These tiny cell parts are therefore found in all living cells on earth. From large to small. Life would not exist without ribosomes because the cell's ribosomes contain proteins.
Shows the relationship between the volume and surface area of different three dimensional shapes
The Volume and Surface area cannot be related because there can be structures with same volume but different surface areas.
How do we calculate surface area?The surface area of a solid object is a measure of the total area that the surface of the object occupies.
Moreover, the surface area of a three dimensional shape is the total area of all of the faces. To find the surface area of a shape, we find the area of each face and add them together.
The surface area of an object is the total area of the outside surfaces of the three-dimensional object i.e, the total sum of the area of the faces of the object. It is measured in terms of square units.
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Consider the phylogenetic tree. Which pair of organisms is most closely related to primates? amphibians and rodents crocodiles and amphibians rodents and rabbits dinosaurs and birds.
Answer: Dinosaurs and Birds are most closely related to primates. This is the reason why phylogenetic trees are also known as evolutionary trees.
Explanation: A branching diagram or tree illustrating the evolutionary relationships among distinct biological species or other entities based on similarities and differences in their physical or genetic traits is known as a phylogenetic tree (sometimes referred to as an evolutionary tree or phylogeny). One evolutionary tree represents all life on Earth and shows their shared ancestry. The century-old debate about the origin of birds has been resolved by the abundance of fossilized early birds and their closest relatives. The evolution of birds from the maniraptoran theropod dinosaur group has now been conclusively proven. Birds' bones resemble those of several maniraptoran species. Numerous fossils have demonstrated that maniraptorans laid eggs that resembled those of birds and that they also resembled birds in terms of egg-laying behavior. These justifications demonstrate how closely connected they are.
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Considering the phylogenetic tree, The pair of organisms that are most closely related to primates are rodents and rabbits.
Even though all of the organisms on the list are vertebrates, rodents and rabbits are the closest relatives of primates. Compared to reptiles, amphibians, dinosaurs, and birds, these animals (primates, rodents, and rabbits) share a recent common ancestor.
The body structures of primates, rabbits, and rodents are somewhat comparable in some ways. The characteristics of primate bones match those of rodents, rabbits, flying lemurs, tree shrews, and other animals. Both rodents and primates have two long fingers and upper teeth that are shaped like can openers.
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please describe the signal transmission across a myoneural junction that allows the nervous system to move the muscles of a football player during a game? please be detailed with your description
The signal transmission across a myoneural junction, also known as the neuromuscular junction, is the process by which the nervous system communicates with the muscles to produce movement.
This process is essential for the normal function of the musculoskeletal system and allows us to perform a wide range of movements, including those required to play a football game.
Here is a detailed description of the signal transmission across a myoneural junction:
An action potential, or electrical impulse, travels down the axon of a motor neuron (a type of nerve cell) until it reaches the myoneural junction.At the myoneural junction, the axon terminal of the motor neuron releases a chemical called acetylcholine (ACh) into the synapse, or the small gap between the axon terminal and the muscle fiber.ACh binds to receptors on the surface of the muscle fiber, causing an electrical current to flow across the muscle cell membrane.This electrical current triggers the release of calcium ions from internal stores in the muscle fiber, which leads to a contraction of the muscle.After the signal has been transmitted, the ACh is broken down by an enzyme called acetylcholinesterase (AChE). This prevents the signal from being transmitted continuously, which would lead to sustained muscle contraction.This process occurs very quickly and allows the nervous system to rapidly communicate with the muscles to produce movement. It is essential for the coordination of movements and the execution of fine motor skills, such as those required to play football.
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What are 3 traits that are polygenic?
Height, skin colour, and eye colour are three examples of polygenic traits in humans. Multiple genes control these characteristics.
What exactly is a polygenic trait?A polygenic trait is one that is influenced by multiple non-allelic genes. These genes are known as polygenes. They are a group of genes that, when activated, express as a whole. Each one has an effect that adds up to the trait. Nonetheless, the effect of a single gene is difficult to distinguish, especially when a polygenic character is involved.
Do Polygenic Genes follow Mandel's Inheritance Pattern?Polygenic traits do not follow Mendel's pattern of inheritance because multiple genes are involved. They are frequently represented as a range of continuous variation rather than being measured discretely. Height, skin color, eye color, and hair color are examples of polygenic traits.
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Q.12. How to preserve biodiversity?
a) By preventing deforestation
c) By protecting species
b) By reducing waste
d) all of above
The correct answer is option D all of the above.
Biodiversity refers to all the life forms that exist in an area including plants, animals, and humans. It is important to preserve biodiversity because man is dependent on nature for food, shelter, fuel, and everything.
Biodiversity can be preserved by:
a) By preventing deforestation - Trees are home to a large number of birds and animals. Trees help in maintaining the balance in the ecosystem.
b) By protecting species - In nature each specie has a specific role and is interconnected to other species. Protecting the species is the most important aspect of the preservation of biodiversity.
c) By reducing waste - Reducing the waste will create a cleaner and safer environment for all organisms to thrive in thus protecting biodiversity.
Therefore all the above options are correct.
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What 4 Things were blamed on Snowball?
Napoleon blames Snowball for stolen corn, broken eggs, trampled crops, broken windows, and blocked drains.
What are Crops?
Crops are plants grown for human consumption. They can be grains, vegetables, fruits, nuts, or other edible plants. Crops are grown in fields, gardens, orchards, and other agricultural settings.
What do you mean by Blame?
Blame is the act of holding someone responsible for a wrong or failure. It is often associated with criticism, fault-finding, and expressing disapproval. Blame can also be used to refer to the act of attributing the responsibility or fault for something to a particular person or group of people.
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What are the benefits of genetically modified GM foods to farmers?
GMO crops are grown today have been created to assist farmers in preventing crop loss.
Farmers can use fewer spray pesticides to protect GMO crops that really are resistant to insect damage. Herbicide-tolerant GMO crops aid farmers in weed control while minimising crop damage. Farmers who use herbicide-tolerant crops do not need to till the soil, which is normally done to remove weeds. This no-till planting promotes soil health while reducing fuel and labour consumption. Studies have shown that there are both economic and environmental benefits.
GMOs have an impact on the lives of farmers all over the world. The United States Agency for International Development (USAID) is collaborating with partner countries to improve staple crops, which comprise a large portion of people's diets.
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4 Label the bones of the skull in lateral view. Maxilla Book Mandible ferences Frontal bone Parietal bone Temporal bone Occipital bone Nasal bone Sphenoid bone Zygomatic bone Reset 7nom Grew
The following are the skull bones visible from an anterior and lateral view: The sphenoid bone (with the larger and lesser wings), the frontal bone (particularly the orbital surface), and the zygomatic bone are all bones.
The skull (22 bones) is divided into two sections: (1) The skull is made up of eight bones (Occipital, Two Parietals, Frontal, Two Temporals, Sphenoidal, Ethmoidal) while the skeleton of the face is made up of fourteen (Two Nasals, Two Maxillae, Two Lacrimals, Two Zygomatics, Two Palatines, Two.
The occipital bone, two temporal bones, two parietal bones, the sphenoid, ethmoid, and frontal bones are all found in the neurocranium. The vomer, two inferior nasal conchae, two nasal bones, two maxilla, the mandible, two palatine bones, two zygomatic bones, and two lacrimal bones are the bones of the facial skeleton (14).
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How many gene pairs are in the human genome?
The genome is organized into 22 paired chromosomes, termed autosomes, plus the 23rd pair of sex chromosomes (XX) in the female and (XY) in the male.
The human genome is a complete set of nucleic acid sequences for humans, encoded as DNA within the 23 chromosome pairs in cell nuclei and in a small DNA molecule found within individual mitochondria. These are usually treated separately as the nuclear genome and the mitochondrial genome.
Human genomes include both protein-coding DNA sequences and various types of DNA that does not encode proteins. The latter is a diverse category that includes DNA coding for non-translated RNA, such as that for ribosomal RNA, transfer RNA, ribozymes, small nuclear RNAs, and several types of regulatory RNAs.
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How common is atherosclerosis in the brain?
Researches claim that cerebral atherosclerosis is uncommon and atherosclerosis accounts for just 5-8% of conditions related to brain.
Atherosclerosis which happens in brain is called as intracranial atherosclerosis which is responsible for transient ischemic attacks. Atherosclerosis of the brain arteries is a common cause of Cerebral vascular accidents. Atherosclerosis is related mainly to heart muscles where it causes undue hardening of cells and muscles. It is not very common to brain muscles because it is mainly hard naturally. It generally affects heart by causing blockages and delayed pumping functions. Angioplasty is an important option for the relatively severe intracranial stenosis. Hence, atherosclerosis is not common to brain diseases.
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social monogamy is rare in mammals but common in birds. what difference is hypothesized to explain this observation? the average diet the mean body size the need for biparental care the mean body temperature
The difference that is hypothesized to explain the observation that social monogamy is rare in mammals but common in birds is the need for biparental care.
Social monogamy refers to a social and sexual relationship between two individuals of the same species in which both individuals contribute to the care of their offspring.
In many species of mammals, males typically do not contribute significantly to the care of their offspring, and females are responsible for providing all of the necessary care. This is because the energy demands of pregnancy and lactation are high, and females need to devote a significant amount of time and resources to caring for their young. In contrast, many species of birds have a more equal division of labor between the sexes, with both males and females contributing to the care of their offspring.
This is often because the energy demands of producing eggs are lower than those of producing offspring in mammals, and because birds can often forage for food while leaving their young in the nest.
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Each of the following statements about chemoorganotrophs is true EXCEPT:
Each of the following statements about chemoorganotrophs is true EXCEPT: They may use photophosphorylation to produce ATP
What are chemoorganotrophs?
Chemoorganotrophs are creatures that get their energy from organic compounds like glucose and are also referred to as organotrophs. The oxidation of organic molecules is what this procedure, referred to as chemoorganotroph, entails. Chemoorganotrophs may generally be split into two groups. Both anaerobic and aerobic chemoorganotrophs fall within this category. The two main types of anaerobic chemoorganotrophs are further broken down. These include processes that use anaerobic chemoorganotroph and those that use fermentation to produce energy.Hence, chemoorganotrophs may use photophosphorylation to produce ATP
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Each of the following statements about chemoorganotrophs is true EXCEPT:
They utilize an electrochemical gradient.They may use oxidative phosphorylation to produce ATP.They may use photophosphorylation to produce ATP.They may use substrate level-phosphorylation to produce ATP.What is point mutation and its types?
A genetic modification caused by the substitution of a single nucleotide for another nucleotide is called point mutation. Transition mutations and transversion mutations are two types of point mutations.
Point mutations are gene mutations that occur when a single nucleotide base in an organism's genome is changed, inserted, or deleted. Point mutations have a variety of effects on downstream protein product, with moderately predictable consequences based on mutation-specific features. In terms of protein production, composition and function, these consequences can range from no effect (e.g., synonymous mutations) to negative effects (e.g., frameshift mutations).
Conversion occurs when one purine moiety is replaced by another purine or one pyrimidine is replaced by another pyrimidine. The conversion occurs when the purine is replaced by pyrimidine or vice versa. The wrong mutation leads to the creation of a different amino acid. Missile mutations, also known as nonsynonymous alterations, alter one codon to produce another protein. The term point mutation is sometimes used to describe the addition or deletion of a base pair.
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What is the result of Mendel's experiment when he crossed a short pea plant with a tall pea plant?
Only the dominant trait (tall) appeared in the F1 generation when Mendel crossed two varieties of a character (such as short and tall in pea plants). The F1 plants had a Tt genetic makeup.
Since all of the plants in the F1 generation have the genotype Tt and have the allele for tall height, they are all tall plants (dominant allele).
When a dominant allele is present, all of the plants have tall heights because the recessive gene is not expressed. However, the following genotypes are produced in the subsequent generation when the plants of this generation are self-crossed: TT:Tt: tt in the ratio 1:2:1. As a result, 25% of the plants contain the recessive alleles for both alleles. When the recessive gene is expressed, the plant is short and has a lack of the dominant allele. In the F1 generation, the recessive allele was suppressed; however, in the F2 generation, it was expressed.
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which of the following best describes an advantage of constructing habitat corridors? responses corridors connect habitats separated by fragmentation and connect wildlife populations. corridors connect habitats separated by fragmentation and connect wildlife populations. corridors prevent invasive species from traveling between protected habitats. corridors prevent invasive species from traveling between protected habitats. corridors provide a safe passage for vehicles and allow humans to travel within wildlife preserves. corridors provide a safe passage for vehicles and allow humans to travel within wildlife preserves. corridors increase the amount of protected area that is not affected by humans.
Advantage of constructing habitat corridors is corridors connect habitats separated by fragmentation and connect wildlife populations, 1st option.
What is a habitat corridor?In an urban area, a habitat corridor can be any natural or wildlife strip that connects two core habitats. Wildlife corridors are connections across the landscape that connect habitat areas. They promote natural processes that occur in a healthy environment, such as species movement to find resources such as food and water.
Corridors also help many species survive by increasing food sources, providing valuable cover, decreasing the likelihood of predation, and reconnecting fragmented and isolated populations.
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An advantage of constructing habitat corridors is corridors connect habitats separated by fragmentation and connect wildlife populations. option A is the correct answer.
What habitat corridors?This refers to areas connected across the landscape that link up areas of habitat. They support natural processes that occur in a healthy environment, they enhance the movement of species to find resources, such as food and water.
Advantages of constructing habitat corridors
It helps increase food sources for the animals.It provides valuable cover for the animals.It decreases the chance of predation., It reconnects fragmented and isolated populations.Learn more about habitat corridors on
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What is the correct chronological order of the 3 steps of translation from mRNA to a polypeptide?
The translation of an mRNA molecule by the ribosome into a protein occurs in three stages: initiation, elongation, and termination.
The process by which a cell manufactures proteins using genetic information supplied by messenger RNA in biology. mRNA is produced as a result of DNA replication, and the information it carries guides the cell on how to link amino acids together to generate proteins.
After the process of transcription of DNA to RNA in the cell's nucleus, ribosomes in the cytoplasm or endoplasmic reticulum create proteins. Transcription is the process of transcribing DNA to RNA, while translation is the process of utilizing RNA to make proteins. DNA secures and stabilizes genetic material in the nucleus of cells as a reference, or template.
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Which principle of building fitness involves gradually increasing the demands on your body? (a) Specificity, (b) Overload, (c) Progression, (d) Regularity.
Answer:
c) Progression.
Explanation:
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during a transamination reaction glutamate present in skeletal muscle tissue transfers its amino group to another compound. thus a new compound is produced within the muscle tissue. this newly formed compound is then transported into the blood circulation, and finally enters into the liver tissue. identify the compound to which glutamate would trasfer its amino group during this transamination reaction in muscle tissue.
Glutamate in skeletal muscle tissue transfers its amino group to another chemical via a transamination event.
As a result, a new chemical is formed within the muscle tissue. This newly produced chemical is subsequently carried via the bloodstream and into the liver tissue.
First, glutamate plays a critical catalytic function in the elimination of -amino nitrogen from amino acids via the well-described transdeamination pathway including aminotransferases and glutamate dehydrogenase.
The process of removing amino groups from amino acids and transferring them to acceptor keto-acids to produce the amino acid version of the keto-acid and the keto-acid version of the original amino acid is known as transamination.
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during the ________ trimester of pregnancy, fetal movements begin to be detectable, and there are noticeable periods when the fetus is awake or asleep.
During the second trimester of pregnancy, fetal movements begin to be detectable, and there are noticeable periods when the fetus is awake or asleep.
What happened in the second trimester of pregnancy?The second trimester represents the middle pаrt of your pregnаncy, from weeks 13 to 26. For mаny women, one of the best things аbout this trimester is thаt nаuseа might begin to settle.
Fetаl movements felt by pregnаnt women аre а sign thаt the fetus is growing in size аnd strength. The pregnаnt womаn is usuаlly the first to feel these movements, which others perceive cаn lаter. Women аre often tаught by their heаlth cаre provider to monitor or be аwаre of the movements of the fetus. This cаn be а generаl аwаreness of fetаl movements, or the women cаn be tаught to count the number of kicks they feel in а set аmount of time.
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Chapter 6. How Cells Read the Genome: From DNA to Protein
All of the proteins and RNA molecules in a cell have specific sequences, and the information contained in genomes controls how, when, and where these molecules are made.
How did the current connections between proteins and nucleic acids develop? What is the genesis of the genetic code? Are there further sorts of information in genomes that we have not yet identified? In the processes of DNA replication, transcription, splicing, and translation, cells go to tremendous lengths to rectify errors. Are there comparable methods to fix errors in choosing which genes to express in a particular cell type? Could such a tactic be reflected in the high complexity of transcription initiation in both plants and animals?
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which step in the digestive process represents a chemical change in food? question 10 options: storing of swallowed food in the stomach movement of food down the esophagus to the stomach churning of food, liquids, and digestive juices in the stomach substances in the mouth and stomach breaking down fats and proteins
Digestion is the process by which food is broken down into smaller molecules so that the body can absorb and use the nutrients. It is an incredibly complex process that involves a variety of steps.
One of the most important steps in the digestive process that represents a chemical change in food is the churning of food, liquids, and digestive juices in the stomach. The stomach is lined with a thick layer of muscle that helps to churn the food and mix it with digestive juices.
The churning of food, liquids, and digestive juices in the stomach is an important step in digestion that represents a chemical change in food. Without this process, the food would not be broken down into smaller molecules, and the body would not be able to absorb and use the nutrients. The digestive juices also help to neutralize the stomach acid, preventing it from damaging the delicate lining of the stomach.
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How can help save destruction of coral reefs as a grade 5 pupil?
Some of the ways one can follow to save the destruction of coral reefs are safe boating, usage of non-toxic sunscreen, usage of green fertilizers, water conservation, and volunteering.
Refrain from touching or anchoring the boat on reefs. The delicate coral organisms will be harmed by contact with the reef, and anchoring on the reef can cause coral death.
Coral reefs have been demonstrated to be poisonous to a number of common sunscreen chemicals, including oxybenzone and octinoxate. So use sunscreen that is non-toxic to corals.
Because nutrients (nitrogen and phosphorus) from excess fertilizer use on lawns flow into streams and eventually end up in seas, this practice degrades water quality. These nutrient pollutants can damage coral reefs and pollute the water. Use environmentally friendly insecticides and fertilizers that won't affect coral reefs or other marine life.
Join a local beach or reef cleanup as a volunteer. Keep unwanted fishing nets and lines out of the water and off the beach. Any form of garbage can affect the reef and fish by polluting the water.
Only use water you actually need. The less water you use, particularly outside, the less wastewater and runoff will contaminate our oceans.
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What are two other methods that scientists use to improve coral reefs or to control the factors responsible for the deterioration of coral reefs?
Replantation and genetic engineering are two techniques that scientists utilize to enhance coral reefs or to manage the causes that cause coral reef degradation.
Numerous local and global problems, such as overfishing, pollution, climate change, and unsustainable coastal development, are continuously putting stress on coral reefs. Scientists have come up with many ideas to improve the survival of coral reefs. The two main methods are replantation and genetic engineering.
Both land-based and marine nurseries are capable of growing coral. Pruning and propagation are two of the most frequent techniques used to cultivate coral. We cut off a tiny piece of wild coral, bring it back to the nursery, and let it continue to grow there. We return to the reef to transplant it once it has grown to the proper size. In a controlled environment, we can produce more biomass this way.
The objective is to develop new coral breeds that are better able to withstand intense heat. Scientists are developing several coral species in the lab by genetic engineering to make them more heat tolerant. Coral can also be grown in hotter water to achieve this goal. Another strategy is to concentrate on the algae, which coral rely on for nutrients and oxygen. Scientists want to help corals fend off bleaching occurrences by developing new varieties of heat-tolerant bacteria and algae.
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What are 3 examples of controllable risk factors associated with cardiovascular disease?
Controllable risk factor for cardiovascular failure.Heart muscle disease (cardiomyopathy)Heart valve disease
What is a controllable risk factor for cardiovascular disease?There are five main heart disease risk factors that you can control. A poor diet, high blood pressure, cholesterol, stress, smoking, and obesity are factors formed by your lifestyle and can be better through behavior modifications.
Controllable risk factors are those you can take pace to change or influence. Diet; Smoking; Excessive alcohol utilization modifiable cardiovascular disease risk factors are those that can be lower or controlled with altered behavior.
So we can conclude that Heart Attack. A heart attack, or asystole infarction, usually tops the list of cardiovascular diseases in the United States.
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How can you use the FITT principle for cardiorespiratory endurance?
The FITT principle should be used with cardiorespiratory endurance to set fitness goals as one should exercise based on their fitness levels.
What is FITT ?The capacity of the lungs and heart to supply oxygen-rich blood to the muscles while engaging in physical exercise is known as cardiorespiratory endurance. It is crucial because it keeps bodily activities going.
Cycling, jogging, and swimming are a few exercises that have to do with cardiorespiratory endurance.
Five times a week, on average
Intensity - Spend five minutes warming up. Then engage in moderate-intensity exercise, making sure you can pass the "talk test"—that is, that the exercise is not so demanding that you are unable to carry on a conversation with another person. Take five minutes to relax.
Time - Work out for at least 10 minutes at a time, with a daily minimum of 30 minutes (more is even better, if tolerated).
Type - any action that causes an increase in heart rate for at least 10 minutes, such as jogging, walking, swimming, vacuuming, cleaning, shovelling, etc.
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63. Considered the "Father of Taxonomy". His classification system was built on visible characteristics and is still used today. Kingdom, Phylum, Class, Order, Family, Genus, Species
a. Aristotle b. Linnaeus c. Woese
What is meant by somatic mutation?
An adjustment of the DNA grouping of a Somatic cell in a multicellular organism form with committed reproductive cells is known as a somatic mutation. Specifically, any mutation that occurs outside of a gamete, germ cell, or gametocyte.
somatic mutation is a genetic change that a cell acquires that can be passed on to the mutated cell's offspring during cell division. Somatic mutations are distinct from germ-line mutations, which are genetic changes that are passed down through the family and occur in the germ cells (sperm and eggs). Environmental factors, such as exposure to ultraviolet radiation or particular chemicals, frequently result in somatic mutations.
From the first cleavage of the fertilized egg to the cell divisions that replace cells in an elderly person, somatic mutations can occur at any cell division. All subsequent cells from the mutated cell are affected by the mutation. The mutation may be present in a significant portion of an organism, such as a tree branch or an entire tissue layer in an animal; It could be expressed in a visible way or not. Multiple diseases, including cancer, can be brought about by somatic mutations.
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What do bats and humans have in common?
Answer:
the exact same types of bones in their forearm
Explanation: