under a 1000:1 microscope view, a cell appears to have a length of 10 millimeters. what is the actual length of the cell?

Answers

Answer 1

Answer: 0.001

Explanation:

10 divided by 1000


Related Questions

The capacity of a brain area to reorganize in response to damage is known as brain ____ a. hemispherectomy b. cognitive neural prosthetics. c. plasticity. d. lateralization

Answers

The capacity of a brain area to reorganize in response to damage is known as brain plasticity. Option C is correct.

Brain plasticity, also called as neuroplasticity, is the biological, chemical, as well as physical capacity for the brain to reorganize its structure and its function.

Neuroplasticity occurs as a result of learning, experience as well as memory formation, or as a result of damage to the brain.

Plasticity allows the brain to cope better with the indirect effects of brain damage resulting from an inadequate blood supply following a stroke. Fundamentally, the nervous system will needs to rearrange itself in order to adapt to the unfolding situation that it faces. The genes program of the body to have neuroplasticity so that animals can survive in an unpredictable environments.

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Which of the following is not a distinguishing characteristic of Bacteria?
Select one:

a.
Can live in many types of environments


b.
Eukaryotic


c.
Autotrophic or heterotrophic


d.
Unicellular

Answers

The statement that we know that can be characteristic of the bacteria is that they are unicellular. Option D

What is bacteria?

We know that bacteria is the kind of organism that we can say that it is ubiquitous. This is because we can be able to find the bacteria in so many different kinds of habitats.

Bacteria are well  adapted to different habitats. There are some of thye bacteria that can be able to live in a salty habitat and we call such the halophytes. We also have the kind of bacteria that can be able to withstand a high temperature and we call such bacteria the thermophytes. Hence, there is no kind of habitat that we can think of that do not have the presence of many different kinds of bacteria that have been adapted to the environment of the area.

Bacteria have one cell and this why we call them unicellular organisms.

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increased levels of hormones during puberty can cause a(n) response to plaque biofilm. group of answer choices a) decreased b) exaggerated c) typical d) optimal

Answers

Option B, Increased levels of hormones during puberty can cause an exaggerated response to plaque biofilm.

The hormones during puberty can cause an exaggerated response to plaque biofilm without scientific evidence. It is important to note that oral hygiene and oral health are complex subjects and the effects of hormones on oral health are not well studied.

It would be best to consult with a dentist or a medical professional for more information.

Plaque biofilm is a complex bacterial ecosystem that forms on the surfaces of teeth and gums, and it is known that it plays a major role in the development of tooth decay and gum disease.

However, there is not enough scientific evidence to support the claim that increased levels of hormones during puberty can cause an exaggerated response to plaque biofilm.

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the iris if the eye can have many colors, including brown, blue, green and hazel. how do you think polygenic inheritance explain why many iris colors are possible

Answers

The iris of the human eye can have many colors because this trait is controlled by polygenic inheritance. Polygenic traits are phenotypic traits controlled by two or more genes that have a subtle effect on trait variation.

Eye color follows a polygenic pattern of inheritance. Humans recognize nine eye colors. Expression of the eye color phenotype is controlled by two major genes and 14 additional genes associated with the X chromosome. Different combinations of these alleles produce different eye colors. Eye color is directly related to the amount of melanin in the anterior layer of the iris. Brown-eyed people have a lot of melanin in their irises, while blue-eyed people have much less of this pigment.

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Biologists measure the length of a tagged sea turtle. They learn that the turtle is 2.3 cm longer than the last time it was measured. Where did the sea turtle get the nutrients it needed to grow?
A. from the jellyfish it ate
B. from sunlight it absorbed
C. from the oxygen it breathed
D. from nutrients it absorbed from the water

Answers

The correct option (A)  from the jellyfish it ate.

Sea turtles (superfamily Chelonioidea), sometimes known as sea turtles, are reptiles belonging to the order Testudines and the suborder Cryptodira.

The flatback, green, hawksbill, leatherback, loggerhead, Kemp's ridley, and olive ridley sea turtles are the seven extant sea turtle species.Under the Endangered Species Act, all six sea turtle species present in US waters (excluding the flatback) are designated as endangered or vulnerable.

The flatback sea turtle is the seventh sea turtle species, found in the oceans of Australia, Papua New Guinea, and Indonesia.  Sea turtles are classified as either hard-shelled (cheloniid) or leathery-shelled (dermochelyid)

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Which of these can act as a vector to introduce new genes into a cell? A. clones B. humulin C. PCR D. plasmids E. GM

Answers

plasmids E. GM  these can act as a vector to introduce new genes into a cell.

Due to the ease with which plasmids are transferred from one bacteria to another in nature, plasmids make excellent vectors for introducing novel genes into host cells. A so-called recombinant plasmid can be made by researchers inserting DNA snippets or genes into a plasmid vector. Through a procedure known as transformation, this plasmid can be added to a bacteria. Cloned animals; humulin Plasmids, PCR, and C E. GM Restrictions enzymes are used to separate the desired DNA from the vector and to open the vector in order to clone a segment of DNA (such as a gene) into the vector. By combining the vector and DNA in the presence of the enzyme DNA ligase, the DNA is inserted into the vector.

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What is directional selection and give an example?

Answers

Directional selection occurs when individuals in a population with features on one side of the mean outlive or reproduce more than those on the other.

It has been proven numerous times in wild populations, using both observational and experimental methods.

Fossil data demonstrate that the size of black bears in Europe dropped throughout interglacial times of the ice ages, but increased during each glacial period, which is an example of directional selection. Another example is the size of a finch's beak in a population.

Natural selection is classified into three types: directional selection, stabilizing selection, and disruptive selection. They are also illustrations of adaptive evolution. Natural selection is an evolutionary mechanism that rewards organisms that are more adapted to their environments.

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Is natural selection a stabilizing factor?

Answers

Answer:

Stabilizing selection in evolution is a type of natural selection that favors the average individuals in a population.

if frequency of aa genotype is 0.36, the frequency of aa genotype is 0.48, and the frequency of aa genotype is 0.16, what are the frequencies of the a and a allele?

Answers

If frequency of AA genotype is 0.36, the frequency of AA genotype is 0.48, and the frequency of AA genotype is 0.16, than the frequencies of A and A allele is 0.4.

A person with the AA genotype has a very low chance of producing sickle-celled offspring and can choose a mate from almost any other genotype category. According to several studies, the AA genotype is the most malaria-prone even if it has the best concordance.

At a specific genomic region, an allele is one of two or more variations of the DNA sequence (a single base or a segment of nucleotides). For each genomic region with such variation, an individual inherits two alleles, one from each parent.

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the number of genes estimated in the human haploid genome is about 21,000. how many genes are present in a zygote? group of answer choices 21,000 10,500 42,000 84,000

Answers

There are 42,000 genes present in a zygote if the number of genes estimated in the human haploid genome is about 21,000.

The 3 billion base pairs of DNA that make up the human genome are arranged into 23 different chromosomal pairs. There are 6 distinct gene types known to science: 1. 2. complementing genes 3. duplicate genes 4. polymeric genes Gene modification: 5. Lethal Genes: 2, 6, and 7. Transient Genes. Although the precise number of genes in the human genome is unknown, it is believed to be between 21,000 and 25,000.

The number of genes is doubled when two haploid genomes are combined (fertilization)

At all stages of development, the human population has an identical amount of genes. As you develop from a zygote to an embryo to a child to an adult, the number of genes doesn't vary.

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the structure at the end of an axon that produces neurotransmitters

Answers

Answer: Axon Terminals

the bacterial skin infection characterized by isolated pustules that become crusted and rupture is known as

Answers

Pyoderma, a frequent acute superficial bacterial skin infection, is very infectious and causes impetigo. Impetigo affects the epidermis and is typically noticed in young children.

The superficial layers of the epidermis are infected with an acute, highly contagious gram-positive bacterial illness called impetigo. The same microorganisms that cause typical impetigo can also secondary infect (impetiginize) skin wounds like cuts, abrasions, and chickenpox. A strikebreaker is someone who continues to work during a strike (also known as a scab, blackleg, or knobstick). Strikebreakers are typically people who were not working for the company prior to the labour dispute but were hired following or during the strike to keep the business operating.

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help meh please i need this soon

Answers

Answer:

Before meiosis, there is an interphase, which includes the G1, S, and G2 phases. During the G1 phase, the cell grows and carries out normal functions. In the S phase, DNA replication occurs, resulting in each chromosome having two identical sister chromatids joined at a centromere. In the G2 phase, the cell performs a final growth and checks for DNA damage before initiating meiosis.

!!!!!HURRY PLEASE!!!!!How does the theory of plate tectonics explain the movement of Earth’s plates? Explain In 2 or more sentences.

Answers

The theory of plate tectonics states that the Earth's surface is made up of several large, moving plates. These plates are constantly moving, colliding, and pulling apart due to forces generated by the movement of material in the Earth's mantle. The movement of these plates causes the creation of earthquakes, volcanoes, and mountain ranges as well as the formation of oceanic crust and the reshaping of continents over time. The movement of the plate is caused by the convection currents in the Earth's mantle, which causes the plate to move in a slow and steady way.

Organelle in every cell which part of the cell contains genetic information?
a. Cell
b. Nucleus
c. Chloroplast
d. Mitochondria

Answers

b.Nucleus. The nucleus, also referred to as the cell's "command centre," is a sizable organelle that houses the DNA of the cell (deoxyribonucleic acid). Using the genetic information contained in the DNA, the nucleus regulates every aspect of a cell's functioning, including growth and metabolism.

The membrane-enclosed organelle in a cell that houses the chromosomes is known as a nucleus in the context of genomics. Selective passage of some molecules (such proteins and nucleic acids) into and out of the nucleus is made possible by a variety of holes, or pores, in the nuclear membrane.What exactly does a nucleus do?

The nucleus houses the genes, structures that hold the hereditary information, and regulates and controls the functions of the cell (such as growth and metabolism). In the nucleus, nucleoli, which are tiny bodies, are frequently seen. Nucleoplasm is the matrix that resembles a gel and contains the various nuclear parts.

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Which BEST describes
facilitated diffusion?
A. Facilitated transport SOMETIMES
requires energy.
B. Facilitated transport requires A LOT of
energy.
C. Facilitated transport requires MORE
energy than active transport.
D. Facilitated transport DOES NOT require
any energy.

Answers

Answer:

D. Facilitated transport DOES NOT require any energy.

Explanation:

b/c DOES NOT require any energy.

a biologist studying antibiotic resistance gives one half of his petri dish colonies of e.coli exposure to augmentin and the other half to amoxycillin. this is an example of a(n) .

Answers

A biologist studying antibiotic resistance gives one half of his petri dish colonies of e.coli exposure to augmentin and the other half to amoxycillin. this is an example of an experimental studies.

What is an Antibiotic Substance?

Antibiotic can be defined as follows :

A drug or substance that can eliminate or suppress the growth of dangerous microorganisms in the body:A particular class of antimicrobial agent that works against bacteria is an antibiotic.a medication used to treat bacterial and other microorganism-related illnesses.Any chemical substance produced by various microbes, such as penicillin, streptomycin, chloramphenicol, and tetracycline, is an antibiotic.

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when an individual is born with a certain genetic predisposition or inherited characteristic. it is known as:

Answers

Individual when born with a certain genetic predisposition or inherited characteristic. it is known as congenital.

Congenital condition is seen when an individual is born with a certain genetic predisposition or inherited characteristic. Genetic predisposition is termed as an increased chances of forming a specific kind of disease based on a person's genetic makeup. A genetic predisposition often end to from definite genetic variations that are often inherited from a parent.

illnesses related to a genetic predisposition  include certain cancers, diabetes, obesity, heart disease, asthma, celiac disease. While Researchers have also linked many mental illnesses like , autism to  Genetic predisposition .

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What are the three parts of a nucleotide?
A. 5-carbon sugar, phosphate group, and nitrogenous base
B. 5-carbon sugar, phosphate group, and cabboxyl group
C. 5-carbon sugar, nitrogenous base, and adenosine

Answers

Answer:

A. 5-carbon sugar, phosphate group, and nitrogenous base

Explanation:

The three parts of a nucleotide are a 5-carbon sugar, a phosphate group, and a nitrogenous base. The 5-carbon sugar is typically either ribose or deoxyribose, the phosphate group is composed of one phosphate ion, and the nitrogenous base is either adenine, guanine, cytosine, or thymine.

The Best Park
of my
Christmas Holiday...
Include detail on that you did, the place you
went and who you share the experience with.

Answers

The best park of my Christmas holiday was visiting the National Zoo in Washington, DC. I spent the day with my family exploring the zoo, seeing all of the animals, and learning about conservation efforts.

Other details of my Christmas holiday:

We arrived early in the morning and were among the first to enter the gates. We made our way through the park, making sure to take in all the sights and sounds. We saw elephants, giraffes, rhinos, lions, and many more animals. We also visited the Reptile House, the Great Ape House, and the Children's Zoo, which was a great experience for the younger members of our group.

The day was filled with laughter and learning as we explored the zoo. We took plenty of pictures and made lots of memories. We also stopped by the gift shop to pick up souvenirs like stuffed animals, t-shirts, and postcards. By the end of the day, we were all exhausted but happy.

The National Zoo was the perfect place to spend part of my Christmas holiday. It was a great way for my family to have fun, learn, and make memories together.

Why is Christmas the best holiday paragraph?

Christmas is the best holiday because it is a time of joy, love, and celebration. It is the season when we come together to celebrate the birth of Jesus Christ, which is a reminder of the gift of love and peace.

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You overhear a group of people talking about how they support the cloning of endangered species. they believe that the genome of these cloned populations will never change, no matter how many generations of offspring they produce. do you agree with this? explain your answer with reasons.

Answers

It is false that the genome of the endangered species will not change upon cloning for several generation. This is because mutations can occur at any stage of the cloning and hence will result in genome change.

Cloning is the process of synthesizing a genetically identical copy of the genome of an organism. This process can occur naturally as well as be done artificially. Naturally cloning can occur by the process of asexual reproduction.

Mutations are the changes in the genetic sequence of a living organism. It can result in the change of the characteristics of the organism due to the change in the protein that is formed from the gene. Some mutations do not cause any change in the protein synthesized and are thus known as silent mutations.

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Answer:

Genetic mutations can always occur, even in cloned organisms. So, genomes of cloned populations can change as well.

Explanation:

Edmentum Answer

which description is the best definition of a single nucleotide polymorphism, or snp? any variation in a single dna base between two individuals any variation in the sequence of genes that alters the morphology of an organism an rna protein in the spliceosome that marks where introns get excised during splicing events an artificially induced mutation in a protein coding region of the genome

Answers

The most accurate description of a snp, or single nucleotide polymorphism any difference in a single DNA nucleotide between two people.

Which of the following definitions most accurately describes a single nucleotide polymorphism, or snp?A single nucleotide polymorphism (SNP) is a variation in a single DNA base between two individuals.SNPs are the most common type of genetic variation and can occur in any location within a gene or the non-coding regions of the genome.SNPs are often used to study genetic differences between individuals or populations and to identify potential genetic risk factors for diseases.SNPs can result from both naturally occurring events and artificially induced mutations.When a SNP occurs in a protein coding region of the genome, it can have an effect on the function of the protein, which in turn can affect the phenotype of the organism.SNPs can also be used to trace ancestry and to identify populations that share a common evolutionary history.SNP data can be used to study the evolution and population structure of a species, as well as to identify potential gene-environment interactions.

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Independent assortment and genetic variation
Consider a diploid cell where 2n = 6. During metaphase I of meiosis, as the pairs of homologous chromosomes line up on the metaphase plate, each pair may orient with its maternal or paternal homolog closer to a given pole. There are four equally probable arrangements of the homologous pairs at metaphase I. (Note that this problem assumes that no crossing over has occurred.)
The cells below show the eight possible combinations of chromosomes that the daughter cells of meiosis II can receive.
Sort each daughter cell into the appropriate bin depending on which arrangement at metaphase I would create it.

Answers

The first daughter cell can receive either the maternal chromosomes or the paternal chromosomes, and the second daughter cell can receive the other set.

During metaphase, I of meiosis, the homologous pairs of chromosomes line up on the metaphase plate. Depending on which homolog is closer to the pole, there are four arrangements of the homologous pairs.

During anaphase I, the homologous pairs separate and go their own way to the opposite poles. As a result, each daughter cell receives a combination of either the maternal chromosomes or the paternal chromosomes.

This arrangement is called the independent assortment and it results in genetic variation among the daughter cells. If a single homolog is passed to each daughter cell, the genetic variation would be reduced. Therefore, the independent assortment is important in creating genetic variation in the daughter cells.

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you're studying a population of an endangered wildcat in india. this population has been hunted aggressively, but there was also a rumor that the remaining ones are heavily inbred. you sample all 500 remaining cats to look for evidence of inbreeding and get the following genotypes: aa: 31, aa: 188, aa: 281 what do you conclude?

Answers

We conclude that the cats are not detectably inbred when studying about the population of an endangered wildcat in India.

Signs of immoderate inbreeding encompass ordinary small clutter sizes (one or kittens), crooked noses, misaligned jaws, extraordinary eye set and asymmetry. Male and ladies might also additionally revel in low fertility and most cancers is greater not unusualplace in more youthful cats.

Inbreeding is the mating collectively of intently associated cats, as an instance mother/son, father/daughter, sibling/sibling matings and half-sibling/half-sibling. It is the pairing of animals which might be greater intently associated than the common population.

In the wild, there'll constantly be a few diploma of inbreeding when you consider that cats will obviously breed with their near loved ones if they arrive into touch with every different while the girl is in heat. Therefore, a few diploma of inbreeding is natural.

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explain the components of the homeostatic control system for mammalian body temperature regulation, and how this functions when air temperatures are low.

Answers

The components of homeostatic control system for mammalian body temperature regulation consists of temperature sensors, neurons and hypothalamus.

The temperature sensors are present at various parts of the body on the skin that sense the change in temperature and send the signals to the hypothalamus of the brain through the neurons.

The hypothalamus acts as the integrator that balances the correct temperature of the body by sending the signals through the efferent neurons to set the appropriate temperature. If the temperature is low the signals are sent such the body shivers and the response generated by the individual would be wearing woolen clothes.

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which type of blood vessel surrounds tissues and cells?

Answers

Answer:

Capillaries

Explanation:

Capillaries surround tissues and cells and help deliver blood, nutrients, and oxygen to cells throughout the body. They work in various different ways to support organs and the functioning of the vascular system.

Capillaries are Blood vessels that do not have the elastic tissue of other blood vessels.

The capillaries also connect the branches of arteries to the branches of veins.

Functions of capillaries:

Capillaries help the circulatory system by connecting arteries to veins:

Arteries carry oxygen-rich blood from the heart to your organs whereas veins help the body remove low-oxygen blood and waste.Capillaries also support Bone marrow it enables new blood cells to enter our bloodstream.The liver is supported by capillaries as it removes defective red blood cells and bacteria.

plasma accounts for about ________ percent of the total volume of whole blood.

Answers

Plasma accounts for about 55 percent of the total volume of whole blood.

Plasma constitutes 55% of total blood volume. Composed of 90% water, salts, lipids, and hormones, it is especially rich in proteins (including its main protein albumin), immunoglobulins, clotting factors, and fibrinogen.

Plasma performs several functions: transporting blood cells and nutrients; regulating the body’s water and mineral salts; irrigating tissues; providing a defense against infections; and coagulating blood.

The albumin contained in plasma prevents the blood from losing too much water and consistency as it travels through the narrow, water-permeable blood vessels (capillaries). Albumin transports various blood components and nutrients. The immunoglobulins also contained in plasma are antibodies that, along with white blood cells, play an important role in fighting against pathogens. Clotting factors, in combination with platelets, control hemorrhaging.

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in paragraph 7, orenstein reports on two studies of primates. what conclusion does this evidence support? what conclusion does lise eliot's research (para. 9) support?

Answers

Conclusion that this evidence support gave is important characteristics of evidence analysis are: It should be logical and self-sustaining and The conclusions and interpretations should be convincing.

It should support the audit observation, Provides basis of arguments against the best possible counter argument. The analysis may be in the form of Cause and effective studies;  Before and after studies; Process studies; Comparative studies; etc.

Evidence gathered leading to audit findings stand the test of their sustainability assured by the standards of their competence, relevance and sufficiency (reasonableness).

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which type of rna is transcribed from dna to carry a message?

Answers

Answer:

Explanation:

RNA is transcribed from DNA to transmit a message. RNA is a nucleic acid that is used to transmit the information contained in DNA genes through protein synthesis. The transcription process is the first stage of gene expression. During transcription, an RNA polymerase molecule binds to a DNA molecule and copies the sequence of nucleotides from a specific gene to produce a complementary RNA molecule.

There are three types of RNA that are produced from DNA transcription: messenger RNA (mRNA), ribosomal RNA (rRNA), and transfer RNA (tRNA). mRNA is the type of RNA that is used to transmit genetic information through protein synthesis. rRNA is the type of RNA that is used in protein synthesis, and tRNA is the type of RNA that is used to transport amino acids to the site of protein synthesis.

List and describe the characteristics of living organisms.

Answers

Living organisms are made up of a cell.

What is living organisms?

Living organisms can be defined as any organism or a life form that possesses characteristics of life or being alive.

There are seven characteristics of living organisms such as :

Movement : all living organism can moves a body part or parts to bring without a change in the position of the organisms.Breathing : is the process of taking in of oxygen and giving out carbon dioxide with the help of respiratory organs. Respiration: is metabolic process wherein the living cells of an organism obtains energy by taking in oxygen and liberating carbon dioxide from the oxidation of complex organic substances.Excretion :is a process in which metabolic waste is eliminated from an organism. Growth: is increase in size of  all living organismSensitivity: is the capacity of an organism to respond to stimulationReproduction: is the production of offspring, all living organism can give birth to one another.

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