Ordinary cell division produces two daughter cells that are genetically identical. How is mitosis useful in any organism?

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Answer 1

Answer:

Mitosis is the process of cell division that results in the production of two genetically identical daughter cells from a single parent cell. This process is crucial for the growth and repair of many organisms, including animals, plants, and some unicellular organisms.

In animals, mitosis allows for the growth of tissues and the repair of damaged tissues. For example, when a skin cell is damaged, mitosis allows the surrounding cells to divide and replace the damaged cell, keeping the skin intact. Similarly, in the process of growth, cells divide and increase in number to form new tissues and organs.

In plants, mitosis plays a crucial role in vegetative propagation, which is the process of producing new plants from parts of existing plants, such as cuttings or bulbs. The cells of the cutting or bulb divide and differentiate to form roots, stems, and leaves, resulting in the development of a new plant that is genetically identical to the parent plant.

Mitosis also plays a crucial role in the asexual reproduction of some unicellular organisms, such as bacteria and yeast. In these organisms, mitosis allows for rapid and efficient replication of cells, leading to the rapid growth of the population.

In summary, mitosis is a crucial process in many organisms, as it allows for growth, repair, and reproduction through the production of genetically identical daughter cells.


Related Questions

What is the definition of community ecology?

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The community ecology can be defined as the study of the organization and functioning of communities in an ecological system.

Community ecology is the study of how communities, which are assemblages of interacting populations of the species residing in a specific area or habitat, are organized and function. The interaction of species populations results in the formation of biological communities.

Species populations come together to form biological communities as a result of their interactions. These communities provide as excellent examples of what is meant by the word "biodiversity" due to the large number of interacting species and the complexity of their relationships. The interactions between the species keep changing as they undergo evolution.

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industrial discharges, urban activities, agriculture, groundwater pumpage, and disposal of waste all can affect groundwater quality. (T/F)

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True. Groundwater quality can be impacted by industrial effluents, urban activities, agricultural, groundwater pumping, and sewage treatment.

By groundwater, what would you mean?

Blood is a particular kind of biological fluid. Its four main components are platelets, white blood cells, red plasma cells, and plasma. One of the various functions of blood is to provide calories and oxygen toward the respiratory and other organs. Using blood clotting to stop significant blood loss

What varieties of blood are there?

kinds of blood cells. The 3 types of blood cells comprise platelets, white blood cells, as well as red blood proteins. Red bloodstream cells, or gametocytes, deliver oxygen to each of the body's tissues. A protein found in red blood cells transports oxygen to both the mitochondrial (called hemoglobin).

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How does the comparison of the stages of embryological development of different species help biologists to classify life? a.It helps in understanding the similarities between living species and extinct species.
b.It reveals anatomical similarities that are not always evident in fully formed organisms.
c.It reveals differences in the environmental conditions necessary for species survival.
d.It helps in understanding the different behavioral strategies in different individual organisms.

Answers

By exposing evolutionary connections between species, the study of different species' stages of embryological development aids biologists in classifying life. It's best to choose C.

Similarities in embryonic developmental stages may point to a common ancestor, and the degree of similarity may indicate how closely related two species have evolved. The theory of evolution, specifically macroevolution, holds that all living organisms on Earth are descended from a single common ancestor who evolved over time into the incredibly diverse range of creatures we see today.

Vertebrates, which include fish, amphibians, reptiles, birds, and mammals, share a common ancestor and belong to the same phylum because of the similarities in their embryonic development.

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what do all organisms have in common?
A.they all use DNA to pass on information
B.they are all prokaryotes
C.they are all eukaryotes
D.they are all genetically identical

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DNA is used by organisms to transmit information. the molecule found inside cells that carry the genetic material necessary for an organism to develop and function.

A polymer made of two polynucleotide chains that coil around one another to form a double helix is called deoxyribonucleic acid.

All known organisms and many viruses have genetic information in the polymer that is necessary for their development, operation, growth, and reproduction. Nucleic acids include DNA and ribonucleic acid. It contains information needed to create proteins, which are other big molecules.

These instructions are dispersed throughout 46 lengthy structures called chromosomes that are found inside each of your cells. Many smaller pieces of DNA, known as genes, make up these chromosomes.

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1. Which defensive strategy makes the insect hard to see?
a.Venom Glands
b.Aposematic Coloration
c.Crypsis
d.Batesian Mimicry

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The defensive strategy makes the insect hard to see is Crypsis. The correct option is Option C.

By mimicking other objects in their surroundings, certain insects can be "hidden in plain sight." This technique is called  mimesis. Mimicry: Insects primarily mimic in three different ways. When an insect that is not deadly mimics one that is, it is known as batesian mimicry.

The term "aposematism" refers to the employment of vibrant coloration to promote the danger or unpleasantness of an organism. The caterpillars of Cinnabar moths are a nice example. Orange and black bands alternately run down the caterpillars' bodies.

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Who is the scientist behind the modern taxonomy?

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The Swedish botanical taxonomist Carolus Linnaeus was born on this day 290 years ago. He was the first to develop and abide by a standardized system for classifying and naming the world's plants and animals.

A subfield of systematics called biosystematics, or modern taxonomy, determines taxonomic affinity based on morphological, genetic, and evolutionary traits. The idea of typology has been dropped. Every category is the outcome of an evolutionary process.

Database technologies are used in modern taxonomy to search and catalog categories and their supporting documents. There are extensive databases like the Catalogue of Life, which aims to list every known species, even if there isn't a widely utilized database.

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The external reproductive structure of an insect male is called?Group of answer choicesOviposotorAedeagusAntennaeCerci

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The external reproductive structure of an insect male is called the aedeagus. (Option 3)

The aedeagus is a specialized reproductive organ located at the end of the abdomen and is used for transferring sperm from the male to the female during mating. The structure and shape of the aedeagus varies among different insect species, but it typically consists of a tubular or sclerotized structure that is used to hold and transfer sperm to the female.

In some species, the aedeagus may be modified to perform additional functions, such as helping to position the male during mating or assisting in the transfer of sperm. The aedeagus is an important feature for insect taxonomy and can be used to differentiate between closely related species. Overall, the aedeagus plays a crucial role in the reproductive biology of insects, ensuring the successful transfer of sperm and the continuation of the species.

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Complete Question:

The external reproductive structure of an insect male is called? Group of answer choices

1. Ovipositor

2. Aedeagus

3. Antennae

4. Cerci.

Which cell organelle plays a crucial role in detoxifying many poisons and drugs in a cell?A.Golgi apparatusB.LysosomesC.Smooth endoplasmic reticulumD.Vacuoles

Answers

The Smooth Endoplasmic Reticulum Organelle is essential for the detoxification of numerous medicines and toxins in a cell.

What does a smooth endoplasmic reticulum do?

The smooth endoplasmic reticulum participates in a variety of metabolic processes. Steroids, phospholipids like those found in plasma membranes, and lipids are all synthesized by it. Smooth endoplasmic reticulum is overproduced in cells that emit these substances, including cells found in the testes, ovaries, and skin oil glands.

What are the SER and RER's purposes?

The SER is typically used for the production and storage of lipids and steroids, whereas the RER is crucial for the synthesis of a variety of proteins. The RER is referred described as "rough" because ribosomes are attached to its surface as opposed to the SER, which lacks ribosomes.

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Of all the species that enzymes bind, they are thought to bind most tightly to _____.
a) substrates
b) products
c) transition states
d) intermediates
e) all are bound very tightly

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Of all the species that enzymes bind, they are thought to bind most tightly to transition states.

How can it be explained in detail?

Proteins known as enzymes accelerate biological processes by attaching to particular molecules known as substrates and changing them into products. When an enzyme binds to a substrate, an enzyme-substrate complex is created. This complex then proceeds through a series of chemical processes to produce a product

Enzymes do not, however, attach to products or substrates very firmly. Instead, it is believed that enzymes attach most strongly to the reaction's transition state, which is a highly energetic intermediary state created during the conversion of substrate to product. This is due to the fact that enzymes are made to stabilize the transition state by decreasing its activation energy, which facilitates a more straightforward reaction.

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Describe Claire's symptoms. Explain how they were related to metabolism and
homeostasis.

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Poor vision is one of Claire's symptoms, which led to her becoming anxious and causing tears to flow from her eyes. Homeostasis and metabolism are interconnected.

Describe Claire's symptoms related to metabolism and homeostasis.

In relation to Claire's symptoms, stress, project, and work might disrupt the equilibrium or homeostasis in her body, and touch her metabolismClaire's digestion reaction rates tell us that the problem was in her small intestine, and not in her stomach since metabolism is the In connection to Claire's symptoms, stress, activity, and work might disrupt the equilibrium or homeostasis in her body, infect her metabolism.

Metabolism refers to all the chemical procedures going on continuously inside your body that allow life and normal functioning (preserving normal functioning in the body is called homeostasis

So we can conclude that Claire's symptoms -> 1)Increased appetite, 2)Low energy

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at what sound frequencies in the audible range will the child have increased hearing sensitivity?

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The answer to this is 6600 Hz to 19,800 Hz. When sound waves or longitudinal air vibrations enter the ear canal and impact the ear drum, the brain interprets the sound.

The range of low frequencies between 2,000 and 5,000 Hertz is where people are most sensitive. The human ear degenerates with age and is expected to become less sensitive to high frequencies.

The shape of the human ear is analogous to a closed ended pipe hence

we have λ = 4L or wavelength = 4 * length of the child ear

The frequency  c/λ  where c = speed of sound = 343 m/s

hence the child's audible range is multiples of 343/(4*0.13) =6600Hz

or 13200 Hz or 19,800 Hz

The generally quoted range of human hearing is 20 Hz to 20 kHz.

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Full Question: A child has an ear canal that is 1.3cm  long. At what sound frequencies in the audible range will the child have increased hearing sensitivity?

which word equation represents the process of photosynthesis?

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The simple word equation represents the process of photosynthesis is: Carbon dioxide + Water + Light energy → Glucose + Oxygen

In this equation, carbon dioxide and water are the reactants, and glucose and oxygen are the products. The process of photosynthesis uses light energy to convert carbon dioxide and water into glucose and oxygen. This process occurs in the chloroplasts of plant cells and some types of algae, and it is critical for the production of food and oxygen in the biosphere.

During photosynthesis, carbon dioxide from the atmosphere and water from the soil are converted into glucose and oxygen. The glucose is used by the plant for energy and to build other organic molecules, such as starch and cellulose, while the oxygen is released into the atmosphere as a byproduct.

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What is the difference between the bacterial and archaea domains?

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The two are fundamentally different in terms of their cellular make-up and biochemistry, with archaea possessing distinct membrane lipids, cell wall compositions, and other molecular characteristics from bacterial.

What two key distinctions exist between bacteria and archaea?

The lipid makeup of bacterial and archaeal cell membranes and the properties of their cell walls are different from one another.

Prokaryotes are single-celled creatures without a nucleus (domains Archaea and Bacteria). They only have a single circular piece of DNA in the nucleoid area of the cell. The cell wall of the majority of prokaryotes crosses the plasma membrane. Some prokaryotes may furthermore possess a capsule, flagella, and pili. Bacterial and archaeal cell membranes differ from one another in terms of their lipid composition and the characteristics of their cell walls. In archaeal membranes, phytanyl units—not fatty acids—are linked to glycerol. Some membranes of archaeal organisms exhibit lipid monolayers rather than bilayers.

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Examine this figure. If you measure the width of one of the magnetic stripes and you know the ages of the magnetic reversals, then you can calculate the

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If you measure the width of one of the magnetic stripes and you know the ages of the magnetic reversals, then you can calculate the rate of seafloor spreading.

Seafloor spreading is the process by which new oceanic crust is created at mid-ocean ridges and moves away from the ridge as a result of plate tectonics. The magnetic stripes are created as a result of the Earth's magnetic field reversing periodically. When the magnetic field reverses, the orientation of the magnetic minerals in the newly formed crust also changes, creating the stripes.

To calculate the rate of seafloor spreading, you can use the following formula:

Rate of seafloor spreading = Width of magnetic stripe / Time between magnetic reversals
By measuring the width of one of the magnetic stripes and knowing the ages of the magnetic reversals, you can calculate the rate of seafloor spreading in units of distance per unit of time (e.g. centimeters per year). This information can be used to better understand the processes of plate tectonics and the formation of the Earth's crust.

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Rocks from which source would most likely contain the highest percentage of silicateminerals?1. Ocean Basin2. Volcanic Island3. Mid ocean Range4. A mountain in the middle of a continent

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The correct option is 4 ;  A mountain in the middle of a continent . Because the ocean is a wonderful site to collect these minerals, rocks discovered in ocean basins are more likely to include significant percentages of silicate minerals.

Silicates make up approximately 95 percent of the Earth's crust and upper mantle, and are found in significant numbers in sedimentary and metamorphic rocks as well as igneous rocks. They are also key components of lunar samples, meteorites, and the majority of asteroids. Plagioclase feldspar is the most abundant mineral in the Earth's crust, accounting for 39% of both continental and oceanic crust.

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_______ Aseptic technique means that that you perform the preparation of media or the transfer. of living microbes.

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Aseptic technique refers to the uniform and systematic execution of media preparation or the transmission of living microorganisms.

What are microorganisms and what do they do?

Everywhere in the environment, microorganisms play a crucial part in a variety of natural processes. Among some other things, they run the fundamental drug cycles required for the plants to get the nutrients they need from the response of organic materials in the soil.

What function do microorganisms do that is most crucial?

In addition to producing carbon dioxide and oxygen microorganisms also fix nitrogen into forms that are useful to a variety of creatures. They contribute to the gut microbiome, which aids in the digestion of food by animals. Some microbe species are symbiotic by nature.

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give an example of a primary consumer

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Primary Consumer - Animals that consume only plant matter. They are herbivores - eg rabbits, caterpillars, cows, sheep, and deer.

how did the culture of rice cultivation reach colonial carolina?

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The historical paper artifacts that describe early rice farming have all but vanished. From the early decades of Carolina's experimentation with and production of rice as a commercial crop, there are no surviving plantation notebooks and ledger books.

According to ship logs, rice shipments to England started in 1699. But due to storms, floods, and second- and third-growth woods, the early rice fields that were abandoned millennia ago have collapsed.

According to Max Edelson, a historian at the University of Virginia, "the truth is that we know very little" about Carolina rice farming from the colony's inception in 1670 until 1699, when commercial rice planting began.

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Transporting a substance against its concentration gradient requires -a transporter that is facilitated in its diffusion.
-countertransport with another molecule against its concentration gradient.
-cotransport with another molecule against its concentration gradient.
-a transporter that uses energy.-a channel that is specific for that substance.

Answers

A transporter that consumes energy is necessary to move a material against its concentration gradient.

What does a solution's concentration gradient look like?

The change in concentrations per unit of distance in something like a solution is known as a solute's gradient of concentration. Diffusion between two places where a substance's concentration varies produces a pressure gradient; the process continues until the two regions' concentrations are equal.

What happens when the gradient of the concentration is reduced?

When the molar concentration is eliminated, there will be a neutral net flow of particles. This indicates that the two areas have attained their balance. Nanoparticles or solute concentrations in one sector are comparable to those in the other.

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how many arms does squid have

Answers

Answer: 8 Arms and 2 Tentacles

Explanation:

The 2 tentacles are for catching and eating the prey they catch. The 8 arms are for doing the same thing as the tentacles but it also helps them swim.

What is buttock anatomy surface ?

Answers

The buttock anatomy surface refers to the external part of the buttocks, which is made up of skin, muscles, and fat. The buttocks are located at the back of the pelvis, and are made up of three main muscles: the gluteus maximus, gluteus medius, and gluteus minimus.

The gluteus maximus is the largest and most superficial of the three muscles, and is responsible for the shape of the buttocks. The gluteus medius and gluteus minimus are smaller muscles that lie deeper in the buttocks, and help to stabilize the pelvis and support the hip joint.

The buttocks are also covered in a layer of subcutaneous fat, which provides padding and helps to give the buttocks their rounded shape. Overall, the buttock anatomy surface is an important part of the body's anatomy, as it plays a crucial role in supporting the pelvis and hip joint, and helps to give the body its overall shape and appearance.

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Select all of the following that are components of nucleotides.a. nitrogen-containing baseb. hydrocarbon tail attached to a polar headc. glycerold. sugare. phosphorus-containing groups

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Nitrogen containing bases, sugar and phosphorus containing groups are the components of nucleotides.

The correct options are option a, d and e.

The nucleic acids are basically the building blocks or we can say the monomeric units of the macromolecules which are known as the nucleic acids. That is why, the nucleotides are very essential. These nucleic acids are basically responsible for transmission of the hereditary information form one generation to the other generation.  

The nucleotides are basically composed of sugar, phosphorus containing groups as well as nitrogen containing bases which are the guanine, cytosine, thymine and adenosine. These nucleotides make up our DNA.

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What are the three functions of the tRNA molecule?

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The tRNA molecule carries an amino acid, associates with mRNA molecules and binds to one of the three sites on the large subunit of ribosome

The tRNA molecule transports an amino acid, connects with mRNA molecules, and attaches to one of three locations on the ribosome's large subunit.

tRNA is an adaptor molecule made of RNA. This function as the link between mRNA and amino acid sequence. This is done by carrying an amino acid to the protein synthetic machinery which is the ribosome as directed by the codon in a mRNA. tRNA is a component of translation, which is the biological synthesis of proteins in accordance with the genetic code.

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Contains instructions for protein synthesis and cell reproduction; contains genetic information.

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The statement is describing the function of DNA (Deoxyribonucleic Acid), which is the molecule that contains instructions for protein synthesis and cell reproduction, and carries genetic information.

Importance of DNA in living organisms ?

DNA (Deoxyribonucleic Acid) is of utmost importance in living organisms for several reasons:

Genetic information: DNA contains the genetic information that determines an organism's traits, such as eye color, height, and susceptibility to diseases. This information is passed down from generation to generation, allowing for the preservation of the species.

Protein synthesis: DNA provides the instructions for making proteins, which are essential for the structure, function, and regulation of cells and tissues. These proteins carry out metabolic reactions, transport molecules, and communicate with other cells.

Cell reproduction: DNA is responsible for the replication of cells through the process of cell division. This process ensures the growth and repair of tissues, and is essential for the development and maintenance of the organism.

Evolution: DNA provides the genetic variability that allows for natural selection and evolution of the species. Mutations in DNA can result in changes in the genetic code, which may confer advantages or disadvantages to the organism, affecting its survival and reproduction.

In summary, DNA is essential for the survival, growth, development, and evolution of living organisms, making it one of the most important molecules in biology.

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Diagram shows genetic structures which label best describes the area Mark Y

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The label that will best represents the area marked Y is DNA.

What is the structural bone of DNA molecule?

The structural backbone of the DNA molecule is made up of two types of molecules called nucleotides, which are joined together by a sugar-phosphate backbone.

Each nucleotide consists of three parts: a nitrogenous base, a sugar molecule called deoxyribose, and a phosphate group. Adenine (A), guanine (G), cytosine (C), and thymine are the nitrogenous bases found in DNA (T).

The two strands of DNA are twisted together into a double helix shape, with the nitrogenous bases facing each other in the center and held together by hydrogen bonds. The sugar-phosphate backbone runs along the outside of the helix and provides structural support for the molecule. This arrangement of nucleotides and hydrogen bonds is what gives DNA its characteristic shape and allows it to store and transmit genetic information.

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Highlight (2) U Calculator
allows scientists to study several generations of Brassica plants in a short time. Usually the scientists use Brassica plants to study genetics
In one investigation that studied the inheritance of Brassica stem color, scientists crossed a heterozygous dominant (Rr) plant with a homoz
plant. This resulted in offspring with purple stems (RR or Rr) and offspring with green stems (rr). A Punnett square for this cross is shown i
You may use the calculator.
Type your answers in the boxes.
What percent of the offspring will have green stems?
What percent of the offspring will have purple stems?

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Based on the Punnett square, the percent of offspring with green stems is 25%. The percent of offspring with purple stems is 75%.

What is a Punnett square?

A Punnett square is a graphical representation used in genetics to predict the frequency of different genotypes in the offspring produced from a cross between two parent organisms. It is named after Reginald Punnett, who developed the concept in 1905.

A Punnett square is a table that shows the possible combinations of alleles from the two parents, and the frequency at which each combination is expected to occur in the offspring. By using a Punnett square, scientists can predict the likelihood of certain genetic traits appearing in the offspring, and therefore gain a deeper understanding of the laws of inheritance.

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What is the main cause of dysentery?

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Dysentery is an inflammatory and infectious condition of the intestine. This primarily occurs because of infection by parasites and bacteria.

Dysentery is a type of gastrointestinal disease that occurs primarily when the intestine is affected. This causes diarrhea containing mucus or blood. Other symptoms associated with this disease are stomach cramps, stomach pain, and nausea. This disease occurs when the intestine is infected by Bacteria or parasites.

Bacteria like Shigella, E. coli, Salmonella, and Campylobacter are mostly associated with this condition. This disease is transmitted from contaminated food, surface, feces, or an infected person to a healthy person. This is a highly infectious disease that primarily affects young children and people living in unhygienic environments.

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What are the characteristics and properties of light? How do they allow objects to produce the colors that you see?

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Light is made up of wavelengths of light, and each wavelength is a particular colour. The primary properties of light are intensity, propagation direction, frequency or wavelength spectrum and polarization. The colour we see is a result of which wavelengths are reflected back to our eyes. The visible spectrum showing the wavelengths of each of the component colours. The spectrum ranges from dark red at 700 nm to violet at 400 nm.
I hope I helped :)

Members of which bacterial phylum share a unique morphology?

Answers

In addition to filament and sheathed bacteria occurring within this phylum, the Proteobacteria, once known as purple bacteria, and their relatives bewildering range of physiological and morphological traits.

The phylum to which do bacteria belong?

Along with the eukaryotes and archaea domains, bacteria are regarded as a domain in taxonomy. This indicates that bacteria contain various phyla rather than belonging to a single phylum. These phyla include Chlamydial, Actinobacteria, and Cyanobacteria as examples.

What three structures do bacteria have?

The main surface layers include capsules or loose slime, the complex cell envelope of Punned bacteria and the cell wall of Staphylococci bacteria, as well as plasma (cytoplasmic) membranes and mesosoma transmembrane vesicles, which develop from plasma membrane invasions.

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Most children with cystic fibrosis have frequent lung infections and digestive difficulties. Some people have mild cases, with onset of minor respiratory problems in adulthood. Some men with cystic fibrosis only exhibit the symptom of infertility. Which exception to Mendelian laws of inheritance best explains these symptoms?

Answers

Some suffer from moderate cases, developing minor respiratory issues as adults. Some cystic fibrosis patients' sole noticeable symptom is infertility.

Fibrosis: What is it?

Chronic inflammatory responses brought on by numerous stimuli, such as recurrent infections, autoimmune disorders, allergic reactions, chemical assaults, radiation, and tissue damage, culminate in fibrosis. The main goals of treatment are to minimise symptoms and halt the disease's progression. Palliative care for the end of life will be provided as the disease progresses.

Describe a tissue?

The intercellular matrix, a nonliving substance, fills the gaps between both the cell. There might be a lot of this in particular tissues and not much in others. Tissues make up every single component of the body

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