9.list and describe five or more characteristics of natural or treated hair that can be determined by viewing hair under a compound microscope.

Answers

Answer 1

Characteristics of natural or treated hair that can be determined by viewing hair under a compound microscope are:

Treated hair is brittle.Treated hair has disturbed hairs on the cuticle.Treated hair can damage mt-DNA.Artificial bleaching shows a shape demarcation.The natural hair grows closer to the root if it has been treated.

Cuticle is the protective layer of cells for the hairs. These cells are dead in nature and overlap each other to form the protective layer. Healthy cuticle is important to protect the innermost layer of cells.

mt-DNA refers to mitochondrial DNA. This is the DNA present inside the mitochondria instead of the cell's nucleus. The DNA is circular is structure.

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Related Questions

need it as soon as possible​

Answers

Answer:

1 a

2 c

3 a

4 c

5 d

6 c

7 d

8 c

9 d

10 b

11 d

12 b

13 a

a family in rural africa gets its drinking water from a local stream. the water is not treated or filtered before use. upon testing, several bacterial pathogens are found in the water, including vibrio cholerae, the cause of cholera. what type of illness would most likely sicken this family?

Answers

The type of illness that would most likely sicken this family is cholera.

What are pathogens?

An organism that causes or has the potential to cause disease is typically referred to as a pathogen. Pathogens include viruses, bacteria, unicellular and multicellular eukaryotes, as well as other taxonomically diverse organisms. Pathogens, such as bacteria that are targeted by specialist viruses known as phages, impact every living thing.

When Vibrio cholerae bacteria are present in food or water, it can result in cholera, an acute diarrheal infection. Extremely contagious cholera can result in severe acute watery diarrhea. After consuming infected food or water, a person may not exhibit symptoms for 12 hours to 5 days. If left untreated, cholera can kill both adults and children within hours.

Transmission of cholera is strongly correlated with a lack of access to sanitary facilities and clean water. Peri-urban slums and camps for internally displaced people or refugees are examples of typical at-risk places where the minimum standards for clean water and sanitation are not being maintained.

In the event that the bacteria are present or introduced, the effects of a humanitarian crisis, such as the interruption of water and sanitation systems or the relocation of populations into insufficient and crowded camps, might raise the risk of cholera transmission. There have never been any reports of epidemics being started by uncontaminated dead remains.

The long-term solution for cholera control lies in economic development and universal access to safe drinking water and adequate sanitation. Actions targeting environmental conditions include the implementation of adapted long-term sustainable WASH solutions to ensure use of safe water, basic sanitation and good hygiene practices in cholera hotspots.  In addition to cholera, such interventions prevent a wide range of other water-borne illnesses, as well as contributing to achieving goals related to poverty, malnutrition, and education

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7 Which class of molecules are used by the body to
synthesize proteins?
A. carbohydrates
B. amino acids
C. lipids
D. minerals

Answers

Answer:

The correct answer choice is choice B.

Explanation:

Protein synthesis is process in which polypeptide chains are formed from coded combinations of single amino acids inside the cell. The synthesis of new polypeptides requires a coded sequence, enzymes, and messenger, ribosomal, and transfer ribonucleic acids (RNAs).

What could happen to homeostasis if the nervous system and the endocrine system stop communicating?.

Answers

The nervous  and  endocrine systems are closely related and both are closely involved  in conditions of homeostasis. Endocrine dysfunction can lead to a variety of neurological symptoms such as  acute encephalopathy including headache, myopathy and coma.

What is homeostasis?In biology, homeostasis is the state of stable internal physical and chemical conditions maintained by a biological system. This is the condition  for an organism to function optimally, and  many variables such as body temperature and fluid balance must be kept within preset limits.Homeostasis, as currently defined, is a self-regulatory process by which biological systems maintain stability while adapting to changing external conditions.Plasma ionized calcium homeostasis. Arterial blood pressure homeostasis. Core body temperature homeostasis. Homeostasis of body water content.Homeostasis maintains optimal conditions for enzyme action and all cellular functions throughout the body. Maintaining a constant internal environment even when internal and external conditions change.In the human body, this includes controlling: blood sugar concentration.

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the recombination rate between three genes are as follows: a and b: 18% a and c: 37% b and c: 19% what is the order of the genes on the chromosome?

Answers

According to the given question, the order of the genes on the chromosome is a, b, and c.

The number of genes contained in one chromosome (except the Y chromosome) can reach hundreds to thousands of genes. Genes that are located close to each other and are located on one chromosome are often linked to one another. These genes are also known as linked genes. Linked genes tend to be inherited together in genetic crosses.

The process of crossing over produces parental and recombinant combinations. Parental combinations are hereditary traits obtained from parental traits, while recombinant traits are new traits that appear and did not exist before.

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When does a background extinction occur?
A. A volcanic eruption occurs on an island.
B. A species of birds fails to adapt to a drought

Answers

(b)

The ongoing extinction of individual species due to environmental or ecological factors such as climate change, disease, loss of habitat, or competitive disadvantage in relation to other species.

............ is an eukaryotic organelles that might have evolved from small independent green prokaryotes that took up residence in a bigger prokaryotic cells?

Answers

Chloroplast is an eukaryotic organelles that might have evolved from small independent green prokaryotes that took up residence in a bigger prokaryotic cells.

Chloroplast is the cell organelle that is present only in green plants and some fungi that can make their own food. Chloroplast are believed to be evolved from prokaryotes and are called semi-autonomous because they have their own DNA which can make some of the proteins needed by the organelle.

Prokaryotes are the organisms that have the primitive type of cell with no true nuclei. Instead their genetic material lies as an aggregate in the cytoplasm itself and is called nucleoid.

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occasional brief periods of stress: group of answer choices are harmful only if they are triggered by anger. have no negative consequences for the organism. boost the activity of the immune system. are harmful to an organism.

Answers

Occasional brief periods of stress: boost the activity of the immune system.

Short-term stress can boost the immune system because it prepares the organism's body to deal with the challenges that can be mental, physical or physiological. The stress can trigger the survival instinct of the organism which in turn boosts the immune system.

Immune system is comprised of cells, tissues and organs that all function together to protect the body against foreign invaders. The main cells involved in the immune system are the white blood cells. Along with these other constituents of immune system are the organs like bone marrow, spleen, various proteins like antibodies, etc.

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which evidence would best be stored in leakproof plastic containers, such as film canisters? question 19 options: glass soil tools blood

Answers

glass soil implements The best way to store blood as evidence is in leak-proof plastic containers like film canisters..

Which way should evidence be packaged correctly?

When feasible, supplied evidence must be in sealed containers. The ideal sealing technique is evidence tape. The officer's initials and the date the seal was sealed must be written on the seal. Any evidence that may be subject to forensic biology/DNA analysis requests needs to be handled carefully.

What kind of evidence can be stored in a plastic container?

Plastic or paper Wet evidence should be packaged in paper containers (wet evidence can decay if placed inside plastic containers), and dry evidence should be packaged in plastic, according to a general rule of thumb. Cross-contaminated items need to be packaged individually.

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bacteria and archaea are both prokaryotic domains, though they differ from one another. from the options below, select the difference between these domains.

Answers

The difference between these domains is that the cell wall of bacteria contains peptidoglycan, whereas the cell wall of archaea does not.

What are similarities and disssimilarities between archaea and bacteria?Archaea and bacteria are two types of microorganisms that fall into the category of prokaryotes. Archaea and bacteria are prokaryotes that lack membrane-bound organelles and cell nuclei. They are unicellular.Like bacteria, archaea do not have an inner membrane, but both have cell walls and use flagella to swim. Archaea differ in that their cell walls do not contain peptidoglycan and their cell membranes use ether-linked lipids as opposed to the ester-linked lipids of bacteria. Archaea were once classified as bacteria, but are now no longer classified as archaea because their biochemical and evolutionary histories were found to be different.What do bacteria and archaea do?

Their role in biogeochemical cycles is essential, contributing to important ecosystem processes such as soil formation, maintenance and function. Bacteria and archaea are the only organisms that can obtain energy from redox reactions that do not involve carbon bonding.

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which of the following nutrients are transported to the liver via the hepatic portal vein? none of these amino acids fatty acids monoacylglycerols

Answers

Free fatty acids and monoglycerides are transported to the liver via  hepatic portal vein.

Brief summary the transportation of fatty acids and monoglycerides?

Free fatty acids and monoglycerides are absorbed by the small intestine's mucosal lining and subsequently enter the epithelial cells. The endoplasmic reticulum is a mechanism inside the cell that performs lipid synthesis and transport. Once inside the cells, free fatty acids and monoglycerides enter this system. In this process, triglycerides are created from the digested products. The primary type of fat that the body stores  is called triglycerides. Because of this, the digestion of fat differs from the digestion of proteins and carbs. We can observe that when proteins and carbohydrates are absorbed, their building blocks—amino acids and monosaccharides—pass through the intestinal epithelial cells unaltered. Triglycerides are coated by proteins before to leaving the epithelial cells, which causes in the chylomicron development. The triglyceride is given a water-soluble coat by the protein coating, enabling the chylomicron to exit the cell. The freshly produced chylomicrons exit the epithelial cell and go into the lacteal lymphatic capillaries. The lacteals are located in the villi, which are finger-like protrusions of the intestinal wall. Because lipids travel through the lymphatic system before returning to the bloodstream, the lacteals represent another distinctive method that fats are absorbed. As opposed to amino acids and monosaccharides, which flow directly into blood capillaries and subsequently into the hepatic portal vein, which leads to the liver, fatty acids, enter the lymphatic system during the digestion of proteins and carbohydrates. In the gut, dietary carbs are broken down to produce simple sugar molecules.

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A team of scientists conducted a study to examine how different temperatures affect the reaction rate of cellulase. To determine reaction rate, they measured the amount of methane released by cellulase-producing bacteria in the presence of cellulose. The following graph shows the data the scientists collected during their study

Answers

Answer:

The highest reaction rate of cellulose enzyme is at temperature 60 degrees Celcius.

Explanation:

There are some factors that influence the enzyme activity.

1. Temperature

2. pH

3. substrate concentration

4. enzyme concentration

In the beginning, the enzyme (cellulose) is in inactive condition. It can be seen from the low amount of gas produced.

As the temperature increase, the enzyme start reacting by binding more substrate (cellulose) and releasing more product (methane). In human cell, mostly enzyme can work best at optimum temperature around 40 degrees Celcius, while in bacteria may exceed this. Based on the graph shown, the enzyme perform very well at 60 degrees Celcius since the gas produced reach the highest amount, is 5 ml.

As temperature level higher than its optimum, the reaction rate decrease since the enzyme which is made of protein start denaturating. In this condition, enzyme unable to react with the substrate as well as produce a product anymore.

In conclusion, the highest reaction rate of cellulose enzyme is at temperature 60 degrees Celcius.

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for microbial biodiversity studies, it is common to identify the rather than the as a measure of biodiversity.

Answers

For microbial biodiversity studies, it is common to identify the genes rather than the organisms as a measure of biodiversity.

Biodiversity is the presence of different types of species in any region. Greater is the number of species of plants and animals in a certain area, more rich is the biodiversity of that region considered. These species are necessary to maintain the balance of ecosystem in the earth.  

Genes are the basic factor of inheritance. These are transferred from the parent to their offspring. The genes carry the information for particular trait or character in them. These trait are responsible for the physical appearance as well as anatomy of a child.

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terminal branches of an axon are anchored close to the ends of the dendrites of another neuron at regions called

Answers

The terminal branch of one axon is anchored near the end of another neuron's dendrite called a region synapses

A synapse is a junction between neurons where information is passed from one neuron to the next. Synapses are most commonly formed between axons and dendrites and consist of presynaptic neurons, synaptic clefts and postsynaptic neurons. Synapses are part of the circuits that connect the sensory organs of the peripheral nervous system to the brain. B. People who perceive pain and touch. Synapses connect neurons in the brain to neurons in the rest of the body, and from those neurons to muscles. Rather, a synapse he is a small gap between two cells where messages can be passed back and forth to communicate. A single neuron can contain thousands of synapses. In fact, a type of neuron called a Purkinje cell, found in the brain's cerebellum, can have as many as 100,000 synapses.

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The virus is considered an exception to the
cell theory because the

A. mitochondria of the virus contain genetic
material

B. virus contains genetic material but no organelles

C. chloroplasts of the virus contain genetic material

F. virus contains no genetic material and is multi-
nucleated

Answers

The virus is considered an exception to the cell theory because the virus contains genetic material but no organelles. Thus option B is correct.

What are the characteristic features of virus ?

Viruses are the infectious microbes, a connecting link between living and nonliving organism that contain a nucleic acids covered by a protein coat.

Virus can reproduce at a spectacular rate and live in host cells, They are acellular as they have no cytoplasm or cellular organelles.

They  do not have their own machinery so for their metabolism depend on their host and replicate by using the metabolic machinery of the host cell.

viruses can not grow and divide and the new viral components are synthesized and assembled into the infected host cell, they have DNA or RNA but not both.

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Please answer 9,10
…………………..

Answers

Hemochromatosis, Tay-Sachs, sickle cell Anaemia, and cystic fibrosis are a few of the most prevalent single-gene diseases.

Explain about the genetic disorder?

One gene mutation, numerous gene mutations (multifactorial inheritance disorder), a combination of gene mutations and environmental variables, or damage to chromosomes (changes in chromosome number or structure) can all result in genetic illnesses.

A sickness or condition that affects fewer than 200,000 persons in the United States is frequently referred to as a rare genetic disorder. More than 7,000 different diseases have so far been found, therefore they are not as uncommon as most people believe. 300 million people, or 4% of the world's population, suffer from a rare disease.

Gene changes that are essentially present in every cell in the body cause many genetic disorders. These disorders consequently frequently impact multiple bodily systems, and the majority cannot be treated.

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if the cleavage furrow or cell plate shown in the figure formed nearer one pole of the dividing cell rather than at the midline, what would be the predicted result?

Answers

The resulting cells would be very different in size.

In animal cells, cytokinesis starts offevolved in anaphase, with the mitotic spindle figuring out the starting role of the contractile ring to shape. In telophase, this ring becomes energetic, and the cleavage furrow paperwork and deepens until only a skinny attachment, the midbody, stays.

Cytokinesis starts in anaphase and ends in telophase, reaching completion as the following interphase starts. the first visible trade of cytokinesis in an animal cellular is the surprising appearance of a pucker, or cleavage furrow, at the cell surface.

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Define an atom, and describe how and what subatomic particles compose it. Use your best grammar to write 3–5 sentences on this topic.

Thank you in advance to whom it may concern!

Answers

Answer:

Explanation:

Elementary particles, commonly known as subatomic particles. Any of the several discrete, self-contained forms of matter or energy that constitute the fundamental constituents of all matter. Despite being negatively charged and nearly massless particles, subatomic particles have electrons that are typically atom-sized. Additionally, it comprises positively charged protons and electrically neutral neutrons, the heavier constituents of a small but extremely compact nucleus. The only known subatomic particles, however, are by no means these fundamental atomic building components. For instance, quarks are the subatomic particles that make up protons and neutrons, while electrons are merely one of a class of subatomic particles that also includes muons and neutrinos. By interacting with cosmic rays in the Earth's atmosphere, scientists have discovered and described more uncommon subatomic particles, such as positrons, the antimatter of electrons. The field of elementary particles has expanded dramatically with the construction of powerful particle accelerators to study the high-energy collisions of matter with electrons, protons and other particles. When high-energy particles collide, the collision energy becomes available for the creation of subatomic particles such as mesons and hyperons. Ultimately, the revolution that began in the early 20th century with the theory of matter-energy equivalence, completed by the discovery of the effect of force on the exchange of 'force' particles such as photons and gluons, transformed the study of elementary particles. did. I was. Over 200 subatomic particles have been discovered as a result of the reaction or collision of cosmic rays produced in particle accelerator experiments. Most of them are highly unstable and live for less than a millionth of a second. Theoretical and experimental studies of particle physics, the study of elementary particles and their properties, have allowed scientists to understand more clearly the nature of matter and energy, and the origin of the universe. The Standard Model is a theoretical foundation that takes into account particle physics as it is now understood. For all identified subatomic particles, the Standard Model provides a classification scheme based on theoretical descriptions of the basic forces of matter.

Answer:

An atom is a particle of Matter that defines a chemical element. While they compose of three different subatomic particles protons, neutrons, and electrons. The protons and neutrons are located in the nucleus while the electrons are located around the atom.

Explanation:

Explain why genetic disorders caused by abnormal numbers of chromosomes most often involve the x chromosome.

Answers

The X chromosome is typically involved in chromosomal abnormalities. The only chromosome pair in which the two chromosomes are considerably dissimilar in size is X and Y.

This explains why sex chromosome nondisjunction seems to happen more frequently than autosome nondisjunction. Not to incite a sex conflict, but the X chromosome—which males have one of while females have two—is five times larger and contains ten times as many genes as the Y chromosome. So, compared to the Y chromosome, it carries more traits and diseases.Changes in the number of chromosomes are the root cause of various chromosomal disorders. These alterations take place at random during the development of reproductive cells; they are not inherited (eggs and sperm). Reproductive cells with an incorrect number of chromosomes are the result of a cell division defect called nondisjunction.

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explain how bones are classified by shape

Answers

long, short, flat and irregular.

what is the function of a ribosome? a. it transports messenger rna from the nucleus to the cytoplasm b. it is the factory where messenger rna is translated into protein c. it maintains the energy for protein assembly

Answers

The function of a ribosome is that it is the factory where messenger RNA is translated into protein. Thus, the correct option for this question is B.

What do you mean by Ribosomes?

Ribosomes may be defined as the type of cell organelles that are spherical and glandular in shape. They occur freely in the matrix or remain attached to the ER. The major components of ribosomes are RNA and Protein. They play an important role in Protein synthesis.

According to the context of this question, ribosomes are actively involved in the translation of genetic code into a specified string of amino acids that are responsible for synthesizing specific proteins.

Therefore, the function of a ribosome is that it is the factory where messenger RNA is translated into protein. Thus, the correct option for this question is B.

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Have you ever noticed that fruit flies don’t all look alike? If you look closely, you may see that they can have red eyes or white eyes.

Like all living organisms, fruit flies grow and reproduce. In Lesson 3.01, you learned mitosis is the process by which a cell divides into two daughter cells, each of which has the same number of chromosomes as the original cell. In Lesson 3.02, you were introduced to meiosis, the process by which organisms produce gametes. In this investigation, you will simulate mitosis and meiosis in fruit flies. Be sure you have fully investigated lessons 3.01 and 3.02 before beginning this assignment.

Materials:
16 pipe cleaners of 2 different colors and 4 matching lengths
String
O-shaped cereal
Marker
Procedure:
Part 1: Modeling Mitosis:
Copy the mitosis chart and add your name to the presentation. The circles you see represent a fruit fly body cell in different stages of the cell cycle.
Take out your pipe cleaners (to represent chromosomes). One color will represent the chromosomes inherited from the mother and one color represents the chromosomes inherited from the father. Use the same length of pipe cleaner for homologous pairs. You should have two sets of four different lengths of pipe cleaners.
Begin by assembling a diploid set of chromosomes for a fruit fly as they exist during most of interphase. A diploid set contains pairs of homologous chromosomes. Each chromosome at this point will be a single strand. You will have an extra set of each length and color left over. Here is a diploid set: Take note:
What is the diploid number of chromosomes in a fruit fly?
How many homologous pairs of chromosomes does a fruit fly have? (review this video for a review of chromosome numbers)
In late interphase, the amount of DNA doubles. That means each chromosome now doubles. Select a matching pipe cleaner (same length and color) for each chromosome and slide both through a piece of cereal. You now should have a set of eight doubled chromosomes arranged in homologous pairs.
Review the mitosis diagrams page 3 of Lesson 3.01 and move the chromosomes through the rest of the steps on your board.
Take a picture of each stage and place it in the appropriate circle in your diagram. Example:

This is a sample image of the # of chromosomes for a Spider Mite, not a Fruit Fly.
Fill in Tables 1 and 2 with the correct information
Table 1: Cell cycle and mitosis in fruit flies
Step Number of
Cells Number of chromosomes in
each nucleus Number of homologous pairs
in each nucleus
Interphase


Cytokinesis


A diploid set of human chromosomes contains 23 homologous pairs (46 chromosomes)

Table 2: Cell cycle and mitosis in humans
Step Number of
Cells Number of chromosomes in
each nucleus Number of homologous pairs
in each nucleus
Interphase


Cytokinesis


Part 2: Modeling Meiosis:
Meiosis is the process of producing sex cells with a haploid set of chromosomes. Haploid means half the number of chromosomes as the original cell. A haploid cell contains one chromosome from each homologous pair.

Copy the meiosis chart and add your name to the presentation. The circles you see represent a fruit fly body cell in different stages of Meiosis.
Begin by assembling a diploid set of chromosomes for the fruit fly as you did in Part 1. Place the chromosomes, in homologous pairs, in the first nucleus on your chart.
Like mitosis, before meiosis begins, the chromosomes double. Add a similar pipe cleaner to each chromosome and attach it with a piece of cereal as you did in part 1.
Unlike mitosis, which only has one cell division, meiosis has two divisions. Using the meiosis diagram Module 3 as a guide and move your chromosomes through Meiosis I and Meiosis II, taking pictures along the way.
Table 3: Meiosis
Step Number of
Cells Number of
chromosomes in
each cell Number of
homologous
pairs in each cell Diploid or
haploid
number?
Start of Meiosis



End of Meiosis I



End of Meiosis II



Conclusion Questions:
Write your answers in complete sentences.

What is the purpose of mitosis? What is the purpose of meiosis?
Why is it important for a cell to duplicate its DNA before it divides in two?
You have 23 pairs of chromosomes in your body cells. Why do your chromosomes occur in pairs? Where does each chromosome in the pair come from?
A dog’s diploid number of chromosomes is 78. How would the number of chromosomes in the dog’s body cells compare to the number of chromosomes in its gametes?
What happens to the homologous pairs of chromosomes in meiosis I?
What are the two main events that occur in meiosis (not included in this simulation) that leads to genetic variation in the gametes?
Why do siblings not look identical even though they are from the same mother and father?

Answers

Individual fruit flies (Drosophila) typically have orange-red eyes. However, some mutant versions have white eyes and lack the red pigment. The fruit fly's reaction to light is altered by these eye color changes.

What are the different eyes color in fruit flies?

A new study using fruit flies supports one benefit of sex: It favors advantageous mutations. A female who reproduces asexually transmits all of her genes, whereas a sexually active female only transmits half of her genes.

Wildly bred fruit flies occasionally have crimson eyes. A recessive gene causes brown and sepia eyes, which can only appear when two sepia-eyed flies mate.

Therefore, fruit flies with white, vermilion, and cinnabar eyes are mutations that are far less frequent.

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the many microorganisms that live in close association with humans are termed normal human microbiota or

Answers

The many microorganisms that live in close association with humans are termed normal human microbiota or microflora.

The human microbiota includes the 10-100 trillion symbiotic microbial cells harbored with the aid of using every person, on the whole micro organism withinside the gut; the human microbiome includes the genes those cells harbor.

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secretory iga is found in the secretions that coat mucus membranes, thereby preventing pathogens from colonizing mucosal surfaces. what are methods that bacteria have evolved to evade or inactivate these antibodies?

Answers

Secretory igA is found in the secretions that coat mucus membranes, thereby preventing pathogens from colonizing mucosal surfaces.The various methods that bacteria have evolved to evade or inactivate these antibodies are intracellular parthenogenesis. The various antibacterial defense systems help the microbes to survive the attack.

What is first line of defense ?

It is the primary defense system that a body develops in order to create a defense mechanisms against the bacteria.

Secretory igA is found in the secretions that coat mucus membranes, thereby preventing pathogens from colonizing mucosal surfaces. The various bacteria grow in such a way that the antibodies are not able to provide them enough of attack in order to protect.

The various antibodies are generated in response to the antigens that a body gets to witness.

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green plants absorb sunlight to power photosynthesis, the chemical synthesis of food from water and carbon dioxide. the compound responsible for light absorption and the color of plants, chlorophyll, strongly absorbs light with a wavelength of 662 nm. calculate the frequency of this light.

Answers

The frequency of this light is  4.53 x 10¹⁴s⁻¹ when light having a wavelength of 662 nm absorbs by chlorophyll pigment.

What is the wavelength of light?

For calculating the wavelength of light, use the equation,

λ= c/v

Where,

λ = wavelength of the light =  662 nm

c = speed of light = 3.0 x 10⁸ m/s

v = frequency of light = ?

v = 3.0 x 10⁸/662 x 10⁻⁹ =  4.53 x 10¹⁴s⁻¹

Therefore, the wavelength of 662 nm having a frequency of this light is  4.53 x 10¹⁴s⁻¹ is absorbed by the chlorophyll of plants.

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PLEAZE HURRY
Which phylum of animals included organisms that have soft bodies, possible shell covering, and head with eyes or tentacles?

Select one:


a.

Nemotoda


b.

Porifera


c.

Rotifera


d.

Mollusca


please give correct answer and don't fool around

Answers

Answer:

Mollusca

Explanation:

They have soft body. They are fully or partially enclosed in calcium carbonate shell.

Answer:

I hope this helps.

Explanation:

which classification group is the largest? (meaning they are the most inclusive, or has the most number of different organisms

Answers

Answer:

The largest classification group is the domain.

the infrared receptors of rattlesnakes allow them to detect the body heat of prey animals. what type of receptor are infrared receptors?

Answers

Rattlesnakes' TRPA1 (transient receptor potential ankyrin 1) type of receptors enable them to sense the body heat of their prey species.

What does the gene TRPA1 do?

The only member of the TRPA gene subfamily found in mammals is TRPA1. According to recent studies, mustard oil, a painful and inflammatory irritant, targets TRPA1 in peripheral sensory neurons, suggesting that it functions to cause pain and neurogenic inflammation.

What occurs when TRPA1 is turned on?

When TRPA1 is activated, a key component of its signaling mechanism is the local release of substance P, also known as calcitonin gene-related peptide (CGRP), which attracts immune cells, causes vasodilatation and plasma extravasation, and promotes neurogenic inflammation.

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Which hypothesis suggests that ancestral vertebrates may have evolved from urochordate larvae?.

Answers

Garstang's Auricularia hypothesis suggests that ancestral vertebrates may have evolved from urochordate larvae.

What is Garstang's Auricularia?

The auricularia hypothesis, proposed by Garstang was an attempt to explain how the chordate body plan originated from a deuterostome common ancestor by emphasizing the significance of changes in larval forms. According to the Garstang Hypothesis, development of sexual maturity in a non-metamorphosing lineage of tunicates might provide the immediate proto-chordate ancestors of more typical chordates.

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How many basic units of information in a dna molecule are required to encode a single amino acid?.

Answers

Basic units of information in a DNA molecule are required to encode a single amino acid with 3 nucleotides.

Amino acids are molecules that combine to shape proteins. Amino acids and proteins are the building blocks of life. when proteins are digested or damaged, amino acids are left. The human frame makes use of amino acids to make proteins to help the body: wreck down food.

An amino acid is an organic molecule that is made from a basic amino institution (−NH2), an acidic carboxyl organization (−COOH), and a natural R institution (or aspect chain) that is precise to every amino acid. The time period amino acid is short for α-amino [alpha-amino] carboxylic acid.Nov 9, 2022

Amino acids, particularly, are typically secure to apply every day, so long as they may be not fed on in large amounts. due to the fact the dietary desires of various human beings can range broadly, it's hard to say exactly what the top restriction is probably for amino acids in widespread.

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Petroleum can be separated by distillation because the hydrocarbons in petroleum are?. One argument advanced in favor of not increasing the income tax on individuals with high income is that. austin prepared 20 kilograms of dough after working 4 hours. how much dough did austin prepare if he worked for 5 hours? solve using unit rates. which of the materials assigned this week best relates to our previous discussion of context collapse? Why would it matter if you have a person with type 1 diabeties a solution of 3 mm sucrose instead of a 3 m solution of sucrose?. 5. Why is it important to flame neck of the tubes immediately after uncapping and before recapping the tubes?. Because of the value people bring to an organization in terms of their knowledge, skills, and abilities, some managers use the term. Y=6x-2 function rule what is the correct sequence of events that occurs during the router startup process? 1. operating system is found and loaded 2. power-on self-test is conducted 3. configuration file is loaded from nvram 4. bootstrap loader executes from rom HELP ME PLEASEE!! I cant do fractions!! I will give a brainliest too!! Alizay sold 15 shirts priced equally for Rs.2800. She spent Rs. 14,000 of her earned amount on shopping and Rs. 7500 on buying grocery. How much is she left with? Simplify the expression completely:8x + 4 - 6y - 3x + y = How would the rate of disappearance of ethyl bromide change if the solution were diluted by adding an equal volume of pure ethyl alcohol to the solution?. true or false? smoking-related illnesses in the united states cost more than $300 billion each year. Problem 29) Find the point of inflection and concavity.29. f(x)=4/x+1 Select the correct answer.Which excerpt introduces the idea that the electric car faced new competition in the early 1900s? A. "By 1900, electric cars were at their heyday, accounting for around a third of all vehicles on the road." (paragraph 7) B. "it was Henry Ford's mass-produced Model T that dealt a blow to the electric car." (paragraph 13) C. "At the turn of the 20th century, the horse was still the primary mode of transportation." (paragraph 8) D. "That same year, Charles Kettering introduced the electric starter, eliminating the need for the hand crank" (paragraph 13) Situation: A shy teenage boy feared crowds and struggled when called upon in class. His social worker discovered the teen enjoyed and had a gift for computer math games. The social worker encouraged the teen to get involved in a small after-school math team that worked with elementary students who needed help in math. In the small group setting, using his gift for math, the teen began to overcome his fear of crowds. Which shows the following expression after the negative exponents have been eliminated? startfraction a cubed b superscript negative 2 baseline over a b superscript negative 4 baseline endfraction, a not-equals 0, b not-equals 0 startfraction a cubed b superscript negative 4 baseline over a b superscript negative 2 baseline endfraction startfraction a b superscript 4 baseline over a cubed b squared endfraction negative startfraction a cubed b superscript 4 baseline over a b squared endfraction startfraction a cubed b superscript 4 baseline a b squared endfraction. Enter the ratio of students who chosealternative to the total number of students. the voltage across a capacitor is given by find expressions for the current, power, and stored energy. sketch the waveforms to scale versus time.