Which accessory eye structure is NOT correctly matched with its function? (A) conjunctiva: protect eye from drying out(B) eyelid: protect the eye (C) tarsal glands: produce tears(D) lacrimal glands: destroy bacteria

Answers

Answer 1

Answer:

(C) tarsal glands: produce tears

Explanation:

Tarsal glands are also called as Meibomian glands. These glands do not secrete tears. The tarsal glands sere to produce a fluid which in turn do not allow the eyelids to adhere to each other. Hence, tarsal glands are involved in preventing the eyelids from sticking to each other. Production of tears is the function of lacrimal glands.

Answer 2
Final answer:

The lacrimal glands' primary function is to keep the eye moist, not destroy bacteria, making option (D) the incorrect match between the accessory eye structure and its function.

Explanation:

The accessory eye structure that is NOT correctly matched with its function is (D) lacrimal glands: destroy bacteria. While the lacrimal glands do produce tears, their primary function is not to destroy bacteria, but to keep the eye moist. The components and function of the lacrimal apparatus also include the flow of tears over the conjunctiva to wash away foreign particles.

On the other hand, the tarsal glands, mentioned in option (C), are located within the eyelids and secrete an oily substance that prevents the eyelids from sticking together, rather than producing tears. This oily substance also contributes to forming a barrier against foreign materials and helps with tear film stability.

Therefore, option (C) is incorrect in stating that the tarsal glands produce tears.


Related Questions

A urine sample with more than 100,000 organisms is considered indicative of infection. A urine sample containing 5,000 bacteria, with a generation time of 30 minutes, sits for 3 hours before finally being assayed. How many bacteria will then be present within the sample?

Answers

Answer:

320 000  

Explanation:

The generation time G is the time it takes a bacterial population to double.

If N₀ is the number of bacteria at the beginning of the experiment and N is the number at any time t,

N = Nₒ × 2ⁿ

where n is the number of generations

n = t/G

Data:

N₀ = 5000

G = 30 min

  t = 3 h

Calculations:

 t = 3 h = 180 min

n = 180 min/30 min = 6

N = 5000 × 2⁶ = 5000 × 64 = 320 000

There will be 320 000 bacteria in the sample.

Miguel's wife brought him to the emergency room because Miguel could not remember his name, the names of his family members, where he worked, or any other basic personal information. Extensive tests at the hospital indicated that Miguel's memory problems were not due to an injury, an illness, drugs, or any other physical or medical condition. A clinical psychologist suggested that Miguel might be suffering from:

Answers

Answer:

Dissociative Disorder

Explanation:

Dissociative Disorder, also known as conversion disorder, is a mental disorder in which the person suffers from a psychological imbalance, with alterations in consciousness, memory, identity, emotion, perception of the environment, movement control and behavior. A common symptom of this disorder is the non-recognition of family members, as well as a loss of memory of things that were done on a daily basis.

Miguel is showing this kind of symptom so there is a chance that he is suffering from dissociative disorder.

Rh blood factor is determined by:
the presence or absence of a particular leukocyte
the presence or absence of a particular erythrocyte protein
the presence or absence of a particular plasma
the positive or negative characteristics of platelets

Answers

Answer: Rh boold factor is determined by the presnce or absence of a particular erythrocyte protein

Explanation:

The Rh factor is an integral protein of the membrane of red blood cells (erythrocytes) and, by its determination, the blood type RH + or RH- is detected, -regardless of the types of groups known as 0, A, B and AB- .

People who are  RH + are those who have this protein in their red blood cells, and people with RH - refer to those who do not have the protein.

The Rh factor (Rhesus) was discovered by Karl Landsteiner and Wiener in 1940.

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Answer:

Rh blood factor is determined by the presence or absence of a particular erythrocyte protein

What method(s) do plants use to obtain nitrogen? Select all that apply.
absorb it from the atmosphere
use bacteria to convert nitrogen to usable form
In obtain usable nitrogen compounds from the soil
absorb nitrogen from water taken in at the roots

Answers

Answer:

Plants can't use N2 as is so the first option is wrong. They do have relationships with bacteria that live in nodules of the root and convert the nitrogen into ammonia, a usable form for the plants. So the second option is correct. There are bacteria living in the soil as well that convert nitrogen to ammonia so technically option 3 is also correct. Again, nitrogen if present in water would be in the form N2 which is not usable by plants so 4 is wrong.

These are correct:

use bacteria to convert nitrogen to usable form

In obtain usable nitrogen compounds from the soil

Plants acquire nitrogen through natural processes. Nitrogen is introduced into the soil by fertilizers and animal and plant debris. Bacteria in the soil convert nitrogen into ammonium and nitrates. These are taken up by plants in the process of nitrogen fixation. Plants use this method to obtain nitrogen.

These are correct:

Bacteria convert nitrogen into a usable form

Extract available nitrogen compounds from soil

How do plants get nitrogen?

Plants cannot get nitrogen from the air but rely primarily on the supply of fixed nitrogen in the form of ammonia or nitrates. This results from nitrogen fixation by free-living bacteria in the soil or symbiotic bacteria in the tubers in the soil. The roots of legumes arise from the soil.

How do plants absorb nitrogen from the atmosphere?

Plants get the required nitrogen from soil that is already fixed by bacteria and archaea. Bacteria and paleobacteria in the roots of soil and some plants have the ability to convert atmospheric molecular nitrogen (N2) to ammonia (NH3), thereby breaking the strong molecular nitrogen triple bonds.

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In Europe, approximately 4% of people are red-haired, mostly due to a recessive mutation in the melanocortin 1 receptor (MC1R). If the population is in Hardy-Weinberg equilibrium, what is the likelihood that a non-redheaded European is a carrier for the MC1Rr allele? (For the purpose of this problem, assume all redheads and carriers are mutant for the same MC1R allele).
A: 22%
B: 33%
C: 11%
D: 44%

Answers

Answer:

33%.

Explanation:

The 4% population is red-hair due to the recessive mutation in melanocortin 1 receptor (MC1R).

Since, the population is in Hardy-Weinberg equillibrium- laet the frequency of recessive allele with red - hair is 'q' and the frequency of dominant allele in the population is 'p'.

[tex]q^{2} =4\%[/tex]

[tex]q^{2} = 0.04[/tex]

q=0.2

According to hardy-weinberg equillibrium

(p+q)=1

p=1-q

p=1-0.2

p=0.8.

The total population with non red hair is calculated by

=[tex]p^{2} +2pq[/tex]

= 0.64 + 0.32

= 0.96

The percentage of the population with non red headed carrier for MC1Rr is calculated by:

=0.32/0.96*100

=33%

Thus, the correct answer is (B).

Which statement is true of the genetic material in viruses? It is larger than cellular DNA. It can be DNA or protein. It changes very slowly. It can be DNA or RNA.

Answers

Answer:

C. It can be DNA or RNA

Explanation:

Viruses can be described as non cellular, microscopic, infective agent that are composed of genetic material ( DNA or RNA), which is surrounded by a protenaceous coat known as viral capsid.

It means that there can be RNA ( ribonucleic acid) and DNA ( deoxyribonucleic acid) based viruses.

Do you think all organisms rely on the Sun in part for energy? Explain your reasoning.

Answers

Yes:

At the bottom of every food chain are producers. They make up the backbone of life on earth. Without organisms that take energy from the sun and convert it to usable energy, where would all the other organisms, like us, get our energy? While many times it is indirect, all organisms, in part, rely on the sun for energy and in turn, for life.

The Sun is the main source of energy for organisms and the ecosystems of that they are a part. Producers such as algae and plants use energy in the from sunlight to form food energy by uniting carbon dioxide and water to form organic matter.

What is food web?

A food web defined as all the food chains in a single ecosystem. Each living thing in an ecosystem forms part of multiple food chains. Each food chain is one viable path through which energy and nutrients may take as they move through the ecosystem.

This process starts the energy flow through almost all food webs. Food is organic molecules which serve as fuel and forming material for all organisms. The breakdown of food molecules able the cells to store energy and to performs the many functions of the cell and therefore the entire organism.

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Which customers are typical for the Agriculture, Food, and Natural Resources career cluster? Select ALL that apply.

a power company needing solar panels
a local fresh market
a business working with trained animals
a person buying large quanities of wheat
a person learning about geography
a family on a camping trip

Answers

Answers:

a local fresh market ( second choice)

a business working with trained animals ( third choice)

a person buying large quanities of wheat ( fourth choice)

What does the endocrine system consist of

Answers

Answer:

Hypothalamus, pituitary, parathyroids, thyroid, adrenals, pineal body and reproductive organs.

These are the glands that secrete and produce hormones.

The endocrine system consists of glands that produce hormones, which are chemical messengers that regulate body functions by traveling through the bloodstream to target cells. Key components include the pituitary gland, hypothalamus, thyroid, pancreas, and adrenal glands.

The endocrine system is a complex network of glands and organs that produce, store, and secrete hormones. It is crucial for maintaining homeostasis and orchestrating the physiological processes in the body. The system includes the pituitary gland, often termed the 'master gland,' as it regulates other glands in the endocrine system. Other vital parts include the thyroid gland, pancreas, adrenal glands, parathyroids, and the hypothalamus, which is a neural structure that links the nervous system to the endocrine system and controls many of the pituitary's functions.

Hormones released by these glands are like chemical messengers that travel through the bloodstream to various tissues and organs. They enable long-distance communication within the body by binding to specific receptors on the target cells. This can influence a wide range of processes, including metabolism, growth, sexual development, and mood regulation. Some organs like the pancreas have dual roles that include endocrine functions, such as the secretion of insulin and glucagon to manage blood glucose levels. Other tissues, like adipose (fat) and bone, also have hormone-producing roles, illustrating the endocrine system's extensive impact on the body's functions.

All of the following contribute to the movement of venous blood EXCEPT A. ventricular systole B. pressure changes in the thorax C. venous valves D. activity of skeletal muscles E. neural control over venoconstriction

Answers

Answer:  B. pressure changes in the thorax

Explanation:

The veins are the blood vessels which returns the deoxygenated blood from all the tissues and cells of the body back to the heart. The ventricular systole, venous valves, activity of the skeletal muscles and neural control over venoconstriction all influence the movement of the blood in the venous.

The pressure changes in the thorax occurs due to inspiration and expiration. During the process of inspiration, the diaphragm below the lungs contracts and moves downward while the muscles of the ribs pulls downward. When the size of the thoracic cavity increase the air pressure inside the cavity decreases and vice-versa. The pressure inside the thoracic cavity is not related with the movement of the venous blood as it regulates the exchange of the gases not the blood.

Final answer:

Ventricular systole does not contribute to venous blood flow; it impacts arterial flow. Venous return is aided by thoracic pressure changes, venous valves, skeletal muscle activity, and neural control over venoconstriction.

Explanation:

The question asks which factors do not contribute to the movement of venous blood. The correct answer is A. ventricular systole, as this specifically refers to the contraction of the ventricles in the heart, which directly impacts the arterial blood flow rather than venous return. Venous blood movement is influenced by pressure changes in the thorax during respiration, the presence of venous valves preventing backflow, the activity of skeletal muscles which helps to 'pump' the blood back toward the heart, and neural control over venoconstriction which regulates the diameter of the veins to ensure proper blood flow.

Factors contributing to the return of blood to the heart include the smooth muscle action within the venous walls, venous valves, the skeletal muscle pump, and venoconstriction. These mechanisms work together to maintain a continuous flow of venous blood back to the heart despite the lower pressure compared to arteries and the pull of gravity, especially in the extremities.

Rat-tail tangs are preferable to full tangs in knives that will be used frequently.

a. True

b. False

Answers

Rat-tail tangs are preferable to fold things in knives that will be used frequently.

Answer- Flase

The statement "Rat-tail tangs are preferable to fold tangs in knives that will be used frequently" is absolutely false.

What is a rat-tail tangs knife?

A rat-tail tangs knife may be defined as a more drastic knife tang that utilizes less stock material and resembles a rat due to the structure which is significantly narrower than the blade.

The structure of this knife is constructed in such a way that the blade is the thick body of the rat, while the tang looks like the thin tail of a rat.

Rat-tail tangs are not preferably folded in knives and it always put in open form with visible blade and tang.

Therefore, it is well described above.

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Most genes come in alternative forms called

Answers

It’s called Allele!! :)
Final answer:

Most genes come in alternative forms called alleles. However, a process called alternative RNA splicing can result in one gene producing various protein products, adding another layer of complexity to gene expression and function.

Explanation:

Most genes come in alternative forms called alleles. Alleles are gene variants that arise by mutation and exist at the same relative locations on homologous chromosomes. For some genes, there can even be more than two alleles within a population.

However, the complexity doesn't stop there. In the 1970s, scientists discovered a process called alternative RNA splicing, which allows a single gene to produce multiple protein products. During alternative RNA splicing, different combinations of introns (and sometimes exons) are removed from the mRNA transcript. This process can be strictly controlled or haphazard, and it acts as a mechanism of gene regulation, influencing the production of proteins in different cells or at different stages of development. Remarkably, it's estimated that 70% of human genes undergo alternative splicing, further increasing the diversity of possible proteins.

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Once researchers identified DNA as the molecule responsible for transmitting heritable traits, they asked how information was transferred from the DNA in the nucleus to the site of protein synthesis in the cytoplasm. Which of the following statements correctly describes the mechanism of information transfer in eukaryotes that accomplishes this task?

A) Transfer RNA takes information from DNA directly to a ribosome, where protein synthesis takes place.
B) Histone proteins in the chromosomes transfer information from the nucleus to the ribosome, where protein synthesis takes place.
C) Messenger RNA is transcribed from a single gene and transfers information from the DNA in the nucleus to the cytoplasm, where protein synthesis takes place.
D) DNA from a single gene is replicated and transferred to the cytoplasm, where it serves as a template for protein synthesis

Answers

Answer:

C) Messenger RNA is transcribed from a single gene and transfers information from the DNA in the nucleus to the cytoplasm, where protein synthesis takes place.

Explanation:

DNA transfers the heredity information from parents to the offspring, via central dogma. DNA transcripts its information into messenger RNA, inside the nucleus via RNA polymerase and addition of base pairs.

This transcript of RNA carries the information encoded on it. It translates its information into proteins in the cytoplasm, According to the mRNA sequences the amino acid codons are created that form the specific peptides. This is how information is transferred from DNA in the nucleus and then to the cytoplasm.  

Chemoreceptors in the circulatory system detect changes in circulating pCO2. If CO2 concentrations get too high, the rate of ventilation increases. Why does this make sense?

Answers

Answer: The more active cells produce more carbon dioxide.

Explanation:

When the cells are constantly working the amount of oxygen consumed and more amount of carbon dioxide is released by the cells.

Chemo receptors in the circulatory system increases the ventilation so that more carbon dioxide can go out of the cell and more oxygen can get inside the cell.

This is because the more active cells more carbon dioxide and there is a sudden increase in the concentration of carbon dioxide which need to be corrected by the help of ventilation.

Cells of the excretory tubule _________BLANKwater by osmosis, from which we can conclude that the solute concentration in these cells must be _________BLANK than in the filtrate. Question 5 choices Choice

Answers

Answer:

The correct answer will be option

1. reabsorb

2. higher

Explanation:

In the urinary pathway, the renal tubules comprise of the distal convoluted tubule (DCT), Loop of Henle and proximal convoluted tubule (PCT) mainly but collecting tubule is also considered as apart of the renal tubule. The main function of the renal tubules is re-absorption of water, electrolytes, and other important ions like sodium, potassium.

The thin descending loop of Henle reabsorbs water by osmosis or passive diffusion of water that is water will move from the high concentration to low concentration. This shows that the cells will have a high solute concentration of solute than filtrate due to which water moves from outside to inside of the cell.

Thus, reabsorb and higher are the correct options.

Which of the following is characteristic of all leukocytes?

A. They are phagocytic.
B. They are the most numerous of the formed elements in blood.
C. They are nucleated.
D. They have cytoplasmic granules.

Answers

Answer: They are nucleated

Explanation:

That is the right answer, not all leukocytes have the other characteristics....

The characteristic of all leukocytes is - C. They are nucleated.

Leukocytes are the major part of the body's immune system that fights in body with infection and other diseases. Types of leukocytes cells are granulocytes, monocytes, and lymphocytes cells.

These cells leave the bloodstream to perform their defensive functions in the body's tissuesAll white blood cells are nucleated, unlike anucleated red blood cells and platelets.These cells do not have hemoglobin that carries oxygen in RBC.

Thus, The characteristic of all leukocytes is - C. They are nucleated.

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time and velocity are both factors True or false

Answers

Answer:

False

Explanation:

Time and velocity are NOT both vectors.

Velocity equals distance travelled divided by the time it takes to get there.

What is the binomial name of the tiny mammal of the family craseonycteridae

Answers

Answer:

It's name is:

Crase-onycteris tho-nglongyai

You should remove the - but else it won't let me post the name...

Answer:

Craseonycteris tho-nglongyai

Explanation:

The type of bond that joins monosaccharides and is easily digested by enzymes in the human intestine is a __________. delta bond peptide bond beta bond alpha bond

Answers

Answer: alpha bond

Explanation:

The carbohydrates popularly called sugars are energy nutrients formed by carbon, hydrogen and oxygen atoms. It is the main energy source of the man and also has a structural or plastic role (formation of parts of cells such as the cell wall, or tissues, such as the exoskeleton chitin of the insects and crustaceans - crab). The small intestine's main mission is to complete the digestion of the chyme. In its passage through the duodenum, it suffers the action of pancreatic and intestinal juices and bile. In fact, it is in the duodenum that most digestive secretions are produced. The foods complexes are thus transformed into simple elements, easily assimilable by the body.

Enzymes are protein catalysts responsible for most of the chemical reactions of the organism, is found in all tissues. Amylase acts in the intestine hydrolyzing glucose polymers (starch, amylopectin, and glycogen). The bonds that hold the monosaccharides together and which are easily digested by pancreatic amylase in the intestine are known as alpha bonds. Some examples of sugars that have alpha bonds are sucrose, maltose, and starch.

The type of bond that joins monosaccharides and is easily digested by enzymes in human intestine is an alpha bond.

Further Explanation:

Carbohydrates are biomolecules which comprises of carbon, hydrogen and oxygen atoms. They mostly include starch, cellulose and sugars. This when consumed by an organism is broken down into its simplest form (monosaccharides) and used to produce energy. This action requires digestive enzyme amylase.

Monosaccharides are most simple sugars which are product of breakdown of complex carbohydrates. Breakdown of these carbohydrates are brought by digestive enzymes present in saliva and in small intestine. The enzyme responsible for this digestion is salivary amylase and pancreatic amylase.  

These enzymes cleave the bond and giving rise to two monosaccharides. These bonds are alpha bonds that help in connecting two monosaccharides. The digestive enzyme amylase present in saliva and in pancreatic juices helps to bring down the digestion. The partially digested food reaches the intestine where the enzyme acts on it, this is called as chyme.  

Glucose is the most abundant form of energy giving compound which undergoes respiration to form ATP which is a basic energy giving molecule in the entire living organism.  

Learn More:

1. Learn more about carbohydrate monomer https://brainly.com/question/6947177

2. Learn more about lipid bilayer https://brainly.com/question/751529

3. Learn more about peptide bonds https://brainly.com/question/4657391

Answer Details:

Grade: High School

Subject: Biology

Chapter: Biochemistry

Keywords:

Biochemistry, monosaccharides, alpha bond, Bond, alpha linkage, enzymes, amylase, salivary amylase, pancreatic amylase, biomolecules, hydrogen, carbon, oxygen, energy, basic energy fuel, ATP, glucose, starch, sugar, cellulose.

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Which of the following describes a phenomenon that occurs when we observe plants that wilt?

A. The xylem releases all its water.
B. The stomata close, cutting off transpiration and gas exchange.
C. The roots begin to rot, causing them to no longer uptake water.
D. The plant begins absorbing oxygen and releasing carbon dioxide into the atmosphere.

Answers

Answer:

The stomata close, cutting off transpiration and gas exchange. - B

Answer:A

Explanation:

Which of the following is not a function of astrocytes? A) support and brace neuronsB) anchor neurons to blood vesselsC) guide the migration of young neurons, synapse formation, and helping to determine capillary permeability D) control the chemical environment around neuronsE) provide the defense for the CNS

Answers

Answer:

provide the defense for the CNS

Explanation:

Astrocytes are star shaped glial cells present in the central nervous system. These cells are known to perform important function in the organisms.

The different function performed by astrocytes are: the maintenance of extracellular ion,acts as a blood brain barrier and helps in synapse formation. Astrocytes do not provide defense for the CNS.

Thus, the correct answer is option (E).

A plasmid contains the gene for tetracycline resistance and a lacz gene that has a restriction site in it. Foreign dna has the same restriction site at its ends. A mixture of foreign dna and plasmid dna cut with the same restriction enzyme is used to transform host bacteria that are then grown on medium with tetracycline and x-gal. Colonies that are producing β-galactosidase and are tetracycline resistant are carrying

Answers

Answer:

The colonies are carrying the resistance genes from plasmids

Explanation:

Bacteria can acquire beneficial characteristics that they didn’t have. One way for these is through plasmids, which ones are little fragments of DNA that usually contains resistance genes (for antibiotics, disinfectants, heavy metals, etc.) or other capacities, like the ability to use some substances (for example sugars).

In this specific situation, we already know that the plasmid carrying genes for tetracycline resistance and the lacZ gene.  

A little explanation:

Tetracycline is an antibiotic that inhibits bacterial growth and kills the bacteria.  The bacteria can “fight” to this antibiotic if it has a resistant gene, the result is that the antibiotic can’t affect the bacteria and survive.  An analogy is like a Police Officer (bacteria) that have a bulletproof vest (tetracycline-resistant gene) so the bullets (tetracycline) didn’t affect the police.

In the case of X-gal, is a compound consisting primarily in one sugar called galactose. Not all bacteria can eat galactose, they need an enzyme called β- galactosidase (comes from lacZ gene) that helps the bacteria “eat” the sugar (cuts the sugar in little pieces so the bacteria can eat).  

Then, as the bacterial colonies can grow in the medium with tetracycline and X-gal,  we know that those bacteria are carrying the resistance genes for tetracycline (does not affect the bacteria) and the lacZ gene (bacteria produce β- galactosidase that cuts galactose). These genes are coming from the plasmids because we already know that the plasmid carries these genes and not from the exogenous DNA.  

Which properties of water plays an important role in the movement of water from the roots to the leaves in plants?Universal solventhigh specific heathigh heat of vaporizationcapillary action

Answers

Answer:

Capillary action

Explanation:

Capillary action is the ability of a liquid to flow in narrow spaces in opposition to forces like gravity.

To find the graphical solution when adding vectors, you can draw a(n) ____ from the starting point to the ending point.

Answers

Answer:

arrow (which creates the resultant vector)

Explanation:

When you use the graphing technique when adding vectors, you can use the head to tail method to draw the vectors. And from the starting point or the tail of the first vector you drew, you will draw an arrow touching heads with the head of the last vector drawn.

With that, you can use a ruler to measure the resultant vector's magnitude, and use a protractor to measure it's direction.

Below is an example:

Let:

V1 = Vector 1

V2 = Vector 2

R - resultant vector.

Two true-breeding stocks of pea plants are crossed. One parent has red, axial flowers and the other has white, terminal flowers; all F1 individuals have red, axial flowers. The genes for flower color and location assort independently. If 1,000 F2 offspring resulted from the cross, approximately how many of them would you expect to have red, terminal flowers?

a. 250

b. 750

c. 190

d. 65

e. 565

Answers

Answer:

565 is right answer of this quation

Which event takes place during anaphase II of meiosis II?

a. Sister chromatids separate.
b. Cytoplasm divides.
c. Spindle fibers disassemble.
d. Nuclear membrane breaks down.

Answers

Answer:

Sister chromatids separate.

Explanation:

Final answer:

Anaphase II is the stage of meiosis II where sister chromatids separate. This process is followed by cytoplasm division and the disassembly of spindle fibers.

Explanation:

Anaphase II is a stage of meiosis II where sister chromatids separate. This occurs after the nuclear membrane has broken down and the spindle fibers attach to the centromeres of the chromatids. During anaphase II, the chromatids are pulled apart and move towards opposite poles of the cell.

After anaphase II, cytoplasm divides during cytokinesis, resulting in the formation of two daughter cells. The spindle fibers also disassemble during telophase II, marking the end of meiosis II.

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The epiglottis is pushed downward and the larynx is lifted up to meet it when we swallow. True False

Answers

Answer:

The correct answer is true.

Explanation:

Swallowing of food is the process of passing the food from the mouth to the stomach through the way of the throat (pharynx) and esophagus. This process takes place in three stages:  oral, pharyngeal, and esophageal stages  

During the pharyngeal stage, epiglottis which is a leaf-shaped flap of cartilage located at top of the larynx (a muscular organ forming voice box) perform functions in response to the swallowed food as the larynx lift up or rises inside the neck to close the epiglottis while the epiglottis moves downward to cover it, providing more airway protection.

Thus, true is the correct answer.

Final answer:

Yes, when we swallow the larynx lifts upward and the epiglottis (which is attached to the thyroid cartilage and covers the trachea) swings downward. This prevents food or liquid from entering the trachea and directs it into the esophagus.

Explanation:

Yes, it is true that the epiglottis is pushed downward and the larynx is lifted up when we swallow. The epiglottis, attached to the thyroid cartilage, is a very flexible piece of elastic cartilage that covers the glottis, the opening of the trachea. During the act of swallowing, the pharynx and larynx lift upward. This allows the pharynx to expand and the epiglottis of the larynx to swing downward, closing the opening to the trachea and preventing food and beverages from entering. At the same time, the larynx is pulled superiorly and the cartilaginous epiglottis folds inferiorly.

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apex learning:

Antibiotics destroy a bacterial infection by disabling ribosomes in the bacteria. Eukaryotic cells contain mitochondria that themselves contain ribosomes while bacterial cells have no organelles and thus have uncontained ribosomes. How do chemists use this fact to create antibiotics that can destroy a bacterial infection without harming human cells?

Answers

Answer:

Different antibiotics work differently from each other, some attack bacterial cell wall, some attack proteins, some attack ribosomes and some attack DNA replication machinery.

Antibiotics that attack the ribosomes such as 'tetracycline' actualy inhibit the bacteria to grow by attacking their protein synthesis. Protein synthesis is accomplished in ribosomes, tetracycline cross the bacterial membrane and enter cytoplasm from there i binds on a single specific site on the ribosomes which result in the halting of RNA interaction that stops protein synthesis or extension. In humans, the accumulation of such antibiotics is not to such an extent that it damages the cell machinery.

The cell cycle results in the production of ______. four diploid cells, each with the same amount of genetic material and the same genetic information two diploid cells, each with the same amount of genetic material but with different genetic information two diploid cells, each with the same amount of genetic material and the same genetic information a diploid zygote four haploid cells, each with the same amount of genetic material but with different genetic information

Answers

Final answer:

The cell cycle through meiosis results in the production of four haploid daughter cells, each with half the genetic material of the parent cell and different genetic information, due to processes like crossing over and random assortment.

Explanation:

The Cell Cycle and Meiosis

The cell cycle, specifically through the process of meiosis, results in the production of four haploid daughter cells, each with half the amount of genetic material compared to the parent cell, and with different genetic information. During meiosis, a single diploid cell undergoes one round of DNA replication followed by two successive rounds of nuclear division to form four haploid cells. These haploid cells are genetically unique due to the random assortment of chromosomes (maternal and paternal) and crossing over that mixes DNA segments between chromatids.

Initially, the parent cell has 46 chromosomes (23 pairs), and after meiosis, each of the resulting haploid cells contains 23 chromosomes. These cells are destined to become gametes. Upon fertilization, the combination of a haploid sperm and a haploid egg results in the creation of a diploid zygote.

Therefore, the correct answer regarding the outcome of the cell cycle is "four haploid cells, each with the same amount of genetic material but with different genetic information." This differs from mitosis, which produces two diploid daughter cells that are genetically identical to the parent cell.

Can i put hydrogen peroxide in my dogs ear

Answers

Answer: Yes you can

Explanation:A solution of one part hydrogen peroxide and one part water can be used to wipe out the canals of the ear with a cotton ball for a dog with a mild infection post-veterinarian approval. ... Hydrogen peroxide can kill forms of bacteria that can cause ear infections, which will leave your dog earache free.

Final answer:

While hydrogen peroxide can be used to clean a dog's ear due to its antibacterial properties, it needs to be diluted and used with care. It's always recommended to consult with a veterinarian before attempting this.

Explanation:

Yes, you can put hydrogen peroxide in your dog's ear, but it should be used carefully and only when necessary. Hydrogen peroxide has antibacterial properties and can be used to clean wounds, including those inside a dog's ear. However, it should be diluted before use. A dilution of 1 part peroxide to 1 part water is generally considered safe. You should apply it using a cotton ball or soft cloth, making sure not to poke it deep inside the ear. Always consult with your veterinarian before attempting this procedure, as inappropriate usage could potentially harm your pet.

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