Which organ system regulates blood volume by altering the amount of fluid released in urine?

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Answer 1

The organ system regulates blood volume by altering the amount of fluid released is urinary system.

What is the urinary system?

The kidneys discharge fluid waste in the form of urine, which is produced, stored, and eliminated by the urinary system, also known as the renal system. By filtering toxins and excess water from blood, the kidneys produce urine. The bladder is filled with urine after it travels from the kidneys through two tiny tubes known as ureters. A person urinates through the urethra to expel waste when the bladder is full.

The urinary system is prone to a wide range of infections as well as other issues, such as obstructions and injury. A urologist or another medical professional with expertise in the renal system can treat them.

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Related Questions

Do the data support the hypothesis that the timing of the end of cleavage depends on counting cell divisions? Explain.

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No, because the toxin's inhibition of cell division has no effect on when cleavage ends.

Cell division is the process by which the parent cell splits into two daughter cells, whereas cleavage is the cytoplasmic division that occurs after nuclear division.

The cell cycle includes the processes of cleavage and cell division. They are in charge of a parent cell's ability to produce daughter cells. Additionally, the two stages of cell division are referred to as karyokinesis and cytokinesis, respectively.

The process of cytokinesis in animals and many unicellular eukaryotes involves four steps: start, contraction, membrane insertion, and completion.

Cleavage, which occurs during development, describes the zygote's rapid mitotic divisions that result in the blastocyst, a multicellular entity. It is distinguished by the absence of daughter cell proliferation; as a result, cleavage is engaged in the distribution of the zygote's cytoplasm among the blastocyst's cells.

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minor mutations and/or gene transfers may lead to the development of a new — a term that describes very closely related organisms that are slight genetic variants of one another.

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Minor mutations and gene transfer may lead to the development of a new strain that contains slight genetic variants of another strain.

What are minor mutations?

Minor mutations make reference to slight genetic alteration in the nucleotide sequence such as single nucleotide polymorphisms, which may be associated with the variation in a trait.

Moreover, a strain (for example a bacterial strain) is a group of microorganisms having the same genetic sequence in the genome, which leads to small variation between different strains.

In conclusion, Minor mutations and/or gene transfers may lead to the development of a new strain, which describes closely related organisms that are slight genetic variants of one another.

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dolphins have a diploid number of 44 chromosomes. how many different ways can their chromosome pairs line up at meiosis i?

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Each pair of homologous chromosomes can align in two ways. The number of ways in which the 22 chromosome pairs line up is = 2ⁿ = 2²² = 4,194,304 ways.

What is the random alignment of homologous chromosomes?

The random lining of homologous chromosomes (metaphase 1) is one of the three mechanisms involved in genetic variation, together with Crossing-over and random fertilization.

Gamete formation involves the random and independent segregation of the alleles.

The random arrangement of tetrads in the equatorial plane is different in every cell going through the meiosis process. There is no equal alinement between two cells.

Each homologous chromosome can orientate in two different ways, facing one of the poles to which it will migrate, or the other (independent separation of homologous chromosomes). This random arrangement in the equatorial plane introduces variation into the gametes.

This separation generates different chromosomal combinations in the daughter cells. There are two alternatives per homologous pair.

The number of different random alignments of the homologous chromosomes equals the number of gametes with different combinations, which is 2ⁿ, where n = number of homologous pairs.

In the exposed example

2n = 44n = 22

Each pair of homologous chromosomes can align in two ways.

The number of ways in which the 22 chromosome pairs line up is = 2ⁿ = 2²² = 4,194,304 ways.

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Suppose the birds had not shown a difference in orientation in these experiments. Could you conclude that the behavior was not genetically based? Explain.

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The male will chase away any intruding males of his species due of the set action pattern based on the sign stimulation of a red belly. By driving away such males, the defender reduces the likelihood of another male fertilising eggs put in his nesting region.

How is bird behaviour influenced?

Sun-azimuth orientation has been experimentally established in Starlings Sturnus vulgaris, Meadow Larks Sturnella magna, Barred Warblers Sylvia nisoria, Red-backed Shrikes Lanius collurio, and homing pigeons. Sun-azimuth orientation is the capacity to determine compass directions based on the sun's location regardless of time of day, and hence primarily on the ability to adjust for the sun's daily azimuth displacement. The evidence demonstrating the innateness of the underlying process is insufficient, although it is intriguing.

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When sperm and ovum fuse at conception, they produce a zygote that typically has _____ chromosomes

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When sperm and ovum fuse at conception, they produce a zygote that typically has 46 chromosomes.

The sperm cells and egg cells divide by a process referred to as meiosis. The process of meiosis ensures that crossing over occurs in the chromatids in order for variations to occur. It also ensures that the number of chromosomes in the gamete cells is reduced to half.

This reduction of chromosome number to half at the time of meiosis is important for maintaining the stability of chromosomes in offspring. Hence, as humans have 46 chromosomes in total, the egg cells and the sperm cell will have 23 chromosomes each.

When the sperm and ovum fuse at the time of conception, then the number of chromosomes will be maintained at 46 in the zygote being produced.

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Which length should be recorded for the objet

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Answer: 3.3mm

Explanation:

construct a steam and leaf plot using thousands (of thousands) as the stems and truncating the leaves to the tens (of thousands) digit

Answers

This is a sign you ought to truncate to produce a stem and leaf plot. Truncate a data set by simply drawing one (or more) numbers from the end of the number.

What is Stem and Leaf Plot ?

A table is used to show data in a stem and leaf plot. The initial digit or digits of the data values are displayed in the "stem," which is on the left side of the table. The final digit of the data value is displayed in the "leaf," which is on the right side of the table.

When creating a stem-and-leaf plot for data two digits the stem?

These numerals have two digits, therefore the stem is the tens digit and the leaf is the units digit. This indicates that you should truncate in order to create a stem and leaf plot. Simply take one (or more) numbers from the end of the number to truncate the data set. In the aforementioned example, 119 would turn into 11 and 863 into 86. Then you would have a leaf with a single digit and stems numbered from 1 to 8.

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The ____ nervous system works to monitor processes such as breathing, heart rate, and digestion. the ______ nervous system is a subsystem within the autonomic system that calms the body.

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The autonomic nervous system nervous system works to monitor processes such as breathing, heart rate, and digestion. the peripheral nervous system nervous system is a subsystem within the autonomic system that calms the body.

What is nervous system ?

Nervous system  can be described as the body's command center.

This starts from the brain,  which help to controls your movements, as well as thoughts and automatic responses to the world , hence autonomic nervous system nervous system works to monitor processes such as breathing, heart rate, and digestion. the peripheral nervous system nervous system is a subsystem within the autonomic system that calms the body.

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What causes Down syndrome?

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Explanation:

Babies with Down syndrome have an extra copy of one of these chromosomes(trisomy),so basically it is problems with chromosomes-simply

PLEASE HELP!!!
ITS DUE RIGHT NOW!

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Sodium ions will move out of the cell until equilibrium is attained; option A.

What is osmosis?

Osmosis is the movement of water molecules across a semipermeable membrane from a region of low solute concentration to a region of high solute concentration until equilibrium is attained.


Considering the cell and the solution in which it is placed in;

Sodium ions are more inside the cell than outside the cellglucose concentration is equal both outside and in the cell

Therefore, sodium ions will move out of the cell until equilibrium is attained.

In conclusion, osmosis helps to maintain homeostasis.

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one of the primary benefits of a survey is that they . a. can generate cause-and-effect conclusions b. allow efficient gathering of unobserv

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One of the primary benefits of a survey is that they allow efficient gathering of unobservable. Therefore, the correct option is (B)

A survey is often conducted by letting the subjects fill out a set of questions on their own, normally without the general oversight of the researchers. Because of this, it really shows that acquiring necessary information has become increasingly highly efficient because it can usually be done with a very small amount of work and a huge number of people.

A survey is a list of questions used in human subject research to elicit valuable data from a particular group. Surveys may be conducted over the phone, by mail, online, at busy intersections, and even in shopping malls.

Finding answers to important questions is the goal of surveys. They are typically used to determine people's opinions about a subject and the reasons behind their opinions. Depending on what you intend to do with the information you gather, surveys can have a variety of structures.

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In a short essay (100-150 words), describe at least three ways in which the structure of the lens of the human eye is well adapted to its function in vision.

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The three separate layers of the human eye, which are virtually spherical in shape, each have distinctive features that correspond to the function of the eye.

What is Eye lens ?

The inner layer of the eyelid is made up of a membrane structure called the conjunctiva, which is responsible for producing mucus. This mucus assists in lubricating the eye's structure and also kills microorganisms, preventing infection and facilitating smooth eye motions for clear vision.

The curved form of the eye is due to the sclera, an outer component; this curvature makes it easier to focus on both nearby and faraway objects.

Another important component of the eye is the lens, which aids in concentrating light rays that enter through the pupil and transmits them to the retina layer for processing and picture generation.

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which of the following is not a major difference between dna and rna? answer: which of the following is not a major difference between dna and rna? dna is found in the nucleus and cytoplasm, but rna is only found in the nucleus dna is a double-stranded helix and rna is a single-stranded helix dna uses deoxyribose and rna uses ribose as their respective pentose sugars dna contains thymine, but rna contains uracil instead

Answers

The statement that is not a major difference between DNA and RNA is that DNA is found in the nucleus and cytoplasm, but RNA is only found in the nucleus (option A).

What is nucleic acid?

Nucleic acid is any biological macromolecule consisting of multiple repeat units of phosphate group, sugar and purine and pyrimidine bases.

The two nucleic acids are as follows;

Deoxyribonucleic acid (DNA)Ribosenucleic acid (RNA)

The difference between DNA and RNA are as follows;

DNA is a double-stranded helix while RNA is a single-stranded helix DNA uses deoxyribose while RNA uses ribose as their respective pentose sugars DNA contains thymine, but RNA contains uracil instead

Therefore, the statement that is not a major difference between DNA and RNA is that DNA is found in the nucleus and cytoplasm, but RNA is only found in the nucleus.

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What does the wall at the edges of the cell tell you?

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The wall at the edges of the cell tells a cell wall is a structural layer that surrounds some types of cells and is located just outside the cell membrane.

What is a cell wall?

Many cells, including plants, fungi, algae, and bacteria, have a cell wall as an outer protective membrane. Animal cells lack a cell wall. The cell wall's primary functions are to provide structure, support, and protection to the cell.

It can be tough, flexible, and rigid at times. It provides structural support and protection to the cell, as well as acts as a filtering mechanism.

Therefore, a cell wall is a systemic layer that covers some types of cells and is positioned just outside of the cell membrane.

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EXTENSION On a separate sheet of paper, write a short paragraph describing U.S.
efforts to address environmental issues over the last few decades. In the paragraph,
use at least one vocabulary term from each lesson in the chapter.

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The Unites States has been doing a lot about environmental protection in the last decade.

What are the efforts of the United states?

The United States government via the environmental protection agency has been at the forefront of addressing several environmental issues such as Ozone layer depletion and climate change.

The United States Environmental protection agency has done a lot to update the standards for the amounts of toxic wastes in the environment over the years. There has also been an increase in legislation that aims at improving the environment such as the clean water act.

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Which major endocrine organs described in Figure 45.9 are regulated independently of the hypothalamus and pituitary?

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The  major endocrine organs  are pancreas, parathyroid glands, and pineal gland

An organ in the belly is called the pancreas. The process of converting the food we eat into energy for the body's cells depends on it. Exocrine function, which aids in digestion, and endocrine function, which controls blood sugar, are the pancreas' two primary tasks.

Small endocrine glands called parathyroid glands are found in the necks of tetrapods like humans.

A tiny gland in your brain called the pineal gland, also known as the pineal body or epiphysis cerebri, is situated below the back portion of the corpus callosum parathyroid glands. It is a component of your endocrine system and releases the melatonin hormone.

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Why is the adaptive immune response to an initial infection slower than the innate response?

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One reason for the delay in the adaptive immune response is that it takes time to identify and activate naive B and T cells with the appropriate antigen specificities. This step is skipped during reinfection, resulting in faster production of immune defenses.

Does adaptive immunity react slower than innate immunity?

This means that it is slower to respond than the innate immune system, but it is more accurate when it does. It also has the advantage of being able to "remember" germs, so that the adaptive immune system can respond faster the next time a known germ is encountered.

The adaptive immune system must produce a large number of specialized proteins, whereas the innate immune system is fully functional.

One reason for the delay in the adaptive immune response is that it takes time to identify a

nd activate naive B and T cells with the appropriate antigen specificities. This step is skipped during reinfection, resulting in faster production of immune defenses.

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The nervous system and endocrine system control the body's functions by?

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The nervous system and endocrine system control the body's functions by influencing many aspects of human behavior.

The endocrine system and the nervous system collaborate to influence many aspects of human behavior, including reproduction,  growth, and metabolism. And indeed the endocrine system is crucial in the regulation of emotions. Hormones help explain some of the observed behavioral differences between men and women because the glands in women and men differ.

A gland in the endocrine system is a collection of cells that secrete hormones. A hormone is a substance that circulates throughout the body and aids in the regulation of emotions and behaviors.

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Describe two types of interspecific interactions that you can observe in this photo. What morphological adaptation can be seen in the species that is at the highest trophic level in this scene?

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The types of interspecific interactions present in this photo are parasitism and predatory. In addition, the spider is the species with the highest tropic level and presents camouflage as a morphological adaptation.

What are interspecific interactions?They are interactions between living beings.They are interactions between living beings of different species.They are harmonic or disharmonic interactions.

The interaction shown in the photo is of the disharmonious type and occurs between a spider, a flower, and a bee. The interaction between the spider and the bee is called predatory because the spider is feeding on the bee. On the other hand, the interaction between the spider and the flower is called parasitism, since the spider is using the flower's resources and harming it by not allowing pollination.

In addition, we can see that the spider is camouflaged when it is on top of the flower, not allowing its free visualization while protecting itself from predators and attracting pollinating insects.

Finally, we can say that the spider is the highest tropic of the food chain in this image since it is the only predator we can see.

The image to which your question refers is attached.

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Can you pick out the mossy leaf-tailed gecko lying against the tree trunk in this photo? How is the appearance of the gecko a benefit in terms of survival? Given what you learned about evolution, natural selection, and genetic information in this chapter, describe how the gecko's coloration might have evolved.

Answers

There is a good chance that the Gecko's coloring makes it simpler for it to seek insects.

It is possible that the Gecko's coloring makes it more difficult for it to be spotted by potential predators.

This is further explained below.

What is evolution?

Generally,  Evolution is what scientists mean when they talk about changes that take place in the inherited characteristics of biological populations over the course of several generations.

These characteristics are the results of genes being passed down from a parent to a kid during the process of reproduction. Genes are passed down from a parent to a child.

In conclusion,  There is a high likelihood that the color of the gecko makes it easier for it to look for insects.

It is likely that the color of the Gecko makes it more difficult for it to be seen by prospective adversaries that would want to consume it.

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Cilia are extensions of the _____ that function to move fluids across the surface of the cell.

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Cilia are extensions of the cell surface that function to move fluids across the surface of the cell.

The cilium is a hair like protrusion that extends from the cellular floor. It consists of the centriole that is placed in the cytoplasm, the axoneme, which paperwork as an extension of centriolar microtubules, and the membrane that encases the axoneme.

Cilia and flagella are projections from the mobile. they will be crafted from microtubules , as verified in this cartoon and are covered by means of way of an extension of the plasma membrane. they're motile and designed either to move the cell itself or to transport substances over or throughout the cell.

The bronchus within the lungs are protected with hair-like projections referred to as cilia that float microbes and particles up and out of the airlines. Scattered within the course of the cilia are goblet cells that secrete mucus which allows guard the liner of the bronchus and trap microorganisms.

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you are looking under a microscope at a cell from an organism that has a diploid number of 12. the cell appears to contain 24 total chromosomes that appear to be moving away from the center of the cell. in which phase of the cell cycle is this cell?

Answers

The phase of the cell cycle in which a cell with a diploid number of 12 that contains 24 chromosomes that move away from the center of the cell is Anaphase.

What is Anaphase?

Anaphase is the step of cell division (mitosis) in which chromosomes travel to the poles in order to prepare for telophase and cytoplasm division.

Metaphase is a cell division phase before anaphase in which duplicated chromosomes are along the equator of the cell.

Moreover, a diploid cell that contains 24 chromosomes in cell division will have half the amount (ie., 12 chromosomes) after this process.

In conclusion, the phase of the cell cycle in which a cell with a diploid number of 12 that contains 24 chromosomes that move away from the center of the cell is Anaphase.

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which body cavity is surrounded completely by bone and provides protection to the structure (s) contained within?

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The dorsal body cavity is surrounded by bone and protects the structure (s) contained within.

A body cavity is a space in the body that contains visceral organs. There are two main cavities in a body: the ventral cavity and the dorsal cavity. The major difference between the two cavities is that of space. The ventral cavity has a larger space than the dorsal cavity.

The ventral cavity is subdivided into two parts:

Thoracic cavity and abdominopelvic cavity. The organs in the thoracic cavity are generally bound by ribs, which are covered by pleura. The abdominopelvic cavity contains two portions that include abdominal and pelvic portions or their organs.

The dorsal cavity is smaller than the ventral cavity and lies on the dorsal side of the body. It generally contains two sub-units: the cranial cavity and the spinal cavity. The cranial cavity binds the brain and the spinal cavity binds the spinal cord. Meninges are the protective membranes that cover the dorsal cavity.

The dorsal cavity protects the organs inside by protecting a fluid called cerebrospinal fluid. This fluid gets pressurized and pushes back consequently protecting the brain and the spinal cord.

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Explain how natural selection might have played a role in the evolution of species that are tolerant of serpentine soils. (Review Concept 1.2.)

Answers

The serpentine tolerant properties are transferred to its descendants and gradually, serpentine adapted plant species have evolved

How can evolution through adaptation arise from  selection?

Only heritable traits in the population are affected by natural selection, which favors advantageous alleles by increasing their frequency in the population while favoring deleterious alleles by decreasing their frequency. This process is known as adaptive evolution.

Natural selection leads to evolutionary change when individuals with certain characteristics have a greater survival or reproductive rate than other individuals.

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For biologists studying a large flatworm population in the lab, which hardy-weinberg condition is most difficult to meet?.

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According to the Hardy-Weinberg principle, the most difficult condition for a biologist studying a large population of flatworm in the lab is no mutation.

An essential population genetics principle known as the Hardy-Weinberg equilibrium states that, in the absence of unfavourable circumstances, the genetic variation in a population should remain constant from generation to generation.

A mathematical model called the Hardy-Weinberg principle postulates that, given specific circumstances, the genotype and allele frequencies in a population of sexually reproducing individuals would remain constant throughout generations. This principle requires that evolution be virtually halted.

Hardy-Weinberg equation:

[tex]p^2+2pq+q^2=1\\[/tex]

where,

[tex]p^2[/tex] = dominant homozygous frequency (AA)

[tex]2pq[/tex] = heterozygous frequency (Aa)

[tex]q^2[/tex] = recessive homozygous frequency (aa)

The following requirements must be met for the Hardy-Weinberg equilibrium to persist:

• no mutation

• no gene flow

• large population size

• random mating

• no natural selection.

Deviations from any of the Hardy-Weinberg equilibrium's five fundamental underlying requirements can cause it to disrupt.

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Which type of enzyme, produced in the walls of the small intestine, removes single amino acids from the end of small polypeptides?

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Exopeptidase enzyme, produced in the walls of the small intestine, removes single amino acids from the end of small polypeptides.

Of those five components, pepsin is the predominant enzyme worried with protein digestion. It breaks down proteins into smaller peptides and amino acids that may be without trouble absorbed inside the small intestine. Proteins are digested via the pancreatic enzymes trypsin chymotrypsin, and carboxypeptidase.

The enzymes that act within the small intestine are amylase protease and lipase. Amylase acts on starch and breaks it down into small carbohydrate molecules. Protease acts on proteins and breaks them down into amino acids. Lipase breaks down dietary fats into smaller molecules called fatty acids and glycerol. Amylase digests carbohydrates, lipase digests fat, and trypsin digests proteins. The pancreas also secretes big portions of sodium bicarbonate.

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What parts of the cell did hydrolytic enzymes pass through on their way to lysosomes?

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The cell passes through golgi apparatus and rough endoplasmic reticulum on their way to lysosomes.

Esters, peptides, and glycosides are just a few of the families of biomolecules that are cleaved apart by hydrolases, also known as hydrolases. Molecules of proteins, lipids, nucleic acids, carbohydrates and fats are broken down into their most basic components by hydrolytic enzymes. Organelles that are membrane bound and house digestive enzymes are called lysosomes. Lysosomes are involved in numerous cellular processes. Disassemble excess or worn cell components. They can be used to eliminate invasive bacteria and viruses. Lysosomes can help cells self-destruct when the damage is irreparable, in a process known as programmed cell death or apoptosis.Lysosomes are a special kind of acidic organelles. Therefore, it must be shielded from the rest of the cell interior.

Therefore, the hydrolytic enzymes pass through Golgi apparatus and rough endoplasmic reticulum.

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In cells performing transepithelial transport (such as cells that constitute a blood-brain barrier), you would find __________ between neighboring cells.

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In cells performing trans-epithelial transport (such as cells that constitute a blood-brain barrier), you would find tight junctions between neighboring cells.

Blood-brain barrier is a semi-permeable membrane of endothelial cells. These barriers strictly regulate the traffic that cross the membrane and reach the brain. The only substances that can cross this barrier are: water, certain gases, and lipid-soluble substances.

Tight junctions are the barriers that are formed between the epithelial and the endothelial cells. Their function is to prevent the leakage of substances through the membrane. They are also known to maintain the polarity of the cells. Proteins like claudin and occludin are involved in these junctions.

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When would a hydrogen bond form?

Answers

Answer:

In order for a hydrogen bond to occur there must be both a hydrogen donor and an acceptor present.

Explanation:

Answer:

In order for a hydrogen bond to occur there must be both a hydrogen donor and an acceptor present.

Explanation:

the thymus: a.continues to grow throughout life, peaking in size in late middle age. b.is the largest of the lymphatic structures. c.is located high in the upper quadrant of the abdomen and lateral to the stomach. d.helps t lymphocytes mature.

Answers

The thymus is an endocrine gland that makes and helps certain white blood cells called T-lymphocytes mature. Hence, the answer is option D.

In your upper chest, just behind your sternum (breastbone) and in front of your heart, a small lymphatic gland can be found there, called the thymus. It helps to produce and train special white blood cells called T-Lymphocytes or T-cells.

The lymphatic system consists of various vessels, tissues and organs that defend against diseases and infections. They are part of the immune system. The cells that defend against diseases are called T-Lymphocytes. They are manufactured in the bone marrow, then transported to the thymus where they mature and become specialized.

The thymus gland starts to make T-Lymphocytes before birth. It is most active during childhood and stops working after puberty. At this stage, the body has all the T-Lymphocytes it needs.

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