Why is it necessary for cells to maintain homeostasis? Choose the correct answer.
Answers ↓
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Cells can only survive for a short time; homeostasis allows them to complete their specialized role efficiently.

Cells must maintain an internal balance to perform their specialized functions; homeostasis allows this to happen.

Cells must change their external conditions to meet the internal conditions within them; homeostasis allows this to happen.

Answers

Answer 1

The statement (B) is correct. Cells must maintain an internal balance to perform their specialized functions; homeostasis allows this to happen.

What is homeostasis?

Homeostasis is the state of steady internal, physical, and chemical conditions maintained by living systems. This is the condition of optimal functioning for the organism and includes many variables, such as body temperature and fluid balance, being kept within certain pre-set limits.

Moreover, homeostasis has become the central unifying concept of physiology and is defined as a self-regulating process by which an organism can maintain internal stability while adjusting to changing external conditions.

Therefore, the homeostatic pathway controls energy balance by increasing the motivation to eat following depletion of energy stores.

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Answer 2
Final answer:

Cells must maintain homeostasis to perform their specialized functions efficiently. Homeostasis ensures a stable internal environment and allows cells to respond to external changes.

Explanation:

Cells must maintain homeostasis in order to perform their specialized functions efficiently. Homeostasis refers to the maintenance of a stable internal environment in the cell, including factors such as temperature, pH, and concentration of substances. When these internal conditions are kept within a narrow range, cells can carry out their functions optimally. For example, enzymes, which are essential for cellular reactions, work best in specific conditions. If the temperature or pH deviates too much from the optimal range, the enzymes may denature and become non-functional.

By maintaining homeostasis, cells ensure that these conditions remain favorable for enzyme activity and other cellular processes. Additionally, maintaining homeostasis allows cells to respond and adapt to changes in their external environment. They can regulate internal conditions to meet the demands of different external conditions. This ability to maintain a stable internal environment while responding flexibly to external changes is crucial for cells to survive and carry out their specialized roles.

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Related Questions

Would a karyotype show an autosomal dominant disorder? Why or why not?

Answers

The answer is NO. Karyotypes visualize the structure of condensed chromosomes in the metaphase stage of mitosis. Karyotype is good at diagnosing disorders related to chromosome changes such as aneuploidy. However, disorders such as autosomal dominant cannot be detected by Karyotype since they are caused by nucleotide mutations that do not affect the structure/conformation of the chromosomes.






The answer is

NO

Explanation:

Karyotype is a good option for the diagnoses of disorders related to chromosome changes such as aneuploidy. But disorders such as autosomal dominant cannot be diagnosed by Karyotype because these disorders are caused by nucleotide mutations which do not affect the structure and shape of the chromosomes.


A rabbit taken from a meadow near sea level and moved to a meadow high on a mountainside would have some trouble breathing. why? a rabbit taken from a meadow near sea level and moved to a meadow high on a mountainside would have some trouble breathing. why? the partial pressure of oxygen in the air at high elevations is lower than at sea level. the percentage of oxygen in the air at high elevations is lower than at sea level. the percentage of oxygen in the air at high elevations is higher than at sea level. the partial pressure of oxygen in the air at high elevations is higher than at sea level.

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I think the rabbit would have trouble breathing because the partial pressure of oxygen in the air at high elevation is lower than at sea level. The air pressure at sea level is high and hence there is more oxygen than the mountain side where there is low air pressure. The difference in amount of oxygen is what makes the rabbit not breath well.

adaptive radiation is also known as

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DIVERGENT EVOLUTION

This is where a species will give rise to many species that will appear different externally but similar internally. In evolutionary biology, this usually happen when there is a change in environment, new sources of food, new predators or challenges for the species. This result into speciation and changes in the phenotype of organism depending on their adaptive trait. This can be morphological or physiological trait of adaptation. There are 4 features for adaptive radiation, common ancestry, pbenotype to environment correlation, trait utility and speciation.

How does endocytosis differ from the process shown in the transparency?

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Final answer:

Endocytosis is a form of active transport where the cell membrane envelops extracellular materials. Its variations include phagocytosis, pinocytosis, and receptor-mediated endocytosis. It's hard to compare with the process in the transparency without more specific details.

Explanation:

Endocytosis is a form of active transport in a cell which involves the cell membrane enveloping extracellular materials. There are different variations of endocytosis- phagocytosis, pinocytosis and receptor-mediated endocytosis. In phagocytosis, the cell envelops a large particle in a non-selective manner. In pinocytosis, it takes in small particles in the fluid. Receptor-mediated endocytosis is more selective, it occurs when external receptors bind a specific ligand, prompting the cell to endocytose the ligand.

Without knowing the specific process shown in the transparency, it's difficult to directly compare it to endocytosis. However, endocytosis is characterized by the ingesting of materials enveloped in a portion of its cell membrane, which then gets pinched off to form an independent, intracellular vesicle. Depending on the processes shown on the transparency, the differences might be in the nature of substances transported, the mechanism of their transport, or their direction of movement.

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What are the names of the 4 "extensor" muscles of the lower forelimb?

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Muscle extensors are muscles that usually increase the angle between members of a limb. Also, it is joint movement that increases the angle between two bones. 

The four extensor muscles of the lower forelimb were:

Extensor carpi radialis

Extensor digitorum communis

Extensor digitorum lateralis

Extensor carpi ulnaris.

However, these muscle assist in the flexing of the elbow.

What type of energy is stored in the chemical bonds of a molecule?

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Chemical bonds are how chemical energy is stored. When the bond is broken the energy is released. Potential energy is considered to be stored there because the bond has the potential to release a certain amount of energy for work.

Which organism most likely has 10% of the sun's energy available for its use?
A)Insects
B)Hawk
C)Snake
D)Shrubs

Answers

A) its definitely insects because its not a mouse

A client whose spouse died 2 years ago is brought to the psychiatric unit by a family member, who states that the widowed spouse has no interests, is neglecting personal hygiene, and has become totally isolated. the nurse completes a history and physical examination that verifies the family member's concerns. what is most important for the nurse to explore with the client at this time?

Answers

Whether suicide has been considered recently. The client is depressed; it is important to know whether the client is considering suicide so the nurse can provide a safe environment and related therapeutic care. Concern for the client's safety takes priority at this time over the client's feelings, the underlying cause of the behavior, or the dynamics of the marital relationship.

What is the most common method of carbon dioxide transport? what is the most common method of carbon dioxide transport? dissolved in the plasma chemically bound to hemoglobin as carbaminohemoglobin chemically bound to hemoglobin as oxyhemoglobin as bicarbonate ions in the plasma?

Answers

The appropriate answer is as a bicarbonate ions in the plasma. Carbon dioxide is transported in the blood from the tissues to the lungs in three different ways. some of it is transported dissolved in the plasma, some is transported as carbaminohemoglobin and other as bound to proteins. However most carbon dioxide is transported as bicarbonate; as blood flows through the tissues, carbon dioxide diffuses into red blood cells, where it is converted into bicarbonate.
Final answer:

The most common method of carbon dioxide transport is as bicarbonate ions in the plasma.

Explanation:

Carbon dioxide can be transported through the blood via three methods. It is dissolved directly in the blood, bound to plasma proteins or hemoglobin, or converted into bicarbonate. The majority of carbon dioxide is transported as bicarbonate ions in the plasma.

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The carbon skeletons of which two amino acids directly enter metabolism at the level of pyruvate?

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Alanine and Serine
The degradation of amino acid is to transform the carbon skeleton into metabolic intermediates that can be easily be oxidized by the citric acid cycle or converted into glucose. Both Alanine and serine provide substrate for ketone bodies gluconeogenesis. However, metabolism of alanine yields pyruvate directly by transamination

Intrapleural pressure __________ during expiration.

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Intrapleural pressure is Negative during expiration. 

Intrapleural pressure is the air pressure in the pleural cavity and also exists between visceral and parietal pleurae. This pressure majorly depends on ventilation phase, the volume of the intrapleural cavity and atmospheric pressure. During expiration, the Intrapleural pressure in the pleural cavity becomes less negative which is commonly known as negative pressure.


Compared to white smokers, african-american smokers __________.
a. smoke fewer cigarettes, but carry a higher risk of tobacco-related disorders
b. smoke fewer cigarettes and carry a lower risk of tobacco-related disorders
c. smoke more cigarettes and carry a higher risk of tobacco-related disorders
d. smoke more cigarettes, but carry a lower risk of tobacco-related disorders

Answers

The correct answer is that African-Americans smoke fewer cigarettes but still carry a higher risk of tobacco-related disorders. African-Americans are more genetically predisposed to developing squamous cell carcinoma of the lungs as well as adenocarinoma of the lungs even if they do not smoke or if they smoke less. There is also a higher incidence of COPD and emphysema in African-Americans.

African-American smokers generally smoke fewer cigarettes but have a higher risk of tobacco-related disorders compared to white smokers.

Compared to white smokers, African-American smokers smoke fewer cigarettes, but carry a higher risk of tobacco-related disorders. This is attributed to a combination of factors, including the possibility that African American smokers may absorb more nicotine than white smokers, and may also have differences in how their blood vessels react, rendering them more susceptible to hypertension and heart disease. Additionally, there are significant health disparities between racial groups, with African Americans having higher rates of several chronic conditions.

A dna replication bubble forms at a specific sequence of bases called the ___________. see section 15.3 (page 321) .

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The answer is the origin of replication. This is where the replication bubble is formed. Two opposite replication forks (Y-shaped regions) of DNA are formed when the double helix is unzipped by DNA helicases. Transcription factors, polymerase III and primer then bind to the region to begin transcription.






The cell in the figure is a(n)

A. prokaryote.
B. eukaryote.
C. animal cell.
D. both (b) and (c).

Answers

The cell in the figure is D. both (b) and (c)

Answer:

Prokaryote.

Explanation:

Prokayotes are the organism that lacks the well developed nucleus. The organelles of the proaryotes lacks the membrane bound organelle and they have 70'S ribosomes.

The given diagram is of prokaryotes. The prokaryotes contains the cell wall, plasma membrane, pilus and the cilia. The bacteria are included in the prokaryotes and thus the given picture blongs to prokaryotes.

Thus, the correct answer is option (A).

What are punnett squares used for?
a. determining the dna sequence of a given gene
b. testing for the presence of the recessive allele
c. predicting the result of genetic crosses between organisms of known genotypes
d. identifying the gene locus where allelic variations are possible
e. more than one of the above?

Answers

Final answer:

Punnett squares are used for predicting the results of genetic crosses between organisms of known genotypes.

Explanation:

Punnett squares are a diagrammatic approach used primarily in genetics to predict the possible genetic outcomes or genotypes in the offspring of a cross between two organisms with known genotypes. In simpler terms, they are used for predicting the results of genetic crosses between organisms of known genotypes. This makes the answer to the question these options (c. predicting the result of genetic crosses between organisms of known genotypes). Although Punnett squares help to understand inherited traits, they do not help in determining the exact DNA sequence of a given gene, identifying the gene locus where allelic variations are possible, or directly testing for the presence of the recessive allele. Thus, only option c is the correct usage of Punnett squares.

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Final answer:

A Punnett Square is primarily used for predicting the result of genetic crosses between organisms of known genotypes. It is not used for determining the DNA sequence of a gene, testing for the recessive allele, or identifying the gene locus where allelic variations are possible.

Explanation:

A Punnett Square is a simple graphical way of discovering all of the potential combinations of genotypes that can occur in children, given the mother's and father's genotypes. To simplify, it's a tool used in biology to predict an outcome of a particular cross or breeding experiment. Specifically relating to the options in your question:

determining the dna sequence of a given gene: This is not what a Punnett Square is used for.testing for the presence of the recessive allele: While a Punnett Square can indicate the probability of a particular allele showing up in offspring, its main purpose isn't specifically for testing the presence of a recessive allele.predicting the result of genetic crosses between organisms of known genotypes: This is essentially what a Punnett Square is used for. It predicts the potential combinations of genetic material in offspring from two parents with known genotypes.identifying the gene locus where allelic variations are possible: While the Punnett Square deals with genetic variations, it isn't used for identifying a gene locus.more than one of the above: Based on the above points, the option 'more than one of the above' would not be applicable.

Looking at all these points the best answer is 'c. predicting the result of genetic crosses between organisms of known genotypes'.

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the law of segregation tells usb’s that the rearrangement of chromosomes into gametes is

Answers

The law of segregation tells usb's that the rearrangement of chromsomes into gametes is METAPHASE

A _____ is a measure of how much a typical serving size of a particular food raises blood glucose.​

Answers

The correct answer is glycemic load.
In particular, glycemic load estimates the amount of carbohydrates in a serving of food and how each gram of these carbohydrates can affect the blood glucose. It is a measure commonly used in weight-loss programmes and in dietary programs used to treat insulin resistance. It has been shown that common spikes of blood glucose and insulin levels, increase the risk for diabetes.

Answer: Glycemic load

This takes into account the amount of carbohydrates present in the food and how much it will raise a person's blood glucose level after eating a typical serving size meal. Glycemic load combines both the quantity and quality of carbohydrates based on the glycemic index  where it is calculated by multiplying the grams of available carbohydrate in the food times the food's glycemic index and then dividing by 100. Moreover, it is also used to compare blood glucose values of different types and amounts of foods based on the carbohydrate consumed by an individual.

 

 

Which form and method of using cocaine produces the most intense immediate high? page?

Answers

The answer is the smoking of crack cocaine. This drug is more simply known as 'crack', and is widely considered the most addictive form of cocaine. Crack is widely used as a recreational drug, and was first widely used in US cities during the mid 1980s. The term 'crack epidemic' describes the rapid increase in its use and the resulting socio-economic problems that resulted.

The process of turning molecules that are ingested into forms that are compatible with the organism is _________. (Points : 2)
digestion
absorption
assimilation
circulation

Answers

The correct answer is assimilation. Digestion is breaking down the molecules of food from polymers to monomers, absorption is their cellular intake and circulation is self explanatory.

Assimilation is the process where ingested molecules are turned into forms compatible with the organism, following digestion, absorption, and circulation.

The process of turning molecules that are ingested into forms that are compatible with the organism is called assimilation. After the processes of digestion, absorption, and circulation, assimilation is the final step where food material is appropriated by the cell protoplasm. Digestion involves the mechanical and chemical breakdown of food into smaller molecules through hydrolysis reactions in the mouth, stomach, and small intestine. Once digestion is complete, the nutrients are absorbed, transported by circulation, and finally, they undergo assimilation where they are utilized by the cells for various functions such as energy production, growth, and repair.

If the pancreas fails to make___ , it will inhibit the action of enzymes and affect chemical digestion. Also,___ might damage the small intestine walls

Answers

Final answer:

The pancreas produces pancreatic juice and enzymes which aid in digestion in the small intestine. When it fails to do so, it affects chemical digestion and can potentially damage the small intestine walls. The pancreas also works with the liver and the gallbladder for efficient digestion.

Explanation:

When the pancreas fails to produce pancreatic juice, which is enzyme- and bicarbonate-rich, it inhibits the function of enzymes and disrupts chemical digestion in the small intestine. The pancreatic juice helps in buffering the acidic gastric juice in the chyme, which in turn inactivates pepsin from the stomach thereby enabling optimal functioning of digestive enzymes. Furthermore, the pancreas produces protein-digesting enzymes in their inactive forms to prevent digesting the pancreas itself, a situation that arises under a condition called pancreatitis.

Apart from being a critical player in chemical digestion, the pancreas teams with other organs - the liver and the gallbladder, to aid digestion. The liver produces bile, exports it to the duodenum and the gallbladder stores, concentrates, and releases bile. These digestive enzymes and bile together contribute to effective chemical digestion.

If these enzymes were produced in active form, it could lead to damage to the small intestine walls. Hence the pancreas plays an important role in ensuring the optimal function and safety of the digestive system.

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What structure is present on the second cervical vertebra (c2 or axis) that allows you to rotate your neck to say "no?" what structure is present on the second cervical vertebra (c2 or axis) that allows you to rotate your neck to say "no?" posterior tubercle transverse ligament body dens (odontoid process)?

Answers

Dens (odontoid process) Hope this helps.

Genetic __________ are organisms that carry more than one genetically distinct population of cells derived from more than one zygote.

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Genetic chimeras, are organisms that carry more than one genetically distinct population of cells derived from more than one zygote.A genetic chimerism is a single organism composed of cells with distinct genotypes. In animals, it means an individual derived from different zygotes, which may include possessing both female and male sex organs, blood cells of two blood types, or subtle variations in form.

The type of bone that has irregularly arranged collagen bundles, abundant osteocytes, and little inorganic matrix, is classified a

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That would be the primary bone :)

Propose ideas for the development of drugs that could stop viral replication cycles

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One proposal is the use of drugs that target the reverse transcriptase that generates DNA from the RNA (the genetic material of the virus) -before it becomes integrated into host DNA. Another is by inhibiting this integration of the viral DNA into the host DNA by using integrase inhibitors that
Despite major differences in structure to the host, viruses utilize their host cells' enzymes and ribosomes to metabolize and replicate. Therefore, drugs that are effective against viral replication are likely to be toxic to the host as well. Hence, the strategy is to look for process that is unique that happens in virus infected cells but not in uninfected cells. Additionally, finding an enzyme that viruses decoded and that catalyze the process and find ideas for inhibiting replication of the virus.

Nutrients enter a cell ______ the concentration gradient by the process of _______. @hectoroftroy

A. with; diffusion
B. against; osmosis
C. against; diffusion
D. with; endocytosis

Answers

Nutrients enter a cell with the concentration gradient by the process of diffusion. Diffusion is the movement of the particles or nutrients from the higher concentration to the lower concentration area of the cell. This process is commonly aided by the carrier proteins which help in transporting nutrients. 

The answer is A) with; diffusion

some leaves modify into spines, how does this modification help plants survive?

Answers

Spines primarily have a protective function in plants. The spines can be sharp, and form a physical barrier against herbivores which may want to feed on the plant. Spines however also have other benefits. The spines on a jumping cactus allow segments of the cactus to stick to passing large animals or humans, thereby allowing the cactus to spread to other areas through asexual propagation. Spines are modified leaves, and spines have a much lower surface area than leaves, and therefore can reduce transpirative loss of water by the plant during harsh droughts. Some trees in alpine regions, such as pine trees, have developed spine-like leaves to prevent the accumulation of snow in the branches.  

During DNA REPLICATION, which sequence of nucleotides will bond to the sequence ACGTAT?

Answers

The sequence will be:

TGCATA

Hope this helps :)

In the late 1940's, scientists released a group of chemicals, pyrethroids, to help kill insects in auricular crops. By the year 2000, over 100 insect species were resistant to pyrethroids and scientists had to develop a new plan to kill them. Explain what happened genetically in the insect population over time as the insects were exposed to pyrethroids. A) The toxicity of pyrethroids weakened over time. B) The allele for pyrethroid resistance increased throughout the population. Eliminate C) Pyrethroid resistance became the dominant allele in the insect populations. D) Most insects had the allele for pyrethroid resistance, but it remained masked.

Answers

B. the allele for pyrethroid resistance increased throughout the population because variation exists. 

Answer: The correct answer is-

B) The allele for pyrethroid resistance increased throughout the population.

As per the information in the question, pyrethroids ( a group of chemicals for killing insects in auricular crops) was given by scientist and more than 100 insect species developed resistance against it by the year 2000.

This indicates that in order to survive, certain species of insects developed resistance ( by changing their genome) and the gene variant ( allele) that was responsible for making them resistant against pyrethroids was increased throughout the population.

Thus, these insect species that developed resistance was selected by nature as it favored their survival.

Due to this, scientist had to develop a new plan to kill them.

Thus, option B) is the right answer.

Question 12 human beings generally have an aversion to bitter and sour foods. some researchers suggest that this is because foods that are inedible or even poisonous are often bitter or sour. the tendency of human beings to find these potentially harmful foods repulsive is an example of ________.

Answers

The answer is biological preparedness. This is the phenomenon of living things, in this case humans, to associate certain stimuli with a particular response. This phenomenon is also attributed to some phobias in life. It is a case of classical conditioning that improves the chances of survival for humans.


PLEASE HELP! ILL GIVE YOU A MEDAL AND FAN YOU!

what is a cladogram? please explain why a scientist would use DNA or protein sequences taken from three different organisms to construct and cladogram,

Answers

A cladogram is a type of graph that shows how closely related different types of organisms are in an evolutionary context. It resembles a tree, with various organisms being placed at the end of each branch. If two organisms have a close common branch, they are more closely related than those who have more distant branches. Since DNA, or corresponding protein sequences are more similar in closely related species, and more different in more distant species, a biologist can use those sequences to numerically determine how closely related three species are.
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