When Trp amino acid is limiting, the mRNA basepairs to itself, blocking the RNA polymerase from transcribing the operon. So option c is correct.
Attenuation works by causing the mRNA to form a stem-loop structure that is recognized by the RNA polymerase. When the mRNA contains this loop, the RNA polymerase is blocked from transcribing the operon. This blocking mechanism turns off the production of proteins related to tryptophan, such as enzymes for its synthesis and transport, when tryptophan is in short supply.
The loop structure also prevents the mRNA from attaching to the promoter sequence, which normally activates the RNA polymerase. In other words, when tryptophan is limiting, the mRNA does not attach to the promotor sequence and the operon is not transcribed. The result is that the transcription of the tryptophan operon is inhibited when the cell senses that tryptophan is in short supply.
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If an allogenic blood component is shipped from the donor center with infectious disease testing incomplete, the units must be labeled with:
When an allogenic blood component is shipped from a donor center with incomplete infectious disease testing, it must be labeled appropriately to ensure the safety of the patient.
The label must include a message stating “For Emergency Use Only By (Specific Patient)”, as well as any tests that have been completed, and those tests that are negative.
There is no specific color requirement for the label, so it is important to ensure that the message is clearly visible. It is also important to note that the unit must not be released for transfusion until appropriate infectious disease testing is completed and verified. This is to ensure that the patient is not exposed to any additional risk.
Proper labeling is essential in helping to identify any potential risks associated with the unit, so that the patient receives the safest blood possible.
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5. Describe the metabolic pathways in the monarch butterfly that take advantage of milkweed nectar to convert it into an energy currency.
A) Include details about the three phases of cellular respiration as they relate to sugar metabolism.
B) Where (or how) would sucrose enter the pathways?
Milkweed nectar is rich in a sugar, which is called sucrose. This sugar is a disaccharide, made of glucose and fructose. Sugar is broken down into glucose and fructose in the body, using an enzyme called invertase.
The three phases of cellular respiration are as:
Glycolysis is the process by which glucose is converted into energy. In glycolysis, two ATP molecules are made per glucose molecule. Two NADH molecules are also made. Aerobic organisms, such as monarch butterflies, can further process sugars. In the mitochondria, one CO₂ molecule is removed from the sugar, and one NADH is produced.The Kreb cycle is a series of eight enzymatic reactions that produce energy in the form of ATP. In the Kreb cycle, acetyl-CoA is completely oxidized to produce carbon dioxide. This process is aided by the production of NADH, FADH₂, and a molecule of GTP. Oxaloacetate is regenerated to continue the cycle.Oxidative phosphorylation is the process that generates a proton gradient across the inner mitochondrial membrane. This gradient is used by the V ETC complex to generate energy. The V ETC complex is located in the inner mitochondrial membrane, and as protons flow back and forth through the complex, it catalyzes the phosphorylation of ADP to produce ATP.Learn more about cellular respiration https://brainly.com/question/14158795
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State two variables that need to be controlled in this investigation.
Answer:
the Variable that need to be controlled in this investigation is :
1. Temperature: Temperature affects the rate of the reaction and must be kept constant throughout the experiment to ensure accuracy.
2. Concentration: The concentration of the reactants must be kept constant in order to ensure that the reaction rates are being accurately measured
Please Help Me Out❗️❗️
Answer:
B
Explanation:
Enzymes work to speed up chemical reactions by changing what goes into the reactions into different molecules. To do so, these enzymes bind with the substrates, making the physical form very important. The lock and key method explains that enzymes and their corresponding substrates are shaped very specifically to be able to fit into one another to undergo this change. Hope this helps
This website is so bad like i asked help for something yesterday legit, and i got warned just take my points guys. es
Answer:
The number of moles of acid that were neutralized can be found by multiplying the volume of the base (in liters) by its concentration (in moles/liter) and then multiplying that value by the stoichiometric coefficient of the acid in the balanced chemical equation for the neutralization reaction.
Explanation:
To begin, we need to convert the volume of the base from milliliters to liters.
50.40 mL = 0.0504 L
Next, we can multiply the volume of the base (in liters) by its concentration (in moles/liter) to find the number of moles of base used in the titration.
0.0504 L * 0.542 M = 0.0272 moles
Since this is a neutralization reaction between a monoprotic acid and a strong base, the acid:base ratio is 1:1.
So the acid that has been neutralized is also 0.0272 moles.
Answer: Why
Explanation: That isn't good. I hope you have a good rest of your day!
Which of the following is not a factor in the regulation of cell division in normal cells?
a. Growth factors enter the cell nucleus
b. Signals are transduced from cell surface to cell nucleus
c. Transcription factors are recruited
d. Growth-inhibiting factors promote the synthesis of proteins that inhibit cell division
Growth factors entering the cell nucleus are not a factor in the cell division regulation in normal cells. Therefore, option a is correct.
The word "growth factor" refers to a group of gene products that are crucial in controlling cell division and tissue proliferation. There is a unique cell receptor for each growth factor.
Growth factors can act on particular cell surface receptors, which then relay their signals to various intracellular components and ultimately lead to altered gene expression. When a growth factor binds to a receptor, cell division can begin or be blocked in particular circumstances.
They attach to the receptor and function as signaling molecules. To have the desired effect, the activated receptor in turn activates an intracellular protein. They don't enter the cell nucleus instead act on the cell surface receptors.
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What are some examples of social issues
Answer:
In the USA especially the major social issues are
Wage inequality.
Healthcare.
Housing
Voting rights
Reproductive rights
Book banning in schools
LGBTQ+ rights.
Explanation: there are a lot more those are just what I believe are the most popular social issues currently
Which neurologic disorder is characterized by a protein detaching from neurons causing the cortical nerve cell processes that become twisted and dilated
The correct option is C ; Alzheimer disease , Alzheimer's disease is a brain illness that gradually deteriorates memory and cognitive skills, as well as the ability to do fundamental tasks.
The majority of people get Alzheimer's disease symptoms later in life. Alzheimer's disease is thought to be caused by an accumulation of aberrant proteins in and around brain cells.
Amyloid is one of the proteins involved, and its deposits form plaques around brain cells. Tau is the other protein, and deposits of it within brain cells produce tangles.
The majority of Alzheimer's patients, particularly those with late-onset Alzheimer's, develop symptoms in their mid-60s or later. Early-onset Alzheimer's disease occurs when the illness manifests itself before the age of 65., though this is uncommon.
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Full Question
Which neurologic disorder is characterized by cortical nerve cell processes that have become twisted and dilated?
a. Dementia syndrome
b. Delirium
c. Alzheimer disease
d. Parkinson disease
What are the 4 most important environmental factors that influence bacterial growth?
The 4 most important environmental factors that influence bacterial growth are oxygen, temperature, water and pH.
Bacteria are unicellular, prokaryotic microorganisms that are able to survive in a lot of different conditions. They have different shapes, different modes of nutrition and lack a nucleus and membrane bound cell organelles.
The four most important environmental factors that influence the growth of bacteria are oxygen, temperature, water and pH. Different types of bacteria types need different temperatures in order to grow. Some can survive in cold temperatures while some can even survive in very high temperatures.
Most of the bacteria survive in neutral or less acidic environments but also a lot of bacteria are able to survive in a very wide spectrum of pH. Some bacteria do not require oxygen and are hence called anaerobic while some type of bacteria need oxygen to grow and are called aerobic. Water is also required by bacteria and it boosts their growth.
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Drag the labels to their appropriate locations to identify the type of point mutation shown. a) silent mutation b) nonsense mutation c) missense mutation
The type of point mutation shown: a) silent mutation
b) nonsense mutation
c) missense mutation
d) Frameshift mutation
Any change in the DNA sequence of a cell. Mutations can be caused by mistakes in cell division or by being exposed to DNA-damaging agents in the environment. Mutations can be harmful, beneficial, or inactive.
Hereditary mutations cause cystic fibrosis, hemophilia, and sickle cell disease. Other mutations can happen on their own during a person's life. These are known as sporadic, spontaneous, or new mutations. They only affect a small number of cells.
Genetic mutations are changes to your DNA sequence that occur during cell division, or when your cells multiply. Your body's DNA coding directs it on how to create and operate. Hereditary mutations can cause genetic disorders like cancer, or they might help people adapt to their surroundings over time.
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1. The South thought that it could win the war because a. it had skilled military men and could fight a defensive. b. Great Britain was on its side. c. cold weather in the North would make military training difficult. d. they could arm slaves and send them into battle first.
Answer: The answer is D.they could arm slaves and send them into battle first.
Explanation: This is the right answer because if you really think and read then this answer will make more sense
Thank you!!!
PLEASE GIVE CREDIT IF YOU USE MY IDEA (Meaning use this answer)
Humans rely on sensory receptors to interpret messages about their surroundings. Sensory receptors respond to mechanical, physical, or chemical stimuli. There are different kinds of sensory receptors for detecting different kinds of stimuli. Chemoreceptors are specialized nerve cells that pick up chemical stimuli, such as smells or the pH level of foods. Such stimuli tell the brain and body to react a certain way to protect the body. If a person in a controlled test is introduced to a safe chemical stimulus, what is the most logical prediction you could make?
A. The person will bat the eyelids to push the chemicals away with the eyelashes.
B. The person will plug the nose to shield the body from offensive chemical smells.
C. The person will cover the ears to protect the ears from chemicals in loud noises.
D. The person will bite the nails to keep the chemical from seeping into the fingers
The most logical prediction you could make is the person will bat the eyelids to push the chemicals away with the eyelashes.
Internal organs as well as specialized organs like the eyes, ears, nose, and mouth include sensory receptors. Each receptor type transmits a unique sensory modality that eventually combines into a single perceptual frame.
Chemoreceptors are specialized nerve cells or receptors that detect changes in the chemical composition of the blood. The prefix "chemo-" alludes to the chemical makeup of the blood. The brain receives this data from the chemoreceptors to assist in maintaining the balance of the respiratory and cardiovascular systems.
They are proteins that detect and engage with particular chemicals known as ligands on the cell membranes.
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What makes the information that you gathered truthful and accurate?
The information that I gathered is truthful and accurate because it was gathered from reliable sources, such as peer-reviewed journal articles, official government websites, and authoritative books.
Furthermore, I verified the accuracy of the information by cross-referencing it with other sources.
The Importance of Checking the Accuracy of InformationWith the prevalence of the internet, it is easier than ever to find information, but it is also easier than ever to find false or misleading information. As such, it is important to have the skills to be able to assess the accuracy of any information that you come across.
One of the key skills to have when assessing the accuracy of information is to be able to recognize reliable sources. For example, peer-reviewed journal articles are generally more reliable than websites, and official government websites are generally more reliable than personal blogs. It is important to be aware of the source of any information that you come across, and to give more weight to information from reliable sources.
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Guiding Question:
Would this DNA strand function in a living organism? Explain with a CER format.
Legends:
S-Deoxyribose
A, G, C, T-Nitrogen bases
P-Phosphate group
This DNA strand won't function in a living organism because of the incorrect matching of the base pairs which will distort the structure of the molecule.
What is DNA?This is referred to as deoxyribonucleic acid and it is the genetic material of most living organisms.
Claim - A-G , C-T were paired in the example given.
Evidence - Under normal circumstances, the nitrogen-containing bases adenine (A) and thymine (T) pair together, and cytosine (C) and guanine (G) pair together.
Reasoning - Since the base pairs aren't correctly matched then there will be a distort the structure of the molecule which could cause genetic diseases.
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true or false Two genes that are separated by 10 map units show a recombination percentage of 10%.
Recombination rates for two genes separated buy 10 map units are 10%. True—1% of two genes recombining is represented by one map unit.
How do genes differ from DNA?Your DNA is what builds and keeps up your human structure. Genes are parts in your DNA that are responsible for your unique physical characteristics.
What are genes, and what different kinds are there?A little DNA segment called a gene. Millions of little molecules known as bases make up DNA. A, C, T, & G are the four distinct chemical kinds. A gene is a sequence of DNA composed of an As, Cs, Ts, and Gs sequence. Every of your cells has around 20,000 of your genes due to how little they are.
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Chloroplasts are a specialized structure that
convert sunlight into energy. Which cell type
requires these?
Plant or Animal
Answer:
Plant cells
Explanation:
The purpose of the chloroplast is to make sugars that feed the cell's machinery.
Answer:
Plant Cells require Chloroplasts.
Explanation:
A chloroplast is an organelle ( an organ within a cell) of a plant cell, who's main purpose is to convert energy from the Sun into chemical potential energy, otherwise known as photosynthesis.
Vestigial traits and neutral changes in DNA sequences are good examples of _____. Vestigial traits and neutral changes in DNA sequences are good examples of _____. acclimation
Vestigial traits and neutral changes in DNA sequences are good examples of non-adaptive traits .
Structures that don't have any obvious feature and appear like residual components from a beyond ancestor are known as vestigial systems. Examples of vestigial systems encompass the human appendix, the pelvic bone of a snake, and the wings of flightless birds. Vestigiality is the retention, at some point of the manner of evolution, of genetically decided systems or attributes which have misplaced a few or all the ancestral feature in a given species. Assessment of the vestigiality should usually rely upon assessment with homologous functions in associated species.
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What are F1 and F2 genotypes?
F1 generation is the first filial generation, whereas F2 generation is the second filial generation obtained by crossing the F1 generation.
F1 is the first filial generation obtained by crossing two different parents. The parents are different from one another; one is homozygous dominant for both qualities, while the other is homozygous recessive. For both features, all of the progeny exhibit dominant traits. It is crucial for hybridization because it produces offspring with the best traits from both parents. Outbreeding depression, or decreased fitness in the progeny as a result of a cross between two distant parents, is occasionally observed in the F1 generation.
The F1 generation was self-crossed to produce the second filial generation. Both features are heterozygous in the parents. The generation displays a 9:3:3:1 phenotypic ratio. It is crucial for preserving a pure line or for keeping the qualities stable across several generations. Inbreeding depression in the F2 generation, when the offspring have a lower survival and fertility rate, might result from ongoing inbreeding of the F1 generation.
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compare the air pollution of Uttar Pardesh, Arunachal Pradesh, and Meghalaya
Answer :uttar Pradesh is more polluted than any of these.
Explanation:
Double-stranded viral DNA is incorporated into a host cell as a _____.
Double-stranded viral DNA is incorporated into a host cell as a form of genetic material.
The viral DNA is packaged within the viral capsid and is released into the cells of the host organism when the virus enters the cell. Once inside the cell, the viral DNA is uncoated and then incorporated into the host cell's own genetic material. This process, known as “genetic transformation”, is how the virus replicates its genetic material and spreads to other cells.
The incorporation of viral DNA into a host cell is an essential part of how viruses spread and cause disease. The viral DNA is able to take control of the host cell's normal cellular functions and cause it to produce more viral particles.
This process, termed “lytic cycle”, is necessary for the virus to spread and cause infection. In some cases, the viral DNA also integrates into the host cell's genome, allowing the viral genetic material to be passed down through generations of cells. This process, referred to as “lysogenic cycle”, can lead to persistent infections and chronic diseases.
In order to successfully incorporate its DNA into the host cell, the virus must first attach to the host cell's membrane. This is done by the virus making use of specific proteins known as “receptors” that are found on the cell's surface. When the virus attaches to the receptor, it is allowed to enter the cell. Once inside the cell, the viral DNA is then uncoated and incorporated into the host cell's own genetic material.
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What are 4 things habitats provide?
The four important things which a habitat provides an organism are shelter, food, water and space.
A habitat is basically the place or the environment in which a particular organism lives. A habitat consists of both the biotic as well as abiotic factors. An organism can survive in a particular area if all its basic needs are met and the habitat therefore offers the organism with everything that it needs in order to survive which include a range of conditions.
The habitat provides an organism food, water and sunlight which are required for energy as well as growth. It also allows the organism to live and thrive there and therefore it provides shelter.
It also gives an organism space. Every organism needs different amount of space and therefore their habitats are specific to them, For example, big animals live in the forests and smaller animals like moles can burrow holes in the ground and survive.
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by far the most abundant and widespread organisms on earth are the _____.
The most abundant and widespread organisms on earth are the Prokaryotes.
Prokaryotes are the single celled organisms and have distinct features than other multicellular living organisms on earth. They are an essential class of organism as they perform several functions like nutrient recycling etc to maintain a well balanced ecosystem.
They are also by far the most diverse group of organisms in both metabolic and natural adaptive manner. Prokaryotes are abundantly found on earth because of their innate ability to adapt themselves even in extreme harsh conditions which results in their easy survival over ages.
Prokaryotes consist of organisms like Bacteria, Cyanobacteria, Archaeans etc.
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HELP PLEASE
A population of coyotes lives in a small valley. The coyotes prey mainly on rabbits. The rabbits eat meadow plants that grow in the valley
Each year there are about the same number of coyotes, rabbits, and plants in the valley. One year a drought kills about half of the meadow
plants.
What effect will the drought have on the coyote population in the valley?
O A It will decrease because the rabbits will decrease.
B. It will stay the same because only the plants are affected.
O c. It will increase because there will be more space for us
D. It will decrease because there will be fewer plants for them.
The coyote population in the valley will decrease because the rabbits will decrease.
An ecosystem, also known as an ecological system, is made up of all the organisms and the physical setting in which they live. The nutrition cycles and energy flows connect these biotic and abiotic elements. Photosynthesis is how energy enters the system and is absorbed by plant tissue. Animals play a significant part in the transfer of materials and energy through the system by eating plants and one another.
They also have an impact on the biomass levels of the microbial and plant communities. In addition to facilitating nutrient cycling by transforming nutrients held in dead biomass back into a form that can be easily utilized by plants and microorganisms, decomposers also release carbon into the atmosphere through the breakdown of dead organic matter.
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Secondary sewage treatment is distinguished form primary sewage treatment by the: separation of the suspended solids from the liquid effluent. chlorination of the liquid effluent. aeration of liquid effluent following chlorination. removal of inorganic nutrients from the liquid effluent. addition of bacteria to process organic contaminants.
Secondary sewage treatment is distinguished from primary sewage treatment by the following:
Aeration of liquid effluent following chlorination.
Addition of bacteria to process organic contaminants.
Removal of inorganic nutrients from the liquid effluent.
Primary sewage treatment is the initial step in the treatment of waste water, and it typically includes the separation of the suspended solids from the liquid effluent. This can be achieved through sedimentation, mechanical screens, and other physical means to remove the larger particles from the waste water.
Secondary sewage treatment goes one step further by using biological processes to remove dissolved organic matter and inorganic nutrients from the liquid effluent. This is typically done through the use of microorganisms, which break down the organic matter in the waste water. Aeration is used to provide the microorganisms with oxygen, which is necessary for their growth and metabolism.
Chlorination can be used as a final disinfectant step following secondary sewage treatment to kill any remaining pathogens, but it is not a requirement of secondary treatment.
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Which of the following functions occurs in the part of the digestive system indicated by the arrow? dehydration and compaction of indigestible materials add breakdown of swallowed foods O secretion of bile and storage of nutrients O secretion of buffers and digestive enzymes
The correct option (a) Dehydration and compaction of indigestible materials add breakdown of swallowed foods.
The gastrointestinal tract, as well as the digestive organs, comprise the human digestive system (the tongue, salivary glands, pancreas, liver, and gallbladder). Digestion is the process of breaking down food into smaller and smaller components so that it may be absorbed and digested by the body. The digesting process is divided into three stages: cephalic, stomach, and intestine.
The initial step of digestion, known as the cephalic phase, begins with secretions from stomach glands in reaction to the sight and smell of food. This stage comprises the mechanical breakdown of food by chewing as well as the chemical breakdown by digestive enzymes in the mouth.
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Full Question: Which of the following functions occurs in the part of the digestive system indicated by the arrow?
dehydration and compaction of indigestible materials
Acid breakdown of swallowed foods
secretion of bile and storage of nutrients
secretion of buffers and digestive enzymes
How did black Monday affect the direction of Wilkins career
Answer:
Bombing of Hiroshima
Explanation:
This made him want to study the science of life
What is the process by which plants use energy from sunlight to convert water and carbon dioxide into glucose and oxygen?
Answer:
The process by which plants use energy from sunlight to convert water and carbon dioxide into glucose and oxygen is called photosynthesis. This process takes place in the chloroplasts of plant cells, which contain a green pigment called chlorophyll.
During photosynthesis, the chlorophyll absorbs light energy from the sun, which is used to split water molecules into oxygen and hydrogen ions. The oxygen is released into the atmosphere, while the hydrogen ions are used to produce ATP, a molecule that stores energy.
Next, the plant takes in carbon dioxide from the air and combines it with the hydrogen ions to produce glucose, a simple sugar that the plant uses as food. This process is known as the Calvin cycle.
Overall, photosynthesis is a vital process that allows plants to produce their own food and oxygen, and it is essential for supporting life on Earth.
Organisms are classified into kingdoms primarily on the basis of A) behavior B) structure C) size D) habitat
Organisms are classified into kingdoms based on a variety of factors, but primarily on the basis of structure, behavior, size, and habitat. So all the given options are correct.
First and foremost, structure is the most important factor in determining the kingdom to which an organism belongs. Morphology, or the physical structure of an organism, plays a vital role in the classification process. For example, the vast majority of animals are classified as members of the Animalia kingdom, due to their possession of a backbone and other characteristics that distinguish them from other organisms.
Behavior is also used as a criterion for kingdom classification. Organisms are grouped into different kingdoms based on the behaviors they exhibit, such as their mating habits, feeding behavior, and even their social organization. For instance, many fish, birds, and mammals are grouped together in the Animalia kingdom due to their similar behaviors.
Size is another factor that is taken into consideration when classifying organisms into kingdoms. Generally, larger organisms are grouped in the Animalia kingdom, while smaller organisms, such as bacteria and protists, are placed in the Protista kingdom.
Lastly, the habitat of an organism is also used to assign it to a certain kingdom. Different kingdoms are characterized by certain habitats, such as the Animalia kingdom is associated with land-based habitats. Thus, when an organism is found to live in a certain habitat, it is generally assigned to the kingdom associated with that habitat.
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What describes natural rights?
Natural rights are those that are independent of the laws or customs of any particular culture or government, and so are universal, fundamental and inalienable
These rights were bestowed by God and cannot ever be taken away or even ceded. These fundamental natural rights are "life, liberty, and property,"
Human laws cannot nullify them, but an individual can lose the ability to enjoy them by acting in a certain way, like by wrongfully abusing the rights of others.
Natural rights are not generally embraced, in part because of their apparent incoherence and religious connotations.
Some philosophers contend that only legal rights exist and that there are no natural rights; for example, Jeremy Bentham referred to natural rights as "simple nonsense."
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What methods do cells use to increase the surface area to volume ratio?
Prokaryotic cells have inner folds of the cell membrane that are responsible for specific functions such as respiration. These creases increase the surface area.
As the cell radius increases, the surface area increases as the radius squared, but the volume increases as the radius cubed (much faster).
As the cell advance, its internal volume increases and the cell membrane expands. Unfortunately, volume increases faster than surface area, so the relative amount of surface area available to direct material to a unit volume of cells steadily decreases. The important point is that the surface area-to-volume ratio decreases as the cells get larger.
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