An injury to the temporal lobe will likely impair the function of the _______. A. sense of hearing B. sense of sight C. sense of taste D. sense of touch

Answers

Answer 1

An injury to the temporal lobe will likely impair the function of the sense of hearing.

What is temporal lobe?

One of the cortex's four main lobes is the temporal lobe. It is primarily in charge of deciphering the sounds coming from the ears and is crucial for understanding and using language. The temporal lobe collaborates with other neural regions to form fresh, long-term memories, and it aids in object recognition as well. The second-largest lobe is the temporal lobe, which is located behind the ears.

They are frequently linked to memory encoding and the processing of auditory information. The key jobs of the temporal lobes are language comprehension, memory formation, object and face recognition, perception, and auditory information processing. There are left and right temporal lobes, which are located in both hemispheres of the cerebrum, similar to the other lobes of the brain.

Hence, An injury to the temporal lobe will likely impair the function of the sense of hearing. Option A is correct.

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Related Questions

Inside a plant cell is the _____ or
"brain" of the cell. It has the DNA that tells the plant how to grow.
A. vacuole
C. cytoplasm
B. nucleus
D. mitochondria

Answers

Inside a plant cell is the - B. The nucleus
Inside a plant cell is the nucleus

#5 Which statement is true in regards to DNA mutations? *
Mutations can lead to positive adaptations in an organism
all mutations result in a change in protein formed
mutations are not present in unicellular organisms
all mutations are negative and lead to diseases

Answers

Answer:

Mutations can lead to positive adaptations in an organism

7. A hen's egg with the shell dissolved is placed in a 10% salt solution. Relative
to the interior of the egg the salt solution is
A. Hypotonic
B. Isotonic
C. Hypertonic
D. Semi-permeable

Answers

A) hypertonic because it has higher salt levels than inside

The salt solution is  Hypertonic.

Hypertonic fluids contain a higher concentration of solute compared to plasma and interstitial fluid.

What is hypertonic solution?A solution that contains more dissolved particles than is found in normal cells and blood.Cells placed in hypertonic solution will shrink. Water moves from a high water concentration inside the cell to a low water concentration outside of the cell by osmosis.

What is osmosis?Osmosis is the movement of water molecules from a solution with a high concentration of water molecules to a solution with a lower concentration of water molecules, through a cell's partially permeable membrane.Osmosis is a passive transport process during which water moves from areas where solutes are less concentrated to areas where they are more concentrated.

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Cystitis is most often caused by Group of answer choices Escherichia coli. Leptospira interrogans. Candida albicans. Neisseria gonorrhoeae. Pseudomonas aeruginosa.

Answers

Cystitis is most often caused by Escherichia coli (E. coli) bacteria.

E. coli is a type of bacteria that is commonly found in the gastrointestinal tract and is responsible for many cases of urinary tract infections (UTIs), including cystitis.

Other bacteria, such as Staphylococcus saprophyticus, Klebsiella pneumoniae, and Proteus mirabilis, can also cause cystitis.

However, E. coli is the most common cause, accounting for up to 90% of cases.

Other microorganisms, such as viruses or fungi, can also cause cystitis, but this is less common.

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The phenomenon in which bacterial regulatory pathways are controlled by the density of cells of their own kind is called O signal transduction. O quorum sensing. Odensity-dependent inhibition O pathogenicity.

Answers

The phenomenon in which bacterial regulatory pathways are controlled by the density of cells of their own kind is called quorum sensing. This process involves the secretion of small signaling molecules, known as autoinducers, which can accumulate and bind to specific receptors on nearby bacterial cells once they reach a critical concentration. This initiates a signaling cascade that can lead to changes in gene expression and behavior among the bacterial population.

Quorum sensing is an important mechanism that allows bacteria to coordinate their behavior and regulate their gene expression in response to changes in their environment. It can play a key role in a wide range of bacterial processes, including biofilm formation, virulence, and antibiotic resistance.

Overall, the concept of quorum sensing represents a fascinating example of how bacteria can communicate and cooperate with one another to survive and thrive in their environment. While there is still much to be learned about this complex phenomenon, researchers continue to make exciting discoveries about how it works and how it might be targeted to combat bacterial infections.

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What are three characteristics of the gas giants that are different from the terrestrial planets?

Answers

Answer:

Gas Giants like Jupiter, Saturn, and Neptune have very low temperatures,  they have no solid surface to stand on, and they have belts of space debris that orbit around them, terrestrial planets do not share these features

Which of the following is NOT a common adaptation? A Antibiotic Resistance B Longer Beaks C Mimicry D Camofaluge

Answers

Answer:you a ?

Explanation:

the answer to the question is A

The estimated percentage of cancers that are due to poor diet and lifestyle habits is approximately Group of answer choices3/41/21/31/4

Answers

Solution:

A large body of literature indicates that 30% to 40% of all cancer cases are related to poor dietary or lifestyle habits.

That is equivalent to 1/3.

So that the correct answer is:

1/3

What are the products of meiosis in females?

Answers

Meiosis is a conserved cell division process that is used by sexually reproducing organisms to generate haploid gametes. Males and females produce different end products of meiosis: eggs (females) and sperm (males).

What is the thin, whitish skin layer on the top of bones called?
1. periosteum
2. bone marrow
3. hard bone
4. compact bone

Answers

Answer:

The answer is periosteum

Explanation:

I dont really have an explanation i had this wuestion and just guessed an got it right

Answer:

periosteum  is correct to the person above

Explanation:

B16F10 fails to faithfully reflect human melanoma biology, as it lacks certain oncogenic driver mutations

Answers

[\(64\)Cu]-LLP2A discriminates BPRα (VLA\(-4+\)) vs. BPR (VLA\(-4-\)) melanomas in vivo, supporting translation of these BRAF-mutated melanoma models via prospective imaging and theragnostic studies. These findings increase the potential of LLP2A for therapeutic patient care by enabling it to target tumor mutations that are both clinically significant and resistant to therapy.

BPR:

Purpose: Unprecedented responses to immune checkpoint inhibitors and targeted therapy in melanoma are still seen, but a sizable portion of patients continue to deteriorate and have few curative choices. In subcutaneous and metastatic models of B16F10 murine melanoma, we have previously shown that the peptidomimetic LLP2A tagged with Cu-\(64\) ([64Cu]-LLP2A) uptakes strongly and selectively for positron emission tomography (PET) imaging. Very Late Antigen-\(4\) (VLA-\(4\), integrin α4β1) is a transmembrane protein that is overexpressed in melanoma and other malignancies and promotes tumor development and metastasis. LLP2A interacts to VLA-4 with a high affinity. However, B16F10 does not accurately represent the biology of human melanoma because it lacks several oncogenic driver mutations, such as the BRAF mutations that are present in about ≥ \(50\)% of clinical cases. In the present study, we assessed the PET tracer  [\(64\)Cu]-CB-TE1A1P-PEG4-LLP2A ([64Cu]-LLP2A) in new, translational BRAFV600E mutant melanoma models that differed in VLA-4 expression-BPR (VLA-4-) and BPRα (VLA-4+).

Procedures: BPR cells were transduced with α4 (CD49d)  to increase the amount of intact VLA-VLA-\(4\) (BPRα). on the cell surface. By using saturation binding experiments, [64Cu]-LLP2A's affinity for BPR and BPRα cells was identified. In B16F10, BPR, and BPR cells, the amount of [64Cu]-LLP2A internalization was measured using a plate-based assay. The PET/CT imaging and tracer bio distribution of mice with subcutaneous BPR and BPR tumors were assessed.

Results: High binding affinity for BPR was shown by BPRα (Kd\(= 1.4\)nM) , although binding to BPR cells was inconclusive. BPR internalization was not seen, although VLA\(-4+\) BPRα and B16F10 showed comparable time-dependent [\(64\)Cu]-LLP2A internalization. It was confirmed by significantly larger (p\(< 0.0001\)) BPRα tumor uptake in bio distribution analyses that PET/CT demonstrated enhanced tracer uptake in BPR tumors compared to BBPRα tumors in vivo.

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describe the differences across species at the position in the genome that encodes rna polymerase. why might e. coli have so few introns and intergenic sequences?

Answers

The differences in genome size and organization between prokaryotic and eukaryotic organisms can explain why E. coli has fewer introns and intergenic sequences at the position in the genome that encodes RNA polymerase.

RNA polymerase is an essential enzyme that catalyzes the transcription of DNA into RNA in all living organisms. The position in the genome that encodes RNA polymerase can vary across different species due to differences in genome size, structure, and organization.

In prokaryotic organisms such as E. coli, the RNA polymerase gene is typically found as a single copy on the bacterial chromosome. Prokaryotic genomes are generally smaller and more compact than eukaryotic genomes, which allows for a higher gene density and fewer introns and intergenic regions. E. coli has a relatively simple genome and lacks the complex regulatory mechanisms found in eukaryotes that require extensive non-coding regions.

In contrast, eukaryotic genomes are typically much larger and contain multiple copies of RNA polymerase genes that are distributed across different chromosomes. Eukaryotic genes are often interrupted by introns, which require additional processing steps during gene expression and contribute to a larger proportion of intergenic sequences in the genome.

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Explain variation and why it is important within a population or species.

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Variation refers to the differences or variations that exist within a population or species.

This variation can be in physical traits, such as height, skin color, or eye color, or in behavioral traits, such as mating behavior or feeding behavior.

Variation is important within a population or species because it allows for adaptation to changing environments. Natural selection acts on this variation, allowing individuals with advantageous traits to survive and reproduce. Over time, this can lead to the development of new species or the adaptation of existing species to new environments.

Additionally, variation within a population provides genetic diversity, which is important for the long-term survival of a species. Genetic diversity ensures that a population is not vulnerable to diseases, predators, or other environmental pressures that could affect the entire population. Without variation, a population would be more susceptible to extinction.

Therefore, understanding and studying variation within a population or species is important for understanding the evolutionary processes that have shaped life on Earth and for conserving biodiversity.

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Define biodiversity and the importance of diversity in ecosystems. How could humans harm an ecosystem's biodiversity?

Answers

Answer:

Biological diversity - or biodiversity - is the term given to the variety of life on Earth and the natural patterns it forms. The biodiversity is the fruit of billions of years of evolution, shaped by natural processes and, increasingly, by the influence of humans.

Explanation:

Biodiversity is important to humans for many reasons. ... Ecological life support— biodiversity provides functioning ecosystems that supply oxygen, clean air and water, pollination of plants, pest control, wastewater treatment and many ecosystem services. If no changes are made in the ways humans use resources on earth, there will continue to be a degradation of biodiversity until human lives can no longer be sustained. Humans affect biodiversity by their population numbers, use of land, and their lifestyles, causing damage to habitats for species.

Explain why Euglenozoa cannot be classified as either plants or animals?

Answers

Euglenozoa are monophyletic group of flagellated protists as well as free-living, symbiotic, and parasitic species. According to genetic studies, Euglenozoa are meither plant nor animal despite the suffix zoa. They are somewhat the living dependent of a few of the primal unicellular organisms called eukaryotes. It is also a genus of unicellular flagellate protists where the word "unicellular" means that the organism consists of one cell only that's why they're not considered plant or animals.

From a strictly Kantian viewpoint, therapeutic privilege is
a) Always permissible
b) Respectful to persons
c) Never permissible
d) Necessary

Answers

From a strictly Kantian viewpoint, therapeutic privilege is never permissible. The answer is c)

Kantian ethics is based on the principle of respect for persons, which requires that individuals be treated as ends in themselves and never merely as means to an end. This means that individuals must be treated with respect and dignity, and their autonomy must be protected.

Therapeutic privilege refers to the practice of withholding information from a patient when the healthcare provider believes that the patient may be harmed by knowing the information. This can include withholding a diagnosis, prognosis, or treatment options.

From a Kantian viewpoint, therapeutic privilege is not permissible because it violates the principle of respect for persons.

By withholding information, the healthcare provider is treating the patient as a means to an end (i.e., protecting them from harm), rather than as an end in themselves. It also undermines the patient's autonomy and right to make informed decisions about their healthcare.

Hence, option c) is the answer.

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We know that for example stem Bromelain has an enzymatic activity of 0.542 U/mg and there are 20 billion bacteria in our teeth. Calculate how long does Bromelain take to degrade all of the biofilm created by the bacteria using this rule : a) Any assumptions must be written as "(Assumption)". Plus point for those who tell me why they choose that assumption b) Any other data gained from other sources must be written specifically. If it is a book, you can just write the title of the book and the page. If it is a source/website/journal, just write the title of it. c) If you write other data without stating that it is assumption or obtained from other sources, I assume that you create data by yourself without knowing anything!!

Answers

Given that Stem Bromelain has an enzymatic activity of 0.542 U/mg, and there are 20 billion bacteria in our teeth. We need to calculate how long it takes to degrade all of the biofilm created by the bacteria.Assumptions and explanations used in the calculation: Assumption: The mass of the biofilm is not given. Therefore, it is assumed that the biofilm's mass is 1 mg, as the enzymatic activity of bromelain is provided per mg. If the biofilm's mass is different, the result will be different.

We know the enzymatic activity of bromelain, which is 0.542 U/mg.We are given that the number of bacteria in our teeth is 20 billion. The biofilm is created by these bacteria. Bromelain is supposed to degrade the biofilm. Therefore, we need to calculate the mass of the biofilm. The mass of the biofilm is assumed to be 1 mg, as the enzymatic activity of bromelain is given per mg.Now we can use the given data to calculate the time required for bromelain to degrade all of the biofilms created by the bacteria.First, we need to find the total enzymatic activity required to degrade the biofilm. The mass of the biofilm is assumed to be 1 mg.Enzymatic activity of bromelain = 0.542 U/mgTotal enzymatic activity required to degrade 1 mg biofilm= 0.542 U/mg × 1 mg= 0.542 UThe total enzymatic activity required to degrade the biofilm created by the 20 billion bacteria is:Total enzymatic activity required= Enzymatic activity per bacteria × Total number of bacteria= 0.542 U/mg × 20 billion= 1.084 × 10^10 UTo find out how long it takes for bromelain to degrade all of the biofilm, we need to know the rate of degradation. The rate of degradation depends on various factors, such as temperature, pH, etc., which are not provided in the question. Therefore, it is impossible to calculate the time required for bromelain to degrade all of the biofilms created by the bacteria without knowing the rate of degradation. Thus, the answer cannot be calculated.

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The speaker compares the students waiting to take their drivers test to deer trapped in headlights in order to

Answers

The speaker compares the students waiting to take their drivers test to deer trapped in headlights in order to describe how nervous they look.

A drivers test is important for you to receive your permit within the country. Only with a legitimate permit are you able to ride or drive your two-wheeler and hackney coach in Republic of India. A drivers test contains of a theory half beside a sensible assessment likewise.

To not feel nervous while giving the drivers test, read through and con rules, road sign symbols, and different data which will be necessary to grasp throughout your take a test and this may take a bit of the nervousness away as a result of you’ll be mentally ready to pass the take a look at.

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Describe how traits (phenotypes) and reproduction of ladybugs are connected to one another

Answers

Answer:

Ladybugs reproduce sexually, meaning that two individuals are required for successful mating and reproductive success. Traits, or phenotypes, influence the likelihood of successful mating and reproductive success. For example, certain physical characteristics, such as size, color, and pattern, may be more appealing to potential mates and therefore make the individual more likely to mate and reproduce. Additionally, certain behaviors, such as courtship displays, may make an individual more attractive to potential mates and contribute to their reproductive success.

Explanation:

The plasma membrane is composed of a phospholipid by layer with embedded proteins what is one of the functions of the embedded proteins

Answers

Answer:

Transport proteins (carrier proteins and channel proteins) allow substances into and out of the cell that cannot pass through the phospholipid bilayer (as they’re either to large, charged or not lipid soluble) by facilitated diffusion.

Specifically channel proteins allow ions into and out of the cell by creating a pore in the membrane in which they can move through with their concentration gradient

Explanation:

The genetic basis for aggression states that ______ are important in understanding the biological basis of aggression. genes.

Answers

The genetic basis for aggression states that genes are important in understanding the biological basis of aggression.

The genetic basis for aggression refers to the idea that certain genes may contribute to the development of aggressive behavior in individuals. While environmental and social factors may also play a role, studies have shown that genetics can have a significant influence on an individual's propensity towards aggression. Understanding the specific genes involved in aggression may provide insight into potential treatments or interventions for individuals who struggle with aggressive behavior.

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James Watson was awarded the Nobel Prize for discovering that DNA has a shape called?

Answers

The discovery in 1953 by James Watson and Francis Crick of the double helix, the twisted-ladder structure of deoxyribonucleic acid (DNA).

Marked a watershed moment in science and gave rise to modern molecular biology, which is primarily concerned with understanding how genes control the chemical processes within cells.

Watson suddenly realized in the spring of 1953 that the basic DNA components—four organic bases—must be connected in definite pairs. This finding was critical in allowing Watson and Crick to develop a chemical model for DNA—a double helix, which may be compared to a spiraling staircase or a twisting ladder.

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(15 points) In which of the following circumstances would it be most likely for large organic molecules to form during a laboratory experiment?

(15 points) In which of the following circumstances would it be most likely for large organic molecules

Answers

A) amino acids which is protein will make the organic molecules repair and grow. And nucleic acids will transfer the dna. Without either of those two an organism cannot grow.

The ribozyme is indeed an enzyme made of ribonucleic acid (RNA) which catalyzes a chemical reaction. This ribozyme catalyzes specific reactions in the same way as proteins enzyme do.

Ribozymes, also known as catalytic RNA, are present inside the ribosome, wherein enzymes bind amino acid residues together to make protein.Catalytic methods typically include the catalyst reacting to make an intermediate, which subsequently renews the original catalyst. It interacts with one or more reactants to generate intermediate, which further gives rise to the ultimate result of the reaction.Large organic compounds are also most likely to form during a laboratory experiment if RNA sections that can act as catalysts are generated.

Therefore, the answer is "Option 3".

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Which sentence BEST expresses the central ideas of the passage?
Zebra mussels can adapt to a variety of environments,
O but their ability to adapt to slightly salty water is of
special concern.
O
O
O
Zebra mussels have spread from oceans to lakes,
causing other mussel species to become extinct.
O
Zebra mussels are adaptable mollusks, and they can
survive on land for several days.
O
Zebra mussels have spread rapidly, threatening other
species.

Answers

Zebra mussels are adaptive mollusks that can spend days on land without food.

The ideal answer is C.

Zebra mussels are able to survive in seawater.

This bivalve mollusk is only found in the Caspian and Black Sea lagoons and associated inflowing rivers. It can only withstand slightly salty fresh and brackish water for its daily needs.

How do zebra mussels affect the environment?

Zebra mussels, like the ones in the photo above, can ruin boat motors, clog water filtration lines, and make beaches unusable. Zebra mussels are a tiny but significant nuisance. This crayfish and other objects can be swiftly encrusted by these mussels.

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True/Falsedeep sea fans are deposited at the base of submarine canyons by turbidity currents. when preserved in the geologic record, these deposits are known as turbidites.

Answers

True, deep sea fans are deposited at the base of submarine canyons by turbidity currents. When preserved in the geologic record, these deposits are known as turbidites.

Deep-sea fans are underwater geological structures that form as a result of sediment deposits that are transported through turbidity currents from the continental shelf, slopes, and canyons to the deep ocean floor. These fans are found at the bottom of underwater canyons, deep-sea trenches, and abyssal plains.

Depositional environments that are turbidites Submarine canyons and deep-sea fans are examples of depositional environments for turbidites. When massive amounts of sediments are moved and accumulated by gravity from the upper to the lower parts of the continental slope, this results in a phenomenon known as turbidity currents.

The movement of turbidity currents is responsible for the transportation of the sediments and depositing them in different places. In deep-sea canyons, turbidites form as a result of a combination of fast-moving waters and steep walls that allow for the collection of sediments into the canyon's lowest regions. When turbidity currents deposit these sediments in the ocean, the resulting sedimentary deposits are known as turbidites.

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Describe the structures within cells that govern heredity, and describe where they are located.

Answers

The structure that controls the cell is the DNA in the nucleus of the cell.

DNA -The genetic material that contains genetic information.present on the chromosome of the nucleus. The genetic information inDNA is encoded in four nucleobases: adenine, guanine, cytosine, and thymine. The most unique feature ofDNA is that it replicates itself, making copies that are similar to itself.DNA is a double helix structure found in all organisms, including some viruses.

These genes play an important role in determining certain details of how we exist biologically. Chromosomes are made up of genes. More specifically chromosomes are mostly DNA molecules of which genes are parts. DNA is the genetic material of humans and almost all other organisms. Most of the DNA is present in the cell nucleus, but a small amount is also present in the mitochondria. DNA contains the code for building and maintaining organisms.

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please discuss how prioritizing plans and systems accomplishes resiliency from organic/inorganic disasters and the role collaboration plays in it.

Answers

Prioritizing plans and systems accomplishes resiliency from organic/inorganic disasters and the role collaboration plays in it in the following ways:Effective planning and systems are essential in making an organization resilient to both organic and inorganic disasters.

It involves developing and implementing risk mitigation strategies that help in preventing or minimizing the adverse effects of the disaster. Prioritizing plans and systems help an organization to understand the nature of the risk that the disaster poses, and prepare the necessary measures to mitigate it.This is done through analyzing the available data, assessing the vulnerabilities of the organization, and developing a comprehensive plan that prioritizes the most critical areas and systems that are essential for the continued operation of the organization.

A priority plan will outline a clear path of action that the organization will follow when a disaster strikes. This includes who is responsible for implementing the plan, the resources needed to execute the plan, and the timeline for executing it.Prioritizing plans and systems helps organizations to build resiliency in the face of disasters. By identifying and prioritizing critical areas and systems, organizations can focus their resources on these areas, thereby making them more robust and resistant to disasters.The role of collaboration in accomplishing resiliency from organic/inorganic disasters is essential.

Collaboration refers to working together with other organizations, communities, and governments to achieve a common goal of mitigating the risk of disasters. Through collaboration, organizations can share resources, expertise, and best practices that help in building resilience.Collaboration also helps in building strong networks that are critical in times of disasters. By collaborating with other organizations, communities, and governments, organizations can access resources and support that can help them to quickly respond to disasters and manage their impacts.

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I need help like i really do

I need help like i really do

Answers

Answer:

Catabolic

Explanation:

If a cellular homogenate were subjected to differential centrifugation, which of the following would be expected to pellet first? A. the endoplasmic reticulum B. mitochondria C. the cytosol D. nuclei

Answers

A cellular homogenate is a mixture of cellular components such as organelles, membrane fragments, and cytosol. Answer D is incorrect because nuclei would pellet out before the endoplasmic reticulum.

A cellular homogenate is a mixture of cellular components such as organelles, membrane fragments, and cytosol. The procedure that isolates these components is called centrifugation. Homogenates are spun at a low speed, which produces a pellet of the largest and densest components such as nuclei and organelles, while cytosol and smaller organelles remain in the supernatant. The procedure is repeated several times, each time increasing the speed and duration of the spin to separate progressively smaller and lighter organelles and molecules. Therefore, if a cellular homogenate were subjected to differential centrifugation, the first organelles to pellet out would be the larger and denser ones, which are nuclei and mitochondria. The cytosol will remain in the supernatant. Thus, options A and B are incorrect. Answer D is incorrect because nuclei would pellet out before the endoplasmic reticulum. Therefore, the correct answer is option B mitochondria.

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The pH indicator bromothymol blue is blue in an alkaline solution and yellow in an acidic solution. A slight increase in acidity, such as when CO2 gas is added, causes a solution with the indicator to change from blue to yellow.


A solution with the indicator would be most likely to turn from yellow to blue when which combination of factors exists?


Select the two correct answers

A. a person blows air into the solution through a straw.

B. algae in the solution are placed under a bright light.

C. a water plant in the solution is placed on a sunny windowsill.

D. yeast cells and sugar are placed in the solution.

Answers

The reasons why the solution could turn from yellow to blue are;

algae in the solution are placed under a bright light.a water plant in the solution is placed on a sunny windowsill.

What is an indicator

the term indicator has to do with a kind of substance whose color changes in proportion to the concertation of hydrogen ions in the solution. Thus the indicator solution would have different colors in an acidic, basic and neutral solutions. As such, the pH indicator bromothymol blue is blue in an alkaline solution and yellow in an acidic solution.

The combination of factors that would make the color to change from yellow to blue when;

algae in the solution are placed under a bright light.a water plant in the solution is placed on a sunny windowsill.

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