What is MOST likely the biggest environmental problem with burning an oil slick in the ocean to remove it? A. It creates air pollution. B. The process is too slow to help wildlife. C. It only removes the top layer of oil. D. The fire kills organisms living on the surface.

Answers

Answer 1

Answer: The biggest environmental problem with burning an oil slick in the ocean to remove it is that the fire kills organisms living on the surface of the water. Option D is the correct answer. Burning an oil slick can create a significant amount of smoke and air pollution, but the immediate impact on surface-dwelling organisms, such as birds and fish, is the most significant concern. Additionally, burning the oil only removes the top layer, leaving behind potentially toxic residues that can still be harmful to marine life. The process can also be slow and dependent on weather conditions, making it an ineffective solution for some situations.

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Explanation:


Related Questions

What does a decrease in salmon population due to an increase in river temperature indicate?

Answers

A decrease in salmon population due to an increase in river temperature likely indicates a change in the environment, such as climate change.

What is population?

The term "population" is frequently used to describe the total number of people living in a particular location. Governments undertake a census to estimate the number of residents in a certain area.

A collection of creatures of the same species that coexist and breed in the same location at the same time (e.g., human population, the population of apple trees, total population of deer in a forest). It is a portion of a species' total population that lives in a particular region of the globe.

Warmer temperatures can lead to decreased oxygen levels in the water, which can be harmful to fish, or other changes in the river habitat that make it difficult for salmon to survive.

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cells perform catabolism to generate atp, which can be used for all of the following except cells perform catabolism to generate atp, which can be used for all of the following except ion transport. protein synthesis. glycogen synthesis. muscle contraction. diffusion.

Answers

Cells perform catabolism to generate ATP, which can be used for all of the following except glycogen synthesis.

ATP (adenosine triphosphate) is the primary energy currency of the cell and is generated through cellular respiration, which involves the breakdown of glucose or other organic molecules. ATP is used by the cell for a variety of energy-requiring processes, such as muscle contraction, active transport of ions and molecules across membranes, synthesis of biomolecules like proteins and nucleic acids, and maintenance of cellular homeostasis.

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Bacteriophages are a type of virus that infects bacteria. Scientists have started to use these bacteriophages to move genetic information from one bacterium to another. Which Characteristic of a virus is an advantage and why?

Answers

One of the characteristics of a virus that is an advantage for scientists using bacteriophages to move genetic information from one bacterium to another is the ability of viruses to specifically target host cells.

Viruses have unique structures on their surfaces that allow them to recognize and attach to specific host cells, such as bacteriophages attaching to specific bacteria. This specificity means that scientists can use a particular virus to deliver genetic information to only the target bacterial species, without affecting other non-targeted species.

Another advantage of using bacteriophages is their ability to transfer DNA between bacteria by a process known as transduction. This process allows for horizontal gene transfer, which can result in the acquisition of new traits by the recipient bacterium, such as antibiotic resistance.

Bacteriophages can also be used as a potential alternative to antibiotics to treat bacterial infections, as they have a specific mechanism of action and do not affect beneficial bacteria in the same way that antibiotics do.

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A certain nuclear power plant is decommissioned. Several years later, the large building in which the plant was housed is completely empty. The people who worked to decommission the plant experienced some problems with nausea and anemia as a result of their work, but there have been no lasting effects. Which decommissioning process did this plant most likely undergo?


I. DECON

II. SAFSTOR

III. ENTOMB


A. I only

B. II only

C. III only

D. I and II only

E. II and III only

Answers

The decommissioning process the nuclear power plant will most likely to undergo is SAFSTOR which is given by option B.

The SAFSTOR technique of nuclear decommissioning entails "placing and maintaining the facility in a condition that permits the facility to be securely stored and later decontaminated (delayed decontamination) to levels that permit release for unrestricted use." It is overseen by the United States Nuclear Regulatory Commission.

During SAFSTOR, the de-fueled plant is monitored before it is completely decontaminated and dismantled to the point where nuclear licence is no longer necessary. Decommissioning must be completed within 60 years following the plant's shutdown.

Some of the radioactive pollutants from the reactor and power plant will decay during the storage time, reducing the amount of radioactive material to be removed during the final decontamination phase.

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Fill in the blank. According to ______ theory, when we learn something new, a neurochemical memory trace forms, but over time this trace disintegrate

Answers

Answer: Decay

According to Decay theory, when we learn something new, a neurochemical memory trace forms, but over time this trace disintegrate

which of the following statements about staphylococcal enterotoxin is false? group of answer choices it causes diarrhea. it is resistant to low ph. it acts as a superantigen. it causes vomiting. it is produced by staphylococcus aureus growing in the host's intestines.

Answers

The statement that is false about staphylococcal enterotoxin is that: it is produced by Staphylococcus aureus growing in the host's intestines. The correct option is E.

Staphylococcal enterotoxin is actually produced by Staphylococcus aureus growing outside the host's body, in foods or on surfaces. It is a powerful toxin that can cause severe food poisoning when ingested. The other statements are all true; it does cause diarrhea, it is resistant to low pH, it does act as a superantigen, and it can cause vomiting.

Staphylococcal enterotoxin is one of several toxins released by Staphylococcus aureus, and is responsible for food poisoning. It is a potent protein toxin that is resistant to low pH levels and heat, making it particularly dangerous. It is a superantigen, meaning it can bind to the surface of many cells and cause an overactive immune response.

The most common symptom of staphylococcal enterotoxin poisoning is vomiting, but it can also cause severe diarrhea, abdominal cramps, and fever. The best way to prevent staphylococcal enterotoxin poisoning is to ensure that food is handled and stored properly.

Foods should be cooked thoroughly, stored at the right temperature, and eaten soon after cooking. Cross-contamination between raw and cooked foods should be avoided, as well as the handling of raw meat and eggs. People should also practice proper hygiene, washing their hands before and after preparing food and avoiding contact with food when sick.

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there isa close relarionship between forest and wildlife justify the statement​

Answers

Answer:

Yes, there is a close relationship between forests and wildlife. Forests are the natural habitats of a wide variety of wildlife species, including mammals, birds, reptiles, amphibians, insects, and many others. These forests provide shelter, food, and water for wildlife and support a complex ecosystem that is essential for the survival of many species.

Forests also play a critical role in regulating the climate, maintaining the water cycle, and preventing soil erosion. These functions are vital to the survival of many wildlife species that depend on the forest ecosystem for their survival.

The loss of forests can have a devastating impact on wildlife populations. Deforestation, habitat destruction, and fragmentation can lead to the displacement or extinction of many species. As a result, the conservation and restoration of forest habitats are crucial for protecting and preserving wildlife populations.

Therefore, the relationship between forests and wildlife is crucial and interdependent. The protection of forests is essential for the conservation of biodiversity, and the conservation of wildlife is necessary for maintaining the ecological balance of the forest ecosystem.

Answer:

The statement "There is a close relationship between forest and wildlife" is justified by various factors. Forests provide ideal habitats for wildlife to live and thrive in. Different types of species find shelter, food, and water resources in forests. Trees and other plant species also provide cover and greenery for various animals to survive.

Forests play a crucial role in maintaining the prey-predator relationship of numerous animals. For instance, herbivores get food from plants growing in forests, and carnivores prey on herbivores or other animals. If forests disappear, the entire food chain would collapse, resulting in the loss of many species of wildlife.

Forests also play a significant role in the life cycle of migratory animals. Many species, such as birds, migrate from one forest to another based on the availability of suitable living conditions. If forests vanish, migratory animals would be forced to alter their habitats, resulting in possible extinction for some species.

In conclusion, forests are essential for the survival and sustenance of wildlife. Destruction of forests leads to the loss of crucial habitats; hence efforts should be made to preserve and protect forests to save wildlife habitats.

One of each pair of chromosomes comes from each

Answers

Answer:

One of each pair of chromosomes comes from each parent.

Explanation:

Chromosomes are any of several threadlike bodies, consisting of chromatin, that carry the genes in a linear order: the human species has 23 pairs, designated 1 to 22 in order of decreasing size and X and Y for the female and male sex chromosomes respectively.

In a diploid organism (like humans) a chromosome pair is 2 chromosomes. Although we say there are two “copies” of a chromosome, they are non-identical. Each comes from a different parent (father and mother.) These come from the gametes (which are haploid, having half the number of chromosomes). Those chromosomes are not identical to the parents, but consist of a blending of the grandparent's genetic material.

Hypothesis A: The gram-positive bacilli is an auxotroph for vitamin biotin and breaks down atrazine to make ammmoniuk. Some ammonium is released and used by the gram-negative cocci as a nitrogen source. The gram-negative cocci provides the gram-positive bacilli with biotin. A partial explanation:
*using the pathway, the baccili contains alls enzymes to break down atrazine into ammonia, but what role does the cocci play if any?

Answers

The gram-negative cocci use some of the ammonium that is released as a source of nitrogen. The gram-positive bacilli receive biotin from the gram-negative cocci.

What are an example of what auxotrophs are?

A bacterium is considered an auxotroph if it is unable to synthesis one or more crucial growth factors. As a result, it will not flourish in fermentation media deficient in these nutrients. For instance, when produced under strictly anaerobic circumstances, the yeast S. cerevisiae is auxotrophic for ergosterol and oleic acid.

What are auxotrophs used for?

Auxotrophs are used in a variety of biological processes, including the mapping of the biochemical pathways involved in the production of various proteins, the detection of mutagenic substances, and the introduction of various non-natural amino acids to replace natural amino acids in proteins.

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amino acids that are far apart in the amino acid sequence of an enzyme can be essential for the enzyme's catalytic activity. what does this suggest about the enzyme's active site? (select all that apply.) the enzyme's active site may be buried deep inside the enzyme's interior. this result suggests that the active site is made up of amino acid residues from different portions of primary sequence. the active site employs chemical species besides the side groups of amino acids. the amino acids are located at parts of the enzyme essential for its catalytic activity, such as at the active site or at sites controlling the enzyme's structure. the enzyme's active site may be located on the enzyme's surface.

Answers

The following options are suggested based on the given information:

The enzyme's active site may be made up of amino acid residues from different portions of the primary sequence.The amino acids are located at parts of the enzyme essential for its catalytic activity, such as at the active site or at sites controlling the enzyme's structure.The active site of the enzyme is likely to be composed of amino acid residues from different parts of the enzyme's primary sequence, rather than being confined to a specific region.

Enzymes are protein catalysts that are commonly used in biochemistry. An enzyme's active site is a region of the protein that binds to the substrate and catalyzes the chemical reaction. Enzymes are generally made up of amino acids, which are strung together to make a long chain. Proteins have a primary structure, which is the sequence of amino acids in the chain.

The amino acids that are far apart in the amino acid sequence of an enzyme can be essential for the enzyme's catalytic activity. This result suggests that the active site may be made up of amino acid residues from different portions of the primary sequence. The active site of the enzyme is likely to be composed of amino acid residues from different parts of the enzyme's primary sequence, rather than being confined to a specific region. Therefore, these amino acids are located in parts of the enzyme that are essential for catalysis, such as the active site or structural control sites.

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Which byproduct of fermentation is excreted in the sweat where it inhibits microbial growth?

A. Lactic acid

B. Interferon

C. Hypothalamus

D. Interleukins

Answers

Answer is

A: Lactic Acid

Lab Activity: Blood Type Pedigree Mystery


Mystery in Wexford


answer key

Answers

A pedigree can be used to depict the blood type inheritance pattern within a family. Depending on the question, multiple interpretations are made using blood type pedigrees.

The dominant IA and IB alleles outnumber the recessive I allele. IA is stronger than . The individual exhibits antigens of type A. IB dominant over . The person shows B type of antigens.

The recessive allele is Antigens are not present in the individual.

It is codominant for IA and IB. Both antigen types, A and B, are present in the individual.

Genotypes

A pedigree is a visual portrayal of a family's familiar history over the years.

This illustration makes use of many symbols and numbers to

It is typically employed to trace the lineage of a certain characteristic or passion.

In order to properly analyse a pedigree, we must know that,

Members of the family

Geometrical figures are used to portray people.

"Men are squares,"Circles are womenUnborned people are rhombic in shape.

People can be recognised by their names, numbers, or other characters. Phenotype/Trait Empty figures represent those who are healthy, normal, or unaffected. Those affected or mutated are shown as solid black figures. The generation Each file is identified with a roman number that denotes its generation.

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Renewable resources are those that can be synthesized by humans.truefalse

Answers

False.

Renewable resources are those that can be replenished naturally within a relatively short period of time, such as solar, wind, hydro, and geothermal energy, as well as biomass and certain types of agricultural products. They are not necessarily synthesized by humans.

Answer:

False

Explanation:

In horses, black coat is dominant to brown coat, and trotter is dominant to pacer. If you cross two parents that are heterozygous for both traits, what phenotype will occur with the probability of 1/16?
A- Brown, trotter
B- Black, trotter
C- Brown, pacer
D- Black, pacer

Answers

The phenotype that will occur with the probability of 1/16 is Brown, pacer (Option C).

What part of the RNA molecule predict more likely than DNA to
participate in enzymatic reactions

Answers

Answer:

xdfyttyfyfhdjffhfhhfghgfgjhggghxjjhg

NEED HELP ASAP. SEE IMAGE BELOW. BRAINLIEST + 100PTS!!

matching!!

Answers

Answer: C for The first one

A for the 2nd

D for the 3rd One

B for last

Explanation:

Answer:

Solar Energy = A
Wind Energy = D
Hydropower = C
Utility - scale = B

Explanation:

Apply the five concepts of Darwin's theory of natural selection to the evolution of the horse?

Answers

Answer:

Darwin's theory of natural selection explains how species evolve over time in response to changes in their environment. The evolution of the horse provides a good example of how these concepts work. Here are the five concepts of natural selection and how they apply to the evolution of the horse:

Variation: Natural variation exists within populations of horses, with some horses being taller, smaller, faster, or stronger than others.

Inheritance: These variations are passed on from one generation to the next through genetic inheritance. Horses with desirable traits are more likely to pass those traits on to their offspring.

Differential Survival: In any population, there is a struggle for survival, with some individuals being better adapted to their environment than others. For example, horses that can run faster or digest tougher grasses are more likely to survive and reproduce.

Reproduction: The horses that survive and reproduce pass on their advantageous traits to their offspring, increasing the frequency of those traits in the population over time.

Time: Over many generations, natural selection can result in significant changes in the population, leading to the evolution of new species. In the case of the horse, the gradual changes in hoof shape, tooth structure, and size over millions of years have led to the development of modern horses, zebras, and donkeys.

In summary, the five concepts of natural selection help explain how the evolution of the horse occurred over millions of years, resulting in the development of the modern equine species we see today.

which kind of fossilization process leaves behind a three-dimensional shape of an organism made out of minerals?

Answers

Answer:

Permineralization

Or

The kind of fossilization process that leaves behind a three-dimensional shape is Cast and Molds, & Petrified fossils.

2. Consider an organism that has two pairs of homologous chromosomes in each of its diploid (2n) somatic cells. How many chromosomes would the organism’s cell have during each of the following stages?

Answers

The number of chromosomes in an organism's cell varies depending on the stage of the cell cycle. However, in an organism with two pairs of homologous chromosomes in each of its diploid (2n) somatic cells.

During the different stages of the cell cycle, the number of chromosomes in the cell of an organism with two pairs of homologous chromosomes in each of its diploid (2n) somatic cells can be determined as follows:

Interphase: During interphase, the cell grows and prepares for cell division. At this stage, the cell has 2n = 4 chromosomes, as each homologous chromosome pair is replicated during the S-phase of interphase.

Prophase: During prophase, the chromatin condenses into visible chromosomes, the nuclear envelope breaks down, and the spindle fibers begin to form. At this stage, the cell has 2n = 4 chromosomes.

Metaphase: During metaphase, the chromosomes align at the equator of the cell and are attached to the spindle fibers. At this stage, the cell has 2n = 4 chromosomes.

Anaphase: During anaphase, the spindle fibers pull the chromosomes apart, and the sister chromatids move towards opposite poles of the cell. At this stage, the cell has 4n = 8 chromosomes, as the homologous chromosomes have separated into individual sister chromatids.

Telophase: During telophase, the nuclear envelope reforms around the separated chromatids, the spindle fibers disassemble, and the chromatin begins to decondense. At this stage, the cell has 4n = 8 chromosomes.

Cytokinesis: During cytokinesis, the cell divides into two daughter cells. At this stage, each daughter cell has 2n = 4 chromosomes, as at the beginning of the cycle.

The total number of chromosomes during the cell cycle ranges from 2n = 4 to 4n = 8.

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Priya says that behaviors cannot be adaptations because they are not inheritable. What is the BEST evidence that some advantageous behaviors may be linked to genes and reinforced through natural selection?

A.
Many deep-sea animals have large eyes that help them see better.

B.
The members of fish populations can have different behaviors.

C.
Most marine plants live only in the sunlight zone of the ocean.

D.
Members of some marine species live in clusters for protection.

Answers

Answer:

The answer is B.

Explanation:

The BEST evidence that some advantageous behaviors may be linked to genes and reinforced through natural selection is B. The members of fish populations can have different behaviors. Just like physical traits, behaviors can also be genetically determined and can be passed down through generations. The fish populations that have inherited behaviors that make them more successful in their environments are more likely to survive and reproduce, thereby passing those behaviors to their offspring. As a result, advantageous behaviors can be shaped by natural selection and become more prevalent in a population over time.

what factor can account for the relative rate of ca2 transport across the membrane as a function of ph?

Answers

One of the factors that can account for the relative rate of Ca2+ transport across the membrane as a function of pH is the presence of ion channels.

What are ion channels?

An ion channel is a protein that spans the cell membrane and forms a pore that allows the movement of ions across the membrane. The movement of ions through ion channels is usually regulated by the opening and closing of the channels.

In terms of calcium transport across the membrane, calcium channels play a crucial role in facilitating the movement of calcium ions across the membrane. These channels are selective for calcium ions and their activity can be modulated by changes in pH.

Calcium channels are activated by the binding of calcium ions to specific sites on the channel protein. At high pH, the number of negatively charged amino acid residues on the channel protein is higher.

This creates a more negative charge on the protein surface, which attracts positively charged calcium ions, increasing the rate of calcium ion transport.

Conversely, at low pH, the number of negatively charged amino acid residues is lower, resulting in a less negatively charged protein surface.

This repels calcium ions, decreasing the rate of calcium ion transport.

Therefore, the pH of the environment plays a crucial role in regulating the activity of calcium channels and thus the relative rate of Ca2+ transport across the membrane as a function of pH.

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Which of the following controls what enters or exits a cell?
· Cell wall
· Cell membrane
· Chloroplast
· Ribosomes

Answers

Ribosomes, chloroplast

Answer:

Cell membrane

Explanation: I learned all about what a cell is made up of in school.

mutations that occur in noncoding sequences may affect gene__

Answers

Mutations that occur in noncoding sequences may affect gene expression. For example, they can cause changes in the rate at which transcription occurs, the splicing of mRNA, or the production of proteins.

A mutation is a change that occurs in an organism's DNA sequence. Mutations can be caused by errors that occur during DNA replication or by external factors such as radiation, chemicals, and viruses. Mutations in noncoding DNA can have a significant effect on gene expression, although they do not alter the protein-coding sequence, because the DNA regulatory sequence plays a critical role in determining which genes are activated in which cells, mutations in these regions can have a significant effect on gene expression. Noncoding DNA consists of regions that are not involved in coding proteins.

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The food web models a forest ecosystem. Imagine a big flood severely reducing the earthworm and caterpillar populations.
For this question, choose THREE answers. How do you predict this event will impact the organisms in this food web?

Answers

When a large flood severely reduces the earthworm and caterpillar populations, it is predicted that the organisms in this food web will be affected in several ways, and the three impacts of this event on organisms in the food web include:  Reduced prey availability,  Shift in predator behavior, Impact on decomposer role.

Reduced prey availability: The reduction in earthworm and caterpillar populations will cause a decrease in available prey for the organisms that feed on them, such as birds and small mammals. This may lead to a decline in their populations due to increased competition for limited resources.

Shift in predator behavior: As the availability of earthworms and caterpillars decreases, predators that rely on them for food may start to shift their diet and target other organisms within the food web to meet their nutritional needs. This can cause changes in the interactions between species and may impact the overall balance of the ecosystem.

Impact on decomposer role: Earthworms play a crucial role in breaking down organic matter and maintaining soil fertility. With a decline in their population, the rate of decomposition in the forest ecosystem may slow down, potentially leading to a build-up of organic material and altering nutrient cycles. This could have consequences for plant growth and overall ecosystem productivity.

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Which organism provides evidence that matter and energy can be cycled through an ecosystem without sunlight?(1 point)

Answers

Answer:

A lanternfish on the alantic ocean.

Explanation:

I don't know what ur answer chocies are but i had this question a long time ago.

Explain the difference between oxidation and digestion.​

Answers

The opposite of oxidation is called reduction which occurs when there is a gain of electrons or the oxidation state of an atom decreases. While on the other hand, digestion is a process in which the food is broken down in order to get nutrients from it, which the body uses for energy, growth and cell repair.

In domestic swine there is a dominant allele that produces a white belt around the body. Suppose a heterozygous belted pig and solid pig mate. What is the probability they will produce a solid pig? (7 pts) 1. What is the dominant trait? What is the recessive trait? Dom: Rec: 2. What letter is assigned to the dominant and recessive trait? Dom: Rec: 3. In order to be belted, what 2 GENOTYPES could the offspring have? 4. In order to be solid, what GENOTYPE must the offspring have? 5. What are the parent genotypes you are crossing? 6. What is the ratio of probability of getting a solid pig from this cross?

NEED ASAPP

Answers

2.According to Chromosomal convention, a gene's dominant allele is represented by an upper case, whereas its gene mutation is depicted by a small letter.

Is the symbol H genetic or dominant?

Alleles are represented by an upper case (H) for dominant alleles and a tiny (lower case) form (h) for recessive genes. whereas a people of diverse backgrounds (also known as a hybrid) is one that possesses two distinct forms.

Is YY homozygotes or dominant?

The dominant autosomal genotype as yy (2 y alleles). White seeds are the morphology of this genotype. Each person produces different types of gametes depend on their genotypes. Hence, only spermatozoa with Y alleles can also be created by a YY genotype.

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1) what mind-controlling trick do horsehair worms use to convince their primary host to return to water?

Answers

Horsehair worms use a chemical called tryptophan to convince their primary host, usually an insect, to return to water. This chemical triggers the host to seek out water, where the worm can complete its life cycle.
Horsehair worms are known to control the mind of their host by making them return to water. The mind-controlling trick used by horsehair worms to convince their primary host to return to water is by producing chemicals that can alter the behavior of the host.

The horsehair worm is a type of parasitic worm that spends most of its life inside an insect host. The host can be anything from a grasshopper to a cricket. Horsehair worms are parasites that make the host want to go to water, in which the horsehair worm can then exit the host's body.

It produces chemicals that can alter the behavior of the host, making it return to water. This is due to the fact that horsehair worms reproduce in water. Horsehair worms are found all over the world, primarily in freshwater sources like lakes, ponds, and rivers. They can range in size from just a few inches to several feet in length.

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Which phrase describes nervous tissue?
A. Made up of several thick protective layers
B. Made up of strands and masses of neurons and glial cells
C. Covered with hairlike structures called cilia
D. Thin and flat, forming sheets

Answers

Made up of strands and masses of neurons and glial cells describes nervous tissue. The correct option is B

What is nervous tissue ?

Nervous tissue is a type of biological tissue that is composed of specialized cells called neurons and supporting cells called glial cells.

Therefore, Nervous tissue is composed of specialized cells called neurons and supporting cells called glial cells that work together to transmit electrical and chemical signals throughout the body. It is found in the brain, spinal cord and nerves and is responsible for controlling and coordinating many of the body's functions.

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Need help in science

Answers

Protein is the correct answer
The last one, Protein
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