If there is a change in the sequence of a DNA molecule, it may cause a different _______ to show up in the protein.
A) Codon
B) Protein
C) Amino acid
D) RNA molecule

Answers

Answer 1

Answer:

I think its Amino acid - C

Answer 2

Answer:

It i C

Explanation:


Related Questions

Which of the three types of viruses shown above would you expect to include a capsid(s)?
A) I only
B) II only
C) III only
D) I, II, and III

Answers

Since there is no specific mention or description of the three types of viruses shown above, I cannot determine with certainty which types would include a capsid.

However, it is important to note that capsids are a common feature among most viruses. Capsids are protein coats that enclose and protect the viral genetic material.

Therefore, it is reasonable to assume that all three types of viruses could potentially have a capsid.

The protein capsid provides the second major criterion for the classification of viruses. The capsid surrounds the virus and is composed of a finite number of protein subunits known as capsomeres, which usually associate with, or are found close to, the virion nucleic acid.

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Which type of anemia is a patient most at risk for following a total gastrectomy?

Answers

Iron deficiency anemia became the major cause of the anemia after the gastrectomy, and the megaloblastic the anemia with the vitamin B12 the deficiency was rare. In this study, the anemia was relatively frequent after the gastrectomy for early gastric cancer. Anemia was also detected shortly after the surgery and can increased during the follow-up period.

Iron deficiency anemia is the common type of the anemia — a condition in which the blood lacks of adequate healthy red blood cells. Red blood cells that carry oxygen to the body's and tissues. As the name that implies, iron deficiency anemia is cause due to insufficient iron

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somatic cells of chimpanzees contain 48 chromosomes. How many chromatids are present are:
a. anaphase of mitosis
b. anaphase I of meiosis
c. anaphase Ii of meiosis
d. G1 of mitosis
e. G2 of mitosis
f. G1 just prior to meiosis I
g. prophase of meiosis I

Answers

Anaphase of mitosis has 48 chromatids. Anaphase I of meiosis has 96 chromatids. Anaphase II of meiosis has 48 chromatids. G1 of mitosis has 48 chromatids. G2 of mitosis has 96 chromatids. G1 just prior to meiosis I has 96 chromatids.Prophase of meiosis I have 96 chromatids in the cell cycle of a chimpanzee.

a. Anaphase of mitosis: During anaphase of mitosis, the sister chromatids separate and become individual chromosomes. Since chimpanzees have 48 chromosomes, there will be 48 chromatids present in the anaphase of mitosis.

b. Anaphase I of meiosis: During anaphase I of meiosis, the homologous chromosomes separate and move towards opposite poles of the cell. Each homologous chromosome consists of two sister chromatids. Therefore, there will be 96 chromatids (48 homologous chromosomes x 2 chromatids per chromosome) present in anaphase I of meiosis.

c. Anaphase II of meiosis: During anaphase II of meiosis, the sister chromatids separate and move towards opposite poles of the cell. Since each chromosome only has one chromatid at this point, there will be 48 chromatids present in anaphase II of meiosis of the cell cycle of the chimpanzee.

d. G1 of mitosis: During the G1 phase of the cell cycle, the chromosomes are not yet replicated, so each chromosome has one chromatid. Therefore, there will be 48 chromatids present in G1 of mitosis.

e. G2 of mitosis: During the G2 phase of the cell cycle, the chromosomes have been replicated and each chromosome consists of two sister chromatids. Therefore, there will be 96 chromatids (48 chromosomes x 2 chromatids per chromosome) present in the G2 of mitosis.

f. G1 just prior to meiosis I: Just prior to meiosis I, the chromosomes have already replicated during the S phase of the cell cycle, so each chromosome consists of two sister chromatids. Therefore, there will be 96 chromatids (48 chromosomes x 2 chromatids per chromosome) present in G1 just prior to meiosis I.

g. Prophase of meiosis I: During prophase I of meiosis, the homologous chromosomes pair up to form bivalents or tetrads, which consist of four chromatids. Since there are 48 chromosomes in chimpanzees, there will be 24 bivalents or tetrads, resulting in 96 chromatids (24 bivalents x 4 chromatids per bivalent) present in prophase of meiosis I.

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About how often do you think eclipses happen?

Answers

Answer:

2 to 4 a year

Explanation:

Answer:

every one to two years

"Total solar eclipses occur once every one to two years but are only visible from less than half a per cent of the Earth's surface".

‼️‼️Help me out pls‼️‼️
Describe one human impact that is harmful to the environment AND one that is beneficial. Describe how each of these actions impacts biodiversity.

Answers

Answer:

one thing that is harmful is pollution. it kills lots of sea life and harming out air. a way we can pollute in a helpful way is to only throw things on the ground that is biodegradable and not plastic

Your colleague has collected some sediments from a mangrove swamp and then grows the bacteria from those sediments on an agar plate to determine the concentration of bacteria in those sediments.

a) Describe why the resulting bacterial concentration is an underestimate of the actual concentration of bacteria in those sediments.

b) State what method they should have used instead to more accurately determine the bacterial concentration.

Answers

From the question;

1) It may have been underestimated sue to visibility bias

2)  The method of direct microscopic count or direct cell count can be employed.

What about the bacteria?

On the particular agar medium employed, not all bacteria contained in the sediments may be viable or able to grow. Some bacteria might no longer be culturable or in a dormant state, which limits their capacity to grow into colonies on the agar plate. This viability bias may lead to the underestimate of the bacterial population by excluding a sizable fraction of it.

A direct microscopic count entails using a microscope to directly observe and count bacterial cells. Without the bias imposed by culture-based approaches, it provides a more thorough count of bacterial cells, including viable and non-viable cells.

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What would happen if sex cells were diploid?
A. They would require 2 other gametes to fuse with.
B. When they fused, the resulting embryo would have double the amount of DNA it should
have.
C. When they fused, the resulting embryo would have half the amount of DNA it should
have.
D. Sex cells are diploid.

Answers

If the gametes will be diploid then on fusing the resulting embryo would have double the amount of DNA it should have. The correct option is B.

What are gametes?

A gamete is an animal or plant procreative cell. Female gametes are known as ova or egg cells in animals, while male gametes are known as sperm.

Ova and sperm are haploid cells, with only one copy of each chromosome in each cell. A sperm and an ovum combine during fertilization to form a new diploid organism.

As in case of diploid gamete, the embryo will have double amount of DNA than normal and will create defect.

Thus, the correct option is B.

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can you identify the different ways in which populations grow? to review types of population growth, watch this bioflix animation: population ecology.

Answers

There are several different ways in which populations can grow. One common type of growth is exponential growth, which occurs when the population grows at an increasingly rapid rate over time.

Another type of growth is logistic growth, which occurs when the population reaches a carrying capacity and begins to stabilize. Additionally, populations can also grow through immigration (the movement of individuals into a population) or through births. Overall, there are many different factors that can influence population growth, and understanding these factors is important for predicting and managing population dynamics. To learn more about these different types of population growth, I recommend checking out the bioflix animation on population ecology.

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someone help me label this pls

someone help me label this pls

Answers

I don’t know the answer to your question but DONT CLICK THE LINK THE BOT GAVE YOU THEY CAN HACK YOU AND TRACK YOU

Carbon, hydrogen, oxygen, nitrogen, and phosphorus atoms can combine to form a nucleotide. Many nucleotides can combine to form a nucleic acid. Which sentence is true?
A. Nucleotides are monomers, and nucleic acids are macromolecules.
B. Nucleotides are atoms, and nucleic acids are macromolecules.
C. Nucleotides are monomers, and nucleic acids are proteins.
D. Nucleotides are macromolecules, and nucleic acids are monomers.

which one is A. B. C. or D.​

Carbon, hydrogen, oxygen, nitrogen, and phosphorus atoms can combine to form a nucleotide. Many nucleotides

Answers

Answer:

A. Nucleotides are monomers, and nucleic acids are macromolecules.

Explanation:

A nucleotide is a small molecule consisting of a nitrogenous base, a five-carbon sugar (ribose or deoxyribose), and one or more phosphate groups. Nucleotides serve as the building blocks or monomers of nucleic acids, such as DNA and RNA.

Nucleic acids are macromolecules composed of long chains of nucleotides that are joined by covalent bonds between the sugar of one nucleotide and the phosphate group of another. These chains can be very long, with DNA molecules consisting of millions or billions of nucleotides.

Therefore, nucleotides are the monomers, or building blocks, of nucleic acids, which are macromolecules made up of many nucleotides joined together.

Polytheism is the belief in one all-knowing God.

True or false​

Answers

Answer:

it's false

coz

Polytheism is the belief in or worship of more than one God.

Typically, methylation of nucleosome N-terminal tails leads to
a. relaxed packaging of the chromatin and increased transcription
b. activation of topoisomerase
c. removal of the protein components of the chromatin from the DNA
d. increased amounts of euchromatin relative to heterochromatin
e. tighter packaging of the chromatin and reduced transcription

Answers

E) Methylation of the N-terminal tails of nucleosomes typically results in decreased transcription and more tightly packed chromatin.

How does DNA accessibility change when histone tails are methylated?

Chromatin condensation may be facilitated by methylation of histone tails. In chromatin, acetylation of histone tails gives transcription access to DNA. Some types of chromatin modification can be transmitted to subsequent cell generations.

How does chromatin structure change when histones are methylated?

One of the most prevalent epigenetic regulations that plays a significant role in both developmental processes and diseases is histone methylation. By altering the chromatin architecture, the methylation status of lysine residues in histone proteins determines the active and silent states of surrounding genes.

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Explain the difference between Biophilia and Biomimicry. Use Integral Theory to support your answer.

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Explain the difference between Biophilia and Biomimicry. Use Integral Theory to support your answer.

Answers

Biophilia and biomimicry are two concepts that explore the relationship between humans and nature, but they differ in their focus and applications.

Biophilia is the innate human affinity and connection with nature. It suggests that humans have an inherent inclination to seek connections with the natural world. Biophilia acknowledges the positive impact of nature on human well-being, both physically and mentally. It emphasizes the importance of incorporating nature into our built environments and design to enhance our overall quality of life.

On the other hand, biomimicry is an approach that draws inspiration from nature's designs, processes, and systems to solve human challenges and create sustainable solutions. Biomimicry involves observing and learning from nature's patterns, structures, and functions and applying them to develop innovative technologies, materials, and strategies. By emulating nature's time-tested solutions, biomimicry aims to create more efficient, sustainable, and harmonious human-made systems.

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which organelle modifies sorts and packages proteins

Answers

the golgi apparatus

From the provided choices, which color of light does the pigment chlorophyll absorb the most?

A) green
B) Orange
C) blue
D) yellow

Answers

Answer: C) Blue

Chlorophyll a: This is the most abundant pigment in plants. Chlorophyll a absorbs light with wavelengths of 430nm(blue) and 662nm(red). It reflects green light strongly so it appears green to us.

so therefore, it’s blue

what are the three physical properties of minerals
PLEASE HELP ME

Answers

Color, hardness, scratch and fracture

Hardness: Hardness is a measure of a mineral's resistance to scratching or abrasion. It is often determined using the Mohs hardness scale, which ranks minerals from 1 (softest) to 10 (hardest). For example, talc has a hardness of 1 and is the softest mineral, while diamond has a hardness of 10 and is the hardest known natural material.

Luster: Luster refers to the way a mineral reflects light from its surface. The luster of a mineral can be described as metallic, glassy (vitreous), pearly, silky, greasy, or dull, among other terms. Luster helps to distinguish between different minerals and is an important aspect of their appearance.

Cleavage and fracture: Cleavage describes the tendency of a mineral to break along smooth, flat surfaces that correspond to planes of weakness within its crystalline structure. Minerals with good cleavage will produce smooth, flat surfaces when broken. Fracture, on the other hand, refers to how a mineral breaks when it does not exhibit cleavage. Minerals that fracture can break in irregular, uneven, or jagged patterns. Both cleavage and fracture provide insight into the atomic arrangement and bonding within a mineral's crystal structure.

Other physical properties that are used to identify minerals include color, streak, specific gravity, crystal form, and transparency, among others.

i’m not sure what goes where

im not sure what goes where

Answers

DNA replication occurs during te interphase before cell division and is the molecule duplication event. In the attached files you will find the image with the labels.

What is the eukaryotic DNA replication process?

Eukaryotic DNA replication is the process through which DNI molecule duplicates. This event takes place during the S stage of the interphase. So when the cell divides during mitosis or meiosis, each cell will get a complete set of chromosomes.

DNI replication is semi-conservative because each new molecule carries an original DNI strand and a new one. The fact that the new molecule is composed of an original strand makes it semi-conservative. The old existing strands are used to synthesize the new complementary strand.

The origin of the replication requires helicase enzymes to break hydrogen bonds and separate the two original strands.

The topoisomerase enzyme is necessary to release tension.

Other proteins are also needed to join the strains and keep them separated.

Once the molecule is opened, there is a region named replication fork. DNA polymerase makes the new nucleotides enter the fork and pairs them with the corresponding nucleotide of the original strand. Adenine pairs tymine, and cytosine pairs guanine.

DNA strands are antiparallel, and replication occurs only in 5'-3'direction. So one of the strands will replicate continuously, while the other strain will be formed by short fragments known as Okazaki fragments.

Primers are needed to make the DNA polymerase work. Primers are small units of RNA and are placed at the beginning of each new fragment.

In the attached files you will find the labelled image.

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im not sure what goes where

explain how animals are protected from the ultra violet rays of the sun​

Answers

Many animals have scales, feathers, fur, wool, and hair to shield them from the sun, just as people cover up with clothing, hats, and sunscreen to avoid sunburn and other skin-damaging effects, according to Cornell Center for Materials Research.

What animal can see ultraviolet radiation?

Many of the animals, including hedgehogs, dogs, cats, ferrets, and okapis (relatives of giraffes that dwell in the central African rainforest), have lenses that let some ultraviolet light through, indicating that they may be able to see in the ultraviolet, according to the research team.Only dogs that already have an eye condition or are prone to allergies will be harmed by UV rays. In particular, these include corneal diseases like pannus, but they can also include "Dry Eye," eye cancers, and cataracts.Olson and his team provide a number of explanations for why they shine. The creation of "visual noise" by UV reflection may serve as camouflage, confusing predators sensitive to UV light. Or it might be a technique for some species to eliminate toxins from their diet by storing the dangerous substances in their fur.The oil drop performs similar duties to a camera lens filter. As a result, birds are significantly more adept than humans at spotting changes between two similar hues in addition to seeing UV radiation.

The animals are protected from the ultra violet rays of the sun​:

Many animals have scales, feathers, fur, wool, and hair to shield them from the sun, just as people cover up with clothing, hats, and sunscreen to avoid sunburn and other skin-damaging effects, according to Cornell Center for Materials Research.

Whether to shave or not, Although it isn't a full barrier, their fur also helps protect their skin from UV rays. Instead of completely shaving off your dog's fur, settling for a less extreme cut or general de-shedding session could be wiser.

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structures in organisms that used oxygen well were

Answers

Organisms possess specialized structures for efficient oxygen utilization. Gills in aquatic organisms, lungs in terrestrial vertebrates, and tracheal systems in insects enable oxygen exchange. Birds have lungs and air sacs for efficient respiration. Hemoglobin in red blood cells transports oxygen. These adaptations optimize oxygen utilization for survival.

Structures in organisms that are well-adapted for efficient oxygen utilization include:

Gills: Gills are respiratory organs found in aquatic organisms such as fish. They have a large surface area and are composed of thin filaments or plates with numerous blood vessels. Gills allow for efficient extraction of oxygen from water by facilitating the exchange of gases.Lungs: Lungs are respiratory organs found in terrestrial vertebrates, including mammals, birds, and reptiles. Lungs consist of a complex network of bronchial tubes and millions of tiny air sacs called alveoli. The large surface area and the thin walls of the alveoli facilitate the exchange of oxygen and carbon dioxide between the air and the bloodstream.Tracheal System: Insects have a network of tubes called tracheae that deliver oxygen directly to cells. The tracheal system enables efficient oxygen transport throughout the body, allowing insects to have a high metabolic rate and perform activities such as flying.Spiracles: Spiracles are small openings found on the surface of some insects. They allow for the exchange of gases between the external environment and the tracheal system. By opening and closing the spiracles, insects can control the flow of air and regulate oxygen uptake.Lungs and Air Sacs (in birds): Birds have a unique respiratory system that includes both lungs and air sacs. Air sacs act as bellows, ensuring a unidirectional flow of air through the lungs, allowing for efficient oxygen uptake and carbon dioxide removal. This adaptation is particularly important for the high metabolic demands of flying.Hemoglobin: Hemoglobin is a protein found in red blood cells that binds to oxygen molecules. Its structure enables efficient oxygen transport in the bloodstream, ensuring oxygen is effectively delivered to tissues throughout the body.

These structures and adaptations are examples of how organisms have evolved to maximize their oxygen utilization, allowing them to thrive in their respective environments.

Fatty acid anions (e.g. soap) most commonly assemble into _____ in aqueous solution.

Answers

Fatty acid anions (e.g. soap) most commonly assemble into micelles in aqueous solution.

Fatty acids are the lipid structures that are the greatest source of energy for the body. The structure comprises of long chains of hydrocarbon with carboxylic acid at one end.  The fatty acid can be saturated or unsaturated. The most common fatty acids are: palmitic acid and stearic acid.

Micelles are the aggregates of lipids. It is a circular structure formed when lipids are mixed in water as the hydrophobic tails of the lipid come in close contact to avoid the  water molecules. The hydrophilic head region of the micelle remains on the outer side in contact with the water.

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_____ is the overall time between a request for system activity and the delivery of the response.

Answers

The overall time between a request for system activity and the delivery of the response is known as latency.

Latency refers to the delay or time lag that occurs between initiating a request or action within a system and receiving the corresponding response. It is a measure of the time it takes for data or information to travel from its source to its destination and for the system to process and generate a response. Latency can be influenced by various factors, including network speed, processing capabilities, system load, and distance between the requester and the responder.

In computing and telecommunications, latency is an important performance metric that affects user experience, particularly in real-time applications such as online gaming, video streaming, and interactive communication. Lower latency is generally desirable as it indicates faster response times and smoother interactions. However, certain factors, such as the physical distance between devices or the complexity of the system, can introduce unavoidable latency.

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Explain how light, depth, and temperature affect the number and type of organisms that live in each ocean zone

Answers

Light depth and temperature can affect the number and type of organisms that live in each ocean zone because, what their needs are depend of the section of water they are in. for example if you have a nocturnal fish, and you bring it into the light it will obviously not thrive in the environment because it is the opposite of what it needs. If you have a fish that likes warmer water rather than cold water, if you were to bring them into the cold water they would not thrive either because it is the total opposite of what their needs are. And the final example is for depth, if a whale is surfaced the whole time where is it going to get its food? A whale has a specific diet, and the food that they eat is primarily found in the deeper part of the ocean not near the surface. Bottom line if these needs are not meant for each part of the marine life in the ocean, they will not thrive nor survive.

which of the following hormones decreases protein synthesis and triggers a decrease in inflammation? a. Insulin b. Cortisol c. Testosterone d. Estrogen

Answers

The hormone that decreases protein synthesis and triggers a decrease in inflammation is cortisol. Cortisol is a steroid hormone that is produced by the adrenal glands in response to stress.

It plays a key role in regulating metabolism, immune function, and inflammation. When cortisol levels are high, it suppresses the immune system and reduces inflammation, which is why it is used as an anti-inflammatory medication. Protein synthesis is the process by which cells build new proteins, which are essential for growth and repair. Cortisol inhibits protein synthesis by reducing the number of amino acids available for building new proteins. This can lead to muscle wasting and other negative effects on the body. Insulin is a hormone that promotes protein synthesis by increasing the uptake of amino acids into cells. Testosterone and estrogen also play a role in protein synthesis, particularly in muscle growth and development.

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OA. Pill bugs, crickets, and grass
OB. Flies, crickets, and marigolds
C. Grass, pill bugs, and marigolds
D. Pill bugs, crickets, and flies

OA. Pill bugs, crickets, and grassOB. Flies, crickets, and marigoldsC. Grass, pill bugs, and marigoldsD.

Answers

An isopod, often known as a terrestrial crustacean, is a type of non-insect arthropod and is the scientific name for the pillbug, Armadillidium vulgare (Latreille).

What other names are given to pill bugs?

When I was a child, I named them pill bugs, while other people called them potato bugs. They may also go by the names tomato bugs, sow bugs, wood bugs, armadillo bugs, doodle bugs, roly-polies, carpenters, or boat builders in the United States and Canada.

Do pill bugs pose a threat?

There are no known risks that pill bugs bring to people. They don't spread disease or taint food. Due to its propensity to roll into a ball when disturbed, it is frequently referred to as a roly-poly.

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10. Which type of infection is usually fatal? a. Latent infection b. Persistent infection c. Acute infection

Answers

During an acute viral infection, symptoms are develop rapidly, which can be resolved quiclky by the immune reponse of the host or may lead to their death.

The answer is: C

Over the next 10 years, many of the UK’s nuclear power stations are expected to close.
Suggest how this may affect the future balance of sources of energy used for electricity production in the UK.

Answers

Answer:

Greatly affected.

Explanation:

This closing of nuclear power stations greatly affect the future balance of sources of energy used for electricity production in the UK because the burden of production comes on other sources such as production of electricity from fossil fuels, wind and solar radiation etc. If electricity is produced from fossil fuels so it leads to pollution of the environment whereas if the electricity is produced from wind and solar radiation, it is very costly but good for the environment.

Which elements or substances do you think are the most important for life as we know it? (Hint: What are the molecules that make up cells made of?)

Answers

Answer:

carbon is the main element

Explanation:

Organic compounds make up the cells and other structures of organisms and carry out life processes. Carbon is the main element in organic compounds, so carbon is essential to life on Earth. Without carbon, life as we know it could not exist.

Can someone explain to me about how the pereodic table is used

Answers

It’s the initials for the word

Answer:

So basically the rows are called periods, and the columns are called groups. The groups show that those elements have similar characteristics. There are also different families such as the noble gases and alkali earth metals. The elements are placed where they are because of the atomic number which is directly equal to the number of protons there are. The atomic mass is the number of both protons and neutrons. Also, even though the number of protons can be equal to the number of electrons, that isn't always the case. It could be an isotope which is basically for when an element or atom isn't neutral. Umm, so, I hope this helped. I know it's very long but if you need anything else just ask!! c:

HELP FOR MIDTERM STUDY GUIDE

During photosynthesis, what best describes the role of the compound with the chemical formula C6H12O6?
a. product that is not useful because of its low-energy chemical bonds
b. a product that is useful because of its high-energy chemical bonds
c. a reactant that is useful because of its high-energy chemical bonds
d. either a product or a reactant, depending on whether the cell needs to store energy or
release energy

Answers

It is b because of all the cells that produce the chemical bond

The virus best known for causing mononucleosis, which is also suspected of contributing to Hodgkin's disease, is called

Answers

Epstein–Barr virus (EBV)
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