You have 46 chromosomes in each of your somatic cells. If you cut your arm, how many chromosomes would be in each newly formed skin cell?

Answers

Answer 1
You would have .3 of a chromosome for each new cell
Answer 2

Newly formed skin cells, like all human somatic cells, would have 46 chromosomes.

The chromosomes are in each newly formed skin cell after an injury, such as a cut on the arm. In humans, somatic cells, which include skin cells, are generally diploid, meaning they contain a full set of chromosomes - one set from each parent, totalling 46 chromosomes. When your skin begins to heal after a cut and new skin cells are formed, these cells undergo a process called mitosis, which is how somatic cells divide to generate new cells identical to the original one. Therefore, each newly formed skin cell would also have 46 chromosomes.


Related Questions

The two main processes by which plant cells absorb,release, and use energy are

Answers

The two main processes by which plant cells absorb, release, and use energy are:

Photosynthesis and Respiration

Hope this helps!! 

Answer:

The answer are:

- Respiration.

- Photosynthesis.

Explanation:

Respiration allows plants to produce the necessary energy to perform their vital functions. Respiration of plants requires an exchange of gases between the plant and the environment, since when breathing, plants take oxygen from the environment and expel carbon dioxide (CO2) to the environment. Photosynthesis is a process that plants carry out to manufacture their own food from various elements that they find in their environment, such as sunlight, carbon dioxide and water, where inorganic materials become organic. This process serves for the development and growth of the plant.

Occasionally asexual reproduction can cause undesirable proliferation of an organism.
True
False

Answers

that is true but only bc of mutation 

Answer: True

Asexual reproduction is a process in which single parent organism produces offsprings.  This occur in simple organisms like bacteria, prokaryotes and fungi where a single cell breaks down into two or more numbers of daughter cells. The asexually reproduction can cause undersirable proliferation because the environment will not be able to sustain such a undesirable  increase in number of offsprings and ultimately offsprings will die.

the prokaryotic cell cycle is different from the eukaryotic cell cycle because in the prokaryotic cell cycle
a. there is no growth phase
b.cell division does not involve division of the cell nucleus
c. DNA does not replicate
d. the cytoplasm and DNA are divided between two new cells.

Answers

I say b.cell division does not involve division of the cell nucleus. A prokaryotic cell does not have a nucleus.

The prokaryotic cell cycle is different from the eukaryotic cell cycle because in the prokaryotic cell cycle cell division does not involve the division of the cell nucleus.

What do you mean by Cell cycle?

The cell cycle may be defined as the process a cell goes through each time it divides. The cell cycle consists of a series of steps during which the chromosomes and other cell material double to make two copies.

Prokaryotic cell lacks a nucleus and well-defined cell organelles. Due to the deficient nucleus, a prokaryotic cell never involves the nucleus in its division.

Therefore, the prokaryotic cell cycle is different from the eukaryotic cell cycle because in the prokaryotic cell cycle cell division does not involve the division of the cell nucleus.

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which of the following best illustrates the role that gravity played in the in the formation of the solar system? (A) gravity removed excess gas and dust from the cores of the planet (B) gravity pulled particles of dust and gas together to form planes (C) gravity caused the nebula to cool enough for planets to form (D) gravity allowed the nebula to expand and move outward



Answers

Answer:

(B): Gravity pulled particles of dust and gas together to form planets.

Explanation:

I took the test (030)

Answer:

Option B. Gravity pulled particles of dust and gases together to form planets.

Explanation:

The definition of gravity in relation to astronomy can be compiled as the force by which planets and other heavenly bodies attract objects towards its center.Our solar system was formed 4.5 billion years ago due to a stellar explosion called supernova which scattered gases and dust into space.Some of the bodies with a larger mass and potential gravitational pull must have attracted particles, dust, material, and gases to form planets with an atmosphere revolving around the central star i.e., Sun.

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The name dinitrogen tetroxide tells you that this compound contains

Answers

2 nitrogen and 4 oxygen

Explain the interaction between the central nervous system and the peripheral nervous system.

Answers

The central nervous system (CNS) is composed of the brain and the spinal cord. The peripheral nervous system (PNS) is composed of all of the peripheral nervesthat connect all of the parts of the body with the CNS. List three general functions of the nervous system.

The crucial regulatory, controlling and communicating system of the body is called the nervous system. It has an important role in acquiring and giving responses to a stimulant.

How do Central nervous system and PNS interact?

The central nervous system comprises of the brain and spinal cord while the PNS have nerves spread throughout the body parts.

The PNS connects the central to the body tissues, organs and skin structures with the help of nerves. The central nervous system receives information from the PNS via the nerves and helps in transmitting the response to the action received.

Therefore, PNS and central nervous system are interrelated to each other for functioning.

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What is an important function of the mitochondria?

Answers

it produces energy in order for a process to occur.

Explanation:

Hi!

Let's solve this!

Mitochondria with organelles present in eukaryotic cells. In them, cellular respiration occurs, a process by which carbon dioxide is converted into oxygen. In addition, the Krebs cycle that is part of cellular respiration occurs.

When NADH passes its electrons into the Electron Transport System, NADH is chemically:

reduced

enzymized

hydrolysed

oxidized

Answers

Answer:

Option D, oxidized

Explanation:

The NADH gets oxidised when it passes its electrons into the Electron Transport System

Oxidization is a process in which one element or compound loses its electron to other chemical element or compound thereby itself getting oxidised and reducing the other one (the one who gains the electron).

Here in the electron transport system, the NADH loses or donates its electron to the Electron Transport System thus chemically it gets oxidized.

Hence, option D is correct

Which of the following is NOT true about ATP?


glucose breaks down into ATP without any initial energy input. (It just spontaneously happens)


Energy is stored in the bonds of the phosphate group


cells make and use ATP


ferns, slime molds, dogs, and fish all use ATP for energy in the cells

Answers

A option i.e; glucose breaks down into ATP without any initial energy input. (It just spontaneously happens) does not make sense to make while all other are correct. So, the best option will be the A. because A option is not true about ATP.

Pure water is neutral. What is the appropriate justification for this? A. Water has equal H+ and OH- ions, making its pH 7, which is considered a neutral pH. B. Water has more H+ than OH- ions, making its pH 5, which is considered a neutral pH. C. Water has more OH- than H+ ions, making its pH 8, which is considered a neutral pH.

Answers

The correct solution for this is explained the first option. Since water has an equivalent amount or number of H ions and OH ions, pure water itself is not slightly acidic nor basic. This equality of ions, causes the pH of water to be around the mid point of the pH scale which goes from 0 - 14, and thus is 7. This is a neutral pH.
Final answer:

Pure water is neutral because it has equal concentrations of H+ and OH- ions, resulting in a pH level of 7, which is considered neutral on the pH scale.

Explanation:

The justification for pure water being neutral is A. Water has equal concentrations of H+ and OH- ions, which results in a pH level of 7. The pH scale ranges from 0 to 14, with 7 being considered neutral. Lower than 7 is acidic and higher than 7 is basic or alkaline. Therefore, since water has a pH of 7, it's considered neutral.

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Biogeochemical cycles recycle water and natural elements throughout the biosphere to ensure that organisms do not run out of these substances. Thiobacillus denitrificans is a specialized species of bacteria that obtains its energy from carbon dioxide and inorganic compounds such as nitrogen in its environment. It is used in bioremediation of groundwater that contains excess nitrate. How does Thiobacillus denitrificans help bioremediate groundwater? nitrification denitrification nitrogen fixation decomposition

Answers

Final answer:

Thiobacillus denitrificans helps in the bioremediation of groundwater by performing denitrification, converting excess nitrates into nitrogen gas and reducing nitrate pollution.

Explanation:

Thiobacillus denitrificans plays a crucial role in the biogeochemical cycles by performing denitrification. This specialized species of bacteria helps in bioremediating groundwater by converting excess nitrates (NO₃⁻) into nitrogen gas (N₂), effectively reducing nitrate pollution. Denitrification is an essential process in the nitrogen cycle as it prevents the accumulation of nitrates which can lead to eutrophication of aquatic systems and groundwater contamination. Denitrification by Thiobacillus denitrificans demonstrates the beneficial application of bacteria in removing pollutants from the environment, supporting sustainable agriculture and ecosystems.

If a person with o blood type produces offspring with a person with b blood type, then what percentage of their offspring will be type o in the best case scenario?

Answers

Answer:

In humans, blood group is determined by three alleles [tex]I^{A}[/tex], [tex]I^{B}[/tex], and [tex]i[/tex].

[tex]I^{A}[/tex] and [tex]I^{B}[/tex] are co-dominant whereas [tex]i[/tex] is recessive to other two.

Thus, if a person with blood group O produces offspring with blood group B then the other parent must contain [tex]I^{B}[/tex] allele.

The genotype of other person can be [tex]I^{A}I^{B}[/tex], [tex]I^{B}I^{B}[/tex], or [tex]I^{B}i[/tex].

There is only one condition in which the person can have offspring with blood group O that is, when the other parent is [tex]I^{B}i[/tex].

In this condition, the probability of an offspring to have blood group O is 50%.

In other conditions, the probability of an offspring to have blood O is 0%.

Final answer:

In the best case scenario where the type B parent is heterozygous (BO), there is a 50% probability that the offspring produced with a type O blood person (ii) will have type O blood. If the type B parent is homozygous (BB), all offspring would be type B with no possibility of having type O blood.

Explanation:Offspring Blood Type Probability

When a person with type O blood (genotype ii) produces offspring with a person with type B blood, the offspring's blood type depends on the genotype of the type B parent. Provided the type B parent is heterozygous (genotype BO), which is the best case scenario for offspring to have type O blood, the possible genotype combinations would be Bi and iO.

The offspring would have a 50% chance of inheriting the O allele from the type O parent (genotype ii) and the O allele from the type B parent (BO), resulting in a genotype of type O (ii) for the offspring. Consequently, the offspring would have a 50% probability of having type O blood.

If, however, the type B parent is homozygous (BB), then all offspring would inherit one B allele and would not have the chance of being type O. Thus, they would all be type B.

If an area has all the wolves that it can support, the wolf population has reached its ______?

Answers

The wolf population  in that area has reached its carrying capacity. 

If an area has all the wolves that it can support, the wolf population has reached its carrying capacity.

Carrying capacity refers to the maximum number of individuals that a population has in a given area.

Carrying capacity depends on different types of limiting factors such as food availability.

Limiting factors can be biotic (organisms) and abiotic (non-living part) factors.

In conclusion, if an area has all the wolves that it can support, the wolf population has reached its carrying capacity.

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Over the last several decades, the scientific community has gathered a large amount of information regarding genetics and genetic variation. What are two main sources that lead to increased genetic variation?(((((Both answers must be selected.))))) A) Selective breeding, B) Gamete mutations, C) Recombination, D) Genetic drift

Answers

Answer:

B) Gamete mutations, C) Recombination

Explanation:

Any random changes in the DNA of gametes are called as gamete mutations. These mutations are transmitted to the next generation via gametes and thereby the genetic variations are increased.

Recombination is the production of new gene combinations. Crossing over during meiosis I of gamete formation add new gene combinations to gametes. Random fertilization of these gametes add even more genetic variations to the progeny.  

Why is it important for the cells of multicellular organisms to undergo mitosis?

Answers

it is important for growth of living organism so mittosis occurs for growth in an organism

Which of the following is not a contributing factor to the declining Atlantic cod population?
A.) Destruction of marine habitats
B.) Increasingly efficient fish-harvesting technologies
C.) International treaties reducing competition among fishing fleets
D.) Decreases in ocean temperatures

Answers

B is the incorrect statement, and therefore the correct answer.

The hypothesis that continents have moved slowly to their current locations is called

Answers

Continental Drift- The hypothesis that continents have moved slowly to their current locations. 

At one point the continents formed one large continent called Pangea. 

How to separate genomic DNA and plasmid?
...?

Answers

If you want to isolate plasmid DNA, you crack your cells open and carry out a miniprep, trying very hard not to get any contaminating genomic DNA in your sample. If you want genomic DNA, you crack your cells open in a different way and try to isolate as much of the stuff as possible.


I hope my answer has come to your help. Thank you for posting your question here in Brainly. We hope to answer more of your questions and inquiries soon. Have a nice day ahead!

Which organelle supplies the cell with energy?
a. ribosome
b. cytoplasm
c. nucleus
d. mitochondrion?

Answers

Answer: Mitochondria.

Explanation:

Mitochondria is a double membrane bound organelle found in the cytoplasm of the cell. The main function of mitochondria is to produce energy currency ATP (adenosine triphosphate) which is used by every cell of the body to perform metabolic activities.

The energy production takes place by the process known as cellular respiration in the presence of oxygen by the breakdown of glucose.

Final answer:

The mitochondrion is the part of the cell that supplies energy. It is often referred to as the 'powerhouse of the cell' as it turns glucose into ATP, the cell's energy-carrying molecule via cellular respiration.

Explanation:

The organelle that supplies the cell with energy is the mitochondrion. Among your options, ribosome is responsible for the synthesis of proteins, the cytoplasm hosts various cell processes and the nucleus contains the cell's genetic material. However, it's the mitochondrion, often described as the powerhouse of the cell, that provides the energy. It does this by breaking down glucose into ATP (adenosine triphosphate) through a process called cellular respiration. ATP is the molecule that carries energy within cells and is vital for cell functions.

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what is the knee cap called

Answers

Answer:

The knee cap is called Patella.

Explanation:The patella is a bone that is flat and circular-triangular in structure It is attached with the femur (thigh bone) and protects and covers the inner surface of the knee.A newly born human baby consist of a petella that is made up of soft cartilage, after attaning four year of age it changes to bone(patella) and develops into bone after 4 year of age.It protects anterior(inner) knee from direct impact.

Result: knee cap is called Patella.

DNA is coiled into chromosomes in a cells

Answers

Nucleus! I hope I helped :)

The right answer is in a cell's nucleus.

The nucleus contains the DNA (deoxyribonucleic acid) on which is encrypted the genetic information: the chromosomes.


When the cell is not in a fission period, the DNA is pelletized and the chromosomes can not be seen. On the other hand, as soon as it enters the period of fission, the DNA unfolds and the chromosomes are clearly visible in batonets, so that they can be doubled.

Muscles are attached to bones by _____.
marrow
tendons
ligaments
skin

Answers

The answer to your question is Tendons.

Tendons! Hope this helps :)

which of the following is an organic molecule? A. LiF B. C3H8 C.SO2 D.H2O

Answers

I believe the answer is B. C3H8

Answer:

C3H8

Explanation:

how does a cell react in salt water

Answers

If a higher concentration of salt is placed outside of the cell membrane, the water will leave the cell to bond with it. The loss of water from this movement causes plant cells to shrink and wilt.
If unprotected cells are exposed to salt, or a salt water solution where the concentration of the salt is greater than the concentration in the cellular fluid; the water in the cells will be drawn out, "shrivelling" the cell.

(Re-post)

During the teen years, our self-esteem usually
stay the same
increase
decrease
increases, then decreases rapidly

Answers

Increase, then decrease rapidly
During the teen years, for most, the self-esteem usually increases (gaining confidence) and then decreases rapidly (social media, comparing oneself to others, etc).

Which of the following best describes the fate of energy in ecosystems?
a. It will ultimately be recycled back into the ecosystem.
b. It flows from secondary consumers to primary consumers.
c. It enters most ecosystems in the form of sunlight.
d. It flows through and is used by ecosystems.

Answers

best describes the fate of energy in ecosystems It flows through and is used by ecosystems.

Answer:

d.

It flows through and is used by ecosystems.

Explanation:

write a paragraph explaining the relationship between detritivores and decomposers in the ecosystem.

Answers

That's, easy I would look up the definitions and that should give you the answer

How does natural selection support the theory of evolution?

a) Natural selection explains how the changes in life forms that evolve over millions of years take place over shorter periods of time.

b) Natural selection explains how certain life forms are able to survive and reproduce after changes in their environmental conditions.

c) Natural selection comes from the collection of fossil record data that shows how life forms.

Answers

b) Natural selection explains how certain life forms are able to survive and reproduce after changes in their environmental conditions.

Hope this helps!

The Calvin cycle happens in the ___________ of the chloroplast.

Answers

Light Independent Reaction:)


What is the function of an antibody in an antigen-antibody response?









A.

to remove the DNA of the antigen








B.

to enclose the antigen in a protective shell








C.

to help immune cells identify and destroy a pathogen








D.

to ingest and digest the antigen

Answers

C.) to help immune cells identify and destroy a pathogen

Hope this helps!
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