How plasma membrane help maintain homeostasis

Answers

Answer 1

The Plasma membrane maintains the homeostasis throughout a cell because it filters what substances go in and out of the cell. If there is too much of a substance in a cell the… plasma membrane quickly disposes it and when there is not enough of a substance in a cell the plasma membrane lets the substance in. hope it helps

Answer 2

The plasma membrane maintains homeostasis by selectively allowing substances in and out of the cell while preventing the entry of harmful materials.

The plasma membrane plays a crucial role in maintaining homeostasis by acting as a selective barrier, controlling the passage of substances in and out of the cell. This selective permeability is vital for allowing essential nutrients to enter, waste products to exit, and for preventing harmful substances from affecting the cell's internal environment.

Moreover, the fluid nature of the plasma membrane enables proteins to move and function where needed, while the use of energy in the form of adenosine triphosphate (ATP) helps maintain ion gradients that are critical for cell function.

Cells that require larger amounts of specific substances have developed special transport mechanisms to ensure these materials are obtained from the extracellular fluids, often utilizing ATP to actively transport these substances against their concentration gradients.

The plasma membrane's flexibility is important for cells like red and white blood cells to change shape as they navigate through tight capillaries. Furthermore, the membrane's surface markers play a crucial role in cell recognition, important for tissue formation and the immune response's distinction between 'self' and 'non-self'.


Related Questions

What is/are converted into glucose and oxygen in the process of photosynthesis? A. water only B. light energy only C. carbon dioxide and light energy only D. carbon dioxide, water, and light energy

Answers

Alright well the Answer to this simply is glucose and oxygen even know it's not on your answer to the question

Well Hope this helps have a nice day :)

Answer: d

Explanation:

Mitosis maintains complex organisms by which of the following processes ?
A) the removal of waste from the body
B) the exchange of gas with the environment
C) the formation of sperm and egg
D) the healing of a cut after an injury

Answers

Final answer:

Mitosis maintains complex organisms primarily through the process of cell division to repair tissues and heal injuries.

Explanation:

Mitosis is an essential biological process by which cells in organisms divide to create identical daughter cells. While mitosis is crucial for several processes in the body, out of the options provided, it most directly relates to D) the healing of a cut after an injury. This is because when a cut or any other form of injury occurs, the body must create new cells to repair the damaged tissue, which is facilitated through the process of mitosis.

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Mitosis is essential for growth and healing in complex organisms. It ensures cells are duplicated accurately, particularly in the healing of injuries. Therefore, the correct answer is D) the healing of a cut after an injury.

Mitosis is a vital process for maintaining complex organisms through the production of body cells for growth and healing. It involves the duplication and segregation of chromosomes to ensure each daughter cell is identical to the parent cell. Among the given options, mitosis is directly related to healing of a cut after an injury, making option D the correct choice.

During mitosis, the following stages occur:

Prophase: Chromosomes condense and become visible.Metaphase: Chromosomes align at the cell's equator.Anaphase: Sister chromatids are pulled apart to opposite poles.Telophase: Nuclear membranes form around each set of chromosomes, followed by cytokinesis.

This process allows tissues to grow, repair, and replace damaged or worn-out cells, crucial for maintaining body functions and structure.

Your gut converts all augers that you eat into what monosaccharides

Answers

I would be happy to help you but you do not have a question for me to answer it is a true or false or a multiple choice if so write down the choices or write true or false. Once again I'd be happy to help but you need to be more specific on your question.


Discuss 2 ways in which efforts to protect species can lead to controversy

Answers

Protection of certain species is a very controversial topic. Many species like the mountain lion or jaguar that are near extinction in certain areas, are threats to human life. Another reason is that they could off set the food chain when they come back and be stonger than ever. For example the mountian lion could eat out the thriving white tail deer population which was struggling because of the mountain lion. And many people rely on white tail deer for food.

Hope this helped :)

Threats to human existence include numerous species, such as the mountain lion and the jaguar, which are on the verge of extinction in some regions.  

How to conserve species?

The question of protecting particular species is highly contentious. Another concern is that, if they return stronger than before, they can upset the food chain.

The mountain lion might decimate the abundant population of white-tailed deer, which was suffering as a result of the mountain lion. Additionally, a lot of people rely on white-tailed deer for sustenance.

There is a lack of technical competence in many nations that serve as habitat for endangered species. Increased capacity building would also be advantageous for local and international conservation organizations.

Therefore, the preservation of species might not be given top priority at the national level.

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how many different types of covalent bonds can 2 carbon atoms form with one another

Answers

Answer

Three types of covalent bonds, they can form

Explanation

Carbon has four valence electrons in the outer shell but it forms three covalent bonds with another carbon atom. i.e Single bond, double bond and triple bond.

The single bond is called Alkanes e.g. Methane, Propane etc. Double bonds are called alkenes e.g. Ethylene, Propylene etc.Triple bonds are called alkynes e.g. Ethyne, Propyne, Butyne etc.

What is the control group of the scenario

Answers

The plant with no fertilizer.
The plant that has no fertilizer will be your control group

Which symbols below represent the ions found in a glass of water

Answers

OH-, H+ are two answers

Answer:OH- and H+

Explanation:

In facilitated diffusion, do molecules move down their concentration gradient?

Answers

No, in facilitated diffusion molecules move against their concentration gradient. Facilitated diffusion is diffusion that requires an input on energy; moving against the concentration would require that energy.
Final answer:

Facilitated diffusion is a process where molecules move from an area of higher concentration to lower concentration with the aid of protein channels or carriers in the cell membrane.

Explanation:

Yes, in facilitated diffusion, molecules do move down their concentration gradient. This means that molecules will move from an area of higher concentration to an area of lower concentration. However, unlike simple diffusion which occurs directly across the plasma membrane, facilitated diffusion involves the use of protein channels or carriers within the cell membrane to help the passing of molecules. These proteins 'facilitate' the transport of molecules which would otherwise have difficulty penetrating the cell membrane due to their size or charge, hence giving it its name.

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How to rewrite the sentence with "different…from"?(Question 3)

Answers

Sandy likes chocolate cakes which is different from Mandy liking green tea cakes.
Answer: Sandy likes chocolate cakes, which is different from what Mandy likes.

Different from is the usual phrase. Traditionalists persistently avoid different than, particularly in easy examples, such as She are different from him. More-liberal scholars show that a sentence like It is not unusual for men as compared to it is for women clear and short, and writing it with another form could appear in a clumsy clunker.



What is soil profile?

Answers

Soil develops in horizontal layers.If we cut vertically into the earth ,the different layers become visible.A soil profile is a sample taken from the surface down through the soil . The horizontal layers of soil are called soil Horizons.

In fruit flies, the allele for vestigial wings is recessive to the allele for normal wings. In a generation of fruit flies, 18 males and 15 females with vestigial wings are produced, and 43 males and 44 females with normal wings are produced. Which of the following is the best conclusion you can make about the parents of this generation? Both parents were heterozygous for wing type. One parent was heterozygous for wing type and the other was homozygous with normal wings. Both parents were homozygous with normal wings. One parent had vestigial wings and the other was heterozygous for wing type.

Answers

Mendelian genetics one of the fundamental laws is The Law of Independent Assortment. The law states that parental traits are passed independently from parent to child. The recessive trait, vestigial Wings, occurs in an approximate phenotypic ratio of 1.3. In monohybrid Cross of heterozygous (Rr) parents the expected phenotypic ratio correlates with the given 1:3 result therefore l can conclude that the parents are both heterogeneous (Rr) for vestigial wings. Normal Wings-R, Vestigial Wings (Parent 1) Rr* Rr (Parent 2) R*R- RR- Normal Wings (Child 1) R*r Rr- Normal WIngs (Child 2) r * R - Rr- Normal Wings (Child 3) r*r- rr Vestigial Wings (Child 4) 1 Vestigial Wings: 3 Normal Wings

World wide nearly blank of the population live without clean water

Answers

more than 35% of the world population

11% of people worldwide or 790 million people. Hope this helps!


During the citric acid cycle, what happens to acetyl-CoA?

Answers

Acetyl CoA to CO. Acetyl CoA links glycolysis and pyruvate oxidation with the citric acid cycle. ... For each acetyl CoA that enters the citric acid cycle, two carbon dioxide molecules are released in reactions that are coupled with the production of NADH molecules from the reduction of NAD+ molecules.

Answer:

Acetyl-CoA donates two carbon atoms which eventually releases as carbon dioxide at the end of Citric Acid Cycle or Kerb Cycle.

Explanation:

Acetyl coenzyme A converts to oxaloacetate which then enters into the kerbs cycle or citric Acid cycle.  

In the first stage of Citric Acid Cycle (CAC), the two carbon atoms of acetyl group i.e acetyl CoA combine with four carbon atom of oxaloacetate molecule and produce citrate which is a six carbon molecule. Thus, in general it can be said that each acetyl group contribute two carbon atoms in CAC and by the end of CAC these two carbon atoms are released as carbon dioxide.  

In a protein molecule, the number of amino acid molecules may be as few as _____.

Answers

5

Hope this helps...please make brainliest!

What is the main difference between aerobic respiration and anaerobic respiration?

Answers

The main difference between aerobic respiration and anaerobic respiration is that aerobic using oxygen in the reaction, while anaerobic does not.

Even though both aerobic and anaerobic respiration releases energy, but their reactants and other products are completely different.
For example in human, in aerobic respiration, oxygen and glucose reacts to give out carbon dioxide and water; while in anaerobic respiration, which usually happens during exercise when oxygen is not enough, the muscle cells uses only glucose to produce energy and lactic acid.

Therefore, the main difference is where aerobic uses oxygen, and anaerobic don’t.

Answer:

Aerobic respiration requires oxygen to proceed, but anaerobic respiration does not.

Explanation:

What is the definition of bioaccumulation

Answers

Accumulation of substances such as pesticides or other chemicals in an organism

Bioaccumulation is the process by which certain harmful substances, such as chemicals or toxins, build up in an organism's body over time. These substances are often persistent environmental pollutants, meaning they do not break down easily and can remain in the environment for long periods.

1. Sources of Contaminants:

Environmental Pollution:

Pollutants such as heavy metals (mercury, lead), pesticides (DDT), and industrial chemicals (PCBs) can enter ecosystems through various means, including air, water, and soil pollution.

Dietary Intake:

Organisms can ingest these substances through their diet. For example, fish might absorb contaminants from water or from consuming smaller contaminated organisms.

2. Absorption and Storage:

Lipophilicity:

Many of these contaminants are lipophilic, meaning they dissolve in fats rather than water. This property allows them to accumulate in the fatty tissues of organisms.

Persistent Organic Pollutants (POPs):

These are chemicals that remain intact in the environment for long periods, become widely distributed geographically, accumulate in the fatty tissue of living organisms, and are toxic to humans and wildlife.

3. Trophic Levels and Food Chains:

Bioaccumulation:

Refers to the buildup of substances in an organism over time. For instance, if a small fish eats plankton that has absorbed a toxin, the toxin builds up in the fish's body. If a larger fish then eats many of these smaller fish, the toxin concentration increases further.

Biomagnification:

This is related to bioaccumulation and refers to the increasing concentration of these substances in organisms higher up the food chain. Predatory animals, including humans, can end up with high concentrations of toxins in their bodies by consuming prey that has already accumulated these substances.

4. Health and Environmental Impacts:

Toxicity:

Accumulated toxins can lead to health problems in organisms, such as reproductive issues, immune system damage, and increased susceptibility to diseases.

Ecosystem Disruption:

High levels of toxins in top predators can disrupt entire ecosystems, as it can lead to declines in population and changes in species dynamics.

Example

A well-known example of bioaccumulation is mercury in fish. Mercury released from industrial activities can end up in water bodies. Microorganisms convert this mercury into methylmercury, a toxic form that bioaccumulates in aquatic organisms. Small fish consume these microorganisms, larger fish consume smaller fish, and so on, leading to higher concentrations of mercury in top predators like tuna or sharks. When humans eat these fish, they can be exposed to harmful levels of mercury.

Understanding bioaccumulation is crucial for managing environmental health and developing policies to limit the release of persistent pollutants into the environment.

What is biodiversity

Answers

Biodiversity is the variety of living things in an environment. This includes plants, animals, fungi, and any other living things. It is important because all species depend on one another in order to survive. If an ecosystem does not have biodiversity, it will weaken and eventually become nonexistent. The larger the amount of biodiversity, the stronger the ecosystem.

Answer:

Biodiversity is the biological variety and variability of life on Earth. Biodiversity is typically a measure of variation at the genetic, species, and ecosystem level. Terrestrial biodiversity is usually greater near the equator, which is the result of the warm climate and high primary productivity

Explanation:

Biodiversity is the biological variety and variability of life on Earth. Biodiversity is typically a measure of variation at the genetic, species, and ecosystem level. Terrestrial biodiversity is usually greater near the equator, which is the result of the warm climate and high primary productivity



Although cellular respiration involves many steps, the whole process can be represented by a single equation.

A + B → C + D + E

Which substances would complete the equation that models the overall process of cellular respiration?

A: ATP, Carbon dioxide, glucose?

B: ATP, Oxygen, water?

C: Carbon dioxide, glucose, oxygen?

D: ADP, oxygen, water?

E: ATP, Oxygen, glucose?

Answers

Answer:

here the answer

stop looking at my tabs

Explanation:

The substances which would complete the equation that models the overall process of cellular respiration are:

A: glucose.

B: Oxygen.

C: Carbon dioxide.

D: water.

E: ATP.

Cellular respiration can be defined as a series of metabolic reactions that typically occur in cells so as to produce energy in the form of adenosine triphosphate (ATP).

During cellular respiration, high energy intermediates are created that can then be oxidized to make adenosine triphosphate (ATP). Therefore, the intermediary substances or products are produced at the glycolysis and citric acid cycle stage.

Basically, the whole process involved in cellular respiration can be represented or modelled by a single equation by using the following substances;

Glucose. Oxygen. Carbon dioxide. Water. Adenosine triphosphate (ATP).

[tex]Glucose + Oxygen ---> Carbon \;dioxide + Water + ATP[/tex]

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What must be done to ensure dna made in a laboratory is radioactive

Answers

The answer would be Incorporating radioactive nucleotides!!

Final answer:

To label DNA in a laboratory as radioactive, it needs to be synthesized using a radioactive isotope of phosphorous, ³²P, which is incorporated into the DNA strands during replication.

Explanation:

To ensure DNA made in a laboratory is radioactive, it must be labeled with a radioactive isotope. The most common isotope used to label DNA is radioactive phosphorous (³²P), as phosphorous is a component of the DNA backbone. When DNA synthesis occurs in the lab, radioactive nucleotides containing ³²P can be incorporated into the newly synthesized DNA strands, thereby tagging them with a radioactive label. For instance, cultured cells may be incubated with 3H-thymine, which is a radioactive base that cells will incorporate into thymidine triphosphate (dTTP), and then into DNA. This allows for tracking, measuring, or visualizing the DNA under specific experimental conditions.

Which part aerobic respiration requires oxygen in order to take place

Answers

Final answer:

Aerobic respiration requires oxygen specifically during the electron transport chain, which is the final stage of this process occurring in the mitochondria. Oxygen serves as the final electron acceptor, facilitating the production of ATP and water as byproducts.

Explanation:Oxygen's Role in Aerobic Respiration

The part of aerobic respiration that requires oxygen is the electron transport chain. This stage of cellular respiration is crucial for producing the bulk of ATP (adenosine triphosphate) and occurs after glycolysis and the Krebs cycle. In aerobic respiration, oxygen acts as the final electron acceptor in the electron transport chain. Without oxygen, the high-energy electrons from NADH and FADH2 could not be passed down the chain, which is essential for producing ATP. The oxygen attracts the electrons down the electron transport chain and in the process, combines with hydrogen ions to form water, which is a byproduct of this reaction. This process occurs in the mitochondria, the powerhouse of the cell, and is pivotal for extracting maximum energy from glucose.

For organisms living in environments rich in oxygen, such as humans, aerobic respiration is an efficient way to generate energy. We breathe in oxygen which is then transported to our cells for use in aerobic respiration. It's important to note that during intense activity when oxygen becomes scarce, our muscles may temporarily switch to anaerobic glycolysis, leading to the production of lactate and a lower yield of ATP.

What prevents a plant cell from bursting into hypotonic solution?

A) The presence of chloroplasts
B) cell wall
C) plasma membrane
D) transport proteins

Answers

I think is b but l don’t now

A solution that contains fewer solutes than the cell is said to be hypotonic. This indicates that the water will enter the cell by osmosis, which may result in the cell bursting. It can be prevented by the cell wall, hence option B is correct.

Plant cells can't explode because of their cell wall, nevertheless. The cell wall is a strong framework that encloses the cell membrane and gives the cell stability. It is constructed of cellulose, a substance that is extremely durable.

The pressure of the water that is entering the cell, the cell wall, keeps the cell from bursting. As, the cell can continue to operate normally even when in a hypotonic solution.

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What is a difference between prokaryotic and eukaryotic cells?

A.
Organisms with eukaryotic cells are always multicellular, but organisms with prokaryotic cells are not.
B.
Eukaryotic cells do not have membrane-bound organelles, but prokaryotic cells do.
C.
Prokaryotic cells do not have a nucleus, but eukaryotic cells do.
D.
Prokaryotic cells always have cell walls, but eukaryotic cells do not.

Answers

C is correct. prokaryotic cells DO NOT have a membrane bound nucleus or membrane bound organelles. Eukaryotic cells have a membrane bound nucleus and organelles which compartmentalize many functions.

yeah its c for sure bro

what must happen for a hypothesis to become a theory?

Answers

The hypothesis must be “proven.” A hypothesis is just a guess or a prediction of what may happen. If the hypothesis is proven to be correct by valid data, it can graduate to a theory. However, a theory can never be technically proven, only disproven or YET to be potentially disproven.

When a hypothesis is proven by an experiment then it becomes theory.

If enough evidence accumulates to support a hypothesis, it moves to the next step — known as a theory in the scientific method and becomes accepted as a valid explanation of a phenomenon.

Hypothesis is constructed before any applicable research has been done. A theory, on the other hand, is supported by evidence.

Why does the thermosphere have the highest temperature of all the atmosphere layers?

Answers

Because the thermosphere has the highest level of direct sunlight, its atoms contain the highest amount of energy.

The sun's radiation strikes it first.

(APEX)

Which biomolecules does your body use as a long term energy source?

Answers

carbohydrates

they are like fat but they are used in your body and hold water whitch makse people look bloted  

what are the components of soil formed during primary succession

Answers

Plants play a crucial role in carbon cycle because they?

Allow  

Carbon to enter the ecosystem through photosynthesis

How are humans affecting the balance of carbon in the atmosphere

Burning fossil fuels has increased

Where would an ecologist be least likely to go study primary succession?

a place that already has a ecosystem

What kind of natural disaster helps some forest communities by allowing some trees to release their seeds by cleaning away deadwood and by encouraging new growth?

A fire

Describe the structure of a mitochondrion.

Answers

The outer membrane is technically the skin and covers the organelle.

The inner membrane folds over many times and creates layered structures called cristae.

:)

Mitochondria are known as the powerhouses of the cell. They are organelles that act like a digestive system which takes in nutrients, breaks them down, and creates energy-rich molecules for the cell.

Mitochondria Structure

Mitochondria are shaped perfectly to maximize their productivity. They are made of two membranes. The outer membrane covers the organelle and contains it like a skin. The inner membrane folds over many times and creates layered structures called cristae. The fluid contained in the mitochondria is called the matrix.

The folding of the inner membrane increases the surface area inside the organelle. Since many of the chemical reactions happen on the inner membrane, the increased surface area creates more space for reactions to occur.

which of the following statements correctly describes the transfer of energy by water waves? A. energy is only transmitted at the crest of the wave B. energy is only transmitted at the trough of the wave c. energy is transmitted throughout the wave , but the energy increases as water depth increases. D. energy is transmitted throughout the wave, but the energy decreases as water depth increases

Answers

The correct statement about the transfer of energy by water waves is that energy decreases as water depth increases and is transmitted throughout the wave. Water particles move in circular orbits and the energy of a wave is influenced by its amplitude.

The statement that correctly describes the transfer of energy by water waves is D. energy is transmitted throughout the wave, but the energy decreases as water depth increases. This can be explained by the fact that water waves involve the movement of energy across the water's surface, while the actual water particles move in circular orbits. At the surface, the movement is greater and it diminishes with depth. This circular motion is a combination of transverse and longitudinal wave motions. As waves are primarily generated by wind, the energy transfer from wind to waves continues as long as the wind speed is higher than the wave speed. The amplitude of the wave affects its energy; the larger the amplitude, the more energy the wave carries.

Waves transmit energy, not mass. An object floating on the water surface will demonstrate this by bobbing up and down rather than moving significantly with the wave horizontally. This serves to illustrate that while the wave's energy moves, the mass of water itself does not travel with the wave over large distances.

In which 2 layers of the atmosphere does temperature increase as altitude increases? A Stratosphere and Thermosphere B Troposphere and Stratosphere C Thermosphere and Troposphere D Mesosphere and Troposphere

Answers

The answer is 100% D.

In the thermosphere and stratosphere, temperature rises with height. The temperature of the atmosphere's mesosphere and troposphere layers does rise with height. Thus, option D is correct.

What atmosphere temperature increase, altitude?

The mesosphere's temperature drops with altitude. Near the top of this layer, temperatures as low as -90° C (-130° F) are recorded in the Earth's atmosphere. The mesopause is the area where the mesosphere and thermosphere meet.

As you ascend, the temperature of the mesosphere drops. The mesosphere has a temperature range of -2.5 to -90 Celsius. Because the Earth's surface generates heat, the temperature drops as one ascends.

Therefore, Mesosphere and Troposphere layers of the atmosphere does temperature increase as altitude increases.

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What are the 2 functions of rhizoids?

Answers

Release digestive enzymes and absorb digested organic material.

Really hope this helps
[tex]<b>RHIZOIDS:-[/tex]

In fungi :-

 rhizoids are small branching hyphae that grow downwards from the stolons that anchor the fungus to the substrate, where they release digestive enzymes and absorb digested organic material.

In land plants:-
Rizoids  are trichomes that anchor the plant to the ground.

FUNCTIONS OF RIZOIDS:-
1. They absorb watee and neutrints from the soil .

HOPE IT HELPS YOU.
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