What are 3 ways biology affects the world around you?

Answers

Answer 1

Less and less habitat is available for other biology affects species on Earth as people divert more land and resources to their own interests.

How does biology impact the environment around us?

Biology is a branch of study that aids in our understanding of how the living world functions, evolves, and interacts with its numerous species, including humans. The standard of living has increased thanks to developments in biology in many fields, including medicine, agriculture, biotechnology, and many more.

What three aspects of biology impact your life the most?

The primary focus of biology research is life, first and foremost. Second, it offers a comprehensive, scientific explanation of how all living and nonliving organisms interact with one another. Thirdly, it reveals the diversity of life forms.

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Related Questions

Which is the end result of cytokinesis from a cell undergoing mitosis?
a. one cell that has two identical copies of DNA
b. one cell that has two different copies of DNA
c. two cells that have two identical copies of DNA
d. two cells that have two different copies of DNA

Answers

Answer: C two cells that have two identical copies of DNA

Explanation: Took the test!

the amount of energy made available by plants to other organisms is referred to as . group of answer choices photosynthesis productivity aerobic respiration primary productivity

Answers

It is the total amount of organic matter produced by the plants that is available to the herbivores in an ecosystem. NPP = GPP - Respiration losses Therefore, the given statement "the amount of energy made available by plants to other organisms is referred to as productivity" is correct.

The amount of energy made available by plants to other organisms is referred to as productivity. Productivity is the amount of biomass produced per unit area per unit time in an ecosystem. Productivity can be calculated through two types: Gross Primary Productivity (GPP) and Net Primary Productivity (NPP).Gross Primary Productivity (GPP): It is the total amount of organic matter produced by the plants through photosynthesis in a given period of time. GPP is the total photosynthetic rate of all the producers in an ecosystem. GPP

= NPP + Respiration losses Net Primary Productivity (NPP): It is the amount of organic matter produced by plants after accounting for the respiration losses from GPP. It is the total amount of organic matter produced by the plants that is available to the herbivores in an ecosystem. NPP

= GPP - Respiration losses Therefore, the given statement "the amount of energy made available by plants to other organisms is referred to as productivity" is correct.

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What are five 5 reasons why premarital sex is strongly discouraged?.

Answers

Premarital sex is Selfish Premarital sex is not romantic, Out of Curiosity, No parental guidance, Canine Love.

Premarital sex is always about the individual, never about the other. If it were, we wouldn't be putting our future marriage, the other person's health, their ability to become pregnant, the spread of illness, their emotional welfare, and their spiritual wellbeing at danger. When pre-marital sex occurs, it is always about me and only me.Love can be summed up in the term "gift" since it is "choosing what is best for the other, notwithstanding the cost to myself." Being a selfless gift for others is how we are called to love them. Therefore, it is not love when we make decisions that are selfish and bad for the other. By definition, premarital sex is ALWAYS an unloving act.Young people frequently begin having premarital sex out of curiosity. Without considering the potential results, they just want to have fun and fall in love at the same time. The majority of teenagers are naturally interested, especially during the adolescent years.Premarital sex is always a possibility for teenagers who are not as closely watched by their parents. Teenagers would have plenty of time to experiment with and practice premarital sex if both parents were employed full-time and there was no one else at home. When they get into marriage phase they will be guided by parents.Teenagers in general have a tendency to think and mature quickly. Teenagers believe they have developed and met their true love throughout adolescence because it is the period between childhood and adulthood then marriage. the person they want to spend their entire lives with. However, the issue typically starts at this point because the majority of teenagers don't engage in safe sex and have a propensity to become pregnant at a young age.

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our dna represents about 10 billion bytes of genetic information. roughly how many electrons would a typical computer use to process that much information?

Answers

A typical computer would use around 80 quadrillion electrons to process 10 billion bytes of genetic information in our DNA. To process 10 billion bytes of genetic information in our DNA, a typical computer would use a significant number of electrons.

To process 10 billion bytes of genetic information in our DNA, a typical computer would use a significant number of electrons. Let's break it down step-by-step:
1. One byte consists of 8 bits. So, 10 billion bytes would be 10 billion multiplied by 8, which gives us 80 billion bits.
2. Computers use transistors to process information. Each transistor can represent a bit as either a 0 or a 1. However, to manipulate the flow of electrons, a transistor requires a small number of electrons.
3. Let's assume that, on average, each bit requires a million electrons to be processed by a transistor.
4. Since we have 80 billion bits, we would need 80 billion multiplied by a million electrons.
5. This gives us a total of 80 trillion million electrons, which is equivalent to 80 quadrillion electrons.
So, a typical computer would use around 80 quadrillion electrons to process 10 billion bytes of genetic information in our DNA.
Please note that the number of electrons used may vary depending on the computer architecture, transistor design, and the efficiency of the processing technology. This answer provides a rough estimation to help understand the scale involved.

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what is the difference between monomers, polymers, and macromolecules​?

Answers

Answer:

Monomer is a word made of two parts, mono means one, and met means unit, so monomers are the building units of the polymers. Macromolecules are polymers, macromolecules in biology refers to the major categories of molecules that make the cell which are the proteins, carbohydrates, lipids and nucleic acids.

Cells can have two kinds of endoplasmic reticulum (ER): smooth ER, which has no ribosomes, and rough ER, which has ribosomes embedded in it’s membrane.what would happen if the rough endoplasmic reticulum in the cell of an organism lost all of it’s ribosomes?

Answers

Answer:   If the rough ER lost all of its ribosomes, the cells wouldn't be able to produce any protein.

Explanation:    

A single cell can contain around 10 million ribosomes. Without these ribosomes, cells would not be able to produce protein and would not be able to function properly. The cell would no longer be able to send proteins to the Golgi.

The following list is not in the correct order. The first three events are numbered correctly. Drag and drop the remaining events in order.

The following list is not in the correct order. The first three events are numbered correctly. Drag and

Answers

0. Normal blood and matrix sodium concentrations

,

1. Loss of sodium ions due to diarrhea

,

2. Given too much water

,

3. Increased matrix pressure

,

4. Net movement of free water into the matrix

,

5. Low sodium concentration

,

6. Abnormal neuron firing rate (neurons need sodium ions to function properly)

,

7. Seizures

PLZ HELP
The simple sugar made during photosynthesis is called _____.

starch
protein
glucose
chlorophyll

Will Mark Brainliest

Answers

Answer:

glucose

Explanation:

Answer:

C. Glucose

Explanation:

Which of these statements is true? A Places on the same longitude have the same day length on any given day. B The local time will be same for all places on the same latitude. C At 00 longitude, at some time, it would be noon to the east and midnight to the west. D The maximum time difference between any two places will be just below 24 hours.

Answers

Answer:

A Places on the same longitude have the same day length on any given day

Explanation:

Hope it helps

Is manned space travel worthwhile or is it better to use robots? Explain your reasoning

Answers

Answer:

in my opinion id say its better to use robots because they can capture everything and do the same thing as a man but even better.

Explanation:

please help meeeee thankyouuu

please help meeeee thankyouuu

Answers

1. A cinder cone is a steep conical hill of loose pyroclastic fragments, such as volcanic clinkers, volcanic ash, or cinder that has been built around a volcanic vent. The pyroclastic fragments are formed by explosive eruptions or lava fountains from a single, typically cylindrical, vent.

FORMS : Cinder cones are the simplest type of volcano. They are built from particles and blobs of congealed lava ejected from a single vent. As the gas-charged lava is blown violently into the air, it breaks into small fragments that solidify and fall as cinders around the vent to form a circular or oval cone.

2. Lava flows are streams of molten rock that pour or ooze from an erupting vent. Lava is erupted during either nonexplosive activity or explosive lava fountains.

FORMS : Lava forms when magma erupts from a volcano. As pressure is released gases, dissolved in the magma, bubble out so the composition of lava changes. Most lava flows are formed by the eruption of hot.

3. A shield volcano is a type of volcano usually composed almost entirely of fluid lava flows. It is named for its low profile, resembling a warrior's shield lying on the ground.

Lavas, particularly basaltic ones, come in two primary types: pahoehoe (pronounced 'paw-hoey-hoey") and aa (pronounced "ah-ah"). Both names, like a number of volcanological terms, are of Hawaiian origin. A third type, pillow lava, forms during submarine eruptions.
Answer
Volcano A - Cinder Cone Volcano
Volcano B - Composite Volcano
Volcano C - Shield Volcano

4. Cinder cones are known for their very violent, explosive, exciting eruptions. (A)

Composite volcanoes are explosive, towering giants. (B)

Shield volcanoes quietly produce broad, massive structures through lava flows. (C)

5. Composite volcanoes have very sticky and thick lava, which can make them very explosive when they erupt: gas bubbles that are trapped in the magma chamber find it hard to escape through the viscous rock. They can also spurt lots of hot ash and rocks into the air, making them extremely dangerous.



In the hydrosphere, increases in temperature cause ice to melt. The liquid water become less reflective than the ice, which
leads to an increase in temperature. What type of feedback loop is this, and why?

Answers

Answer: positive feedback loop

Explanation:

A positive feedback loop is a process in which an initial change in a system leads to a further change in the same direction, amplifying the initial change. In this case, an increase in temperature causes ice to melt which leads to an increase in temperature because the liquid water is less reflective than the ice, which means that the water absorbs more heat from the sun leading to further increase in temperature. This process amplifies the initial increase in temperature, creating a self-reinforcing cycle.

This is a positive feedback loop because it amplifies the initial warming rather than dampening it. This can lead to runaway warming and melting of ice, which can have severe impacts on the global climate and sea level rise.

This positive feedback loop is known as the ice-albedo feedback, where the albedo is the measure of the reflectivity of a surface. The ice has a high albedo (reflective) while the water has a low albedo (non-reflective), meaning that more heat is absorbed by the water than the ice, leading to a temperature increase.

Answer: It is a positive feedback loop because it responds to an increase in temperature with a change that further increases the temperature.

Explanation: Plato

What is the function of proximal convoluted tubule???

Answers

Answer:

The proximal convoluted tubule : avidly reaborsbs filtered glucose into perticular cappilaries so that is all reabsorbed by end of the proximal tubule.

What organism is most likely to use energy to transform atmospheric nitrogen into a more usable form?

A. humans
B. soybeans
C. paramecia
D. earthworms

Answers

Explanation:

nitrogen is converted from atmospheric nitrogen +N2) into usable forms ,such as NO2,- in a process known as fixation.

What are long bundles of contractile proteins found in sarcoplasm?

Answers

The long bundles of contractile proteins found in sarcoplasm are called muscle fibers or muscle cells.

These fibers are elongated cells that are specialized for contraction and play a crucial role in the movement and support of the body. The contractile proteins found in muscle fibers are actin and myosin, which are responsible for the shortening of the muscle fibers during contraction.

The sarcoplasm, which is the cytoplasm of the muscle cell, contains a large amount of these contractile proteins and other cellular components necessary for the proper functioning of the muscle cell, such as energy-rich molecules, enzymes, and ion pumps.

The arrangement and interaction of actin and myosin filaments within the muscle fiber determine the strength and speed of contraction, which is critical for the various movements of the body.

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What are the implications of compromised immune function as a result of exposure to chronic stress?.

Answers

The implication of a compromised immune system is that the individual may fall sick or die from infections.

What is the role of the immune system?

The immune system refers to the cells, tissues, organs and molecules found in the body which helps the body to fight infections and diseases.

A compromised immune system due to chronic stress will make a person prone to infections and diseases.

Therefore, the implication of a compromised immune system is that the individual may fall sick or die from infections.

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the echocardiogram demonstrates akinesis of the LV apex. which coronary artery is most likely affected by coronary artery disease?

Answers

The left anterior descending artery is most likely affected by coronary artery disease.

Coronary artery sickness is due to plaque buildup inside the wall of the arteries that deliver blood to the heart (referred to as coronary arteries). Plaque is made up of cholesterol deposits.

Coronary heart ailment cannot be cured however treatment can assist manipulate the signs and decrease the possibilities of troubles including heart attacks. remedy can encompass: way of life changes, which includes everyday workout and preventing smoking.

A very blocked coronary artery will cause a coronary heart attack. The classic symptoms and signs of a coronary heart assault encompass crushing chest pain or strain, shoulder or arm ache, shortness of breath, and sweating.

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Mice have two unlinked allele pairs that affect fur color. The table shows how allele pairs affect fur color. The term “agouti” describes fur with pigmentation that changes in each hair from the shaft to the tip, giving the fur a banded appearance. Mice with the aa allele pair are albino, regardless of the second allele-pair combination.


What is the probability of albinism in the offspring of a cross between two mice with AaBb alleles?


3/16

1/16

9/16

4/16

Mice have two unlinked allele pairs that affect fur color. The table shows how allele pairs affect fur

Answers

Answer: 4/16

Explanation:

The probability of albinism in the offspring of a cross between two mice with AaBb alleles is 4/16.

What is Probability?

This is an expression which tells how likely an event will occur. It is usually gotten by dividing the favorable number of outcomes by the total number of possible outcome.

The total number of possible outcome is 16 and the favorable number of outcomes (AaBb) is 4.

This means the probability is 4/16.

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2. Scientists predict the sun will give us energy for at least how much longer?
300 years
five billion years
five million
fifty million

Answers

five billion yearssss
five billon years sorry if am wrong

What are the reactants in the dark reactions ?

Answers

Answer: The reactants in a dark reaction are carbon dioxide (CO2) and water (H2O).

Explanation:

Dark reactions are a type of photosynthetic reaction.

Photosynthesis is the process by which green plants and some other organisms use sunlight to synthesize foods from carbon dioxide and water. Photosynthesis in plants generally involves the green pigment chlorophyll and generates oxygen as a byproduct.

Dark reactions occur in the grana of chlorophyll and get energy from ATP and NADPH.

The reactants are carbon dioxide (CO2) and water (H2O).

16. Which types of respiration are useful in increasing the amount of gas in a food product?
A. fermentation producing lactic acid only
B. fermentation producing carbon dioxide and ethanol only
C. aerobic respiration and fermentation producing lactic acid
D. aerobic respiration and fermentation producing carbon dioxide and ethanol

Answers

Answer:

D aerobic respiration and fermentation producing carbon dioxide and ethanol

Aerobic respiration and fermentation producing carbon dioxide and ethanol are useful in increasing the amount of gas in a food product. Therefore, option (D) is correct.

What is  aerobic respiration and fermentation?

Both aerobic respiration and fermentation are separate processes that living organisms employ to generate energy. Aerobic respiration is the more common of the two. The most effective method of respiration is known as aerobic respiration, but it can only take place in the presence of oxygen. Fermentation is a process that is less efficient, yet it can take place in the absence of oxygen.

Because fermentation generates less ATP for each molecule of glucose than aerobic respiration does, fermentation is a less efficient metabolic pathway. Fermentation, on the other hand, does not call for the presence of oxygen, whereas aerobic respiration does. Which process is used will be determined by how much oxygen is available. Aerobic respiration will take place if oxygen is available in the environment. Fermentation will take place if there is an absence of oxygen.

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The theory of endosymbiosis is based onA.evidence from the fossil record B.the knowledge that chloroplasts and mitochondria resemble bacteria C.similarities between chloroplasts and other organelles in animals D.the experiments in which bacteria were grown in plant cells and formed chloroplasts E.the knowledge that ribosomes are structures found in bacteria, plants, and animals

Answers

Endosymbiosis is the theory that mitochondria and chloroplasts originated as independent bacterial cells that were engulfed by another cell and began functioning as organelles within that cell.

Answer: B

Fur color in animals is frequently controlled by more than one gene. However, brown fur in rabbits is dominant over white fur. A white female gives birth to all white rabbits, even though the father had brown fur. Show how this is possible. (5 pts)
Genotype: Phenotype
(Punnett square pls)

Answers

It is possible for a white female rabbit to give birth to all white rabbits even if the father had a brown fur. This is largely due to chance.

Chance in genetics

Let us first consider the cross in question.

Brown fur is dominant over white fur. Assuming the brown allele is B while the white allele is b, a brown rabbit will have a genotype of either BB or Bb. A white rabbit, on the other hand, can only have a bb genotype.

This means that the genotype of the female rabbit will be bb. If the genotype of the brown fur father is BB:

   BB   x   bb

 Bb  Bb  Bb  Bb

All the offspring will have brown fur since B is dominant over b.

In other words, the genotype of the father rabbit can only be Bb.

   Bb    x    bb

Bb   Bb   bb   bb

Genotype ratio = 50% Bb : 50% bb

Phenotype ratio = 50% brown fur : 50% white fur

The chances of producing white fur offspring is 50% while that of brown fur offspring is also 50%. Given enough population of offspring, these chances will reflect.

However, with a small population of offspring, it is possible for either of the fur colors to be dominant. An all-white or all-brown fur offspring can result in a small population.

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Most plant leaves contain yellow and orange carotenoids as well as green chlorophylls. Why then are most leaves greenish

Answers

Answer:

Because the leaves contain a greater concentration of green chlorophylls than yellow and orange carotenoids.

Explanation:

Chlorophyll and carotenoids are both pigments found in the cells of organisms like plants. They have differing color range depending on which wavelength of light they absorb and which they reflect. For example, chlorophyll pigment are green because they reflect green light and absorb others.

According to this question, the leaves of most plants contain yellow and orange carotenoids in addition to green chlorophylls but leaves are mostly green. This is because there is an abundant of chlorophyll pigment than any other pigment in the leaves of most plants. Hence, GREEN COLOR conferred by chlorophyll dominates and masks the color appearance of the other accessory pigments like yellow and orange carotenoids.

What are the MAIN organs of the skeletal system?

A: Bones
B: Lungs
C: Heart
D: Muscles

Answers

Answer:

A.

Explanation:

The main organs of the skeletal system are bones, so A.

Answer: Bones and muscles

Explanation:

support and bind tissues and organs together. The skeleton serves as the main storage system for calcium and phosphorus.

which type of pyroclastic debris which may consist of munuscule shards of glass become tuff when litified'

Answers

Ash is a type of pyroclastic debris which may consist of munuscule shards of glass become tuff when litified.

D is the correct answer.

Tuff is a term used to describe any rock that is composed of deposits of consolidated or welded volcanic ash, tephra, and other volcanic debris. Tuffs can develop as a result of pyroclastic flows or surges or fallout (ash-fall). Pyroclastic flow deposits are also referred to as ignimbrites or ash-flow tuffs.

Pyroclasts, which are small volcanic elements that are expelled during explosive eruptions, accumulate to produce rock. In terms of origin, fragment size and form, chemistry, texture, and structure (such as how they are arranged in the final deposit), pyroclastic rocks can be very diverse.

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The complete question is:

which type of pyroclastic debris which may consist of munuscule shards of glass become tuff when litified?

A. Lahar debris

B. blocks

C. lava

D. ash

Explain- the 8 characteristics that are required for life

Answers

Answer:

All living organisms share several key characteristics or functions: order, sensitivity or response to the environment, reproduction, growth and development, regulation, homeostasis, and energy processing. When viewed together, these eight characteristics serve to define life.

Explanation:

Sensitivity or Response to Stimuli

Organisms can respond to diverse stimuli. For example, plants can grow toward a source of light, climb on fences and walls, or respond to touch. Even tiny bacteria can move toward or away from chemicals (a process called chemotaxis) or light (phototaxis). Movement toward a stimulus is considered a positive response, while movement away from a stimulus is considered a negative response.

Reproduction

Single-celled organisms reproduce by first duplicating their DNA. They then divide it equally as the cell prepares to divide to form two new cells. Multicellular organisms often produce specialized reproductive germline cells that will form new individuals. When reproduction occurs, genes containing DNA are passed along to an organism’s offspring. These genes ensure that the offspring will belong to the same species and will have similar characteristics, such as size and shape.

Growth and Development

All organisms grow and develop following specific instructions coded for by their genes. These genes provide instructions that will direct cellular growth and development, ensuring that a species’ young will grow up to exhibit many of the same characteristics as its parents.

Regulation

Even the smallest organisms are complex and require multiple regulatory mechanisms to coordinate internal functions, respond to stimuli, and cope with environmental stresses. Two examples of internal functions regulated in an organism are nutrient transport and blood flow. Organs (groups of tissues working together) perform specific functions, such as carrying oxygen throughout the body, removing wastes, delivering nutrients to every cell, and cooling the body.

Homeostasis

In order to function properly, cells need to have appropriate conditions such as proper temperature, pH, and appropriate concentration of diverse chemicals. These conditions may, however, change from one moment to the next. Organisms are able to maintain internal conditions within a narrow range almost constantly, despite environmental changes, through homeostasis (literally, “steady state”)—the ability of an organism to maintain constant internal conditions. For example, an organism needs to regulate body temperature through a process known as thermoregulation. Organisms that live in cold climates, such as the polar bear, have body structures that help them withstand low temperatures and conserve body heat. Structures that aid in this type of insulation include fur, feathers, blubber, and fat. In hot climates, organisms have methods (such as perspiration in humans or panting in dogs) that help them to shed excess body heat.

Energy Processing

All organisms use a source of energy for their metabolic activities. Some organisms capture energy from the sun and convert it into chemical energy in food; others use chemical energy in molecules they take in as food.

Evolution

As a population of organisms interacts with the environment, individuals with traits that contribute to reproduction and survival in that particular environment will leave more offspring. Over time those advantageous traits (called adaptations ) will become more common in the population. This process, change over time, is called evolution, and it is one of the processes that explain the diverse species seen in biology. Adaptations help organisms survive in their ecological niches, and adaptive traits may be structural, behavioral, or physiological; as such, adaptations frequently involve other properties of organisms such as homeostasis, reproduction, and growth and development.

Jason is swimming in his backyard pool and notices that sounds underwater are different than sounds above water. What best explains the difference in sounds?

Answers

Answer:

The different speed of the sound waves in water and in air.

Explanation:

Sound waves are defined as the mechanical waves that are resulted from the vibrations back and forth of the particles of the medium through which the sound is moving.

The speed of the sound is faster in water than in air. Sound travels much faster in water than in air. In air the speed of the sound waves is 343 meter per second while the speed of the sound waves in water is 1480 meters per second.

In the context, Jason who is swimming in his pool hears sound differently underwater and above the water because of the difference in the speed of the sound waves above the water and in water.

In a physiological system operating with positive feedback, _____.

Answers

Answer: homeostasis

Explanation: The kidneys excrete salt into the urine when dietary salt levels rise. the positive feedback's effector responses are in the same direction as the initiating stimulus rather than opposite it.

The cell membrane is composed of a phospholipid bilayer containing proteins and carbohydrates. Choose ALL of the statements that accurately reflect the
structure and its function.


1. Membrane proteins may be enzymes to catalyze metabolic reactions within the cell.

2. Membrane proteins may contain cholesterol to serve as identification tags for other cells.

3. Channel proteins allow a specific molecule to cross the cell membrane that is unable to cross the
phospholipid bilayer unassisted.

4. Receptor proteins bind to ligands, initiated cell signaling pathways.

5. Molecules that are large or nonpolar must use membrane proteins for transport

Answers

Answer:

option 1,3, and 4

-Membrane proteins may be enzymes to catalyze metabolic reactions within the cell.

-Channel proteins allow a specific molecule to cross the cell membrane that is unable to cross the phospholipid bilayer unassisted.

-Receptor proteins bind to ligands, initiated cell signaling pathways.

Explanation:

I did the assignment on USATestprep and got them right.

The statements accurately reflect the structure and function of the phospholipid bilayer are:

1. Membrane proteins may be enzymes to catalyze metabolic reactions within the cell.

3. Channel proteins allow a specific molecule to cross the cell membrane that is unable to cross the phospholipid bilayer unassisted.

4. Receptor proteins bind to ligands, initiating cell signaling pathways.

What are phospholipids?

Phospholipids are distinct compounds with many uses. They are common and serve as the primary building blocks of cellular membranes.

Phospholipids, which are arranged as lipid bilayers, are crucial for the composition and operation of biological membranes. These layers contain proteins and carbohydrates that help in the transport of material from and to the cell.

Therefore, the correct options are 1, 3, and 4.

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