Proteins and cholesterol make up most of the cell membrane.
True
False

Answers

Answer 1

Answer:

TRUE!!!!!!!!

Explanation:

Answer 2

Answer:

true

Explanation:


Related Questions

fungus cell is a prokaryotic cell. True or false?



Please help please thank u

Answers

The answer is false.

How does being small help cells survive?

Answers

Cells are small in size because it is very important that they have a surface area to volume ratio that would allow adequate intake of food nutrients, as well as the excretion of waste materials.

A cell can be defined as the fundamental (basic), functional, structural and smallest unit of life found in all living organisms.

According to cell type, living organism are mainly divided into two (2) main groups and these are;

Unicellular organisms: these are living organisms that are single-celled i.e they have a single cell.Multicellular organisms: this category of living organisms have many (multiple) cells.

It is very important that the surface area to the volume ratio of cell is small, so as to allow enough materials such as food, move through the cell membrane quickly for the survival of the cell.

Hence, cells are small in size because it is very important that they have a surface area to volume ratio that would allow adequate intake of food nutrients, as well as the excretion of waste materials.

In conclusion, the smaller a cell, the larger would be its surface area to volume ratio.

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Which of the following statements is true about sensory cells in the gustatory system? Sensory cells migrate to the edge of taste buds to die after a month. Sensory cells last a very long time and are renewed about once a year. Sensory cells are located near the center of the taste bud when renewed. Sensory cells last approximately two weeks and are renewed frequently.

Answers

Answer:

Sensory cells last approximately two weeks and are renewed frequently.

Explanation:

Sensory cells last approximately two weeks and are renewed frequently. The correct option is D.

What is gustatory system?

The gustatory system is the sensory system in charge of taste and flavor perception.

The gustatory system in humans is made up of taste cells in the mouth (that also detect the five texture and flavor methodologies: salty, sweet, bitter, sour, and umami), several cranial nerves, and the gustatory cortex.

Sensory cells are cells with receptors on their surface that detect information (such as sounds, light, touch, smell, taste, and temperature). This information is transmitted from sensory cells to the brain via nerves.

Taste receptor cells function similarly to neurons, but, like epithelial cells, they are rapidly and continuously renewed throughout adulthood.

Sensory cells have a lifespan of about two weeks and are constantly renewed.

Thus, the correct option is D.

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Which of the following is an example of an invasive species?


Need help immediately HELP!!!!!

Answers

Notable examples of invasive plant species include the kudzu vine, Andean pampas grass, and yellow starthistle. Another example would be a fruit covered with fruit fly eggs

Invasive species are the species which come and occupy the area and the habitat is lost when once they invade the habitat. Some of the examples of invasive species are asian carp and cane toad with many more.

What causes eutrophication ?

When one species that invade the habitat and ends up the habitat of that particular area that is called as eutrophication and with that what happens is that the organisms which are living there ends up.

Ten most common of the world's invasive species are written as following :

1. Asian Carp.

2. Zebra Mussel

3. Cane Toad

4. European Starling

5. Kudzu

6. Asian long-horned beetle

7. Small Indian mongoose

Water hyacinth that is the terror of Bengal was once a decorative plant but when it was introduced to the water resources then at that time they multiplied to this extent that the species got automatically distinct from the water bodies.

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What are the two limits of natural selections

Answers

Mutation and Genetic drift

What are cell cycle regulators

Answers

Answer:    A conserved set of cyclin-dependent protein kinases (Cdks) initiate or regulate events through phosphorylation of intracellular proteins, thus controlling cell cycle progression, terminal differentiation, and apoptosis.

Explanation: Your welcome! ;D

A conserved set of cyclin-dependent protein kinases (Cdks) initiate or regulate events through phosphorylation of intracellular proteins, thus controlling cell cycle progression, terminal differentiation, and apoptosis

1
Some plants can be grown in water using the technique of hydroponics. The roots are in water and
supplied with the ions that they need at the concentrations that support maximum growth. Some
ions can be absorbed both by diffusion and by active transport.
(a) (i) State two features of diffusion that do not apply to active transport.

Answers

Answer:

# Diffusion is a down hill process.(flow is from higher concentration to lower concentration)

# It does not require energy.

but,

# Active transport is a uphill process.(flow is from lower concentration to higher concentration)

# It requires energy.

Two features of diffusion that do not apply to active transport are:

Diffusion is a passive process that does not require energy input, while active transport requires the expenditure of energy in the form of ATP.Diffusion occurs down a concentration gradient, from an area of high concentration to an area of low concentration, while active transport can move ions against their concentration gradient, from an area of low concentration to an area of high concentration.What is Diffusion?

Diffusion is a process by which molecules move from an area of high concentration to an area of low concentration, until they reach a state of equilibrium where there is no further net movement of molecules.

This occurs because molecules are in constant random motion, and they will naturally move from areas where they are more concentrated to areas where they are less concentrated. This process does not require energy input, and it will continue until the concentration of molecules is the same throughout the system.

Active transport, on the other hand, is a process by which molecules are moved across a membrane against their concentration gradient, from an area of low concentration to an area of high concentration.

This process requires energy in the form of ATP, which is used to pump molecules or ions against their concentration gradient. Active transport is able to move molecules or ions against their concentration gradient because it uses energy to change the shape of transport proteins in the membrane, allowing them to move molecules against their concentration gradient.

Therefore, two key features of diffusion that do not apply to active transport are that diffusion is a passive process that does not require energy input, while active transport requires energy input in the form of ATP.

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Which of the following is an example of how an organism depends on Earth's natural resources for survival?
A.
Humans grow corn and wheat as food sources.
B.
Beavers use tree branches to build dams and shelters.
C.
Plants take in nutrients and groundwater from the soil.
D.
all of these

Answers

Answer: D.
Explanation: They’re all using earth’s resources.

Which of the following are not considered to be decomposers?
Plants
Eubacteria
Archeabacteria
Fungi

Answers

I’m pretty sure the answer is plants, sorry if it’s wrong!

The 'run' in rise/run tells us which directions to go on the -axis?

Answers

Answer:

x- axis

Explanation:

x- axis is left to right, the run

y- axis is up to down, the rise

Answer:

The 'run' goes through the x-axis(horizontally). It can either go left or right depending on the direction of the slope.

PLEASE I NEED HELP ASAP!!!!!!!!!!!???? :)

Answers

Answer: Dominant

Explanation: If the trait is dominant, one of the parents must have the trait. Dominant traits will not skip a generation. If the trait is recessive, neither parent is required to have the trait since they can be heterozygous. Determine if the chart shows an autosomal or sex-linked (usually X-linked) trait.

What allows the three atoms in a water molecule to stay together

Answers

Answer:

Three types of bonds hold atoms together within molecules: ionic, covalent, and polar covalent. ... Hydrogen bonds allow two molecules to link together temporarily. • Water molecules are made up of two hydrogen atoms and one oxygen atom, held together by polar covalent bonds.

Explanation:

Covalent bonds occur when two atoms—in this case oxygen and hydrogen—share electrons with each other. Thus, option A is correct.

What are covalent bonds?

A covalent bond is the exchange of electrons between atoms. This type of bond occurs between two atoms of the same element or elements that are close to each other in the periodic table.

Strong linkages—called covalent bonds—hold together the hydrogen and oxygen atoms of individual H₂O molecules.

Because oxygen and hydrogen attract the shared electrons unequally, each end of the V-shaped H2O molecule adopts a slightly different charge.

Therefore, covalent bonds formed by shared electrons of hydrogen and oxygen atoms of individual H₂O molecules. Thus, covalent bond allows the three atoms in a water molecule to stay together. Thus, option A is correct.

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Your question is incomplete, but most probably your full question was,

What allows the three atoms in a water molecule to stay together ?

A. Covalent bonds formed by shared electrons

B. Covalent bonds formed by electrons that transfer between atoms

C. Ionic bonds formed by electrons that transfer between atoms

D. Hydrogen bonds formed only by the electrons of the hydrogen atoms

Why is it important for gametes to be haploid cells?

Answers

It is important that the chromosomes are haploid, because when the sperm and the egg fuse together the cell will have 46 chromosomes.

The reason why it is important for gametes to be haploid cells is because: when the sperm and the egg fuse together the living sex cells will have 46 chromosomes.

Gametes are also referred to as sex cells and they can be defined as the reproductive cells in a living organism.

Generally, the male reproductive cell is known as a sperm while the female reproductive cell is known as an egg.

Since gametes are reproductive cells or sex cells, they are typically made up of haploid set of chromosomes.

Basically, it is very important for gametes to be haploid cells so that when the sperm and the egg fuse together, the living sex cells will have a total of 46 chromosomes.

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Describe the term "semi-permeable" (or "selectively-permeable) membrane. Why is it important?

Answers

Answer:

A semi-permeable membrane is a type of biological or synthetic, polymeric membrane that will allow certain molecules or ions to pass through it by osmosis. The rate of passage depends on the pressure, concentration, and temperature of the molecules or solutes on either side, as well as the permeability of the membrane to each solute. Depending on the membrane and the solute, permeability may depend on solute size, solubility, properties, or chemistry. How the membrane is constructed to be selective in its permeability will determine the rate and the permeability. Many natural and synthetic materials which are rather thick are also semipermeable. One example of this is the thin film on the inside of the egg.

Explanation:

An example of a biological semi-permeable membrane is the lipid bilayer, on which is based on the plasma membrane that surrounds all biological cells. A group of phospholipids (consisting of a phosphate head and two fatty acid tails) arranged into a double layer, the phospholipid bilayer is a semipermeable membrane that is very specific in its permeability. The hydrophilic phosphate heads are in the outside layer and exposed to the water content outside and within the cell. The hydrophobic tails are the layer hidden in the inside of the membrane. The phospholipid bilayer is most permeable to small, uncharged solutes. Protein channels are embedded in or through phospholipids, and, collectively, this model is known as the fluid mosaic model. Aquaporins are protein channel pores permeable to water. Information can also pass through the plasma membrane when signaling molecules bind to receptors in the cell membrane. The signaling molecules bind to the receptors, which alters the structure of these proteins. A change in the protein structure initiates a signaling cascade. The G protein-coupled receptor signaling provides is an important subset of such signaling processes.

Help ASAP! Which of the following does NOT act as an electron carrier (a filled “shopping cart”) in
cellular respiration or photosynthesis?
a) NADH
b) ATP
c) FADH2
d) NADPH

Answers

Answer:

I think it’s NADH

Explanation:

◘HURRY PLEASE◘
↓↓↓↓↓↓↓↓↓↓↓↓↓↓

Answers

Answer:

B

Explanation:

It would be the second one

What takes place in the mitochondria matrix?

Answers

Answer:

In the mitochondrion, the matrix is the space within the inner membrane. ... The enzymes in the matrix facilitate reactions responsible for the production of ATP, such as the citric acid cycle, oxidative phosphorylation, oxidation of pyruvate, and the beta oxidation of fatty acids.

Explanation:

In the mitochondrion, the matrix is the space within the inner membrane. ... The enzymes in the matrix facilitate reactions responsible for the production of ATP, such as the citric acid cycle, oxidative phosphorylation, oxidation of pyruvate, and the beta oxidation of fatty acids.

The structure of DNA resembles a twisted ladder. Which structural components form the rungs of the ladder?
A deoxyribose sugars
B phosphate groups
C nitrogenous base pairs
D ribosomes
answer is nitrogenous base pairs

Answers

Answer:

The ratios of thymine and adenine were similar, as were the ratios of guanine and cytosine.

Explanation:

deoxyribose + phosphate group + thymine

Answer:

C

Explanation:

What did Watson and Crick’s model of DNA show?


sugars and phosphates on the inside


nitrogenous bases on the outside


a single nucleotide strand twisted in a spiral


two nucleotide strands wound in a double helix

Answers

Answer:

D.) Two nucleotide strands wound in a double helix.

Explanation:

Their model shows that DNA is composed of two double strand of nucleotide which are twisted around each other and run in antiparallel direction. the phosphate group and pentose sugar are present on outside, while nitrogenous base is present on inside

Answer:

Franklin produced an image containing "two strands twisted with double helix and phosphate back bone with base pairs".

Watson and Crick taken the x-ray image created by Franklin which lead to discovery of accurate model of  shape of DNA.

.

Explanation:

2020

-
Identify the fleshy fruit type based on the
definition.
- contains a single seed, often a stony pit
flesh comes from enlarged receptacle that
grows around the ovary, endocarp is papery
- develops from a compound ovary (several
pistils fused together), usually contains more
than one seed

Answers

Answer:

drupes

Explanation:

drupes are a fleshy fruit type, containing a single pit.

Why is oceanic crust younger than continental crust?

Answers

It is due to the process of subduction; oceanic crust tends to get colder and denser with age as it spreads off the mid-ocean ridges. It gets so dense, that it sinks in the upper mantle (subduction). As the continental crust is lighter than the oceanic crust, the continental crust cannot subduct.

Oceanic crust is younger than continental crust because it undergoes continuous formation and destruction through seafloor spreading and subduction.

The age difference between oceanic crust and continental crust is primarily due to the process of plate tectonics. Oceanic crust is constantly forming at mid-oceanic ridges through a process called seafloor spreading. This occurs when molten material from the mantle rises to the surface and creates new crust. As new crust forms, older crust is pushed away from the ridges, gradually moving away from the spreading center.

In contrast, continental crust is older because it is not continuously formed or destroyed like oceanic crust. Continental crust is composed of various rocks, including granite, and is typically thicker and less dense than oceanic crust. It is primarily formed through the collision and accretion of tectonic plates over long periods of time.

Additionally, oceanic crust is also subject to subduction, where denser oceanic plates are forced beneath less dense continental plates. This process occurs at convergent plate boundaries. When oceanic crust subducts, it is eventually recycled back into the mantle, which contributes to the overall young age of the oceanic crust.

In summary, the continuous formation of new oceanic crust at mid-oceanic ridges, along with the subduction of older oceanic crust, results in the relatively young age of oceanic crust compared to the older continental crust.

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I Need Help On Identifying The Characteristics Of Life That Is Illlustarated By Each Of The Following Statements.

Answers

One grow/develop 2 reproduce 3 obtain/ use energy 4

The ocean sunfish (Mola mola) is a large, flat fish that spends most of its time in deep water

feeding mainly on jellyfish, Sunfish often have many species of copepods, small crustaceans,

that bury their heads into the soft tissue of the sunfish, Sunfish will swim to the surface of the

water and lie sideways, allowing seabirds to eat the copepods from their skin,

Which list describes the types of relationships the sunfish has with other marine organisms?

Answers

The group of choices is given below :

a. ​Seabirds: mutualism

​Jellyfish: predation

​Copepods: parasitism

b.​ Seabirds: parasitism

​Jellyfish: commensalism

​Copepods: predation

c.​ Seabirds: predation

​Jellyfish: mutualism

​Copepods: commensalism

d. ​Seabirds: commensalism

​Jellyfish: parasitism

​Copepods: mutualism

Answer:

The correct answer is option A.  ​Seabirds: mutualism

​Jellyfish: predation

​Copepods: parasitism

Explanation:

In this given example sunfish have three different relationships with all three organisms that are related to it tat are seabird, jellyfish, and copepods.

With seabirds, sunfish shows mutualism as they both get benefitted from their relationship in which seabirds feed on copepods and sunfish get rid of their parasite.

With jellyfish, sunfish feed on the jellyfish mainly which suggests that they are predator and jellyfish are prey and their relationship is of predation.

With copepods, copepods bury their heads on the soft tissue of the sunfish so they are parasite on the sunfish that is example of the parasitism

Answer:

A. ​Seabirds: mutualism

Explanation:

A. ​Seabirds: mutualism

​Jellyfish: predation

​Copepods: parasitism

A difference between food chains and food webs is that food webs are...
O bigger
Smaller

Answers

Answer: Food webs are bigger, food chain is smaller.

Explanation:

Food webs are multiple food chains into one web.

Food webs are bigger than food chains

Which statement about water best illustrates the property of adhesion?

Answers

Answer:

The correct answer is- water droplet found on a spider web in the morning

Explanation:

Hope this helps u

Crown me as brainliest

What happens to an atom if it gains an electron? *
A.It becomes negative
B.It becomes neutral
C.It becomes positive
D.None of the above

Answers

Answer:

It became negative

Explanation:

In pea plants, the allele for round seeds is dominant to the allele for wrinkled seeds. If a plant that is heterozygous for seed type is crossed with one that has only wrinkled seeds, what percent of their offspring would you expect to have wrinkled seeds?

Answers

Answer:

50%

Explanation:

This question involves a gene coding for seed shape. The allele for round seeds (R) is dominant over the allele for wrinkled seeds (r). A heterozygous plant (Rr) will therefore be round seeded.

If a plant that is heterozygous for seed type (Rr) is crossed with one that has only wrinkled seeds (rr), the following gametes will be produced by each parent:

Rr - R and r

rr - r and r

Using these gametes in a punnet square (see attached image), the following offsprings will be produced: Rr, Rr, rr and rr

Rr - Round seeds

rr - wrinkled seeds

1 out of 2 offsprings will be possess wrinkled seeds i.e. 1/2 × 100 = 50%.

Which phrase defines latitude?


A.height above sea level


B. north or south distance from the equator


C. east or west distance from London


D. rise and fall of the land

Answers

I am not completely sure but I think it’s B why because latitude is originally the north-south distance on a map so I believe it would be B. Lemme know if it helps!! :)

Answer:

b. is the answer.

Explanation:

I just took the test.

Where do spores come from?

Answers

Answer:

Spores, for the most part, are units of asexual reproduction. They are produced by nonflowering plants, bacteria, fungi, and algae, and are often able to travel over long distances.

Explanation:

What most likely happened to a species that became extinct and are only found as fossils?

Answers

Answer:

Millions of years from now, paleontologists may dig into Earth and uncover fossils from our own time. They may, like scientists today, construct a chronology of what came before them, watching past species popping into—and later out of—existence. Today, humans are continually driving species to extinction—by one estimate, almost 500 vertebrate species have gone extinct in the past 100 years—but will those future scientists be able to tell? New research suggests that it might not be easy: Only a small proportion of these human-caused extinctions will leave behind a fossil trace—and the most threatened species are the ones least likely to be preserved for posterity.

The history of life on Earth is punctuated by what researchers call the “Big Five” mass extinctions, a group that includes the dinosaur-killing Cretaceous-Tertiary extinction and several other, even more severe, events. Many scientists now want to add a sixth: the one that humans are causing all over the globe today. But it’s hard to gauge just how severe the current extinction crisis is, compared with others in Earth’s sometimes tumultuous history. Modern extinctions are documented, sometimes in real time. But the Big Five are measured using only the fossil record, a history of those species that were buried and preserved by sediments over time.

That’s why Roy Plotnick, a paleontologist at the University of Illinois, Chicago, and lead author of the study, thinks about far-flung scenarios involving future paleontologists. “We really need to look at modern day extinctions as if they were in the fossil record already, in order to make a comparison,” he says. So he and his colleagues searched fossil databases for modern mammal species—both those threatened by extinction and those that aren’t—to see how many modern extinctions would be detectable by relying only on fossils.    

Explanation:

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