in human excess blood glucose is stored in the liver and in muscle tissues in form of glycogen.glycogen is a long chain of glucose molecules bonded together.because of this glycogen is called a

Answers

Answer 1

The correct answer is that because of this glycogen is called a polysaccharide.

Hope this helps! :)



Related Questions

Bile
has no effect on digestion.
helps in the digestion of fats.
helps in the digestion of carbohydrates.
helps in the digestion of proteins.
helps in the digestion of both proteins and carbohydrates.
...?

Answers

The best and most correct answer among the choices provided by your question is the fifth choice.

The bile helps in the digestion of both proteins and carbohydrates.

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!

Matching the following terms and definitions.
1.adaptive radiation
2.coevolution
3.convergent evolution
4.divergent evolution
5.gradualism
6. punctuated equilibrium


a pattern of evolution in which two species evolve in relation to each other
a pattern of evolution in which similar characteristics evolve between two unrelated species
a theory of evolution that states that a species evolves by consistent, small, steps
a pattern of evolution in which very different species evolve from one common ancestor
a theory of evolution that states that a species evolves in spurts of rapid change and then no change
a pattern of evolution in which slightly different species evolve from one common ancestor

Answers

Answer:

1. Adaptive radiation: A pattern of evolution in which slightly different species evolve from one common ancestor.

2.  Coevolution: A  pattern of evolution in which two species evolve in relation to each other.

3. Convergent evolution:  A pattern of evolution in which similar characteristics evolve between two unrelated species.

4. Divergent evolution: A pattern of evolution in which very different species evolve from one common ancestor.

5. Gradualism:  A theory of evolution that states that a species evolves by consistent, small, steps.

6. Punctuated equilibrium: A theory of evolution that states that a species evolves in spurts of rapid change and then no change.


• Adaptive radiation - a pattern of evolution in which slightly different species evolve from one common ancestor  

For example -  Evolution of mammals after the extinction of dinosaurs.

• Co evolution - a pattern of evolution in which two species evolve in relation to each other  

For example – Development of flowering plant and associated insects or pollinators  

• Convergent evolution - a pattern of evolution in which similar characteristics evolve between two unrelated species  

For example – similar function of  flight or wings of insects, birds and bats

• Divergent evolution - a pattern of evolution in which very different species evolve from one common ancestor  

For example – different types of beaks of finches

• Gradualism - a theory of evolution that states that a species evolves by consistent, small, steps  

For example – evolution of tigers to develop better line marks on their body

• Punctuated equilibrium - a theory of evolution that states that a species evolves in spurts of rapid change and then no change  

During which phase of mitosis do the nuclear membrane, nucleolus, and nucleus dissolve?

A.) metaphase
B.) prophase
C.) anaphase
D.) telophase

Answers

telophase because the chromosomes reach poles and new nuclear membranes form around the chromosomes, creating the nuclei for two new cells. The chromosomes decondense and the cell splits into two daughter cells, each with a nucleus.

If placed in a hypertonic solution, a plant cell will

Answers

the plant cell will shrink or become flaccid due to exosmosis of water

Final answer:

In a hypertonic solution, a plant cell becomes plasmolyzed due to water leaving the cell, leading to the plasma membrane shrinking and pulling away from the cell wall.

Explanation:

If placed in a hypertonic solution, a plant cell will become plasmolyzed. In a hypertonic solution, the fluid outside the cell has a higher concentration of solutes compared to the cell's cytoplasm, causing the water to leave the plant cell. Because plant cells have a rigid cell wall, the cell does not burst but instead, the plasma membrane shrinks and pulls away from the cell wall - a process known as plasmolysis. This result is in sharp contrast to a hypotonic environment, where plant cells absorb water, becoming turgid as the central vacuole fills with water and provides rigidity to the cell.

Why do we see brown light if it isn't on the color spectrum?

Answers

the energy (what makes the colors on the spectra happen) is absorbed if it isn't on the color spectrum

if a hypothesis is falsifiable, _____ A. wrong
B. it might be wrong
C. it must be possible to prove it wrong
D. it is correct

Answers

C.
Falsifiable is the adjective form of the verb "falsify," which in science means "prove (a statement or theory) to be false."

The correct answer is option C

If a hypothesis is falsifiable then it is possible that the hypothesis can be proven wrong. The requirement of falsifibility states that the conclusion of the experiment cannot be drawn from the simple observations which is taken by the help of a particular phenomenon. It can also be called as testability.





The temperature of the stratosphere increases with height.

True

False

Answers

This is true due to the fact that the O-Zone layer absorbs radiation and heat from the sun.

What is passive transport? What types of transport are considered passive?

Answers

"Passive transport is a movement of biochemicals and other atomic or molecular substances across cell membranes without need of energy input. 
There are four different types of passive transport: diffusion, facilitated diffusion,filtration and osmosis." - Google

Answer:

Gradpoint answer "Diffusion"

Describe and explain the changes in electrical activity both in receptor and in the sensory neurone as increasing pressure is applied to the Pacinian corpuscle?

Answers

Pacinian corpuscles are rapidly adapting mechanoreceptors so they respond only at the onset and offset of the stimulus. The Pacinian corpuscle has a single afferent nerve fiber. Its end is covered by a sensitive receptor membrane whose sodium channels will open when the membrane is deformed in any way. Pressure thus causes sodium to enter the neuron and create a generator potential. If this potential reaches a certain threshold nerve impulses are formed. This impulse is now transferred along the axon with the use of sodium channels and sodium/potassium pumps in the axon membrane. The magnitude of the stimulus is encoded in the frequency of impulses generated in the neuron. So the more massive or rapid the deformation of a single corpuscle, the higher the frequency of nerve impulses generated in its neuron.
Final answer:

Increasing pressure on a Pacinian corpuscle opens gated ion channels, causing a receptor potential in the sensory neuron. This graded potential can lead to an action potential if the threshold is reached, which is then transmitted to the central nervous system.

Explanation:

Understanding Pacinian Corpuscles and Nervous System Response

When increasing pressure is applied to the Pacinian corpuscle, a mechanoreceptor deep in the skin, changes occur in electrical activity within the receptor and the sensory neuron. Initially, the pressure deforms the corpuscle, causing mechanical pressure on the sensory neuron's dendrite. This mechanical stress opens gated ion channels, resulting in an influx of positive ions like sodium (Na+) into the neuron, thus changing the electrical potential of the neuron.

This alteration in electrical potential is known as a receptor potential, and it is a graded potential, meaning that its magnitude varies directly with the strength of the stimulus. With strong enough pressure, if the receptor potential reaches a certain threshold, this depolarization leads to the generation of an action potential. This action potential propagates along the sensory neuron, sending signals to the central nervous system that pressure has been applied.

Myelin sheaths around neurons facilitate the rapid conduction of these signals, ensuring effective response to the mechanical stimulus. This biological mechanism allows us to perceive variations in touch, pressure, and vibration through our sensory system.

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In which of the following ways is DNA replication different from DNA transcription?

New cells can only be created after transcription has taken place.

Replication results in mRNA strands while transcription creates new DNA.

Transcription happens outside the nucleus and replication happens inside the nucleus.

Thymine is used in replication while uracil is used in transcription.

I don't know if this is C or D.

Answers

The Answer To This Question Is C.

What happens when sunlight Strikes chlorophyll?

Answers

Light striking chlorophyll causes electrons to gain energy and leave the chlorophyll molecule. As these electrons pass down an electron transport chain, they lose energy, which is used to make ATP. ... Describe what happens when the sunlight strikes chlorophyll.

As resources in a population become less available population growth will

Answers

As resources in a population become less available, the populationa. declines rapidly because there is nothing the people could use to survive.

When the exponential phase of a logistic growth curve of a population ceases
 Hope this helps!

Answer:

As resources in a population become less available population growth will decline. An ecosystem can support the growth of a population up to a certain number which is called the carrying capacity of the ecosystem.

Once the carrying capacity is reached in an ecosystem the growth of the population will stop and there will not be any increase in the number of individuals due to limitation of the resource for growth.

So if the resource in the population becomes less available then it can not support the high growth of a population because it decreases its carrying capacity and ultimately decrease the population growth.

What is the function of the Golgi apparatus? It modifies and stores proteins received from the endoplasmic reticulum. It gives the cell shape and anchors many organelles in place. It constructs lipids and breaks down carbohydrates. It provides an acidic environment for the digestion of macromolecules.

Answers

Answer:

The answer is It modifies and stores proteins received from the endoplasmic reticulum.

Explanation:

Among the main functions of the golgi apparatus is to store, modify and complete the manufacture of certain proteins; These proteins are synthesized in the endoplasmic reticulum and then transported to the rest of the body to be used both inside and outside the cell.

Final answer:

The Golgi apparatus modifies, sorts, and packages proteins for secretion. It also constructs lysosomes but does not provide an acidic environment for digestion nor construct lipids and break down carbohydrates.

Explanation:

The Golgi apparatus, also known as the Golgi complex, is an organelle found in most eukaryotic cells. It functions primarily in the modification, sorting, and packaging of proteins for secretion. The proteins, having been synthesized in the endoplasmic reticulum, are transported to the Golgi apparatus for further processing.

The Golgi apparatus also plays a role in the construction of lysosomes, organelles that contain digestive enzymes to break down waste materials and cellular debris. However, it is not the function of the Golgi apparatus to provide an acidic environment for digestion nor to construct lipids and break down carbohydrates.

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food, water, and wastes are stored inside _______

Answers

Vacuole is a membranous organelle present in the eukaryotic cell. Food water and wastes are stored in vacuoles.

A vacuole is a region of cytoplasm-free, membrane-lined, and liquid-filled space inside a cell. A vacuole is a membrane-bound structure that exists in a cell's cytoplasmic matrix. Tonoplast is the membrane encircling the vacuole. The vacuole's components, known as cell sap, differ from the surrounding cytoplasm

Phospholipids constitute the membranes. Proteins embedded in membranes aid in molecule transport across the membrane. Different protein combinations assist the vacuoles retain various things. Plants, fungi, algae, and certain other species also store potent secondary compounds in their vacuoles to shield the cell from self-toxicity, such as tannins or other biological colors.

Therefore, a vacuole is the organelle concerned with storing food, water and wastes.

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Coal is made from the remains of dead plants. It is made of carbon and other elements. Is coal a mineral?


A Yes, because it is formed naturally.
B Yes, because it contains carbon.
C No, because it is created artificially.
D No, because it is an organic substance.

Answers

D No, because it is an organic substance. A mineral is "a solid inorganic substance of natural occurrence", therefore coal is not a mineral because it is organic, and minerals are inorganic. 

Minerals are naturally-formed substances that have a specific chemical properties: abiogenic (minerals are not produced by or derived from living organisms,  non-organic in origin), stable at room temperature (i.e. at 25 degrees C) , are represented by a known chemical formula , have an ordered atomic arrangement/structure. Coal is not classified as a mineral because it is an organic substance. Correct answer: D (coal is formed from the remains of dead plants and animals).

which body system of a pregnant woman shows the most dramatic physiological changes during pregnancy?

Answers

The cardiovascular system

where are photosystems 1 and 2 found

Answers

Hi

Answer : They are found in the thylakoid membranes of plants.

I hope that's help ! 

Which is an example of dehydration synthesis?

A) DNA synthesis from nucleotides
B) Conversions of proteins into its amino acids
C) Conversions of lipids in fatty acids

Answers

The correct answer of the given question above would be option C. An example of dehydration synthesis would be conversions of lipids in fatty acids. Dehydration synthesis means "to put together while losing water". Other example of dehydration synthesis would be the formation of disaccharides from monosaccharides in carbohydrates. Hope this answer helps.

plant cells make their own food by taking in

Answers

the plants take in chlorophyll 
Sunlight, through photosynthesis

Does jupiter have any volcano

Answers

yes,jupiter have volcano but not many.

While Jupiter itself does not have volcanoes, its moon Io is the most volcanically active body in the solar system, with eruptions that are hotter and possess a different composition, mainly sulfur, compared to Earth's.

The question 'Does Jupiter have any volcano?' can be answered by discussing one of its moons, Io, which features the most extraordinary volcanic activity in the solar system. Although Jupiter itself does not have volcanoes, Io's volcanism is characterized by high temperatures and eruptions that produce lava curtains and fountains, often of silicate lava similar to Earth's. What makes these eruptions distinct is their composition, consisting largely of sulfur, as well as the formation of massive plumes, such as the bluish one that extends approximately 140 kilometers above the surface and the Prometheus plume that rises about 75 kilometers. These plumes sometimes interact with frozen sulfur and sulfur dioxide, leading to colorful 'snowfalls' of recondensed material that can spread a thousand kilometers from the vent.

Hellllllllpppppppp meeeeeee please.!!!!!!!!.....
Explain the basic parts of a major theme in molecular biology: the pathway of DNA to RNA to proteins. Include a general idea of what occurs at each stage.

Answers

OK so when DNA is copied it's called replication , then when DNA goes to RNA it's called transcription,and last When RNA goes to polypeptides to proteins that's called translation

Answer:

The process includes two steps Transcription which is DNA to RNA and translation which is RNA to protein.

Explanation:

Transcription:

DNA splits and acts as a template to make a complementary mRNA.

mRNA leaves the nucleus and attach itself to the ribosome.

Translation:

Aminoacids tRNA try to join mRNA-ribosome complex if start codon matches the mRNA code it until mRNA reaches stop codon, results in a long chain of amino acids.

Protein folding and modification take place after the process of the central dogma. Chaperonins help in protein folding, while the golgi apparatus perform final modifications.

Learning through trial and error is often referred to as _____ learning
A. Instructive
B. Instinctive
C. Instrumental
D. Inherited

Answers

i do believe it is c.

It's C - Instrumental

Mitosis and meiosis are processes by which animal and plant cells divide. which statement best describes a difference between mitosis and meiosis?

Answers

Meiosis produce variations in daughter cells whereas mitosis produce identical nuclei.

Hope this helps!

Answer:D. Mitosis produces genetically identical daughter cells

Correct answer is D

Below are the choices to choose from for an answer:

A. Meiosis is a multi-step process.

B. Mitosis occurs only in eukaryotic cells.

C. Meiosis is used in the repair of an organism.

D. Mitosis produces genetically identical daughter cells

Explanation:

A. Both meiosis and mitosis are multi -step processes.

B. Mitosis also takes place in prokaryotic cells.

C. Meiosis generates gametes used in sexual reproduction.

D. (correct): Cells produced through mitosis contain DNA identical to the parent cells, whereas those produced in meiosis produces cells that are are unidentical.

Mitosis and meiosis are both processes which describe the production of new cells. Mitosis is responsible for producing 2produces 2genetically identical daughter cells . Meiosis on the other side produces 4 unidentical daughter cells, they are different from each other and the parents and they have half number of chromosomes (haploid)

in which order are the steps of the scientific method commonly listed

Answers

Once a hypothesis has been formed, it must be tested. This is done by conducting a controlled experiment.
Purpose/Question:
Ask a question.

Research:
Conduct background research. Write down your sources so you can cite your references.

Hypothesis:
Propose a hypothesis. This is a sort of educated guess about what you expect. (see examples)

Experiment:
Design and perform an experiment to test your hypothesis. An experiment has an independent and dependent variable. You change or control the independent variable and record the effect it has on the dependent variable.

Data/Analysis:
Record observations and analyze what the data means. Often, you'll prepare a table or graph of the data.

Conclusion:
Conclude whether to accept or reject your hypothesis. Communicate your results.

Which cell would be most efficient at absorbing nutrients? A cell with a 8:1 surface area to volume ratio or a cell with a 5:1 surface area to volume ratio? Why?

Answers

Final answer:

A spherical cell with a diameter of 5 µm has a higher surface area-to-volume ratio compared to a cubed-shaped cell with a side length of 7µm, indicating it would be more efficient at absorbing nutrients due to its greater surface area relative to volume.

Explanation:

The efficiency of a cell in absorbing nutrients depends on its surface area-to-volume ratio. A cell with a higher surface area relative to its volume has a greater ability to exchange nutrients and waste with its environment. In comparing the two cells, a spherical cell with a diameter of 5 µm and a cubed-shaped cell with a side length of 7µm, we calculate their surface area-to-volume ratios to understand which would be more efficient at absorbing nutrients.

For the spherical cell with a diameter of 5 µm, its surface area is approximately 78.54 µm² (π × diameter²), and its volume is approximately 65.45 µm³ ((4/3) × π × (diameter/2)³), giving a surface area-to-volume ratio of about 1.2 to 1. For the cubical cell with a side length of 7 µm, the surface area is 294 µm² (6 × side length²), and the volume is 343 µm³ (side length³), resulting in a surface area-to-volume ratio of approximately 0.86 to 1.

The spherical cell has a higher surface area-to-volume ratio than the cubical cell, and therefore, based on surface area-to-volume ratio alone, it would be more efficient at nutrient absorption. However, it's important to note that in reality, many other factors including cell membrane permeability and the presence of transport mechanisms affect nutrient uptake.

A cell with an 8:1 surface area-to-volume ratio would be more efficient at absorbing nutrients than a cell with a 5:1 ratio due to having more surface area relative to its volume.

The efficiency of a cell in absorbing nutrients is determined by its surface area-to-volume ratio. A higher ratio means the cell has more surface area relative to its volume for nutrient uptake and waste removal. In comparing a cell with an 8:1 surface area-to-volume ratio to a cell with a 5:1 ratio, the cell with the 8:1 ratio would be more efficient at absorbing nutrients. This is because it has more surface area available for exchange relative to its volume.

To provide a quantitative justification, consider a spherical cell with a diameter of 5 µm and a cube-shaped cell with a side length of 7 µm. Calculating the surface area and volume of these shapes, we can derive their surface area-to-volume ratios and determine which cell is more efficient at nutrient and waste exchange with its environment.

Which is the best definition of a lens?

A. A transparent material that dissects light.
B. A transparent material that absorbs light.
C. A transparent material that refracts light.

Answers

C. A transparent material that refracts light.

Final answer:

The correct definition of a lens is a transparent material that refracts light. Lenses are used to bend light to create images, with the lens type (convex or concave) affecting how the light is focused or diverged.  So the correct option is C.

Explanation:

The best definition of a lens is C. A transparent material that refracts light. A lens, like those found in glasses or a microscope, is a tool for bending or refracting light rays that pass through it. This refraction allows the lens to redirect light and create an image. The way the light is refracted will depend on the shape of the lens — with a convex lens focusing light to a point and a concave lens causing light to diverge. The point where a convex lens focuses light is called its focal point, and the distance from the lens to this point is known as the focal length. A lens forms images that can be magnified, reduced, or inverted, relative to the object.

A thin lens is a special type of lens with a thickness that is negligible compared to its focal length, allowing it to refract light without causing significant dispersion or aberrations. A diverging lens, on the other hand, refers specifically to lenses that spread out light rays, moving them away from the axis of the lens.

why the inner planets are dense and rocky while the outer planets have low densities with no solid surfaces

Answers

The Inner Planets dense and rocky because they are close enough to the sun that the heat has driven off the free hydrogen and helium which forms most of the Gas Giant planets (and most of the universe). Only the heavier elements remain.

And please put the questions in right subject. It belongs to "Physics" not for "Biology". 

Hope this helps!

The inner planets are dense and rocky due to solar heat allowing only heavy materials to condense, while outer planets, formed in the cooler outskirts, accumulated light gases around their rocky cores, leading to their large gaseous makeups. The outer planets also host rings and moons due to their strong gravity.

The inner planets, consisting of Mercury, Venus, Earth, and Mars, are dense and rocky due to the high temperatures in the inner solar system when these planets formed. In such heated environments, lighter materials like water, gas, and ice cannot remain solid and are either incorporated into the planets in small amounts or dissipated into space. As a result, inner planets are composed primarily of heavier materials such as rock and metal, which can resist the solar heat.

On the other hand, the outer planets (Jupiter, Saturn, Uranus, and Neptune) are much larger and consist largely of gases, giving them lower densities with no solid surfaces. They do have solid rocky cores, which formed early in the solar system's history, but are enveloped in thick atmospheres mostly made of hydrogen and helium because, in the colder outskirts of the solar system, these light gases could accumulate around the core. Additionally, the intense pull of gravity from these massive planets helped retain the gaseous atmospheres.

The outer planets also have extensive systems of rings and moons which are linked with these planets' strong gravitational fields, attracting and capturing a multitude of objects over time.

What is the best conclusion about the trend in creative careers shown on the graph? The number of people in creative careers has increased because service jobs have increased at the same time. The number of people in creative careers has increased because they left farm jobs that do not require critical thinking and problem solving. The number of people in creative careers has increased because more people work in jobs where critical thinking and problem solving are important. The number of people in creative careers has increased because fewer people work in manufacturing, where critical thinking and problem solving are not needed.

Answers

The best conclusion about the trend in creative careers shown on the graph is that "The number of people in creative careers has increased because they left farm jobs that do not require critical thinking and problem solving. "

Thank you for posting your question here at brainly. I hope the answer will help you. Feel free to ask more questions.

Unlike animal cells, plant cells have cell walls that make them rigid. Which organelle, other than the cell wall, also plays a vital role in providing rigidity to plant cells? A) Nucleus B) Chloroplast C) Central vacuole D) Endoplasmic reticulum

Answers

The correct answer is option (c). central vacuole.

The central vacuole is an organelle, which is important for maintaining the turgidity in the plant cell. The central vacuole stores water, minerals, salts and helps the cell to maintain the osmorality.

The central vacuole stores a lot of water in the cell, and swell up due to high water concentration, this provide the turgidity to the plant cell and keep intact with the cell wall.

The central vacuole in plant cells plays a vital role in providing rigidity to plant cells. It is a large, fluid-filled organelle that occupies a significant portion of the cell's volume. Hence option C is correct.

The central vacuole exerts turgor pressure against the cell wall, which helps maintain the cell's shape and rigidity.

When the central vacuole is filled with water and other solutes, it creates osmotic pressure, pushing the cell membrane against the cell wall. This pressure provides structural support and helps the plant cell maintain its shape.

The rigidity provided by the central vacuole and the cell wall together allows plants to maintain upright structures, such as stems and leaves.

While the other organelles mentioned, such as the nucleus, chloroplasts, and endoplasmic reticulum, have important functions in plant cells, they do not directly contribute to the rigidity of the cell.

Therefore, option C, Central vacuole is correct.

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list two organelles that should have been visible but aren't in the cheek cell

Answers

Two organelles that are usually not visible under a light microscope are the mitochondrion and Golgi apparatus.

Cheek cells

In a typical cheek cell, two organelles that are usually not visible under a light microscope are:

Mitochondria: Mitochondria are often too small to be visible with a standard light microscope. They are the cellular powerhouses responsible for producing ATP, the cell's energy currency.

Golgi Apparatus: The Golgi apparatus consists of a series of membrane-bound sacs and is involved in modifying, sorting, and packaging proteins and lipids for transport within or outside the cell. Its structure is typically not visible with a light microscope at the cellular level.

These organelles are generally visible only with more advanced microscopy techniques, such as electron microscopy.

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Two organelles that should have been visible but aren't in the cheek cell  are Mitochondria and Endoplasmic Reticulum (ER)

Why are these  organelles not visible

These organelles Mitochondria and Endoplasmic Reticulum (ER) may not be visible in cheek cells because their size, distribution, or activity levels can make them challenging to observe directly without specialized staining or more advanced microscopy techniques.

However, their presence and functions are essential for the cell's overall function and health because  they play a critical role in energy production through oxidative phosphorylation and the citric acid cycle

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