Water-soluble vitamins:_________. a. are stored in body tissues to a large extent. b. often result in toxicities among infants and children. c. are easily excreted in the urine. d. dissolve in body fluids but not in cooking water. e. are not easily damaged by high temperatures or oxygen exposure.

Answers

Answer 1

Answer:

C

Explanation:

1. Vitamins are of two  types; i) water soluble and ii) fat soluble.

Water-soluble vitamins are:

2. They are soluble in water but insoluble in lipids.

3. Example of water soluble voitamins'

i) Thiamin (Vitamin B1)

ii) Riboflavin (Vit. B2)

iii) Niacin (Vit. B3)

iv) Pantothenic Acid.

v) Vit. B6.

vi) Folic Acid and vii) Vitamin B12.

4. Water soluble vitamins  are easily excreted through the urine. Water-soluble vitamins are carried to the body's tissues but they are not stored in the body.

Answer 2

Answer:

c. are easily excreted in the urine.

Explanation:

Vitamins are important organic molecules that play important roles in the process of metabolism of the organisms directly or indirectly. Since they require in small quantity or amount so-known as a micronutrient and categorized as an essential micronutrient. On the basis of their solubility, they are classified as water-soluble vitamins such as vitamin C, B complex and some other and the other category is fat solubles such as vitamins A, K and some other. Water-soluble vitamins are easily soluble in water and thus they excrete through the urine and thus are not stored in the body. Fat-soluble vitamins like vitamins A and some others are stored in the fat in the body.

Related Questions

For an individual who is heterozygous for two genes, Aa and Bb, what does independent assortment predict? Offspring inheriting the recessive allele (a) of the first gene will inherit the dominant allele (B) of the second gene. Offspring inheriting the dominant allele (A) of the first gene will also inherit the dominant (B) allele of the second gene. Offspring inheriting the dominant (A) allele of the first gene are equally likely to inherit either the dominant (B) or the recessive (b) allele of the second gene.

Answers

Answer:

For an individual who is heterozygous for two genes, Aa and Bb, what does independent assortment predict? Offspring inheriting the recessive allele

of the first gene will also inherit the dominant

Explanation:

Aa x Bb= AB, Ab, aB and ab

so the first gene will also inherit the dominant gene

3. In tomato plants, the allele R results in round
tomatoes, and the allele r results in oval tomatoes.
Identify the phenotypes of the following individuals
who have different genotypes.
A. RR
B. Rr
C. rr

Answers

Answer:

A: Round tomatoes. B: Round tomatoes. C: Oval tomatoes

Explanation:

Answer: I need help

Explanation:

What current collects all the garbage in the Pacific Ocean?

Answers

NOAA (the national oceanic and atmospheric administration)

Answer:

Explanation:

The Great Pacific Garbage Patch is a collection of marine debris in the North Pacific Ocean. ... The National Oceanic and Atmospheric Administration (NOAA) defines a gyre as a large system of swirling ocean currents

Thoughts and feelings affect how the cells function according to

Answers

Answer:

psychoneruoimmunology

Explanation:

Which connective tissue cells produces collagen?

Answers

Answer:

Fibroblasts

Explanation:

Fibroblasts will also produce the ground substance in connective tisse.

Final answer:

Fibroblasts, the most common cells in connective tissue, are responsible for producing collagen, thereby providing structure and strength to various parts of the body.

Explanation:

In the connective tissue, it's the fibroblasts that are responsible for producing collagen. Collagen is an essential protein that provides strength and structure to various parts of the body, such as the skin, tendons, and bones. Fibroblasts are the most common cells of the connective tissue, and their primary function is to maintain the structural integrity of the connective tissues by continuously producing both collagen and the ground substance that forms the extracellular matrix.

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The diagram below shows the stump of a tree whose root grew into a small crack in bedrock and split the rock apart.


The action of the root splitting the bedrock is an example of
A)Physical Weathering
B)Chemical Weathering
C)Deposition
D)Erosion

Answers

Answer:

Physical Weathering

Explanation:

As per the given conditions in the question, the primary effect is mechanical action which is also known as a physical weathering. During mechanical action, a rock is disintegrated into the smaller pieces. In the given statement, the root of tree would grow in the crack and try to develop a strong network to get nutrients necessary for tha tree growth. Thus, the root would exert a pressure in the crack to make more space for its growth and development (root network). This is primarily a mechanical action and an example of physical weathering.

During cell division, The DNA in a eukaryotic cask is tightly packed and coiled into structures called:

A. Centromeres

B. A nucleus

C. chromosomes

Answers

During cell division, The DNA in a eukaryotic cask is tightly packed and coiled into structures called:

C. chromosomes.

- During cell division, the DNA in a eukaryotic cell is tightly packed and coiled into structures called chromosomes.

- These chromosomes contain the genetic material necessary for cell division and inheritance.

- Chromosomes are condensed structures formed from DNA and associated proteins, primarily histones.

- Prior to cell division, DNA replication occurs, resulting in duplicated chromosomes called sister chromatids.

- As the cell prepares for division, these sister chromatids condense further and become visible under a microscope as distinct chromosomes.

- Chromosomes play a crucial role in ensuring the accurate segregation of genetic material during cell division, allowing for the transmission of genetic information to daughter cells.

- Therefore, chromosomes are the condensed and coiled structures that contain the genetic material essential for cell division and inheritance.

Julio is constructing a three-dimensional model of a grasshopper. He uses soft foam to represent most of the organs. Which strategy would provide the most accurate model of the exoskeleton of the grasshopper?
a.
covering the foam organs with a thin but tough outer coating
b.
covering the foam organs individually with small, scale-like plates
c.
filling the central cavity of the model with a thick fluid
d.
threading hard, cylindrical-shaped sticks inside the foam organs

Answers

Answer:

b.

covering the foam organs individually with small, scale-like plates

All visceral organs receive dual innervation from both the sympathetic and parasympathetic divisions of the ans. True or False

Answers

Answer:

False

Explanation:

The autonomic nervous system supplies the organs of the body such as intestine, kidney etc and also controls the body functions.

It comprises of the sympathetic and parasympathetic nervous system.

SOME and not all visceral organs receive dual innervation(nerve supply) from both the sympathetic and parasympathetic divisions of the autonomic system and it’s dependent on the functions of the organ.

Final answer:

Yes, it is true that all visceral organs receive dual innervation from both the sympathetic and parasympathetic divisions of the autonomic nervous system. The sympathetic system readies the body for physical activity, while the parasympathetic regulates resting activities.

Explanation:

The statement is true, all visceral organs do receive dual innervation from both the sympathetic and parasympathetic divisions of the autonomic nervous system (ANS). Dual innervation means that the visceral organs are supplied by both divisions of the ANS - the sympathetic and parasympathetic systems. The sympathetic division generally prepares the body for intensive physical activity (fight or flight), while the parasympathetic division regulates resting or digesting activities. For example, the heart rate is accelerated by sympathetic stimulation and slowed by parasympathetic stimulation.

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You perform an in situ hybridization on Drosophila melanogaster embryos. You apply a probe labeled with a fluorescent stain that is complementary to mRNA transcripts of the gene hunchback. In early stages of embryogenesis you observe fluorescence for the entire anterior half of the embryo only. In embryos at a later stage of development you see the same pattern in the anterior, and also a stripe of fluorescence in the posterior half. What can you conclude about the expression of hunchback from this?

Answers

Answer:

f

Explanation:

please help me

Sample Response: The sound of the drumstick hitting the metal bar will get to me in a shorter amount of time in Scenario 1. The sound wave will travel faster in the metal bar than through the air because the speed of sound waves in solids is faster than it is in gases.

What did you include in your response? Check all that apply.

The sound will reach my ear in a shorter time in Scenario 1.
Sound will travel faster through the metal bar than through the air.
The speed of sound waves in solids is faster than it is in gases.

Answers

Answer:

all

Explanation:

Because they are so close, than can collide very quickly, i.e. it takes less time for a molecule of the solid to 'bump' into its neighborough. Solids are packed together tighter than liquids and gases, hence sound travels fastest in solids. The distances in liquids are shorter than in gases, but longer than in solids

hope this helps

what are the benefits of viruses

Answers

Answer:

viruses can be used to target and kill cancer cells, to treat a variety of genetic diseases as gene and cell therapy tools, or to serve as vaccines or vaccine delivery agents.

Explanation:

while other natural and laboratory-modified viruses can be used to target and kill cancer cells, to treat a variety of genetic diseases as gene and cell therapy tools, or to serve as vaccines or vaccine delivery agents.

Poison ivy is a weed that produces an oil which causes skin rashes. Scientists want to perform an experiment to see if poison ivy grows taller when exposed to more carbon dioxide. How should the control group in this experiment be treated?

A. The control group should have plants growing at higher oxygen levels.

B. The control group should have plants growing at different carbon dioxide levels.

C. The control group should have plants growing in different amounts of water.

D. The control group should have plants growing at normal carbon dioxide level.

Answers

Poison ivy is a weed that produces an oil which causes skin rashes. Scientists want to perform an experiment to see if poison ivy grows taller when exposed to more carbon dioxide. The control group in this experiment should be be treated as :

D. The control group should have plants growing at normal carbon dioxide level.

Explanation:

As the level of carbon dioxide in the atmosphere increases, it's boosting the growth of poison ivy plants, two recent studies show. These elevated carbon dioxide levels are creating bigger, stronger poison ivy plants that produce more urushiol, the oil that causes the allergic reaction and miserable poison ivy rash.The poison ivy rash can also raise your risk of getting a potentially serious skin infection from scratching your skin.About 80% of people are sensitive to the plant meaning they may develop a poison ivy rash if they come in contact with the plant. Scientists showed that elevated carbon dioxide boosts the growth of poison ivy and results in the production of a more powerful form of the urushiol.The control group should have plants growing at normal carbon dioxide level. Scientists would grow plants at a normal carbon dioxide level to see if increasing carbon dioxide has an effect on the experimental group.

Answer:

D. The control group should have plants growing at normal carbon dioxide level.

Explanation:

Scientists would grow plants at a normal carbon dioxide level to see if increasing carbon dioxide has an effect on the experimental group.

How might environmental manipulation of a crop have unexpected consequences? a. The new crop may require more water than the original. b. The crop may harm the environment. c. The yield may be reduced. d. All of the above Please select the best answer from the choices provided A B C D

Answers

Answer:

D. All of the above

Explanation:

The improving the well-being of people by altering their living situation. The environmental manipulation of a crop have unexpected consequences,  All of the above .

What is environmental manipulation?

The improving the well-being of people by altering their living situation, such as by setting an abused or late child in a foster home or by transferring an adult patient from a mental hospital to an adult home or a halfway house.

Thus, option "D" is correct, all the above.

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Cells that respond to peptide hormones usually do so through a sequence of biochemical reactions involving receptor and kinase activation. In order for cells to respond, it is necessary for first and second messengers to communicate. This is possible because ________.

Answers

Answer: G protein acts as the link between first and second messengers

Explanation:

n the following diagram of the energy flow in an ecosystem, what does symbol 1 represent?


A.
heat
B.
sunlight
C.
consumers
D.
glucose

Answers

Answer:

B

Explanation

It is sunlight because producers need sunlight to grow. For example, an apple tree is a producer. It uses the sunlight to grow and create the fruit. The fruit is then consumed by a consumer (number 2 on the diagram).

Answer:

B if your on plato

Explanation:

What units of genetic material determine how things look A. Traits. B. Genes. C. Variations. D. Mutations

Answers

Answer:

B, Genes

Explanation:

What are the two genotypes that can result in the dominant trait showing in the phenotype

Answers

Answer:

Explanation:

123

1:2:2:1 genotypic ration

Why is a hypothesis important to a scientific investigation?
A)Without a hypothesis, there is no way to tell if you did an experiment correctly
B)Without a hypothesis, there is no way to tell if you have done enough research about the problem.
C)Without a hypothesis, you have no statement to tell you if your results are correct.
D)Without a hypothesis, you have no statement to which you can compare your results to in order for you to determine what those results mean.
0

Answers

The answer to the question is D
Final answer:

A hypothesis is important in a scientific investigation as it provides a preliminary explanation that guides the experiment's design and results interpretation. It allows researchers to know what they are testing for and gives them a standard to which they can compare their results.

Explanation:

A hypothesis is a preliminary explanation for a phenomenon used as a basis for further investigation. It is important in a scientific investigation for several reasons.

Option D correctly states: Without a hypothesis, you have no statement to which you can compare your results to in order for you to determine what those results mean.

A hypothesis provides scientists with a clear focus. It prompts the design of an experiment or observation to test whether the proposed hypothesis is true or false. If there were no hypothesis, it would be difficult to know what to test for and how to interpret the results. Moreover, a hypothesis is either supported or refuted based on the results of the experiment, thus providing a basis for understanding and further exploration.

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Which storm likely had more rainfall?There were two rainstorms in Hatfield last summer. Before Storm 1, Hatfields temperature was 32°C. Before Storm 2, the temperature was 18°C. Before both storms, the temperature of the surrounding areas was the same and wind was blowing toward Hatfield. There was the same amount of water vapor before Storm 1 and Storm 2.

Answers

Answer:

Storm 1 had more rainfall.

Explanation:

Storms are usually characterized by a large variety of atmospheric disturbances which can range from normal rainfall to wind-related disturbances.  Storms are formed when a center of low pressure develops with the system of high pressure surrounding it which can create winds that result in the formation of storm clouds. The amount of moisture then determines the amount of rainfall.

Therefore at Hatfield, storm 1 had more rainfall due to it's higher temperature which made the air warmer and easy for the wind to push air parcels even higher into the clouds making it to lose more energy and causing more rainfall.

Transcription in bacteria differs from transcription in a eukaryotic cell because

Answers

Bacteria is prokaryote so


There is no such structure seen in prokaryotes. Another main difference between the two is that transcription and translation occurs simultaneously in prokaryotes and in eukaryotes the RNA is first transcribed in the nucleus and then translated in the cytoplasm. ... These events do not occur in prokaryotes.

Eukaryotic cells contain membrane-bound organelles, such as the nucleus, while prokaryotic cells do not. Differences in cellular structure of prokaryotes and eukaryotes include the presence of mitochondria and chloroplasts, the cell wall, and the structure of chromosomal DNA.

The speed of sound in air is roughly 1,484 m/s.
How far, in meters, would a sound wave travel in 3
seconds?

Answers

Final answer:

The distance traveled by a sound wave in 3 seconds can be calculated using the formula: distance = speed × time.

Explanation:

The speed of sound in air is approximately 1,484 meters per second. To calculate how far a sound wave would travel in 3 seconds, we can use the formula: distance = speed × time. Therefore, the distance traveled by the sound wave in 3 seconds would be 1,484 meters/second × 3 seconds = 4,452 meters.

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Help ASAP!!
The amount of force needed to keep a 0.3 kg box moving at a constant speed of r m/s of frictionless ice is?

A.) 0N
B.) 10N
C.) 1.2N
D.) 0.3N
E.) 2N

Answers

Answer:

0N

Explanation:

If an object is on one of these imaginary frictionless surfaces, the surface does not present any opposing force (frictional force) to slow an object sliding over it. Therefore no force is needed to keep the object moving.

The amount of force needed to keep a 0.3 kg box moving at a constant speed of r m/s of frictionless ice is 0 N.

What is frictionless ice?

Two fundamental ideas related to the concept of force are established by the First Law. The "natural condition" of motion of all objects is not rest, as almost everyone would assume, but rather any constant velocity.

when they were finally given the freedom to act spontaneously, the velocity they had. In our daily lives, things frequently come to rest. Newton's insight that this was caused by the frictional force is what makes him so brilliant.

Objects float with whatever velocity they have from their prior interactions in space, far from the influences of gravity and air resistance, demonstrating the First Law.

Therefore, The amount of force needed to keep a 0.3 kg box moving at a constant speed of r m/s of frictionless ice is 0 N.

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Indentify the stages of the cell cycle using the drop down menus

Answers

Answer:

The stages of cell cycle are G1 phase, S phase (synthesis), G2 phase and M phase (mitosis and cytokinesis).

Explanation:

G1 phase is also called growth phase of the interphase. This phase occurs after the completion of M phase which consist of mitosis and cytokinesis and before the starting of DNA replication. S phase is a synthesis phase where DNA replication occurs. G2 phase is an important phase in which cell grow in size occurs and various proteins are produced which is necessary for the mitosis. After G1 phase, mitosis occurs in which a single is divided into two daughter cells having diploid chromosomes.

Differentiate between population density and
population distribution.

Answers

Population distribution means a local pattern due to population dispersion, agglomeration formation, line spread, etc. Overcrowding is a measure of population and physical space. It shows the relationship between the population and the size of the environment.

What are three types of distribution that define the pattern of each type?

The three types of human distribution are similar, random, and integrated. The same distribution is rare. People are divided equally and there is a lot of competition for resources In random distribution, some people are close, and some are divided.

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Final answer:

Population density is the average number of individuals per unit area or volume, indicating how crowded a population is, whereas population distribution explains how these individuals are spread out across their habitat, which can be clumped, uniform, or random. This indicates different environmental and behavioral factors affecting the species.

Explanation:

Population Density vs. Population Distribution

Understanding both population density and population distribution is essential to grasp how individuals within a species are spaced within their habitat. Population density refers to the average number of individuals per unit of area or volume. This is a measure of how crowded a population is. For example, the number of trees per acre in a forest is an expression of population density.

On the other hand, population distribution delineates how the individuals are spread out across their habitat. This can vary greatly, with populations sometimes clustered around resources in aggregations, while others might be evenly spaced due to territorial behavior or randomly distributed if there are no strong interactions or environmental preferences dictating their position.

To concrete this difference with an example: If a population of 820 insects lives in a 1.2-acre area, their population density would be roughly 683 insects per acre. On the contrary, a population of 560 flowering plants in a 0.2-acre area has a startlingly higher density of 2,800 plants per acre. Consequently, the plants have a greater density than the insects. The pattern of distribution of these organisms could tell us a lot about their behaviors and interactions with the environment and other species.

Population distribution patterns – such as clumped, uniform, or random – offer insight into environmental resources, species interactions, and behavioral strategies. For instance, a species demonstrating a random distribution might not be influenced strongly by social interactions or might exploit resources that are evenly spread across an area. In contrast, a uniform pattern typically indicates competition for resources or territorial behavior.

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Jean Baptiste Lamarck thought that if animals, like a giraffe, stretched or strained their body parts (necks) then their offspring ________.

A
would still have short necks

B
would be less able to survive

C
would be identical to the parents

D
would acquire longer necks

Answers

D is what he probably thought but it all depends on genetics so if they did stretch out the kid would still have a short neck to it would be A

Apply Concepts:

Two rivers run into the ocean. One river is very long. The other is
very short. Which river probably drops the smallest rock pieces near the ocean?
Explain your answer.

Answers

Answer:

  the very long river

Explanation:

Larger rocks tend to settle out of the water flow sooner than smaller rocks do, so the rocks remaining at the end of a very long river would tend to be very small. A very short river may still be carrying somewhat larger rocks.

The very long river probably drops the smallest rock pieces near the ocean.

_____

Perhaps the implied assumption here is that a very short river will have a higher gradient than a very long river. Another assumption is that rocks are picked up nearer the headwaters, and the gradient decreases with distance.

If both rivers end at a waterfall into the ocean, they may very well carry the same sort of rock size distribution. If the short river traverses muddy terrain, and the longer river traverses rocky terrain, the answer may be reversed.

Which statement describes the relationship between plants, animals, and the carbon cycle?

Answers

Answer:

Animals breath out carbon dioxide, plants turn the carbon dioxide into carbon and release fresh oxygen as a result. The carbon goes through the rest of the carbon cycle.

Explanation:

Where can you find carbon?

Answers

Answer:

the atmosphere and in chemicals.

Explanation:

Answer:

carbon can be found in the atmosphere as well as burned fossil fuels.

Explanation:

To lyse is to burst apart or explode. Why do you think a virus’s reproduction cycle is called the “lytic cycle”?
will give Brainliest

Answers

Answer:

cells burst to release new viruses

After a cell has been used to reproduce new viruses, a special viral protein causes the cell's membrane to break open, or lyse. This process gives the lytic cycle its name.

Explanation:

Hope this helps : )

Final answer:

The lytic cycle is named as such because it culminates in the lysis, or bursting, of the host cell, releasing new virus particles. It contrasts with the lysogenic cycle, where the virus integrates into the host genome and replicates without lysing the cell.

Explanation:

The term "lytic cycle" describes a type of virus replication in which a virus invades a host cell, uses the host's cellular machinery to replicate its viral genome, and manufactures more virus particles. Eventually, the host cell becomes so full of new virions that it bursts, or undergoes lysis, releasing the new viruses to infect additional cells. This process of cell bursting is why the cycle is referred to as 'lytic' since 'to lyse' means to burst or explode.

Bacterial cells that are infected by viruses (bacteriophages) usually end up being destroyed through this process. However, not all viruses follow the lytic cycle; some may enter a lysogenic cycle, where the viral DNA is incorporated into the host cell's genome and replicated along with the cell's DNA without destroying the host. An example of this dual behavior is seen in the phage lambda of E. coli, which can undergo both the lytic and lysogenic cycles.

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