What characteristics do viruses share with all lining organisms?
A. Respiration
B. Metabolism
C. Movement
D. Replication

Answers

Answer 1

Answer:

D. Replication.

Explanation:

Hope this helps!

Answer 2

Answer:

D. Replication

Explanation:

Viruses share 2 important traits with living things, they have genetic material, and they can evolve. which means they can replicate and undergo mutation, and have DNA. RNA. and much more.


Related Questions

Which two sentences or statements correctly identify the environmental consequences of land use?

Answers

Two sentences that correctly identify the environmental consequences of land use are:

1. Often, land is cleared to make room for businesses or homes, leading to habitat destruction, loss of biodiversity, and disruption of ecosystems.

2. Sometimes, governments use eminent domain over private property to create national parks or reserves, contributing to the conservation of natural areas and biodiversity.

Land use has significant environmental consequences, and understanding these impacts is crucial for sustainable land management. The clearing of land for various purposes, such as urbanization or agriculture, has detrimental effects on the environment. Large-scale clearing of land often involves deforestation, which results in the destruction of forests and their ecosystems, loss of habitat for countless species, and increased carbon dioxide emissions. Moreover, the conversion of natural land into urban or agricultural areas disrupts natural water cycles, alters soil composition, and contributes to the loss of valuable ecological services.

On the other hand, governments sometimes use eminent domain to acquire private land for the establishment of national parks or reserves. This action aims to protect and preserve natural areas, safeguarding their biodiversity and ecological integrity. National parks and reserves serve as crucial refuges for wildlife, support conservation efforts, and provide opportunities for scientific research and education. They play a vital role in maintaining ecosystem services, mitigating the impacts of climate change, and promoting sustainable land use practices.

In summary, land use choices have significant environmental consequences. Clearing land for development purposes can lead to habitat destruction and loss of biodiversity, while the establishment of national parks and reserves through eminent domain helps protect and conserve natural areas and their associated ecosystems. Striking a balance between human development and environmental preservation is essential for sustainable land use management.

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Select the correct answer from each drop-down menu.
Fiona is writing a book on coral life. She is writing about the feeding pattern of corals. Help her complete the sentences.
as a byproduct of cellular respiration. The
The corals produce
and provide organic molecules as food to the corals.
Reset
Next
utilize this to carry out photosynthesis,

Answers

Fiona is writing a book on coral life. She is writing about the feeding pattern of corals. The corals produce as a byproduct of cellular respiration. The corals produce organic molecules and provide organic molecules as food to the corals. The corals utilize this to carry out photosynthesis.

Photosynthesis is the process in which plants, algae, and some bacteria convert light energy into chemical energy that they use to make food molecules from carbon dioxide and water. The feeding pattern of corals is symbiotic. In this pattern, a photosynthetic partner lives inside the coral's tissues.

The photosynthetic partner is either algae or photosynthetic bacteria. The photosynthetic partner uses the coral's waste products, mainly carbon dioxide and nitrogen, to make food molecules using light energy from the sun. These food molecules are then passed on to the coral.

The coral, in turn, provides the photosynthetic partner with nutrients in the form of ammonium, nitrate, and phosphorus. The organic molecules produced by the corals are used to provide energy to the corals. The corals use this energy to carry out various metabolic processes.

Some of these processes include cellular respiration, growth, and reproduction. The corals also use the energy to build their exoskeletons, which are made up of calcium carbonate. The corals utilize the organic molecules produced by the photosynthetic partner to carry out photosynthesis. Photosynthesis is the process in which the photosynthetic partner converts light energy into chemical energy.

The chemical energy is stored in the form of glucose. The corals then use this glucose to carry out metabolic processes. The relationship between the corals and the photosynthetic partner is mutualistic. The photosynthetic partner provides the coral with food, and the coral provides the photosynthetic partner with nutrients. This relationship is crucial for the survival of the coral reefs.

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Which level of organization is identified by X?
A cell
B tissue
c) organ
Dorgan system

Answers

The level of organization identified by X is option B. tissue.

Tissue is a group of similar cells performing a common function. Tissue is the second level of organization in living things after cells. Tissue can be described as an aggregation of cells of similar structure and function which together perform specific functions. The cells in tissues are held together by a common extra-cellular matrix composed of polysaccharides, proteins, and minerals.

There are four types of tissue present in the human body and they are: epithelial tissue, connective tissue, muscle tissue, and nervous tissue. Epithelial tissue covers the surfaces of organs, lines cavities and lumen and forms glands. Connective tissue supports and connects organs and tissues and includes cartilage, bone, adipose tissue, and blood.

Muscle tissue is responsible for movement and includes smooth, skeletal, and cardiac muscle. Nervous tissue is responsible for transmitting signals and includes neurons and glial cells. Therefore, the level of organization identified by X is tissue. Therefore the correct option is B

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as a child, alex was short for his age. but during his teenage years, his height increased and he surpassed most of his friends. What must have occurred to create his growth spurt?

Answers

During Alex's teenage years, his growth spurt was likely triggered by the onset of puberty. This is a natural process in which significant physical and hormonal changes occur, leading to rapid growth and development in adolescents.

Puberty is a stage of development characterized by various hormonal changes that impact physical growth and maturation. During puberty, the body undergoes significant transformations, including the growth of skeletal bones, muscle development, and changes in body composition.

These changes are primarily influenced by the release of hormones such as growth hormone and sex hormones (such as testosterone in males and estrogen in females).

In Alex's case, it is likely that his initial delay in growth during childhood was due to a slower or delayed onset of puberty compared to his peers. However, once he entered his teenage years and experienced the hormonal changes associated with puberty, his growth spurt occurred, allowing him to catch up and even surpass his friends in height.

It's important to note that the timing and extent of growth spurt can vary among individuals, influenced by genetic factors, overall health, and nutrition.

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Three cells are placed in three solutions of different concentrations. Determine the concentration of the solution based on the predominant movement of water molecules though the cells

Answers

Atoms because the green thingies that rotate in the cell

Which two cell structures are found in eukaryotic cells but not in prokaryotic cells?

Answers

Answer: Endoplasmic reticulum, microtubules, and the Golgi apparatus

Explanation:

Look at a diagram of these two different cells

Which of the following terms refers to the practical applications of scientific knowledge?

A.
Technology

B.
Scientific methods

C.
Medicine

D.
Systems science

Answers

The answer is option A, Technology.

Natural processes that add carbon to the atmosphere include: (check all that apply)

Burning of fossil fuels
ocean uptake
ocean loss
photosynthesis
plant respiration
animal respiration
soil respiration / decomposition by bacteria
volcanic activity
litter fall

Answers

The natural processes that add carbon to the atmosphere include:

- Burning of fossil fuels

- Ocean uptake

- Ocean loss

- Photosynthesis

- Plant respiration

- Animal respiration

- Soil respiration / decomposition by bacteria

- Volcanic activity

- Litter fall

Which one is wild Animals A. Tiger B. Fox c, Cat D. caw

Answers

Answer:

Explanation:

most animals living in forest are wild animals.tiger being one of them.

The picture shows active transport of sugar molecules into the cell.
Why do cells perform this process?
Extracellular
fluid
Cytoplasm
To communicate with one another
To obtain important nutrients
To obtain their genetic code
To store carbon dioxide

Answers

I’m pretty sure it’s to obtain nutrients, sorry if I’m wrong

MARKING BRAINLIEST!! Choose all the answers that apply.

Water:


has a strong attraction to itself
is neither acidic nor basic
can dissolve most substances
contracts when it freezes
heats up and cools down more quickly than land

Answers

Based on the given statements, the answers that apply are:

- Water has a strong attraction to itself (cohesion)
- Water is neither acidic nor basic (pH neutral)
- Water can dissolve most substances

The remaining two statements are incorrect:

- Water expands when it freezes, rather than contracting.
- Land tends to heat up and cool down more quickly than water.


Brainliest ?

Suggest why giraffes cannot live in the Arctic. ​

Answers

Hmmm.

Giraffes, for starters, do not have the proper 'coat' to survive in the Arctic, they'd simply freeze to death.

Giraffes are also not naturally found in cold environments, instead, rather hot ones. They have evolved particularly to regulate their body temperature accordingly by the hot temperatures, NOT for cold.

Hope that helps a little.

Giraffes cannot live in the Arctic due to its cold weather and snowfall.

As we all know that giraffes cannot be able to survive in the Arctic region because there is too much cold weather and also giraffes could not have enough coats of fur on their skins which can be able to protect them from the cold of the Arctic.

Giraffes used to live in the open wide areas of grassland so that they can easily look in all directions which helps them to protect themselves from upcoming dangers like wild animals.

Hence, at last, we can say that giraffes are more likely to live in areas where there are no immense forests and also not have cold weather.

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Multiple choice
Individuals with HIV sometimes contract pneumonia infection that is rare in the rest of the population because people with HIV
A. Are unable to fight off these pneumonia-causing organisms
B. Are most often exposed to these pneumonia-causing organisms
C. Release pheromones that attract the pneumonia-causing organisms
D. Release substances that increase the strength of the pneumonia-causing organisms

Answers

Answer: A
Explanation: Bacterial pneumonia can occur at any stage of HIV disease and at any CD4 cell count. However, as the CD4 cell count declines, the incidence of bacterial pneumonia increases as does the incidence of accompanying bacteremia and septicemia.

Name the above painting and its artist. How has the artist used balance, variety, and movement in this piece to
emphasize the man waving the cloth, in the upper right-hand corner? Be specific in your response.

Answers

The painting mentioned is called The Raft of the Medusa by Theodore Gericault. He employed various techniques to create balance, variety, and movement in order to emphasize the man waving the cloth in the upper right-hand corner.

1. Balance: Géricault achieved balance by using a triangular composition that draws the viewer's eye towards the man waving the cloth. The main group of survivors forms the base of the triangle, while the man in the upper right serves as the apex. This arrangement creates a visual balance and harmony within the composition, directing attention towards the focal point.

2. Variety: Géricault incorporated variety in several ways to highlight the man waving the cloth. One way is through the use of contrasting elements. For instance, the figure is likely to be depicted with strong light and shadow, contrasting with the darker tones and more subdued lighting of the surrounding figures.

Additionally, the artist may have used color contrasts or employed different brushwork techniques to differentiate the waving figure from the rest of the composition, making him visually distinct.

3. Movement: Géricault infused the painting with a sense of movement to emphasize the man waving the cloth. The artist achieved this through the use of dynamic and diagonal lines. The figures on the raft are depicted in various poses, some of them leaning or reaching out, which creates a sense of action and movement towards the upper right-hand corner. The waving cloth itself might be depicted with flowing, sweeping lines or implied movement, suggesting the energy and urgency of the moment.

By employing these techniques of balance, variety, and movement, Géricault effectively directs the viewer's focus to the man waving the cloth. The triangular composition, contrasting elements, and dynamic lines all work together to make him a central point of interest, capturing the viewer's attention and emphasizing his significance within the overall narrative of the painting.

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Where would you expect to find the axon terminals of primary motor cortex neurons?

a. In the core of cerebrum

b. Within the nerves

c. next to muscle fibers

d. In the spinal cord

Answers

The axon terminals of primary motor cortex neurons are typically found within the nerves.

The correct answer to the given question is option b.

The primary motor cortex (M1) is a major component of the motor system in the brain that is responsible for the planning, control, and execution of voluntary movements. M1 neurons are pyramidal cells that send their axons down through the internal capsule, forming the corticospinal tract, which innervates the spinal cord and ultimately muscle fibers.

The axon terminals of M1 neurons are located at the ends of these axons, which make contact with the dendrites of other neurons or with muscle fibers at neuromuscular junctions. When an M1 neuron fires an action potential, it sends a signal down its axon to these terminals, which release neurotransmitters that activate the postsynaptic cells or muscles and cause movement.

M1 neurons have been shown to exhibit somatotopic organization, meaning that different regions of the cortex correspond to different parts of the body. The axon terminals of M1 neurons that control movements of the hand, for example, would be located in a different area than those that control movements of the leg.

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Which of the following is an example of evolution?

Question 11 options:

In a population of all green lizards, a brown lizard is born due to a mutation


To compete against other males, a male deer grows its antlers before mating season


Wolves are reintroduced into an ecosystem


The allele frequency for purple flower color increases in a population

Answers

The example of evolution among the given options is: The allele frequency for purple flower color increases in a population.

Evolution refers to the change in the heritable characteristics of a population over successive generations. In this case, the increase in the allele frequency for the purple flower color indicates a change in the genetic makeup of the population, which is a key aspect of evolution.

Alleles are alternative forms of a gene that determine specific traits or characteristics. The fact that the frequency of the allele for the purple flower color is increasing suggests that more individuals in the population possess this particular genetic variant. This change can occur through various mechanisms such as natural selection, genetic drift, or mutation.

By observing the increase in the frequency of the purple flower color allele in the population, we can conclude that the population is undergoing evolutionary change. This example demonstrates how genetic variation within a population can lead to shifts in allele frequencies over time, resulting in observable evolutionary processes.

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Select the correct answer from each drop-down menu.
Fiona is writing a book on coral life. She is writing about the feeding pattern of corals. Help her complete the sentences.
as a byproduct of cellular respiration. The
The corals produce
and provide organic molecules as food to the corals.
Reset
Next
utilize this to carry out photosynthesis,

Answers

The correct answer for the first drop-down menu is:

"Oxygen is released into the water"

The correct answer for the second drop-down menu is:

"Zooxanthellae live within the tissues of the corals"

Corals have a mutualistic relationship with a type of algae called zooxanthellae. These algae live within the tissues of the corals and carry out photosynthesis. During photosynthesis, the zooxanthellae utilize carbon dioxide and sunlight to produce organic molecules, such as glucose, as a byproduct.

In this process, oxygen is released into the water as a waste product of photosynthesis.

The corals benefit from this arrangement by obtaining a significant portion of their energy needs from the organic molecules produced by the zooxanthellae.

The organic molecules serve as food for the corals, providing them with the necessary nutrients for their growth and survival.

Overall, the symbiotic relationship between corals and zooxanthellae allows the corals to obtain a substantial portion of their food through the products of photosynthesis carried out by the algae.

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To help Fiona complete the sentences:

The coral produce 1) carbon dioxide as a byproduct of cellular respiration  is released into the water as a byproduct of cellular respiration. option AThe 2) zooxanthellae utilize this to carry out photosynthesis, producing oxygen and providing organic molecules as food to the corals. option A

What is the use of carbon dioxide and zooxanthellae?

Carbon dioxide is released into the water as a byproduct of cellular respiration. The zooxanthellae, which are algae that live inside the coral, utilize this to carry out photosynthesis, producing oxygen and providing organic molecules as food to the corals.

The zooxanthellae are photosynthetic algae that live in a symbiotic relationship with corals. The algae provide the corals with food, and the corals provide the algae with a safe place to live and nutrients. This relationship is essential for the survival of both the corals and the algae.

The corals are able to feed on a variety of other things as well, such as plankton and small fish. However, the zooxanthellae are the main source of food for most corals.

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Complete question:

Select the correct answer from each drop-down menu.

Fiona is writing a book and coral life. She is writing about the feeding pattern of corals. her complete the sentences.

The coral produce 1) as a byproduct of cellular respiration. The 2) utilize this is to carry out photosynthesis, and provide organic molecules as food to the corals.

OPTIONS:

1

A) carbon dioxide

B) nitrogen

C) oxygen

2

A) zooxanthellae

B) sea grasses

C) mangroves

Which of the following liquids causes heartburn?
chyme
cecum
stomach acid
bile

Answers

The liquid that causes heartburn is stomach acid.

Which timeline shows the correct order of contributions made to the discovery of DNAA scientist has a tomato plant with red-skinned tomatoes. It has one allele for red skin (R) and one for yellow skin (r).

Which describes the phenotype of the tomato plant?

red skin
yellow skin
homozygous
heterozygous

Answers

The correct order of contributions to the discovery of DNA is Friedrich Miescher, Phoebus Levene, Frederick Griffith, Avery, MacLeod, and McCarty, Erwin Chargaff, Rosalind Franklin and Maurice Wilkins, and James Watson and Francis Crick.

Regarding the tomato plant phenotype, if the plant has one allele for red skin (R) and one allele for yellow skin (r), the correct description for its phenotype would be heterozygous.

The correct answer would be heterozygous.

The correct order of contributions to the discovery of DNA can be represented by the following timeline:

1. Friedrich Miescher (1869): Miescher discovered a substance in the nucleus of cells, which he called "nuclein." This substance was later identified as DNA.

2. Phoebus Levene (1919-1929): Levene made significant contributions to understanding the chemical composition of DNA. He identified the components of DNA, including nucleotides and the sugar-phosphate backbone.

3. Frederick Griffith (1928): Griffith conducted an experiment with Streptococcus pneumoniae bacteria, demonstrating the concept of transformation. He observed that harmless bacteria could acquire the ability to cause disease by incorporating genetic material from other bacteria.

4. Avery, MacLeod, and McCarty (1944): Building on Griffith's work, this group of scientists identified DNA as the substance responsible for the transformation observed in bacteria. Their experiments provided strong evidence that DNA carries genetic information.

5. Erwin Chargaff (1949): Chargaff discovered that the amount of adenine (A) in DNA is equal to the amount of thymine (T), and the amount of cytosine (C) is equal to the amount of guanine (G). This finding became known as Chargaff's rules.

6. Rosalind Franklin and Maurice Wilkins (1952): Franklin and Wilkins used X-ray crystallography to obtain images of DNA's structure, including the famous "Photo 51" taken by Franklin. These images provided critical insights into DNA's helical structure.

7. James Watson and Francis Crick (1953): Watson and Crick, building on the work of others, proposed the double helix structure of DNA. They combined data from various sources to create a model that explained how DNA stores and transmits genetic information.

Regarding the tomato plant phenotype, if the plant has one allele for red skin (R) and one allele for yellow skin (r), the correct description for its phenotype would be heterozygous. The phenotype refers to the observable physical traits of an organism, and in this case, the presence of both red and yellow skin alleles results in a mixed phenotype with red skin being dominant over yellow skin. Therefore, the plant will exhibit red skin as its phenotype.

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When people lose too much bone density as they age—or never reach peak bone density to begin with—they can develop a condition called osteoporosis. People with osteoporosis have what are called brittle bones and an increased risk of fractures. Anyone can get osteoporosis, but the following groups are most susceptible:

all women over age 50 (Women are four times more likely than men to develop osteoporosis.)
people with a small skeletal frame
Why do you think these groups have a high risk of osteoporosis?

Answers

Women over age 50 and individuals with a small skeletal frame are at a higher risk of osteoporosis due to factors such as hormonal changes, reduced bone mass, and genetic predisposition. These factors contribute to decreased bone density and increased susceptibility to fractures in these specific groups.

Women over age 50 and individuals with a small skeletal frame are particularly susceptible to osteoporosis due to several contributing factors.

1. Hormonal Changes: Women experience a significant decrease in estrogen levels during menopause, leading to accelerated bone loss. Estrogen plays a crucial role in maintaining bone density, and its decline can result in reduced bone mass and increased risk of osteoporosis. Men, on the other hand, also experience age-related hormone changes, but at a slower rate, which is why they have a lower overall risk of developing osteoporosis.

2. Reduced Bone Mass: Individuals with a small skeletal frame typically have less bone mass to begin with. Peak bone mass is achieved during early adulthood, and factors such as genetics, nutrition, and physical activity play a role in determining an individual's bone density. People with smaller frames may have a naturally lower bone mass, putting them at a higher risk of osteoporosis as they age.

3. Genetic Predisposition: Genetic factors can influence an individual's susceptibility to osteoporosis. Some people may have inherited genes that result in reduced bone density or impaired bone strength, making them more prone to developing osteoporosis, regardless of gender or frame size.

4. Lifestyle Factors: While not specific to these groups, lifestyle factors such as inadequate calcium and vitamin D intake, sedentary lifestyle, smoking, excessive alcohol consumption, and certain medications can further increase the risk of osteoporosis in all individuals, including women over age 50 and those with a small skeletal frame.

It is important to note that while these groups are at a higher risk, osteoporosis can affect anyone, regardless of gender or frame size. However, the mentioned factors contribute to a higher prevalence of the condition in these particular populations.

To mitigate the risk of osteoporosis, individuals should focus on maintaining a healthy lifestyle, including a balanced diet rich in calcium and vitamin D, regular weight-bearing and muscle-strengthening exercises, and avoidance of tobacco and excessive alcohol consumption. Regular bone density screenings and consultation with healthcare professionals are also important for early detection and appropriate management of osteoporosis.

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Answer: ED ANSWER

We know that people develop different bone densities. Because women tend to develop less-dense bones than men, they are more likely to experience serious bone loss as they age. We also know that people with thin body frames also tend to have lower bone density, which may put them at risk for osteoporosis as they age.

Explanation:

Which statement is true about metamorphic rocks? Responses They dramatically change chemical composition when exposed to heat. They dramatically change chemical composition when exposed to heat. They form from the melting and cooling of other types of rocks. They form from the melting and cooling of other types of rocks. They form due to erosion breaking down other rock and rearranging crystals. They form due to erosion breaking down other rock and rearranging crystals. They have the same composition as the rock from which they formed.

Answers

Metamorphic rocks do not dramatically change their chemical composition when exposed to heat. Instead, the correct statement is that they form from the melting and cooling of other types of rocks. This process involves the transformation of existing rocks, called parent rocks or protoliths, through the application of heat, pressure, and/or chemical activity within the Earth's crust.

During metamorphism, the minerals in the parent rock undergo physical and chemical changes, resulting in the formation of new minerals and recrystallization of the rock structure.

These changes occur without the rock completely melting. The intensity of heat and pressure determines the degree of metamorphism and the resulting type of metamorphic rock formed.

Metamorphic rocks can exhibit a wide range of textures and mineral compositions, depending on the specific conditions of metamorphism. They often display a layered or banded appearance due to the alignment of minerals during the recrystallization process.

The composition of a metamorphic rock may differ from the original parent rock, but it doesn't have the exact same composition as the rock from which it formed.

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LUCOSE, AMINO ACID, CONSTI The end product of digestion of carbohydrate is Anything that we eat or drink is called The end product of digestion of protein is Result of taking huge amount of food Difficult in emptying the bowel​

Answers

The end product of digestion of carbohydrates is glucose. The term used to describe anything that we eat or drink is "nutrients." The end product of the digestion of proteins is amino acids. When a large amount of food is consumed, the result can be difficulty in emptying the bowel, also known as constipation.

Carbohydrates are macronutrients that are broken down during digestion into simpler sugars, such as glucose. Glucose is the primary source of energy for our cells and is used by the body for various functions. It can be readily absorbed into the bloodstream and transported to cells throughout the body.

The term "nutrients" refers to the components of food that provide nourishment and support various bodily functions. It encompasses carbohydrates, proteins, fats, vitamins, minerals, and water. Nutrients are essential for the growth, development, and maintenance of the body.

Proteins are macronutrients made up of amino acids. During digestion, proteins are broken down into their constituent amino acids, which are then absorbed into the bloodstream and utilized by cells for various purposes. Amino acids are essential for building and repairing tissues, producing enzymes and hormones, and supporting immune function.

Consuming a large amount of food can lead to a feeling of fullness and distension in the gastrointestinal tract. This can result in difficulties in emptying the bowel, leading to constipation.

Factors such as low fiber intake, inadequate hydration, and reduced physical activity can also contribute to constipation. It is important to maintain a balanced diet, drink plenty of water, and engage in regular physical activity to promote healthy digestion and bowel movements.

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In what type of circulatory system are fluids pumped through specialized enclosed veins

Answers

The closed circulatory system is characterized by the pumping of fluids through specialized enclosed veins. It involves the circulation of blood within a network of vessels, ensuring efficient transport of oxygen, nutrients, and waste products throughout the body. This system is found in vertebrates and some invertebrates, providing a highly controlled and effective means of circulation.

The type of circulatory system in which fluids are pumped through specialized enclosed veins is known as a closed circulatory system. In a closed circulatory system, the circulatory fluid, called blood, is confined within a network of vessels, including arteries, veins, and capillaries. This system is found in many complex organisms, including vertebrates (such as humans) and some invertebrates.

In a closed circulatory system, the heart acts as the central pump that propels the blood through the network of vessels. The blood carries oxygen, nutrients, hormones, and other vital substances to the body's tissues and organs, while also removing waste products and carbon dioxide.

The specialized enclosed veins, also known as veins and venules, carry deoxygenated blood back to the heart. The veins have one-way valves that prevent the backward flow of blood, ensuring its continuous movement toward the heart. This efficient transport system allows for the controlled distribution of blood throughout the body, delivering oxygen and nutrients precisely where they are needed.

Unlike the closed circulatory system, an open circulatory system is characterized by the absence of enclosed veins. In an open circulatory system, the circulatory fluid, called hemolymph, flows freely through interconnected spaces called sinuses. This type of circulatory system is found in certain invertebrates, such as insects and some mollusks.

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Scientists have classified the sea otter as a keystone species in communities along the Pacific coast of North America. This classification depends on which property of the sea otters?

Question 4 options:

Sea otters have the highest population in the community.


Sea otters act to maintain a wide variety of other populations in the community by controlling the population of sea urchins.


Sea otters are the largest, most massive members of the community.


Sea otters provide food for all of the predators of the community.

Answers

Scientists have classified the sea otter as a keystone species in communities along the Pacific coast of North America based on their ability to maintain a wide variety of other populations in the community by controlling the population of sea urchins.

The sea otter plays an important role in its ecosystem as a keystone species. Keystone species are essential to the balance of their ecosystem, and removing them can cause drastic changes. The sea otter is a keystone species because it helps maintain a balance of power between different members of the ecosystem in which it resides.

Sea otters feed on sea urchins, which are herbivorous invertebrates that can cause significant damage to the ecosystem. Sea urchins feed on kelp, which can be damaged by too many sea urchins. Sea otters help to control the sea urchin population by feeding on them, which in turn allows the kelp forest to thrive.

Therefore, sea otters play an important role in the health and survival of the kelp forest, as well as other species that rely on the kelp forest for food and shelter.

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Study the image

A house on a beach (left side) near the ocean (right side). Arrows show movement counterclockwise.

What do the arrows indicate?

Answers

The arrows shown in the image indicate the movement of the ocean waves in the counterclockwise direction.

The image shows a house situated on the beach, to the left side, near the ocean, which is present on the right side. The arrows shown on the image indicate movement in the counterclockwise direction. The clockwise and counterclockwise movements are often used to show the directions of movement, which can be used to explain numerous phenomena.

The counterclockwise movement shown in the image indicates the movement of the ocean. The arrows show the direction of the water waves. The waves are moving in the counterclockwise direction in this image. The waves in the ocean are caused by various factors, including the wind, the gravitational pull of the moon and the sun, and the motion of the ocean current.

The movement of the water waves is significant for numerous reasons, including the erosion of the beach and the creation of sand dunes. Waves crashing against the beach may erode the sand and soil present on the beach, resulting in the beach's reduction in size. Furthermore, waves help shape sand dunes by carrying sand from one location to another.

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Explain the difference between radial and bilateral symmetry in animals and give an example of each type?

Answers

The difference in each type involves the dna transplant

An example of a reaction to a stimulus is
A. A boy smelling a flower
B. A person tapping on a friend’s shoulder
C. A loud clap of Thunder following lightning
D. Eyes blinking due to smoke in the air

Answers

Answer: an example of a stimulus is  D

Explanation:

since stimulus is basically reacting to anything, it has to be D since smoke can cause blinking eyes, meaning they respond to smoke with flashing. thats why  we shouldn't smoke ( i hope im correct and i hope this helps)

22g per 1000ml of liquid, how much g for 100ml liquid

Answers

22g per 1000ml of liquid, 2.2g is required for 100ml liquid.

We can say that the above statement is correct with the help of the following verification:

1000ml=22g

1ml=22g/1000ml

100ml=22g/1000ml × 100

100ml=2.2g

Hence at last we can say that for 100 ml of liquid 2.2g is required.

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How many chromosomes does a person have?
0000
13
23
36
46

ANSWER: 46

Answers

A person has 23 pairs of chromosomes and 46 in total.

Chromosomes consist of proteins that help in exiting the DNA in its proper form. Chromosomes are the amino acids that contain body genes, which determine the 3 body types of people that is the person will have endomorph,  ectomorph, or ectomorph type of body.

In other words, we can say that the lipid or structure found in the nucleus of the cell is commonly known as chromosomes. Chromosomes are made up of thin villi of dna's, that contain all body genes. If there are any mistakes in the chromosomes then a person will suffer from a serious disease which can be present in a child by birth also.

Hence at last it is clear that chromosomes help in the formation of body genes and also the formation of DNAs.

Read more about chromosomes at:

https://brainly.com/question/11912112

Which of the following is a skin pigment that protects cells from solar radiation damage?
A. Melanin
B. Keratin
C. Epidermis
D. Dermis

Answers

Answer:

A. Melanin.

Explanation:

Melanin is a skin pigment that protects cells from solar radiation damage.

Hope this helps!

Melanin is a skin pigment that protects cells form solar radiation damage
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