Explain how bone marrow can be called tissue

Answers

Answer 1
Bone Marrow is tissue in the hollow centers of our bones, it has stem cells which produce our blood cells. It also produces red blood cells that give oxygen to the whole body.
Answer 2

Final answer:

Bone marrow is considered a tissue because it is a connective tissue with specialized functions—the yellow marrow stores energy, and the red marrow is responsible for hematopoiesis, the production of blood cells.

Explanation:

Bone marrow is referred to as a tissue because it is a connective tissue that fills the interior of bones. There are two types of bone marrow: yellow marrow and red marrow. Yellow marrow is rich in adipose tissue and stores energy in the form of triglycerides within adipocytes. Red marrow plays a crucial role in hematopoiesis, the production of blood cells, including red blood cells, white blood cells, and platelets. This process involves the proliferation of stem cells, which are self-renewing and differentiate into various blood cell types. Bone marrow functions as a vital component within bones, which are considered organs containing multiple types of tissues such as blood, connective tissue, nerves, and bone tissue. Osteocytes within bone tissues create the mineral matrix that characterizes bones.


Related Questions

when a divergent boundary occurs under the ocean it is called

Answers

When a divergent boundary occurs under the ocean it is called oceanic ridge.

The selective breeding of wild mustard has _____________ _________ and produced at least four other vegetable crops.

Answers

increased biodiversity

Gould and Eldredge proposed this new theory called

Answers

They came up with the new theory called punctuated equilibrium.

Final answer:

Paleontologists Stephen Jay Gould and Niles Eldredge proposed the theory of punctuated equilibria, which describes the pattern of evolution as long periods of stability interrupted by brief periods of rapid change, explaining the fossil record's structure and the relative stability of species over time.

Explanation:

Gould and Eldredge proposed a new evolutionary theory known as punctuated equilibria. This theory suggests that instead of species evolving continuously over time, they remain stable for long periods, known as equilibrium, and undergo rapid evolution during relatively brief periods of ecological instability, leading to new species. These evolutionary bursts punctuate the long periods of stasis. Punctuated equilibria helps explain the patterns observed in the fossil record, including the presence of small anatomical gaps between closely related fossil forms. The theory underscores the stability of species over time, with adaptation occurring primarily during the formation of a new species, rather than as a constant process. While it incorporates genetic principles, punctuated equilibria is primarily a theory of macroevolution, focusing on the transitions between species in geological time.

Beth learned in her science class that white blood cells in the human body capture harmful material by engulfing them. Then they digest them using enzymes, thus protecting the body from infection. Which eukaryote has a similar mode of nutrition?

Answers

Answer:

The Answer Is C): Amoeba

Explanation:

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Amoebas are eukaryotic microorganisms that have a similar mode of nutrition to the process described for white blood cells. They capture and engulf food particles, such as bacteria or small organic particles, through a process called phagocytosis.

After engulfing the food particle, amoebas form a food vacuole around it. Within the food vacuole, enzymes are secreted to digest the captured material, allowing the amoeba to obtain nutrients and energy from the ingested material.

This process of engulfing and digesting food is known as phagocytic nutrition and is a characteristic feature of certain eukaryotic organisms like amoebas.

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Neither of Josie's parents play a musical instrument. Josie thinks that she won't be able to play an instrument because her parents can't. Is she right? Why or why not?

Answers

She is incorrect because it is not hereditary to play a musical instrument, it is something that is learned.

Can I get some help please? Thanks!

Which structures help both plant and animal cells meet the challenges of life?


A. flagella and mitochondria
B. vacuoles and cell membrane
C. cell wall and lysosomes
D. nucleus and cell membrane

Answers

Which structures help both plant and animal cells meet the challenges of life?

A. flagella and mitochondria
B. vacuoles and cell membrane
C. cell wall and lysosomes
D. nucleus and cell membrane
_________________________
The answer to your question is Letter D. "Nucleus and cell membrane."

Please message me if I'm wrong, I would be deeply sorry. Thank you!
Hello there!

The correct answer is option D

Nucleus and cell membrane.


As always, it is my pleasure to help students like you!

Comparisons of cranial capacity between A. africanus and the later species H. erectus and A. boisei show that H. erectus had much larger brains, while A. boisei had only slightly larger brains, than A. africanus. There is evidence that A. africanus and H. erectus used tools, though the tools made by H. erectus required more skill and planning to craft. How do you think the toolmaking abilities of A. boisei would have compared? (A)A. boisei would have had very little ability to make tools, unlike the other two hominids.(B) A. boisei would have been able to make more advanced tools than the other two hominids. (C)A. boisei would have been able to make tools that were less advanced than H. erectus. (D)A. boisei would have made tools that were less advanced than those made by A. africanus.

Answers

C because they larger brains than A. africanus but not as large brains as H. erectus

Answer:

A. boisei would have been able to make tools that were less advanced than H. erectus.

Explanation:

because im him

Which organelles store food and other materials needed by the cell?
vacuoles
ribosomes
chloroplasts
mitochondria

Answers

Vacuoles stores food
Ribosome makes protein for the cell
Chloroplasts create food for only the plant cell( animal cells does not have chloroplast)
Mitochondria makes food for the animal cell? This one I’m not sure of.
Final answer:

The vacuoles are the organelles that store food and other materials required by the cell. They maintain pressure within the cell and support its structure besides storing substances. Other organelles have differing functions such as protein production, photosynthesis, and energy production.

Explanation:

The organelles that store food and other materials needed by the cell are the vacuoles. Located mainly in plant cells, vacuoles are large, fluid-filled organelles that store substances like water, nutrients, or waste products. In addition to storing substances, they also contribute to many other functions within the cell such as maintaining pressure within the cell which helps the plant cell keep its structure.

It's worth noting that other organelles like ribosomes, chloroplasts, and mitochondria also play significant roles within cells. Ribosomes produce proteins, chloroplasts are involved in photosynthesis in plant cells, and mitochondria are responsible for producing energy in the cell through the process of cellular respiration.

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From the images, what can you infer about the wings of the bat and the butterfly? They have a similar structure but perform a different function. They have a similar structure and perform a similar function. They have a different structure and perform a different function. They have a different structure but perform a similar function.

Answers

They have a different structure but perform a similar function.

This is known as an analogous structure.

Answer:

They have a different structure but perform a similar function

how to differentiate between ectoplasm, endoplasm and cytoplasm?

Answers

Endoplasm generally refers to the inner (often granulated), dense part of a cell's cytoplasm. This is opposed to the ectoplasm which is the outer (non-granulated) layer of the cytoplasm, which is typically watery and immediately adjacent to the plasma membrane.

Which is a difference between antibodies and antigens?
Antigens destroy pathogens; antibodies trigger the production of antigens.
Antigens trigger the production of antibodies; antibodies destroy pathogens.
Antigens are components of the lymphatic system; antibodies are components of the immune system.
Antigens are components of the immune system; antibodies are components of the lymphatic system.

Answers

Second one:
Antigens trigger the production of antibodies and antibodies destroy pathogens
Final answer:

Antigens are foreign substances that trigger the production of antibodies in the body. Antibodies, produced by the immune system, recognize and neutralize these antigens, thus helping to protect the body from infections.

Explanation:

The correct option is: Antigens trigger the production of antibodies; antibodies destroy pathogens. Antigens are foreign substances (usually proteins) that invade the body, like bacteria, viruses, or allergens. When your body recognizes these foreign substances, it produces antibodies. Antibodies are proteins produced by the immune system that can identify and neutralize the antigens. In other words, antigens stimulate your immune system to produce antibodies against them, and then the antibodies bind to the antigens and eliminate them, protecting the body from infections.

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Understand how and why heredity increases the diversity among organisms

Answers

Heredity increases diversity among organisms by nonrandom mating, which is the preference of the organism to mate with another based on specific characteristics. Nonrandom mating has two forms. Inbreeding is the first form where organisms with the same genotypes will mate with each other resulting in minimal genetic diversity. Outbreeding is the second form where organisms of different genotypes will mate with each other resulting in an increase in genetic diversity. The variation in the heredity of an organism allows it to be more flexible and can also guarantee better survival rate of the population under the given environmental conditions. 

Prokaryotes that live in almost every habitat are...

Answers

Bacteria is prokaryote that live in almost every habitat.

Which of the following is the main evidence of life in the early universe?
Question 1 options:


dinosaur fossils


rock layering


plant remains


cyanobacteria
5.17 Unit Test: History of Life on Earth, Part 1 Pool 2
Question 2 (3 points)
Question 2 Unsaved

Which of the following would have resulted from the functions of prokaryotes on early Earth?
Question 2 options:


Earth's oceans grew larger


less oxygen gas became present in the atmosphere


less carbon became present in Earth's soil


more oxygen gas became present in the atmosphere
5.17 Unit Test: History of Life on Earth, Part 1 Pool 3
Question 3 (3 points)
Question 3 Unsaved

Which of the following was most likely not present in creating the amino acids of early Earth's waters of the past?
Question 3 options:


sulfur


nitrogen


hydrogen


ammonia
5.17 Unit Test: History of Life on Earth, Part 1 Pool 4
Question 4 (3 points)
Question 4 Unsaved

Which of the following is used as evidence in supporting the idea that life changes over time?
Question 4 options:


the big bang theory


the existence of homologous structures


the similarities in body systems such as the nervous and circulatory systems


the time period in which an embryo develops
5.17 Unit Test: History of Life on Earth, Part 1 Pool 5
Question 5 (3 points)
Question 5 Unsaved

The diagram shows embryo development of four different animals. How is this evidence used to suggest that life changes over time?

History of Life on Earth
Question 5 options:

Late-stage embryonic development illustrates how acquired characteristics have caused these species to become more differentiated over time.

The DNA of all these life forms begins exactly the same and then changes over time as it replicates to produce the organisms different traits.

These stages indicate that animals within a species must have changed over time.


Striking similarities at early developmental stages is evidence that they came from a common ancestor.
5.17 Unit Test: History of Life on Earth, Part 1 Pool 6
Question 6 (3 points)
Question 6 Unsaved

Which of the following describes how homologous structures provide evidence to support that life changes over time?
Question 6 options:


some animals exhibit similar structures, possibly due to a common ancestor



some animals exhibit similar stages of embryonic development


some animals exhibit structures that are no longer used for any purpose


some fossils exhibit similar biological proteins

Question 7 (3 points)
Question 7 Unsaved

How can these forelimbs explain how life changes over time?

History of Life on Earth
Question 7 options:

These illustrations show the progressive development of the forelimb in a species over time, one example of how life has changed over time.

These illustrations show the homologous forelimbs of four different species with enough similarities to suggest all had a common ancestor.

The illustrations show the vestigial structures of four different species that once had a function in an ancestral organism but no longer have a function today.

These illustrations show the variety of bone structures that exist among different species and how life has changed over time as new species develop.

Answers

For number 1 is cyanobacteria

For number two is D

For number 5 I think is the striking similarities at early development stages is evidence that they came from a common ancestor.

I hope this helps.

Answer:

number 2 is D im pretty sure

Explanation:

How do natural selection and evolution contribute to antibiotic-resistant bacteria ?

Answers

Passes on advantageous mutations to the next generations

To which phylum would a flowering plant that produces seeds belong?
A. Bryophyta B. Lycophyta C. Anthophyta D. Ginkgophyta

Answers

A flowering plant that produces seeds belong to Angiosperms as its phylum.

Which of the following is NOT a function of Earth's atmosphere?
A. provides carbon dioxide for plants
B. provides oxygen for plants and animals
C. keeps volcanoes from erupting too much
D. keeps Earth's surface at a comfortable temperature

Answers

C because the inside of earth with tectonic plates and such controls volcanoes

The function of the earth's atmosphere does not involve the volcanoes that erupted so much.

The following should be the function of the earth atmosphere:

It gives carbon dioxide to plants. It gives oxygen to plants & animals. The surface of the earth should be at the temperature i.e. comfort.

Therefore we can conclude that the function of the earth's atmosphere does not involve the volcanoes that erupted so much.

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Understand how fossils, the Law of Superposition and geologic timescale support the theory of evolution

Answers

The fossils which are plants and animal remnants change over time. The Law of Superposition is a law that governs the geochronology, which states that in any undisturbed sequence of rocks deposited in layers, the youngest layer can be found on the top and the oldest can be found at the bottom, with each layer being younger than the one under it and  older than the one above it.
These elements works in a synergy to explain and to help persons of interest understand the idea of evolution which stresses out that the modern day species came from a distinctively different species. 

in most animal cells a complex Network of proteins provides
which of the following

Answers

They provide movement, shape and organization

Hope this helps :D

Answer:

Option D, All of the above

Explanation:

Complete Questions -

In most animal cells a complex Network of proteins provides  which of the following -

A.Organization B.Movement C.Shape D. All of the above

Solution -

Proteins are complex molecule that plays a critical role in the body. They are responsible for defining the shape of the body and regulate its function and structure. Based on their functions, proteins are of different types such as antibody ( protective proteins), enzyme (catalyst), messenger ( transmit signals to co-ordinate between functioning of cells, tissues and organs), structural protein (that provide structure to allow a body to move) and transport protein (transport essential molecules with in the cell and through out the body)

Thus, option D is correct

Inorganic fertilizers have a positive effect on agricultural crops but can adversely affect surrounding areas. What is a negative result of increased inorganic fertitizer run-off into ponds and lakes?

Answers

the inorganic fertilizer can sometimes b harmful for marine life, especially if they ingest it

Inorganic fertilizers have a positive effect on agricultural crops but can adversely affect the surrounding areas and show a negative result by running off into ponds and lakes. The fertilizers are toxic and can pollute the water bodies.

What are inorganic fertilizers?

Fertilizers are the chemicals which are added to the soil to increase the fertility of soil. Chemical fertilizers overuse can contribute to both the soil acidification and the soil crust, thus reducing the content of organic matter, humus, beneficial species in the soil and also reduces the plant growth, alters the pH of soil, growth of pests, and even lead to the release of many greenhouse gases.

Too much use of fertilizers can kill the plants and the excess amount of fertilizers can runoff into waterbodies causing toxic algal blooms to develop which are harmful to aquatic life and other living organisms. Excess fertilizer runoff from agricultural lands can also contribute to aquatic “dead zones” in coastal areas.

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which biome has multistory communities?

Answers

Rain Forest (:

(Novanet)

The correct answer is rain forest.

The tropical rainforest refers to a forest of tall trees in the warm regions of the planet. An average of 50 to 260 inches of rain falls annually. Rainforests come under the tropical wet climate group.

Rainforests cover about 6 percent of the Earth's land surface. The tropical rainforests generate about 40 percent of the Earth's oxygen. The rainforests are biomes that comprise of various communities within them. A community refers to a naturally taking place group of local animals, plants, and other species, which are associating in a specific habitat.


an object in an electrical circuit resists the flow of energy called a
A switch
B resistor
C ohm
D current

Answers

An object in an electrical circuit resists the flow of energy called a B. Resistor.

The name "resistor" implies that the resistor resists the flow of energy. We can calculate the amount of resistance across a resistor.

who was evolution established by

Answers

evolution was established by Charles Darwin
Charles Darwin is most often known as the scientist who introduced and developed evolutional theory, although he and Alfred Russel worked on it together.

give 3 examples where kinetic and potential energy is transformed into each other both ways.

Answers

Potential energy is energy that is stored in an object. If you stretch a rubber band, you will give it potential energy. As the rubber band is released, potential energy is changed to motion. Kinetic energy is energy of motion. A rubber band flying through the air has kinetic energy. When you are walking or running your body is exhibiting kinetic energy.

Potential energy is converted into kinetic energy. Before the yo-yo begins its fall it has stored energy due to its position. At the top it has its maximum potential energy. As it starts to fall the potential energy begins to be changed into kinetic energy. At the bottom its potential energy has been converted into kinetic energy so that it now has its maximum kinetic energy.

A waterfall has both potential and kinetic energy. The water at the top of Bridal Veil Falls has stored potential energy. When the water begins to fall, its potential energy is changed into kinetic energy. This change in energy also happens at Niagara Falls where it is used to provide electricity from the transformation of mechanical and electromagnetic energy to parts of the northeastern United States.

What happens to the recessive allele in a heterozygous offspring

Answers

it gets taken over by the dominate allele because the recessive allele is weaker than the dominate one so the dominate always take over the recessive if there is a domininate and a recessive involved if it's two recessive its recessive if it's two dominate it's also dominate
Final answer:

In a heterozygous offspring, the recessive allele becomes latent. It can be passed on to future generations and may show up in the phenotype if an offspring is homozygous recessive.

Explanation:

In a heterozygous offspring, the recessive allele essentially becomes 'latent', meaning it is present but not expressed in the phenotype. This occurs due to Mendel's law of dominance which states that in a heterozygote, the dominant allele masks the effect of the recessive allele. The recessive allele will only be observable in offspring that are homozygous recessive in nature.

When parents with contrasting dominant and recessive traits reproduce, their offspring will mostly be heterozygous but will express the dominant trait in their phenotype. However, if these heterozygous offspring reproduce, the recessive trait can reappear in the next generation. This happens due to random segregation during formation of gametes where each allele from a pair has an equal chance of being passed on to the offspring.

The recessive trait can appear in the third generation with a 25% probability when heterozygous parents reproduce. This is because there's a 1 in 4 chance of getting a homozygous recessive offspring - that is, an offspring that inherits the recessive allele from both parents.

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During a total solar eclipse, you observe a red ring in the sky. Which part of the Sun are you seeing?
a)corona
b)photosphere
c)chromosphere
d)radiative zone

Answers

You are observing the photosphere.
This the corona, because the moon is in front of the sun and all you can see is the rays of light protruding from the over the side of the moon which creates a ring.

What are the main necessary qualities for manned vehicles of the space program? Select all that apply.
durability
reliability
efficiency
miniaturization

Answers

The answers are actually reliability and miniaturization. Brainliest please.

Answer:

The answers are actually:

Durability

Reliabilty

Explanation:

I answered these and i got it right.

under ideal conditions, bacteria have a generation time of about 20 minutes. Humans have a generation time of about 20 years. Which would you expect to evolve faster? Why?

Answers

Bacteria will evolve faster, because bacteria will reproduce quicker, adaptation, variation, and natural selection will work faster on bacteria because when a favorable trait occurs, it will be reproduced and evolved faster in bacteria. 
Let me know if you need further explanation.
Final answer:

Bacteria would be expected to evolve faster than humans due to their significantly shorter generation time. This allows for frequent genetic recombination and mutation, resulting in rapid adaptation to environmental changes.

Explanation:

Under ideal conditions, bacteria, such as Escherichia coli, can have a generation time as short as 20 minutes due to binary fission. This rapid reproduction, coupled with mechanisms of genetic recombination and high rates of mutation, results in the rapid evolution of bacteria. They can respond to environmental changes, such as the introduction of an antibiotic, very swiftly.

On the other hand, humans, as eukaryotic organisms, have a typical generation time of about 20 years. The significantly longer generation time in humans slows the pace of evolution considerably when compared to bacteria.

Therefore, under ideal conditions, we would expect bacteria to evolve faster than humans due to their shorter generation time, allowing for more frequent genetic recombination and mutation.

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Analysis Questions:

1. List five observations Darwin made about the Amblyrhynchus lizards.

2. Describe two examples of structural adaptations that Darwin observed.

3. Describe two behavioral adaptations that Darwin observed.

4. Explain how these observations influenced his theory of evolution?






Answers

1. List five observations Darwin made about the Amblyrhynchus lizards.

a. They measure about 2-3 feet long.
b. They are cold-blooded.
c. They feed on crab and sea lion feces.
d. They are the only marine iguanas in the world.
e. Their nostrils are connected to salt glands that allow them to expel excess sea salt. 

2. Describe two examples of structural adaptations that Darwin observed.

a. Darwin discovered that finches in the Galapagos have thirteen different kinds of beaks. 
b. Darwin observed two kinds of giant tortoises that are distinguished by the shapes of their carapaces (dome-shaped and saddle-shaped). 

3. Describe two behavioral adaptations that Darwin observed.

a. The marine iguanas have developed several ways of coping with the cold. At night, they huddle together for warmth. 
b. In the face of famine, the marine iguanas have adapted by having the ability to shrink their body size. They are able to grow back to their original size once the food is supply increases.

4. Explain how these observations influenced his theory of evolution?

These observations led Darwin to believe that if a certain trait is more advantageous in a specific environment, then the carriers of that trait are more likely to survive into adulthood and to generate offspring than those who do not have that trait. Eventually, the advantageous traits for a species will proliferate. Darwin later called this as "survival of the fittest".

I completely agree those answers got me a 100


describe the interior of the rats stomach

Answers

Same as any stomach, a small, mucus-coated tissue balloon, filled with acid.









ew.
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