Explain the rock cycle by describing how an igneous rock can become a sedimentary rock, then a metamorphic rock, and then an igneous rock

Answers

Answer 1
An igneous rock can be formed from cooled magma. The igneous rock can become sedimentary if it is broken down by wind or water. The sedimentary rock can become metamorphic if it becomes buried in the earth, where pressure and heat would turn it into a metamorphic rock. The metamorphic rock can then become an igneous rock by melting underground and turning into magma, flowing out of a volcano, and cooling. 
Answer 2
Final answer:

The rock cycle explains how rocks can transform from one type to another over time. An igneous rock can become a sedimentary rock through weathering and erosion, which is then transformed into a metamorphic rock through heat and pressure. Finally, a metamorphic rock can turn back into an igneous rock through melting and solidification.

Explanation:

The rock cycle describes the process by which rocks are continuously transformed from one type to another over time. One example of the rock cycle is the transformation of an igneous rock into a sedimentary rock, then into a metamorphic rock, and finally back into an igneous rock.

An igneous rock can become a sedimentary rock through weathering and erosion. As the igneous rock is exposed to the elements, it breaks down into smaller pieces and is transported by wind or water. These sediment particles eventually settle and get compacted and cemented together to form a sedimentary rock.

A sedimentary rock can then be transformed into a metamorphic rock through heat and pressure. When sedimentary rocks are buried deep underground, they are subjected to high temperatures and pressures, causing the minerals within the rock to recrystallize and form a new rock with different physical and chemical properties.

Finally, a metamorphic rock can be turned back into an igneous rock through the process of melting and solidification. This occurs when the rock is exposed to extreme temperatures and melts into magma. The magma can then cool and solidify, forming a new igneous rock.


Related Questions

What Represents the presence of the rhesus protein on blood

Answers

Rh Factor. (Guaranteed)

The Rh factor represents the presence of the rhesus protein on blood.

Rh+ blood contains the rhesus protein.

Rh-  blood does not contain the rhesus

The deformed skeletal bones of Neanderthal man were merely the result of a lack of Vitamin

Answers

D is the answer
Hope it helped!

What kind of an experiment can you suggest to test your hypothesis?

Answers

That would be a science experiment so you can predict what would happen when performing the experiment

What molecule acts as the energy currency for the cell? ATP adenine ribose DNA

Answers

ATP, or adenosine triphosphate. The main source of energy for a cell. 

Answer:

ATP is the correct answer.

Explanation:

adenosine triphosphate(ATP) molecule acts as the energy currency for the cell because it stores energy which is used by the body to carry out various functions that occur in the cell.

ATP  is the energy molecule that is required by all cells to perform any function inside the human body.

adenosine triphosphate(ATP) is generated by  a method called oxidative phosphorylation by the help of an enzyme called ATP synthase

you are not required to wear a helmet while operating a motorcycle if you can show proof that you are covered by an insurances policy that provides at least in medical benefits

Answers

Answer:

You are not required to wear a helmet while operating a motorcycle if you can show proof that you are covered by an insurance policy that provides at least $10,000 in medical benefits.

Explanation:

Riding a motorcycle without a helmet is a very irresponsible and dangerous act. This is because the helmet is the only safety equipment that has the ability to protect the rider in the event of a car accident. For this reason, it should be mandatory for every rider to wear the helmet whenever riding his motorcycle. However, helmet use is not mandatory if the individual can prove that he is covered by an insurance policy that provides at least $ 10,000 in medical benefits. This policy ensures that the individual will be able to pay for the necessary medical care if he gets involved in an accident because of his irresponsibility for not wearing the helmet.

Final answer:

In some cases, individuals may not be required to wear a helmet while operating a motorcycle if they can provide proof of insurance coverage that includes sufficient medical benefits. However, helmet laws and insurance requirements vary by jurisdiction, so it's important to know the specific regulations in your area. Consult local laws or seek legal advice for accurate information.

Explanation:

In some cases, individuals may not be required to wear a helmet while operating a motorcycle if they can provide proof of insurance coverage that includes sufficient medical benefits. However, this requirement may vary depending on the jurisdiction. It is important to note that the specific laws and regulations regarding motorcycle helmet use and insurance coverage differ from state to state or country to country.

For example, in some states in the United States, such as Florida or Iowa, motorcyclists who are over a certain age or have certain insurance coverage may be exempt from wearing a helmet. These exemptions are usually based on the assumption that the insurance coverage will provide adequate financial protection in case of an accident.

It is important for motorcyclists to familiarize themselves with the laws and regulations in their jurisdiction to ensure compliance and personal safety. If you are uncertain about the helmet requirements in your area, consult local laws or seek legal advice to get accurate and up-to-date information.

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In theory we mention that some organisms are slow gelatin liquefiers. what about an organism might make it a slow gelatin liquefier?

Answers

If the organism does not produce many enzymes, it might be slower to liquefy gelatin than other organisms. Another reason could be that the enzymes that the organism does produce simply do not have an affinity for gelatin: this would also slow the rate at which the substance is made into liquid.

Blood is composed of many tiny cells in a liquid called plasma. Blood is actually considered a colloid. The dispersed state of matter is , and the dispersion medium is

Answers

The dispersed state of matter is a solid and the dispersion medium is a liquid.

Answer:

Blood is composed of many tiny cells in a liquid called plasma. Blood is actually considered a colloid. The dispersed state of matter is  solid

, and the dispersion medium is  liquid .

Explanation:

What physical properties are shared by most metals?

Answers

Metals are shiny, malleable, and ductile materials that are excellent heat and electrical current conductors.

What is a metal?

A material that, when freshly prepared, polished, or broken, reveals a glossy look and conducts electricity and heat relatively well is referred to be a metal. Metals can be manufactured in a variety of ways. In general, metals are ductile and malleable in nature. These characteristics are a direct consequence of the metallic bond that exists between the atoms or molecules that compose the metal.

A few examples of metals (materials) include gold, silver, aluminum, copper, and iron, amongst other instances.

The following are some benefits of metals:

The melting point of metals is often higher than that of other materials, and they are less likely to deteriorate when exposed to high temperatures. Strength is typically improved with metal grades as compared to their plastic equivalents since metal grades are typically stronger, harder, and more durable.

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Final answer:

Metals, encompassing elements like iron, copper, and aluminum, share several common physical properties. These include high thermal and electrical conductivity, metallic lustre, malleability, and ductility. Metals are distinguished from nonmetals and metalloids based on these distinct physical characteristics.

Explanation:

Most metals, ranging from elements like iron, copper, and aluminum, exhibit several common physical properties. They are characterized by high thermal and electrical conductivity, with their structure often composed of a uniform distribution of atomic nuclei within a 'sea' of delocalized electrons. This results from a special type of bond, known as metallic bonding.

Furthermore, metals have a unique lustre, termed metallic lustre, which gives them their shiny appearance. They are also malleable (can be formed into sheets), and ductile (can be drawn into wires). Many metals are remarkably hard and strong, owing to their internal atomic arrangement and bonding structure.

In the periodic table, elements that exhibit these characteristics are classified as metals, distinguishing them from nonmetals and metalloids which possess different sets of properties.

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In a very small population of birds, assume there are two types of alleles that control feather color. 5 out of 20 total alleles in the population code for blue feathers. what is the allele frequency of the "blue feather allele" in this population?

Answers

Final answer:

The allele frequency of the blue feather allele in the bird population is 25%, calculated by dividing the number of blue feather alleles (5) by the total number of alleles (20).

Explanation:

To calculate the allele frequency of the "blue feather allele" in a bird population, you can use the following steps. First, you need the total number of alleles for the gene in the population. In this case, there are 20 total alleles. Out of these, 5 code for blue feathers.

The allele frequency is calculated by dividing the number of specific alleles by the total number of alleles. Applying this to the blue feather allele:

Number of blue feather alleles = 5

Total number of alleles = 20

The frequency of the blue feather allele (p) is:

p = Number of blue feather alleles / Total number of alleles

p = 5 / 20 = 0.25 or 25%

So, the allele frequency of the blue feather allele is 25% in the given bird population.

Sentience refers to an animal's ability to

Answers

they have the ability to live and reproduce.

Sentience in animals signifies their capacity for conscious experiences, emotions, perception, and awareness of themselves and their surroundings.

At its core, sentience implies that animals possess a level of consciousness, granting them the potential to feel emotions, experience pleasure or pain, and have a sense of self.

This capacity for subjective experience distinguishes sentient beings from mere automatons or simple reactive systems.

Animal sentience encompasses a range of experiences and behaviors. It includes the ability to sense the environment, process sensory information, and formulate responses based on that information. Animals exhibit signs of pleasure, distress, fear, and contentment, reflecting their emotional experiences.

Moreover, sentience involves learning, memory, problem-solving, and adaptability. Animals can learn from their experiences, retain knowledge, and apply it to future situations.

This dynamic process of learning and adapting to changing circumstances showcases their cognitive abilities and mental flexibility.

Recognizing and acknowledging animal sentience is crucial for ethical and compassionate treatment. Understanding that animals can experience pain, distress, and joy prompts a responsibility to consider their well-being and minimize any harm inflicted upon them.

This acknowledgment has significant implications for animal welfare, animal rights, and our interactions with the diverse array of sentient beings we share our planet with.

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The recent advent of _____ technology permits large-scale exploration of the effects of diet on the expression of thousands of genes.

Answers

The recent advent of MICROARRAY technology ................... of thousand of genes. Microarray technology is used for many purpose. The technology can be used to determine the interactions between dietary nutrients and endogenous molecular entities [genes] in order to elucidate the underlying health modifying capacity of nutritional molecules.

A solution with the indicator would be most likely to turn yellow to blue when which combination of factors exists ?

Answers

You mix yellow color with red color to make magenta. You mix yellow color with green color to make a cyan. You mix the cyan color and the magenta color and you will produce a blue color. A combination of yellow and green, and yellow and red therefore must exist to make a color blue.

If you examine the gene pool of a population that is evolving due to genetic drift, what do you predict will occur with the allele frequencies?
a. p will decrease.
b. p will increase.
c. q will increase.
d. q will decrease.
e. there is no way to tell how p or q will change.

Answers

the correct answer is B


WILL GIVE A BRAINLEST


In the western United States, the movement of air causes clouds to release their moisture as rain on which side of mountain ranges?



eastern



northern



southern



western

Answers

In the West U.S.A, the movement of air causes the clouds to release their moisture as rain on the western side of the mountain ranges.

~Hope this helps m8

hypothesize how the evolutionary history of cells might have differed had endosymbiosis not occurred?

Answers

Most eukaryotic cells today would less likely have no mitochondria and other organelles because endosymbiosis did not occur. Endosymbiosis theory posits that organelle such as the mitochondria, which originally was a bacterium, was engulfed by the cell and instead of being digested turned to generate ATP and other important component for cellular processes. This advantage prolifically created the cell to become more efficient and high-powered organism which enabled for other processes such as communication and organization with other similar cells.  

Final answer:

Endosymbiosis played a crucial role in the evolution of cells, specifically in the development of eukaryotic cells. Without endosymbiosis, eukaryotes may not have evolved and the cellular diversity we see today would not exist.

Explanation:

If endosymbiosis did not occur, the evolutionary history of cells would likely be very different. Endosymbiosis played a key role in the development of the first eukaryotic cells, as it involved the engulfment of one prokaryotic cell by another, leading to a mutualistic relationship. Through this process, mitochondria and chloroplasts, which are essential organelles in eukaryotic cells, were acquired. Without endosymbiosis, eukaryotes may not have evolved and the cellular diversity we see today would not exist.

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Transdermal administration occurs when a drug diffuses into the bloodstream through the skin.

Answers

The answer to this question would be: true

In transdermal route, the drug is absorbed through the skin. This can be done by using a transdermal patch that will adhere to the skin and release its active compound slowly. the compound will diffuse until it going to the dermis and will be distributed to the body.

Which of the following can be used as lamp oil?

carbohydrates
lipids
nucleic acids
proteins

Answers

Answer;

-The most appropriate answer is Lipids

Explanation;

-Lipids is among the four biological biomolecules, the others being proteins, carbohydrates and nucleic acids.

-Lipids are made up of fatty acids and glycerol and are composed of elements carbon, hydrogen, oxygen and they may also contain phosphorus, like in the case of phospholipids which are mainly components of the cell membranes.

-They take two forms, namely; fats and oils. Therefore, the oil form of lipid may be used as lamp oil.



Answer: lipids  

Explanation:

Lipids are the biomolecules that are made up of fatty acids and glycerol. These are primarily composed of elements such as carbon, hydrogen, oxygen, and phosphorus. The lipids are the basic components of the cell membranes. Lipids are the biomolecules produce in the body of both plants and animals. The lipids are of two major types:

1. Fats: These are the lipids which remain solid at room temperature.

2.Oils: These are the lipids which remain liquid at room temperature. For example the oil obtain from the fish, nuts and seeds of the plants.

On the basis of the above description, lipid is the correct option.

Which of the following elements has the largest atomic radius? Silicon Aluminum Sulfur Phosphorous

Answers

Answer:

Aluminum has the largest atomic radius.

Explanation:

Atomic radius of an atom is defined as the total distance from the nucleus to the valence shell that is outermost shell of the atom.

1) When we move down the group, due to an addition of shell the outermost shell moves far away from the nucleus the distance between the nucleus and outermost shell increases.

Thus, the atomic radii of the atom increases down the group.

2) when we move from left to right in a period number of electrons increases in the same shell along with increase in number of protons. With this increase in protons effective nuclear charge between the valence electrons and nucleus increases, which results in the contraction of size of an atom.

Thus, atomic radii of an atom decreases on moving towards right of the periodic table.

Since,silicon ,aluminum ,sulfur and phosphorous are of same period. the order of these elements in periodic table is Aluminum, silicon, phosphorus and sulfur.

As we know that atomic size decreases from left to right .So, the the element with highest atomic radius is aluminum and then silicon followed by phosphorus and sulfur.

The element with the largest atomic radius is sulfur (S).

What is atomic radius?

Atomic radius generally increases as you move down a group (column) in the periodic table and decreases as you move across a period (row).

Silicon (Si) and aluminum (Al) are both located in the third period of the periodic table.

As we move from left to right across the period, atomic radius tends to decrease due to increasing effective nuclear charge and stronger attraction between the nucleus and the valence electrons.

Therefore, aluminum has a smaller atomic radius compared to silicon.

Thus, sulfur, being located below phosphorus, has a larger atomic radius than phosphorus.

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Energy flow in plants -- concept map plants are best known for their ability to perform photosynthesis, the process by which light energy is converted to chemical energy in the form of sugars. but plants don't just make sugars; they use them, too. like animals, plants must break sugars down to fuel cellular work. in this activity, you will complete a concept map showing the interrelatedness of sugar production and sugar breakdown in a plant cell. g

Answers

A mutually dependent relationship exists between chloroplast and mitochondria in the plant cell. Photosynthesis, which occur in the chloroplasts,generates the sugar and oxygen gas that are used in mitochondria for cellular respiration. It generates carbon-dioxide which in turn is used as a carbon source for the synthesis of sugars during photosynthesis.
Final answer:

Plants are able to convert sunlight into sugars via photosynthesis. They then use those sugars, breaking them down through cellular respiration to fuel their cellular activities. This energy flow and conversion is a part of a plant's metabolism.

Explanation:

Plants have a unique ability to convert the sun's energy into chemical energy via photosynthesis. In this process, they turn light energy and carbon dioxide into glucose, a type of sugar. This glucose is stored as potential energy within the plant. Moreover, plants do not only produce sugars but also consume them. They break down the sugars to fuel their own cellular activities through a process called cellular respiration . In this process, the energy stored in glucose is released and used to drive various cellular processes. It's a cycle: photosynthesis produces the energy that's used in cellular respiration, and cellular respiration releases CO2 which is used in photosynthesis. The conversion and utilization of energy via these processes is a major part of a plant's metabolism.

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In a food chain 90% of the energy is lost in the transfer at each trophic level, and only 10% passes as usable biological energy. What will happen if secondary consumers are removed from a food chain?
A) Energy transfer in the food chain would be completely stopped.
B) Energy transferred to the tertiary consumers would be increased by 40%.
C) Energy transfer to the subsequent trophic levels of the food chain will be disturbed.
D) Producers will transfer more energy to the subsequent trophic levels of the food chain.

Answers

the answer it's C) Energy transfer to the subsequent trophic levels of the food chain will be disturbed. 

The correct answer is option C) Energy transfer to the subsequent trophic levels of the food chain will be disturbed.

In an ecosystem, the food chain starts with the producers. The producers convert the light energy to chemical energy through the process of photosynthesis. The energy from the producers is transferred to the primary consumers. the energy from the primary consumers is transferred to the secondary consumers and the energy from the secondary consumers are transferred to the tertiary consumers.

In case, the secondary consumers are removed from the food chain, the tertiary consumers would not get their food, hence, they would be disturbed. Although the energy transferred to each level remains 10% only.

Middle-ear infections become __________ frequent in middle childhood because the eustachian tube becomes __________.

Answers

Middle-ear infections become less frequent when you reach middle childhood since the eustachian tube becomes longer, narrower, and more slanted. This prevents the bacteria as well as liquid from traveling easily starting from the mouth to the ear. Hence, it decreases the chances of middle ear infections. 

A person with blood group A produces antibodies against B. A person with blood group B produces antibodies against A. A person with blood group AB produces no antibodies. How can you explain this?
A and B alleles are co-dominant. Therefore, both A and B carbohydrates are present on the cell.
A is incompletely dominant over B. Both A and B carbohydrates are present on the cell.
A and B alleles are co-dominant. Half the cells have only A, and other half have only B.

Answers

I think the correct answer from the choices listed above is option A. From the situation stated above we can say that A and B alleles are co-dominant. Therefore, both A and B carbohydrates are present on the cell. Hope this answers the question. 

Which elemental halogen would you predict is the most stable, upon mixing with other halides?

Answers

Halogens are a group of non-metallic elements that includes Fluorine (F), Chlorine (Cl), Bromine (Br), Iodine (I) and Astatine (At). The elemental form of halogens are not found in nature. These generally combine with other elements or one another to form halides. For example, two chlorine atoms combine together to form one chloride molecule.
Upon mixing with other halides, Fluorine is found to be the most stable halogen because the stability of halide ions decreases down the group.

Final answer:

Iodine forms the most stable halide ions due to its large atomic radius, which allows for a more even distribution of the negative charge, making its conjugate base more stable than other halogens like fluorine.

Explanation:

The stability of halogens when mixed with other halides depends on various factors including electronegativity, atomic size, and the ability to spread out negative charge. Among the halogens, fluorine is the most electronegative but it is also the least stable when forming halide ions, making it the most basic due to its small atomic size. On the other hand, iodine with a significantly larger atomic radius allows for better distribution of the negative charge on the iodide ion, which increases the stability of the conjugate base.

Therefore, taking into account the atomic size and electronegativity, iodine typically forms the most stable halide ions upon mixing with other halides, as stability increases with the size of the halogen atom. This is further supported by the trend that the acidity of haloacids increases as we move down the group in the periodic table, corresponding to an increase in halogen atomic size and consequently, more stable halides.

Your patient has recently completed her first round of chemotherapy in the treatment of lung cancer. when reviewing this morning's blood work, what findings would be suggestive of myelosuppression?

Answers

When there is myelosuppression, the suggestive finding is there is a decrease in the platelets and red blood cells. Also called the bone marrow suppression, myelosuppression is a common side effect of the treatment of chemotherapy. When this side effect happens, there is a decrease in the production of blood cells. The result which may be the effect of myelosuppression is a decrease in one, two or all three types of blood cells. Most patients of chemotherapy experience a decrease in red blood cells. Another effect is the decrease of white blood cells by most patients. Myelosuppression will be subcategorized as neutropenia when chemotherapy results to the reduction of neutrophils which is a specific type of white blood cells. Thrombocytopenia is the term for a drop in platelet numbers. This kind of suppression is not that common.  Only 10 percent of cancer patients undergo the negative effects of this kind of suppression. 

What choices were open to the townspeople when the hangman arrived?

Answers

The decisions open to the townspeople when the Hangman arrived was to stop him or enable him to do what he wished. When he completed his work, there was no real way to stop him on the grounds that there was no one remaining to hold up. This lyric identified with Germany since individuals enabled the Nazis to submit genocide by not following up on the primary signs they saw – nations included. In the public arena today, it takes a more figurative tone where administrations are permitted to rise since individuals let them. Niemoeller makes a comparable point as the sonnet since he didn't confront Germany until the point when his own particular life was in threat, similar to those in the ballad. The significance of the Hangman's enigma is that even the individuals who take after the Hangman will turn into a casualty of his anger since they are in reality the most noticeably awful in the cowardliness. For the understudy's conclusions, I would favor the principal: you need to state something when you sense something isn't right. I understand that it is hard to settle on such a choice, however I would not have the capacity to live with myself in the event that I could have spared an existence by simply yelling my restriction

When culturing a wound the nurse should obtain the sample from which part of the wound?

Answers

When culturing a wound the nurse should obtain the sample from the GRANULATION TISSUE SURFACE OF THE WOUND. 
Wounds are usually cultured in order to determine the micro organism that has infected the wound so that an appropriate antibiotic can be prescribed. There are different types of wound culture and the type of wound culture will determine where the sample is obtained on the wound.

Which type of molecule makes up the double layer of a cell membrane?

Answers

Phospholipids (lipids)

Answer:

The double layers of cell membranes is made up of phospholipids molecule.

Explanation:

The double layers of cell membranes is made up of phospholipids molecule.

phospholipids are the main component of the cell membrane.

phospholipids made up of hydrophobic tail which contains two fatty acids and is the hydrophilic head that contains polar phosphate and glycerol.

The double layer of phospholipids assists as a barrier that provides only specific substances to move inside the cells.

The nurse is assessing a client who was sexually assaulted several months ago and who has subsequently developed posttraumatic stress disorder (ptsd). the nurse observes that the client's nonverbals are closed and the client is reluctant to engage with the nurse. how should the nurse best interpret this client's behavior?

Answers

That the clients PTSD has worsened and their trauma is affecting thier ability to trust the nurse

in terms of bases the difference between DNA and RNA that DNA has blank and RNA has blank

Answers

Dna has all the info its like the brain, the rna makes copies of the info and transfers them

Final answer:

The difference between the bases in DNA and RNA is that DNA contains thymine, while RNA contains uracil instead. Thymine and uracil are structurally similar but are used differently in DNA and RNA molecules.

Explanation:

One of the main differences between DNA and RNA is the type of nitrogenous bases they contain. DNA has adenine, guanine, cytosine, and thymine, whereas RNA contains adenine, guanine, cytosine, and uracil. While both nucleic acids have adenine, guanine, and cytosine, the fourth base in DNA, thymine, is replaced by uracil in RNA. Uracil is structurally similar to thymine but lacks a methyl group, differentiating it significantly within the RNA molecule.

In the structure of these nucleic acids, each nucleotide is composed of a base, a pentose sugar, and phosphate groups. For DNA, the sugar is deoxyribose, and for RNA, it is ribose. This difference in sugars contributes to the different functional properties of DNA and RNA. Consequently, thymine pairs exclusively with adenine in DNA, while uracil pairs with adenine in RNA during the process of protein synthesis.

In grammatically correct sentences, explain the role of insulin in maintaining glucose levels after a large meal

Answers

After a large meal, the sugar level in our body increases. Insulin helps in reducing or leveling it off. Our cells need sugar for energy, but sugar in the blood is not readily accessible by cells. Release of insulin from the pancreas assists the sugars in entering the cells. If there is an excess in sugar, insulin also helps in storing the excess in the liver until it is needed by the body. 
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