Answer:
Angle at which the sun's rays reach
the earth
FIND THE DISTANCE BETWEEN points A(-2,6) AND B(6,-2)
TO THE NEAREST TENTH,
Answer:
8.9
Explanation:
math
17. The Earth's ocean basins
(a) date from the original formation of the planet
(b) are continually expanding
(c) were formed in the breakup of supercontinents
(d) none of the above
18. Each volcanic center produces both volcanic and plutonic rocks, with the plutonic varieties accumulating underground. The difference between these two varieties is
(a) their chemistry, which changes as the magma erupts on the surface
(b) the size of the crystals, as a function of cooling time
(c) their mineral composition, which changes as the magma erupts on the surface
(d) their density, based on the proportion of heavier metals
19. The silicate minerals are the most abundant varieties on the Earth's surface. They consist of metals held together by silica tetrahedra. These tetrahedra can be arranged in a variety of configurations. Those configurations
(a) become more complex in minerals with decreasing crystallization temperatures (b) become simpler in minerals with increasing amounts of quartz
(c) become more complex in minerals with increasing amounts of iron and magnesium
(d) become simpler in minerals with a decreasing crystallization temperature
20. Arc magmatism wouldn't happen on our planet
(a) if we didn't have a silica-rich planet
(b) in the absence of the effects of water
(c) if we didn't have continental lithosphere (d) without the Earth's magnetic field
21. Old aulocogens are not uncommon on the continents, given the long course of geologic history. These
are now most often
(a) Significant mountain ranges
(b) Passive margins
(c) River valleys or oceanic (d) Deset settings
17. The Earth's ocean basins: (c) were formed in the breakup of supercontinents
The Earth's ocean basins are the large, roughly circular depressions on the Earth's surface that contain the ocean's water. These basins were formed over millions of years as the plates that make up the Earth's crust moved apart, creating new oceanic crust and leaving behind the empty spaces that became the ocean basins. The ocean basins are not continuously expanding, but they are still actively growing due to the movement of the tectonic plates.
18. Each volcanic center produces both volcanic and plutonic rocks, with the plutonic varieties accumulating underground. The difference between these two varieties is: (c) their mineral composition, which changes as the magma erupts on the surface
Volcanic rocks are formed from the solidification of molten rock, while plutonic rocks are formed from the solidification of magma that crystallizes underground. Volcanic rocks are typically rich in minerals such as feldspar and quartz, while plutonic rocks are typically rich in minerals such as hornblende, pyroxene, and amphibole. The mineral composition of volcanic and plutonic rocks can change as they cool, which can affect their physical properties such as density and hardness.
19. The silicate minerals are the most abundant varieties on the Earth's surface. They consist of metals held together by silica tetrahedra. These tetrahedra can be arranged in a variety of configurations. Those configurations: (d) become simpler in minerals with a decreasing crystallization temperature
The silicate minerals are the most abundant group of minerals on the Earth's surface, and they are formed from the solidification of molten magma or lava. These minerals consist of metal ions held together by silica tetrahedra, which can be arranged in a variety of configurations depending on the cooling rate and other factors. As the mineral cools, the tetrahedra can rearrange themselves to form more complex structures, such as the trigonal or tetragonal structures found in many silicates. On the other hand, as the mineral cools further, the tetrahedra can become simpler and form the orthorhombic or cubic structures found in some silicates. The complexity of the tetrahedral arrangement is not directly related to the amount of quartz present in the mineral, although quartz can affect the crystallization temperature and other properties of the mineral.
20. Arc magmatism wouldn't happen on our planet: (a) if we didn't have a silica-rich planet
Arc magmatism occurs when magma rises from deep within the Earth and reacts with the overlying rock. This process can lead to the formation of volcanoes, and the resulting magma is typically rich in silica, which is responsible for the high viscosity and gas content of the magma. Without a silica-rich planet, arc magmatism would not be possible, as the low viscosity and gas content of the magma would make it difficult for it to rise to the surface.
21. Old aulocogens are not uncommon on the continents, given the long course of geologic history. These are now most often: (b) Passive margins
Aulocogenic rocks are formed from the crystallization of magma that has intruded into pre-existing rocks, such as sedimentary or metamorphic rocks. These rocks are typically rich in mafic minerals such as pyroxene and amphibole, and they can form a variety of different rock types depending on the conditions of their formation. In the context of the continents, old aulocogenic rocks are most commonly found in passive margins, which are areas of the continental crust that have not been subjected to significant tectonic activity and erosion. These passive margins are often characterized by thick sequences of sedimentary rocks that can provide a favorable environment for the intrusion of mafic magma and the formation of aulocogenic rocks.
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aswer po sa 13 plss
plss
Answer:
Third one pooooooooooooo
Why is there different time zones in different parts of the world?
What's the time zone in your country?
.A Wave that is moving through water deeper than one-half of the wavelength are known as deep water waves.
True OR FALSE?
A Wave that is moving through water deeper than one-half of the wavelength are known as deep water waves is TRUE
What is a wave?A wave that is moving through water deeper than one-half of the wavelength is known as a deep water wave. In deep water, the motion of the water particles is primarily horizontal, and the wave speed is proportional to the wavelength.
The depth of the water has a minimal effect on the speed of deep water waves. As the water depth decreases, the waves are affected by the bottom and start to "feel" the bottom, becoming shallow water waves.
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Renata precisava medir altura de uma árvore. Para isso, colocou um pedaço de cano enterrado no chão, formando um ângulo de 90º com o solo. Depois mediu os comprimentos das sombras da árvore e do cano, Obtendo as medidas indicadas na figura abaixo. Qual é a medida aproximada da altura da árvore? * 7,5 metros 8 metros 9 metros 7 metros
Answer:
A altura aproximada da árvore é 7,9 metros.
Esta questão está relacionada com a proporcionalidade entre variáveis. A proporção é um valor referente a razão de dois números. Por isso, a proporção está atrelada a fração, onde temos um numerador e um denominador. Desse modo, temos uma relação de equivalência entre dois valores.
Nesse caso, vamos resolver o problema por meio da semelhança entre triângulos. A semelhança entre triângulos ocorre quando existem dois ou mais triângulos com mesmos ângulos internos. Desse modo, existe uma proporção entre suas medidas, que devem ser equivalentes sobre uma determinada razão. Portanto:
which conditions are necessary to cause loose sediment to become sedimentary rock?
To cause loose sediment to become sedimentary rock, certain conditions are necessary. These conditions include compaction, cementation, and the presence of minerals.
Firstly, compaction occurs when sediment layers are subjected to pressure from overlying layers. This pressure forces the grains in the sediment to pack more closely together, reducing the space between them and causing the sediment to become more compact. Secondly, cementation takes place when minerals, such as calcium carbonate or silica, fill the spaces between the compacted sediment grains. These minerals act as a "glue," binding the grains together and forming a solid rock. Over time, minerals dissolved in water seep into the spaces between sediment particles, binding them together. This cementation creates a solid structure that is resistant to weathering and erosion. Overall, the formation of sedimentary rock requires the deposition, burial, compaction, and cementation of loose sediment. These processes can take millions of years to occur, resulting in the wide range of sedimentary rock types that we see today. In summary, the conditions necessary for loose sediment to become sedimentary rock involve a combination of compaction and cementation, along with the presence of minerals that help bind the sediment grains together.
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how does the discharge of a river typically change as the river travels from its headwaters to its mouth?
When a stream enters a lake or ocean velocity inceases
Part B - Identify fault type II Each basic style of faulting not only has a name; it is also associated with particular tectonic environments that possess common characteristics. Let's review some terms that describe the basic styles of faulting and their typical tectonic environments: Main fault types: 1. Dip-slip: faults that move primarily parallel to the dip (or inclination) of the fault plane: 1. Normal Fault: a dip-slip fault where the hanging wall moves down relative to the footwall. 2. Reverse Fault: a dip-slip fault where the hanging wall moves up relative to the footwall 2. Strike-slip: faults that move primarily horizontal and parallel to the strike of the fault plane. Main tectonic settings: 1. Tensional or extensional: when the principal stresses cause the crust to stretch apart. This setting is characterized by normal faulting. 2. Compressional or collisional: when the principal stresses cause the crust to smash together and thicken. This setting is characterized by reverse faulting From the list of terms below, choose the ones associated with the fault you observed in the Gigapan image. Select the three that apply. View Available Hint(s) compressional environment tensional environment normal fault reverse fault shortening of the crust extension of the crust Submit Instructions for
In the following question, among the conditions given on Identify fault type II, below are the answers to the given question and its various parts.
To answer Part B - Identify fault type II, you need to first determine the type of fault observed in the Gigapan image. Based on the descriptions provided:
1. Dip-slip faults include Normal Faults (hanging wall moves down) and Reverse Faults (hanging wall moves up).
2. Strike-slip faults move horizontally.
Next, associate the fault type with the appropriate tectonic setting:
1. Tensional or extensional settings are characterized by normal faulting and extension of the crust.
2. Compressional or collisional settings are characterized by reverse faulting and shortening of the crust.
Once you have identified the fault type from the Gigapan image, select the three terms that apply:
1. If it's a normal fault: tensional environment, normal fault, and extension of the crust.
2. If it's a reverse fault: compressional environment, reverse fault, and shortening of the crust.
Make sure to observe the Gigapan image to determine the fault type before selecting the appropriate terms.
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1. Write an example of a conflict that could happen in a relationship. Discuss the conflict and both perspectives on the conflict.
2. Discuss a constructive way (accommodation, compromise, concession, and consensus) to resolve the conflict. Explain the solution in detail.
Answer:
One common conflict that can arise in a relationship is disagreements over finances. For example, one partner may want to save money for a future goal, while the other may prefer to spend money on immediate pleasures or luxuries. This can lead to tension and arguments as each partner feels like their perspective is being ignored or invalidated. The saver may feel like their partner is irresponsible with money, while the spender may feel like their partner is overly controlling and not enjoying life.
One constructive way to resolve this conflict is through compromise. The partners could sit down and have an open and honest discussion about their financial goals and priorities. They could then come up with a plan that allows for both saving and spending in a way that satisfies both parties. For example, they could agree to put a certain amount of money into savings each month, but also set aside a smaller amount for discretionary spending. This way, both partners feel like their needs and wants are being met, and there is less potential for resentment or conflict. It's important for both partners to be willing to listen to each other and make concessions in order to reach a mutually beneficial solution.
the problem 24 placemark points to a prominent flatiron of triassic shinarump conglomoerate on a fold limb. what name best describes the overall fold?
NE plunging Anticline best describes the overall fold. The plunge is in the NE direction if you declared that fold f2 is a plunging fold.
Based on the relative ages of the folded rock layers, the terms "Syncline" and "Anticline" are used to describe folds. The youngest rocks are in the fold's core in a syncline, while the oldest rocks are in the core of an anticline. An anticline is a type of fold that looks like an arch. This should be noted.
The oldest rocks make up the core of an anticlinal fold, and the limbs dip away from the core. In point of fact, in contrast to the syncline, which has the opposite effect, an anticlinal fold has an elevated axis in relation to the limbs.
DISCLAIMER The question is incomplete.
the problem 24 placemark points to a prominent flatiron of triassic shinarump conglomoerate on a fold limb. what name best describes the overall fold?
Image is given below
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what 2.5dived bu 78 plus 345 .409 ++
Answer:
345.441051282
Explanation:
2.5 ÷ 78 =0.03205128205
+ 345.409 = 345.44
it is 345.44, the rest is not necessary.
because rounding the answer to a whole number is going to be 345, while to a decimal place it's going to be 345.44.
Answer:
345.441051282
Explanation:
A system that enables every location on Earth to be specified by a set of numbers or letters is?
A. Satellite System
B. Geographic Coordinate System
C .Cartography System
Answer:
B. Geographic Coordinate System
Explanation:
As the name implies, a geographic coordinate system is one that may be used to pinpoint any spot on Earth using only a series of numbers, letters, or symbols. It is common practice to assign one of the coordinates to indicate vertical location and two or three to indicate horizontal position.
:)
This occurs when people move from the country to cities
4. explain the consequences of reduced soil permeability and aeration if a soil is compacted?
Reduced soil permeability and aeration can have several consequences if a soil is compacted. These include:
1. Reduced water infiltration: Compacted soil has reduced permeability, meaning that water cannot easily infiltrate into the soil. This can lead to increased runoff and erosion, and can also make it difficult for plants to access water.
2. Reduced root growth: Compacted soil has less space for air and water, which makes it difficult for roots to grow and access nutrients. This can lead to reduced plant growth and lower crop yields.
3. Increased risk of flooding: Reduced permeability means that water cannot easily infiltrate into the soil, leading to increased surface runoff and a higher risk of flooding.
4. Reduced soil biodiversity: Compacted soil has less space for air and water, which can make it difficult for soil organisms to survive. This can lead to reduced soil biodiversity and a decline in soil health.
Overall, reduced soil permeability and aeration due to compaction can have negative impacts on both the environment and agriculture. It is important to take steps to prevent soil compaction and maintain healthy soil structure.
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Much of the petroleum consumed in the last few decades has been extracted from relatively few locations around the world, because most of the world's easily accessible petroleum deposits are concentrated in these areas.
how has this continued petroleum extraction from selected areas over time likely affected petroleum resources on earth?
a. petroleum resources have been replenished as quickly as they have been extracted.
b. more petroleum is now available overall because extraction techniques result in the formation of more petroleum.
c. the distribution of petroleum has changed and less petroleum is now available overall.
d. the distribution of petroleum has not changed in any way, and there is the same amount of petroleum available now as there was in the past.
Answer:
it's c
Explanation:
c. the distribution of petroleum has changed and less petroleum is now available overall.
I know this cause i just did it
Since the distribution of petroleum has altered and there is now less petroleum available globally, a large portion of the petroleum used in recent decades has been extracted from a very small number of locations worldwide. As a result, choice (C) is accurate.
What is meant by petroleum resources?Petroleum, commonly referred to as crude oil, or just oil, is a naturally occurring yellowish-black liquid mixture made up primarily of hydrocarbons that is found in geological formations. Both naturally occurring crude oil that hasn't been refined and petroleum products made of refined crude oil are referred to by the same name: petroleum.
Petroleum is a fossil fuel that is created when massive amounts of extinct creatures, primarily zooplankton and algae, are buried beneath sedimentary rock and subjected to high temperatures and pressures over an extended period of time. Drilling for oil is the main method of recovering petroleum.
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7. Volcanoes in Hawaii began
forming on the seafloor, about
5,000 m below the surface. If a
volcano reaches the surface in
300,000 years, what was its rate of
vertical growth per year?
Answer:
60 m per year
Explanation:
300000/5000 is
pls hekp unexpected questions just came at me
Answer:
Give the other person brainliest....
<3
Explanation:
which term properly describes the shape of earth? perfect sphere perfect ellipse oblate spheroid oblate ellipse perfect spheroid
The proper term to describe the shape of the earth is an oblate spheroid. This means that the shape of the earth is an elongated sphere that is slightly flattened at the poles and bulging at the equator.
The term "perfect sphere" is not an accurate description of the shape of the earth because it is not a perfect sphere, and the term "perfect ellipse" is also not an accurate description because it is not an ellipse. The shape of the earth is due to its rotation on its axis. As the earth rotates, the centrifugal force causes it to bulge at the equator and flatten at the poles.
This means that the distance from the center of the earth to the surface is shorter at the poles than it is at the equator. The oblate spheroid shape of the earth has important implications for navigation, cartography, and geography. For example, the shape of the earth affects the way that maps are created, and it affects the way that navigation systems work.
In conclusion, the proper term to describe the shape of the earth is an oblate spheroid. This means that the shape of the earth is an elongated sphere that is slightly flattened at the poles and bulging at the equator.
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the rainshadow effect influences the region west of the rockies because the area receives only ten to twenty inches of precipitation each year. true false
False, the rain shadow effect influences the east region immediately. The statement given is a wrong statement.
A rain shadow means, A mountainous area's leeward side, which faces the direction of the dominant winds, is known as the region's leeward side, and is where rainfall is noticeably reduced. The predominant onshore breezes transport evaporating moisture from aquatic bodies (such seas and huge lakes) to the drier and hotter inland regions. The moist air is forced upslope towards the apex of elevated landforms as it comes into contact with them, where it expands, cools, condenses, and begins to precipitate. The majority of the humidity will be lost to precipitation over the windward side, sometimes referred to as the rain ward side, if the landforms are tall and wide enough. This is called rain shadow. A region known as a "rain shadow" is one that was compelled to turn into a desert because nearby mountain ranges prevented any rainy, plant-growing conditions. On the rainy side of the mountain.
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cause of unsafe rainwater?
Answer:
it's due to acid rain or pollution in airExplanation:
gggjThe unsafe state of water can be brought about by different elements, including tainting from contaminations, inappropriate capacity, and absence of treatment.
Contamination: Water can become perilous when it comes into contact with poisons present in the climate. Toxins like synthetic substances, weighty metals, pesticides, and microscopic organisms can be conveyed by water as it streams over surfaces like rooftops, streets, and modern regions. These pollutants can saturate the water, making it unsuitable for utilization or different purposes without legitimate treatment.Improper Storage: Assuming water is gathered and put away in holders or tanks that are not sufficiently kept up with, it can become sullied. Inappropriate capacity practices can prompt the development of microbes, green growth, or different microorganisms, making the water risky to drink or use for family purposes.Lack of Treatment: Water gathered straightforwardly from the climate might contain contaminations and microorganisms. Without legitimate treatment, like filtration, sanitization, or refinement, the water might stay perilous for utilization. Treatment techniques can help eliminate or kill unsafe substances, guaranteeing that the water is perfect and reasonable for different purposes.To learn more about Rainwater,
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How are drift plains formed ?
Answer:
When ice becomes detached from the main source.
Explanation:
This happens when a piece of ice breaks off, melts in place, and deposits the sediments it contained.
Compare the population map to the physical map.
Explain how the rivers are useful to people in those countries with the highest population density.
answer quickly & ill give you brainly.
Population density across the globe is shown here by latitude. The population is perceived to become more concentrated farther from the equator.
How essential is latitude, and what is it?The major earthly heat zones can be identified and located using latitudes. Latitude is a unit of measurement for how far the equator is from the north and south. Understanding wind circulation patterns on the earth's surface is aided by latitude. When compared to the primary meridian, longitude measures how far the west is from Earth.
The following three latitude-related facts.In an east-west direction, latitude lines encircle the earth. Latitude is the distance between a point and the equator, either north or south. As they run parallel to the equator, latitude parallels are also known as parallels. Separating the northern and southern halves of the planet is the equator, which is located at 0° latitude.
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Why do active volcanoes, mountain ranges/folded mountains, and earthquake zone are located in the same place
Answer:
both volcanoes and earthquakes form where one plate sinks under the other.
what is the capital city of London
Answer:
London is the capital city of England and the United Kingdom. It is the most populous city in the United Kingdom, with a metropolitan area of over 13 million inhabitants.
Explanation:
top 4 energy resources in Utah and their percentages
The top four energy sources in Utah and their respective production percentages change depending on the era and source. The following are Utah's widely acknowledged energy sources:
Fossil fuels (coal, natural gas, and oil): Historically, fossil fuels have been important energy sources in Utah. Renewable Energy (Solar, Wind, and Hydroelectric) Development: In Utah, this sector is expanding. Nuclear Energy: The state of Utah does not contain any nuclear power plants.Geothermal Energy: Utah's geothermal resources are few. There are, however, several geothermal power facilities in the state that use subterranean heat to produce electricity.It is possible for the percentages of energy produced from these resources to alter over time as a result of a variety of variables, such as changes in policy, developments in technology, and market conditions.
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The rate of evaporation depends on four main factors: water body size, heat energy, atmospheric pressure and air movement. Warm
waters and high winds often result in the development of hurricanes over the world's oceans because of increased evaporation
Where, on this map, is the LEAST likely location for a hurricane to form?
es
A:
A)
1
B)
2
3
D
Answer:
4
Explanation:
This is the coldest place on the map
On this map, the LEAST likely location for a hurricane to form is Location 4 due to Cold temperature. Thus option D is correct.
What is Map?A map is referred to as a pictorial representation of different places used to identify the direction and reach the next location. They help the user to identify sea, rail routes, and roads to reach the destination.
A tropical storm that has sustained winds of 74 mph or greater is considered a hurricane. A storm's eye typically measures 20 to 30 miles in size and can reach 400 miles and cause high destruction of human life and property.
Hurricane development over the world's oceans is frequently caused by warm waters and strong winds due to enhanced evaporation.
On this map, Location 4 is the LESS likely location for a hurricane to occur because it is closer to the North Pole and would not, under any circumstances, have a warm environment giving the possibility to the hurricane.
Therefore, option D is appropriate.
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The missing options are
Where, on this map, is the LEAST likely location for a hurricane to form? A) 1. B) 2. C) 3. D) 4.
Milankovitch cycles refer to ________. Group of answer choices evolution of plants and animals and human impact plate tectonics and sea level rise variations in the earth's orbit about the sun and precession of the earth's axis solar flares and variations in the moon's orbit over time
Therefore, Milankovitch cycles are specifically related to variations in the earth's orbit and the resulting climate changes, rather than evolution, plate tectonics, solar flares, or variations in the moon's orbit.
Milankovitch cycles refer to variations in the earth's orbit about the sun and the associated changes in climate that result from these orbital variations. Named after Serbian scientist Milutin Milankovitch, these cycles are caused by three primary factors: eccentricity, axial tilt, and precession.
Eccentricity refers to changes in the shape of the earth's orbit around the sun, which can vary from more circular to more elliptical over long periods of time. This variation occurs in cycles of approximately 100,000 years.
Axial tilt, also known as obliquity, refers to the angle at which the earth's axis is tilted in relation to its orbital plane. This tilt can change over time, ranging from about 22.1 to 24.5 degrees, and occurs in cycles of approximately 41,000 years.
Precession refers to the wobbling motion of the earth's axis, similar to the way a spinning top wobbles. This wobbling motion causes a change in the orientation of the earth's axis over time. Precession occurs in cycles of approximately 26,000 years.
Together, these three factors influence the amount and distribution of solar radiation received by the earth, which in turn affects climate patterns. Milankovitch cycles are considered one of the key drivers of long-term climate change over geological timescales, playing a role in the occurrence of ice ages and interglacial periods.
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lanet Facts - Select the correct planet name to go with each planet fact! The name of a planet may match more than one of the facts below. This is the largest of all the planets in our Solar System. This is the largest of the Terrestrial planets. This is commonly called the "red planet." This planet's surface is very hot due to an extreme greenhouse effect This planet experiences a huge temperature difference between day and night This planet has the largest volcano in the solar system, although it is no longer active This planet takes the longest to revolve around the Sun
The largest planet in our Solar System is Jupiter. It is much larger than the other planets in the Solar System and its mass is two and a half times that of all the other planets combined. The largest of the Terrestrial planets is Earth.
Mars is commonly referred to as the "red planet" due to its reddish hue. This planet experiences such high temperatures due to an extreme greenhouse effect. Venus is the second closest planet to the Sun and experiences a huge temperature difference between day and night due to its thick atmosphere and distance from the Sun.
The largest volcano in the Solar System, Olympus Mons, resides on Mars, however, it is no longer active. Finally, the planet that takes the longest to revolve around the Sun is neither of the previously mentioned planets. That planet is actually Neptune which takes 165 Earth years to complete one revolution around the Sun.
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Correct question is:
Planet Facts - Select the correct planet name to go with each planet fact! The name of a planet may match more than one of the facts below. This is the largest of all the planets in our Solar System. This is the largest of the Terrestrial planets. This is commonly called the "red planet." This planet's surface is very hot due to an extreme greenhouse effect This planet experiences a huge temperature difference between day and night This planet has the largest volcano in the solar system, although it is no longer active This planet takes the longest to revolve around the Sun. explain.
several hundred years ago, a volcano erupted near the city of pompeii. archaeologists have found the remains of people embracing each other, suffocated by the ash and rock that covered everything. what type of eruption, what type of volcano? support your answer with facts about volcanic eruptions.
The eruption near Pompeii several hundred years ago was likely a pyroclastic eruption from a stratovolcano.
The eruption near Pompeii is known to have occurred in AD 79, and it was caused by the volcanic activity of Mount Vesuvius, a stratovolcano located near the city. Stratovolcanoes are known for their explosive eruptions, which typically involve the ejection of ash, pumice, and other materials into the air.
Pyroclastic eruptions are a type of explosive eruption in which hot ash, rock fragments, and gases are rapidly expelled from the volcano, creating a dense cloud that travels rapidly down the slope.
This type of eruption is highly dangerous, as it can cause widespread damage and death. The remains of people found in Pompeii suggest that they were killed by the fast-moving pyroclastic flow, which buried the city and its inhabitants.
Overall, based on the historical and archaeological evidence, it is highly likely that the eruption near Pompeii was a pyroclastic eruption from a stratovolcano like Mount Vesuvius.
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