One of the major transform boundaries in the world is on the southwestern margin of the North American Plate along the San Andreas fault system. Which type of geologic event is most likely to occur along this boundary?
answer choices
Volcano
Seafloor spreading
Mountain building
Earthquake

Answers

Answer 1

One of the major transform boundaries in the world is on the southwestern margin of the North American Plate along the San Andreas fault system. Earthquake is most likely to occur along this boundary.

An earthquake can be seen as a turbulent shaking of the earth's crust suddenly that leads to the great destruction of lives and property. The level of destruction caused by an earthquake can be measured using its degree.

A trigger earthquake is an example of an earthquake caused due to the transmission of seismic waves leading to the great destruction of properties. It is triggered by a shift in the plate on the earth.

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Related Questions

ranked fifth in the terrestrial world in order of size from smallest to largest called is?

Answers

The planet Mars is ranked fifth in the terrestrial world in order of size from smallest to largest.

A terrestrial planet, often known as a telluric planet or a rocky planet, is a planet that is primarily composed of silicate rocks or metals. The terrestrial planets in our solar system are Mercury, Venus, Earth, and Mars. They are the four planets closest to the Sun and are sometimes known as the "inner planets."

The term "terrestrial planet" is sometimes used to differentiate such planets from gas giants, which are sometimes referred to as "Jovian planets." The term "super-Earth" is occasionally used to describe exoplanets that are primarily rocky and more massive than Earth but less massive than the gas giants Uranus and Neptune.

Mars is the fourth planet from the Sun and the second smallest planet in the solar system, after Mercury. Named after the Roman god of war, it is also known as the "Red Planet" due to its reddish appearance. Mars is a terrestrial planet with a thin atmosphere, having surface features such as valleys, mountains, and polar ice caps.

However, Mars is not only known for its terrestrial qualities but also for its potential to support life. Despite its harsh conditions and barren surface, Mars is a planet with the highest probability to support life. A wide variety of robotic spacecraft has been sent to Mars to study its surface, including the Mars Reconnaissance Orbiter, the Mars Odyssey, the Mars Express, and the Mars Pathfinder.

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where does the energy from an earthquake originate?

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Radioactive energy in the Earth's mantle provides the energy for earthquakes. The heat produced by radioactive decay causes convection in the mantle.

This movement is transferred to the Earth's crust, where it stores energy in rocks, similar to how a spring is stretched.

An earthquake occurs when energy is released from the earth's tectonic plates.

The zone where two tectonic plates come together is called a fault.

Prior to an earthquake, tectonic forces cause a gradual accumulation of strain energy on either side of the fault.

The majority of earthquakes are caused by the rapid release of elastic energy.

This energy is held in rock that has been subjected to tremendous forces.

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What is organic farming? Describe with an example

Answers

Answer:

Basically farming without any sort of chemicals.

Explanation:

Organic farming is a form of agriculture that relies on crop rotation, green manure, compost, and biological pest control. An organic farmer will still use fertilizers and pesticides, but strictly limit or exclude the use of synthetic fertilizers, pesticides, insecticides, herbicides, and fungicides.

which group of organisms is most responsible for changing the composition of earth’s early atmosphere?

Answers

The group of organisms that is most responsible for changing the composition of Earth's early atmosphere is cyanobacteria.

Cyanobacteria are photosynthetic microorganisms that are capable of producing oxygen as a byproduct of their metabolic processes. About 2.5 billion years ago, cyanobacteria began to release large amounts of oxygen into the atmosphere through photosynthesis, which eventually led to the development of an oxygen-rich atmosphere. This shift in atmospheric composition had significant impacts on the evolution of life on Earth, as it allowed for the development of more complex organisms that rely on oxygen for respiration.

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What is one way that sedimentary rock can change through the rock cycle?
It can undergo uplift to form metamorphic rock.
It can be exposed to wind and flowing water to form igneous rock.
It can cool at Earth's surface to form metamorphic rock.
It can experience weathering and lithification to form new sedimentary rock.

Answers

The one way that Sedimentary rocks can change through the rock cycle , It can experience weathering and lithification to form new sedimentary rock.

One of the most common ways is through weathering and lithification. Weathering is a process of erosion in which rocks are broken down into smaller pieces by physical or chemical forces such as rain, wind, and heat. Lithification is a process of compaction and cementation of sediments, which involves the gradual accumulation of layers of sediment that eventually become hardened and form sedimentary rock.

Weathering and lithification can result in the formation of new sedimentary rocks, such as sandstone, shale, and limestone. Additionally, sedimentary rocks can be transformed into metamorphic rocks through heat and pressure from tectonic forces. As the rock is subjected to these extreme conditions, the sedimentary minerals may be altered to form a completely new type of rock.

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what is the raw material for coal, and how does it accumulate?

Answers

What is the raw material for coal?

Coal is an organic sedimentary rock. It is classified as a fossil fuel because it is formed from the remains of dead plant material.

Peat, which is composed of partially decayed plant material, is the raw material for coal.

How does coal accumulate?

Coal is accumulated through the transformation of organic matter over millions of years. When organic matter, such as dead plants and trees, falls into swampy water, it accumulates and forms a thick layer. When this matter is exposed to heat and pressure over millions of years, it is transformed into coal. The process of coal formation is called coalification. Coalification occurs in four stages: peat, lignite, bituminous, and anthracite.

Mostly plant matter that has collected over millions of years in bogs, swamps, and other wetlands serves as the raw material for coal. This plant matter, which typically took the form of dead vegetation, was

Mostly plant matter that has collected over millions of years in bogs, swamps, and other wetlands serves as the raw material for coal. This plant matter underwent a process known as diagenesis as a result of being buried and compacted beneath layers of silt and rock, typically in the form of dead vegetation. Pressure, heat, and time worked in concert to progressively change the plant material into coal during diagenesis. The kind of plant material used, the level of compression and heating, and the duration of the operation all had an impact on the sort of coal that produced. In general, organic matter that has experienced a certain geological transition over a lengthy period of time raw material for coal.

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what problem limits the growth of oasis settlements

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The primary problem limiting the growth of oasis settlements is a lack of sufficient water resources.

Oasis settlements rely on underground aquifers and springs to access the water necessary for sustaining life and crops, but these resources are often insufficient due to overuse and limited access. This lack of water has caused the soil in oases to become degraded and unable to support the same crops that were once able to be grown. Additionally, with an increasing population, the water needed to sustain these settlements is becoming increasingly scarce. Without the ability to access and use water resources in a sustainable way, the growth of oasis settlements is limited.

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The number of functions in a central place is dependent on all the following EXCEPT the

A) Population of the market area
B) Size of the market area
C) Distance to a place with similar functions
D) Total number of central places in the urban system

Answers

The number of functions in a central place is dependent on all the following EXCEPT the Total number of central places in the urban system. In this case option D is correct

Urban systems are networks of people, power and water supply, transportation, microclimate, and buildings. Utilizing new opportunities in IoT, big data, machine learning, and exascale computing, urban systems research provides insights into urban efficiency, sustainability, and resilience.

Lawrence Berkeley National Laboratory's (Berkeley Lab) Urban Systems Group's goals are:

Interdisciplinary approaches to applying science to urban systems

Integrate buildings, urban climate, transportation, and socioeconomics to optimize the performance of urban systems.

Conduct applied research to support municipal, state, and federal goals for environmental and urban energy use.

Informative evaluation, policy, and urban planning

Integrate and coordinate Berkeley Lab resources across divisions and areas for new and larger opportunities.

In this case option D is correct

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what are the two greatest natural resources in the world?

Answers

2010 Haiti earthquake death toll: 316,000+

526 Antioch earthquake death toll: 300,000+

order the steps in the formation of a disconformity.
1. Sea level rose, convering the erosional surface, which was buried by marine sediments
2. Erosion took place
3. Sea level fell, exposing marine deposites subaerially
4. Sediments were deposited in a marine environment

Answers

The order of steps in the formation of a disconformity are as follows: Erosion took place. Sediments were deposited in a marine environment. Sea level rose, covering the erosional surface, which was buried by marine sediments. Sea level fell, exposing marine deposits subaerially.

When the strata above and below the erosional boundary are parallel to one another, disconformities happen. On the other hand, the surface of the boundary between the two sedimentary strata may be uneven or wavelike.

A disconformity may appear in one of the following ways: In order to create a sedimentary layer, a series of sediments must first be deposited in a marine environment. Next, the land may uplift as a result of tectonic or other geological forces. As a result, a subaerial environment is created, which leads to weathering and erosion.

In this case, the marine sediments will bury the erosional surface. The marine deposits that had accumulated on top of the erosional surface may then be exposed to the air as a result of the sea level potentially dropping once more. This indicates the formation of the disconformity and reveals the erosional surface as a horizontal line.

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large sections of troposphere with same temperature and humidity

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Large sections of troposphere with same temperature and humidity is called Air mass.

An air mass is a large body of air that has similar temperature and humidity throughout. It is defined by a homogeneous temperature and moisture content across its entire mass.

Air masses form over large areas of land or water and are transported by large-scale winds. When air masses come into contact with other air masses, they can create fronts, which are areas of transition between different air masses. Air masses can affect the weather in an area, depending on the temperature and humidity they contain.

Arctic air masses, for example, bring cold temperatures and dry air, while tropical air masses bring warmer temperatures and higher humidity. Air masses can also be classified according to their source regions, such as polar, arctic, tropical, maritime, and continental.

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The complete Question:

Large sections of troposphere with same temperature and humidity is called _____.

How was ancient Greece an ​example of innovation?

Answers

Inventions that are credited to the historical Greeks consist of the gear, screw, rotary mills, bronze casting techniques, water clock, water organ, the torsion catapult, the use of steam to function some experimental machines and toys, and a chart to locate prime numbers.

What improvements did Greece make?

10 Ancient Greek Inventions & Discoveries Still Used Today

Modern Philosophy.

Earliest practice of medicine. ...

Basis of Geometry. ...

Olympics. ...

Cartography. Harley and Woodward's History of Cartography. ...

Alarm clock. Ancient Greek Alarm clock. ...

Odometer. The odometer by means of Vitruvius and Heron. ...

Water mill. Hydraulic wheel of Perachora. ..

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what should be the indication on the magnetic compass as you roll into a standard rate turn to the right from a northerly heading in the northern hemisphere?

Answers

As you roll into a standard rate turn to the right from a northerly heading in the northern hemisphere, the magnetic compass will initially indicate a turn to the left.

This is due to the magnetic dip of the earth, which causes the compass card to dip downward on the north end and upward on the south end, leading to a magnetic north that is different from true north. As a result, the compass will momentarily indicate a turn in the opposite direction of the actual turn, and then gradually catch up to the correct heading. Therefore, it's important for pilots to be aware of this phenomenon and make the necessary corrections to maintain the desired heading during turns.

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what is the type of land in urban areas that is set aside for scenic/recreational enjoyment, exercise, and relaxation? responses native space native space range space range space open space open space wilderness

Answers

The type of land in urban areas that is set aside for scenic/recreational enjoyment, exercise, and relaxation is typically referred to as "open space."

Open space is an important component of any urban environment. This type of land is typically set aside for scenic and recreational enjoyment, exercise, and relaxation.

Open space can include natural features such as meadows, wetlands, and forests, as well as human-made features like trails, parks, and community gardens. In addition to providing much needed respite from the hustle and bustle of city life, open space helps to protect and conserve important environmental resources, provides habitat for wildlife, and contributes to the overall health and well-being of local communities.

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Though CFC production has been curtailed, the threat to upper atmospheric ozone continues because ______

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Though CFC production has been curtailed, the threat to upper atmospheric ozone continues because CFCs have a long atmospheric lifetime and can remain in the atmosphere for decades to centuries after their release.

When CFCs are released into the atmosphere, they rise up to the stratosphere where they are broken down by ultraviolet radiation, releasing chlorine atoms. These chlorine atoms then react with ozone molecules, breaking them apart and depleting the ozone layer. Although the production of CFCs has been largely phased out under the Montreal Protocol, some CFCs are still present in the atmosphere and are continuing to deplete the ozone layer. In addition, other ozone-depleting substances, such as hydrochlorofluorocarbons (HCFCs) and halons, are still in use and contributing to ozone depletion. Therefore, continued monitoring and regulation of these substances is necessary to ensure the recovery of the ozone layer.

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If a rock sample is found to have a total volume of 3340g of material after the isotope analysis 2015g remained parent, while the rest of the sample decay to daughter product, how many half-lives have past?

Answers

For rock-60, which has a half-life of 5.27 years, half remaining parts after 5.27 years (one half-life), 25% remaining parts after 10.54 years (two half-lives), 12.5% of the remaining parts after 15.81 years (three half-lives, etc. (CC-BY 4.0; OpenStax).

During natural radioactive decay, not all molecules of a component are momentarily changed to iotas of another component. The decay cycle takes time and worth in is having the option to communicate the rate at which an interaction happens. A helpful idea is a half-life (symbol is t1/2).

which is the time expected for half of the beginning material to change or decay. Half-lives can be determined from estimations on the change in mass of a nuclide and the time it takes to happen. The main thing we know is that in the hour of that substance's half-life, half of the first cores will disintegrate. Albeit substance changes were accelerated or dialed back by changing variables like temperature, focus, and so on, these elements meaningfully affect half-life. Each radioactive isotope will have own novel half-life is free of any of these elements.

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Igneous Rock Information: What information about how and where the following rocks formed can we get if we look at these igneous rocks? andesite [Choose basalt [Choose diorite [Choose gabbro [Choose granite [Choose obsidian ( Choose pegmatite [Choose peridotite [Choose porphyry [ Choose rhyolite [ Choose [Choose] cooled within earth, has very low silica ultramafic composition, cooled at surface, has low silica mafic composition cooled within earth during late-stage magmatism from extremely fluid magma cooled within earth, has intermediate silica composition cooled at surface, has high silica felsic composition had two-part cooling history, partly underground, partly at or near surface. cooled at surface, has intermediate silica composition cooled very rapidly at surface, too rapidly to form crystals-glassy cooled within earth, has low silica mafic composition cooled within earth, has high silica felsic composition

Answers

The answer provided below offers information on each of the listed igneous rocks and describes how they were formed.

Andesite: cooled within earth, has very low silica mafic composition

Basalt: cooled at surface, has low silica mafic composition

Diorite: cooled within earth during late-stage magmatism from extremely fluid magma

Gabbro: cooled within earth, has intermediate silica composition

Granite: cooled at surface, has high silica felsic composition

Obsidian: cooled very rapidly at surface, too rapidly to form crystals-glassy

Pegmatite: cooled within earth, has low silica mafic composition

Peridotite: cooled within earth, has high silica felsic composition

Porphyry: had two-part cooling history, partly underground, partly at or near surface.

Rhyolite: cooled at surface, has intermediate silica composition



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what do the earth’s plate motions have to do with mountains such as the himalayas in india?

Answers

Himalayas is an example of a continental collision,  the earth’s plate motions result in the formation of huge mountains such as Himalayas.

A continental collision is represented by the Himalayan mountain range. The Indian and Eurasian plates collided 40 million years ago. This shock's enormous pressure forces resulted in a massive mountain uplift. The Himalayas are a good illustration of the extraordinary effects that tectonic plate motion can have on the earth. The world's highest mountain range was created as a result of these colliding plates. A number of tectonic plates in the lithosphere of the earth support our continents.

About 40–50 million years ago, when India plowed into Asia, the rate of its northward advance was slowed by about half. It is believed that the collision and ensuing slowdown in plate movement signaled the start of the Himalayas' swift uplift.

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What is the difference between spatial perspective and ecological perspective in geography? answer for 30 points

Answers

Answer:

Spatial perspective and ecological perspective are two important approaches in geography, but they focus on different aspects of geographic analysis.

Spatial perspective is concerned with the relationships between different places and regions, as well as the spatial patterns and processes that shape those relationships. This perspective emphasizes the importance of location, distance, and spatial interactions in shaping human behavior and the distribution of resources, populations, and economic activities. It is interested in understanding how geography influences human activity, and how humans, in turn, shape the environment around them. For example, a spatial perspective might be used to analyze the impact of urbanization on rural areas, or to study the spread of diseases across different regions.

Ecological perspective, on the other hand, is concerned with the relationships between humans and the natural environment. This perspective emphasizes the importance of understanding the complex interactions between human society and the natural world, and the ways in which these interactions shape both human and environmental systems. Ecological perspective seeks to identify the environmental factors that affect human behavior and well-being, as well as the ways in which human activities impact the natural environment. For example, an ecological perspective might be used to study the impact of deforestation on local ecosystems, or to analyze the environmental impacts of different agricultural practices.

In summary, the spatial perspective focuses on spatial relationships and interactions, while the ecological perspective focuses on the relationship between humans and the natural environment. Both approaches are important in geography and can provide valuable insights into the complex relationships between humans and their surroundings.

the magnitude of the force on the particle with charge q due to the other two charges is

Answers

The magnitude of the force on charge −Q is 4πε ×aQ.

what happens at the far left or the far right of the ocean as you get closer to the continents

Answers

The continents upward shove about 2.5 miles (4 km) above the ocean floor. Composed of greater buoyant substances than seafloor crust, they're an common about 21 miles (35 km) deep, in distinction to about four miles (7 km) thick for the crust beneath the oceans.

What will appear to the world as the continents continuously move?

Because some continents are above two plates, the continents go when the plates do. The movement of tectonic plates can motive earthquakes and volcanoes. Understanding this motion can help predict where earthquakes will take place.

Is Earth floating on water?

(Water's density is 1 gram per cubic centimeter, whilst Jupiter's is 1.33 grams per cubic centimeter.) But notions of a planet floating on water are solely theoretical. In actuality, it would be not possible for an entire planet to literally float on water.

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Which part of the United States receives the most precipitation?

Answers

Hawaii a oceanic part of the United States receives the most precipitation.  

Hail, mist, rain, sleet, or snow are all examples of precipitation that fall to the ground. additionally: the volume of water left behind. With a mean annual precipitation of 63.70 inches, the US state of Hawaii in Oceania has the wettest climate in the country. Hawaii is a collection of islands in the Polynesia region of the central Pacific Ocean.

With only 9.5 inches (241 mm) of rain per year, Nevada leads the US as the state with the least amount of precipitation. Mt.Waialeale in Kauai, Hawaii, is the wettest place in the country and one of the wettest places on earth, receiving about 460 inches (11,684 millimeters) of rain annually.

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The instrument used to record seismic waves is called a(n) _____.
a. shake meter
b. earthquake map
c. seismograph
d. inertia recorder

Answers

The correct answer is seismograph. Option C is correct.

The instrument used to measure seismic wave.

A seismograph is an instrument that is used to record seismic waves, which are vibrations that occur in the Earth's crust as a result of earthquakes, volcanic eruptions, and other geologic events. Seismographs work by detecting and measuring the movement of the ground in response to seismic waves, and converting this movement into a recordable signal that can be analyzed and studied by geologists and seismologists.

Shake meter is not a commonly used term to refer to an instrument for recording seismic waves. An earthquake map is a map that shows the locations of earthquakes, but it is not an instrument for recording seismic waves. An inertia recorder is a type of seismograph that measures seismic waves by detecting changes in the inertia of a moving object, but it is not the only type of seismograph.

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The natural progression of time periods that enter the planning horizon as the current period fades into the past is called
A. an updated horizon.
B. an evolutionary period.
C. unfurling the scroll.
D. a rolling planning horizon.

Answers

The correct answer is a rolling planning horizon. Option D is correct.

The concept of a rolling planning horizon.

A rolling planning horizon is a common term used in the field of strategic planning and refers to the natural progression of time periods that enter the planning horizon as the current period fades into the past. It involves continuously updating the planning horizon by adding a new period at the end of each planning cycle, while dropping the oldest period that has been completed.

For example, a company might use a rolling planning horizon of five years, where each year they update their strategic plan by adding a new year to the end of the planning horizon and dropping the oldest year that has been completed. This allows the company to continuously plan for the future while also learning from past experience and adjusting their plans accordingly.

Updated horizon and evolutionary period are not commonly used terms in strategic planning. Unfurling the scroll is not a term used in the context of planning horizons.

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which of the following cause a midlatitude cyclone to dissipate? group of answer choices becoming removed from low-level warm air moving out of the region of strongest upper-level divergence surface convergence all of the above

Answers

All the given reasons i.e. air becoming removed from low-level warm air moving out of the region of strongest upper-level divergence surface convergence cause a midlatitude cyclone to dissipate.

All mid-latitude cyclones eventually lose their strength and vanish. Combinations of the following factors may contribute to this: obstruction of cooler/drier air around the low, loss of access to warm air, loss of access to moisture. The cold front typically moves more quickly than the warm front.

When cold air masses from the Arctic collide with warm, moist air from the tropics, mid-latitude cyclones are created. As these air masses start to rotate and gain energy, a sizable low-pressure center or cyclone is created. In the winter, mid-latitude cyclones develop more frequently. As a result, they are connected to powerful winter storms that bring about strong winds and a lot of snow.

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How did land cover during the last glacial maximum differ from the current land cover? the four land cover types used in this section of the lab are water, forest, desert, and snow/ice.

Answers

The Last Glacial Maximum (LGM), also shown to as the Late Glacial Maximum, was the most recent time during the Last Glacial Period that ice sheets were at their greatest extent 26 ka - 20 ka.

Ice sheets comprises much of Northern North America, Northern Europe, and Asia and profoundly affected Earth's climate by causing drought, desertification, and a large drop in sea levels.

Based on changes in position of ice sheet margins dated via terrestrial cosmogenic nuclides and radiocarbon dating, growth of ice sheets commenced 33,000 years ago and maximum coverage was between 26,500 years and 19–20,000 years ago, when deglaciation commenced in the Northern Hemisphere, because an abrupt rise in sea level.

Fall of the West Antarctica ice sheet occurred between 14,000 and 15,000 years ago, consistent with evidence for another abrupt rise in the sea level about 14,500 years ago.

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Under what conditions will the front of a glacier remain stationary?

Answers

A glacier's front may remain stationary under certain circumstances. If the accumulation of snow in the zone of accumulation is balanced by the loss of ice through melting, calving, or sublimation, the glacier's front will remain stationary.

A glacier is a persistent mass of ice that exists year-round and is formed when snow accumulates faster than it melts. Over time, the weight of the accumulating snow compresses the lower layers of snow into ice, resulting in the formation of a glacier. Glaciers are found in polar regions and at high altitudes in mountainous regions.

They can move very slowly over time, shaping the landscape and carving out valleys as they go. Glaciers play an important role in the Earth's climate system because they store a large amount of the world's freshwater. They also contribute to the rise in sea levels when they melt rapidly.

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which street in arleta was closed due to soil erosion?

Answers

In Arleta, the street that was closed due to soil erosion was Canterbury Avenue. Canterbury Avenue was shut down after soil erosion caused a sinkhole to form in the street. The sinkhole was significant enough to cause concern for public safety and warranted the closure of the street until repairs could be made.

Sinkholes are often caused by the collapse of soil and rock due to underground water sources. They can also occur due to human activities like underground mining, drilling, or even construction. Sinkholes can pose a significant danger to public safety, especially if they are in heavily trafficked areas or close to buildings and homes. In the case of Canterbury Avenue in Arleta, the soil erosion was significant enough to cause a sinkhole to form in the middle of the road.

The city of Los Angeles deemed it necessary to close the street to prevent any accidents or injuries that could occur from the sinkhole. Repairs were made to the street, and it has since been reopened to the public. In conclusion, Canterbury Avenue in Arleta was closed due to soil erosion that caused a sinkhole to form in the middle of the road. The sinkhole was a significant enough danger to public safety to warrant the closure of the street until repairs could be made.

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how did the forks of the nile river and the direction in which the nile river flows influence the location of Egypts two major urban areas

Answers

Every component of life in Egypt depended on the river – the Nile provided food and resources, land for agriculture, a skill of travel, and was once indispensable in the transportation of substances for constructing initiatives and different large-scale endeavors. It was a necessary lifeline that literally delivered existence to the desert.

Which course does the Nile drift and why does it go with the flow in that direction?

The Nile River flows south to north for the equal reasons that any different river flows: the northern section of the continent is decrease in elevation than the southern portion. The White Nile starts round Lake Victoria, a body of water positioned over 3,700ft above sea level.

How did the Nile river have an effect on ancient Egypt's crop schedule?

Egyptians depended on the Nile to irrigate their crops. The Nile flooded for six months every year, then left in the back of layers of silt as the waters flooded. Egyptians grew vegetation such as wheat, barley, beans and cotton in the silt. They dug canals from the river to their farms so crops would obtain water

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material thrown out from an impact crater settles to form which structure? responses central peak central peak wall wall ray ray rim

Answers

Answer:

Ray

Explanation:

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