what side of the himalayan mountains gets all the rain and why

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Answer 1

The southern side of the Himalayan mountains, also known as the windward side, receives most of the rain.

Why it is?

This is because of the orographic effect, which is the process by which moist air is forced to rise up and over a mountain range.

As the moist air rises, it cools and condenses, leading to the formation of clouds and precipitation. On the southern side of the Himalayas, moist air from the Indian Ocean is forced to rise up and over the mountains, resulting in heavy rainfall in regions like Nepal, Bhutan, and northeastern India.

In contrast, the northern side of the Himalayas, which includes regions like Tibet and western China, receives little precipitation due to the dry air that descends on the leeward side of the mountains.

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Related Questions

________ are comprised of members from different geographic areas assembled as needed to collaborate on a certain project.a) work groupsb) virtual teamsc) non-core teamsd) task forcese) command groups

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Task Forces are comprised of members from different geographic areas assembled as needed to collaborate on a certain project. The answer is (d) task forces.

Task forces are temporary teams that are created to work on a specific project or problem. They are composed of individuals who have different skill sets and come from different geographic areas within an organization. Task forces can be established for a variety of purposes such as developing a new product, improving a process, or resolving a crisis. Once the task is completed, the team is dissolved.

The members of the task force return to their previous roles within the organization. Task forces are often used in organizations to leverage expertise from various parts of the organization and to ensure that critical issues are addressed in a timely and effective manner. They are a useful way to bring together diverse perspectives and talents to achieve a specific objective.

Therefore, the correct answer is (d) task forces.

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During the winter, the amount of snowfall increases on a glacier, which causes accumulation and the glacier to thicken, and because there is not much melting this creates a net gain of ice called a __________ ice budget.

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During the winter, the amount of snowfall increases on a glacier, which causes accumulation and the glacier to thicken, and because there is not much melting this creates a net gain of ice called a positive ice budget.

A glacier is a huge mass of ice that moves gradually over the land. Most glaciers are found in polar and sub-polar areas. Glacier ice is unique in that it moves. They are formed when the snow accumulates over the years and converts into ice. When snow accumulates in winter more than melts in summer, the ice sheet gains mass, resulting in a net gain of ice called a positive ice budget. Conversely, when the ice melts in summer more than snow accumulates in winter, the ice sheet loses mass, resulting in a net loss of ice called a negative ice budget.

During winter, the amount of snowfall on a glacier increases, causing accumulation and glacier thickness. In contrast, during the summer, the glacier starts melting, causing ablation and glacier thinning. A glacier's total annual gain or loss in mass due to these processes is referred to as the glacier's mass balance or ice budget.

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which two types of ocean circulation changes have had exceptional influence on climate and biodiversity in the past?

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The two types of ocean circulation changes that have had exceptional influence on climate and biodiversity in the past are El Niño-Southern Oscillation (ENSO) and Atlantic Meridional Overturning Circulation (AMOC).

El Niño-Southern Oscillation is a complex climate pattern that involves changes to ocean temperatures and atmospheric pressure in the tropical Pacific Ocean. It can lead to drastic changes in precipitation and temperature patterns in different parts of the world.

Atlantic Meridional Overturning Circulation is a large-scale system of ocean currents that transport heat from the tropics to high latitudes, and back again. This circulation is an important component of Earth’s climate system, influencing weather and climate patterns in the North Atlantic region and beyond.

Changes to the AMOC can have serious impacts on regional climate and biodiversity, particularly in Europe and North America. Both ENSO and AMOC have the potential to cause significant changes to the global climate system, with implications for biodiversity and human societies.

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Match the damage to a house to the correct Fuijita scale classification.1. F32. F13. F54. F0___ roof damage___ wall collapse___ house blown away___ little damage

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The match of the damage to a house to the correct Fujita scale classification is given below:

F1 roof damage

F3 wall collapse

F5 house blown away

F0 little damage

The Fujita scale is used to categorize tornadoes based on the intensity of the tornado.

The Fujita scale is a classification system for measuring the intensity of tornadoes based on the damage they cause to buildings and vegetation. The Fujita Scale was designed in 1971 by Ted Fujita, a professor at the University of Chicago, and was first used in the United States in 1973. The scale ranges from F0 (weakest) to F5 (strongest).

The reason for the matching is the level of damage associated with each Fujita scale category. The higher the number, the more severe the damage. Here's the explanation:

F0: Little damage (light damage to trees, signs, and buildings;)
F1: Roof damage (moderate damage to roofs, windows, and vehicles)
F3: Wall collapse (severe damage to walls, roofs, and large trees)
F5: House has blown away (total destruction of houses and buildings)

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describe the hydrologic cycle, rock cycle, and how the biosphere exchange matter with the other spheres.

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The hydrologic cycle is the continuous movement of water from the atmosphere to the land and back to the atmosphere again. Water evaporates from the surface of the Earth and rises into the atmosphere, then condenses and forms clouds, and finally, falls as rain and snow.

The rain and snow then drains back to the surface, either infiltrating into the soil or flowing into rivers, streams, and lakes. The water then evaporates again and the cycle continues. The rock cycle is the continuous process by which sedimentary, igneous, and metamorphic rocks are formed.

Sedimentary rocks are formed when particles of sediment are compressed and cemented together over time. Igneous rocks form when molten material, or magma, cools and crystallizes. Metamorphic rocks form when existing rocks are exposed to extreme temperatures and pressures and transform into new types of rocks.

The biosphere exchange matter with the other spheres through a variety of processes. For example, organisms in the biosphere take in energy from the sun, matter from the lithosphere, and water and carbon dioxide from the atmosphere.

Plants in the biosphere also take in carbon dioxide from the atmosphere and release oxygen as a by-product. All of these exchanges are essential to the survival of organisms and the functioning of the biosphere.

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based on information provided in the animation, which of the following describes the type of radiation that could be absorbed and emitted by earth?

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Based on information provided in the animation, the type of radiation that could be absorbed and emitted by Earth is infrared radiation.

What is infrared radiation?

Infrared radiation refers to the part of the electromagnetic spectrum that lies between the visible and microwave ranges.

Infrared radiation is a type of electromagnetic radiation, which means it is composed of oscillating electric and magnetic fields that travel through space at the speed of light.Infrared radiation is invisible to the human eye, but it is felt as heat.

This is because infrared radiation is absorbed by matter, such as the skin, and then converted into thermal energy (heat).Infrared radiation is given off by many sources, including the sun, light bulbs, and warm objects.

It is also emitted by the Earth's atmosphere, which makes it an important part of the planet's energy budget.In conclusion, based on information provided in the animation, the type of radiation that could be absorbed and emitted by Earth is infrared radiation.

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in an area of known past glaciation, and knowing what we have studied so far, hummocky topography most often results from

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In an area of known past glaciation, hummocky topography most often results from debris deposited by melting glaciers.


Hummocky topography is a surface feature created when a glacier melts and recedes, leaving behind a series of small hills and valleys. This topography is formed when the glacier pushes rocks, soil, and other debris forward as it moves, creating a bumpy surface. As the glacier melts, the debris is left behind and forms these hummocks and mounds. In areas of known past glaciation, hummocky topography is one of the most common features that remain.


A hummock is a small hillock, knoll, or mound. A hummocky topography is one that contains such little hills and mounds. This condition usually results from ice movements and melting, as it can cause landmasses to rise, shift and reshape. Similarly, the hummocky topography that arises from glacial debris results from the material, including boulders, rocks, gravel, and sand, that was deposited by melting glaciers.

The debris is sorted based on its size, with larger rocks at the top and finer debris at the bottom. The hummocks are formed by the melting of the smaller debris, while the larger rocks are left behind as hillocks. These features are common in regions that were once under glaciers, as the melting and erosion of the ice left behind these deposits.

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what is the significance of numerous alternating layers of marine and continental formations found in a plateau? provides direct evidence for the theory of cyclic epeirogeny the sedimentary platform must have been elevated one time lack of highly deformed strata casts doubt on multiple cyclic movements

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The alternating layers of marine and continental formations seen in a plateau are noteworthy because they give direct evidence for the notion of cyclic epeirogeny.

According to this view, plateaus and other high landforms are the consequence of periodic large-scale vertical motions of the Earth's crust.The sedimentary platform that makes up the plateau must have been uplifted and submerged throughout time as there are alternating layers of marine and continental formations. This is in line with the cyclic epeirogeny theory, which contends that the crust of the Earth experiences periodic elevation and subsidence.The hypothesis of many cyclic motions, however, is called into question by the absence of strongly deformed layers. If the layers had undergone multiple episodes of intense deformation, such as folding or faulting, it would be difficult to distinguish individual layers of sedimentary rock. As a result, the lack of significantly deformed strata shows that the vertical motions that produced the plateau may have been less abrupt and more gradual than previously believed.

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briefly explain why a permanent temperature inversion (temperature increases with height) occurs throughout stratosphere

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A permanent temperature inversion, in which temperature increases with height, occurs throughout the stratosphere because of the presence of ozone in the stratosphere.

The absorption of ultraviolet radiation by ozone causes the stratosphere to be heated. Due to the high temperatures of the stratosphere, the temperature increases with increasing altitude.

Additionally, the stratosphere is relatively dry, with little to no water vapor to absorb or emit heat, contributing to the permanent temperature inversion.

A permanent temperature inversion layer in the stratosphere helps to stabilize the atmosphere and prevent vertical mixing between the stratosphere and the troposphere below. This plays an important role in regulating our climate, as it helps to maintain the atmospheric conditions necessary for life on Earth. By preventing mixing, the temperature inversion layer helps to keep the troposphere cooler and drier than the stratosphere, which can have significant impacts on weather patterns and the overall climate system.

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how do present-day rivers compare to what those same rivers would have been like at the end of the glacial ages? multiple choice question.

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Rivers today differ significantly from what they would have been like during the glacial ages. The rivers would have been wider, deeper, and more sinuous, with fewer meanders and a greater variety of aquatic species. Additionally, they would have had increased erosion and more sediment in the water. Correct answer is all of the above, option D

Additionally, there would have been more debris and sediment in the water, such as sand, gravel, and boulders, as well as a greater variety of aquatic species. The rivers of today are very different from what they would have been during the last glacial period. Most rivers would have been bigger and deeper at that period because of increased erosion brought on by more glacier runoff. Since that glacial melt water is more strong and swift than current rivers, they would also be more sinuous and have fewer meanders.

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Correct question would be " how do present-day rivers compare to what those same rivers would have been like at the end of the glacial ages? options could include a) wider, deeper, and more sinuous; b) fewer meanders and a greater variety of aquatic species; c) increased erosion and more sediment in the water; or d) all of the above"

caloris basin, a huge circular region on mercury surrounded by rings of mountains, appears to have been produced by

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Answer:

Caloris basin, a huge circular region on Mercury surrounded by rings of mountains, appears to have been produced by an impact from a large asteroid or comet. This impact is estimated to have occurred about 3.8 billion years ago and was powerful enough to create a basin nearly 1,550 miles (2,500 km) in diameter. The impact also created a series of concentric rings of mountains around the basin, which rise to heights of over 1 mile (1.5 km) above the surrounding terrain. The Caloris basin is one of the largest and most prominent features on Mercury and provides important clues about the planet's geological history.

basalt is an igneous rock that can be found in which volcanic environment?group of answer choicesmid-ocean ridge volcanismhot spot volcanismsubduction zone volcanism

Answers

Basalt is an igneous rock that is most commonly found in volcanoes that form due to subduction zone volcanism.

Subduction zone volcanism is a type of volcanism occurs when one of the Earth's tectonic plates moves beneath another and sinks into the mantle. As the two plates grind against each other, the pressure causes magma to rise up through the lithosphere, forming a volcano.

Basalt is composed of minerals like pyroxene, plagioclase, and olivine, and it forms from the cooling and solidification of lava that is created when the magma rises and erupts. Basalt is one of the most common volcanic rocks and is often used to construct structures such as roads, pathways, and buildings.


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what common mineral is found in igneous rocks and is also abundant in most sandstones? biotite mica pyroxene plagioclase feldspar quartz

Answers

Answer:

Quartz

Explanation:

identify the false statement. the rock cycle indicates that: group of answer choices sedimentary rock cannot form from other sedimentary rocks because the pathway is always from one rock type to a different rock type. in order to make a metamorphic rock, burial and/or heating are needed. a granite that was eroded, transported, and then deposited would eventually become a sedimentary rock. input of new melt from the crust enters the rock cycle as an igneous rock.

Answers

The false statement is that in order to make a metamorphic rock, burial and/or heating are needed. This is false because metamorphic rock can also form from other metamorphic rocks, and does not necessarily require burial and/or heating.

Metamorphic rocks are formed when existing rocks are exposed to extreme temperature and pressure, which can occur either deep within the earth or near the surface. When existing metamorphic rocks experience these extreme conditions, they can change into different metamorphic rocks, without requiring burial or heating.

This shows that the pathway of the rock cycle is not always from one rock type to another, but can also be from one rock type to the same rock type. For example, a granite that was eroded, transported, and then deposited would eventually become a sedimentary rock.

This sedimentary rock could then undergo metamorphism and be changed into a metamorphic rock, without requiring burial and/or heating. This is an example of how the rock cycle indicates that sedimentary rocks can form from other sedimentary rocks.

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which element is found in greater amounts in low viscosity magma, than in high viscosity magma? question 12 options: a) si b) fe

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Si (Silica) is found in greater amounts in low viscosity magma, than in high viscosity magma. Option A is correct answer.

High silica content magmas will consequently show higher levels of polymerization and have higher viscosities than magmas with low silica concentration. A substance's viscosity is a measurement of its consistency. A substance's viscosity is defined as its capacity to resist flow. Viscosity is, in some ways, the inverse of fluidity. Because cold molasses is less fluid than water, it has a greater viscosity.

The temperature, composition, and gas concentration of a magma all influence its viscosity. The relationship between temperature and viscosity is self-evident. The greater the temperature, like with most liquids, the more fluid the material becomes, reducing its viscosity.

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the richter magnitude of an earthquake is determined from the .group of answer choicesintensity of the earthquakearrival time of p and s wavesarrival time of p and surface wavesduration of the earthquake

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The Richter magnitude of an earthquake is determined from the arrival time of P and S waves. Therefore the correct option is option B.

The Richter magnitude scale is a measure of an earthquake's size that assigns a single number to the amount of seismic energy released. Earthquakes are classified according to their magnitude, and the Richter magnitude scale is one of several scales used to do so. The Richter scale was developed by Charles F.

Richter, an American seismologist. The Richter scale, which ranges from 1 to 10, is a logarithmic scale.

Therefore, each whole number increase in magnitude represents a tenfold increase in seismic energy. To summarize, the Richter magnitude of an earthquake is determined from the arrival time of P and S waves.

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The Richter magnitude of an earthquake is determined from the .group of answer choices

intensity of the earthquakearrival time of p and s wavesarrival time of p and surface wavesduration of the earthquake

__________ load refers to sand pebbles and boulders that are too heavy to be carried along in suspension.

Answers

Bed load refers to sand pebbles and boulders that are too heavy to be carried along in suspension.

Bedload is the name given to the rocks, pebbles, and boulders that are too heavy to be carried along in suspension. They roll or slide along the river's bed or floor due to gravity, and their movements are caused by currents or turbulence.

Bedload can cause erosion by cutting into the bed or floor of the river or stream, and it can also cause sedimentation by depositing itself downstream. Bedload is classified into three categories: the largest, which are boulders, then cobblestones, and finally, the smallest, which are pebbles.

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The Phoenician script differs from other ancient scripts like Linear-A, Cuneiform and Hieroglyphs in thatA. it is alphabetic, meaning that each character represents a letter rather than a syllable or word.B. it is pictorial, meaning that each character represents a concept.C. it is cursive, meaning that the letters are joined together.D. it is syllabic, meaning that each character denotes a syllable O Sicily

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The Phoenician script differs from other ancient scripts like Linear-A, Cuneiform and Hieroglyphs in that it is alphabetic, meaning that each character represents a letter rather than a syllable or word. Therefore, the correct answer is option A.

The Phoenician script was developed in the ancient city-state of Phoenicia, which is now Lebanon. It was one of the earliest writing systems and was used to write the Phoenician language. The script was also adapted by other languages, such as Hebrew and Aramaic.

Unlike pictorial scripts like hieroglyphs, which used pictures to represent concepts, the Phoenician script used letters to represent sounds. This made it a more efficient system for recording language. The Phoenician script was also different from cursive scripts like Linear-A, which were written in a flowing, connected style. Therefore, the correct answer is option A.

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what is the name given to an area of cold air below an area of warm air that forms a lid over a city that will slow down dispersal of air pollutants?

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The name given to an area of cold air below an area of warm air that forms a lid over a city that will slow down dispersal of air pollutants is an inversion layer.

The name given to an area of cold air below an area of warm air that forms a lid over a city that will slow down dispersal of air pollutants is temperature inversion.

A temperature inversion is a natural occurrence that occurs when warm air overlies cooler air. A temperature inversion occurs when the air near the surface of the Earth is colder than the air above it, and it is common in the winter months due to the Earth's decreased sunlight and increased radiation.

A temperature inversion occurs when the temperature of the atmosphere does not decrease with height, resulting in a layer of warm air above a layer of cooler air. Temperature inversions can trap air pollutants, which can be hazardous to human health, particularly in cities with a lot of vehicle and industrial emissions.

Inversions can occur naturally or be caused by human activities, such as the burning of fossil fuels or large-scale agriculture. This phenomenon causes the air to stagnate in the lower atmosphere, which is where air pollutants can accumulate.

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describes the tendency for different types of rock to weather at different rates.

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The tendency for different types of rock to weather at different rates is known as differential weathering. This phenomenon occurs due to the varying physical and chemical properties of different rocks.

For example, rocks with a greater porosity and permeability are more likely to absorb water, leading to faster weathering.

In contrast, rocks with low porosity and permeability will not absorb water easily and therefore weather more slowly. Other factors that can influence the rate of weathering include the type of minerals that the rock is composed of and the climate in which it is located. Differential weathering affects the landscape, often leading to the formation of distinctive features such as mesas and canyons.

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which geographic feature accounts for the isolated arc of highlands climate north of italy? alps mountains pyrenees mountains north european plain carpathian mountains

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The geographic feature that accounts for the isolated arc of highlands climate north of Italy is the a) Alps mountains.

The Alps are a vast mountain range stretching across several countries in Europe, including Italy, France, Switzerland, and Austria. These mountains act as a barrier, separating the Mediterranean climate of Italy from the cooler, continental climate of central and northern Europe.

The high peaks of the Alps intercept moisture from prevailing westerly winds, causing precipitation and creating a distinctive highland climate characterized by colder temperatures and more precipitation than surrounding areas.

This climate, in turn, affects vegetation patterns and agricultural practices in the region, making it an important factor in shaping the cultural and economic landscape of northern Italy.

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The Alps Mountains account for the isolated arc of highlands climate north of Italy. The Alps are a large mountain range that span across parts of France, Switzerland, Italy, Germany, and Austria. This mountain range is responsible for creating a barrier that blocks cold, arctic air from the north and helps to create the highland climate.

The Alps are a major mountain range in Europe, stretching approximately 1,200 kilometers (750 miles) across eight countries: France, Switzerland, Italy, Austria, Germany, Liechtenstein, Slovenia, and Monaco. They are the highest and most extensive mountain range system that lies entirely in Europe, with the highest peak being Mont Blanc, which stands at 4,809 meters (15,778 feet) tall. The Alps are known for their stunning beauty and are a popular destination for skiing, hiking, and other outdoor activities. The region is also known for its rich cultural heritage, with each country and region having its own unique traditions and customs.

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the soil horizon containing only organic material is the a horizon. b horizon. c horizon. o horizon. e horizon.

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The soil horizon containing only organic material is the O horizon.

What is the O horizon?

The O horizon, which is the soil layer containing the most organic matter, is also known as the organic layer. The organic layer includes both live and dead plant roots and decomposed plant and animal residues.

This horizon can be very thin in some soils or as much as several meters thick in some organic soils. Because of its abundance of organic matter, the O horizon is often dark in color and has a spongy texture. This soil layer is sometimes known as the surface layer.The O horizon is found in soils that have experienced natural soil formation over a long period of time. The development of this layer of soil is affected by a variety of factors, including climate, vegetation, and the underlying bedrock, which all play a role in soil development. The soil's pH level and other chemical properties can also affect the amount of organic matter present in the O horizon. Additionally, human activity can affect the development and composition of this soil layer.

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the pelagic zone is best defined by which option? responses all the open water of the ocean all the open water of the ocean the benthic zone only the benthic zone only the deep ocean the deep ocean the intertidal zone only

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The pelagic zone is best defined by "all the open water of the ocean." Therefore the correct option is option A.

The pelagic zone is the area in the ocean that is not connected to the seafloor, and is thus sometimes referred to as the "open ocean." The pelagic zone is defined by all the open water of the ocean, which is often separated into vertical zones by depth, depending on light levels, temperature, and other physical variables.

The epipelagic zone, the mesopelagic zone, the bathypelagic zone, and the abyssopelagic zone are the four layers of the pelagic zone that exist. There is less life in the open pelagic zone than in shallower waters, and it is difficult for marine animals to survive there because they have to fight the constant movement of the ocean.

Despite the harshness of the open ocean, a diverse array of sea creatures exist there, ranging from small planktonic organisms to large marine mammals. Therefore the correct option is option A.

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The pelagic zone is best defined by which option? responses

all the open water of the ocean the benthic zone only  the deep ocean the intertidal zone only

which of the following activities is not used to monitor volcanoes? group of answer choices measuring seismic activity with seismic instruments measuring sulfur dioxide gas emissions measuring changes in heat flow from satellites measuring tilting on the flanks of a volcano all of these are used to monitor volcanoes

Answers

None of the listed activities are used to monitor volcanoes.

Seismic instruments measure vibrations in the earth that can indicate an impending eruption, and gas emissions of sulfur dioxide can be used to detect when a volcano is about to become active. Changes in heat flow from satellites and tilting on the flanks of a volcano can also be used to monitor for activity. All of these activities are important for volcanologists to be aware of in order to safely monitor and predict volcanic eruptions.

Seismic activity can be monitored by using sensitive instruments that detect tiny vibrations in the earth, which are caused by movements deep underground. This can indicate if a volcano is becoming active and can give early warnings of an impending eruption. Gas emissions, like sulfur dioxide, can also be used to detect when a volcano is about to become active. The gas can be measured and monitored, and an increase in emissions can indicate the potential for a future eruption.

Additionally, changes in heat flow from satellites can be used to monitor volcanoes. Heat flow is an indication of an active or potentially active volcano. This method can be used to remotely measure the heat coming from a volcano and help scientists to predict future activity. Finally, the flanks of a volcano can be monitored for any tilting, which could indicate an imminent eruption.

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which mining process uses heavy equipment to dig holes to remove ores, as well as sand, gravel, and stone? dredging heap leaching open-pit mining strip mining

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 The strip mining process uses heavy equipment to dig holes to remove ores, as well as sand, gravel, and stone. The correct option is d.

Strip mining is a process that uses heavy equipment to remove ores, sand, gravel, and stone from the earth. It involves digging a large trench and removing the material layer by layer, until the desired material is exposed.  The correct option is d.

The material is then hauled away and processed. Strip mining is often used to mine coal and tar sands, and is used when the material is too deep to access by open-pit mining.

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Which point is most important for the cartographer to consider before
creating a new map?
O A. Where the equator is located
OB. Goal of the map
O C. How the map will be displayed
OD. Relative size of the map elements

Answers

OD) Relative size of the map elements as scale is the most important

relative to the fundamental themes of geography, the grand canyon is best described within which of the five themes?

Answers

Relative to the fundamental themes of geography, the Grand Canyon is best described within the theme of "physical geography".

The five fundamental themes of geography are Location, Place, Human-Environment Interaction, Movement, and Regions. These themes are used to describe and understand the physical and human aspects of the world around us.

Let's understand how the Grand Canyon is best described within the fundamental themes of geography:

Location: The location of the Grand Canyon is important to its understanding, but it does not fall within this theme.

Place: The Grand Canyon is a unique place, but it does not fall within this theme as well.

Human-Environment Interaction: The Grand Canyon is formed by the Colorado River and various geological processes. Its formation and how humans have interacted with it over time is best described within this theme.

Movement: The Grand Canyon is not particularly relevant to the movement of people, goods, or ideas, so it does not fall within this theme.

Regions: The Grand Canyon is located within the Southwest region of the United States. It is an important part of this region, but does not fall within this theme.

Therefore, we can conclude that the Grand Canyon is best described within the theme of "physical geography". Physical geography is a branch of geography that studies the natural features of the Earth's surface.

The Grand Canyon is a prominent example of physical geography due to its unique geology and the physical processes that have shaped it over millions of years.

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you're excavating and discover a large fragment of a well-preserved ancient woven basket made of organic material. what chronometric dating method would you use to discover its age?

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The chronometric dating method used to discover the age of an ancient woven basket made of organic material discovered while excavating is "radiocarbon dating".

Chronometric dating or numerical dating is a method of dating that uses radioactive decay to calculate an absolute age. The time taken for the radioactive element to decay to half of its original amount is the half-life of that element.

What is Radiocarbon dating?

Radiocarbon dating is a method of dating that uses the decay of carbon-14 to calculate an absolute age. Radiocarbon dating is used to estimate the age of materials that were once alive but have since decayed, such as wood, shells, and bone.

Carbon-14 is a radioactive isotope of carbon that is produced naturally in the atmosphere. When a living organism dies, it stops taking in carbon-14. The carbon-14 that was already in the organism starts to decay, turning into nitrogen-14.

The rate at which carbon-14 decays is constant, so by measuring the amount of carbon-14 left in a sample, you can calculate how long ago the organism died.

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the upper portion of the glacier where individual grains of ice do not move relative to one another is the.

Answers

The upper portion of a glacier where individual grains of ice does not move relative to one another is called the firn line.

Firn is the intermediate stage between snow and glacial ice, and forms when snow is compacted under its own weight and recrystallizes. This line is found at the top of the glacier, where temperatures and pressures are too low for recrystallization.

The firn line marks the boundary between the accumulation zone, where more snow accumulates than melts or sublimates, and the ablation zone, where more snow melts or sublimates than accumulates. It is an important reference point for measuring glacier mass balance, as any movement of the firn line indicates a change in the amount of snow accumulation or snow melts.

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choose the statement that best describes foliation. choose one: a. the texture typical of all metamorphic rocks b. an arrangement of mineral grains such that most are of the same size and shape c. an alignment of mineral grains perpendicular to the direction of compression d. an alignment of mineral grains parallel to the direction of compression

Answers

Answer:

d. An alignment of mineral grains parallel to the direction of compression describes foliation.

Explanation:

Foliation is a characteristic feature of many metamorphic rocks, and it refers to the alignment of mineral grains or other constituents in parallel planes or layers. This alignment is typically a result of the application of directed pressure or compression during the metamorphic process, which causes the mineral grains to flatten and orient in the same direction. The resulting texture can give the rock a layered or banded appearance and can also affect its physical properties such as its strength and cleavage.

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