true or false: the 1st step in primary succession is forces of nature help break down rocks into soil.

Answers

Answer 1

True, the first step in primary succession is the forces of nature helping to break down rocks into soil. This process is known as weathering and erosion and is a gradual process that creates the foundation for plant growth and colonization. Over time, small organisms such as lichens and mosses begin to grow on the newly formed soil, further contributing to the development of a new ecosystem.


The statement is true. The first step in primary succession is when forces of nature, such as weathering and erosion, help break down rocks into soil. This provides a foundation for the establishment of pioneer species and further ecological succession.

This soil provides a base for plants to grow, which in turn attracts animals and other organisms. Over time, as more and more organisms move in, the ecosystem becomes more complex and diverse. Therefore, the breakdown of rocks into soil is a crucial and necessary step in primary succession.

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Related Questions

What is the most efficient path to sail against the wind?.

Answers

The most efficient path to sail against the wind is to use a technique called tacking.

What is it?

Tacking involves sailing at an angle to the wind, known as close-hauled, and then turning the boat sharply to the opposite angle, crossing through the wind.

This allows the boat to make progress against the wind by zigzagging back and forth. To make this technique even more efficient, sailors should adjust their sails and weight distribution to optimize speed and minimize drag.

By using tacking and making small adjustments, sailors can navigate effectively against the wind and reach their destination efficiently.

Hence, the answer is tacking.

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According to the CRB article, what two measures have farmers taken to protect the river basin?

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By implementing these measures, farmers are working to protect the river basin and ensure a sustainable future for agriculture in the region.

According to the CRB article, farmers have taken two measures to protect the river basin. Firstly, they have implemented conservation practices that aim to reduce soil erosion and improve water quality. These practices include the use of cover crops, no-till farming, and precision agriculture. Cover crops protect the soil from erosion, reduce nutrient runoff, and enhance soil health. No-till farming helps to retain soil moisture, reduce erosion, and increase organic matter in the soil. Precision agriculture involves using technology to apply fertilizers and pesticides only where they are needed, reducing waste and environmental impact. Secondly, farmers have adopted water management strategies that aim to reduce water use and improve efficiency. These strategies include the use of drip irrigation, water monitoring systems, and water storage facilities. Drip irrigation delivers water directly to the root zone of plants, reducing evaporation and improving water efficiency. Water monitoring systems help farmers to track water usage and identify areas where improvements can be made. Water storage facilities, such as ponds or tanks, allow farmers to capture and store rainwater, reducing the need to pump water from the river.

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Use the sketch to differentiate between surface runoff and throughflow

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In contrast to throughflow, which seeps through the soil and is stored in the soil and groundwater, surface runoff is the water that pours over the top of the land.

The water flow that happens on the surface of the land is known as surface runoff, and it typically follows a very severe downpour or snowmelt. Since it travels swiftly down hillsides and into streams, rivers, and lakes, this type of water flow is simple to see.

Water that slowly percolates through the soil and underlying rocks on its route to a stream or river is known as throughflow. Although this type of water flow is harder to see, it is nonetheless a crucial component of the hydrologic cycle.

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Hello, can you help me please?
What refers to a country that governs itself without any outside control?
independent
temperate
sovereign
geopolitical

Answers

Answer:

Explanation:

Sovereign.

(q019) elongate hills of glacial till that are molded by glaciers that flow over them are called group of answer choices loess. kettle holes. drumlins. eskers.

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Drumlins are elongate hills of glacial till that are molded by glaciers that flow over them. They are typically teardrop-shaped with a steep slope facing the direction from which the glacier came and a more gradual slope on the other side.


Drumlins are elongated hills made of glacial till, which are formed as glaciers move over them. The shape of a drumlin is usually asymmetrical, with a steeper side facing the direction the glacier came from and a more gently sloping side on the opposite side. This distinct shape is due to the way the glacier molds the till as it moves over the hill.

Kettle holes, and eskers are not correct in this context as they refer to different glacial features: Loess: Wind-blown silt deposits that can accumulate over large areas, not specifically related to glaciers. Kettle holes: Depressions formed by melting ice blocks that were buried in glacial till. Eskers: Sinuous ridges composed of gravel and sand that were deposited by meltwater streams flowing beneath a glacier.

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Elongate hills of glacial till that are molded by glaciers that flow over them are called drumlins.

These landforms are usually oval or elongated in shape and can range from a few meters to several kilometers in length. Drumlins are typically formed from the debris and sediment that glaciers carry along with them, which gets deposited in layers and compressed over time. These landforms are often found in clusters or "swarms" and can give clues about the direction and speed of glacier movement. In contrast, loess refers to a type of wind-blown sediment, kettle holes are depressions left behind by melting ice blocks, and eskers are long ridges of sand and gravel deposited by streams that flowed under glaciers.

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Which of the following lists the correct sequence of divisions in the geologic time scale, from largest to smallest? A) era, eon, epoch, period B) eon, era, period, epoch C) epoch, era, eon, period D) period, eon, era, epoch

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The correct sequence of divisions in the geologic time scale, from largest to smallest, is eon, era, period, and epoch. Therefore, option B, "eon, era, period, epoch," is the correct answer.

The geologic time scale is a system of chronological measurement that divides Earth's history into distinct intervals based on geological and paleontological events. The largest division is the eon, which is divided into eras, and eras are further subdivided into periods, which are then subdivided into epochs. This system provides a framework for understanding the history of the Earth and the evolution of life over time.

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Approximately how often do locked segments of the san andreas fault (california) break, resulting in major earthquakes? once every ten thousand years once every fifteen years once every hundred and fifty years once every six hundred years

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The frequency of major earthquakes caused by locked segments of the San Andreas Fault is approximately once every 150 years.

The San Andreas Fault is a transform boundary that separates the Pacific Plate from the North American Plate, and it is one of the most studied faults in the world due to its high seismic activity. The locked segments of the fault are areas where the tectonic plates are stuck together, and when they eventually break, they release large amounts of energy in the form of earthquakes.

The last major earthquake caused by a locked segment of the fault occurred in 1857, which means that California is overdue for another major earthquake. Scientists continue to study the San Andreas Fault to better understand its behavior and potential for future earthquakes in order to better prepare and mitigate the impact of seismic activity on communities in the region.

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what change in arctic seas caused the global ocean conveyor belt to stop abruptly in the past? group of answer choices decreased salinity decreased temperature increased salinity increased temperature

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A decrease in salinity caused the global ocean conveyor belt to stop abruptly in the past.

Melting ice from glaciers and increased freshwater input from rivers diluted the salinity of the Arctic seas, which affected the formation of dense, salty water that drives the conveyor belt. This disruption to the conveyor belt system had significant effects on global climate patterns, including cooling in the North Atlantic region.

The global ocean conveyor belt, also known as the thermohaline circulation, is driven by differences in temperature and salinity. In the past, a significant decrease in salinity in the Arctic seas, possibly due to the influx of freshwater from melting ice, disrupted the density-driven circulation. This caused the conveyor belt to stop abruptly, leading to changes in global climate patterns.

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The graph above shows CO2 measurements taken from Mauna Loa, Hawaii, and the Vostok ice core, which was drilled from ice sheets in Antarctica.Which of the following hypotheses is best supported by the graph?

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The Vostok record shows that CO2 concentrations have not been as high in the past 800,000 years, suggesting that human activities are responsible for the recent increase.

The Vostok record refers to a series of ice core samples collected from the Vostok Station in Antarctica. These ice cores provide a record of the Earth's climate and atmospheric composition over the past 800,000 years, making it one of the longest continuous climate records available.

By analyzing the ice cores, scientists have been able to study changes in temperature, greenhouse gas concentrations, and other climate variables over a vast timescale. The record has revealed cycles of ice ages and warm periods, as well as the impact of human activities on the atmosphere in recent decades. The Vostok record has been instrumental in developing our understanding of the Earth's climate history, and it continues to be a valuable resource for climate researchers today.

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in 1978, the united states banned the use of cfcs in aerosols. based on the data in the graph, which of the following best explains the effect of this ban as a solution to decrease global cfc production?

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In 1978, the united states banned the use of cfcs in aerosols between 1975 and 1991, the amount of CFC in the air increased; between 1991 and 2015, it declined. CFC causes lungs and skin diseases.

CFC stands for "chloro flouro carbon," since the name implied that CFOC contains carbon, chlorine, and flourine atoms.

According to the question, CFCs are emitted from numerous cooling devices and are dangerous for both the environment and human health. As a result of the ozone layer being damaged, UV radiation will reach the ground and may result in human skin diseases or skin cancer in addition to lung diseases. Additionally, it is stated that it was prohibited worldwide in 1987, so from 1975.

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drinking water in los angeles comes from which river? question 8 options: a) ohio b) colorado c) chattahoochee d) mississippi

Answers

Answer:

None of the options are correct

Explanation:

Water comes from the Los Angeles Aqueduct

Because of voluntary soil erosion practices, how many tons of soil do not erode every year?

Answers

These voluntary practices have been successful in preventing significant amounts of soil erosion each year. However, it is important to continue to promote and encourage these practices to ensure the long-term health and sustainability of our soil and natural resources.

Voluntary soil erosion practices such as conservation tillage, cover cropping, and contour farming have significantly reduced the amount of soil that erodes each year. According to the United States Department of Agriculture (USDA), these practices have helped to prevent the erosion of an estimated 1 billion tons of soil annually in the United States. This is a significant accomplishment, as soil erosion can have numerous negative impacts on the environment, including reduced soil fertility, increased sedimentation in waterways, and decreased water quality.

Conservation tillage, for example, involves leaving crop residues on the soil surface to protect against erosion and improve soil health. Cover cropping involves planting a crop specifically to protect the soil during fallow periods and improve soil health. Contour farming involves plowing and planting crops along the contour lines of the land to reduce the amount of runoff and erosion that occurs.

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one city is located near the pacific coast of california. another, approximately the same size, is located far inland at the same latitude. what difference, if any, would be expected in the average temperatures of these two cities? there would be no difference because both cities are in california. there would be no difference because the cities are approximately the same size. the coastal city will be cooler because ocean currents give off heat before reaching shore. the inland city will be cooler because it receives no heat from ocean currents. the coastal city will be cooler because oceans moderate climate.

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There would be a difference in the average temperatures between the two cities.

The coastal city is expected to be cooler because of the moderating effect of the ocean on climate. Ocean currents give off heat before reaching the shore, which helps to keep the coastal city cooler. On the other hand, the inland city is expected to be warmer because it receives no heat from ocean currents. Therefore, the location near the pacific coast of California can significantly affect the average temperatures of a city.
The coastal city, being near the Pacific coast of California, will experience a more moderate climate due to the influence of ocean currents. The inland city, on the other hand, will not receive the same moderating effect from the ocean and may experience more extreme temperature fluctuations. This results in the coastal city generally having cooler average temperatures compared to the inland city at the same latitude.

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What was a negative impact of the Industrial Revolution on Great Britain?
factory investments
increased wealth
increased trade
environmental issues

Answers

Answer:

One negative impact of the Industrial Revolution on Great Britain was environmental issues. The rapid industrialization led to the release of pollutants and chemicals into the air, water, and soil, causing significant environmental damage. Factories produced large amounts of waste, which often ended up in rivers, contaminating them and making them unfit for drinking and agriculture. The use of coal for energy resulted in high levels of air pollution, which caused respiratory problems and other health issues for people living in the cities. The Industrial Revolution also led to deforestation, soil erosion, and other forms of environmental degradation. These negative impacts on the environment had long-lasting effects and continue to be a problem today.

In coral reefs, coral polyps contain single-celled photosynthetic algae called zooxanthellae. Coral polyps sweep organic material from the water and metabolize it, forming CO2 and nitrogenous wastes. Zooxanthellae use CO2 and nitrogenous wastes in photosynthesis to form oxygen and sugars, which in turn are used by coral polyps and dinoflagellates for metabolism. When the water becomes too warm, as is occurring in many areas as a result of climate change, the corals expel their zooxanthellae. This interspecies interaction is _______, and if the interaction were disrupted, you would expect the coral population to _______.
commensalism; decrease and possibly undergo local extinction
mutualism; decrease and possibly undergo local extinction
commensalism; not be affected
consumer−resource; almost definitely undergo local extinction

Answers

This interspecies interaction is mutualism, and if the interaction were disrupted, you would expect the coral population to decrease and possibly undergo local extinction

This is because both species benefit from the interaction - coral polyps receive sugars and oxygen that zooxanthellae produce through photosynthesis, while zooxanthellae receive CO2 and nitrogenous waste produced by coral polyps. However, when the water becomes too warm, the corals expel their zooxanthellae, disrupting this mutualistic interaction. Without their zooxanthellae, corals lose their primary source of energy and may experience bleaching, which can lead to a decrease in coral populations and possibly local extinction. The loss of coral populations can have cascading effects on entire reef ecosystems, impacting the many other species that depend on them for food and shelter.

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What u. S. Peninsula, explored by captain cook, experienced a tidal wave that destroyed its main port?.

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The US peninsula that was explored by Captain Cook and experienced a devastating tidal wave that destroyed its main port was the Hawaiian Peninsula.

This natural disaster occurred in 1778 during Cook's third and final voyage to the Pacific Ocean. Cook and his crew were the first Europeans to set foot on the islands and began charting and mapping the area. However, on February 14, 1779, a massive tidal wave struck the island of Hawaii, also known as the Big Island, destroying the port of Kealakekua Bay where Cook's ship, the HMS Resolution, was docked. The wave caused significant damage to the ship and killed several crew members, including Cook himself. The tragedy left a lasting impact on Hawaiian history and is still remembered to this day.

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Which of the following is NOT a European Island?

Question 5 options:

Iceland


Sicily


Great Britain


Madagascar

Answers

Madagascar is not a European island. It is an island country situated off the southeast coast of Africa, in the Indian Ocean. Its closest neighbor to the west is Mozambique, which lies across the Mozambique Channel.

The correct option is D.

On the other hand, Iceland, Sicily, and Great Britain are all European islands. Iceland is a Nordic island country located in the North Atlantic, while Sicily is the largest island in the Mediterranean Sea and is a part of Italy.

Great Britain is the largest island in Europe and is located in the North Atlantic off the northwest coast of the continent. It is home to three countries: England, Scotland, and Wales. The correct option is D.

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which shoreline type has submerged shorelines from likely tectonic activity? question 5 options: a) ria b) delta c) alpine d) fjord

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The shoreline type that has submerged shorelines from likely tectonic activity is Ria.

Hence, the correct answer is option A.

What is Ria Shoreline or Coastline?

A ria coast features multiple estuaries separated by ridges, formed by either global sea level rise or local land sinking. The resulting estuary is often much larger than the river that feeds it.

The term "ria" comes from the Galician language and originally referred to submerged river valleys with a specific structure, but it has since been expanded to include other flooded river valleys regardless of structure. Rias are found all along the Galician coast in Spain.

Some examples of ria coastlines include the the West Coast of Ireland, the Brittany coast in France, and the south coast of Norway.

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Which of the following statements about Latin American governments is true?

A. Most countries do not have written constitutions.

B. Countries generally have strong executive branches and weaker legislatures.

C. Few countries require their citizens to vote.

D. Several countries have authoritarian dictatorships. ​

Answers

Answer:

B. Countries generally have strong executive branches and weaker legislatures.

This statement is generally true for Latin American governments. Many Latin American countries have historically had strong presidential systems with weaker checks and balances from the legislature or judiciary. However, in recent years, some countries have made efforts to strengthen their democratic institutions and create more balanced systems of government.

A is false, as most Latin American countries do have written constitutions.

C is false, as many Latin American countries have compulsory voting laws, meaning citizens are required to vote in elections.

D is partially true, as some Latin American countries have experienced authoritarian dictatorships in the past or present, but not all of them. Many countries have transitioned to democratic systems in recent decades.

Explanation:

What is the name of the area west of the Ural Mountains with rich soil called Chernozem?

A) Fertile Triangle
B) Llanos
C) Black Earth Belt
D) Siberia

Answers

The name of the area west of the Ural Mountains with rich soil called Chernozem is Black Earth Belt.

The correct option is C.

The Black Earth Belt, also known as the Chernozem region, is an area located west of the Ural Mountains in Russia. It is called the Black Earth Belt because of the rich, dark soil that is found in this region. The soil is rich in organic matter, which makes it very fertile and suitable for agriculture.

The region covers a vast area of land and includes several countries such as Russia, Ukraine, and Kazakhstan. The area contains some of the world's most productive agricultural land, and it is a major source of grain and other crops. Wheat, corn, sunflowers, and sugar beets are some of the crops that are grown here.

The Black Earth Belt is an important region for agricultural production and has been for centuries. The area's fertile soil has made it an attractive place for human settlement since ancient times. The region's climate, with cold winters and warm summers, is also ideal for agriculture. The correct option is C.

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Body waves are seismic waves that travel inside Earth: _____ waves compress the material they travel through and are faster than _____ waves, which impact a motion perpendicular to the direction of wave propagation

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Body waves are seismic waves that travel inside Earth and are responsible for transmitting the energy generated by an earthquake. There are two types of body waves: primary waves (P-waves) and secondary waves (S-waves).

P-waves are longitudinal waves that compress and expand the material they travel through, while S-waves are transverse waves that vibrate perpendicular to the direction of wave propagation. P-waves have higher velocities than S-waves, meaning they travel faster and can pass through both solid and liquid materials. On the other hand, S-waves can only travel through solid materials because liquids lack the rigidity to support the shearing motion of S-waves. The behavior of these two types of waves provides important information about the internal structure and composition of Earth.

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6. if you live near a large body of water, in the winter it is often slightly warmer close to the water than it is further inland. explain why this is the case based on the principles of thermochemistry.

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Large bodies of water have a higher heat capacity than land, meaning they can absorb and retain more heat energy. In the winter, the water temperature takes longer to cool down than the surrounding land temperature. As a result, the air temperature close to the water is slightly warmer than the air temperature further inland.

The principles of thermochemistry, which explain the transfer of heat energy. Heat energy always flows from an object with a higher temperature to one with a lower temperature. In the case of a large body of water and surrounding land, the water has a higher heat capacity and can absorb and retain more heat energy than the land.

During the day, the sun's energy heats both the water and the land, but the water takes longer to cool down than the land as it has a larger thermal mass. At night, the water gradually releases its stored heat energy, which warms the surrounding air. This phenomenon is known as the "lake effect," and it results in slightly warmer temperatures close to the water than further inland in the winter.

In summary, the higher heat capacity of large bodies of water allows them to absorb and retain more heat energy than land, resulting in slightly warmer temperatures close to the water than further inland in the winter.

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According to the Chowan River Basin article, which is not true about the Atlantic sturgeon? It is a federally endangered species., It is only found in the Chowan river Basin., It has not been recorded in the CRB in 100 years.

Answers

According to the Chowan River Basin article, the statement that "It is only found in the Chowan River Basin" is not true about the Atlantic sturgeon.

The Atlantic coast of North America, comprising the rivers and estuaries from Labrador to Florida, is home to the federally endangered Atlantic sturgeon. While the Chowan River Basin is one of the species' traditional range areas, it is not the only one where it can be found.

In truth, the article mentions that although there used to be a lot of Atlantic sturgeon in the Chowan River, it hasn't been seen there in more than a century. The population of Atlantic sturgeon in the area and across its range has been drastically reduced as a result of overfishing, habitat loss, and other causes.

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According to the CRB article, what is the reason for the decrease in dioxin in the Chowan River?

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The decrease in dioxin levels in the Chowan River can be attributed to a combination of factors, including improved regulations and enforcement, increased public awareness, and remediation efforts.

The CRB article states that the decrease in dioxin levels in the Chowan River can be attributed to various factors. One of the main reasons for this decline is the implementation of stricter regulations on industrial waste management and disposal. Industries that release hazardous chemicals and pollutants into the river have been required to adopt cleaner technologies and better disposal practices, which has resulted in a reduction in dioxin levels in the water.

Another factor that has contributed to the decrease in dioxin levels is the increased awareness and concern among the public and government agencies about the environmental impact of industrial pollution. This has led to increased monitoring and enforcement of regulations, which has resulted in better compliance from industries.

Furthermore, efforts have been made to clean up historical contamination sites along the riverbank and to remediate polluted sediments in the riverbed. This has resulted in a reduction in the overall contamination levels in the river.

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the origin for a utm coordinate defining a location in the northern hemisphere is measured as a distance in meters from

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The origin for a UTM coordinate defining a location in the Northern hemisphere is measured as a distance in meters from zero at the equator in a northerly direction.

Each UTM zone has a central meridian that intersects with the equator as its point of origin. The central meridian of each zone is set to 500000 metres East in order to avoid dealing with negative values.

The equator is regarded as the origin for northings in the northern hemisphere. A position 10,000,000 metres south of the equator is designated as the origin for northings in the southern hemisphere.

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The complete question is:

The origin for a utm coordinate defining a location in the northern hemisphere is measured as a distance in meters from ____.

when rain falls on land, what factors influence the amount of water that soaks in? please select all that apply.

Answers

When rain falls on land, the factors that influence the amount of water that soaks in are intensity of rainfall, the nature of the surface material, the steepness of the slope and the amount of vegetation on the surface.

Our planet's water is transported in a variety of methods. The water cycle refers to this. The majority of life on Earth depends on the water cycle, which moves minerals and modifies the terrain. Precipitation, infiltration, and runoff are key elements of the water cycle for hydrologists.

Water that falls to the Earth's surface as precipitation comes from the atmosphere. Rainfall that seeps into the soil is known as infiltration. Rainfall that doesn't seep into the ground but instead flows toward streams is known as runoff. Water flowing in streams over the Earth's surface is known as streamflow. Evaporation is the process by which water moves from the Earth's surface back to its atmosphere after changing state from liquid to gas. Water withdrawn from the soil and released into the atmosphere by plants is referred to as transpiration.

The complete question is, "When rain falls on land, what factors influence the amount of water that soaks in? Select all that apply.

A. the intensity of rainfall

B. the nature of the surface material

C. the steepness of the slope

D. the amount of vegetation on the surface"

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the water table group of answer choices is always located beneath the ground surface. rises to a higher elevation during the dry season. usually lies within a few meters of the surface in deserts. mimics the topography of the land it underlies.

Answers

Answer:

mimics the topography of the land it underlies.

Explanation:

which igneous rock has the same chemical composition as basalt, but a different grain size?multiple choice granite diorite rhyolite gabbro

Answers

Basalt  igneous rocks would you be most likely to find the mineral (Mg,Fe)2SiO4. Basalt is a type of fine-grained, dark-colored volcanic rock that is formed from the rapid cooling and solidification of lava flows.

It is one of the most common types of volcanic rock on Earth and is found in many parts of the world. Basalt typically contains high concentrations of iron and magnesium, giving it a dark color and a relatively high density. It is a mafic rock, meaning it is rich in iron and magnesium and low in silica. Basalt is often used as a construction material due to its strength and durability, and it also has various industrial applications, including as a source of crushed stone and as a component of asphalt and concrete. Basaltic lava flows also have important ecological roles, as they can create new land and contribute to soil formation.

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Full Question ;

In which of the following igneous rocks would you be most likely to find the mineral (Mg,Fe)2SiO4?

andesite

basalt

granite

rhyolite

An atmospheric scientist used a high-resolution camera to take images of snowflakes during a snowstorm. The scientist observed that the snowflakes were heavily rimed. What can the atmospheric scientist infer about the snowstorm that was happening at that time?.

Answers

Rimed snowflakes occur when supercooled water droplets freeze onto the surface of the snowflakes, resulting in a rough, irregular appearance.

This process typically occurs in conditions where the temperature of the air is near or slightly above freezing, but the temperature of the snowflake itself is below freezing. Additionally, heavily rimed snowflakes suggest that the snowstorm was likely prolonged and had a relatively low intensity.

This is because heavier snowfall rates typically result in less rimed snowflakes due to the limited amount of time that the snowflakes are exposed to the supercooled water droplets.

Overall, the observation of heavily rimed snowflakes provides valuable information about the atmospheric conditions during the snowstorm and can be used to better understand and predict future weather patterns.

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What classifications of water would apply to aquifers such as the ogallala aquifer located in the u.s. great plains?

Answers

Answer:

Explanation:

The Ogallala Aquifer, which is located in the U.S. Great Plains, is classified as a groundwater resource. Groundwater refers to water that is stored in underground formations, such as aquifers, and can be accessed through wells and springs.

In terms of water quality classification, the Ogallala Aquifer is generally considered to be a high-quality source of water, with low levels of dissolved minerals and other contaminants. However, the quality of the water in the aquifer can vary depending on the location, depth, and other factors.

In the United States, the classification of water resources is typically based on their designated uses, such as drinking water, industrial use, irrigation, and recreation. The Ogallala Aquifer is used primarily for agricultural irrigation, but it also provides drinking water for many communities in the Great Plains region. Therefore, the water in the Ogallala Aquifer can be classified as both a groundwater resource and a drinking water source.

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How long does cooked quinoa last in the refrigerator. Why is it important to stick to a study schedule even if you are caught up with everything? a It guarantees higher grades on your exams. b It helps to create good study habits. c It is time set aside so you can take a break from watching television. d It gives you more time to play your favorite game without interruption. 15. A polygon has the dimensions shown.(2b + a) in.WX(4a-3) in.Z(3a + b-2) in.YPart AWhat is the perimeter of triangle WXY?A 5a + 2b - 5 in.B 8a3b-5 in.9a3b-2 in.D 9a 5b + 2 in.-Part BIf triangle WYZ has a perimeter of 4a + 5b - 2inches, what is the polynomial that represents theperimeter in inches of polygon WXYZ? what type of dispersion forces for the following: HCl, CH3CH3, CH3NH2, Kr safiya is a software engineer at a company that's developing software for self-driving cars. she's working on software that uses computer vision and machine learning algorithms to detect pedestrians walking near the car and trigger the brakes when needed. Suppose you are observing a highly popular and well-respected politician and a college student eat lunch. Both proceed to spill gravy on their neckties. Generalizing from research cited in Aronson, your liking of the politician will most likely _____? And your liking of the college student will _____________?a. increase; increaseb. increase; decreasec. decrease; decreased. decrease; increase How does the circulatory system work with the excretory system. What is the importance of cognitive variables in behavioral assessment? in this equation n is the number of molecules in the system, and and are constants. what is an equation of state for this system, or what is equal to? theories of justice that hold that people are entitled only to what they can freely acquire through their own legitimate efforts in a free market are called theories.group of answer choicessocialistlibertarianegalitarianliberal study this chemical reaction: 2agno3(aq)cu(s)(s)(aq) then, write balanced half-reactions describing the oxidation and reduction that happen in this reaction. oxidation: reduction: A 100.0 mL sample of 0.10 M Ca(OH) 2 is titrated with 0.10 M HBr. Determine the pH of the solution after the addition of 300.0 mL HBr. 1.601.1212.401.301.00 On a routine prenatal visit, what is the sign or symptom that a healthy primigravida at 20 weeks' gestation will most likely report for the first time? if one nation experiences a gain in its external wealth due to valuation effects only, the other nations in the world combined will experience: no change in external wealth. an increase in the interest they earn. an equal gain since all currencies are worth more. an equal decline in external wealth. Which of the following outcomes would you predict for a population of bacteria exposed to a new antibiotic?A. Over many generations, the bacteria would become resistant to the antibioticB. Over a few generations, the bacteria would evolve into archaebacteriaC. Over a few generations, the bacteria would become extinctD. Over many generations, the bacteria would become more susceptible to the antibiotic you deposit $4000 in an account earning 7% interest compounded continuously. how much will you have in the account in 15 years? Factor 25m^2 -30mn+ 9n^2 a putable bond gives the bond holders the right a. to sell the bond back to the corporation at the original purchase price. b. to sell the bond back to the corporation at a stated premium. c. to sell the bond back to the corporation at the current market value. d. to sell the bond back to the corporation at par. The Ku Klux Klan Act of 1871, the strongest of the Enforcement Acts,authorized the federal government to control racially motivatedviolence bySelect one:engaging the National Guarddenying Fifth Amendment protectionssuspending habeas corpusexpanding federal courts Which best contrasts electric doorbells and audio speakers? Doorbells involve rapid changes in the direction of current, and speakers do not. Speakers involve rapid changes in the direction of current, and doorbells do not. Doorbells require closed circuits in order to work, and speakers do not. Speakers require closed circuits in order to work, and doorbells do not.