Question 3
After a landfill is closed, how much soil should be placed on top of the site?
a. two feet
b. six inches
c. four feet
d. as much soil in available

Answers

Answer 1

After a landfill is closed, a final cover system is put in place to reduce water infiltration, control odors, and prevent erosion. As part of this cover system, a minimum of two feet (or 0.6 meters) of soil should be placed on top of the landfill site.

OPtion A is correct

This soil layer helps to provide a barrier between the waste and the environment, as well as to promote vegetation growth on the site.

A landfill is a designated area where waste materials are deposited and buried in the ground. Landfills are typically used for the disposal of non-hazardous solid waste, such as household and commercial garbage, construction debris, and industrial waste. The waste is typically compacted and covered with soil or other materials to help prevent the spread of odors, litter, and potential environmental hazards such as pollution and contamination of groundwater.

OPtion A is correct

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Answer 2

After a landfill is closed, at least four feet of soil should be placed on top of the site to help reduce the risk of environmental contamination.

This soil cover helps to limit the amount of rainfall that enters the landfill, which in turn reduces the potential for leachate and other pollutants to seep into the surrounding environment. Additionally, the soil cover helps to limit the amount of odor and dust that can be generated from the landfill site. While more soil can be added if available, at least four feet is considered the minimum amount needed for adequate coverage.

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Related Questions

the amount of resources in deposits not yet identified but thought to exist.immersive reader

Answers

The term you are referring to is "unidentified resources." These are deposits of natural resources, such as oil or minerals, that have not yet been discovered or fully explored.

Despite not being identified, experts believe these resources are likely to exist based on geological data and other indicators. The search for unidentified resources is an ongoing process, and new technologies and exploration techniques continue to improve our ability to locate and extract these valuable resources.The amount of resources in deposits that have not yet been identified but are believed to exist is often referred to as "undiscovered resources." These resources are typically estimated based on geological and geophysical data, as well as knowledge of the geological processes that form mineral deposits.It's important to note that estimates of undiscovered resources are highly uncertain and can vary widely depending on the quality and quantity of data available, as well as the assumptions and models used to interpret that data. Therefore, they should be viewed as rough approximations rather than precise measurements.

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Importancia de los (celtas) en el desarrollo de gran bretaña

Answers

The Celts were farmers who introduced the iron plough to Britain, which sparked an agricultural revolution.

The "Celts," as we typically refer to them, are mostly preserved in the splendour of their artwork and the tales of the Romans who engaged in battle with them. The Celts were a collection of peoples who were only loosely connected by shared language, religion, and cultural expression. They were successful at cultivating fertile valley and lowland soils.

The Celts are credited with many artistic accomplishments throughout Europe, including elaborate stone carving and skilled metalworking. As a result, intricate Celtic patterns on artefacts made of gold, silver, and priceless gemstones form a significant component of museum collections in Europe and North America.

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The question can be translated as:

What is the importance of the (Celts) in the development of Great Britain?

Explain connections among low sulfur coal, atmospheric warming and toxic mercury.

Answers

Low-sulfur coal, atmospheric warming and toxic mercury are interconnected in various ways.

Low sulfur coal is a type of coal that has a low concentration of sulfur dioxide emissions when burned, which can have positive environmental effects by reducing acid rain and respiratory illnesses. However, low-sulfur coal often contains higher levels of toxic mercury, which is released into the atmosphere when burned.

Toxic mercury can contribute to atmospheric warming, which is caused by greenhouse gases trapping heat within the Earth's atmosphere. Mercury is a potent greenhouse gas, and its release into the atmosphere can exacerbate global warming, leading to increased temperatures and climate change.

Furthermore, atmospheric warming can have significant impacts on the environment, including the melting of polar ice caps and rising sea levels, which can lead to the displacement of millions of people and the destruction of coastal ecosystems.

In conclusion, low-sulfur coal may have some environmental benefits by reducing acid rain and respiratory illnesses, but its high levels of toxic mercury can contribute to atmospheric warming and exacerbate the effects of climate change. It is essential to reduce our reliance on fossil fuels and invest in renewable energy sources to mitigate the negative impacts of burning low-sulfur coal and other fossil fuels on the environment.

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Frost that forms on cold glass is created by the process of:
-sublimation.
-transpiration.
-freezing.
-deposition.

Answers

Frost that forms on cold glass is created by the process of D. Deposition.

Deposition occurs when water vapor in the air comes into contact with a cold surface, such as a glass window, and transforms directly from its gaseous state into solid ice crystals. This change of state skips the liquid phase, meaning that the water vapor does not condense into liquid water before freezing.

Instead, it solidifies directly onto the cold surface as frost. Deposition is the opposite process of sublimation, which involves a substance transitioning directly from a solid to a gas without passing through the liquid phase. In contrast, transpiration is the process by which plants release water vapor into the atmosphere, and freezing is the transition from the liquid phase to the solid phase.

While freezing is involved in the formation of frost, it is not the direct cause, as the water vapor bypasses the liquid state altogether through the deposition. Therefore, the correct option is D.

The question was incomplete, Find the full content below:

Frost that forms on cold glass is created by the process of:

A. sublimation.

B. transpiration.

C. freezing.

D. deposition.

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Calculate the speed of a satellite in a circular orbit near the Earth (just above the atmosphere). If the mass of the satellite is 200kg, what is the minimum energy required to move the satellite from this near-Earth orbit to very far away from the Earth?

Answers

According to the information, the minimum energy required to move the satellite from this near-Earth orbit to very far away from the Earth is approximately 2.52 × 10^9 J.

How to calculate the speed of a satellite in a circular orbit near the Earth?

To calculate the speed of a satellite in a circular orbit near the Earth we can use the following formula:

v = √(GM/r)

where,

v = speed of the satelliteG = gravitational constantM = mass of the Earthr = distance between the center of the Earth and the satellite

Assuming the satellite is in a near-Earth orbit just above the atmosphere, we can take r to be approximately 6,378 km (the radius of the Earth plus the altitude of the orbit). The mass of the satellite is given as 200 kg. So, using the values for G and M, we can calculate the speed of the satellite:

v = √((6.6743 × 10^-11 N m^2/kg^2)(5.9722 × 10^24 kg)/(6,378,000 m + 200 m))v ≈ 7,905 m/s

How to calculate the minimum energy required to move the satellite from this near-Earth orbit to very far away from the Earth?

To calculate the energy required to move the satellite from this near-Earth orbit to very far away from the Earth, we can use the following formula:

ΔE = GMm(1/rf - 1/ri)

where,

ΔE = change in energyG = gravitational constantM = mass of the Earthm = mass of the satelliteri = initial distance from the center of the Earthrf = final distance from the center of the Earth.

Assuming we want to move the satellite to a distance of 10 times the radius of the Earth (i.e., rf = 10 × 6,378 km), we can calculate the minimum energy required:

ΔE = (6.6743 × 10^-11 N m^2/kg^2)(5.9722 × 10^24 kg)(200 kg)(1/(10 × 6,378,000 m) - 1/(6,378,200 m))ΔE ≈ 2.52 × 10^9 J

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What did the Leader say about those who wanted to stop people from coming to the Village? in messenger chapter 6

Answers

The fact that everyone is welcome to visit the community, he informed them, is its finest feature.

In a nutshell, what can you say about messenger?

Teenage Matty, who lives in a utopian village where everyone is welcomed, tells his story in the book. It tells how certain events altered his community and how he endeavored to reverse those impacts. In the first scene of the novel, Matty and his blind adoptive father Seer are cooking over a fire in a simple house.

What does the last person of the messenger look like?

The "man with the cards" is the enigmatic sender of Ed's playing cards with the names of people in need on them. Near the end of the book, the reader learns that his goal was to use Ed as an example to show that anybody, no matter how banal, may reach their full potential in order to help others.

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Compare stages of river with our life

Answers

Rivers and human lives both have various stages, and there are some interesting comparisons we can make between them. Here are a few:

1. The Source and Birth: Every river begins its journey from a source, which could be a spring or a glacier. Similarly, every human life begins with birth, where we take our first breath and start our journey.Childhood and the

2. Upper Course: During the early stages of its journey, a river is typically small and narrow, with shallow waters and a swift current. This stage is called the upper course. In human life, this corresponds to childhood, where we are small and vulnerable, but full of energy and enthusiasm. We are learning and exploring the world around us, just as a river is carving its path through the landscape.

3. Adolescence and the Middle Course: As a river grows and gains momentum, it enters the middle course. Here, the river becomes wider and deeper, with a more moderate current. In human life, this corresponds to adolescence, where we start to mature and gain a deeper understanding of the world around us. We may face challenges and obstacles, but we also have more independence and responsibility.

4. Adulthood and the Lower Course: Finally, the river reaches its lower course, where it is wide, deep, and slow-moving. It may meander through a floodplain or delta before reaching the sea. Similarly, in human life, adulthood is a time of stability and maturity. We have gained experience and wisdom, and we may have achieved our goals and found our place in the world. We may also have a family and a home, just as a river may support a rich ecosystem of plants and animals.

5. Old Age and Death: Just as every river eventually reaches the end of its journey and merges with the sea or evaporates into the atmosphere, every human life comes to an end. Old age is a time of reflection and slowing down, where we may look back on our life's journey and take stock of our accomplishments and regrets.

In summary, rivers and human lives both have stages of growth, change, and maturity. By comparing the stages of a river to the stages of human life, we can gain a deeper understanding of the passage of time and the natural cycles of growth and decay.

what are some similarities between the western Europe cultures?

Answers

Similarities: societal standards, belief systems, political views

Question 10 of 10
The constant air pressure needed to play the hydraulis was supplied by a
Answer here
SUBMIT

Answers

The constant air pressure needed to play the hydraulis was supplied by a water reservoir and airtight container.

How was the constant air pressure supplied to play the hydraulis?

The hydraulis, an ancient musical instrument similar to an organ, operated by using a water reservoir and an airtight container to create constant air pressure. The water reservoir acted as a source of air pressure, which was directed into the airtight container through pipes or channels.

As the musician played the hydraulis, air was forced through the pipes by the water pressure, producing sound when it passed through the instrument's pipes and out of its various stops or openings. This constant air pressure system allowed for sustained and controlled notes to be played on the hydraulis, creating a unique and captivating musical experience.

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What does HDI stand for?

Answers

Answer:

Human Development Index

its the country by country outlook over the the last three decades.

What was the Trade Mart? How had it seemed to change? in messenger chapter 6

Answers

The Trade Mart was a place in the village where the people gathered to trade goods and conduct business. It had changed since the previous year, becoming less lively and more subdued.

What is Trade Mart?

In Chapter 6 of the book "Messenger" by Lois Lowry, it is mentioned that the Trade Mart was a hub of activity in the village where people from different communities came together to trade goods and conduct business. However, the narrator observes that the Trade Mart had changed since the previous year, becoming less lively and more subdued. The reason for this change is not explicitly stated, but it is implied that the difficult times and increased fears and uncertainties in the village have affected the people's willingness and ability to engage in trade and commerce.

What are communities?

Communities are groups of people who share common characteristics, interests, or goals and interact with each other in various ways, such as through communication, socialization, or collaboration. Communities can exist in different forms, including physical communities based on geographic proximity, virtual communities based on online interactions, or communities of practice based on shared professional or knowledge-related interests.

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what are the two greenhouse gases most responsible for absorbing infrared light in earth's atmosphere

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The two greenhouse gases most responsible for absorbing infrared (IR) light in Earth's atmosphere are carbon dioxide (CO2) and water vapor (H2O).

Both of these gases have molecules with bonds that may vibrate at infrared wavelengths, allowing them to absorb and re-emit infrared radiation released by the Earth's surface.

This mechanism captures part of the heat that would otherwise be emitted back into space, causing the temperature of the Earth's atmosphere to rise.

While other greenhouse gases, such as methane and nitrous oxide, exist, CO2 and H2O are the most prevalent and have the largest impact on global warming.

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valles marineris is a wide, deep network of chasms stretching for some 2500 miles on the surface of mars. how do we believe such a big set of canyons formed originally? a. it was scoured out of the martian sands by the action of the regular dust storms b. it was caused by tectonic pressures from deep within the planet c. it was produced suddenly by flooding water some four billion years ago d. the canyons were places the ancient martians used for drag racing e. it was made by hundreds of impacts from space billions of years ago

Answers

Although space impacts may have helped to shape the Martian topography, they are not thought to be the main reason for Valles Marineris.

Valles Marineris is a massive system of canyons stretching for about 2500 miles on the surface of Mars. Scientists believe that it was formed by tectonic pressures from deep within the planet. It is thought that as the planet cooled and contracted, the crust cracked and moved, resulting in the formation of this huge canyon system. While there is evidence of water on Mars, it is unlikely that flooding water would have created such a wide and deep network of chasms. It is also unlikely that regular dust storms or drag racing by ancient Martians would have been responsible for the formation of Valles Marineris. While impacts from space may have contributed to shaping the Martian landscape, they are not believed to be the primary cause of Valles Marineris.

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Which type of fog occurs during nights when skies are clear and relative humidity is high?
-radiation fog
-advection fog
-evaporation fog
-steam fog

Answers

The type of fog that occurs during nights when skies are clear and relative humidity is high is called radiation fog.

Radiation fog is the kind of fog that develops at night when the sky is clear and the relative humidity is high. When the earth rapidly loses heat after sunset, the air above it cools below the dew point, when water vapour condenses into small water droplets, producing this sort of fog.

Radiation fog can be highly dense, resulting in visibility of less than a quarter mile, and generally develops in valleys and low-lying places. After daybreak, it normally disappears as the sun warms the earth and the air above it.

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the area on a radar image that appears as a void where the warm air flows into the storm), is called the:

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The area on a radar image that appears as a void where the warm air flows into the storm is called the eye of the storm.

The eye of the storm is a region in the center of a tropical cyclone or hurricane where the weather is relatively calm and clear. On a radar image, it appears as a void or hole in the middle of the storm. This area is surrounded by the eyewall, which is a ring of intense thunderstorms that produce the most severe weather conditions, including high winds, heavy rainfall, and storm surges. The eye of the storm is formed by warm air flowing into the center of the storm and rising upwards, which creates a low-pressure zone. This low-pressure zone causes the air to spiral around the center of the storm, producing the characteristic circular shape. While the eye of the storm is relatively calm, it can be dangerous for ships or aircraft that attempt to pass through it, as they may encounter sudden changes in wind and weather conditions.

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Two groups of runners leave the same locker room heading in opposite directions. Group A runs 4.6 miles due east, then turns 40º toward north and runs 2.1 miles. Group B runs 4.6 miles due west, then turns 50º toward south and runs 2.1 miles. Which group is farther from the locker room?Because , is farther away from the locker room by the .

Answers

Using law of cosines, the group that is farther from the locker room is; Group B

How to use Law of Cosines?

The law of cosines gives that;

c² = a² + b² - 2ab cos C

Now, for group A, we can use law of cosine to find their current distance from the locker room as;

a² = 4.6² + 2.1² - 2(4.6*2.1)*cos 40°

a² = 21.16 + 4.41 - 14.8

a = √10.77

a = 3.28 miles

Similarly, for Group B, we have;

b² = 4.6² + 2.1² - 2(4.6*2.1)*cos 50°

b² = 21.16 + 4.41 - 12.42

b = √13.15

b = 3.63 miles

This means that group B is farther from the locker room

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Question 24
The type of sanitary landfill that should be developed on essentially flat land sited in dry areas is:
a. depression landfills
b. area landfills
c. progressive excavation landfills
d. cut and cover landfills

Answers

The type of sanitary landfill that should be developed on essentially flat land sited in dry areas is: area landfills. Therefore the correct option is option B.

Area landfills are the best type of dump for flat land areas in dry regions since they are built on the ground surface rather than underground. They can hold a huge amount of rubbish and their flat form offers waste disposal vehicles easy access.

To prevent leachate from contaminating groundwater, area landfills are often sealed with an impermeable barrier and covered with soil or other materials to control odour and decrease the potential for litter and vermin.

Depression landfills are built in a naturally occurring depression or excavated pit and are not suited for flat land locations because they require the excavation of the ground or a naturally occurring depression. Therefore the correct option is option B.

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sea level rose 1 foot in the 20th century. it is expected to rise again by __________ in the 21st century

Answers

Answer:

2 feet (unless action is taken)

how do jetties protect inlets along the shoreline? question 3 options: a) they cause the channel to deepen so dredging is not needed b) they protect against excessive wave action c) they allow sediment to flow in and refill previously eroded areas d) they block the longshore transport

Answers

Jetties protect inlets along the shoreline by blocking the longshore transport. Jetties are long, narrow structures that are built perpendicular to the shoreline.

They are constructed using rocks, concrete, or other materials and are designed to create a barrier that blocks the longshore transport of sediment along the beach. When waves approach the beach, they carry sediment with them in a process known as longshore drift. This process can cause erosion of the beach and create a buildup of sediment in the inlet, which can lead to shoaling and difficulties for boats to navigate the area.
By blocking the longshore transport, jetties help to maintain the natural flow of sediment along the beach and into the inlet. This prevents the buildup of sediment in the inlet and helps to keep the channel open for boats to navigate. Additionally, jetties can protect against excessive wave action by reducing the size and force of waves entering the inlet.

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chinook winds form group of answer choicesa. in tropical rainforests b on the leeward c side of the mountains d on the windward e side of mountains

Answers

Chinook winds typically form on the leeward side of the mountains. Chinook winds, also known as "foehn winds," are warm, dry winds that occur on the leeward side of mountain ranges.

When moist air is forced to rise over a mountain range, it cools and loses its , producing precipitation on the windward side of the mountains. The dry, cool air that descends on the leeward side of the mountains, however, is warmed by adiabatic compression as it descends, which can cause it to warm significantly and produce a chinook wind. Chinook winds are most common in the winter months and can cause rapid melting of snow and ice, leading to localized flooding and ice jamming in rivers. They are also associated with temperature fluctuations, with temperatures rising rapidly as the warm, dry air descends on the leeward side of the mountains. Chinook winds are most commonly observed in the western United States and Canada, but they can occur in other mountainous regions around the world.

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How many address fields does an 802.11 header have?
1
2
3
4

Answers

An 802.11 headers have 4 address fields. Therefore the correct option is option D.

A Wi-Fi wireless communication 802.11 header contains four address fields:

Receiver Address (RA): The MAC address of the receiving device is stored in this field.Transmitter Address (TA): The MAC address of the transmitting device is stored in this field.Source Address (SA): This field contains the MAC address of the frame's original sender.Destination Address (DA): This field includes the MAC address of the frame's intended recipient.

These four address fields are used to identify and direct Wi-Fi frame transmission within a wireless network. Therefore the correct option is option D.

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6) Sediments produced by plants and animals in the sea are called ________. A) cosmogenous
B) terrigenous
C) volcanogenic
D) hydrogenous E) biogenous

Answers

Sediments produced by plants and animals in the sea are called biogenous. Option E is the correct answer.

Sediments that are biogenous were formed from the skeletal remains of living things. A vast range of particles, including tiny creatures' shells, coral fragments, sea urchin spines, and bits of mollusk shells, make up these hard components. Option E is the correct answer.

The most significant sort of biogenous sediment is derived from testing of tiny one-celled algae and protozoans that are present in ocean surface waters. The sediment is referred to as an ooze when these tests account for more than 30% of the sediment's particles. The places under open water where nutrients are accessible to boost productivity are where oozes are most common. Oozes build up in these places on average at a pace of 1 centimeter per 1000 years. On the continental edges, where lithogenous sediments predominate, oozes are typically absent. Option E is the correct answer.

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according to anthropologist laura ogden, the major environmental problem in the everglades is rising ocean levels. true or false

Answers

False. According to Laura Ogden, an anthropologist who has studied the Everglades, the major environmental problem in the Everglades is not rising ocean levels, but rather the loss and degradation of freshwater habitats.

The Everglades is a unique wetland ecosystem in southern Florida that is home to a diverse array of plant and animal species, many of which are threatened or endangered.Historically, the Everglades was fed by a slow-moving sheet of freshwater that flowed south from Lake Okeechobee through the River of Grass, a shallow, slow-moving river that spanned the width of the Everglades. However, decades of human intervention, including water diversion and land development, have significantly altered the natural flow of water in the Everglades, causing widespread habitat loss and degradation.While rising ocean levels are a concern for low-lying areas in southern Florida, including the Everglades, they are not the primary environmental problem facing the region.

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how can a rock or sediment have high porosity but low permeability? a. a. if the pore spaces consist only of straight channel b. if the pore spaces are filled with sediment c. if the pore spaces are very large d. if the pore spaces are not well connected to each other

Answers

Answer:

A rock or sediment can have high porosity but low permeability if the pore spaces are not well connected to each other. Porosity refers to the percentage of void space within the rock or sediment, while permeability refers to how easily fluids can flow through it. If the pore spaces are large but not connected to each other, fluids will not be able to flow through the rock or sediment efficiently, resulting in low permeability despite high porosity.

The cloud form that is best described as sheets or layers that cover much or all of the sky is termed:
-cumulus.
-alto.
-mackerel sky.
-stratus.
-cirrus.

Answers

The cloud form that is best described as sheets or layers that cover much or all of the sky is termed "stratus".

Stratus clouds are low-level clouds that often appear as a uniform gray layer that can cover much of the sky.

They are typically found at altitudes up to around 6,500 feet (2,000 meters) and are often associated with overcast or rainy weather. Cumulus clouds are puffy and usually found at lower altitudes, while alto clouds are mid-level clouds and cirrus clouds are high-level clouds with a thin, wispy appearance.

Mackerel sky refers to a specific type of cloud formation that resembles the scales on a fish, which can occur in various types of clouds.

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The Leading Cause Of Excess Nutrients In Water Is A.) Industrial Facilities B.) Oil Spills C.) Agriculture Activities D.) Mining Activities E.) Desalinization

Answers

Answer:

Explanation:

C.) Agriculture Activities are the leading cause of excess nutrients in water.

What are the 3 types of plate tectonic boundaries? Question 2 options: a. convergent, divergent, transform b. submerging, collapsing, transfiguring c. connecting, division, vertical thrusting d. changing, nonchanging, alternating

Answers

The 3 types of plate tectonic boundaries are convergent, divergent, and transform. The correct option is a.

Convergent boundary: a region where two tectonic plates are moving in the same direction and could collide or subduct beneath one another.

Divergent boundary: when two tectonic plates split from one another, new crust is formed through volcanic activity, and a rift valley is formed.

Transform boundary: This is the point at which two tectonic plates pass one another horizontally and release energy that may result in an earthquake.

Major  earth landforms are formed as a result of the underground movements of the Earth, according to the scientific theory of plate tectonics. They are resting on the mantle, a massive layer of hot,  which is floating above the planet. The correct option is a.

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What would happen to the oceans if surface runoff and groundwater flow were reduced (for example, by the growth of ice sheets during an ice age)?
-The oceans would become bigger.
-The oceans would stay the same size.
-The oceans would become smaller.

Answers

If surface runoff and groundwater flow were reduced due to the growth of ice sheets during an ice age, C. the oceans would become smaller.

This reduction would result from the increased accumulation of water in the form of ice, leading to a decline in the amount of water available to replenish the oceans. Additionally, the expansion of ice sheets would trap more water on land, further decreasing the volume of water reaching the oceans.

With less surface runoff and groundwater flow, the overall global water cycle would be affected. The reduced input of freshwater into the oceans would likely lead to changes in ocean currents, salinity, and the marine ecosystem. Ocean currents, which play a vital role in distributing heat and nutrients across the planet, could become disrupted, leading to further climatic changes and potentially impacting the global climate system. Moreover, the decrease in the volume of the oceans would result in lower sea levels, which could affect coastal ecosystems and the distribution of landmasses.

In summary, a reduction in surface runoff and groundwater flow due to the growth of ice sheets during an ice age would lead to smaller oceans, influencing various aspects of the global environment, such as ocean currents, sea levels, and marine ecosystems. Therefore, the correct option is C.

The question was incomplete, Find the full content below:

What would happen to the oceans if surface runoff and groundwater flow were reduced (for example, by the growth of ice sheets during an ice age)?

A. The oceans would become bigger.

B. The oceans would stay the same size.

C. The oceans would become smaller.

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Numerical age dates based in radioactivity are very important for studying Precambrian geologic history because fossils are rare or absent.A. TrueB. False

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A. True Numerical age dates based on radioactivity are very important for studying Precambrian geologic history because fossils are rare or absent. This method helps scientists to determine the age of rocks and understand the development of Earth's early history.

The Precambrian is a geologic eon that spans from the formation of the Earth about 4.6 billion years ago until the beginning of the Phanerozoic eon, which started about 541 million years ago. It is the longest eon in Earth's history, lasting for over 4 billion years, and it is divided into several different time periods. The Precambrian was marked by significant geological events, such as the formation of the Earth's crust and the evolution of life on Earth, including the development of photosynthesis and the emergence of eukaryotic cells. The Precambrian is also characterized by the formation of the first continents and the development of complex mineral deposits.

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The use of land for new construction within an already built up area refers to
a) urban infill.
b) urban reuse.
c) urban zoning.
d) urban replication.

Answers

Answer:

The answer is (a) urban infill.

Explanation:

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