The statement, Georgia is located between 3021' and 35 North Latitude and between 8050' and 8036' West Longitude is an example of what type of location

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Answer 1

The statement, Georgia is located between 30 degree21' and 35 North Latitude and between 80 degree 50' and 80 degree36' West Longitude is an example of absolute location.

The actual geographic coordinates of a place, usually given in terms of latitude and longitude, are referred to as its absolute location. In this instance, the claim gives precise latitude and longitude coordinates that locate Georgia's location on the globe. Absolute location can be used to pinpoint a specific location on the surface of the Earth and is helpful for navigation and mapping.

The exact location of a place on Earth is known as its absolute location, which is commonly expressed in terms of latitude and longitude.

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Related Questions

What are four changes the mongol invasion brought to Russia?

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Four changes brought by the Mongol invasion of Russia were :

Political controlEconomic impact Cultural exchange Military impact

How did the Mongol invasion affect Russia ?

In the 13th century, vast parts of Russia fell under Mongol control following their conquest. The aftermath was felt in the Russian economy, which experienced disruption as a result. The imposition by the Mongols of onerous taxes triggered a decline in both agriculture and trade.

As an empire fusing various cultures, the occasion presented the opportunity for a significant cultural exchange between Russians and Mongols. In observance, the Russians adopted skills such as cavalry warfare and the deployment of composite bows used by their conquerors. This adaption had immense importance over their military tactics and served to ensconce their own formidable influence.

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bruno latour recommends that we focus on which part of our environment? group of answer choices oceans, rivers, streams, and waterbeds. the area several miles above and below earth's surface. the atmosphere. animal behavior.

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Popular sociologist and science philosopher Bruno Latour is renowned for his writings on how people interact with their surroundings.

Bruno Latour might emphasise the interconnectivity of different factors in our environment rather than focusing on one particular feature, however I am not aware of any specific advice he has made. This is based on his general viewpoints.

The idea of "actor-network theory," which emphasises the agency and interconnections of both human and non-human actors in influencing social and environmental systems, is a recurring theme in Latour's work.

He would probably advocate for taking into account the connections and networks that exist between people, other non-human animals, and the environment as a whole.

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the visible light we see from the sun comes from which part

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The visible light that we see from the Sun comes from its outermost layer, called the photosphere.

From which part comes the visible light?

The photosphere is the visible surface of the Sun that emits light and heat due to the high temperatures and pressures in this region.

It has an average temperature of about 5,500 degrees Celsius (9,932 degrees Fahrenheit) and emits a wide spectrum of light, including visible light.

The visible light from the Sun consists of various colors, which, when combined, appear as white light to our eyes. This is the light that we perceive as sunlight and is responsible for illuminating our surroundings during the day.

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What percentage of Earth's freshwater is accessible in surface rivers and lakes?
a) 1%
b) 10%
c) 30%
d) 70%
e) 97%

Answers

only about 0.3% of earths freshwater is found in the surface water of lakes and rivers.

Since gaining independence in 1960, which conditions have been most common in the Democratic Republic of the Congo?
A. civil wars and dictatorship
B. democracy and poverty
C. democracy and economic prosperity
D. dictatorship and European control

Answers

Since gaining independence in 1960, the Democratic Republic of the Congo has encountered

A. civil wars and dictatorship

Affairs of Democratic Republic of the Congo

Indeed, the country has confronted irregularities, battles, and ferociousness that have occasioned numerous fatalities and relocation of people. Patrice Lumumba, the first Congolese Prime Minister, was overthrown and barbarously suppressed merely months after the nation's freedom. Afterward, the nation faced decades of domination with Mobutu Sese Seko ruler for an extended span.

Moreover, even with Mobutu's abolishment, the nation has still not enjoyed stable authority with plentiful insurgent groups warring for power of geographical area and natural resources. In spite of its well-heeled mineral prosperity, the nation continues to be one of the most destitute of nations on earth plagued by destitution and dissimilarity throughout the country.

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Which planets are found in the Sun's habitable zone?

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Earth is the only planet found in the habitable zone of the Sun.

A habitable zone is a region around a star where liquid water can exist on the surface of a planet. This region is neither too hot nor too cold.  Earth is the only planet, out of all the planets of our solar system, which is found in the Sun's habitable zone. It is because Earth has liquid water on its surface and it is capable of supporting life.

Mercury and Venus cannot bear liquid water as they are too close to the Sun. Therefore, they are not in the Sun's habitable zone. Mars is too far from the Sun to be in the habitable zone. Earth is at the right distance from the Sun. It is far enough from the Sun which doesn't let all our water boil away, but close enough to it so that it doesn't freeze.

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The defining characteristic of potable water is that ita. can be consumed without risk of harm. b. Potable water is of a sufficiently high quality and purity that it lacks pathogens or contaminants that might otherwise pose a hazard to humans.

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The defining characteristic of potable water is that it Potable water is of a sufficiently high quality and purity that it lacks pathogens or contaminants that might otherwise pose a hazard to humans. Therefore the correct option is option B.

While it is true that potable water is safe to drink, this is due to the fact that it is free of hazardous bacteria and pollutants.

Potable water is safe to drink and meets the minimal quality criteria established by regulatory authorities such as the World Health Organisation to protect the public's health and well-being. Therefore the correct option is option B.

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Assuming that current trends continue, predict how the age structure of Canada in 2030 will likely differ from that in 2010.

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According to the latest available data, the age structure of Canada in 2010 was characterized by a relatively large proportion of people in the age range of 15 to 64, which constituted about 68.5% of the population, while those aged 65 and over represented 14.9%, and those under 15 years old represented 16.6% of the population.

Assuming current trends continue, Canada's population is expected to age further by 2030, meaning that the proportion of people aged 65 and over is likely to increase significantly, while the proportion of those in the age range of 15 to 64 will likely decrease slightly.

By 2030, it is estimated that the proportion of Canadians aged 65 and over will reach approximately 22% of the total population, while the proportion of those in the age range of 15 to 64 is expected to drop to around 63%. The proportion of those under 15 is also projected to decline slightly to around 15%.

How do Randy's jokes help build up Andre's confidence

Answers

They Build up by giving him more character on his self. A different point of view from others than his self

the thermocline or area of rapid temperature change in the ocean is important because ________.

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The thermocline or area of rapid temperature change in the ocean is important because it plays a crucial role in the oceanic circulation, which is an essential component of the Earth's climate system.

The thermocline is a layer in the ocean where the temperature decreases rapidly with depth, creating a barrier between the warmer surface water and the colder deep water. This boundary layer can act as a barrier to mixing between the two layers, which can have significant impacts on ocean currents and the exchange of heat and nutrients between the ocean and the atmosphere.The thermocline also influences the distribution of marine life in the ocean. Many species of marine organisms are adapted to specific temperature ranges, and the thermocline can create distinct habitats for different species at different depths.

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The thermocline in the ocean is an important factor because it marks a zone of rapid temperature change that is critical to the health and wellbeing of marine life.

This zone separates the upper layer of warm water from the colder, deeper waters below.

The temperature gradient at the thermocline can be quite steep, with changes in temperature occurring rapidly over a relatively small depth range. The importance of the thermocline lies in its impact on ocean currents and the distribution of nutrients in the water. The movement of water across the thermocline helps to create and maintain ocean currents, which play a crucial role in regulating the Earth's climate. The nutrient-rich waters that are found below the thermocline are essential for the growth and survival of marine life, including plankton and fish, which form the base of the ocean's food chain.

Changes in the temperature and location of the thermocline can have a significant impact on ocean ecosystems. For example, as temperatures in the ocean rise due to climate change, the thermocline may move further down, which could lead to changes in the distribution of nutrients and the movement of marine species. It is therefore essential to monitor and study the thermocline to understand how it may be changing and to develop strategies to protect and preserve ocean ecosystems in the face of these changes.

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Suppose you have a strong peak at 2530 cm^-1. What is the wavelength of the radiation that was absorbed?

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The wavelength of the radiation that was absorbed is approximately 1.19 micrometers (µm).

To calculate the wavelength of the radiation that was absorbed, we can use the following equation:

wavelength = speed of light / frequency

where the frequency is given by:

frequency = wave number x speed of light

The wave number is the reciprocal of the wavelength, expressed in inverse centimeters (cm^-1).

Therefore, to find the wavelength of the radiation that was absorbed, we need to convert the wave number to frequency, and then use that frequency to calculate the wavelength.

Given a strong peak at 2530 cm^-1, the corresponding frequency can be calculated as:

frequency = 2530 cm^-1 x (speed of light) = 2.53 x 10^14 Hz

Using this frequency, we can now calculate the wavelength of the radiation as:

wavelength = speed of light / frequency = 2.998 x 10^8 m/s / 2.53 x 10^14 Hz = 1.19 x 10^-6 meters

Therefore, the wavelength of the radiation that was absorbed is approximately 1.19 micrometers (µm).

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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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What is the southeast asian city model trying to explain?

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Answer:

Explanation:

I don't know you tell ME.

In Civil Cases, the party that files a lawsuit is called what...

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In Civil Cases, the party that files a lawsuit is called the plaintiff.

The party who starts the legal action by submitting a complaint or petition to the court is known as the plaintiff. The plaintiff's claim or cause of action against the defendant is typically set forth in the complaint or petition, along with relevant facts and the claim's legal foundation.

Following the filing of the complaint or petition, the defendant is given the chance to respond to the allegations by being served with a copy of the document. Depending on the specifics of the case, the civil litigation process may include a number of pre-trial motions, discovery, as well as a trial in front of a judge or jury.

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astronomers originally found the existence of spiral arms in galaxies difficult to account for because

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Astronomers originally found the existence of spiral arms in galaxies difficult to account for because they couldn't explain how these long, curving structures could maintain their shape over such vast distances and over such long periods of time.

However, with the development of better telescopes and new techniques for studying galaxies, scientists have been able to observe the motions of stars and gas within these structures, which has helped them to better understand how they form and evolve over time. Today, we know that spiral arms are caused by a combination of gravitational forces and the rotation of the galaxy itself, and they play an important role in shaping the overall structure and dynamics of galaxies.

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Groundwater accounts for what percentage of Earth's freshwater?
a) 3%
b) 20%
c) 30%
d) 75%
e) 97%

Answers

C, 30% of freshwater is groundwater

Groundwater ______ are taken from wells by geologists to analyze for hazardous chemicals and microbes.

Answers

Groundwater samples are taken from wells by geologists to analyze for hazardous chemicals and microbes.

Groundwater is the water that seeps into the soil and rocks beneath the Earth's surface, and it is an essential resource for drinking, irrigation, and industrial purposes.

However, groundwater can become contaminated by human activities, such as industrial activities, agricultural practices, and wastewater disposal.

Geologists take groundwater samples from wells to analyze for hazardous chemicals and microbes, including heavy metals, pesticides, fertilizers, and bacteria.

They use various methods, such as laboratory analysis, field measurements, and modeling, to identify and quantify the contaminants in the groundwater.

The results of the groundwater analysis help to determine the potential risks to human health and the environment, as well as to develop appropriate remediation strategies.

Geologists also monitor the quality and quantity of groundwater over time to assess the impact of human activities on the groundwater resources.

This information is essential for the sustainable management of groundwater resources, which is crucial for the long-term availability of clean drinking water and the protection of the environment.

In conclusion, groundwater sampling and analysis play a vital role in the protection and management of groundwater resources.

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a pater noster lake is the name for a glacier-cut valley partly flooded by the sea. T/F

Answers

False.

A "pater noster lake" is actually a term used to describe a chain of small lakes or ponds in a glacial valley. It is not related to a valley that is partly flooded by the sea.

A pater noster lake is a series of small, interconnected lakes or ponds found in a glacial valley. The name "pater noster" comes from the Latin phrase for "Our Father," and refers to the way the lakes resemble a string of rosary beads. Pater noster lakes are formed when a glacier retreats and leaves behind depressions in the landscape. Over time, these depressions fill with water from melting snow and ice, forming a chain of small lakes or ponds. The lakes are typically connected by small streams or channels, and they often have a distinctive oval or circular shape. Pater noster lakes can be found in many parts of the world, including Europe, North America, and Asia. They are often surrounded by steep, rocky cliffs and are home to a variety of plant and animal life.

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The given statement "A pater noster lake is indeed the name given to a glacier-cut valley that has been partially flooded by the sea" is true.

This type of lake is characterized by a series of interconnected basins that are linked together by narrow channels or outlets. The name "pater noster" comes from the Latin phrase for "our father" and is thought to refer to the shape of the interconnected basins, which resemble the beads of a rosary. These lakes are formed by the movement of glaciers, which carve out deep valleys in the landscape. As the glaciers retreat, sea levels rise and fill the lower parts of the valleys with seawater. The resulting landscape is a unique blend of mountains, valleys, and coastal features, with a rich variety of plant and animal life.

Pater noster lakes are found in many parts of the world, including Norway, Canada, Greenland, and New Zealand. They are often popular tourist destinations, as they offer a glimpse into a unique and beautiful landscape that is shaped by the forces of nature. In addition, they are important habitats for a wide range of plant and animal species, many of which are unique to these environments.

Overall, the pater noster lake is a fascinating and beautiful natural phenomenon that showcases the power and beauty of the natural world. Whether you are a scientist, a nature lover, or simply someone who appreciates the beauty of the natural world, these lakes are definitely worth exploring.

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Which may be said about the geologic history of east and southeast North America?

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The Southeastern United States geologic history is a tale of active mountain formation as well as the more sedate processes of weathering, erosion, and sediment deposition.

Precambrian gneisses from Roan Mountain, which straddles the boundary between North Carolina and Tennessee, are the oldest rocks seen in the Southeast.

These rocks are older than 1.8 billion years, according to dating. Later, they underwent metamorphosis (transformation) during the Grenville Orogeny, a significant period of mountain formation.

Along the eastern and southern edges of the North American Craton, the Grenville Orogen formed during the Proterozoic. Peripheral orogenic bands on the continent were born near plate boundaries. In the east, they are Paleozoic (542 to 251 million years ago), while in the west, they are Mesozoic to Cenozoic (252.2 million years ago to the present).

The North American plate, which stretches from the mid-Atlantic ridge to the West Coast, passes through the Southeast, which is near the edge of the continent but in the heart of it.

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An important programme was to be broadcast from Mumbai at 7:30 p.m. This was heard by
some Indian sailors near Ivory Coast in West Africa at 20°W longitude. What was the local time
there?

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Assuming both places are in the same time zone, the local time in Ivory Coast when the program was broadcast at 7:30 p.m. in Mumbai would be roughly 1:11 a.m. the following day (7:30 p.m. + 17.81 hours). Ivory Coast and India, however, are in various time zones, which is something to keep in mind.

The president of the Ivory Coast is bestowed with significant executive authority. It was a major economic force in West Africa during the 1960s and 1970s thanks to the production of coffee and cocoa,

but the 1980s saw an economic crisis that contributed to a period of political and social unrest that lasted until 2011. Since the restoration of peace and political stability time zones in Ivory Coast in 2011, the economy has grown rapidly once more. from 2012 until 2021

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What are 3 key greenhouse gases and how do they differ in atmospheric lifetimes and warming potentials?

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The three key greenhouse gases are carbon dioxide (CO2), methane (CH4), and nitrous oxide (N2O).

Carbon dioxide is the most common greenhouse gas in the atmosphere and has the longest atmospheric lifetime of the three, lasting from decades to centuries.

Methane has a far shorter atmospheric lifetime than carbon dioxide, lasting about a decade, but it has a much larger warming potential, with a GWP of roughly 28-36 over a 100-year time horizon.

Nitrous oxide has an atmospheric lifespan of about 114 years and a GWP of about 265-298 over a 100-year time horizon.

Efforts to reduce greenhouse gas emissions from all sources, including CO2, CH4, and N2O, are essential to limit the negative impacts of climate change on the planet.

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10) Sediments produced because of chemical reactions in seawater are called ________. A) biogenous
B) cosmogenous
C) lithogenous
D) hydrogenous E) volcanogenic

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Sediments produced because of chemical reactions in seawater are called hydrogenous. Option D is the correct answer.

Chemical processes in saltwater produce hydrogenous sediments. In saltwater, dissolved compounds can precipitate under specific chemical circumstances. Economic value exists in a variety of hydrogenous sediment types. Gypsum and halite are the two most prevalent forms of evaporating substances. Gypsum, which is hydrous calcium sulfate, is mined all over the world and used to create cement, plaster, and fertilizer. Sodium chloride, or halite, is regular table salt. Option D is the correct answer.

Evaporites, or any sediment that results from the evaporation of seawater, are considered to be hydrogenous deposits. The ions left behind after saltwater evaporates may become so concentrated that they will combine to form crystals when they precipitate. Option D is the correct answer.

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Why were Ramon and Matty so excited about the newcomers arriving at the Village? in messenger chapter 6

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Ramon and Matty were excited about the newcomers arriving at the Village because they were hoping to see Kira among them. They missed Kira and were eager to find out if she had arrived at the Village.

What are newcomers ?

Newcomers are individuals or groups of people who are new to a particular place or community. They may have recently moved to the area, or they may be visiting temporarily. Newcomers can be from different backgrounds, cultures, or countries and may have different skills, experiences, and perspectives. The term "newcomers" is often used in the context of a community or neighborhood, where the arrival of new residents is seen as a significant event. It is not necessarily a negative or positive term, but simply refers to people who are new to the area.

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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:

which statement explains how nutrient-rich runoff can cause waters to become so hypoxic as to lead to major fish kills?

Answers

When nutrient-rich runoff enters a body of water, it can lead to a process called eutrophication. Eutrophication is the process by which excess nutrients, particularly nitrogen and phosphorus,

stimulate excessive plant and algae growth in water bodies. As these organisms die and decompose, they consume oxygen from the surrounding water, leading to a decrease in dissolved oxygen levels.This decrease in dissolved oxygen can create hypoxic conditions in the water, which can be harmful to fish and other aquatic organisms. Fish require oxygen to survive, and when the levels of dissolved oxygen in the water become too low, fish may suffocate and die in large numbers, leading to major fish kills.Additionally, the decomposition of dead organisms can produce toxic byproducts, such as hydrogen sulfide, that further exacerbate the hypoxic conditions and harm aquatic life.

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Nutrient-rich runoff can cause waters to become so hypoxic as to lead to major fish kills due to the process of eutrophication.

Eutrophication occurs when excess nutrients, primarily nitrogen and phosphorus, enter a body of water, leading to an overgrowth of algae and other aquatic plants. As these organisms die, they sink to the bottom and are decomposed by bacteria, which consumes the oxygen in the water. This depletion of oxygen in the water can create a hypoxic or anoxic environment, making it difficult for fish and other aquatic life to survive. The high levels of nutrients in the runoff often come from agricultural practices, such as the use of fertilizers and animal waste, as well as from urban development, such as stormwater runoff from roads and parking lots. When these nutrients enter the water, they stimulate the growth of algae and other aquatic plants, leading to an increase in organic matter and decomposition.

As the oxygen in the water is consumed by bacteria, fish and other aquatic life can suffocate and die. The severity of the fish kill depends on the size of the affected area and the level of oxygen depletion. In extreme cases, entire ecosystems can be damaged or destroyed. In conclusion, the excess nutrients in runoff can lead to eutrophication, which can result in hypoxic conditions and major fish kills. This highlights the importance of managing runoff to prevent the introduction of excess nutrients into our waterways.

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Folding can make a local mountain by _______.

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Folding can make a local mountain by the horizontal compression of two or more layers of rock lying in the plate boundary. This usually leads to the formation of Fold Mountains at the point of convergence of the two plates through a process called Orogeny.

The process of folding occurs when two or more tectonic plates are continuously pushing against each other resulting in the formation of an enormous amount of force leading to the bending of rock layers instead of breaking. At a point when the strain becomes unmanageable, the layers of rock in the heavier plate get subducted and the layers of rock on the lighter plate thrust upwards resulting in fold mountains.  

These mountains can reach incredible heights (e.g. the Himalayas) but at the same time, they are very much prone to various man-made disasters and natural disasters like earthquakes and landslides. This is attributed to the fact that they are very unstable geologically.

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as of 2008, most known extrasolar planets have been discovered by ________.

Answers

NASA. To be more specific, NASA’s Kepler space telescope

Rank, in order, the evolution of a continental hot spot. Put the first step on top

Answers

The evolution of a continental hot spot can be ranked in the following order, starting with the first step on top:  mantle plume, magma chamber, Eruptions and volcanic.

A plume of mantle material rises from the mantle into the continental lithosphere, causing localised melting.

The resulting magma begins to ascend to the surface, eventually gathering in a magma chamber beneath the crust.Eruptions occur, resulting in the formation of a volcanic centre on the continent. A volcanic structure, such as a shield volcano or a stratovolcano, may form over time.As the continental plate moves over the stationary hot point, continued activity results in a series of volcanoes.The hot spot activity eventually fades as the mantle plume becomes more dispersed and the volcanic activity terminates.

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What has the world done to reduce threat of ozone depletion in stratosphere?

Answers

The world has taken several steps to reduce the threat of ozone depletion in the stratosphere. Here are some of the key actions: Montreal Protocol, Alternative technologies, Stricter regulations and Public awareness.

Here are some of the most important actions:

The Montreal Protocol was signed in 1987 by governments all over the world, and it committed them to phase out the production and consumption of ozone-depleting substances (ODSs) such chlorofluorocarbons (CFCs) and halons. Alternative technologies: As ODSs were phased down, alternative technologies that did not employ ODSs were developed and used. Stronger regulations: Many governments have imposed stronger restrictions on the use and manufacture of ODSs and other ozone-depleting compounds. Public awareness initiatives have assisted in educating people about the dangers of ozone depletion and the significance of minimising ODS use.

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Question 67
One of the most common reasons for the contamination of wells drilled through rock, clay or hardpan is
a. Seepage of pollution through the soil
b. Failure to seal well casing properly
c. Porosity of the rock
d. Use of inferior quality well casings

Answers

One of the most common reasons for the contamination of wells drilled through rock, clay or hardpan is Failure to seal well casing properly. The correct option is b.

It's essential to correctly seal the well casing after drilling to prevent tainting the water supply. A pipe known as a well casing is inserted into the hole to prevent the sides of the bore hole from collapsing while still allowing water to flow into the well.

Inadequate well casing sealing can allow soil or rock contaminants to seep into the well, contaminating the water source.

However, one of the most common causes is improper well casing sealing. Other potential causes of well contamination include the use of subpar well casings and porous rock. The correct option is b.

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based on the passage, in studying the venus flytrap, volkov and his colleagues made the most extensive use of which type of evidence Normally, the reset input to a timer will override the control input of the timer. true/false Define Classisma. Define the "ism"b. Identify examples of the 4 I's of Oppressionfor this "ism"c. Example of how someone can resist this"ism". (390-8) When an outlet from an underfloor raceway is discontinued, the circuit conductors supplying the outlet _____. what equation would you use for the problems: C: The temperature was -12 degrees Celsius and rose to 2 degrees Celsius. What was the change in temperature? D: The temperature was 2 degrees Celsius and fell to -12 degrees Celsius. What was the change in temperature?the equations: 2+x=-12 and -12+x=2 I need to know which one goes with which. What type of species, if removed from the community, could lead to the collapse of the entire community?A. Flagship speciesB. Indicator speciesC. Endemic speciesD. Keystone species CaSO, 2 H,O CaSO4) + 2 H,O The hydrate CaSO . 2 H,O) can be heated to form the anhydrous salt; CaSO#s, as shown by the reaction represented above: Write the expression for the equilibrium constant, Ky for the reaction_ Given that the equilibrium constant, K is 6.4x 10-4at 298 K, determine the partial pressure; in atm, of water vapor in the cylinder at equilibrium at 298 K If the volume of the system is reduced to one-half of its original volume and the system is allowed to reestablish equilibrium at 298 K, what will be the pressure; in atm, of the water vapor at the new volume? Justify your answer Which number line shows the solution to the inequality n + 3 > 4? Independent assortment of three genesAssuming that the three genes undergo independent assortment, predict the phenotypic ratio of the offspring in the F2 generation.- 27:9:9:9:3:3:3:1- 1:1:1:1:1:1:1:1- 1:0:0:0:0:0:0:0- 1:0:1:0:1:0:1:0 what event initiates an adaptive immune response? group of answer choices the production of mhc class i or ii molecules the phagocytosis of a pathogen by a macrophage the interaction of a naive t cell with an antigen-presenting cell the expression of cytokines cd4 or cd8 the interaction of a b cell with a th cell What is the volume in cubic inches of a rectangular prism with a height of a 11 inches width of 15 inches and a length of 2 inches 3. A sine wave has an RMS amplitude of 2.0 V. What is the peak to peak voltage of the wave What is the time goal for how quickly you should complete a fibrinolytic checklist once the patient arrives in the emergency department?a.16 minutesb.12 minutesc.17 minutesd.10 minutes a common mistake speakers make in regard to the lectern is to grip it, true or false? What happened to those that were most unhappy with the Trustees' policies? If you spin the spinner below 75 times, how many times would you expect to spin a number that is less than 5?ANSWER FAST PLEASE! If someone starts developing hypotension after giving morphine or nitroglycerin? PLS HURRY FOR 80 POINTS Triangle XYZ is drawn with vertices X(4, 5), Y(6, 1), Z(10, 8). Determine the line of reflection if X(4, 5). y-axis x-axis y = 1 x = 4 in the short run, a negative inflation shock such as a sharp rise in oil prices will multiple select question. shift the ad curve to the left. open up an expansionary gap. shift the as curve upward. open up a recessionary gap. what example does fredrick the great give of flawed or corrupt leader?