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

Answers

Answer 1

Answer:

2 feet (unless action is taken)


Related Questions

if the moon is at its closest distance to earth, is its angular size sufficiently large to block the sun's surface completely from view to someone standing on earth?

Answers

No, the moon's angular size is not sufficiently large to completely block the sun's surface from view to someone standing on Earth, even when it is at its closest distance to Earth.

The reason for this is that the moon's angular size is only about 1/2 degree, while the sun's angular size is about 0.5 degrees. This means that the moon is not large enough to cover the entire face of the sun, and there will always be a ring of sunlight around the edge of the moon during a solar eclipse.

However, during a total solar eclipse, the moon does block the sun's surface completely from view, but this is only visible from a specific path on Earth, which is typically only a few dozen to a few hundred miles wide. Outside of this path, observers will see a partial eclipse, where only a portion of the sun is blocked by the moon.

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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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When ancient Greek merchants traded overseas, why did the journeys take so long?

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Ancient Greek merchants' overseas trading journeys took a long time due to factors such as travel by ship, limited sailing technology, reliance on seasonal winds, and the vast distances they needed to cover.

When ancient Greek merchants traded overseas, the journeys took so long because they were traveling by ship, which was the primary mode of transportation for long-distance travel at the time. The ships used by the Greeks were not as advanced as modern ships and were powered by oars or sails, which made the journey slow and arduous. Additionally, the Greeks had to navigate through unpredictable weather conditions, and seasonal winds including storms and rough seas, which further slowed down their journeys. Finally, the distance between the Greek city-states and the destinations of their trade routes was significant, which also contributed to the long duration of their voyages.

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lower devonian-lower carboniferous clastic wedge deposits from the baltica-laurentia orogeny, which cover large areas of the british isles, is a formation called the

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Lower Devonian-Lower Carboniferous clastic wedge deposits from the Baltica-Laurentia orogeny that cover large areas of the British Isles is a formation called the Old Red Sandstone.

The Old Red Sandstone is a geological formation consisting of a variety of sedimentary rocks, including sandstone, siltstone, and shale, that were deposited during the Devonian and early Carboniferous periods, approximately 420-360 million years ago. It is named for the reddish color of the sandstone, which is caused by the presence of iron oxide. The Old Red Sandstone is found throughout much of the British Isles, as well as parts of northern Europe and North America. It represents a time of significant geological activity, including the collision of the continents of Baltica and Laurentia, which created the Caledonian mountain range in Scotland and the Appalachian Mountains in North America. The formation is also known for its rich fossil record, which includes a variety of fish, plants, and invertebrates.

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The Lower Devonian-Lower Carboniferous clastic wedge deposits from the Baltica-Laurentia orogeny, which cover large areas of the British Isles, is a formation called the Old Red Sandstone.

This formation is a distinctive red sandstone and conglomerate rock formation that was deposited in a variety of environments such as rivers, lakes, and floodplains. The Old Red Sandstone was formed during the Devonian and Carboniferous periods and was the result of the collision between the continents of Baltica and Laurentia, which formed the Caledonian Orogeny. This orogeny caused the formation of the Old Red Sandstone by uplifting and eroding the land, which led to the deposition of sediment in the surrounding basins. The Old Red Sandstone is a significant geological formation as it contains evidence of the evolution of early plants and animals. Fossils of early fish, insects, and plants have been found in the formation, giving us a glimpse into the life that existed during this time period.

Additionally, the Old Red Sandstone is an important source of building stone and has been used for centuries to construct buildings and monuments throughout the British Isles. Overall, the Old Red Sandstone formation is a testament to the geological forces that have shaped the British Isles and provides valuable insight into the evolution of life on Earth. Its unique red coloration and distinct layers make it an easily recognizable formation and an important part of the geological history of the region.

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The fact that Earth's interior is sorted into layers indicates that
1) the process of formation from a nebula (by the slamming together of material and planetesimals that stuck together on impact) produces nice, neat layers.
2)EARTH WAS ONCE IN A MOLTEN STATE, DURING WHICH MATERIALS BECAME SORTED BASED ON DESITY.
3) the rotation of the early Earth acted like a centrifuge which separated materials based on weight.
4) Earth was once in a molten state, during which materials became sorted by electromagnetic fields.
5) nothing can be inferred about such a perplexing level of organization.

Answers

The fact that Earth's interior is sorted into layers indicates that the process of formation from a nebula (by the slamming together of material and planetesimals that stuck together on impact) produces nice, neat layers.

Additionally, Earth was once in a molten state, during which materials became sorted based on density, due to the fact that denser materials sink and lighter materials rise. Furthermore, the rotation of the early Earth acted like a centrifuge which separated materials based on weight, with heavier materials being pushed outward and lighter materials being pushed inward.

Finally, electromagnetic fields in the early Earth's molten state also contributed to the sorting of materials based on their electrical properties. All of these processes combined to form the layered structure that is seen in the Earth's interior today.

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The most widely accepted explanation for the sorting of Earth's interior into layers is (2) EARTH WAS ONCE IN A MOLTEN STATE, DURING WHICH MATERIALS BECAME SORTED BASED ON DENSITY.

Early in Earth's history, it is believed that the planet was largely molten due to the heat generated by the accretion of material from the solar nebula, as well as from the heat released by radioactive decay. As the planet cooled, denser materials, such as iron and nickel, sank toward the center of the planet to form the core, while lighter materials, such as silicates, rose toward the surface to form the crust.This process of differentiation based on density is known as "planetary differentiation", and it is believed to be responsible for the layered structure of many other planets and moons in our solar system.

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what type of light do you think earth's surface primarily gives off

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Earth's surface primarily gives off infrared radiation, also known as heat radiation or thermal radiation.

When the sun's energy reaches the Earth's surface, it is absorbed and re-emitted as heat radiation.

The surface of the Earth mostly emits infrared radiation, often known as heat radiation or thermal radiation. This is due to the Earth's surface temperature being relatively low in comparison to the temperature of the Sun, which emits predominantly visible light and ultraviolet radiation.

As a result, the Earth's surface absorbs the majority of incoming solar radiation and re-radiates it as infrared radiation, which is then trapped by greenhouse gases in the atmosphere and aids in temperature regulation.

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Which BEST explains why there is so little agriculture in the Appalachian Plateau region

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Different geographical factors such as typography and quality of soil  explains why there is so little agriculture in the Appalachian Plateau region.

Due to the Appalachian Plateau's steep hills and constrained valleys, large-scale crop cultivation is challenging. Transferring agricultural goods to markets may be difficult due to the rocky terrain.

With shorter growing seasons and more precipitation than many other agricultural regions, the Appalachian Plateau has a cooler climate. These elements may restrict the kinds of crops that can be raised there.  The Appalachian Plateau region has tended to concentrate on other industries like mining, forestry, and tourism as a result of these factors making agriculture a less viable option.

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Briefly summarize three key ways in which geology is critically important to Earth’s long- term habitability.

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Answer:

Here are three key ways:

Climate stability: The study of geology provides insights into how the Earth's climate has changed over millions of years. Understanding past changes in climate can help us to better predict and prepare for future changes. Geologic processes, such as the formation of mountains and the erosion of rocks, can also influence local and global weather patterns.

Resource availability: Geology is critical in identifying and accessing natural resources such as minerals, fossil fuels, and groundwater. The study of geology helps to identify areas where these resources are most likely to be found and how to extract them in a sustainable way that minimizes environmental impact.

Understanding natural hazards: Geology is essential in understanding natural hazards such as earthquakes, volcanic eruptions, landslides, and tsunamis. By studying the geological history of an area, scientists can better understand the likelihood and potential impact of these hazards. This knowledge can be used to develop effective hazard mitigation strategies and save lives.

Explanation:

What are three ways in which governments can cooperate internationally to deal with projected climate change?

Answers

To combat the predicted effects of climate change, nations can work together globally through the Kyoto Protocol, technological transfer, and measures to maintain major forests.

Climate change means the long-term change of weather patterns and temperature levels. Possible causes of these changes include biological processes like fluctuations within the sun period. Yet, throughout the 1800s, industrial activity—particularly the combustion of energy sources like coal, oil, and gas—has been the primary cause of climate change.

People are in danger of being hungry as a result of prolonged droughts, and communities have been forced to leave because of sea level rise and saltwater intrusion. There are several ways to address climate change that can increase the economy, improve our quality of life, and protect the environment. Kyoto Protocol, technological transfer, and measures to maintain major forests are some initiatives of the government.

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23) Examine the five words and/or phrases and determine the relationship among the majority of words/phrases.
Choose the one option that does not fit the pattern.
A) Calcareous
B) Hydrogenous C) Lithogenous D) Biogenous
E) Cosmogenous

Answers

The one option that does not fit the pattern is Calcareous. Option A is the correct answer.

The word "calcareous" means "mostly or partly composed of calcium carbonate," which translates to "containing lime" or "being chalky." The phrase is employed throughout a wide range of scientific fields. A sediment, sedimentary rock, or soil type that is made mostly of or contains a large amount of calcium carbonate in the form of calcite or aragonite is referred to be calcareous. Option A is the correct answer.

Since the carbonate is formed by marine creatures that require nutrients from land, calcareous sediments are often deposited in shallow water close to land. In general, sediments that are deposited farther from land tend to be less calcareous. Due to storms or changes in ocean currents, certain places may have interbedded calcareous deposits. Option A is the correct answer.

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What is the density of the most populous cities in the Northeast (Philadelphia, New York City, and Boston)?
A) less than 300 persons per square mile
B) approximately 250 persons per square mile
C) approximately 100 persons per square mile
D) more than 500 persons per square mile

Answers

The density of the most populous cities in the Northeast is approximately 250 persons per square mile.

The area had a total population of 57,609,148 as of the 2020 United States Census, which is 17.38% of the country's overall population. A geographical area of the United States is known as the Northeastern United States, often known as the Northeast. It is situated on the Atlantic coast of North America, bordered by the Southern United States to the south, the Midwestern United States to the west, and Canada to the north.

The Northeast megalopolis, which is located in the region and accounts for 67% of the 57,609,148 people living there, is home to several of the major metropolitan areas in the country, such as Boston, New York City, and Philadelphia. With 320 people per square mile, it has the highest population density in the whole country.

Therefore, option B is the correct answer.

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True or False: Freezing rain and sleet are both the same form of precipitation.

Answers

False
Hope this helped :)

In Fourier Transform Infrared (FTIR) spectroscopy, which type of vibration requires the most energy?

Answers

Answer:

what are the options?

Explanation:

What best describes the benefit the Appalachian Mountains bring the rest of the state

Answers

The varied biodiversity describes the benefit the Appalachian Mountains bring the rest of the state.

One of the biologically diverse regions in the world, the Appalachian Mountains are the habitat to numerous rare plant and animal species. Mountains forests and streams support a diverse ecosystem that is vital to the area's well-being as well as housing for a number of rare and endangered species.

For irrigation, industry, and drinking purposes, the mountain streams and rivers provide pure, fresh water.  Festivals and other cultural events serve as a platform for the mountain culture, which is a significant component of the region's heritage.

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(T/F) Out of Robert Merton's list of 5 personality types - conformity, innovator, ritualist, retreatist, and rebel- all but one is deviant according to Merton's definition.

Answers

False.

According to Robert Merton's strain theory, which outlines how social structures and cultural values can create a strain or tension that leads to deviant behavior, only one of the five personality types he identified is deviant. The deviant personality type is the rebel, who both rejects the goals of society and the means of achieving them. The other four personality types - conformity, innovator, ritualist, and retreatist - are not inherently deviant, but they may exhibit deviant behavior if they are unable to achieve the socially accepted goals through legitimate means.

What was one way ancient Greeks often prepared for forming colonies?

Answers

One way ancient Greeks often prepared for forming colonies was by sending out exploratory expeditions to survey potential sites and assess their suitability for settlement.

These expeditions would typically be led by experienced navigators and sailors who were familiar with the local waters and coastlines. Once a suitable site had been identified, the Greeks would often establish a small initial settlement or trading post, which would serve as a base for further expansion and colonization. In some cases, the Greeks would also seek the permission and support of local rulers or tribes before establishing a colony, in order to ensure peaceful coexistence and trade relations.

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Most of the world's power is generated by
a) coal
b) oil
c) natural gas
d) nuclear
e) hydropower

Answers

Oil
The percentage of overall energy each energy source provides:
Oil: 33%
Natural gas: 24%
Coal: 28%
Hydropower: 7%
Nuclear: 4%

The tropical location of Africa sitting astride the equator makes it a prime location for the expansion of which renewable energy industry?
a) coal
b) solar
c) hydropower
d) wind
e) nuclear

Answers

The tropical location of Africa, sitting astride the equator, makes it a prime location for the expansion of the solar energy industry. Therefore the correct option is option B.

Solar energy is a renewable energy source that can be utilised through the installation of solar panels that turn sunlight into electricity. Because of its proximity to the equator, Africa's equatorial region receives significant amounts of sun irradiation throughout the year, making it an ideal location for the construction of solar energy projects.

Several African countries, including Morocco, South Africa, and Kenya, have made significant investments in the development of large-scale solar power plants in recent years.

These initiatives have the potential to deliver clean and affordable energy to millions of people, particularly those living in rural areas where electricity is unavailable. Therefore the correct option is option B.

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Where are most tropical rainforests located?
a) near the north pole
b) near the south pole
c) near the equator
d) in the middle latitudes
e) their location is random

Answers

The correct answer is c) near the equator.

Tropical rainforests are mainly found in regions near the equator. These areas have a tropical climate characterized by high humidity and warm temperatures throughout the year. The equatorial regions receive a significant amount of sunlight, which causes warm air to rise and create the perfect conditions for heavy rainfall.

The largest and most famous tropical rainforests are located in South America, Africa, and Southeast Asia, in countries such as Brazil, the Democratic Republic of Congo, and Indonesia. These forests support high levels of biodiversity and provide habitat for millions of plant and animal species. They also play a critical role in regulating the Earth's climate by absorbing carbon dioxide and releasing oxygen through photosynthesis.

In contrast, the areas near the north and south poles have cold climates and low precipitation, which are not conducive to the growth of rainforests. Similarly, the middle latitudes are characterized by more temperate climates and lower rainfall, making them unsuitable for tropical rainforests.

Therefore, the correct answer is c) near the equator.

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.

Answers

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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Which association is not correct?
high cloud...cirrus
middle cloud...altostratus
vertical cloud...cumulus
high cloud...nimbostratus

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The association that is not correct is "high cloud...nimbostratus".

Nimbostratus clouds are actually classified as a type of low-level cloud, typically found below 6,500 feet (2,000 meters) in altitude. These clouds are thick, dark, and often produce continuous rain or snowfall.

The correct association for high clouds would be "high clouds...cirrus", as cirrus clouds are a type of high-level cloud typically found above 20,000 feet (6,000 meters) in altitude. These clouds are thin, wispy, and often have a feathery appearance.

The other associations are correct: middle clouds are often classified as "alto-" clouds, and examples include altostratus and altocumulus. Vertical clouds, which are associated with rising air and often have a distinctive puffy appearance, are commonly referred to as cumulus clouds

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during fair weather, the net movement of sand perpendicular to shore is offshore (away from the beach).

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During fair weather, the net movement of sand perpendicular to shore is offshore, which means it moves away from the beach. This phenomenon occurs due to a combination of factors related to weather and wave activity.

In fair weather conditions, waves approach the shore at an angle, which leads to a process called "swash and backwash." Swash refers to the water washing up onto the beach, carrying sand and other sediment with it. Backwash is the water flowing back down the beach, pulling sand and sediment back towards the ocean. When waves break at an angle, they create a zigzag pattern of sand movement, known as longshore drift. However, in fair weather, the dominant wave direction is typically perpendicular to the shore, minimizing the longshore drift effect.

The balance between swash and backwash results in the net movement of sand being offshore. To further explain, as waves break near the shore, their energy dissipates and the offshore-flowing currents carry the suspended sand and sediment away from the beach. This offshore movement of sand can lead to the formation of sandbars, which are underwater ridges of sand that parallel the shoreline.

In summary, during fair weather, the net movement of sand perpendicular to shore is offshore due to the combined effects of swash and backwash, wave angle, and offshore-flowing currents. This results in sand being transported away from the beach and can contribute to the formation of sandbars.

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During fair weather, the net movement of sand perpendicular to shore is offshore, which means it moves away from the beach.

This phenomenon occurs due to a combination of factors related to weather and wave activity.In fair weather conditions, waves approach the shore at an angle, which leads to a process called "swash and backwash." Swash refers to the water washing up onto the beach, carrying sand and other sediment with it. Backwash is the water flowing back down the beach, pulling sand and sediment back towards the ocean. When waves break at an angle, they create a zigzag pattern of sand movement, known as longshore drift. However, in fair weather, the dominant wave direction is typically perpendicular to the shore, minimizing the longshore drift effect.The balance between swash and backwash results in the net movement of sand being offshore. To further explain, as waves break near the shore, their energy dissipates and the offshore-flowing currents carry the suspended sand and sediment away from the beach. This offshore movement of sand can lead to the formation of sandbars, which are underwater ridges of sand that parallel the shoreline.In summary, during fair weather, the net movement of sand perpendicular to shore is offshore due to the combined effects of swash and backwash, wave angle, and offshore-flowing currents. This results in sand being transported away from the beach and can contribute to the formation of sandbars.

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Tropical winds generally blow in which direction in both hemispheres?
a) from west to east
b) from east to west
c) from south to north
d) from north to south
e) there are no prevailing wind directions in the tropics

Answers

Tropical winds, known as the trade winds, generally blow from east to west in both hemispheres. The correct answer is: b) from east to west.

These winds are part of the global atmospheric circulation patterns and are caused by the rotation of the Earth and the distribution of heat around the planet. In the Northern Hemisphere, they are called the Northeast Trade Winds, and in the Southern Hemisphere, they are called the Southeast Trade Winds.

These trade winds converge near the equator, rise, and then flow back towards the poles in the upper atmosphere, creating a global circulation pattern known as the Hadley cell. The trade winds are an important factor in shaping weather patterns, ocean currents, and navigation routes in the tropics.

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Question 25
Compactibility of soil in landfills depends primarily on:
a. the point at which refuse is discharged on the fill
b. the type of refuse to be compacted
c. the moisture content of the soil
d. the gradient of the particle size of the soil

Answers

The compatibility of soil in landfills primarily depends on the moisture content of the soil. Therefore the correct option is option C.

The gradient of the particle size distribution influences the soil's capacity to compress, with soils having a more uniform particle size distribution being more easily compacted than those with a wide range of particle sizes.

Other elements, such as soil moisture content and the type of garbage being compacted, can also have an impact on compatibility.

However, particle size distribution is widely regarded as the most critical component in determining soil compactibility in landfills. Therefore the correct option is option C.

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sediment is supplied to the coastal zone by: question 37 options: coastal erosion. local biological activity. rivers. all of these are sources of sediment in the costal zone. only coastal erosion and local biological activity are sources of sediment in the coastal zone.

Answers

All of these are sources of sediment in the coastal zone. Sediment can be supplied to the coastal zone through coastal erosion, local biological activity, and rivers.

Coastal erosion refers to the wearing away of coastal land by waves and currents, which can release sediment into the surrounding water. Local biological activity, such as the activity of organisms like coral, can also produce sediment. Additionally, rivers can transport sediment from inland areas to the coastal zone, where it can be deposited.


Sediment is supplied to the coastal zone by all of these sources: coastal erosion, local biological activity, and rivers. Each of these processes contributes to the accumulation of sediment in the coastal zone.

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What is the temperature of a star (in Kelvin) if its peak wavelength is 1,200 nm (that is, 1200 x 10^-9 m)?

Answers

The temperature of the star is approximately 2412.5 Kelvin.

To determine the temperature of a star given its peak wavelength, we can use Wien's law:

λ_max = b/T

where λ_max is the peak wavelength in meters, T is the temperature of the star in Kelvin, and b is Wien's displacement constant, which is approximately equal to 2.898 x 10^-3 meters Kelvin.

First, we need to convert the peak wavelength from nanometers to meters:

λ_max = 1200 x [tex]10^-9[/tex]m

Next, we can rearrange the equation to solve for the temperature T:

T = b/λ_max

T = 2.898 x [tex]10^-3 m K / (1200 x 10^-9 m)[/tex]

T = 2412.5 K.

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In mid-latitude cities, what season is the UHI stronger?

Answers

In mid-latitude cities, the urban heat island (UHI) effect is typically stronger in the summer season.

This is because during the summer, the sun is the higher in the sky, the days are longer, and the amount of solar radiation absorbed by urban surfaces is higher.

Additionally, during the summer, urban areas tend to have lower vegetation cover, higher amounts of impervious surfaces such as concrete and asphalt, and a higher concentration of the heat-generating sources such as vehicles and air conditioning units.

All of these factors contribute to the urban heat island effect being stronger during the summer season.

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Question 79
The largest outbreak of cadmium poisoning thus far documented occurred in:
a. Brazil
b. Japan
c. Mexico
d. United States

Answers

The largest outbreak of cadmium poisoning thus far documented occurred in: Japan. Therefore the correct option is option B.

The Toyama Prefecture in Japan experienced the greatest incidence of cadmium poisoning on record in 1912. The outbreak was triggered by industrial pollution from a local mining firm that dumped cadmium into the Jinzu River, which served as the principal source of drinking water for the locals.

As a result, approximately 700 persons were diagnosed with cadmium toxicity, and the pollution damaged many more. The epidemic caused considerable health and environmental concerns in Japan, and it is regarded as one of the country's worst episodes of industrial pollution in its history. Therefore the correct option is option B.

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What is the only river that flows into Georgia from another state

Answers

Answer: I think it is the Chattahoochee River

Explanation: I hope this helps

72) The main energy resources associated with marine sediments are petroleum and ________. A) coal
B) wind power
C) rare-earth elements
D) gas hydrates E) ethanol

Answers

D) gas hydrates

Marine sediments can contain significant amounts of methane hydrates, also known as gas hydrates, which are formed when methane gas is trapped within a lattice-like structure of water molecules under conditions of low temperature and high pressure. These gas hydrates are a potential source of energy, as they contain large amounts of methane, which can be extracted and used as a fuel. Although coal and rare-earth elements can also be found in marine sediments, they are not typically associated with energy production in this context. Wind power and ethanol are renewable energy sources, but they are not directly associated with marine sediments.

Answer:

D.) Gas hydrates

Explanation:

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