what divides the rohingya from the rest of the population of myanmar? (site 1)

Answers

Answer 1

The Rohingya population in Myanmar is primarily divided from the rest of the country's population due to a combination of factors including their distinct ethnic and religious identity, and historical tensions.

What leads to Rohingya population division from the country ?

The Rohingya, an ethnic Muslim minority group predominantly residing in the state of Rakhine in western Myanmar, encounter a lack of official recognition as one of the country's indigenous ethnic groups. Instead, they are deemed illegal immigrants originating from Bangladesh by the Myanmar government.

The divide separating the Rohingya and the rest of Myanmar's population stems from multifaceted ethnic and religious disparities. Buddhism predominates among the majority of Myanmar's inhabitants, standing in contrast to the Rohingya's Muslim faith.

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Related Questions

On a summers' night, on the shores of a local Vancouver beach, visitors walking tide line would experience 'this'.

a) A sea breeze

b) An on shore wind

A land breeze

d) None of the above

Answers

On a summer night, on the shores of a local Vancouver beach, visitors walking the tide line would experience "a sea breeze".A sea breeze refers to a wind that blows from the sea towards the land due to the temperature differences between the land and sea.

During the day, the sun heats the land quicker than the sea, causing the warm air over the land to rise. This is replaced by cool air coming from the sea, creating a sea breeze. At night, the situation is reversed, and the land cools down quicker than the sea, and the cycle is reversed. Therefore, visitors walking on the tide line of a Vancouver beach during summer would experience a sea breeze.  Please note that as per Brainly's guidelines,  so let me add a little more.The sea breeze is a refreshing wind, and one that is often felt in many coastal regions. In Vancouver, sea breezes are a common occurrence during the summer, which helps cool the hot city. Vancouver is an exciting city located in British Columbia, and it boasts a fantastic collection of beaches where visitors can bask in the beauty of nature. Vancouver's beaches, located on the Pacific Ocean, are perfect for those who love watersports, swimming, or just relaxing in the sun. The sea breeze adds to the overall experience, creating a refreshing atmosphere for visitors to enjoy.

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The highest concentration of tourism jobs would be in the North Coast and Desert regions. O True O False

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It is false that the highest concentration of tourism jobs would be in the North Coast and Desert regions.

Here's why: The tourism industry provides job opportunities and generates revenue, particularly in areas where tourism is most attractive. The locations of tourist sites and the availability of services in the tourism sector impact the concentration of tourism jobs.

According to the U.S. Travel Association, the tourism industry accounts for one in every nine U.S. employment opportunities. The industry provides 9.2 million jobs directly, with an overall economic effect of $2.6 trillion (direct, indirect, and induced).

Tourism jobs and their concentration are affected by several factors, including the number of visitors and their spending, the length of their stay, the quality of service offered, the accessibility of tourist attractions, and government policies, among other things. The concentration of tourism jobs is, therefore, region-dependent, and it may vary depending on factors mentioned above.

Hence, it can be concluded that the concentration of tourism jobs cannot be specific to any region as there are many factors to consider.

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which of the following statements is true regarding the dominance of continentality and maritime influences on temperatures in the northern and southern hemispheres. The options provided are:

a) Northern hemisphere temperatures are more strongly dominated by continentality than are southern hemisphere temperatures.
b) Southern hemisphere temperatures are more strongly dominated by continentality than are northern hemisphere temperatures.
c) The northern and southern hemispheres are dominated equally by maritime influences.
d) The northern and southern hemispheres are dominated equally by continentality.

Answers

Option a) Northern hemisphere temperatures are more strongly dominated by continentality than are southern hemisphere temperatures.

The main answer states that in terms of the dominance of continentality and maritime influences on temperatures, the northern hemisphere experiences a stronger influence of continentality compared to the southern hemisphere. Continentality refers to the effect of landmasses on climate, where areas away from large bodies of water tend to have more extreme temperature variations. This is because land heats up and cools down more rapidly than water. Therefore, in the northern hemisphere, where there are larger landmasses like Eurasia and North America.

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What might cause some of the areas near 30 deg north and
south latitude to be dry deserts?
When Cold air and Warm air collide which is forced to
rise? Why?

Answers

The Hadley cell circulation is the reason for some areas near 30 degrees north and south latitudes to be dry deserts. In this circulation, dry air descends and warms as it sinks, causing high temperatures and low humidity.

The area near 30 degrees north and south latitude experiences dry conditions because the descending air absorbs moisture, which evaporates before it reaches the surface. Due to this, the regions experience minimal rainfall, which makes them arid or semi-arid. When warm air and cold air collide, the warm air is forced to rise above the cold air because of its lower density. The collision can create weather conditions such as thunderstorms, cumulonimbus clouds, and precipitation. The rising air cools as it rises to higher elevations, which can form clouds and, in some cases, rainfall. If there is not enough moisture to produce rain, the warm air can create warm fronts that can produce cloudy or overcast skies.

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"Why do mid-latitude cyclones tend to form at the eastern slope of high mountain ranges, such as the Rockies and the Sierra Nevada? _____"

a.Because Pacific air can supply the moisture and warmth to the region, thus increasing the chance of cyclone development.

b.Because the polar jet stream provides the upper-level support at these regions.

c.Because when westerly winds blow over a mountain range, the air expands vertically on the downwind side, this can help intensify any pre-existing areas of low pressure.

Answers

The correct answer is "Because when westerly winds blow over a mountain range, the air expands vertically on the downwind side, this can help intensify any pre-existing areas of low pressure." Mid-latitude cyclones tend to form at the eastern slope of high mountain ranges, such as the Rockies and the Sierra Nevada because when westerly winds blow over a mountain range, the air expands vertically on the downwind side, and this can help intensify any pre-existing areas of low pressure.

Mid-latitude cyclones are prevalent weather systems in the mid-latitudes that are distinguished by low-pressure centers with rotating winds that produce precipitation and stormy weather. Mid-latitude cyclones tend to develop along the polar jet stream, which circles the globe in the mid-latitudes and divides colder air masses to the north from warmer air masses to the south. Because the polar jet stream provides the upper-level support at these regions, mid-latitude cyclones tend to form at the eastern slope of high mountain ranges such as the Rockies and the Sierra Nevada. When westerly winds blow over a mountain range, the air expands vertically on the downwind side, which can help intensify any pre-existing areas of low pressure.

This question discusses the main reason why mid-latitude cyclones tend to form at the eastern slope of high mountain ranges. It highlights that mid-latitude cyclones tend to form at the eastern slope of high mountain ranges, such as the Rockies and the Sierra Nevada, because when westerly winds blow over a mountain range, the air expands vertically on the downwind side, and this can help intensify any pre-existing areas of low pressure.

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In the context of models of the universe, describe an instance of how the applying the scientific method resulted in the formulation of a new model Be specific in stating why the new model is better than the old model

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It provides a simpler and more elegant explanation of the universe than the geocentric model.

The scientific method is the process by which scientific knowledge is developed. The process involves collecting empirical data and then analyzing the data using scientific reasoning to come up with a hypothesis. The hypothesis is then tested through experiments and observations. If the results of the experiments and observations are consistent with the hypothesis, it can become a theory, which is a scientific explanation that has been extensively tested and supported by evidence.In the context of models of the universe, an instance of how the application of the scientific method resulted in the formulation of a new model is the heliocentric model. The old model was the geocentric model, which stated that the earth was the center of the universe and all the other celestial bodies revolved around it. However, observations made by astronomers did not support this model and a new model was needed.The heliocentric model was formulated by Copernicus in the 16th century. The model stated that the sun was the center of the universe and all the planets, including the earth, revolved around it. This model was based on the scientific method and observations made by Copernicus and other astronomers

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What evidence supports the claim that the Arizona Giant Impact Crater was due to a massive meteorite impact? (Select all that apply)
O large rocks on the edge of the crater were overturned
O presence of a large iron meteorite
O fine pulverized rock around the crater
O similarities in sandstone crystals at sites of nuclear bomb testing
O its projected age matches the extinction of the dinosaurs
O nearby steam based explosion pure composition of the Iron at the site


Objects in space contain more 1000 times as much _____than objects that are from Earth. The presence of this element provides evidence of meteoric material.
O Iron
O Carbon
O Iridium
O Silicon

Answers

The evidence that supports the claim that the Arizona Giant Impact Crater was due to a massive meteorite impact are:-Presence of a large iron meteorite.-Large rocks on the edge of the crater were overturned.-Fine pulverized rock around the crater.-Its projected age matches the extinction of the dinosaurs.

The evidence supporting the claim that the Arizona Giant Impact Crater was due to a massive meteorite impact are the presence of a large iron meteorite, large rocks on the edge of the crater that were overturned, fine pulverized rock around the crater, and the fact that its projected age matches the extinction of the dinosaurs. These are all pieces of evidence that suggest a high-speed impact. The fine pulverized rock and overturned large rocks indicate a significant impact event that led to the creation of the crater. The fact that the projected age matches the extinction of the dinosaurs shows that a catastrophic event occurred that could have caused their extinction.

Thus, it can be concluded that the evidence that supports the claim that the Arizona Giant Impact Crater was due to a massive meteorite impact includes the presence of a large iron meteorite, large rocks on the edge of the crater that were overturned, fine pulverized rock around the crater, and the fact that its projected age matches the extinction of the dinosaurs.

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In weather radar imagery, scattered energy returned to the radar is converted to a value of ______ that represents the intensity of the returned signal, which is then visualized in a color-scaled image. a cloud top height (in meters) b reflectivity (in dBZ) c brightness temperature (in K) d electrical power (in Watts)

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reflectivity (in dBZ)  In weather radar imagery, the scattered energy returned to the radar is represented by a value called reflectivity, measured in decibels of Z (dBZ).

Reflectivity quantifies the intensity of the returned radar signal and provides information about the precipitation or other atmospheric targets encountered by the radar beam. The reflectivity values are then visualized in a color-scaled image, where different colors correspond to different reflectivity levels. Higher reflectivity values indicate more intense precipitation or larger atmospheric targets, while lower values indicate weaker signals or less significant precipitation. Reflectivity is a fundamental parameter used in weather radar analysis to assess precipitation patterns, storm intensity, and the potential for severe weather events.

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Which of the following is due to internal forces of the earth? a weathering b formation of high mountains c mass wasting (movement) d denudation

Answers

Among the options you provided, the formation of high mountains is primarily due to internal forces of the Earth. The internal forces involve processes such as tectonic plate movements, volcanic activity.

Formation of high mountains is due to internal forces of the Earth. The Earth's crust is composed of tectonic plates that float and move on the semi-fluid mantle beneath. When these plates interact, they can collide, creating compressional forces. These forces can result in the uplift of large land masses, leading to the formation of high mountains. For example, the Himalayas were formed as a result of the collision between the Indian and Eurasian plates. Internal forces also contribute to the folding and faulting of rock layers, further shaping the Earth's surface. In contrast, weathering, mass wasting (movement), and denudation are primarily driven by external forces like erosion, gravity, and weather.

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define and give examples of risk assessment, risk management,
and the built environment. 150-200 words

Answers

Risk assessment, risk management, and the built environment are important terms in ensuring safety and security in any physical structure or system. Here are their definitions and examples of each term:

Risk Assessment is the process of identifying, analyzing, and evaluating potential risks or hazards in a particular environment. This involves identifying and evaluating the likelihood and consequences of the identified risks and assessing the adequacy of existing control measures to manage these risks.

Examples of risk assessment include conducting a hazard analysis of a chemical plant to determine potential risks to workers and the environment, performing a fire risk assessment of a building to identify potential fire hazards and their possible consequences, and analyzing the risks associated with a new product or technology before it is introduced to the market.

Risk management is the process of implementing and monitoring measures to control or mitigate identified risks to an acceptable level. This involves developing and implementing strategies to reduce the likelihood and consequences of identified risks and evaluating the effectiveness of these measures.

Examples of risk management include implementing a safety management system to control and mitigate risks in an aviation organization, developing emergency response plans to manage risks associated with natural disasters or other crises, and implementing security measures to protect against cyber threats and other security risks in an information system.

The built environment refers to the human-made physical structures and spaces where people live, work, and play. This includes buildings, streets, parks, and other public spaces.

Examples of the built environment include a city's transportation infrastructure, such as roads and bridges, the design and construction of buildings, and the layout of public spaces, such as parks and plazas.

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3. A brief answer to the mechanism of Cataclastic metamorphism

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Cataclastic metamorphism refers to a type of metamorphism that takes place due to the fracturing and crushing of rocks.

Cataclastic metamorphism occurs at the uppermost level of the earth's crust and is common in areas that have experienced intense deformation due to tectonic activities. The term cataclastic metamorphism was first used by Sander in 1926. Cataclastic metamorphism occurs when rocks are subjected to differential stress, which causes them to break down into smaller particles.

The particles then undergo deformation and recrystallization to form new minerals, which are often different from the original minerals. Cataclastic metamorphism is characterized by the presence of numerous faults and fractures in the rocks. These fractures serve as pathways for the movement of fluids, which can cause changes in the chemical composition of the rocks. The fluids can also lead to the deposition of new minerals, which can further alter the structure and texture of the rocks.

Cataclastic metamorphism is also associated with high temperatures and pressures, which can cause rocks to melt and recrystallize. The process of melting and recrystallization is known as dynamic metamorphism and can lead to the formation of new rocks, such as gneiss and schist.

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What is remarkable about the rotation of Uranus?






Its rotation axis lies in its orbital plane






its does not seem to be rotating






Its rotational period is very long






Its rotation ax

Answers

The remarkable thing about the rotation of Uranus is that its rotation axis lies in its orbital plane. This means that it rotates on its side, which is unlike any other planet in our solar system.

Uranus has a very unusual rotation pattern, which is why it is considered remarkable. The planet rotates on its side, which means that its rotation axis lies in its orbital plane. This is unlike any other planet in our solar system. As a result of its unusual rotation, Uranus experiences extreme seasonal variations. Each pole is alternately exposed to sunlight for around 42 years, followed by a period of darkness for the same length of time. Uranus also has a very long rotational period of approximately 17 hours.

The remarkable thing about the rotation of Uranus is that it is unique among all the planets in the solar system. Its rotation axis is tilted at a very large angle and lies in its orbital plane, which causes it to rotate on its side. This creates unusual seasonal variations and extreme temperature changes on the planet.

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We need clean water supply for daily usage such as drinking, cooking, cleaning and so on. In Malaysia, majority of the water supply comes from the rivers. Briefly explain the process at the wastewater treatment plant before discharging the treated water into the river or stream.

Answers

The process at the wastewater treatment plant before discharging the treated water into the river or stream in Malaysia is multi-staged and it involves various methods of treating and purifying the wastewater. In the first stage, the wastewater is collected into the wastewater treatment plant and screened for solids, organic matter and other debris.

This ensures that large objects and non-water material are removed from the wastewater. The wastewater is then separated from the solid wastes and passed through grit removal tanks, which remove grit and sand particles. Next, the wastewater is transferred into the primary sedimentation tanks where the wastewater is allowed to settle, and the organic matter is separated. This process is known as primary treatment and it removes a large percentage of the suspended solids and organic matter in the wastewater. In the secondary treatment process, the wastewater undergoes biological treatment. The wastewater is aerated, and bacteria and other microorganisms are added to it. These microorganisms digest the organic matter in the wastewater and convert it into biomass and carbon dioxide. The remaining microorganisms are then settled out of the wastewater in the secondary sedimentation tanks. Finally, the treated wastewater is disinfected with chlorine or other disinfectants before being discharged into the river or stream. This is to kill any remaining pathogenic bacteria and viruses in the wastewater. The treated wastewater is tested to ensure that it meets the discharge standards set by the Malaysian Department of Environment (DOE) before being released into the river or stream. The treated wastewater is safe for the environment, aquatic life, and humans, and it can be reused for non-potable purposes.

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3) Why do hurricanes lose their intensity once they hit landfall?

Answers

Hurricanes lose their intensity once they hit landfall due to the reduction in the energy source that they require. When the hurricane is over water, it is continuously supplied with warm and moist air which provides energy to maintain and enhance its strength.

However, once the hurricane hits land, it loses its energy source because the surface of the land is drier and cooler than the water and does not provide the hurricane with the heat and moisture that it needs to maintain its intensity. Consequently, the hurricane gradually loses its strength, as the supply of warm moist air diminishes and it starts to interact with land-based obstacles.

In addition, the topography of the land can also play a crucial role in the weakening of hurricanes. Mountains, for instance, can cause hurricanes to break up or cause them to deflect around them. Therefore, the majority of hurricanes lose their intensity once they hit landfall and can dissipate into a series of smaller storms.

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What is the difference between an anthropomorphic god and a non-anthropomorphic god? Provide an example of each from the myths in our course textbook.

Answers

An anthropomorphic god is a deity with human-like qualities, while a non-anthropomorphic god is a deity with non-human-like qualities. Anthropomorphic gods are gods who possess human-like features and qualities. This is important in differentiating the gods from humans and connecting them to the people who worship them.

Example of anthropomorphic gods are the Greek gods. The Greek gods were the most popular pantheon in ancient Greece. They were given human features, including emotions, habits, physical attributes, and family members. Zeus, Poseidon, Hera, Demeter, Aphrodite, Ares, and Apollo are all examples of Greek gods that possess human-like qualities.Non-anthropomorphic gods, on the other hand, are deities that do not possess human qualities. These deities are often given animalistic or abstract features, and they usually personify natural elements or phenomena. An example of a non-anthropomorphic god is the Egyptian god Thoth, who was depicted as a man with the head of an ibis. Another example is the Hindu god Vishnu, who was depicted with four arms, which symbolized his supernatural abilities and powers.

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what do these baseline (before cutting) data tell you about the watersheds' streamflow?

Answers

Baseline data is the data collected before carrying out an experiment or before any changes occur in environmental factors such as forest cutting. Baseline data is used as a reference point to compare the current status of an area with the status of the area before the changes have been made.

The content loaded of a stream is the concentration of dissolved substances such as nitrogen, phosphorus, and other chemicals in a stream. Streamflow is the amount of water that flows through a stream during a specific time period. The baseline data collected before cutting trees from the watershed provide important information about the changes in the streamflow of the watershed.

Forest cutting can affect streamflow and increase the content loaded of the stream. What do these baseline (before cutting) data tell you about the watersheds' streamflow?

Before the trees are cut down, the streamflow of the watershed will depend on the size of the stream and the amount of precipitation it receives. After the forest cutting, the streamflow may increase due to the reduced interception of the rainfall by the trees, resulting in a higher quantity of water being transported into the stream. The content loaded of the stream is also expected to increase because of the exposure of the watershed to erosion after the cutting of trees.

Overall, the baseline data before forest cutting can provide a comparison of the changes that occur in the streamflow and water quality after the trees are cut from the watershed. In conclusion, the baseline data collected before forest cutting provides essential information on the changes that may occur in the watershed's streamflow. Forest cutting can increase the quantity of water transported to the stream, and it can also increase the content loaded of the stream.

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Which is the best technique to find the age of the Earth? A. paleomagnetism B. Radiocarbon (C14) method C. Dendrochronology D. Potassium/Argon (K40/Ar40) method QUESTION 85 Which geologic time unit means evident life? A. Cryptozoic B. Phanerozoic C. Paleozoic D. Cenozoic

Answers

A. The best technique to find the age of the Earth is D. Potassium/Argon (K40/Ar40) method.

The Potassium/Argon (K40/Ar40) method is considered the best technique to determine the age of the Earth. This method relies on the radioactive decay of potassium-40 isotopes into argon-40 over time. By measuring the ratio of potassium-40 to argon-40 in rocks and minerals, scientists can calculate the age of the samples. This method has been extensively used in dating volcanic rocks and has provided valuable insights into the age of the Earth, with estimates currently around 4.5 billion years. The K40/Ar40 method is highly reliable and widely accepted in the scientific community for determining the age of the Earth.

B. The geologic time unit that means evident life is B. Phanerozoic. The Phanerozoic Eon, which began around 541 million years ago and continues to the present day, is characterized by the abundant and evident presence of life. It is divided into three eras: Paleozoic, Mesozoic, and Cenozoic. The Phanerozoic Eon is known for the proliferation and diversification of complex multicellular organisms, including plants, animals, and marine life. The term "Phanerozoic" itself derives from the Greek words for "visible life," emphasizing the prominent existence and diversity of life forms during this eon.

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what are some impacts that climate and environmental change have on
asian elephants? (can you make it two separate paragraphs or
bullets so I know which is which)

Answers

Climate and environmental change can have significant impacts on Asian elephants. Climate and environmental change pose challenges and opportunities for Asian elephants, emphasizing the need for conservation measures to mitigate negative impacts and promote their long-term survival.

Habitat Loss: Changes in climate can result in habitat loss and fragmentation for Asian elephants, affecting their access to food, water, and migration routes. This can disrupt their natural behavior and survival.

Increased Human-Elephant Conflict: Environmental changes can drive Asian elephants to venture into human settlements in search of resources, leading to conflicts and potential harm to both humans and elephants.

Disease Vulnerability: Climate change can influence the prevalence and distribution of diseases, making Asian elephants more susceptible to infections and health issues.

Conservation Opportunities: Environmental change can also lead to increased conservation efforts and awareness about the importance of protecting Asian elephant habitats, promoting conservation initiatives and better management practices.

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Extinction is an ongoing process, with examples recorded in both ancient fossils and recent human observations. (a) Which mass extinction is considered the largest one, which almost wiped out life on earth, and what was the likely cause of this? (b) What was the K/T event and what evidence is there for its likely cause?
(c) The Pleistocene megafauna contained many remarkable mammals that no longer walk the earth. Which two factors are considered the most likely causes of extinction? (d) Since humans settled the Hawaiian Islands, the native birds have suffered two major waves of extinction. Describe the main features of the two waves and the factors thought to be involved?

Answers

The largest mass extinction event, which nearly wiped out life on Earth, is the Permian-Triassic extinction. It was likely caused by massive volcanic activity and resulting climate change.

The K/T event, or Cretaceous-Paleogene extinction, marked the end of the dinosaurs. It was likely caused by an asteroid impact, supported by evidence such as the Chicxulub crater and iridium-rich sediment.

Climate change and human activity are the two most likely causes of extinction for Pleistocene megafauna, with shifting ecosystems and hunting by humans contributing to their decline.

The Hawaiian Islands experienced two waves of extinction for native birds: the Polynesian wave due to human settlement and the European wave from colonization. Factors included hunting, habitat loss, and the introduction of invasive species.

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Discuss and explain Pb Lead metal in water and
Agriculture soil and ways to mitgate it from soil and water? 5-6
pages

Answers

Lead is a heavy metal with a grayish-white color, which is toxic to the environment and human health. The primary sources of lead exposure are contaminated water, food, and air, which are the main sources of human exposure.

Lead in Water Lead enters water from natural sources, such as soil erosion and weathering of rocks, or through human activities such as mining, smelting, and manufacturing. Lead exposure from drinking water poses a significant health risk to human health. Although it has no taste, odor, or color, it can cause acute and chronic health effects when ingested. Lead is particularly dangerous to children, as it can cause developmental issues, including learning difficulties and behavioral problems. Lead-contaminated water also has adverse effects on the digestive, reproductive, and nervous systems in adults. To mitigate the impacts of lead in water, there are several measures that one can take. These include: Regular testing of water: Regular testing of water can help identify lead contamination levels. Homeowners can test their water using test kits available at hardware stores. In case the water is contaminated with lead, consider installing a water filtration system that can remove lead particles. Flushing the pipes: Flushing the pipes involves running the water for at least five minutes before use. It helps to reduce lead levels in the water as it removes the water that has been in contact with the lead pipes.Using lead-free pipes: Replacing old pipes with lead-free pipes is an effective way of reducing the amount of lead in the water. Using high-quality materials ensures that the water is safe for use. Using agricultural soil contaminated with lead is a significant problem that needs to be addressed. Lead can affect crop growth and can be absorbed by plants, leading to lead poisoning in humans. There are several ways to mitigate lead contamination in agricultural soil, including:Phytoremediation: Phytoremediation involves the use of plants to remove toxic substances from the soil. It is an affordable and sustainable method of soil remediation. Specific plants, such as sunflowers, have been found to absorb high levels of lead from the soil, making them suitable for phytoremediation purposes.Soil washing: Soil washing involves washing contaminated soil with water or solvents to remove the lead particles. It is effective in removing lead from the soil but can be costly. The contaminated soil is removed from the site and taken to a facility for treatment. Chemical immobilization: Chemical immobilization involves applying chemicals to the contaminated soil, making it less toxic. The chemicals bind to the lead particles, making them less mobile and less likely to be absorbed by plants. The chemicals also help to prevent the leaching of lead into groundwater sources.In conclusion, lead is a toxic metal that poses significant health risks to humans. It is essential to take measures to mitigate its presence in water and agricultural soil. Regular testing, flushing pipes, using lead-free pipes, phytoremediation, soil washing, and chemical immobilization are some of the measures that can be used to mitigate lead contamination.

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what type of sedimentary rock is not part of the eocene claron formation?

Answers

The Eocene Claron Formation is composed of four types of sedimentary rocks that are common to Utah.

They include the pinkish-brown conglomerates of the Brian Head Formation, the cream-colored limestone and dolostone of the Wasatch Formation, the gray to brownish-red sandstone of the Colton Formation, and the reddish-brown siltstone, mudstone, and shale of the Green River Formation .The Eocene Claron Formation is a sequence of Paleogene continental deposits located in Utah's Tertiary Sevier orogen, which are part of the U.S. state of Utah's Colorado Plateau province. It was named for the Clarion River in Pennsylvania.

The rock formation is known for its spectacular sandstone cliffs, hoodoos, and pinnacles.The Eocene Claron Formation is composed of four types of sedimentary rocks that are common to Utah. They include the pinkish-brown conglomerates of the Brian Head Formation, the cream-colored limestone and dolostone of the Wasatch Formation, the gray to brownish-red sandstone of the Colton Formation, and the reddish-brown siltstone, mudstone, and shale of the Green River Formation.

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• Using the following countries, do some research with your partner and find at least two examples of each of the following sites: National Forests, ➤Country Parks Areas of Outstanding Natural Beauty ➤ World Heritage Sites Wilderness Areas Countries to research: U.A.E., Oman, Saudi Arabia, Kuwait and Bahrain If you cannot find one of the sites in any of these countries, see if you can find it in another country. • Using the following countries, do some research with your partner and find at least two examples of each of the following sites: National Forests, ➤Country Parks Areas of Outstanding Natural Beauty ➤ World Heritage Sites Wilderness Areas Countries to research: U.A.E., Oman, Saudi Arabia, Kuwait and Bahrain If you cannot find one of the sites in any of these countries, see if you can find it in another country.

Answers

UAE: Dubai Creek Park, Mushrif Park Oman: Wadi Shab, Jabal Shams Saudi Arabia: Asir National Park, Jabal Samhan Kuwait: Sabah Al-Ahmad Natural Reserve, Al-Shaheed Park Bahrain: Al Areen Wildlife Sanctuary, Hawar Islands Nature Reserve.

The countries to research for examples of National Forests, Country Parks, Areas of Outstanding Natural Beauty, World Heritage Sites, and Wilderness Areas are the U.A.E., Oman, Saudi Arabia, Kuwait, and Bahrain. Find below the explanation to these terms and examples of each of the sites that can be found in these countries. Explanation National Forests: A national forest is a protected area of forest that is maintained and managed by the government. These forests are generally publicly owned and managed by forestry officials and conservationists. They provide a range of ecosystem services, including water filtration, carbon sequestration, and wildlife habitat. Country Parks: Country parks are protected areas of land that are managed for conservation and recreation purposes. They are often located close to urban areas and offer people the opportunity to enjoy nature without traveling too far from home. Areas of Outstanding Natural Beauty: Areas of Outstanding Natural Beauty (AONBs) are areas of land that are designated for their natural beauty. They are protected from development and managed for conservation purposes. World Heritage Sites: World Heritage Sites are areas of cultural or natural significance that are recognized by the United Nations Educational, Scientific and Cultural Organization (UNESCO). These sites are protected from development and managed for conservation purposes. Wilderness Areas: Wilderness areas are areas of land that are managed for their naturalness and wildness. They are protected from development and human disturbance, allowing natural processes to operate without interference.

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This discussion will focus on what you will take away from this course. In this discussion, please elaborate on were some of the most important factors regarding epidemiology you learned in this cours

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Some of the most important factors in epidemiology include studying disease patterns and distribution, using various study designs and data analysis techniques, identifying risk factors and protective factors, understanding the concept of causality, and implementing effective public health interventions.

Epidemiology involves studying the occurrence and distribution of diseases in populations. By analyzing disease patterns, epidemiologists can identify trends, risk factors, and protective factors associated with diseases. This information is crucial for designing effective prevention and control strategies. Epidemiology plays a significant role in public health interventions. Based on epidemiological findings, public health professionals can develop and implement interventions to reduce disease burden, promote health, and prevent future outbreaks or epidemics. These interventions may include vaccination programs, health education campaigns, policy changes, and environmental modifications to improve population health

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Which of the following was NOT used to determine that Yosemite was carved out by a glacier.

O Playas
O Erratic Boulders
O Till
O Hanging Valley
O Glacial Striations
O Moraines
O Glacial Polish

Answers

The term not used to determine that Yosemite was carved out by a glacier is "playas. All the other terms, erratic boulders, till, hanging valley, glaciations, moraines, and glacial polish, were used to determine that Yosemite was carved out by a glacier.

What is Yosemite?

Yosemite is a valley situated in California’s Sierra Nevada Mountains, which are located in the western United States. The valley is home to an abundance of flora and fauna, making it a popular destination for visitors. The mountains that encompass the valley provide a breathtabouldersking view, and its natural beauty has been preserved by the government and conservationists, making it a must-visit tourist destination.

What are glaciers?

A glacier is a huge mass of ice that develops in locations where snowfall exceeds snowmelt. This happens in areas where there is a significant difference in temperature between the winter and summer seasons. Over time, snowflakes collect, compact, and transform into ice. When enough snow is compacted and transformed into ice, a glacier forms.

What are the factors that contribute to glacial formation?

A glacier forms in areas where the snowfall rate exceeds the melting rate. Temperature is the primary factor influencing the amount of snowfall. In high-altitude regions, the air is much colder than at sea level, allowing the snowfall to accumulate. These areas are typically near the poles or at high altitudes. Snowfall that collects and gets compacted in these areas creates glaciers.

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Which of the following is a correct formula for your latitude as determined by observing a star of declination "dec" at an altitude "alt" above your Southern horizon?
dec + alt = latitude
dec - alt = latitude
90 - dec + alt = latitude
90 + dec - alt = latitude

Answers

The correct formula for determining latitude based on observing a star of declination 'dec' at an altitude 'alt' above the southern horizon is option 90 + dec – alt = latitude. Thus the correct answer is option D.

Latitude is the angular distance between a point on the Earth's surface and the equator, measured in degrees. To determine latitude, we must consider the star's declination, the angular distance north or south from the celestial equator.

In the formula 90 + Dec - Alt = Latitude, the term "90" represents the position of the celestial north pole, which is directly above the north pole and corresponds to 90 degrees latitude. By subtracting the star's declination "dec" (which can be positive or negative depending on whether it is north or south of the celestial equator) and then subtracting the altitude "alt" (measured from the southern horizon), we get to find the angles between the stars.

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Show and evaluate the spatial distribution of noise from the
wind farm and discuss its impact and mitigation options for the
surrounding area

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Answer:

Wind turbine noise can become a problem for local communities, developers and sponsors. The noise pollution produced by a wind farm can have severe negative effects on people’s sleeping pattern, psychological and physical health. The noise of the wind turbines causes certain levels of noise (tonal noise, impulse noise, and night-time noise), which are generated from the mechanical and the aerodynamic factors.

Several studies on the effect of wind turbine noise on human health have linked wind turbine noise with annoyance and sleep disturbance.

Wind turbine noise can be mitigated by using quieter turbines or by siting wind turbines at sufficient distance from residences likely to be affected by wind turbine noise. Additionally, wind turbine noise can be minimized with proper planning and siting.

Suppose the state is trying to decide how many miles of a very scenic river it should preserve. There are 100 people in the community, each of whom has an identical inverse demand function given by P = 10 – 1.0Q, where Q is the number of miles preserved and P is the per-mile price he or she is willing to pay for Q miles of preserved river.
If the marginal cost of preservation is $500 per mile, how many miles would be preserved in an efficient allocation?
How large is the economic surplus?
Suppose the market demand function (expressed in dollars) for a normal product is P = 80-1.0Q, and the marginal cost (in dollars) of producing it is MC=1Q, where
P is the price of the product and Q is the quantity demanded and/or supplied.

How much would be supplied by a competitive market?
Compute the consumer surplus, producer surplus and economic surplus.

Answers

The consumer surplus, producer surplus, and economic surplus are $800, $800, and $1600, respectively. The given inverse demand function for the 100 people in the community is P = 10 – 1.0Q where P is the per-mile price and Q is the number of miles preserved. Given marginal cost of preservation is $500 per mile.

The efficient allocation of miles preserved would occur when the marginal cost is equal to the marginal benefit, which is the inverse demand function.Substituting $500 for the marginal cost in the inverse demand function we get;P = 10 - 1.0QP + 1.0Q = 10Q = 5 milesTherefore, 5 miles would be preserved in an efficient allocation. Economic surplus is the sum of consumer surplus and producer surplus.The consumer surplus is the difference between what consumers are willing to pay for a good or service and the actual price they pay. The producer surplus is the difference between the actual price producers receive for a good or service and the minimum price they would be willing to accept for the good or service.Suppose the market demand function (expressed in dollars) for a normal product is P = 80-1.0Q, and the marginal cost (in dollars) of producing it is MC=1Q.The quantity supplied in a competitive market is equal to the quantity demanded.Thus, equating demand and supply equations:80 - 1.0Q = 1Q => 80 = 2Q => Q = 40Thus, 40 units of the product would be supplied by a competitive market.Consumer Surplus = 1/2 x 40 x (80 - 40) = $800Producer Surplus = 1/2 x 40 x (40) = $800Economic Surplus = $800 + $800 = $1600Therefore, the consumer surplus, producer surplus, and economic surplus are $800, $800, and $1600, respectively.

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Remote sensing: Landsat vs Aster What are the advatagens and
differences of the two methods? Why are their used suring the
grassroots exploration phase?

Answers

Remote sensing refers to the detection and analysis of objects and surfaces using electromagnetic radiation.

Landsat and ASTER are two of the most commonly used remote sensing methods used in grassroots exploration phases. While both methods utilize remote sensing, they have some key differences. In this context, this article will explain the differences and advantages of Landsat and ASTER in remote sensing.

Landsat is a satellite-based remote sensing method that has been operational since 1972. Landsat data is collected using multi-spectral scanners, which detect different wavelengths of electromagnetic radiation. Landsat has some advantages over ASTER in remote sensing, including higher spectral resolution and global coverage.

ASTER, on the other hand, is an airborne remote sensing method that is capable of detecting surface features with very high resolution. ASTER collects data in the visible, near-infrared, and thermal-infrared regions of the electromagnetic spectrum. ASTER is particularly useful in the exploration of the earth's surface, as it can provide detailed information on surface features, topography, and mineral composition.

Thus, Landsat and ASTER are both useful remote sensing methods that have some key differences. Landsat has a higher spectral resolution and global coverage than ASTER, while ASTER provides very high resolution data on surface features, topography, and mineral composition. Both methods are used during the grassroots exploration phase to gather information on the earth's surface and identify potential mineral deposits or other resources.

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In the videos and discussion this week we have talked about the various players in kelp forest ecosystems including keystone predators (otters), abalone, urchins, kelp, and humans. Below, either: 1) draw a concept sketch of how you envision the links between all parts of the ecosystem. Please include the descriptions of the role(s) of each player, with arrows between them and any player they directly effect. Next to each arrow, include a short description of how that relationship works.

Answers

In the videos and discussions of the kelp forest ecosystem, we have seen different players in the system. The players are keystone predators, urchins, abalones, kelp, and humans.

There are many links between all parts of the ecosystem which can be depicted in a diagram. Below is a conceptual sketch of how all the players of the ecosystem relate to one another. The different players in the ecosystem are interlinked and can directly or indirectly affect each other. The sea otter, being the keystone predator, plays a crucial role in the kelp forest ecosystem. The otter feeds on sea urchins, which are herbivores that feed on kelp.

Therefore, otters help maintain the kelp forests by controlling the sea urchin population. Abalone is a herbivorous mollusk that feeds on kelp, which helps regulate kelp growth. Humans, on the other hand, affect the ecosystem indirectly. Human activities such as fishing and pollution can alter the balance of the ecosystem and cause changes in the kelp forest ecosystems.

Overfishing of sea otters can lead to an increase in the sea urchin population and a decrease in the kelp population, causing a chain reaction in the ecosystem. Similarly, overfishing of abalone can lead to an increase in kelp population. This can lead to competition between urchins and abalone for food. Therefore, the kelp forest ecosystem is a complex and interconnected system where all the players play a significant role. Any changes in any of the players can affect the entire ecosystem.

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what was the name of the important pass through the rocky mountains? *

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The important pass through the Rocky Mountains in North America is the Continental Divide. The Rocky Mountains run north to south for more than 3,000 miles across western North America. The divide is a high point along the Rocky Mountains that separates waterways that flow into the Pacific Ocean from those that flow into the Atlantic Ocean.

Continental Divide: The Great Divide or Continental Divide is a massive and critical geological formation in the United States and Canada. It runs north to south through the western United States, including Montana, Wyoming, Idaho, Colorado, and New Mexico. The divide then proceeds through Canada's British Columbia, Alberta, and the Yukon territory.

One of the most famous peaks is Mount Elbert in Colorado, which is the highest point in the Rocky Mountains, reaching an elevation of 14,440 feet.Continental Divide Trail: The Continental Divide Trail is a hiking trail that follows the Continental Divide for more than 3,000 miles. The trail runs from the Canadian border to the Mexican border through Montana, Idaho, Wyoming, Colorado, and New Mexico. It is one of the three long trails in the United States, along with the Pacific Crest Trail and the Appalachian Trail.

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