Answer:Muslims and Hindus
people in rural communities are more likely to...
a-follow traditional beliefs.
b-live in apartments or condos.
c-have access to a greater variety of restaurants.
d-be less religious than city-dwellers.
I need help! I need a answer that is easy to understand.
Use the image to answer the question
What sustainability concerns are suggested by each of these images? Describe one concern
for each of the communities pictured here with respect to each of the three pillars of
sustainability. Evaluate which community is more likely to achieve sustainability, and explain your
reasoning. Your response should be a paragraph in length.
The sustainability concerns that suggested by:
image 1(top)- The loss of biodiversity.Image 2 (bottom)- Loss of biodiversity, overpopulation, the issue of pollution, poor health as well as poverty.The community that is more likely to achieve sustainability is the first community (image 1) because there is good use of space, no issue of pollution or poverty.
What are sustainability concerns?The issue of sustainability is known to be one that is fundamentally a human idea. Before humans began having significant negative effects on the environment and one another, it was not a problem.
Almost anything can be categorized as a sustainability issue due to the broad definition of sustainability.
Fundamentally, sustainability is about how people interact, how they affect one another and the environment, and how they deal with social and environmental problems.
The third pillar of sustainability is generally added as economics, while some people only perceive this as a social issue.
Therefore, our consistent and bad use of resources has critical effects such as climate change, reduction of biodiversity, pollution, and others.
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the average temperature on planet earth is higher than you would expect just from the heating of sunlight alone. what is the explanation for this? group of answer choices the heat given off by living things makes our planet warmer the rubbing of the continental plates warms up the earth's surface solid material hitting the earth from space heats it up we have no explanation for this higher temperature and that has scientists carbon dioxide (and other gases) in the atmosphere cause a greenhouse effect
The greenhouse effect is caused by gases in the atmosphere, including carbon dioxide.
How keeps the Earth comfortable and warm?The way that "greenhouse gases" trap heat near to the Earth's surface is known as the greenhouse effect. You might imagine these heat-trapping gases as a blanket covering the Earth, keeping it warmer than it would be otherwise.
What are all the two key elements that affect Earth's temperature?The Earth's greenhouse effect is mostly caused by water vapor and clouds, but a recent atmosphere-ocean climate modeling study reveals that the amount of carbon dioxide in the atmosphere is ultimately what determines the planet's temperature.
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A 2-gallon bucket of paint costs $71.68. What is the price per cup?
Answer:
$2.24
Explanation:
1 gallon is made up of 16 cups. Therefore, a 2-gallon bucket of paint is made up of 32 cups of paint. Take the total cost of $71.68 and divide it by 32, which gives you the answer of $2.24 per cup.
Why did the Donbas Region rebel?
Answer:
Separatist rebellion in the East When Ukraine's Moscow-friendly president was driven from office by mass protests in February 2014, Russia responded by annexing Ukraine's Crimean Peninsula. It then threw its weight behind an insurgency in the mostly Russian-speaking eastern Ukraine region known as Donbas.
incandescent ash, large lava fragments, and hot gases that race down steep volcanic slopes at speeds exceeding 100 kilometers per hour is called a 1 of 4a type of fluid mudflow consisting of volcanic debris and water is called a pyroclastic 2 of 4most lahar are associated with fault displacement but can sometimes be triggered by a volcanic 3 of 4volcanic ash can be abrasive and clog airplane engines in addition to damaging lungs.
When volcanic activity occurs, there are several types of hazards that can result. One of the most dangerous is pyroclastic flows. These fast-moving mixtures of incandescent ash, large lava fragments, and hot gases can travel down the slopes of a volcano at speeds of over 100 kilometers per hour.
They are incredibly destructive and can cause widespread damage to both natural and human-made structures.
Another hazard associated with volcanoes is lahar. This type of fluid mudflow is made up of volcanic debris and water, and can be triggered by fault displacement or volcanic activity. Lahars are extremely dangerous, as they can travel long distances and cause significant damage to buildings and infrastructure.
Finally, volcanic ash is another hazard that can result from volcanic activity. This fine-grained material can be abrasive and cause damage to airplane engines, as well as pose a health risk to people who inhale it. It is important to take precautions when in areas affected by volcanic ash, including wearing protective masks and staying indoors as much as possible. Overall, volcanic activity can have significant impacts on both human and natural systems, and it is important to understand and prepare for these hazards.
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how is water removed from the environment and what is the environmental impact of removing and using water
Answer: Sewage contains many harmful compounds that must be removed in order to make the water safe again. This includes removing inorganic solid waste like metals and garbage. Much of the organic waste can be naturally decomposed by bacteria. Treatment plants process the wastewater in a series of stages that make the water safe to be discharged back into the regular water source like a river or stream.
Explanation: Hope this helps and is correct.
Which of the following is a good example of Spatial Diffusion
A. Columbian Exchange
B. American Exchange
C. Columbus Exchange
D. Manifest Destiny
Answer:
The Columbus Exchange
Explanation:
The Columbian exchange, also known as the Columbian interchange, named after Christopher Columbus, was the widespread transfer of plants, animals, culture, human populations, technology, diseases, and ideas between the Americas, the Old World, and West Africa in the 15th and 16th centuries.
there are many positive and negative aspects associated with nuclear power. which is a negative aspect associated with nuclear power? a nuclear power does not contribute to the greenhouse effect.nuclear power does not contribute to the greenhouse effect. b it is more efficient than other methods of energy production.it is more efficient than other methods of energy production. c exposure to radiation can lead to disease or genetic abnormalities.exposure to radiation can lead to disease or genetic abnormalities. d nuclear power is a renewable energy source.
Exposure to radiation can lead to disease or genetic abnormalities is a negative aspect associated with nuclear power.
Ionizing radiation may harm genetic material (mutations) in gonads or germ cells, which can result in disorders with a genetic component (hereditary defects). These may cause immunological deficiencies, deformities, metabolic abnormalities, or other conditions in exposed persons' offspring or grandchildren, or they may not show symptoms for several generations. Like cancer, genetically induced disorders cannot be recognized by their clinical presentation since they might develop spontaneously or as a result of various environmental variables in addition to radiation exposure.
Radiation is an energy source. It moves as either energetic waves or swift particles. Radiation can be created artificially or naturally. We have been surrounded by radiation throughout our development. Therefore, the low amounts we are exposed to every day are something our bodies are built to handle. However, excessive radiation can harm tissues by altering cell structure and DNA. One of the worst health problems this might cause is cancer.
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What is the volume, in cubic in, of a cylinder with a height of 4in and a base radius of 5in, to the nearest tenths place?
Answer:
314 cubed inches
Explanation:
Answer: The answer is exactly 314.2 Cubic Inches
Explanation: V = A h.
Since the area of a circle = π r 2, then the formula for the volume of a cylinder is:
V = π r 2 h.
Hence, If you do the math you will end up with 312.2 Cubic Inches
--Hope this helped!--
Why does the Nile River not flood the cities of modern day Egypt?
it was to hot
it was to cold
The cause of the flood each year was heavy rains and melting snow to the south near the source of the Nile.
because it is to in Egypt
The Nile River does not flood the cities of modern-day Egypt because the climate in Egypt is too hot and dry for snow and heavy rains to cause a flood, unlike the regions near the source of the Nile. The heavy rains and melting snow to the south near the source of the Nile are the primary cause of the Nile's annual flooding.
The Nile River does not flood the cities of modern-day Egypt due to the construction of the Aswan High Dam. This dam, completed in 1970, controls the flow of the Nile River and prevents the annual floods that used to occur. Prior to the construction of the dam, the Nile River would flood each year due to heavy rains and melting snow to the south near the source of the Nile.
However, with the construction of the dam, the flood waters are now contained and can be released in a controlled manner, preventing the flooding of cities in Egypt.
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Physical geography is also known as
A.map science
B. geology
C. meteorology
D. Earth science
Answer:
your answer is D earth science
Explanation:
hope this helps
why might this be? (hint: what processes in both living and dead trees produce co2 ?) tropical rain forests also produce co2 due to living trees' respiration and decomposition of dead trees. due to this fact, relative consumption of co2 is not as great as has been expected.
Tropical rain forests produce CO2 due to both the respiration of living trees and the decomposition of dead trees. This leads to a lower relative consumption of CO2 than is expected.
Both living and dead trees contribute to the production of carbon dioxide (CO2) through respiration and decomposition processes. Living trees release CO2 through cellular respiration, which is the process by which they use oxygen to convert sugars into energy. Dead trees also release CO2 as they decompose, either through the action of microorganisms or through physical processes like wind and erosion.
While it's true that tropical rainforests produce CO2 through respiration and decomposition, they also play an important role in removing CO2 from the atmosphere through photosynthesis. Trees absorb CO2 from the air and use it to build their cells and grow, releasing oxygen as a byproduct. This process helps to offset the CO2 produced by other sources, such as human activities.
However, the extent to which tropical rainforests are able to absorb and sequester CO2 depends on a variety of factors, including the density and diversity of the forest, the health of the trees, and the availability of nutrients and water. Additionally, deforestation and other human activities that destroy or disrupt rainforest ecosystems can greatly reduce their ability to act as carbon sinks.
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what farmers do to replace soil nutrients?
, plant material, and chemical fertilizers by farmers is to add back these subtracted nutrients
Explanation:
assume that the fault blocks moved at a constant rate for the past 30 million years. what is the offset rate in km/30 million years?
The offset rate in km/30 million years is calculated by dividing the total offset distance by the elapsed time.
The fault block is a section of the Earth's crust bounded by faults. The fault blocks have shifted over time due to tectonic activity. The offset rate in km/30 million years can be calculated if the total offset distance and the elapsed time are known.
The formula for calculating offset rate in km/30 million years is:
Offset rate = Total offset distance / Elapsed time
We can calculate the offset rate using the given information.
Assuming that the fault blocks moved at a constant rate for the past 30 million years, the offset rate in km/30 million years is calculated as follows:
Offset rate = Total offset distance / Elapsed time
The given question does not provide the total offset distance. Therefore, it is impossible to calculate the offset rate in km/30 million years without this information.
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What do Canada and the United States have in common?
Check all that apply.
M A. Laws passed by elected representatives
M B. Closely related cultures
I C. Easy travel between the tWo
M D. Roughly the same gross domestic product
SUBMIT
M A, B, D. are all options that apply
What do Canada and the United States have in common?Generally, Canada and the United States share a long border, the world's longest undefended border, stretching from the Atlantic to the Pacific Ocean. Both countries are active members of the United Nations, NATO, and the G7.
They share a similar history, culture, and political system, and both are federal democracies governed by a democratic system of government. Additionally, both countries share the same language, English, and the same currency, the US dollar.
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How can cancer spread from a tumor to other parts of the body? sec question
Answer:
In metastasis, cancer cells break away from where they first formed, travel through the blood or lymph system, and form new tumors in other parts of the body.
Explanation:
Cancer can spread to almost anywhere in the body. But it commonly moves into your bones, liver, or lungs.
Sudden movements between the Earth’s plates results in:
why is the total fertility rate of a country a better measurement of fertility than the crude birth rate
Answer:
The total period fertility rate is a better index of fertility than the crude birth rate because it is independent of the age structure of the population, but it is a poorer estimate of actual completed family size than the total cohort fertility rate.
Explanation:
3 reasons for the dry conditions in central Antarctic
Answer:
The driest place on Earth is in Antarctica in an area called the Dry Valleys, which have seen no rain for nearly 2 million years. ... The reason why this region receives no rain is due to Katabatic winds, winds from the mountains that are so heavy with moisture that gravity pulls them down and away from the Valleys.
The driest place on Earth is in Antarctica in an area called the Dry Valleys, which have seen no rain for nearly 2 million years. ... The reason why this region receives no rain is due to Katabatic winds, winds from the mountains that are so heavy with moisture that gravity pulls them down and away from the Valleys.Antarctica’s climate is also very windy and dry. Wind speeds vary across the continent and are discussed in Regional climate variation and weather; but the idea that Antarctica is a kind of desert requires some explanation here. The relative humidity of air at the South Pole is often as low as 0.03%, and the continent is a polar desert. This may at first seem surprising with 99% of its area being covered by ice; and Antarctica certainly doesn’t conform to the image that most people have of a desert. Yet, most of Antarctica is classed as a desert on the basis of its mean annual precipitation. What little precipitation there is mostly falls as snow, averaging less than 50mm a year (water equivalent) across much of the interior. This is in the ‘hyper arid’ category, shared with the Sahara, Namib, Atacama, and other great deserts of the world. The presence of so much ice despite such low precipitation is simply due to the fact that low temperatures cause even less ablation than accumulation (see Tectonic history: into the deep freeze and Ice sheets and glaciation for an account of the build up of the Antarctic Ice Sheet).
The driest place on Earth is in Antarctica in an area called the Dry Valleys, which have seen no rain for nearly 2 million years. ... The reason why this region receives no rain is due to Katabatic winds, winds from the mountains that are so heavy with moisture that gravity pulls them down and away from the Valleys.Antarctica’s climate is also very windy and dry. Wind speeds vary across the continent and are discussed in Regional climate variation and weather; but the idea that Antarctica is a kind of desert requires some explanation here. The relative humidity of air at the South Pole is often as low as 0.03%, and the continent is a polar desert. This may at first seem surprising with 99% of its area being covered by ice; and Antarctica certainly doesn’t conform to the image that most people have of a desert. Yet, most of Antarctica is classed as a desert on the basis of its mean annual precipitation. What little precipitation there is mostly falls as snow, averaging less than 50mm a year (water equivalent) across much of the interior. This is in the ‘hyper arid’ category, shared with the Sahara, Namib, Atacama, and other great deserts of the world. The presence of so much ice despite such low precipitation is simply due to the fact that low temperatures cause even less ablation than accumulation (see Tectonic history: into the deep freeze and Ice sheets and glaciation for an account of the build up of the Antarctic Ice Sheet).Although related, the terms climate and weather do have distinct meanings. This section focuses on the general climate characteristics of Antarctica as a whole, while the next section looks more specifically at regional differences in Antarctica’s climate and weather across the continent.
Why is specialization a common result of free trade?
uet nonduce
Answer:
The primary fear for nations entering free trade is that they will be out-produced by a country ... Comparative advantage stipulates that countries should specialize in a certain class of ... Standards of living improve as a result.
Explanation:
model the relationship between gravity and altitude
1 Explain why
a the metal lid on a glass jam jar can be unscrewed easilyif the jar is inverted for a few seconds with the lid in very hot water,
Answer:
If we assume it is your average glass pickle-jar with a metal top than heating up the jar will loosen the lid because the metal conducts more heat than the glass. ... As the lid loosens the normal force the glass produces to push back on the lid is decreased so the Frictional force is lowered.
Explanation:
Let's talk about geography of the united states
Where is it located, what are its limits, what is its climate, the way of life of its inhabitants, mountains etc.
The United States is located in North America in the Western Hemisphere. It spans a large amount of the continent, so it covers many areas with unique climates.
The Northeast has a lot of forest cover, and encounters very diverse climates throughout the year, from bitter winters to blistering summers, and have even experienced hurricanes.
The Southeast is generally mild, and experiences warm weather year round. The further south you go, the warmer it gets. You also see more bayous and swamps in the south. The northern ends of the Southeast such as North & South Carolina can experience some snow and colder weather in the winter.
The Midwest is also mild, and generally flat, which makes it ideal for agriculture.
As you go west, you will find more mountainous regions, as well as arid desert landscapes. The Southwest is the pinnacle of these desert landscapes, seeing hot weather in the day, and cold weather in the night, with high temperatures year round.
And finally, the Northwest is a mild climate, with high mountains and abundant rain.
Question 1 Figure 1.1: Slope 1.1. Refer to Figure 1.1 to answer the following questions: 1.1.1 Name wind A and wind B. (2) 1.1.2 Evaluate how the slope winds A and B can have both a positive and negative influence on humans and human activities. (1 Positive and 1 Negative) (4)
While assessing and evaluating the slope winds A and B which can have both a positive and negative influence on humans and human activities likewise downslope and upslope winds.
What is Slope wind?Slope winds are a product of the planetary boundary layer's daily cycle of heating and cooling along elevated terrain. While katabatic winds flow downslope at night, anabatic winds flow upslope during the day.
In most cases, when a deeper layer of air is forced across topography, it results in downslope winds. In contrast to katabatic winds, downslope winds are not fundamentally influenced by the diabatic cooling of air in contact with a cold surface.
Therefore, the four sorts of slopes are negative, positive, zero, and undefined. It has both a positive and negative influence on humans and human activities likewise downslope and upslope winds.
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Hawaiian volcanoes produce two types of the same variety of lava. Pahoehoe is smooth and ropy; aa is chunky. Formulate a hypothesis as to why the same lava can have two different appearances.
Answer:
I will explain.
Explanation:
Lava comes in two primary appearances: Pahoehoe and aa. The reason why they have two different types of appearances is because the older aa in the photo has weathered and the iron in it has oxided somewhat, giving it a reddish and chunky appearance. It also moves fast. Pahoehoe has a flow that is comparatively smooth or a "ropy" surface. Pahoehoe doesn't have the chunky appearance.
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if the amounts of carbon dioxide increased what would happen to the earth's
temperature?
Answer:
Rising carbon dioxide concentrations are already causing the planet to heat up. ... Greenhouse warming doesn't happen right away because the ocean soaks up heat. This means that Earth's temperature will increase at least another 0.6 degrees Celsius (1 degree Fahrenheit) because of carbon dioxide already in the atmosphere
Explanation:
Answer with explanation:
Global warming would reach its peak and glaciers will melt causing sea level rises and floods. More storms and cyclones. Many low lying countries will get submerged under water.
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Put the events in order (from top to bottom) that describe the eruption of Mount St. Helens in May 1980
1. an earthquake occurred
2.an avalanche released pressure in the magma chamber
3.the volcano erupted in a lateral blast
4.a pyroclastic flow swept down the mountain
5.a column of ash rose 25km into the air
On May 18, 1980, an earthquake occurred triggering an avalanche that released pressure in the magma chamber. This led to a massive eruption of Mount St. Helens in a lateral blast, which was the most powerful volcanic explosion in the history of the United States. The eruption of Mount St. Helens in May 1980 can be described in the following order:
1. An earthquake occurred: The event began with a magnitude 5.1 earthquake on May 18, 1980, which weakened the north face of the volcano.
2. An avalanche released pressure in the magma chamber: The earthquake triggered a massive landslide and avalanche, causing the removal of a significant portion of the mountain's north face. This, in turn, led to a decrease in pressure within the magma chamber.
3. The volcano erupted in a lateral blast: As the pressure decreased, the volcano erupted in a massive lateral blast, sending a powerful shockwave of hot gases, steam, and rock debris outwards at speeds of up to 300 miles per hour.
4. A pyroclastic flow swept down the mountain: The blast also produced a pyroclastic flow, a dense and fast-moving mixture of hot volcanic gas, ash, and rock fragments. This flow traveled down the mountain and devastated the surrounding landscape.
5. A column of ash rose 25km into the air: Following the lateral blast and pyroclastic flow, a massive column of ash rose approximately 25 kilometers (15.5 miles) into the atmosphere, spreading ash across the Pacific Northwest and causing significant disruption to air travel and local communities.
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why do some scientists think that comets aren't solely responsible for giving the earth it's oceans or drinking water?
The deuterium isotopes in cometary water differ from those in water on Earth. This is further supported by the discovery of two 4.5 billion year old meteorites that contained liquid water along with a wide variety of deuterium-poor organic molecules.
The deuterium to hydrogen ratio on Earth today is also consistent with the age of eucrite chondrites, which come from the asteroid Vesta in the outer asteroid belt. Both asteroids and comets are solid celestial entities that were created 4.5 billion years ago during the early solar system. Asteroids are rockier and only found in the Asteroid Belt (between Mars and Jupiter). On the other hand, comets, which originate from the outer solar system, are rich in water ice and other volatiles. The current preferred theory for how the Earth got its water is that it obtained it from elements (planetesimals) rich in water that comprised up a small portion of its building components. These planetesimals with abundant water would have either been comets or asteroids. It has been said that these are "dirty snowballs." They could provide crucial hints about how our solar system formed. The early Earth and other regions of the solar system may have received water and organic compounds from comets.
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we traveled coast-to-coast, discovering new destinations and picking the top landmark in every state. which did we choose for arizona? 1. The Hoover Dam 2. Antelope Canyon 3. Havasupai Falls 4. Monument Valley
The Hoover Dam - This is a concrete arch-gravity dam in the Black Canyon of the Colorado River, on the border between the U.S. states of Nevada and Arizona. It was constructed between 1931 and 1936 during the Great Depression and is considered an engineering marvel.
Antelope Canyon - This is a slot canyon located on Navajo land near Page, Arizona. It is known for its stunning light beams and swirling sandstone formations, and is a popular destination for photographers and tourists.
Havasupai Falls - This is a series of stunning waterfalls located in the Grand Canyon, within the Havasupai Indian Reservation. It is known for its crystal-clear blue-green water and is a popular destination for hiking and camping.
Monument Valley - This is a region of the Colorado Plateau characterized by a cluster of vast sandstone buttes, mesas, and towers. It is located on the Navajo Nation Reservation near the Arizona-Utah border and is one of the most iconic landmarks in the American Southwest.
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