Option (D) Subduction zone is the correct option.
It is a process where heavier/denser tectonic plate sinks underneath the lighter/less denser tectonic plate, forcing to melt and rise to the surface in the form of molten rock (known as magma).
The subduction zones are usually formed between convergent plate boundaries. such plates cause great destruction over the surface and often characterized by possessing large numbers/series of volcanoes. The 'Ring of Fire', located in pacific ocean is a classic example.
Hence, the overrun plate is subducted into the mantle and a part of which is melted. It is generally believed that plates move around over the Asthenosphere.
The Theory of Plate Tectonics was devised by Alfred wegner in the 1920s. He tried to study the earth's dynamic interior structure.
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the process in which a denser plate is pushed beneath a less dense plate
The process in which a denser plate is pushed beneath a less dense plate is called subduction.
Subduction occurs at convergent plate boundaries, where two plates are moving towards each other. When a denser oceanic plate collides with a less dense continental plate, the oceanic plate is forced beneath the continental plate and into the Earth's mantle. As the oceanic plate descends, it heats up and begins to melt, creating magma that rises to the Earth's surface, forming volcanoes.
Subduction is a fundamental process in plate tectonics and is responsible for many of the world's largest earthquakes and volcanic eruptions. It is also responsible for the formation of mountain ranges, such as the Andes in South America and the Cascades in North America. The subduction process also plays a crucial role in the Earth's carbon cycle, as the subducted material is eventually returned to the surface through volcanic activity, releasing carbon dioxide into the atmosphere and ocean. Overall, subduction is a complex and dynamic process that plays a vital role in shaping the Earth's surface and influencing its climate and geology.
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identify the factors that cause melting and thus the formation of magma.
The decompression or the overlying pressure present in the mantle rocks causes the rocks to melt and form the magma. when tectonic plates separate decompression enables the melting of rocks.
There are several factors that cause the melting of magma one important factor is temperature. Rocks melt when the temperature of rocks increases above the melting point.
Pressure and fluids present in rocks also cause the formation of magma. The addition of volatiles and heat can conclude to form magma, rocks are made of different minerals and have different melting points.
Thus, magma can have different and variant compositions which may include different, dissolved gases such as carbon dioxide and hydrogen sulfide.
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Which two statements describe how igneous rock is formed
which of the following processes does not produce so2 and/or nox? question 4 options: electricity generation volcanic eruption car emissions insulation
Among the listed options, the process that does not produce SO2 and/or NOx is insulation.
Electricity generation from the burning of fossil fuels, such as coal and oil, is a major source of SO2 and NOx emissions. When these fuels are burned, sulfur and nitrogen compounds are released into the air, where they react with oxygen to form SO2 and NOx.
Volcanic eruptions can also release significant amounts of SO2 and NOx into the atmosphere. This is because volcanic gases contain high levels of sulfur and nitrogen compounds, which can be expelled during eruptions.
Car emissions are another significant source of SO2 and NOx. Gasoline and diesel engines release nitrogen oxides (NOx) and sulfur dioxide (SO2) during the combustion process.
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Look at Model 1. If Rock B was formed in the Silurian Period, and Rock C was formed in the Permian Period, what type of boundary lies between B and C? Explain how this could have formed
Geologically speaking, the Silurian Period is the third stage of the Paleozoic Era. It covered the time between the end of the Ordovician Period and the start of the Devonian Period, starting 443.8 million years ago and ending 419.2 million years ago.
Continental altitudes were often much lower than they are today, and the sea level was significantly higher during the Silurian period. As the massive glaciers from the Late Ordovician ice period melted, sea level rose sharply. As a result of these rising temperatures, numerous faunal taxa were able to recover from the extinctions that occurred in the Late Ordovician. Shallow waters swamped vast areas of numerous continents, and coral reefs that resembled mounds were fairly frequent.
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what can a geologist understand by studying the fossil composition of sedimentary rocks? responsesa. how animals built their sheltersb. how life forms evolved over timec. how some extinct animals preyed on others for foodd. how land animals used rocks as habitats
Option 1: Geologists can learn how life forms evolved over time by examining the fossil makeup of sedimentary rocks (b).
Fossils are the preserved remnants or evidence of extinct species that serve as a record of the evolution of life on Earth. Fossils may be present in sediment, which accumulates and solidifies to produce sedimentary rocks. To ascertain the kinds of animals that existed at a specific epoch and how they evolved over time, geologists might examine the fossil content of sedimentary rocks. They can, for instance, utilise fossils to pinpoint key moments in the evolution of life, such the emergence of novel species and the extinction of others. They can also make use of fossils infer the ecosystems that these species inhabited and the evolution of those settings.
Therefore, option (b), which describes how life forms changed over time, provides the best response.
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where is the most fertile land in southwest asia based on the waterways
Calculate the most probable speed of an ozone molecule in the stratosphere, where the temperature is 270 k.
Answer:
Explanation:
The most probable speed of a molecule in a gas can be calculated using the Maxwell-Boltzmann distribution. The formula for the most probable speed is given by:
v_mp = (2kT/m)^(1/2)
Where v_mp is the most probable speed, k is the Boltzmann constant (1.38 x 10^-23 J/K), T is the temperature (270 K), and m is the mass of the ozone molecule (48 g/mol, or 48 x 10^-3 kg).
v_mp = (2 * 1.38 x 10^-23 * 270 / 48 x 10^-3)^(1/2)
v_mp = (2.68 x 10^-21 * 270 / 48 x 10^-3)^(1/2)
v_mp = (6.71 x 10^-20 / 48 x 10^-3)^(1/2)
v_mp = (6.71 x 10^-17)^(1/2)
v_mp = 2.59 x 10^-8 m/s
So the most probable speed of an ozone molecule in the stratosphere, where the temperature is 270 K, is approximately 2.59 x 10^-8 m/s.
identify the four tectonic settings of igneous activity.
Four tectonic settings of igneous activity are Continental Drift, Hot-spot volcano, Subduction Zone, Mid-ocean ridge.
Magmas are the source of igneous rocks, and plate tectonics is typically connected to magmas. Mafic (basaltic) and ultramafic magmas are important parts of the new oceanic crust and originate along the divergent midoceanic ridges. Along converging plate boundaries, more felsic magmas, such as andesites and rhyolites, are connected to the borders of the continental crust at subduction zones. The proportion of oceanic and continental crust in the subduction zone that melts to generate the magma may determine whether it is intermediate or felsic. It is believed that the lower continental crust's partial melting is responsible for the significant quantity of granitic intrusions in continental crust.
One continental plate's interior experiences intraplate igneous activity, which is hypothesized to be connected to
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Describe the purpose of the European Union
Select THREE correct answers:
A. Better Trade with the United States
B. Economic Interdependence
C. Common Currency, the Euro
D. Military Stability
E. Trade Agreements
I think it's B, C, and E but I want to double check
Answer:B, C and E
Explanation:The EU was originally created for the purpose of economic independence from the USA; the EU is not a military alliance, therefore the answers are B, C and E
the vernal equinox marks the start of what season? a) winter. b) fall. c) summer. d) spring.
The vernal equinox marks the start of the spring season. It is also known as the March equinox and usually occurs on March 20th or 21st.
During the vernal equinox, the day and night are approximately equal in length, with the amount of daylight increasing as the season progresses.The vernal equinox is caused by the Earth's tilt on its axis and its orbit around the sun. During this time, the Earth's tilt is neither pointing towards nor away from the sun, resulting in equal illumination of the Northern and Southern Hemispheres.In many cultures and religions, the vernal equinox is a significant time for celebrations and rituals, symbolizing renewal, rebirth, and new beginnings. It is also an important time for farmers and gardeners, as it marks the start of the planting season.The vernal equinox is the opposite of the autumnal equinox, which marks the start of the fall season. During the autumnal equinox, the day and night are also approximately equal in length, but the amount of daylight decreases as the season progresses.
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Consider only the Central Lowlands an the Great Plains. Which has the shortest grass and the smallest annual rainfall?A. Central Lowlands
B. Wyoming Basin Section
C. Colorado River
D. The Great Smoky Mountains
(A)Central Lowlands the shortest grass and the smallest annual rainfall to the Great Plains.
The National Park System should protect and exhibit the best examples of our greatnational landscapes, riverscapes and shores and undersea environments the processeswhich formed them the life communities that grow and dwell there in and the importantlandmarks of our history.There are serious gaps and inadequacies which must beremedied while opportunities still exist if the System is to fulfill the people's need alwaysto see and understand their heritage of history and the natural world.You should continue your studies to identify gaps in the System and recommend tome areas that would fill them Water is conveyed to larger drainage systems such as creeks,streams and rivers.During winter and spring,accumulation of snow may increase water.
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starry night on what date does the sun reach the most northerly point (the summer solstice) along the ecliptic? on what date does the sun reach the most southerly point (the winter solstice) along the ecliptic?
The summer solstice marks the sun's most northerly point, while the winter solstice marks the sun's most southerly point on the ecliptic.
The summer and winter solstices mark two of the most significant astronomical events that occur each year. The summer solstice, which occurs around June 20th or 21st, is the day when the sun reaches its most northerly point along the ecliptic. This marks the beginning of summer in the Northern Hemisphere and the beginning of winter in the Southern Hemisphere.
Conversely, the winter solstice, which occurs around December 21st or 22nd, is the day when the sun reaches its most southerly point along the ecliptic. This marks the beginning of winter in the Northern Hemisphere and the beginning of summer in the Southern Hemisphere.
It is important to note that while the solstices generally occur on these dates, the exact time and date can vary slightly from year to year. Nevertheless, these astronomical events have significant cultural and historical importance and are often celebrated in various ways by different cultures and societies.
For instance, the summer solstice is celebrated in many cultures with festivals and ceremonies to mark the beginning of the harvest season, while the winter solstice is often marked by celebrations of light and the coming of longer days. In all, the solstices, be it summer solstices or winter solstices are a reminder of the cyclical nature of our world and the changing of the seasons.
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on what scale is the explosivity of a volcano measured?
Answer:
The Volcanic Explosivity Index (VEI) is a scale that describes the size of explosive volcanic eruptions based on magnitude and intensity.
Explanation:
Is sand found in commercial sand and gravel deposits is typically composed of silicate minerals?
Sand in commercial sand and gravel deposits is usually made up of silicate minerals.
Silicates make up approximately 95 percent of the Earth's crust and upper mantle, and are found in significant quantities in sedimentary and metamorphic rocks as well as igneous rocks. They are also important components of lunar samples, meteorites, and the majority of asteroids.
The vast majority of the minerals in the Earth's crust are silicate minerals. Quartz, feldspar, mica, amphibole, pyroxene, olivine, and a wide range of clay minerals are among them.
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norwegian city located on an island is? crossword clue
The 4-letter Norwegian city crossword clue was last seen on January 08, 2023. We think the likely answer for this clue is OSLO.
The most probable answers to the crosswords and riddles for the clue Norwegian died in this city, which is the second most populous in Norway. from Bergen in Norway.A political and economic association of the city of the European countries with the ocean of the Eiffel Tower in the west of Europe Capital city of Germany.Our bold claim is that this part of Norway, with its many islands,if you leave the city lights behind, you can see much more of our universe.Sources differ on whether to consider Grenada and the Dutch territory.Curaçao both located on the islands of the Lesser Antilles to form part of North America.
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How is the structure of the atom related to the organization of the modern periodic table?
Answer:
Explanation:
The structure of the atom is directly related to the organization of the modern periodic table. The periodic table is based on the electronic configuration of atoms, that determines the chemical and physical properties of elements.
Atoms are composed of protons and neutrons,electrons.Atomic number is the number of protons present in the nucleus of an atom, and it defines an element.
In the periodic table elements are arranged in increasing order of atomic number, and elements which has same electronic configurations are placed in the same column or group. Electronic configuration of an atom defines its electron affinity, ionization energy, and reactivity, and thses are important chemical and physical properties which are used to classify elements and predict their behavior.
The elements of a periodic table is arranged in a way that elements within as same period have same electronic configurations, with outermost electron shells filling up from left to right. Such arrangement reflects the filling of electron shells and helps to predict the chemical behavior of elements and their reactivity towards other elements.
At the end, we can say that the structure of the atom and the arrangement of electrons in the electron shells are critical in determining the properties of elements and organizing them in the periodic table.
Why is surface water near the Equator not likely to sink down into the deep ocean?a. Because water near the Equator is much warmer than the deep ocean so there is no density difference between the surface and deep oceanb. Because water near the Equator is much warmer than the deep ocean so the surface water is much less dense and will not sinkc. Because water near the Equator is saltier than the deep ocean so the surface water is much more dense and will not sink
The correct answer is B. Because water near the Equator is much warmer than the deep ocean so the surface water is much less dense and will not sink.
The temperature of the water affects its density, with warmer water being less dense and cooler water being more dense. Water near the Equator is generally much warmer than the deep ocean because of the strong solar radiation at low latitudes, so there is a large temperature difference between the surface water and the deep ocean. This means that the surface water near the Equator is much less dense than the deep ocean, and therefore it is not likely to sink down into the deep ocean.
In contrast, in regions where the water is colder, such as at high latitudes near the poles, the surface water is denser than the deeper water, so it tends to sink down into the deep ocean. This process is important for the global circulation of ocean water, which helps to regulate Earth's climate and transport heat around the planet.
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Identify the scales of spatial analysis for researching the number of a nation’s flags flown privately in a town and those flown during Olympic ceremonies.
The scales of spatial analysis for researching the number of a nation's flags flown privately in a town and those flown during Olympic ceremonies could include: Local scale, Regional scale, National scale and Global scale.
1. Local scale: This scale would involve studying the flags flown in a specific town or city, such as by visiting various neighborhoods or public places and counting the number of flags being flown. This would provide an understanding of the local culture and level of patriotism.
2. Regional scale: This scale would involve analyzing the flags flown in a larger region, such as a county or state, and comparing the results with the national average. This could help to identify any regional differences or patterns.
3. National scale: This scale would involve analyzing the number of flags flown across the entire country and comparing the results with other countries. This would provide a broader perspective on the country's level of patriotism.
4. Global scale: This scale would involve analyzing the number of flags flown during international events such as the Olympics, and comparing the results with other countries. This would provide a sense of how a country is perceived globally, as well as the level of national pride and support for the athletes.
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northeastern china, north korea, south korea, northern japan, containing coniferous forests, temperate grasslands, and agriculture, are all part of what climate zone?
Northeastern china, north korea, south korea, northern japan, containing coniferous forests, temperate grasslands, and agriculture, are all part of the humid continental climate zone.
This climate zone is characterized by four distinct seasons with warm to hot summers and cold winters. The coniferous forests and temperate grasslands in the region thrive in the humid continental climate with ample rainfall and moderate temperatures throughout the year.
The agriculture in the region also benefits from the favorable climate, with crops such as rice, barley, and wheat being commonly grown. Overall, the humid continental climate supports a diverse range of vegetation and agricultural practices in northern Japan.
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3. The emancipation of the serfs transformed 19th
century Russia most by
1. modernizing the Russian army and navy
2. granting compulsory education to women
and peasants
3. creating an affluent middle class of land
owners
4. supplying millions of workers for factories
and mines
In the whole Russian Empire, the reform effectively ended serfdom. Serfs on private estates and domestic (home) serfs were to be freed, according to the 1861 Emancipation Manifesto. This order granted freedom to more than 23 million individuals.
Why is Russia called Russian?
Russia mediaeval state predominantly made up of East Slavs, was known as in Latin throughout the Middle Ages, and that is where the term Russia originated. Following the name of its major city, Kievan Rus, this state is frequently mentioned in contemporary historiography.
With a modest decline from the year before, Russia's crime rate in 2021 was about 1.37 thousand offences per 100,000 people. There were 262 fewer registered crimes per 100,000 persons between 2015 and 2021, according to the rate.
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What’s an issue in the broader world that you’ve become passionate about? What experiences made you become passionate about it?
Please be detailed, specific and explain. Giving out brainliest.
This is due today.
In writing an essay you must consider the structure of the essay, Hence, the structure of the essay should be considered;
The Introduction The body'The conclusionWhat is an essay?Generally, I have recently become passionate about the issue of racial injustice in the United States.
Growing up in a small town with a primarily white population, I didn't have much exposure to people of color and their experiences.
However, as I've gotten older and had more interaction with people of different backgrounds, I've realized just how damaging racism still is in our society. I've seen firsthand how people of color are discriminated against in jobs, housing, education, and other aspects of life. I've seen them treated as less than their white counterparts and it's heartbreaking.
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1. glacial scratch lamination 2. glacier's stopping point water table 3. cutoff meander oxbow 4. very fine abyssal muck seamount 5. wind-blown dust striation 6. hard, stony clay till 7. submarine extinct volcano loess 8. water covering the earth ooze 9. thin layer of sediment moraine 10. top of the saturated zone hydrosphere
Glacial scratch lamination, glacier's stopping point water table, cutoff meander oxbow, very fine abyssal muck seamount, wind-blown dust striation, hard, stony clay till, submarine extinct volcano lose, water covering the earth ooze, thin layer of sediment moraine and top of the saturated zone hydrosphere are explained here:
1. Glacial scratch lamination: This refers to the layering of sediment that is created by glacial movement. As a glacier moves, it picks up sediment and rocks from the ground and grinds them against the underlying bedrock, leaving scratch marks on the surface. The sediment is then deposited in layers, with each layer showing evidence of the scratches made by the glacier.
2. Glacier's stopping point water table: The water table is the level below the ground where the soil and rock are saturated with water. In areas where a glacier has advanced and then retreated, the water table can be influenced by the glacier's stopping point, which is the farthest point the glacier advanced to before retreating.
3. Cutoff meander oxbow: A meander is a loop in a river, and a cutoff occurs when the river erodes through the narrow neck of the loop, creating a new channel and leaving behind an oxbow lake.
4. Very fine abyssal muck seamount: This refers to the sediment that accumulates on the ocean floor in areas of very deep water. Abyssal muck is made up of fine particles of organic and inorganic matter, and it can accumulate to great depths in areas where there is little current to stir it up.
5. Wind-blown dust striation: Wind-blown dust can create striations on the surface of rocks, indicating the direction and strength of the wind that carried the dust.
6. Hard, stony clay till: Till is a type of sediment that is deposited by glaciers, and it can be made up of a variety of materials, including clay, sand, and rocks. Hard, stony clay till is a type of till that is made up of mostly clay and has a high concentration of large, hard rocks.
7. Submarine extinct volcano loess: Loess is a type of sediment that is made up of fine particles of silt and clay that have been deposited by wind. Submarine extinct volcano loess is a type of loess that has been deposited on the ocean floor near an extinct underwater volcano.
8. Water covering the earth ooze: Ooze is a type of sediment that accumulates on the ocean floor and is made up of the remains of dead marine organisms, as well as inorganic particles. Water covering the earth ooze refers to the ooze that is found on the ocean floor, which covers more than 70% of the Earth's surface.
9. Thin layer of sediment moraine: A moraine is a ridge of sediment that is left behind by a glacier as it retreats. A thin layer of sediment moraine refers to a moraine that has a relatively small amount of sediment deposited on it.
10. Top of the saturated zone hydrosphere: The hydrosphere refers to all of the water on and in the Earth. The top of the saturated zone is the level at which the soil and rock are completely saturated with water, and it marks the top of the area where groundwater can be extracted.
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What does a production possibilities frontier for widgets and gadgets identify?
Answer:
Given their productive resources, there are different combinations of widgets and gadgets they could produce. A PPF graph displays the different production options that are possible—or even impossible—for an economy.
this is a photo of a road cut through a mountain called sideling hill, in western maryland. what happened here? group of answer choices graffiti artists painted the roadcut to look like a bunch of bent rocks. bulldozers bent the rocks during the excavation of the road cut. slide-past forces moved the rocks from tennessee to maryland, where the rocks piled up at a bend in a san-andreas-type fault to form the appalachians of maryland. push-together forces when africa and europe ran into the americas bent the rocks, which later were exposed at the surface by erosion. pull-apart forces acting in geologically recent times caused fault-block faulting, forming the mountain.
The rocks at Sideling Hill in western Maryland were likely bent due to the push-together forces and erosion that occurred during the collision of Africa and Europe with the Americas, forming the Appalachian Mountains.
Sideling Hill, located in western Maryland, is a road cut through a mountain that exhibits a unique geological formation. The most likely explanation for this is that the rocks were bent by push-together forces when Africa and Europe collided with the Americas. This collision resulted in the formation of the Appalachian Mountains, which were then shaped and eroded over millions of years. The unique geological features of the mountain, including the rocks in Sideling Hill, were then exposed by erosion.
It is unlikely that the graffiti artists painted the road cut to look like a bunch of bent rocks or that bulldozers bent the rocks during erosion. While these explanations cannot be entirely ruled out, they do not explain the complex geological processes that shaped the Appalachian Mountains.
Overall, the formation of the geological features at Sideling Hill is a result of the slow and complex processes of mountain-building and erosion that have occurred over millions of years. These processes are a reminder of the immense scale of geologic time and the incredible forces that shape our planet.
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Which of the following is NOT a test used to identify minerals?
A. Luster
B. Cleavage
C. Melting point
D. Streak
The test that is NOT used to identify minerals is C. Melting point.
The other tests, including A. Luster, B. Cleavage, and D. Streak, are commonly used to identify and classify minerals. There are different types of minerals that have unique structures and compositions. Melting point is not typically used in the identification of minerals because it requires the mineral to be heated to extremely high temperatures, which is not practical or safe in most cases. Instead, the other tests are used to determine the physical properties of the mineral, which can help to identify it.
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Which of these sections of the article explains WHY Europeans became interested in settling in the Middle East?
Europeans became interested in settling in the Middle East is because Control over the road trade route. The correct option is (D).
What were the reasons for European expansion and exploration?Europeans yearned for the authority and wealth that would come from regulating trade. European traders would be able to bypass Middle Eastern intermediaries and take full advantage of eastern trade's profits if they could find all-water routes to Asia and its riches.
They intended to locate new supplies of gold, silver, and other valuables in addition to new trade routes and rich resource sources.
The Middle East's strategic importance and its oil wealth made it a region that European nations desired to rule. In the Eastern Hemisphere, the Middle East has long served as a crossroads of civilisation.
Therefore, Control over the road trade route motivated Europeans' interest in settling in the Middle East.
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This is an incomplete question, the complete question is:
The desire for knowledge that the Renaissance encouraged also led to an increase in adventure and curiosity. This will eventually prompt Europeans to explore the world around them.
FOR "GOD, GOLD, & GLORY
Europeans were not totally isolated from the world, they were involved in the Crusades to take back the Holy Lands (Middle East)
Europeans had neither interest nor ability to explore these foreign lands, but as the desire to grow rich and spread Christianity, coupled with advances in sailing technology, spurred an age of exploration.
EUROPEANS SEEK NEW TRADE ROUTES
The desire for new sources of wealth was a main reason for exploration.
Merchants & traders hoped to benefit from finding sea routes to accrue spices and other luxury goods from Asia.
During the Crusades, Europeans became accustomed to spices and luxury items that were easily found in the Middle East.
After the Crusade, demand for things like nutmeg, ginger, cinnamon, and pepper added to their bland food and the demand for the small supply that made it to Europe meant that merchants could charge extremely high prices. Italians & Muslims controlled the overseas routes to these luxury goods so monarchs of Europe decided to look for an overseas route.
Which of these sections of the article explains WHY Europeans became interested in settling in the Middle East?
Increase interest of Europeans in Spice and luxury of Middle EastIncrease slave trade from Middle EastExpand Islam in Middle EastControl over the road trade routeA picture of a portion of barth taken from on aerial (bird's eye) view
The picture of Barth taken from the aerial view shows close buildings as well as a snakelike road.
What is meant by aerial view?An aerial view refers to a view of a location or object from above, typically from the air. An aerial view can be achieved through various means, such as flying in an aircraft, using a drone, or looking at a map or aerial photograph.
Aerial views provide a unique perspective on a location, allowing you to see the layout, structure, and relationships between different elements. For example, an aerial view of a city can show you the location of roads, buildings, parks, and other features, and how they relate to one another. An aerial view of a landscape can show you the geography, topography, and natural features, such as rivers, mountains, and forests.
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the large flat region of the ocean floor and also known as the true ocean floor is called?
navigation tracking uses satellites to transmit signals that determine the location of a device. True or False
Navigation tracking uses satellites to transmit signals that determine the location of a device.
The given statement is true.
This technology is called Global Positioning System (GPS) and it uses a network of satellites that orbit the earth to locate and track devices. Each satellite sends signals to the GPS device, which measures the time it takes for the signal to reach it, and then calculates its distance from each satellite. By analyzing the signals from multiple satellites, the GPS device can triangulate its position on the earth's surface with remarkable accuracy. Navigation tracking is widely used in various fields such as transportation, aviation, marine navigation, military operations, and personal devices like smartphones and smartwatches. It has revolutionized the way we navigate and explore the world around us.
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