There are different reasons why Appalachian Plateau region is not that good for farming. Agriculture more successful in the valley and ridge region than in the Appalachian plateau because;
The land in Appalachia is not that good for intensive crop production because it is known to have rough terrain. A large percentage of the cropland are often used to produce hay and other parts of the land in farms is only used for pasture production.Agriculture in the Ridge and Valley consist of mostly dairy farming and beef cattle. They also produce corn, soybeans, and tobacco etc.
The Ridge and Valley are known to be some part of the Appalachian Highlands in the eastern United States
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Would you consider fish a renewable or nonrenewable resource
Answer: Renewable resource
Explanation: A renewable resource is a source that can remake or reuse. An example is that Coal is nonrenewable because we can't make it or reuse it. But we can grow fish and they can have eggs and new fish born so that fish is a renewable resource.
what is the name of the significant port located along the mississippi river close to the gulf of mexico?
The name of the significant port that is located along the Mississippi River and closer to the Mexican Gulf is the Gulf of New Orleans.
The Gulf of New Orleans is among the most geographically significant ports in the American part of the world. It acts as a great connectivity between the America and other parts of the world. Moreover, being close to the Mississippi River has also helped to develop trade along this port, added to the benefits it receives by being very closer to the Gulf of Mexico.
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Select all that apply
Recycling is a way____?
(mutiple choice) PLEASE HELP
O to increase the supply of nonrenewable resources
O to increase resource use
O for industry to increaseprofits
O to reduce solid waste
O to reuse resource
on which factor does the energy of star depend
Answer:
The size of the star
Answer:
Mass determines how hot the stellar core gets in response to gravitational contraction, and since the rate of nuclear burning is very sensitive to temperature, a star's mass determines the energy production rate (luminosity), and whether/when gravitational contraction can lead to explosive release of energy for massive
Explanation:
which of the giant planets was predicted to exist mathematically before it was ever seen through a telescope?
Neptune was predicted to exist mathematically before it was ever seen through a telescope.
Neptune, the eighth planet circling the Sun, was found by astronomers on the nights of September 23 and 24, 1846. Based on mathematical calculations of its expected position as a result of observable changes in the orbit of the planet Uranus, the discovery was made. Neptune is too faint to be seen with the human eye due to its immense distance from the Sun, hence the discovery was made using a telescope. A moon orbiting Neptune was quickly found by astronomers, but it took more than a century to find a second one. The scientific discoveries made during Voyager 2's flyby of Neptune in 1989, including the confirmation of dark rings around the planet and the finding of five more moons, dramatically expanded our understanding of distant Neptune.
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How long does it take a satellite to make on pass around the Earth?
A. 15 minutes
B. 59 minutes
C. 1.5 hours
D. 50 hours
How many spring tides occur in the time it takes the Moon to make one complete orbit around Earth? Describe what the Moon looks like from Earth during each occurrence.
There are approximately 12-13 spring tides that occur in the time it takes the Moon to make one complete orbit around Earth, which is approximately 27.3 days.
A spring tide occurs when the Sun, Earth, and Moon are aligned in a straight line, which happens twice a month during the new moon and full moon phases. During these times, the gravitational forces of the Sun and Moon combine, resulting in higher than average tides.
When the Moon is in the new moon phase, it appears as a dark circle in the sky, as the side facing Earth is not illuminated by the Sun. During a spring tide, the high tide is higher than usual, and the low tide is lower than usual. Conversely, during the full moon phase, the Moon appears as a bright, fully illuminated circle in the sky. During a spring tide, the high tide is even higher than usual, and the low tide is even lower than usual.
It's important to note that the Moon's orbit is not perfectly circular, so the number of spring tides that occur during one orbit can vary slightly. Additionally, other factors such as weather patterns and the shape of the coastline can also affect the height and timing of tides.
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list the methods of conversion of the sun
Answer:
Three ways of converting solar energy into other forms of energy: (a) producing chemical fuel via artificial photosynthesis, (b) generating electricity by exciting electrons in a solar cell, and (c) concentrating sunlight to produce heat
Explanation:
A tropical forest, usually of tall, densely growing trees
O A.
Llanos
O B.
Cerrad
O c.
Pampas
o D.
Rain Forest
Answer:
d rain forest
Explanation:
rainforests are a area of tall mostly evergreen trees and a high amount of rainfall
What does the design of the UN flag represent?
The world is held together by the UN.
The world is united within the universe.
Governments keep the world together as one.
The UN protects the world from conflict.
Answer:
The UN protects the world from conflict.
Explanation:
The insignia in the United Nations flag consists of two Olive branches, encasing the map of the world and the spherical earth. These emblems are on a blue background. The two olive branches, the map of the world and the spherical earth are represented in white colors. The olive branches symbolize peace among the nations of the world.
These emblems serve as a reminder of the United Nation's purpose in maintaining peace within the nations of the world. The flag was officially launched on poles on October 20,1947.
Answer:
The UN protects the world from conflict.
Explanation:
D
Sputnik was the first unmanned satellite launched into orbit in 1957. During which decade were manned satellites first sent into orbit?.
Sputnik was the first unmanned satellite launched into orbit in 1957. Unmanned satellite launches that were successful in the 1950s were followed in the 1960s by manned satellite launches. During the 1960s were manned satellites first sent into orbit.
On October 4, 1957, the Soviet Union launched Sputnik, the first artificial satellite ever made, ushering in the "Space Age." The Sputnik spacecraft was launched from the Tyuratam launch site in the Kazakh Republic at 10:29 p.m. Moscow time after the Russian word meaning "fellow traveler. "Sputnik orbited the Earth once every hour and 36 minutes, measured 22 inches in diameter, weighed 184 pounds. Its elliptical orbit, which was moving at a speed of 18,000 miles per hour, had an apogee that was 584 miles from Earth and a perigee that was 143 miles away. Sputnik was a satellite that could be seen via binoculars before sunrise or after sunset. It also sent radio signals back to Earth that were powerful enough for amateur radio operators to receive.
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Answer:
Explanation:
Sputnik was the first unmanned satellite launched into orbit in 1957. Unmanned satellite launches that were successful in the 1950s were followed in the 1960s by manned satellite launches. During the 1960s were manned satellites first sent into orbit.
On October 4, 1957, the Soviet Union launched Sputnik, the first artificial satellite ever made, ushering in the "Space Age." The Sputnik spacecraft was launched from the Tyuratam launch site in the Kazakh Republic at 10:29 p.m. Moscow time after the Russian word meaning "fellow traveler. "Sputnik orbited the Earth once every hour and 36 minutes, measured 22 inches in diameter, weighed 184 pounds. Its elliptical orbit, which was moving at a speed of 18,000 miles per hour, had an apogee that was 584 miles from Earth and a perigee that was 143 miles away. Sputnik was a satellite that could be seen via binoculars before sunrise or after sunset. It also sent radio signals back to Earth that were powerful enough for amateur radio operators to receive.
Choose two spheres of Earth which interact when hot springs are formed. Use complete sentences to explain how they interact during this process.
Answer:
The atmosphere and the hydrosphere
Explanation:
In the Northern (and Southern) Hemisphere, the ________________ cell is the continuous atmospheric convection cell that has an ascending limb near the equator and a descending limb near 30 degrees latitude. The columns of vertical movement are connected by south-moving winds at low altitudes and north-moving winds at high altitudes.
Answer:
Hadley.
Explanation:
In 1735, George Hadley proposed a model of the atmospheric circulation for planet Earth and it was referred to as the Hadley cell.
Hadley cell are low-latitude overturning circulations which comprises warm, moist air that rises into the atmosphere near the equator and air sinking at roughly 30 degrees latitude.
This ultimately implies that, the Hadley cell is the continuous atmospheric convection cell in the Northern and Southern Hemisphere which have an ascending limb near the equator and a descending limb near 30 degrees latitude.
Additionally, the south-moving winds and north-moving winds connect the columns of vertical movement at low altitudes and high altitudes respectively.
After gaining independence in 2011, which country became internationally recognized as the newest country in the world? croatia.
Answer:
South Sudan
Explanation:
It got independence in 9 July 2011 through a referendum
what is the capital of Combodia?
Answer:
Phnom Penh
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What is El Niño? Identify at least two ways in which El Niño changes the weather of a region
when would the slave tribes move?
one of the most general conclusions to be drawn from plate tectonic theory is that
One of the most general conclusions to be drawn from plate tectonic theory is that the Earth's lithosphere is divided into several rigid plates that move and interact with each other.
Plate tectonic theory describes the dynamic behavior of the Earth's lithosphere, which is composed of the crust and the uppermost part of the mantle. The theory suggests that the lithosphere is fragmented into several distinct plates that float on the underlying semi-fluid asthenosphere.
The key aspects of plate tectonic theory include:
1. Plate boundaries: The boundaries between plates are the sites of intense geological activity. There are three main types of plate boundaries: divergent boundaries where plates move apart, convergent boundaries where plates collide, and transform boundaries where plates slide past each other.
2. Plate movement: Plates move due to the underlying convection currents in the asthenosphere. This movement, known as plate motion, occurs at rates of a few centimeters per year. It drives various geological processes, including the formation of mountains, earthquakes, and volcanic activity.
3. Continental drift: Plate tectonic theory supports the idea of continental drift, explaining how continents have moved and changed their positions over geological time. It explains the similarities between the coastlines of different continents, such as the fit of South America and Africa.
4. Geological hazards: Plate tectonics provides insights into the distribution of geological hazards such as earthquakes, volcanic eruptions, and tsunamis. These hazards often occur at plate boundaries where tectonic forces are concentrated.
In summary, one of the most general conclusions of plate tectonic theory is that the Earth's lithosphere is fragmented into rigid plates that move and interact with each other. This understanding helps explain the Earth's geological activity, the distribution of continents and oceans, and the occurrence of geological hazards.
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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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Give one reason why this image supports the theory of plate tectonics
(plsss help me - 20 points are available!)
Answer: This image shows fault lines.
Explanation: Fault lines are physical and cartographic divisions of different tectonic plates. This supports the theory of plate tectonics because the theory explains the structure of the earth's crust and many associated phenomena are resulting from the interaction of rigid lithospheric plates which move slowly over the underlying mantle, and which are fractionated by multiple crevices called fault lines.
What happens to the position and strength of the oceanic semi-permanent high pressure centers in the Northern Hemisphere, from January to July
Overall, from January to July, the oceanic semi-permanent high pressure centers in the Northern Hemisphere shift poleward and weaken, reflecting the seasonal changes in atmospheric circulation and the migration of the subtropical high pressure systems.
In the Northern Hemisphere, the position and strength of oceanic semi-permanent high pressure centers undergo seasonal changes from January to July.
During January, the high pressure centers are typically located over the oceans, such as the North Atlantic High and the North Pacific High. These high pressure systems are stronger and more dominant during the winter months. They are associated with cold, dense air masses descending from higher latitudes, creating stable atmospheric conditions and clear skies.
As the Northern Hemisphere moves into the summer months, particularly around July, the high pressure centers shift poleward. They become weaker and less dominant compared to the winter months. This shift is influenced by the migration of the subtropical high pressure belt, known as the subtropical ridge or subtropical high. The subtropical high moves northward in response to the seasonal migration of the Sun, resulting in the displacement of the high pressure centers.
The poleward movement of the high pressure centers during summer is often associated with the expansion of the warm air masses from lower latitudes. These warm air masses can result in more variable weather patterns, including the formation of convective storms and the potential for tropical cyclones in certain regions.
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Earthquakes can be induced in relatively stable areas, away from plate boundaries due to?
Earthquakes can indeed occur in relatively stable areas away from plate boundaries. These earthquakes are known as induced earthquakes and are typically caused by human activities rather than natural tectonic processes. Some common causes of induced earthquakes include:
1. Fluid Injection: Injecting large volumes of fluids, such as wastewater from oil and gas operations, deep underground can increase pore pressure and change the stress distribution in the rocks. This alteration of stress conditions can trigger seismic activity.
2. Mining Activities: Mining operations, particularly those that involve extracting minerals or extracting and injecting fluids from underground, can cause stress changes and lead to induced seismicity.
3. Reservoir Induced Seismicity: The filling of large reservoirs, such as those created by dams, can induce earthquakes. The weight of the water in the reservoir can exert stress on the underlying rocks, potentially causing faults to slip and generate seismic events.
4. Geothermal Energy Extraction: Geothermal energy extraction involves the extraction of heat from underground reservoirs. The fluid injection and withdrawal processes associated with geothermal operations can induce seismicity.
5. Hydraulic Fracturing (Fracking): Fracking is a technique used in the extraction of oil and gas from shale formations. The high-pressure injection of fluid into the rocks can create fractures, and the release of stored stress in the surrounding rocks can lead to induced seismic activity.
It's important to note that while induced earthquakes can occur in stable areas, they are generally of smaller magnitude compared to earthquakes along major tectonic plate boundaries.
However, in some cases, induced earthquakes can reach significant magnitudes and cause damage to infrastructure and pose risks to local communities.
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When tornadoes pass through regions, they can strip the land down to bare soil. Exposing this bare soil could lead to increased —.
Answer:
Soil erosion.
Explanation:
Denudation of the top soil layer is referred to as soil erosion. It contributes to soil degradation. Hence When tornadoes pass through regions, they can strip the land down to bare soil. Exposing this bare soil could lead to increased Soil Erosion .
What is Soil Erosion ?
The dynamic activity of erosive factors, such as water, ice (glaciers), snow, air (wind), plants, and animals, is what Soil erosion, which can occur at an alarming rate or be a plodding process that generally passes unnoticed, can lead to a significant loss of topsoil.
Loss of soil in agriculture may have negative effects on drainage systems, crop production capacity, and surface water quality.
Soil erosion can also cause sinkholes. causes this natural process (including humans). Erosion is sometimes classified according to these agents as water erosion, glacier erosion, snow erosion, wind erosion (aeolian erosion), zoogenic erosion, and anthropogenic erosion like tillage erosion.
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A mass of granite is in contact with a layer of sandstone. Using a principle described in this chapter, explain how you might determine whether the sandstone was deposited on top of the granite or whether the magma that formed the granite was intruded after the sandstone was deposited.
Answer:
Granite in crustal rock and are felis rocks that are found near to the surface
Explanation:
The granite is a coarse-grained intrusive igneous rock and are commonly white, pink and grey and is massively hard and ruff. More commonly found in the continental crust and sandstone is a mainly sand-sized rock fragment and is resistant to weathering. They are a result of the deposition of layers of sand grains on top of the granite.what factor is unable to determine the climate of an area?
temperature of air
time of day
wind and ocean current
moisture
The factor on which climate of an area doesn't depend upon :
Time of a dayCities have both negative and positive effects on the environment.
Answer:
Yes!
Explanation:
Here are some examples:
Some Positive Effects:
- Jobs (investment)
- Nourishment (food)
- Education
- Home and Residence
Some Negative Effects:
- Polution to the enviroment
- Upheaval rampage
Cite examples of changes brought about by a shift from rural to urban living.
pls help asap!!! ty :)
Answer:
As populations transition from rural to urban living, many social changes take place. For example, as people move to urban environments, they tend to live in closer proximity to each other. This presents problems when it comes to sanitation and hiegiene.
Explanation:
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Question 5 of 10
Which technology is shown in the diagram
O A. Gel electrophoresis
O B. Biostimulation
ОООО
C. Remote sensing
O D. Polymerase chain reaction
Answer:
c
Explanation:
you got this and never give up
Answer:
gel electrophoresis
Explanation:
what are the precautions to be taken while using an aneroid barometer?
Answer:
gotta make sure that it doesnt explode
Explanation:
aneroid barometers, while rare, can explode
On the map above, country 6 is __________ and country 2 is __________.
A.
Japan . . . Mongolia
B.
South Korea . . . China
C.
Japan . . . China
D.
South Korea . . . Mongolia