Answer:
B
Explanation:
I did it on edge 2020.
Transform boundaries on an earthquake distribution map can be found where earthquakes are shallow and powerful.
What is an earthquake?Earthquake, any sudden ground trembling brought on by seismic waves moving through the planet's rocks. When a kind of energy held inside the Earth's crust is abruptly released, typically when masses of rock rubbing up against one another unexpectedly crack and "slide," seismic waves are created.
Geologic faults, which are confined areas where rock masses can move in relation to one another, are where earthquakes happen most frequently. The largest tectonic plates that make up the crust of the Earth are where the majority of the world's major fault lines are found.
Prior to the development of seismology at the beginning of the 20th century, nothing was known about earthquakes. Long-standing concerns like why and how earthquakes happen have been resolved by seismology, which is the scientific study of all aspects of earthquakes.
Major earthquakes on Earth mostly happen in belts that are located along tectonic plate borders. This has been clear for a while from early earthquake catalogs and is even more obvious from modern seismicity maps that include instrumentally determined epicentres.
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How were the Nambicuara peoples similar to and different from
the other main indigenous peoples of early Brazil?
Answer:
The similarity between the Nambicuara and other indigenous peoples was the dependence of nature for their survival, the difference was that the Nambicuara were nomadic peoples, while the other indigenous peoples used to have a permanent home.
Explanation:
Brazil has about 817,963 indigenous people, divided into more than 300 different ethnicities. Each indigenous ethnic group has its own characteristics, culture and history. Among these, one of the most studied and commented on indigenous peoples is the Nambicuara, who currently live in the Brazilian cerrado and in the Amazon rainforest. The main peculiarity of this indigenous tribe is the nomadic nature, as they used to move the tribes wherever there was a need, especially food resources.
Which of the following is a common multigrade engine oil?
75W-140
80W-90
30W-60
5W-30
5W-30 is a common multigrade engine oil. The correct option is 4. 5W-30.
Multigrade engine oils are designed to perform effectively in a wide range of temperatures. The numbers in the oil's viscosity rating indicate its performance in cold (first number) and hot (second number) conditions. 5W-30 indicates that the oil has a viscosity rating of 5 in cold weather and 30 in hot weather, making it suitable for various temperature conditions.
5W-30 is a commonly used multigrade engine oil due to its versatility in different climates. Its ability to provide proper lubrication during cold starts (low temperature) and maintain stability under high operating temperatures makes it a popular choice for many modern engines. By using a multigrade oil like 5W-30, vehicle owners can ensure adequate engine protection and performance across a range of temperatures.
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where's the caspin sea located at is it near asia or europe
Answer:
europe
Explanation:
Caspian Sea lies in Eastern Europe
ural mountains in russia is the border between europe & asia
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"Explain how deforestation can have economic impacts" (6 marks)
The Economic Impact of Deforestation
Deforestation and economic impact cannot be the two sides of the same coin. As long as there is economic growth our environment would continue to be on the verge of danger.
Each year our environment gets degraded little by little and the forests are the ones who have to pay a huge price for the increased profits. A loss of 27% has been attributed due to the conversion of forests for agriculture and other energy consumption purposes. About 50% of the forests became the victims of forestry operations and another 23% came into the clutches of the wildfire.
Now the above points may summarize the negative impact but let us take a lot into few points about the negative impact of deforestation.
The short-term effects: While clearing out the forests may generate a high level of income. Still, at the same time, some other important factors should be taken into accounts such as the exploitation of the lives of poor people living in rural areas, poor working conditions and labour exploitation due to the conversion of changes the forest lands into agricultural lands.
Ignoring the big picture: Not only do forests provide us with the gifts of nature but at the same time they are the homes to 80% of the known and unknown species of the world. Clearing out the forests erases the natural habitat, resulting in the extinction of many species worldwide. Not only the animals are in danger but the loss of biodiversity could cause a loss of billions in the field of science.
Disrupting the water cycle and increasing soil erosion: As the water cycle changes, it harms a few specific industries. On the other hand, forests lock the soil and its nutrients together and prevent them from being washed down by the water.
Global warming: No one can ignore the fact that as more forests get cleared from the land, the temperature of the Earth would continue to increase leading the climatic changes and global warming.
Long-run economic profits: The forests may now contribute towards the short-run economic profits but in the future, if we fail to preserve the forests there would be a huge global impact in the long run. There may come a time when forests would be completely eradicated from the face of the earth.
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Identify some of the peoples who invaded South Asia.
Answer:
Turkish-speaking Muslim tribes
Explanation:
Answer:
Muslim Peoples
Explanation:
At the beginning of the 11th century, Turkish-speaking Muslim tribes invaded the subcontinent from the northwest and frequently declared a Jihad (holy war against nonbelievers on behalf of Islam) to extend their control over the Indo-Gangetic plain and its people.
Which of the following statements about plate movements is the correct one?
a. Plates move as a result of the pressure in the Earth's core.
b. The movements are driven by the convection currents in the mantle.
c. As the Earth's surface is fixed, the plates have to move to complete for space.
d. The magma is the main cause of plate movement.
Answer: b
Explanation: Heat is produced through the radioactive decay of elements in the inner core. This heats the lower mantle, causing the magma to become less dense and rise. Once it reaches the upper mantle it cools, becomes more dense and sinks. Tectonic plates are able to move because Earth's lithosphere has greater mechanical strength than the underlying asthenosphere. Lateral density variations in the mantle result in convection; that is, the slow creeping motion of Earth's solid mantle. Plate movement is thought to be driven by a combination of the motion of the seafloor away from spreading ridges due to variations in topography (the ridge is a topographic high) and density changes in the crust (density increases as newly-formed crust cools and moves away from the ridge). At subduction zones the relatively cold, dense oceanic crust sinks down into the mantle over the downward convecting limb of a mantle cell. The relative importance of each of these factors and their relationship to each other is unclear, and still the subject of much debate.
the answer is B. the movement are driven by the convection currents in the mantle
Countries that are on the rise economically and growing in importance in the global economy but still have large numbers of the population living in poverty are considered __________ economies. A. core B. semi-periphery C. periphery D. external
Answer:
i believe it is (b.) semi-periphery
Explanation:
semi-periphery is in between periphery, or poor and less-developed, and core, or more highly developed and economically stable.
Answer:
b
Explanation:
Please Help Me!!!!!!
a picture of the Gobi desert?
All the planets orbit the Sun
OA. in perfect circles.
OB. at the same speed.
OC. in triangular orbits.
OD. in nearly circular orbits.
They all orbit the sun in elliptical movements, or nearly circular orbits
I hope that helped you out :)
Select the correct answer. Why is this statement not a hypothesis? sunflowers require soil and plenty of sunlight and water to grow and thrive. A. It is a well-known fact. B. It is a proven theory. C. It is not falsifiable. D. It is difficult to test.
Answer:
A. It is a well-known fact.
Explanation:
A hypothesis is an opinion about an observation, not a fact.
Which geographical feature is found in the middle east?
Answer:
Fertile Crescent
Explanation:
The low birth and death rates for a country in stage 4 of the demographic transition model are best explained by
А
the rural population and agricultural livelihood of a less developed country.
B
the level of education and traditional roles for women in a less developed country to
С
the resource-based economy and life expectancy of a less developed country
D
the level of urbanization and technological advancement of a more developed country
E
the environmental pollution and manufacturing infrastructure of a more developed country
Answer:
E
Explanation:
The stage 4 is best explained by the level of urbanization and technological advancement of a more developed country.
The demographic transition models is a model that shows the transition of a country's population from high birth and death rates to low birth and death rate and vice versa.
There is an established 4 stage of demographic transition models.The Stage 4 of a country demographic transition model shows the transition of its population to one with low birth rate, low death rate and slower population growth.Most developed countries belongs to the 4th stage of demographic transition model.In conclusion, the level of urbanization and technological advancement brings an enlightenment on birth control advantage. Death rate also reduced as a result of improved health care facilities.
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How can the wind systems in an environment affect life for people?
Answer: Wind systems in an environment can have various effects on people's lives. Here are some ways in which wind systems can impact human life:
Climate and weather patterns: Wind systems play a crucial role in shaping climate and weather patterns. Prevailing winds can bring cool ocean breezes or hot desert winds, influencing the local temperature, humidity, and overall weather conditions. These patterns can affect agriculture, water availability, and daily activities.
Air quality: Wind can help disperse pollutants and improve air quality by carrying away pollutants and bringing in fresh air. However, strong winds can also carry dust, smoke, or allergens, which may worsen air quality and lead to respiratory issues.
Energy generation: Wind energy is harnessed by wind turbines to generate electricity. Areas with strong and consistent wind patterns can utilize wind power as a renewable energy source, reducing dependence on fossil fuels and contributing to a cleaner environment.
Transportation and navigation: Wind systems can influence transportation, especially for maritime and aviation sectors. Wind direction and intensity impact sailing routes, flight paths, and travel times. Strong winds can cause delays, affect navigation safety, or even lead to the cancellation of flights or sea voyages.
Outdoor activities and recreation: Wind conditions influence various outdoor activities such as sailing, surfing, paragliding, and kite flying. Winds can provide favorable conditions for these activities or pose challenges depending on their strength and consistency.
Natural disasters: Certain wind systems, such as hurricanes, tornadoes, or cyclones, can pose significant threats to human life and property. These severe weather events can cause destruction, displacement, and loss of lives if proper precautions and emergency measures are not in place.
Ecosystems and biodiversity: Wind plays a vital role in seed dispersal for plants and pollination for some species. It also influences the distribution of plant and animal populations. Changes in wind patterns due to climate change or habitat alteration can disrupt ecosystems and impact biodiversity.
It is important to recognize that the effects of wind systems can vary depending on the specific geographical location, climate, and local conditions. Understanding and adapting to these effects are essential for sustainable development and ensuring the well-being of communities in wind-affected environments.
Explanation:
what causes winds to deflect to flow in a counterclockwise direction around a low pressure system (such as a hurricane) in the northern hemisphere?
The deflection of winds to flow in a counterclockwise direction around a low pressure system in the Northern Hemisphere, such as a hurricane, is primarily caused by the Coriolis effect. The Coriolis effect is an apparent deflection of moving objects, including air currents, due to the Earth's rotation.
In the Northern Hemisphere, as air moves from high pressure to low pressure, it tries to flow in a straight path, but the rotation of the Earth underneath it causes a deflection. The Coriolis effect deflects the air to the right of its intended path. As a result, the air curves counterclockwise around the low pressure center.
The strength of the Coriolis effect depends on the speed of the wind and the latitude. At higher latitudes, closer to the poles, the Coriolis effect is stronger, resulting in a more pronounced deflection.
This is why hurricanes in the Northern Hemisphere exhibit a distinct counterclockwise circulation pattern, with winds spiraling inward towards the low pressure center.
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Most detrital clastic sediment on earth forms by the weathering and erosion of _______________ ranges.
Most detrital clastic sediment on earth forms by the weathering and erosion of mountain ranges.
What is detrital clastic sediment?Mineralized Sedimentary Rocks (Clastic) Detrital or clastic sedimentary rocks are made up of pre-existing sediment fragments that come from the bedrock that has weathered. Although some of the clasts may be fragments of chemical rocks, the majority of this is sediment that has mechanically weathered.
How do weathering and erosion affect mountain ranges?Gravity is the primary constraining factor for mountain growth. Thus, erosion quickens the tectonic processes taking place beneath the mountains by lowering the weight of the mountain range. Because of this, erosional processes can be thought of as "sucking" crust up toward the surface and forming mountain ranges.
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Help me out me please please please
I
Note that the area of the windshield that is swept by the wiper blade is approximately 54π² or 1696.5in² (Option A)
What is the explanation for the above response?To find the area swept by the wiper blade, we need to know the length of the path that the wiper blade follows as it moves across the windshield. We can use the length of the swinging arm and the angle of rotation to calculate this.
When the arm rotates 120 degrees, the wiper blade sweeps out an arc of a circle with a radius of 24 inches (the length of the swinging arm). The length of this arc can be found using the formula:
length of arc = (angle in radians) x (radius)
To convert the angle in degrees to radians, we multiply by π/180:
120 degrees x π/180 = 2π/3 radians
So the length of the arc swept by the wiper blade is:
length of arc = (2π/3) x 24
= 16π inches
Now we can use the length of the arc and the length of the wiper blade to find the area swept by the wiper blade. The area swept by the wiper blade is approximately equal to a sector of a circle with radius 18 inches and central angle 120 degrees. The area of this sector can be found using the formula:
area of sector = (angle in radians) x (radius)² / 2
Again, we need to convert the angle to radians:
120 degrees x π/180 = 2π/3 radians
So the area swept by the wiper blade is:
area of sector = (2π/3) x (18)^2 / 2
= 162π/3
= 54π in² or 1696.5in²
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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.
By what percent did Morocco’s urban population increase between 2000 and 2015
Answer:
the urban population had increase by 5 percent to 60.2 percent as of 2015
A company is expanding its building area from 11,500 square feet to 16,100 square feet. what is the percentage increase of the area of the building space?
The percentage increase of the area of the building space is 40%.
To calculate the percentage increase of the area of the building space, we can use the following formula:
Percentage increase = (New area - Original area) / Original area) * 100
Given that the original area is 11,500 square feet and the new area is 16,100 square feet, we can substitute these values into the formula:
Percentage increase = ((16,100 - 11,500) / 11,500) * 100
Calculating this expression:
Percentage increase = (4,600 / 11,500) * 100
Simplifying the division:
Percentage increase = 0.4 * 100
Finally, we get:
Percentage increase = 40%
Therefore, the percentage increase of the building space area is 40%. This means that the building area has increased by 40% from its original size of 11,500 square feet to the new size of 16,100 square feet.
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Summarize the causes of the seasons
1. What is the largest metropolitan area
in Africa?
O Abuja
O Cairo
O Lagos
O Mogadishu
Answer:
O Cairo
Explanation:
what is a steep stream bank on the outside of a bend in the river?
A cut bank is basically a steep stream bank which is present outside the of a bend in the river.
A cut bank which is also sometimes known as a river cliff or a river-cut cliff, is basically the outside bank of a curve or a meander present in a water channel, which is continuously undergoing the process of erosion.
These cut banks are basically found in abundance along mature or the meandering streams and they are found to be located on the outside of a stream bend. They have a shape which is similar to that of a small cliff, and are formed by the erosion of soil. Cut banks are almost vertical and steep.
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Where is Salt Lake City located
Answer:
Utah :)
Explanation:
Answer
Utah :) ...
Map Below >>
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What does relative location tell you?
A
a place's exact position on Earth
B
why people moved to a certain place
C
a place's position in relation to other people and places
D
how a place is similar to other places
Answer:
The answer is C
Explanation:
Learned this in semester one in geography.
The San Andreas fault causes many of the earthquakes in California. Which shows the movement of plates in the location where the fault line is?
Tectonic setting of the transform plate boundary of the san andreas fault in california,the oceanic-continental collision convergent plate boundary subduction zone in the pacific northwest.
Along geological boundaries,landscapes are shaped. the san andreas fault is one such boundary,the divide between two major tectonic plates the pacific plate and the north american plate.two plates sliding past each other form a transform plate boundary.the famous transform plate boundaries occur in the san andreas fault zone,which extends under water. natural or man-made structures that cross a transformation boundary are offset, split into pieces,and transported in opposite directions.the san andreas fault is the most famous fault in the world.Its notoriety stems in part from the disastrous 1906 san francisco earthquake,but more importantly because it passes through california,a highly populated state that is frequently in the news.
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Select all the correct answers.
A.
B.
The area of a baseball field bounded by home plate, first base, second base, and third base is a square. If a player at first base throws the ball to a player
at third base, what is the distance the player has to throw?
C.
Third
D.
90 feet
First
90 feet
Home
16, 200 feet
√180 feet
√16, 200 feet
180 feet
If a player at first base throws the ball to a player at third base, the distance the player has to throw the ball is option C. √16,200 ft.
To determine the distance the player has to throw the ball from first base to third base, we can calculate the diagonal of the square formed by the bases. Since a square has equal sides, the diagonal is the hypotenuse of a right triangle with sides of equal length.
The length of each side of the square is the distance between adjacent bases. In baseball, the distance between adjacent bases is 90 feet. Therefore, each side of the square is 90 feet.
Using the Pythagorean theorem, we can find the length of the diagonal (d) of the square:
\(d^2\) = \(90^2\) + \(90^{2}\)
\(d^2\) = 8100 + 8100
\(d^2\) = 16200
d = √16200
Therefore, the distance the player has to throw the ball is √16,200 ft. Therefore, the correct answer is option C.
The Question was Incomplete, Find the full content below :
The area of a baseball field bounded by home plate, first base, second base, and third base is a square. If a player at first base throws the ball to a player at third base, what is the distance the player has to throw?
A. 16200 ft
B. \(\sqrt{180}\) ft
C. \(\sqrt{16200}\) ft
D. 180 ft
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the ocean is stratified (layered) based on temperature and density. what is a region of rapidly changing temperature (t) called? rapidly changing density (d)?
In the ocean, a region of rapidly changing temperature is known as a thermocline. and region of rapidly changing density is referred to as a pycnocline.
The thermocline is a layer where the temperature changes rapidly with depth, separating warmer surface waters from colder deep waters. This transition zone often exhibits a steep temperature gradient.
On the other hand, a region of rapidly changing density is referred to as a pycnocline. The pycnocline is a layer where the density of water changes rapidly with depth. It separates the relatively less dense surface waters from the denser deep waters. The pycnocline is typically associated with the thermocline, as the changing temperature contributes to the changing density in the water column.
Similar to the thermocline, the pycnocline acts as a barrier, separating different layers of water based on their density. Above the pycnocline, the water is less dense, and below it, the water is denser. The depth of the pycnocline can vary and is influenced by factors such as temperature and salinity gradients.
The presence of a pycnocline affects the vertical movement of water masses and the mixing of nutrients and gases in the ocean. It can impact the distribution of marine organisms, as some species may be restricted to specific depth ranges due to density preferences.
It's important to note that the thermocline and pycnocline are often closely related, with changes in temperature driving density variations and vice versa. Their characteristics can vary depending on the location and oceanic conditions, making the ocean a complex and dynamic system.
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Mt. Everest is 29,032 feet high. Air pressure at the top is 228mmHg. Assuming that the proportion of gases in air at that altitude is the same as at sea level, what is the partial pressure of oxygen at the top of Mt. Everest, rounded to the nearest whole number?
O 20mmHg O 46mmHg O 48mmHg
O 207mmHg
O 218mmHg
O 585mmHg O 606mmHg
O 627mmHg O 1297mmHg O 4777mmHg
The correct answer is C, The partial pressure of oxygen at the top of Mt. Everest is approximately 48 mmHg.
First, let's find the total atmospheric pressure at the top of Mt. Everest:
Total atmospheric pressure = Air pressure at the top of Mt. Everest = 228 mmHg
Now, we can calculate the partial pressure of oxygen:
The partial pressure of oxygen = Proportion of oxygen * Total atmospheric pressure
The proportion of oxygen = 20.9% (which can be written as 0.209)
Partial pressure of oxygen = 0.209 * 228 mmHg ≈ 47.6 mmHg
Rounding this value to the nearest whole number, the partial pressure of oxygen at the top of Mt. Everest is approximately 48 mmHg.
Everest, also known as Mount Everest, is the highest peak in the world and a majestic mountain located in the Himalayas. Standing at a towering height of 8,848.86 meters (29,031.7 feet), Everest is situated on the border between Nepal and China (Tibet Autonomous Region). It is a part of the greater Himalayan range and has captivated the imagination of mountaineers and adventurers for centuries.
The first successful ascent of Everest was achieved by Sir Edmund Hillary of New Zealand and Tenzing Norgay, a Sherpa of Nepal, in 1953. Since then, climbing Everest has become a significant goal for mountaineers from around the globe, but it remains an incredibly challenging and dangerous feat. The harsh weather conditions, extreme altitude, and treacherous terrain make it a daunting undertaking, requiring physical endurance, technical skills, and careful planning.
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Explain the difference between Greek and Muslim contributions to the notion of climate variability
across the earth
Answer:
See the explanation for the full answer.
Explanation:
Greek and Muslim contributions to global climate variability diverged in approach and methodology.
Aristotle, Hippocrates, and Theophrastus were Greek scholars who investigated the natural world and recorded their findings in their books. Aristotle thought that the earth was made up of four elements: earth, water, air, and fire, and that variations in the proportions of these components created environmental changes. He also noticed that latitude and elevation differences were related to climate changes. Aristotle's disciple Theophrastus examined plants and their relationship to climate and discovered that various plants flourished in different conditions.
Muslim scholars, on the other hand, made substantial contributions to climate research by developing scientific instruments and employing mathematical models. During the Islamic Golden Age, which spanned from the eighth through the fourteenth centuries, improved equipment for monitoring temperature, humidity, and wind direction was developed. Muslim scientists, such as Al-Khwarizmi and Al-Farabi, used mathematical models to anticipate weather patterns and analyze the causes of climate change. These models were created using observations from nature as well as theoretical calculations.
Therefore, Greek contributions to the climate variability concept involved observing and recording natural events. In contrast, Muslim contributions concerned the construction of scientific instruments and mathematical models to explain and predict climatic patterns.