Answer:
landslide and avalanches is a type of mass movement caused by gravity
need the answer please lol
Answer:
A
Explanation:
It's not a new method, the other 3 are more technically advanced.
a narrow strip of land that connects two larger landmasses
A narrow strip of land that connects two larger land masses and separates two water bodies is called an Isthmus.
Since Isthmus lies at the connecting point of two large landmasses, its strategic location makes it ideal for setting up ports, canals, military camps, stations, etc. A natural outcome of such structures would be enhanced communication, exchange of knowledge, culture, and robust trade through this connection.
Some examples include the Isthmus of Panama which links continents of North and South America and separates the Pacific Ocean from the Atlantic Ocean. The Isthmus of Suez links the continents of Asia and Africa and separates the Red Sea from the Mediterranean Sea.
Both the above-mentioned Isthmus are expeditors of large-scale trade across the world. About 14,000 ships cross the Panama Canal between the Atlantic and Pacific Oceans every year.
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You randomly draw one marble from this collection. -
What is the probability of drawing a black marble? Write your answer
as a fraction
Answer:
What collection?
Explanation:
Why is Western Sahara not an independent nation?
Answer:
It became this way after a moroccan demand meaning it couldn',t be support itself with the economy given
Western Sahara is a disputed territory located in North Africa that is claimed by both the Kingdom of Morocco and the Polisario Front, a nationalist movement representing the Sahrawi people. The dispute over Western Sahara's sovereignty dates back to the late 19th century when European colonial powers claimed control over much of Africa.
In 1975, Spain, the colonial power in Western Sahara, withdrew from the territory, and both Morocco and the Polisario Front claimed sovereignty over it. The Polisario Front established the Sahrawi Arab Democratic Republic (SADR) in 1976 and declared Western Sahara to be its territory. However, Morocco refused to recognize the independence of Western Sahara and annexed the territory, leading to a military conflict between the two sides.
The United Nations has been involved in efforts to resolve the dispute, and in 1991, a ceasefire was declared, and a UN mission was established to monitor the situation. The UN has called for a referendum on self-determination for the people of Western Sahara, but this has not been implemented due to disagreements between Morocco and the Polisario Front over who should be eligible to vote.
The situation in Western Sahara remains unresolved, with Morocco controlling most of the territory, and the Polisario Front controlling a smaller area in the east. The international community is divided on the issue, with some countries recognizing the SADR as an independent state, while others recognize Moroccan sovereignty over the territory. The lack of a resolution to the conflict is due to the complex historical, political, and economic factors involved, as well as the interests of the parties involved.
Evaluate the difference between human time and geologic time.
PLEASE ANSWERRR FASTTT PLEASE ITS DUE 7 PLSSSS
Answer:
The Geologic Time Scale is a system of chronological measurements that relates to the study of rock and layers.
While the human time scale is the portion of the pedogenic time scale that covers periods of centuries, decades, or less.
Explanation:
The greater the mass of an object, the greater the gravitational pull on other
objects. (True or False)
True
Think of space and how we orbit around the sun
Answer:true
Explanation:
what does the addition of water to hot rocks in the mantle cause? question 3 options: a. it causes their temperature to decrease b. it causes their temperature to increase c. it causes their melting (solidus) temperature to decrease d. it causes their melting (solidus) temperature to increase
It causes their melting temperature (solidus temperature) and reduces the addition of water to hot rocks in the Earth's mantle.
Option c is correct .
Water has a significant impact on the melting behavior of rocks within the Earth's mantle. When water enters hot rocks, it acts as a flux, breaking mineral bonds and reducing rock viscosity. This process is called flux dissolution.
However, contrary to what has been said, the presence of water actually raises rather than lowers the melting temperature of rocks. Water molecules occupy space within the rock structure and break the bonds between the minerals that make up the rock. This turbulence increases the melting resistance and raises the temperature at which the rock begins to melt. In other words, adding water to hot rocks in the Earth's mantle increases its melting temperature (solidus temperature).
Hence, Option c is correct .
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a potential energy source from oceans is ________. a) solar reflection b) lightning strikes in salt water c) ocean thermal energy d) chemiluminescent bacteria e) magnetic field generators
The potential energy source from oceans is (c) ocean thermal energy.
This refers to the energy that can be harnessed from the temperature difference between the warm surface water and the colder deep water. This temperature gradient can be used to generate electricity through a process called Ocean Thermal Energy Conversion (OTEC). OTEC plants use a heat exchanger to transfer the heat from the warm water to a working fluid, which is vaporized and used to turn a turbine and generate electricity. This process does not produce any greenhouse gas emissions and has the potential to provide a significant amount of renewable energy. While solar reflection can also be a source of energy, it is not directly related to oceans. Lightning strikes in salt water, chemiluminescent bacteria, and magnetic field generators are not currently viable sources of energy from oceans.
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List What are two radioactive isotopes that are useful for dating rocks that are
older than 10 million years?
Answer:
rubidium-87 and strontonum-87
Explanation:
In this Assessment we will recreate one of the 20th Century's biggest astronomical discoveries: the unveiling of the first planet known to orbit a sunlike star other than our own. In 1995 two teams of astronomers published Doppler-wobble data for 51 Pegasi, a star in the constellation Pegasus that can be seen with the unaided eye on clear, dark nights. Let's analyze a Doppler-wobble plot for 51 Pegasi to learn what we can about its history-making companion. 51 Pegasi Experiment Procedure Measure the time (in hours) for two adjacent minima (or "valleys") in 51 Pegasi's Doppler plot. tleft = 36 Correct: Your answer is correct. hours tright = 140 Correct: Your answer is correct. hours From these values, calculate the orbital period, P, for 51 Pegasi's planet. (Enter your answer in hours.) 103.76 Correct: Your answer is correct. hours Convert this period into units of seconds. 373536 Correct: Your answer is correct. seconds Now measure the minimum and maximum velocity (in meters per second) from 51 Pegasi's Doppler plot. vmin = -57.24 Correct: answer is correct. m/s vmax = 63.38 Correct: Your answer is correct. m/s From these values, calculate the semiamplitude, K, of 51 Pegasi's velocity range. (Enter your answer in m/s.) 60.31 Correct: Your answer is correct. m/s Divide the period (in seconds) by the constant 4.19 ✕ 10−10 N · m2/kg2. Then take the cube root of that ratio. (Enter your answer in ((s · kg2)/(N · m2))1/3 .) 96200 Correct: Your answer is correct. s · kg2 N · m2 1/3 Take the 2/3 root of 51 Pegasi's mass. (Enter your answer in kg2/3.) 1.65 Incorrect: Your answer is incorrect. kg2/3 Calculate the product of the last three answers. This is the minimum mass of 51 Pegasi's planet (mP sin(i)), in kilograms. kg Divide your answer to the previous question by Jupiter's mass, mJ = 1.9 ✕ 1027 kg. mP sin(i) mJ = Which one of the following statements most accurately summarizes your findings? The star 51 Pegasi has a mass that is less than Jupiter's. The star 51 Pegasi has a planet whose minimum mass is less than Jupiter's. The star 51 Pegasi has a planet whose mass is less than Jupiter's
The star 51 Pegasi has a planet whose minimum mass is less than Jupiter's.
In this assessment, we analyze a Doppler-wobble plot for 51 Pegasi to learn about its history-making companion. We measured the time for two adjacent minima in 51 Pegasi's Doppler plot and calculated the orbital period (P) for 51 Pegasi's planet, which is 103.76 hours or 373,536 seconds. We then measured the minimum and maximum velocity from the Doppler plot and calculated the semiamplitude (K) of 51 Pegasi's velocity range, which is 60.31 m/s.
After dividing the period by the constant 4.19 x 10^(-10) N·m^2/kg^2 and taking the cube root of that ratio, we obtained 96,200 s·kg^2 N·m^2 ^(1/3). We then calculated the 2/3 root of 51 Pegasi's mass, which was incorrect at 1.65 kg^(2/3). However, by calculating the product of the last three correct answers, we can find the minimum mass of 51 Pegasi's planet (mP sin(i)) in kilograms.
From our findings, the most accurate statement is: The star 51 Pegasi has a planet whose minimum mass is less than Jupiter's.
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The oceanic crust of one plate is colliding with the continental crust of another plate. Which of these events are likely to take place as the two plates collide?
Answer:
A number of outcomes take place with oceanic-continental convergence. Because of the continental accretion process, some of the material from the oceanic crust gets scraped off and is added to the continental crust. In addition, the oceanic crust bends while subducting, forming a trench at the subduction zone. The movement of the two plates also releases pressure, which can cause violent earthquakes.
Explanation:
Edmentum
TRUE / FALSE .during the cretaceous, right before the dinosaurs kicked the bucket, there was no glaciers or ice sheets and so there was a seaway in the middle of the usa.
FALSE. During the Cretaceous period, which ended about 66 million years ago, there were actually glaciers and ice sheets present on Earth, particularly in Antarctica. However, there was still a seaway in the middle of the United States called the Western Interior Seaway.
The Western Interior Seaway was a shallow body of water that stretched from the Arctic Ocean to the Gulf of Mexico during the Late Cretaceous period. It divided North America into two land masses, Laramidia to the west and Appalachia to the east, and was home to a diverse array of marine life including sharks, mosasaurs, and ammonites.
The presence of glaciers and ice sheets during the Cretaceous period is evidenced by geological data such as sedimentary rocks and glacial deposits. While it is true that the Earth was much warmer during the Cretaceous period than it is today, it was not entirely ice-free.
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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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Directional selection only occurs in response to naturally occurring events. T/F
The statement "Directional selection only occurs in response to naturally occurring events" is false.
Directional selection is a type of natural selection that occurs when individuals with traits at one extreme of a phenotypic range have a higher fitness and reproductive success compared to individuals with traits at the other extreme or intermediate traits. This can lead to a shift in the average phenotype of a population over time.
While directional selection can certainly be influenced by naturally occurring events such as changes in the environment or predation pressures, it can also occur due to human-induced factors or artificial selection.
Humans, through selective breeding in agriculture or animal husbandry, can intentionally select individuals with desired traits, causing a directional shift in the population's phenotype.
Therefore, directional selection can occur in response to both naturally occurring events and human-induced factors.
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How did the city-state of athens make laws
Answer:
C.
Explanation:
Answer:
citizen/adult men...women were not nor was the military...
Which observation about an igneous rock would support the inference that the rock cooled slowly underground
Igneous rock can be formed by the cooling of molten magma or lava. This rock cools down gradually when it is in the underground, which causes the growth of crystals.
Hence, the observation that supports the inference that the rock cooled slowly underground is the presence of large crystals.What is an igneous rock?Igneous rock is a type of rock that forms from the cooling and solidification of magma or lava. This type of rock can be formed by the cooling of molten magma or lava. There are two main types of igneous rock: intrusive and extrusive.What is the formation of an intrusive igneous rock?An intrusive igneous rock is one that forms when magma cools down slowly and solidifies beneath the Earth's surface. This type of rock can take millions of years to form. Because of the slow cooling, crystals have enough time to form.
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three causes how heavy rainfall happens
Answer:
Evaporation, condensation, precipitation
Explanation:
where is Bangladesh? And what is the percentage of mountains there?
Bangladesh is a state present in the country of India. Nearly ten percent of Bangladesh contains mountains and hills.
Bangladesh is primarily a low-lying land. Hence 71% of its land is used for agricultural purposes.
Bangladesh is surrounded by hills in various directions. Chittagong hills in the southeast, the Low Hills of Sylhet in the northeast. There are significant highlands present in the north and northeast as well.
The Chittagong Hills are the most significant and contains at least 75 mountain peaks. The forest cover of Bangladesh is 12%. The highest of all is the mountain peak (Mowdok Mual).
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Activity
Consider the potential problems associated with global warming, as well as the actions people can take to help slow or stop its effects. Read this Knowledge Article and these descriptions of alternative methods for generating electricity. Then list the potential pros and cons of current energy sources. halp!!!
Answer:
Wind
Cons:
Generally requires a large amount of land for large scale use.Can only be used in windy areasNoisy and unattractivePros:
Renewable resourceCauses very little pollution. There are no emissions into the air because it does not use fuel combustion. Also doesn’t cause water pollution or land pollution.Land around turbines can be used for other purposes, such as farming.Nuclear
Cons:
Mining of uranium causes fossil fuel emissionsUses uranium, which is a nonrenewable resourceUses a large amount of water and causes water pollutionUsed uranium is radioactive and must be stored very carefullyPros:
Nuclear power plants do not cause air pollutionSolar
Cons:
Most effective in very sunny areas as the panels are charged best from direct raysSolar panels are expensive to installSome solar technologies use a large amount of land. Land used for solar thermal collection cannot be used for other purposesPros:
Renewable resourceDoes not cause pollution of air, land, or waterGeothermal
Cons:
Not easy to use when there are no naturally occurring hot springsPros:
Renewable resourceWhen natural hot springs occur, they can easily be used to create electricityConsidered a clean power source because it does not create pollutionHydroelectric
Cons:
Though it does not pollute water, dams built for hydropower plants change the flow of rivers, which alters ecosystems.Lakes created by hydroelectric dams and power plants change land use. Land cannot be used for any other purpose.Pros:
Renewable resourceCreates no air pollutionExplanation:
edmentum
Are unicorns real? I really need to know!!!
Just kidding this is for anyone who needs any extra points.
Explanation:
Most definatley! They are so real!
Answer:
Yes All you need is a goat and a imagination
Explanation:
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Define arable land.
Explanation:
Arable land is any land capable of being ploughed and used to grow crops. Alternatively, for the purposes of agricultural statistics, the term often has a more precise definition: "
I hope it's helpful for you......
Answer:
\(\huge\mathfrak\blue{answer}\)
Arable land refers to land under temporary crops (double- cropped areas are counted only once), temporary meadows. for mowing or pasture, land under market and kitchen. gardens and land temporarily fallow (less than five years). The abandoned land resulting from shifting cultivation is not.
A Jet takes off and travels 56 miles to achieve an altitude of 12.6 miles. What is the angle of elevation for the jet's path?
Answer: 13
Explanation:
A Jet takes off and travels 56 miles to achieve an altitude of 12.6 miles. The angle of elevation for the jet's path is 13.
What is an angle?An angle is the figure formed by two rays, called the sides of the angle, sharing a common endpoint, called the vertex of the angle. Angles formed by two rays lie in the plane that contains the rays. Angles are also formed by the intersection of two planes. These are called dihedral angles. Two intersecting curves may also define an angle, which is the angle of the rays lying tangent to the respective curves at their point of intersection.
Angle is also used to refer to the measure of an angle or of an angle of rotation. This measure is conventionally defined as the ratio of the length of a circular arc to its radius, and may be signed.
In the case of a geometric angle, the arc is centered at the vertex and delimited by the sides.
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To what environment does Newton’s Laws apply.
Newton's laws of motion can be used to solve motion problems in a variety of situations. Multiple force vectors acting in different directions on an object are present in some problems.
What are Newton's laws of motion?Newton's laws of motion are three fundamental classical mechanics laws that describe the relationship between an object's motion and the forces acting on it.
These laws specify how things move or stay still. Newton's laws govern how cars work, how water flows, how buildings stay standing, and how everything around us moves.
Therefore, Newton’s Laws apply to various situations.
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I need help someone pls
Answer:
True
Explanation:
Answer:
True
Explanation:
How does the government influence the way we live ?
Please help!!
Answer:
The government can controll a lolt of how we live.They control how much money we spend because theyt ake a portion of our paycheck.
Explanation:
Who was Copernicus and what he did for the science?
Answer:
a mathematician and astronomer who proposed that the sun was stationary in the center of the universe and the earth revolved around it.
Explanation:
Nicolaus Copernicus was a Renaissance polymath, active as a mathematician, astronomer, and Catholic canon, who formulated a model of the universe that placed the Sun rather than Earth at its center.
Copernicus, whose full name was Nicolaus Copernicus, was a Polish astronomer and mathematician who made significant contributions to the field of science. He is best known for his heliocentric theory, which proposed that the Earth and other planets revolve around the Sun.
Before Copernicus, the prevailing belief was the geocentric theory, which stated that the Earth was the center of the universe and that all celestial bodies orbited around it. Copernicus challenged this idea and proposed a new model where the Sun was at the center of the solar system, with the Earth and other planets revolving around it in circular orbits.
Copernicus's heliocentric theory was a revolutionary idea that laid the foundation for modern astronomy. It provided a more accurate explanation of the observed motions of celestial bodies and helped to resolve certain astronomical anomalies.
One of the main reasons for Copernicus's success was his use of mathematics to support his theories. He developed mathematical models and formulas that explained the movements of the planets in a way that was consistent with observation. His work in mathematics and astronomy paved the way for future scientific discoveries and advancements in the field.
Although Copernicus's ideas were not immediately accepted during his lifetime, they eventually gained wider recognition and had a profound impact on the scientific community. His work laid the groundwork for the scientific revolution and influenced subsequent astronomers such as Galileo Galilei and Johannes Kepler.
In summary, Copernicus was an astronomer and mathematician who proposed the heliocentric theory, which revolutionized our understanding of the solar system. His use of mathematics to support his theories and his contributions to astronomy have had a lasting impact on the field of science.
Copernicus was a mathematician and astronomer. He made a significant contribution to science by proposing the heliocentric model, which states that the sun is at the center of the universe and the Earth revolves around it. This idea challenged the prevailing geocentric model, which believed that the Earth was at the center. Copernicus' work revolutionized our understanding of the universe and paved the way for future advancements in astronomy.
Nicolaus Copernicus was a Polish mathematician and astronomer who lived during the 16th century. He is best known for his heliocentric theory, which proposed that the sun was the center of the universe and that the Earth and other planets revolved around it. This theory challenged the prevailing belief at the time, which held that the Earth was the center of the universe.
Copernicus' heliocentric model revolutionized our understanding of the cosmos and laid the foundation for modern astronomy. His work, published in his book "De Revolutionibus Orbium Coelestium" (On the Revolutions of the Heavenly Spheres), provided a mathematical framework for explaining the motions of the planets. He also provided evidence and arguments against the geocentric model, which placed the Earth at the center of the universe.
Copernicus' heliocentric theory had a significant impact on the scientific community and laid the groundwork for future astronomical discoveries. It challenged the prevailing dogma of the time and paved the way for the advancements made by later astronomers, such as Johannes Kepler and Galileo Galilei. Copernicus' ideas helped to shape the scientific revolution and our modern understanding of the universe.
He was the first European scientist to propose that Earth and other planets revolve around the sun, the heliocentric theory of the solar system.
what is meant by alternative energy list any five uses of it
Answer:
alternative energy is any energy that does not use fossil fuel.
it is used in
generating energy that produces no green house gas emissions from fossil fuels thus reducing air pollutioncreating economic development and job opportunitiesin solar energy for heatin water to gather electricity by hydroelectric power plantsExplanation:
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Lines s and t are perpendicular. If the slope of line s is 5, what is the slope of
line t?
А. -1/5
B. -5
C. 1/5
D. 5
Answer:
-1/5
Explanation:
It is an established mathematical proof that the slope of line A perpendicular to another line B is the recoprovaknofokad
Hence the slope of B = the negative reciprocal of B
Given that ; lines s and t are perpendicular ;
Slope of S = 5 ;
The slope of T = - 1/5
6-10 How Intensity of an earthquake different from magnitude of an earthquake?
Answer:
"If you add 1 to an earthquake's magnitude, you multiply the shaking by 10. An earthquake of magnitude 5 shakes 10 times as violently as an earthquake of magnitude 4; a magnitude-6 quake shakes 10 times as hard as a magnitude-5 quake; and so on."- www.Science.org
Explanation:
For more information www.science.org
A formal boundary can be between?
Answer:
separate states, provinces, or countries from one another.
Explanation: