Explanation:
With a total worth of $33.50 trillion, Saudi Arabia has the second most valuable natural resources in the world. The country has the second-largest proven petroleum reserves, and is the largest exporter of petroleum in the world.
...
Economy of Saudi Arabia.
An earthquake causes a one 100 mile square area to be fractured into four different geographical areas. Two of the areas have a river running through them, the other two have ponds. Which of the following is a likely scenario based on the new geography? Within a couple years, the areas with the rivers will have many more plants than the areas with the ponds. Animals that need access to large quantities of salt water will be found in the area with the ponds. Flying animals will be able to cross back and forth between the two areas easily. Over time, the areas with the rivers will have less animals than the areas with the ponds.
Answer:
hfuihvcrilkvdfikn
Explanation:
The earth quake has some dangerous quality that's why people are everything that you have to my dear friend and coordination..........
what is the independence section of litosphere
p
Answer:
Crest, asthenosphere, mantle, outer core and inner core.
Explanation:
The independence section of lithosphere are crest, asthenosphere, mantle, outer core and inner core. The first layer of lithosphere is crest which is 100 km thick. Asthenosphere is the ductile part of the earth present just below the crest. The asthenosphere is about 180 km thick and it is also a part of mantle. Mantle is present between the crest and outer core which is 2,900 kilometers thick. After mantle, outer core layer is started which is present in liquid form and having 2,200 kilometers thick whereas inner core layer is present in solid form and having 5,100 kilometers thick.
Approximately how many miles wide and long are the countries of sudan and south sudan?.
Sudan is approximately 1,490 miles wide and 1,410 miles long, while South Sudan is approximately 930 miles wide and 660 miles long.
Sudan is a large country located in northeastern Africa. It spans a significant area, with an estimated width of approximately 1,490 miles from east to west and a length of around 1,410 miles from north to south. These measurements give an approximate sense of the country's overall size and dimensions.
South Sudan, which gained independence from Sudan in 2011, is located to the south of its parent country. It is smaller in size compared to Sudan, with an estimated width of approximately 930 miles from east to west and a length of around 660 miles from north to south.
It's important to note that these measurements are approximate and can vary based on different sources and interpretations of the borders. The actual sizes of countries can be subject to some degree of variation and may also change over time due to factors like territorial disputes or land reclamation.
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This is a proportional reasoning calculation. You will want to set up equations, but mostly to look at how the orbital distance affects the orbital velocity, or to set up a ratio. (Once you know how it changes you'll have to multiply by the value at the surface to get an answer in m/s.)
At the surface of the exoplanet HD34445 d, the orbital velocity would be 1.78E+4 m/s.
What would the orbital velocity be 10 radii above the surface?
_____m/s.
Note: If your answer requires scientific notation, remember that OWL uses "e" notation: 1.1 x 10⁵ is 1.1e5 to OWL.
The formula for calculating the velocity of an object orbiting in a circular path around another is: V=√(G(m₁+m₂)/r)Where V is velocity, G is the gravitational constant, m₁ is the mass of the first object, m₂ is the mass of the second object, and r is the radius of the circle.
In this scenario, we can make the assumption that the mass of HD34445d is negligible relative to the star it is orbiting around. Hence, the equation can be simplified to
V=√(GM/r)The velocity at a distance r₁ from the center of mass of a star is proportional to the square root of the gravitational force, which is proportional to the mass of the star. Because the mass of the star is constant, we may use the following equation:
V₂/V₁=√(r₁/r₂)
Where V₁ is the velocity of the planet at a distance r₁ from the center of the star, V₂ is the velocity of the planet at a distance r₂ from the center of the star, r₁ is the distance from the center of the star to the planet's surface, and r₂ is the distance from the center of the star to a point 10 times the radius of the planet's surface. We can solve for V₂ using this formula:
V₂=V₁√(r₁/r₂)
The orbital velocity at a distance 10 radii above the surface can be calculated as follows:
V₂=V₁√(r₁/r₂)V₂
=1.78E+4 m/s * √(1 / (1 + 10))V₂
=1.78E+4 m/s * √(1 / 11)V₂
=1.78E+4 m/s * 0.3162V₂
=5628 m/s
The orbital velocity at a distance 10 radii above the surface of the exoplanet HD34445d would be 5628 m/s.
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what benefits does the ocean provide us? how does the ocean influence the other 30% of the planet? what would earth be like without any oceans?
The ocean provides numerous benefits to us, including regulating the climate, producing oxygen, and providing food and medicine. It also plays a crucial role in the water cycle and absorbs carbon dioxide, helping to mitigate the effects of climate change.
The ocean influences the other 30% of the planet through ocean currents, which affect the distribution of heat and nutrients, and by supporting diverse marine ecosystems, which in turn support life on land. Without any oceans, the earth would be vastly different.
The climate would be more extreme, with temperatures fluctuating wildly between day and night. Land-based life would struggle to survive without the regulation of the water cycle and the provision of oxygen by marine plants.
The absence of the ocean's absorbing capacity would lead to an increase in atmospheric carbon dioxide, exacerbating climate change. Overall, the ocean plays a critical role in maintaining the balance and health of our planet.
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Which of the following statements accurately describes a segment of the mid-ocean ridge spreading at a rate of 3 centimeters per year?
Choose all that apply.
A) It would be classified as an oceanic rise.
B) It would create a broad, swollen region symmetrical to the axis of the ridge.
C) It would be classified as an oceanic ridge.
D) It would have a prominent and deep rift valley.
E) It would have few, widely spaced volcanoes associated with it.
The following statements, options (B), (C),and (D) accurately describe a segment of the mid-ocean ridge spreading at a rate of 3 centimeters per year:
B) It would create a broad, swollen region symmetrical to the axis of the ridge.
C) It would be classified as an oceanic ridge.
D) It would have a prominent and deep rift valley.
A) It would be classified as an oceanic rise: This statement is incorrect. An oceanic rise refers to a section of the mid-ocean ridge where the rate of spreading is slow, usually less than 2 centimeters per year. Therefore, it does not apply to a segment spreading at a rate of 3 centimeters per year.
B) It would create a broad, swollen region symmetrical to the axis of the ridge: This statement is accurate. As magma rises and new crust is formed at the mid-ocean ridge, it creates a broad, elevated region known as the ridge axis. The region is typically symmetrical, with a gentle slope on either side of the ridge axis.
C) It would be classified as an oceanic ridge: This statement is accurate. A mid-ocean ridge is an underwater mountain range formed by the upwelling of magma and the spreading of tectonic plates. A segment with a spreading rate of 3 centimeters per year would be classified as an oceanic ridge.
D) It would have a prominent and deep rift valley: This statement is accurate. As the plates separate and new crust is formed, a rift valley forms at the center of the ridge axis. The rift valley is characterized by a deep depression or trench-like feature. A segment spreading at 3 centimeters per year would likely have a prominent and deep rift valley.
E) It would have few, widely spaced volcanoes associated with it: This statement is incorrect. A segment of the mid-ocean ridge with a spreading rate of 3 centimeters per year is considered to have a moderate spreading rate. It would typically exhibit a higher frequency of volcanic activity and a greater number of volcanoes compared to slower spreading segments. Therefore, it would have more volcanoes, not fewer, and they would be relatively closely spaced along the ridge axis.
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As the solar system formed, how did the higher proportion of radioactive elements in the protoplanets influence planetary development?
A. It reinforced the compression caused by gravity.
B. It powered the motion of planets toward their final orbits.
C. It provided a heat source to help drive layer differentiation.
D. It altered the elements so planets would have the same compositions.
Answer:
C. It provided a heat source to help drive layer differentiation.
Explanation:
The higher proportion of radioactive elements in protoplanets aided planetary development by providing a heat source that aided in layer differentiation.
Numerous small bodies known as protoplanets were present during the early stages of the solar system's formation. These protoplanets gradually accumulated mass through collisions and gravitational interactions, eventually maturing into the planets we see today.
Radioactive elements, such as uranium, thorium, and potassium, are unstable and decay radioactively, producing heat as a byproduct. A localised heat source was created because of the presence of these radioactive elements within the protoplanets. As the radioactive elements decayed, they released significant heat energy, contributing to the protoplanet's overall heat budget.
The heat produced by these elements' radioactive decay was critical in driving the process of layer differentiation within the protoplanets. The differentiation of different materials within a planetary body based on their densities is called layer differentiation. The materials within a protoplanet became more molten and wholly or partially melted as the interior heated up due to radioactive decay.
Because of their higher density, heavier elements sank toward the core during this molten state, while lighter elements rose to the surface or formed an intermediate layer. In the case of terrestrial planets like Earth, this process is known as planetary differentiation, and it resulted in the formation of distinct layers such as a metallic core, a rocky mantle, and a crust.
The heat produced by radioactive decay was also crucial in shaping the internal structure of planets. It aided in forming the mantle, a molten or partially molten layer beneath the crust. Convective currents driven by this heat were critical in plate tectonics and material recycling on the planet's surface.
As new land is formed at layer A from magma that breaks through the surface of the Earth and cools, what type of rock
would be predominantly generated?
A)
Sedimentary rock, as it will cover old landscapes
ing
11
ols
B)
Metamorphic rock, as it changes from magma to lava to rock
o
Igneous rock, as molten magma and lava cools to form new land
D)
Intrusive rock, as it breaks free from the inner mantle to the outer mantle
Answer: C
Explanation: Igneous rocks (derived from the Latin word for fire) are formed when molten hot material cools and solidifies. Igneous rocks can also be made a couple of different ways. When they are formed inside of the earth, they are called intrusive, or plutonic, igneous rocks. If they are formed outside or on top of Earth’s crust, they are called extrusive, or volcanic, igneous rocks.
Granite and diorite are examples of common intrusive rocks. They have a coarse texture with large mineral grains, indicating that they spent thousands or millions of years cooling down inside the earth, a time course that allowed large mineral crystals to grow.
Alternatively, rocks like basalt and obsidian have very small grains and a relatively fine texture. This happens because when magma erupts into lava, it cools more quickly than it would if it stayed inside the earth, giving crystals less time to form. Obsidian cools into volcanic glass so quickly when ejected that the grains are impossible to see with the naked eye.
Extrusive igneous rocks can also have a vesicular, or “holey” texture. This happens when the ejected magma still has gases inside of it so when it cools, the gas bubbles are trapped and end up giving the rock a bubbly texture. An example of this would be pumice.
Explain how the El Niño event affected weather, food production, water supply, or human health. What is a possible solution to reduce the damaging effects?
El Nino can also cause heavy rains, flooding or extremely hot or cold weather. This can lead to animal disease outbreaks and forest fires.
What is EL Nino?The El Nino refers to a warming of the ocean surface, or above-average sea surface temperatures, in the central and eastern tropical Pacific Ocean.
The El Nino is not a yearly phenomena. It recurs irregularly, from two years to a decade, and no two events are exactly same. El Nino events can disrupt normal weather patterns in the globe.
El Nino can also cause heavy rains, flooding or extremely hot or cold weather. This can lead to animal disease outbreaks and forest fires.
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The height of tides changes throughout the day mainly because *
a. the Earth rotates on its axis, changing the side of Earth that faces the moon.
b. the Earth rotates on its axis, changing the side of Earth that faces the sun.
c. the moon revolves around Earth throughout the day.
d. the Earth rotates on its axis and the spin causes water to be "left behind".
Answer:
c. (the moon revolves around the Earth throughout the day)
Explanation:
Are GMOs used worldwide?
Yes, GMOs are used worldwide, although their usage varies from country to country.
Genetically modified organisms (GMOs) are organisms whose genetic material has been altered using genetic engineering techniques. These techniques, generally known as recombinant DNA technology, use DNA molecules from different sources, which are combined into one molecule to create a new set of genes. This DNA is then transferred into an organism, giving it modified or novel genes.
They are used primarily in the production of food, feed, and fiber, but are also used in pharmaceuticals, cosmetics, and other products. They are used to produce bread, cheese, yogurt, meat, fruit, and vegetables. They can also be used to produce pharmaceuticals, cosmetics, and other products.
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which south american country is known as the "land of poets?"
chile
spain
america
Answer:
chile
Explanation:
because of its highly-valued poetry tradition.
The South American country known as the "land of poets" is Chile. This nickname reflects the country's rich literary history and the many notable poets who have hailed from Chile or made it their home. Thus, option A is correct.
Chile has a long tradition of poetry, dating back to the colonial era, when Spanish poets wrote about the natural beauty and cultural richness of the region. In the 20th century, Chile became known for its avant-garde and socially engaged poets, such as Pablo Neruda, Gabriela Mistral, and Nicanor Parra.
These poets tackled issues such as political oppression, social inequality, and the relationship between humans and nature, and their work has had a lasting impact on Chilean and world literature.
In addition to its literary heritage, Chile is also known for its stunning landscapes, from the Atacama Desert in the north to the fjords and glaciers of the south. This natural beauty has inspired many poets over the years, and continues to draw visitors from around the world.
In summary, Chile is known as the "land of poets" due to its rich literary tradition and the many notable poets who have come from or been associated with the country. Chilean poets have tackled a range of social and political issues, and their work has had a lasting impact on literature worldwide. Thus, option A is correct.
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what volume of co2 gas is produced when 20g of 20% pure caco3 is completely heated
20 g of 20% means you have 20*0.2 - 4 g CaCO3 to start.
pls mark me as brainliest
Answer:
i dont understand sorry
soryyy
What is the definition of development?
A.
the process by which arable land turns dry and unusable
B.
the preservation of different species of plants and animals
C.
the study of the effect of gas emissions on climate change
D.
the use of data to monitor and study economic and social change
Please select the best answer from the choices provided.
A
B
C
D
Answer:
D.
Explanation:
Data-driven approaches are often used to inform policy-making, planning, and decision-making processes to promote positive development outcomes.
Answer: D the use of data to monitor and study economic and social change
What is Development?Development refers to using data to monitor and study economic and social change. It is the process of growth or improvement, especially in terms of social and economic progress. This includes progress in areas such as education, healthcare, infrastructure, and the economy. Development can be measured by indicators such as Gross Domestic Product (GDP), literacy rates, and life expectancy.
What are some of the key skills needed for developers?
To succeed as a developer, there are several key skills that you should focus on developing. These include technical skills such as coding and debugging and soft skills such as communication and collaboration.
How can you stay up-to-date with the latest developments in your field?Staying up-to-date with the latest developments in your field is essential for anyone looking to succeed as a developer. One way to do this is by attending conferences and workshops, reading blogs and industry publications, and networking with other professionals in your field.
What are some common pitfalls to avoid when developing software?There are several common pitfalls that developers should be aware of when developing software. These include failing to properly test your code, not documenting your work, and failing to communicate effectively with your team.
How do you balance the need for innovation with the need for stability in your projects?Balancing the need for innovation with the need for stability in your projects can be challenging. One approach is to focus on developing a solid foundation that can support innovation over time, while also being open to new ideas and approaches.
What are some best practices for project management in a development context?Project management is an important aspect of successful development. Some best practices include setting clear goals and expectations, establishing a regular communication cadence, and using agile methodologies to keep projects on track.
What are some of the ethical considerations that developers need to be aware of?Developers must be aware of many ethical considerations when working on software projects. These include issues related to data privacy, security, and accessibility, as well as broader issues related to social responsibility and the impact of technology on society.
How can you foster a culture of continuous improvement in your development team?Fostering a culture of continuous improvement is essential for any development team. This can be done by encouraging open communication, providing regular feedback and training opportunities, and setting clear goals and expectations.
What role does user feedback play in the development process?User feedback is essential for successful development. By gathering feedback from users, developers can better understand how their products are being used and make informed decisions about how to improve them.
What are some of the benefits of open-source development?Open-source development can offer some benefits, including increased collaboration and innovation, faster development cycles, and a more diverse and inclusive community.
How can you ensure that your development team is diverse and inclusive?Ensuring that your development team is diverse and inclusive is essential for fostering a culture of innovation and creativity. This can be done by actively seeking out a diverse range of candidates when hiring, providing training and support for underrepresented groups, and creating a welcoming and inclusive work environment.
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Which best describes the climate on and around Mount Kilimanjaro?
A. Frozen
B. Desert
C. Rain forest
D. Fertile
seafloor spreading . group of answer choices creates new oceanic crust creates new continental crust closes ocean basins destroys old oceanic crust
Option A, Tectonic plates generate new ocean crust through the geologic process of seafloor spreading.
In mid-ocean ridges where tectonic plates are separating, magma rises from the mantle and solidifies to generate new crust. The ocean basin widens as a result of this process, and additional seabed is produced.
The freshly produced crust gradually moves away from the ridge axis and is subducted at a convergent plate boundary as it cools and grows denser over time.
A key force behind plate tectonics and the geologic development of the Earth's surface is the continuous formation and destruction of the oceanic crust.
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Seafloor spreading is a geologic process in which tectonic plates?
group of answer choices:
a. creates a new oceanic crust.
b. creates new continental crust
c. closes ocean basins
d. destroys old oceanic crust
What happens to the temperature as the atmosphere increases away from Earth?
Answer:
it decreases and will get colder
Explanation:
Along with Earth's crust, which portion of the
upper mantle forms the lithosphere?
Answer:That is, cooler and more rigid outer portion. The lithosphere of the Earth comprises the crust and the uppermost mantle that forms the rigid and hard outer layer of the Earth. The lithosphere is sub-differentiated into tectonic plates.
Answer:
Along with Earth’s crust, which portion of the upper mantle forms the lithosphere?
A. cooler, more rigid outer portion
B. hotter, liquid-like inner portion
C. cooler, liquid-like inner portion
D. hotter, more rigid outer portion
Provide at least two arguments supporting the theory that glycolysis is believed to be the first energy production mechanism on earth
Glycolysis is believed to be the first energy production mechanism on Earth due to its universal presence in all living organisms and its ability to function in anaerobic conditions. Its simplicity and efficiency made it a crucial energy source for early life forms.
Glycolysis is believed to be the first energy production mechanism on Earth based on two key arguments. First, glycolysis is a universal metabolic pathway found in all living organisms, including both prokaryotes and eukaryotes. This suggests that glycolysis has ancient origins and has been conserved throughout evolution, indicating its fundamental role in early life forms. Second, glycolysis is a relatively simple metabolic pathway that does not require oxygen and can occur in anaerobic conditions, making it suitable for the early Earth when oxygen levels were low or absent.
Glycolysis is a series of biochemical reactions that occur in the cytoplasm of cells, breaking down glucose into pyruvate and producing a small amount of ATP. It is an anaerobic process, meaning it does not rely on oxygen for its functioning. This is crucial because the early Earth's atmosphere was predominantly composed of gases such as methane, ammonia, and carbon dioxide, lacking significant amounts of oxygen. Therefore, glycolysis would have been advantageous as an energy production mechanism for early life forms, providing them with a means to generate ATP in an oxygen-depleted environment.
Furthermore, the simplicity of glycolysis supports its role as an ancient energy production mechanism. It involves only a few enzymatic steps and can operate under basic conditions, making it accessible to early life forms with limited cellular machinery. The ability of glycolysis to generate ATP quickly and efficiently from glucose would have provided early organisms with a vital energy source for essential cellular processes and survival. Therefore, based on its ubiquity across all forms of life and its compatibility with the conditions of the early Earth, glycolysis is considered to be the primary energy production mechanism that emerged during the early stages of life on our planet.
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Which combination of land cover and sun exposure do you expect to have the highest relative humidity? a. Vegetated land cover and direct sun exposure b. Vegetated land cover and shaded exposure c. Artificial land cover and direct sun exposure d. Artificial land cover and shaded exposure
Vegetated land cover and shaded exposure is expected to have the highest relative humidity. option a and c are correct.
Vegetation releases water vapor through a process called transpiration, which can increase the humidity in the surrounding air. Shaded exposure can reduce evaporation and help to maintain moisture levels in the soil and vegetation, which can further contribute to higher humidity. Direct sun exposure can increase the temperature and evaporation rate, which can lead to lower humidity levels. Artificial land cover such as concrete or asphalt can also increase temperature and reduce moisture levels, further decreasing the humidity. Therefore, options (a) Vegetated land cover and direct sun exposure and (c) Artificial land cover and direct sun exposure are expected to have lower relative humidity compared to the other options.
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im confused on this one help please
What is El Nino and what does it cause world wide?
El Nino means to Little Boy in Spanish. South American fishermen were aware of long periods of unusually warm Pacific Ocean water in the 1600s.
Our weather is significantly impacted by El Nino. The warmer waters cause the Pacific jet stream to diverge south of its normal position. As a result of this trend, the northern U.S. and Canada are experiencing drier and warmer weather than usual. However, the Southeast and Gulf Coast regions of the United States are seeing greater flooding at this moment due to the unusually rainy weather.
Additionally, marine animals along the Pacific Ocean are significantly impacted by El Nino. In normal conditions, upwelling brings cold, nutrient-rich water from the bottom to the surface. El Nino reduces upwelling or causes it to stop totally. When the nutrients from the deep are gone, the phytoplankton off the beach decreases. El Nino causes a decline in the trade winds. Warm water rushes from the east to the west coast of the Americas.
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I live in a city with an urban POPULATION of over 8,000,000 people and a population density of over 100 people per square mile. The VEGETATION zone is broadleaf evergreen forest. The CLIMATE here is tropical wet and dry and tropical wet. I live near the Tropic of Capricorn. My dad WORKS in a factory and my brother is a commercial fisherman. I live along the coast of my country. The people LOVE soccer here and this country has even hosted the World Cup for soccer! In which CITY do I live?
Based on the information provided, it seems that you live in Rio de Janeiro, Brazil.
Rio de Janeiro has an urban population of over 8 million people and a population density of over 100 people per square mile. It is located near the Tropic of Capricorn and has a tropical wet and dry climate as well as a tropical wet climate, which is characterized by a distinct rainy season and a dry season. The vegetation zone in Rio de Janeiro is a broadleaf evergreen forest, which is also known as the Atlantic Forest.
Rio de Janeiro is located on the coast of Brazil and is well-known for its beaches, including the famous Copacabana Beach. The city is also famous for its soccer culture and hosted the World Cup for soccer in 1950. Your dad works in a factory, which is a common profession in Rio de Janeiro, and your brother is a commercial fisherman, which is also a common profession in coastal cities like Rio de Janeiro.
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Steve needs to earn a B in his Geology class. His current test scores are 75, 86, 85, and 78. His final exam is worth 4 test scores. In order to earn a B Steve's average must lie between 80 and 89 inc
Let's figure out Steve's overall test average.
Test average: (75 + 86 + 85 + 78) / 4 = 81
Steve's average test score needs to be between 80 and 89 to receive a B in his Geology class. Let's figure out what Steve needs to score on his final exam in order to get the appropriate average.
Let X represent the final exam result.
Test score change: (75 + 86 + 85 + 78 + X) / 5
Steve wants his new average to range from 80 to 89, inclusive, therefore we can create the inequality seen below:
Multiplying through by 5:
400 ≤ 324 + X ≤ 445
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3 importance of moisture in the atmosphere.
It regulates air temperature by absorbing thermal radiation both from the Sun and the Earth. Moreover, the higher the vapour content of the atmosphere, the more latent energy is available for the generation of storms. In addition, water vapour is the ultimate source of all forms of condensation and precipitation.
What must be true about the Net Force if you want the cart to accelerate?
Need Help
Answer:
it has to have force?
Explanation:
which of the following cause a midlatitude cyclone to dissipate? group of answer choices becoming removed from low-level warm air moving out of the region of strongest upper-level divergence surface convergence all of the above
All the given reasons i.e. air becoming removed from low-level warm air moving out of the region of strongest upper-level divergence surface convergence cause a midlatitude cyclone to dissipate.
All mid-latitude cyclones eventually lose their strength and vanish. Combinations of the following factors may contribute to this: obstruction of cooler/drier air around the low, loss of access to warm air, loss of access to moisture. The cold front typically moves more quickly than the warm front.
When cold air masses from the Arctic collide with warm, moist air from the tropics, mid-latitude cyclones are created. As these air masses start to rotate and gain energy, a sizable low-pressure center or cyclone is created. In the winter, mid-latitude cyclones develop more frequently. As a result, they are connected to powerful winter storms that bring about strong winds and a lot of snow.
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Help please, lol I realy dont know what to do here.
Answer:
False
Explanation:
The image shown is wind power or wind energy.
Geothermal energy is energy taken from the Earth's core. It is heat within the earth.
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Q: member of environmental club can obtain various benefits such as
Dividends which can be derived from being a member of an environmental club include ; enlightenment campaign on promoting healthy lifestyle, prompt awareness on environmental regulation and many others.
Environmental clubs describes an organization composed of individual's with a common goal or purpose as it relates to the environment in terms of conservation, demonstrating acts of environmental responsibility.
Benefits of derived from environmental clubs include :
Promoting good and healthy lifestyle which is geared towards protecting nature and environmental conservation. Members could be able to get firsthand information on environmental policies and guidelines necessary for healthy living.Also, Members could serve as advocate which helps other become environmentally responsible.
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Analyze the image below and answer the question that follows.
A land-use model showing Central Business District, Factories/Industry, Low Class Residential, Middle Class Residential, High Class Residential. 3 central business districts are spread across the model. Factory and industry areas surround 2 central business districts. Low class and middle class residential areas overlap a high class residential area at the edge of the middle class residential area.
Which type of land-use model is shown in the image above?
A.
Hoyt
B.
Burgess
C.
Christaller
D.
multiple nuclei
Please select the best answer from the choices provided.
A
B
C
D
The land-use model is shown in the image is multiple nuclei. Option (d) is correct.
What is land-use model?The parameters of land-use models are described using a combination of actual data and theoretical predictions of the interactions between system components. Land-use models are simplifications of a complicated reality.
The model depicts a city's plan based on Chicago. Even while a city may have started with a central business district, or CBD, additional smaller CBDs grow on the city's outskirts close to the more affluent housing regions to allow shorter commutes from the fringes of the city, according to the study. The term "many nuclei model" refers to the creation of nodes or nuclei outside of the CBD. Their goal was to create a more intricate yet realistic model. Their primary objectives were to:
Leave the concentric zone model alone
better capture the complexity of urban environments, especially those that are bigger
Therefore, Option (d) is correct.
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