Answer:
1. First Answer: Its most significant exports are coffee, soybeans, beef, sugar cane, ethanol and frozen chickens. This makes up close to two-thirds of the country and is characterised by a semi-temperate, or moderate, climate. The soils here are fertile and the higher rainfall levels ensure that crops are well irrigated and fed.
Explanation:
2. Second Answer: Search on Brainly there are answers
Which statement best explains how humans would benefit from replacing fossil fuels with geothermal energy?
Answer:
There are many advantages of geothermal energy. It can be extracted without burning a fossil fuel such as coal, gas, or oil. Geothermal fields produce only about one-sixth of the carbon dioxide that a relatively clean natural-gas-fuel
Explanation:
at what scale do gyres circulate? what do they flow along?
Globally speaking, gyres move over whole ocean basins. They are propelled by a mixture of wind patterns and the Earth's rotation to move along the main ocean currents.
In the subtropical areas of the Atlantic, Pacific, and Indian Oceans, gyres are a sizable system of cycling ocean currents. The trade winds, which blow from east to west in the tropics, and the westerlies, which blow from west to east in the mid-latitudes, are what propel these currents. In addition to the Earth's rotation, the Coriolis effect is a major factor in the development and movement of gyres. Gyres are enormous circular patterns in the water that are produced by the circulation of various winds and currents. These Gyres are tenacious, may endure for many years, carry a lot of water, and have an effect on the ocean's circulation and the weather.
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Which of the follow were not used as evidence for the continents being connected millions of years ago.
A. Bird fossils
B. mountain ranges
C. glacial deposits
D. glossoptreis fossils
Answer:
A
Explanation:
Weathering attacks a granite in Pennsylvania or Washington, DC, or a similarly rainy place. The quartz grains in the granite primarily:
a. Are loosened from the rock but don’t change much, making rust in the soil.
b. Dissolve and wash away quickly, to react with sea-floor rocks in the ocean.
c. Dissolve and wash away quickly, helping grow shells in the ocean.
d. Are loosened from the rock but don’t change much, staying in the soil as quartz sand.
e. Are loosened from the rock but don’t change much, making clay in the soil.
The quartz grains in the granite primarily: d) Are loosened from the rock but don’t change much, staying in the soil as quartz sand.
In a rainy environment like Pennsylvania or Washington, DC, the primary effect of weathering on the quartz grains in granite is the loosening of the grains from the rock without undergoing significant chemical changes. As the rainwater penetrates the granite, it can seep into the cracks and fractures, causing the quartz grains to become dislodged from the surrounding rock matrix. Over time, this process of physical weathering can result in the accumulation of loose quartz grains in the soil.
The presence of quartz sand in the soil is characteristic of weathered granite. Quartz is a highly resistant mineral to weathering and erosion, so it tends to remain intact even as other minerals in the granite may undergo chemical changes or dissolve. The weathered quartz grains, often referred to as quartz sand, can contribute to the soil composition and texture. Quartz sand is known for its stability and resistance to further weathering, making it a common component of sandy soils in regions where granite weathering occurs.
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Which fossil occurs on the most landmasses? What does this suggest about when these particular continents broke up?
answer choices
The European Flora occurs on most landmasses. This suggests that the continents were once merged into supercontinents.
The Glossopteridales occurs on most landmasses. This suggests that the continents were once merged into supercontinents.
Answer:
Explanation:
The Glossopteridales fossil occurs on most landmasses. This suggests that the continents were once merged into supercontinents. The Glossopteridales were a group of plants that lived during the Permian period and were found on every continent that existed at the time. The fact that these fossils are found on multiple continents suggests that the continents were once connected as part of a supercontinent, which eventually broke apart and drifted to their current locations. This supports the theory of plate tectonics, which suggests that the Earth's crust is made up of several plates that move and shift over time.
According to the object orbits shown on the vertical axis at left of the graph, identify each orbit as either unbound, circular, or elliptical.
Answer:
Unbound
Orbit 3
Orbit 4
Circular
Orbit 1
Elliptical
Orbit 2
What ancient civilization was destroyed by a volcano?
The ancient city of Pompeii is arguably the most well-known example of a civilisation that was obliterated by a volcano.
Mt. Vesuvius erupted dramatically in 79 CE, burying Pompeii and the nearby town of Herculaneum under several feet of ash and pumice. We can learn about the daily life of the inhabitants thanks to how well the ash preserved the towns and their artefacts.
The extreme heat of the eruption and the gases it generated were likely what killed the inhabitants of Pompeii.
Buildings' roofs collapsed as a result of the high heat, and the ash and pumice settled and hardened, trapping and preserving the occupants in their last moments.
This has provided us with a special window into the culture and daily lives of the inhabitants of Pompeii. The devastating lesson of the might of nature and how fast it may turn fatal is also provided by Pompeii's destruction.
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P3 (12 pts): Determine the fugacity and fugacity coefficients of methane using the Redlich-Kwong equation of state at 300 K and 10 bar. Write all the assumptions made.
The fugacity of methane at 300 K and 10 bar using the Redlich-Kwong equation of state is X bar and the fugacity coefficient is Y.
The Redlich-Kwong equation of state is given by:
P = (RT / (V - b)) - (a / (V(V + b)))
Where P is the pressure, T is the temperature, R is the gas constant, V is the molar volume, a and b are constants specific to the gas.
To determine the fugacity and fugacity coefficient of methane, we need to make the following assumptions:
Methane is treated as an ideal gas, neglecting any intermolecular forces.The Redlich-Kwong equation of state assumes that the gas behaves as a mixture of hard spheres with certain attractive and repulsive forces.The constants a and b in the Redlich-Kwong equation are determined using experimental data and are specific to methane.The gas is assumed to be in a single-phase system.The system is assumed to be at thermodynamic equilibrium.The compressibility factor Z is assumed to be a function of pressure and temperature only.By using these assumptions and the Redlich-Kwong equation of state, we can calculate the fugacity and fugacity coefficient of methane at the given temperature and pressure.
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Explain how air in the lower atmosphere is heated from the ground upward.
The air in the lower atmosphere is heated from the ground upward primarily through the process of conduction.
Conduction is the transfer of heat energy through direct contact between objects or substances. During daylight hours, the Sun's energy reaches the Earth's surface and warms the ground. Through conduction, the heat is transferred from the warm ground to the air molecules in contact with it. As a result, the air near the ground becomes warmer.
As the warmed air molecules gain thermal energy, they become less dense and start to rise. This upward movement of warm air creates convection currents. Cooler air from higher altitudes moves in to replace the rising warm air, and the process continues.
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_ ?_ is part of the United Kingdom but is not part of Great Britain
What is the key function of geographic information systems?.
Answer:
It's used for capturing, storing, checking and displaying data related to positions on the Earth's surface.
Explanation:
Geographic informations system (GIS) is a computer system to capture and store data related to the positions on the Earth's surface.
Use the drop-down menu to complete each statement.
Communist countries usually have
economies.
A command economy that still allows private property and ownership is called
.
A command economy in which the government controls everything is called
.
Communist countries usually have command economies.
A command economy that still allows private property and ownership is called a mixed economy.
A command economy in which the government controls everything is called a planned economy.
What does the command economy do?In a command economy, the government dictates the goods and services to be produced, how they should be produced and how they should be distributed. This system is associated with communist countries where the state owns and controls all resources and businesses.
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Carefully study the map above. What is the most likely reason why towns on the Mexican border are located near American towns? A. because it allows Mexican towns to use American water and electrical services B. because the climate is better in these locations C. because it makes trade between the two nations easier D. because these areas are safer for residents
Answer:
C
Explanation:
Look at the picture shown below. Which kind of angle pair mD2 and mD7?
on which data van mahotsav is celebrated? And why?
Answer:
The Tree Festival, popularly known as 'Van Mahotsav' is a week-long festival celebrated from July 1 to 7 (the first week of July) during which millions of trees are planted all over India. It was initiated in 1950 by K.M. Munshi, the Union Minister for Agriculture and Food at that time.
It was started to create awareness in the mind of the people for the conservation of forests and planting of new trees. Van Mahotsava is celebrated as a festival of life. In India, it was started as a movement to save mother earth.
Explain different methods used to prevent salinity?
Explanation:
Type of salinity and their prevention
There are different types of salinity, each with different causes and varying treatment.
Dryland salinity is the accumulation of salts in the soil surface and groundwater in non-irrigated areas. It is usually the result of three broad processes:
groundwater recharge (or deep drainage)
groundwater movement
groundwater discharge.
Often it results from replacing deep-rooted native vegetation with shallower-rooted crops and pastures, which take up less water. Unused rainwater leaks into the ground causing groundwater to rise and dissolve salts stored deep in the soil. The salty water may:
rise to the surface causing waterlogging and/or scalding
emerge at the break of a slope as seeps
flow over the surface or underground into streams and rivers.
Irrigation salinity
Irrigation salinity is the rise in saline groundwater and the build-up of salt in the soil surface in irrigated areas. It is caused by using large volumes of irrigation water that locally raise groundwater levels and mobilise salt. Irrigation salinity is made worse when water used to irrigate is from salty sources.
Irrigation salinity can be controlled by using water efficiently. Crops should receive only the amount of water they can actually use. Reducing water usage in irrigated areas generally requires changes to irrigation infrastructure and technology, and better matching of crops to soil types.
Urban salinity
Urban salinity is a combination of dryland and irrigation salinity processes and is mainly caused by rising groundwater bringing salts to the land surface. The rise in groundwater is caused by blocked or changed natural drainage paths due to:
urban development
over-watering of parks and gardens
leaking pipes, drains and tanks.
In the urban environment, other sources of salt that can contribute to urban salinity include:
effluent
building materials
industrial waste water
fertilisers and chemicals.
Industrial salinity
Many industrial processes have the potential to increase salinity levels in rivers. Examples are:
saline water from mines (working and abandoned) from groundwater seepage and from rainwater coming into contact with mine workings or spoil
discharged cooling water from coal-fired power stations that has been partly evaporated, concentrating the salt content
effluent being discharged.
define the tectonic plates..??
Answer:
a technoclave also called lithosphere plate is a massive irregular shapes lab of a solid Rock journally composed of the both continuousal and oceanic lithosphere. plate size can very greatly from a new hundred 2000 of KM across the Pacific and Antarctic plates are among the largest
he smallest detrital grains are ____________. group of answer choices sand silt clay gravel
The smallest detrital grains are clay. They are finer than sand, silt, and gravel, making them the smallest particles in the detrital sediment category.
Detrital grains are fragments of rock or mineral particles that have been broken down by weathering and erosion processes. These grains vary in size, with clay being the smallest among them.
Clay particles are extremely fine, with diameters less than 0.002 mm. They are smaller than both sand and silt particles, which have diameters ranging from 0.0625 mm to 2 mm and 0.002 mm to 0.0625 mm, respectively.
The small size of clay particles is due to their unique mineral composition and physical characteristics. Clay minerals have a layered structure and are made up of microscopic flakes or sheets stacked together.
These particles are lightweight and have a high surface area relative to their volume, allowing them to retain water and exhibit cohesive properties. Their small size and large surface area contribute to their ability to retain and exchange nutrients,
as well as their plasticity when wet. Due to their small size, clay particles can remain suspended in water for long periods, leading to the formation of fine-grained sedimentary rocks such as shale.
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"Complete question"
The smallest detrital grains are ____________. a. clay b. gravel c. sand d. silt
ocean currents have a direct effect on climate by an interaction of which systems?
The hydrosphere and atmosphere have a direct effect on climate.
How does the hydrosphere work and why is it significant?A world, minor solar system, or natural satellite's total mass of water located on, beneath, and above its surface is known as the hydrosphere. but the hydrosphere of the planet. For humans to survive, the hydrosphere is essential. It offers food and nutrition from fish and vegetation, as well as drinking water and water for agriculture.
What are a few interesting tidbits regarding the hydrosphere?Water that is liquid and makes up around 70% of the Earth's surface is referred to as the hydrosphere. Oceans are home to the majority of liquid water. We stand out from other planets within the solar system thanks to our hydrosphere, which gives Earth its distinct look of blue marble.
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A scientist studying how earthquakes happen imagines the top layer of Earth moving like a block of wood rubbing on sandpaper. This helps the scientist imagine what is happening. What kind of model is this? Explain.
Answer:
This is model is called - Block and Sandpaper Model.
Explanation:
In the model above, a block of wood is dragged over sandpaper using an elastic string which causes the block of wood to move in such a way that friction is apparently generated, thus converting energy from one form to the other.
This little model, also known as the "earthquake machine" typifies what happens in the earth's crust during an earthquake. It models the behavior of tectonic plates as they move over one another generating various kinds of energy.
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a primary purpose of restoration work on rivers in northwestern europe is to
A primary purpose of restoration work on rivers in Northwestern Europe is to protect water resources in the subregion and reduce pollution damage and manage floodplain drainage.
All those who depend on clean, safe water benefit from future-proof river ecosystems that are brought about by river restoration. The EU Water Framework Directive, the Floods Directive, the UN Sustainable Development Goals the UNECE Water Convention, the Protocol on Biodiversity, as well as national policies are all supported by the ECRR, which is regarded internationally as the key system to encourage and build the capacity for ecological river restoration throughout Europe. The Rhine, Rhone, and Po are just a few of the significant rivers that start in the Alps. Even though the Danube does not pass directly through the Alpine region, three of the four largest water-rich rivers of the Danube—Sava, Inn, and Drau—flow into Europe's second-longest river.
This question is incomplete. Complete question is:
What is the primary purpose of restoration work on rivers in northwestern Europe?
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The population distribution of Canada and the United States is similar because most of the population is concentrated —
a along the border
b near the coastlines
c in large urban centers
d throughout the Great Plains
Answer is B. Near the coastlines
Answer:
Correct answer is C. in large urban centers
Explanation:
First option is not correct as although most of the population in Canada is located near the border, that is not the case with United States.
B is also not correct as while in United States we have large cities on the coast like Boston of Los Angeles, that is not the case in Canada.
C is correct as most of the population is distributed in the large megapolis, such as Montreal, Toronto, New York, Los Angeles...
D is also not correct as not so many people is living in that area in contrast to other regions.
match each type of metamorphic foliation to its description.
Foliated metamorphic rocks have parallel layers or banding resulting from the rearrangement of mineral grains during metamorphism. Types of foliation include slaty, schistose, and gneissic foliation, while non-foliated textures lack layering or banding.
Metamorphic rocks that have parallel layers or banding are referred to as foliated rocks. These parallel layers or banding in metamorphic rocks result from the rearrangement of mineral grains during the metamorphism process.
There are various types of metamorphic foliation. Following are some of them with their descriptions:
1. Slaty Foliation:
It is a foliation where the rock splits into thin, flat slabs. It has a layered appearance and is caused by pressure.
2. Schistose Foliation:
It is a type of foliation that is easily visible. It has medium to coarse-grained texture, and minerals are aligned perpendicular to the direction of pressure.
3. Gneissic Foliation:
It is a foliation that is coarse-grained with layers of different minerals. It has alternating dark and light-colored bands.
4. Non-foliated texture:
It is a type of metamorphic rock that does not have any layering or foliation. It occurs when a rock is subjected to heat and pressure, but not enough to create a layering of minerals.
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Which limiting factor would decrease the carrying capacity of any ecosystem without it?.
The limiting factor that would decrease the carrying capacity of any ecosystem without it is the limiting factor of water.
A limiting factor is a variable that constrains the growth, distribution, or quantity of a population or organism in an ecosystem. Factors like soil type, rainfall, availability of food, and sunlight are all examples of limiting factors in an ecosystem. The carrying capacity of an ecosystem is the maximum number of individuals or species that an ecosystem can sustain indefinitely, given the resources available in that ecosystem. The carrying capacity of an ecosystem can be decreased by the absence of limiting factors like water and food.
Water is essential for survival for all living things. It is the most vital natural resource on the planet, and life cannot exist without it. Water serves as a habitat for many aquatic organisms. It is a critical component of metabolic processes, and it also plays a vital role in plant growth, which is the basis of all terrestrial ecosystems. As a result, water is a critical factor in determining the carrying capacity of an ecosystem. A lack of water, or water that is not usable by living organisms, will limit the size of any population that relies on it.
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What are the 5 basic climate regions?
Answer: five regions: tropical, dry, mild, snowy and polar.
Explanation:
What is the best way for the following expression to be read?
6-(-5)
O the opposite of six groups of negative five
O six groups of negative five
O five groups of negative six
O the opposite of five groups of six
Explanation:
six groups kf negative five
hzvzrbzknzfesVzjgvz hzdrvvzzjx
When are tornadoes most likely to occur in the southeast.
Answer: The peak “tornado season” for the southern Plains (e.g., Texas, Oklahoma, and Kansas) is from May into early June.
Explanation: I took the test and did research, hope I helped. If this wasn't correct, let me know. :)
if you lived in an area identified as class iii for land capability, what are some things you might need to take into consideration regarding the soil?
If you lived in an area identified as class III for land capability, the following are some of the things you might need to take into consideration regarding the soil: Crop selection and rotation, Soil improvement methods, Soil erosion, Soil testing.
Soil is considered a fundamental natural resource, which implies that it is critical to human beings' livelihoods. Soil that is classified as class III for land capability is considered unsuitable for farming or development since it has several limitations, such as shallow depth, low fertility, and low water storage capacity.Among the things to consider when dealing with such soil are:
1. Crop selection and rotation: Soil that is classified as class III for land capability is typically not suitable for growing most crops. This indicates that if you want to farm in this region, you must first select suitable crops and rotate them regularly. This is important because it aids in the soil's fertility restoration.
2. Soil improvement methods: You can utilize a variety of soil improvement techniques to improve the soil's fertility and water retention. These techniques can include the use of organic fertilizers, such as animal manure, or inorganic fertilizers that are rich in macronutrients such as nitrogen, phosphorus, and potassium. Other techniques include crop rotation, green manure, intercropping, cover cropping, and agroforestry.
3. Soil erosion: Soil that is classified as class III for land capability is generally vulnerable to soil erosion, which is caused by wind and water. To reduce soil erosion, you might consider utilizing several soil conservation techniques such as contour farming, terrace farming, and conservation tillage.
4. Soil testing: Soil testing is an essential component of soil management in any area, and class III soil is no exception. Soil testing is important for determining soil acidity or alkalinity, nutrient composition, and other factors that influence soil health. The findings of soil testing might then be utilized to inform soil management techniques, such as fertilizer application or soil pH adjustment.
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Which of these is the best description of evolutionism?
characteristics of one culture spread to another culture
a belief that both the individual and society could achieve a state of perfection
survival of the fittest
establishment of a small centralized authority
Answer:
survival of the fittest
Explanation:
Evolution is the process by which organisms change and develop new traits over succeeding generations basically meaning that the organism get more fit to adapt to their surroundings better.
Question. What is the most populous city in New Zealand?
Answer: The most popular city in New Zealand is Auckland
Explanation: hope it helps:)
Answer: Auckland i believe.
Explanation: World population review helps with stuff like that.