Popular sociologist and science philosopher Bruno Latour is renowned for his writings on how people interact with their surroundings.
Bruno Latour might emphasise the interconnectivity of different factors in our environment rather than focusing on one particular feature, however I am not aware of any specific advice he has made. This is based on his general viewpoints.
The idea of "actor-network theory," which emphasises the agency and interconnections of both human and non-human actors in influencing social and environmental systems, is a recurring theme in Latour's work.
He would probably advocate for taking into account the connections and networks that exist between people, other non-human animals, and the environment as a whole.
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How did the scrambled for Africa change the culture Africa
Answer: It brought new ideas to the country
Explanation: Hope this helps :)
Question 88
Typically, an abundant supply of groundwater may be yielded from
a. Sedimentary rocks
b. Molten rocks
c. Igneous rocks
d. Metamorphic rocks
Typically, an abundant supply of groundwater may be yielded from sedimentary rocks. Therefore the correct option is option A.
Sandstone, limestone, and shale are porous and permeable sedimentary rocks that can store and transmit water through their pore spaces. These rocks may also have fractures or openings through which water can flow.
As a result, sedimentary rocks are frequently good aquifers, or subsurface layers of rock or sediment capable of supplying water to wells or springs.
Molten rocks (magma) and igneous rocks, such as granite, are often impermeable and lack sufficient pore spaces or cracks to allow groundwater storage and flow. Therefore the correct option is option A.
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What type of bioregion is most often found along the equator?
a) broadleaf or mixed broadleaf and coniferous forest
b) coniferous forest
c) tundra
d) tropical forests
e) Mediterranean woodland
Tropical forests are the type of bioregion most often found along the equator, characterized by high rainfall and warm temperatures throughout the year. Thus the correct option is D.
The sort of bioregion most frequently seen at the equator is one with tropical woods. High rainfall, year-round warmth, and a wide variety of plant and animal species are all characteristics of these woods. Depending on parameters including height, rainfall, and temperature, the phrase "tropical forest" comprises several subcategories, including rainforests, dry forests, and montane forests.
Although they are less common than tropical forests, broadleaf or mixed broadleaf and coniferous forests may also be found in some tropical locations. The Earth's temperature is significantly influenced by tropical forests, which also provide significant ecosystem services including carbon sequestration and water cycling.
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Conceptual Question 9-8 For one and the same...31. For one and the same process, what scenario corresponds to a higher variation?- A six sigma process- A three sigma process- Cannot be determined from the given information
A three sigma process corresponds to a higher variation compared to a six sigma process. The "sigma" value in these terms represents the standard deviation, which is a measure of variation.
In statistics, the standard deviation is a measure of the amount of variation or dispersion of a set of values. A low standard deviation indicates that the values tend to be close to the mean (also called the expected value) of the set, while a high standard deviation indicates that the values are spread out over a wider range. Standard deviation may be abbreviated SD, and is most commonly represented in mathematical texts and equations by the lower case Greek letter σ (sigma), for the population standard deviation, or the Latin letter s, for the sample standard deviation. The standard deviation of a random variable, sample, statistical population, data set, or probability distribution is the square root of its variance. It is algebraically simpler, though in practice less robust, than the average absolute deviation. A useful property of the standard deviation is that, unlike the variance, it is expressed in the same unit as the data.
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The precipitation in this sketch is caused when moist air is forced up against a mountain range. Identify this type of rain.
Answer:
orographic precipitation, rain, snow, or other precipitation produced when moist air is lifted as it moves over a mountain range.
Explanation:
A HIGH ISO is ___ sensitive to light and will have____noise in the photograph
A HIGH ISO is very sensitive to light and will have high levels of noise in the photograph
What is a high ISO setting?A HIGH ISO setting on a camera increases its sensitivity to light, allowing it to capture brighter images in low-light conditions.
However, this increased sensitivity also leads to higher levels of digital noise in the resulting photograph. This noise appears as grainy or speckled patches throughout the image, particularly in areas of shadow or darker tones.
The level of noise will depend on the specific camera and ISO setting used, as well as factors such as shutter speed and aperture.
Balancing these factors is crucial to achieving a well-exposed, low-noise image in challenging lighting situations.
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The cloud form that is best described as sheets or layers that cover much or all of the sky is termed:
-cumulus.
-alto.
-mackerel sky.
-stratus.
-cirrus.
The cloud form that is best described as sheets or layers that cover much or all of the sky is termed "stratus".
Stratus clouds are low-level clouds that often appear as a uniform gray layer that can cover much of the sky.
They are typically found at altitudes up to around 6,500 feet (2,000 meters) and are often associated with overcast or rainy weather. Cumulus clouds are puffy and usually found at lower altitudes, while alto clouds are mid-level clouds and cirrus clouds are high-level clouds with a thin, wispy appearance.
Mackerel sky refers to a specific type of cloud formation that resembles the scales on a fish, which can occur in various types of clouds.
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the major absorber of terrestrial radiation is ________. oxygen ozone water vapor carbon dioxide none of these
The major absorber of terrestrial radiation is carbon dioxide. Human activities, such as burning fossil fuels, have led to an increase in the concentration of atmospheric Carbon dioxide.
When the Earth's surface absorbs solar radiation, it re-radiates some of that energy back into the atmosphere as infrared radiation. This outgoing radiation is then absorbed by certain gases in the atmosphere, including carbon dioxide, water vapor, and methane, which act as greenhouse gases. Carbon dioxide is particularly effective at absorbing infrared radiation because it has a molecular structure that allows it to vibrate in response to the radiation, which results in the molecule gaining energy. This absorption of energy causes the atmosphere to warm, which in turn causes global warming and climate change.
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use the image of surface ocean currents above to answer the following question. if you were drifting off the coast of south america in the atlantic ocean, on which coast would you eventually wash up?
If drifting off the coast of South America in the Atlantic Ocean, you would eventually wash up on the coast of Africa due to the South Equatorial Current.
Someone who was floating in the Atlantic Ocean off the coast of South America would ultimately wash ashore on the continent of Africa. This is caused by the South Equatorial Current, which originates on the African coast and flows westward into South America before turning southward along the Brazilian coast and flowing eastward towards Africa.
This current is a component of the Atlantic Gyre, a broader network of ocean currents that move water throughout the Atlantic Ocean. Wind, water temperature, and currents in the ocean are only a few of the variables that might alter the course of a drifting object or person.
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which features do sound waves have that ocean and light waves do not? check all that apply waves. ocean, light, and other earthquake waves are waves.
Sound waves have several features that are different from ocean waves, light waves, and earthquake waves. These include:
Sound waves have the following features that ocean and light waves do not have:
- They require a medium to travel through (e.g. air, water, or solids), while light waves can travel through a vacuum and ocean waves travel through water only.
- They are longitudinal waves, meaning the particles of the medium vibrate parallel to the direction of wave propagation, while ocean and light waves are transverse waves, meaning the particles vibrate perpendicular to the direction of wave propagation.
- They have a speed that depends on the properties of the medium they travel through, such as temperature and pressure, while ocean and light waves have a constant speed in a given medium.
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as a wave approaches the shore, what happens to wave speed, height, and length respectively?
As a wave approaches the shore, its speed, height, and length undergo changes due to the interaction with the shallow bottom of the ocean.
The speed of the wave decreases as it approaches the shore. This is because the wave encounters the shallower water near the shore and the wave's bottom part slows down due to the friction with the ocean floor, while the top part of the wave continues moving at a higher speed. This difference in speed causes the wave to bend, and the crest of the wave begins to align more parallel to the shore. This process is called wave refraction, and it causes the wave to move toward the shore at an angle. As the wave slows down, its length decreases, and its height increases. This is because the wave energy must be conserved, and as the wave approaches the shore, the same amount of energy must be distributed over a shorter distance. This process is called wave shoaling, and it causes the wave to steepen and increase in height. As the wave height increases, it can eventually become unstable and break, creating a surf zone.
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As a wave approaches the shore, the wave speed decreases, the height increases, and the length decreases, respectively.
When a wave travels from deep water towards shallow water near the shore, its speed is affected due to the change in water depth. In deeper water, waves travel at higher speeds, but as they approach the shore and the water becomes shallower, their speed decreases. This is because the friction between the water and the ocean floor increases, causing the wave to slow down. As the wave slows down, its height increases. This occurs because the energy of the wave is conserved. When the wave's speed decreases, the energy has to go somewhere, so it is converted into an increase in wave height. The higher the wave, the more energy it contains.
Lastly, the wave's length decreases as it approaches the shore. The decrease in speed causes the waves to become compressed and closer together, leading to a shorter wavelength. This compression is due to the waves' interaction with the ocean floor and each other as they slow down, causing them to crowd together. In summary, when a wave approaches the shore, its speed decreases, its height increases, and its length decreases. This is primarily due to the interaction between the waves and the ocean floor in shallow water.
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What is one reason that traveling by water was easier than traveling by land for ancient Greeks?
Traveling by water was easier than traveling by land for ancient Greeks is because their extensive coastline and numerous islands facilitated maritime routes, allowing for faster and more efficient transportation of goods and people compared to the challenging terrain and limited infrastructure on land.
One reason that traveling by water was easier than traveling by land for ancient Greeks is that Greece is a peninsula with a lot of coastlines, so there were many ports and harbors that made it easier to access different areas by boat rather than having to navigate through difficult terrain on land. Additionally, sea travel was often faster and more efficient than traveling by foot or by wagon on uneven and unpaved roads.
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advanced waste treatment, bans or limits on phosphates in household detergents and other cleaning agents, and soil conservation and land-use control to reduce nutrient runoff are all ways to prevent what water pollution problem for lentic systems?
The aforementioned actions, including enhanced waste treatment, phosphate restrictions or bans on home cleaners, soil conservation, and land-use planning, can help stop nutrient contamination in lentic systems.
The aforementioned measures such as advanced waste treatment, bans or limits on phosphates in household detergents and other cleaning agents, and soil conservation and land-use control can help prevent nutrient pollution in lentic systems. Nutrient pollution, specifically from excess phosphorus and nitrogen, can cause harmful algal blooms and other ecological imbalances in these freshwater systems. By implementing these strategies, we can reduce the amount of nutrients that enter these bodies of water and protect them for future generations.
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Which radioactive element has a half-life of 4.5 billion years?A. Uranium-238 B. Rubidium-87 C. Carbon-14 D. Potassium-40
The radioactive element, Uranium-238 has a half-life of 4.5 billion years. Option A is the correct answer.
A half-life of 4.5 billion years is assigned to uranium-238. The quantity of Uranium-238 that was there at the time of the earth's creation has now been reduced to half because the planet is around 4.6 billion years old. Option A is the correct answer.
Some radionuclides undergo a single radiation emission before becoming stable, whereas others undergo many disintegrations before changing into other radionuclides and being stable. Uranium-238 is used as a "tamper" element in the majority of current nuclear bombs. A tamper that surrounds a fissile core serves to deflect neutrons and increase the inertia of the 239Pu charge during compression. As a result, the critical mass needed is decreased while the weapon's effectiveness is increased. Option A is the correct answer.
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The most important process of cloud formation in the atmosphere is:
-cooling by compression of air.
-cooling by release of latent heat of vaporization.
-cooling by expansion of air.
-radiation cooling.
The most important process of cloud formation in the atmosphere is cooling by the release of latent heat of vaporization. Therefore the correct option is option B.
As warm, moist air rises, it comes into contact with lower air pressure at higher altitudes, causing it to expand and cool. The dew point is the temperature at which water vapour in the air begins to condense into liquid droplets or ice crystals as it cools.
This process releases the latent heat of vaporisation, which serves to keep the rising air parcel warm, allowing it to rise and create clouds.
While cooling by compression of air, cooling by expansion of air, and radiation cooling can all contribute to cloud formation, cooling by the release of latent heat of vaporization is far more essential. Therefore the correct option is option B.
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5) Sediments derived from preexisting rocks on land are called ________
A) hydrogenous
B) biogenous
C) cosmogenous
D) volcanogenic E) lithogenous
Sediments derived from preexisting rocks on land are called lithogenous. Option E is the correct answer.
Lithogenic or terrigenous sediment is mostly made up of tiny pieces of pre-existing rocks that have found their way into the ocean. On the ocean floor, these sediments may be found practically everywhere and can include a wide variety of particle sizes, from tiny clay particles to enormous boulders. Option E is the correct answer.
On land, lithogenous sediments are produced by the weathering process, in which minerals and rocks are reduced to smaller sizes by the impact of wind, rain, water flow, temperature- or ice-induced cracking, and other erosive processes. Afterward, a number of techniques are used to carry these tiny eroded fragments to the seas. Option E is the correct answer.
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Electricity Group of answer choices can be converted to a fossil fuel is a valuable form of energy since it can be used for many purposes. is difficult to transport is primarily produced from wind, solar, and other renewable technologies.
Electricity is primarily produced from a variety of sources, including fossil fuels, nuclear power, and renewable technologies such as wind, solar, and hydropower.
Electricity is an important source of energy because it can be used for a variety of functions, including lighting, heating, and powering technological gadgets. It can also be transformed into other types of energy, such as mechanical energy in motors or chemical energy in batteries.
While electricity can be generated using fossil fuels like coal, oil, and natural gas, these sources have significant environmental consequences such as air and water pollution, greenhouse gas emissions, and climate change.
As a result, there is a growing trend towards renewable energy sources like wind and solar, which have reduced environmental implications and are becoming more cost competitive.
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26) Examine the five words and/or phrases and determine the relationship among the majority of words/phrases.
Choose the one option that does not fit the pattern.
A) Radiolarians
B) Diatoms
C) Oolites
D) Foraminiferans E) Coccolithophores
One option that does not fit the pattern is Oolite. Option C is the correct answer.
Ooids, spherical grains made up of concentric layers, are the building blocks of the sedimentary rock known as Oolite. Ooids can be made of phosphate, clays, chert, dolomite, iron minerals, including hematite, or calcium carbonate (calcite or aragonite), which makes up the majority of them. Most likely, limestone was used to replace the original texture, which led to the formation of dolomitic and chert ooids. Option C is the correct answer.
Oolite often occur in shallow, warm, supersaturated, highly agitated sea water intertidal habitats, while some do in inland lakes. The method of creation begins with a tiny sedimentary component serving as a "seed," like a piece of shell. Option C is the correct answer.
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Show how deeply formed rocks are exposed in eroded mountain belts, starting with early mountain building on top.
Eroded mountain belts are a common feature in many parts of the world and often provide a window into the deep-seated rocks that were once buried beneath the Earth's surface.
Starting with early mountain development on top, below is a simplified description of how deeply formed rocks are exposed in eroded mountain belts:
Early mountain development occurs when sedimentary and volcanic rocks are deposited on top of the underlying basement rocks. Uplift and erosion - As mountain formation progresses, freshly created mountains are elevated and begin to be eroded by wind, water, and ice.Exhumation occurs as the mountains continue to erode and the underlying rocks are eliminated, bringing the basement rocks closer to the surface. Deformation and metamorphism - As the basement rocks are moved closer to the surface, they can be deformed and metamorphosed as a result of the high temperatures and pressures associated with mountain formation.For such more question on mountain:
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What are its major environmental impacts on vegetation, lakes, human-built structures, and human health?
Major environmental impacts on vegetation, lakes, human-built structures, and human health can result from various factors, including pollution, climate change, and deforestation.
Pollution, such as air and water contamination, can negatively affect vegetation and lakes by hindering growth, reducing biodiversity, and degrading overall ecosystem health. This can lead to a decline in the quality and availability of natural resources for humans and wildlife. Human-built structures can also suffer from pollution, especially in urban areas where acid rain caused by air pollution can erode buildings and infrastructure.
Climate change is another significant factor, with increased temperatures and extreme weather events causing adverse effects on vegetation, lakes, and human-built structures. Rising temperatures can alter plant growth patterns and reduce the ability of ecosystems to store carbon, exacerbating global warming. Warmer water temperatures in lakes can lead to harmful algal blooms, which impact water quality and aquatic life. Moreover, extreme weather events can cause structural damage to buildings, roads, and other infrastructure.
Deforestation poses a considerable threat to vegetation and biodiversity, as it involves the removal of large areas of natural habitat. This process disrupts ecosystems, affects the availability of resources, and contributes to climate change through the release of stored carbon.
Lastly, these environmental impacts can have direct and indirect consequences on human health. Polluted air and water can cause respiratory illnesses, while climate change can increase the spread of vector-borne diseases. Additionally, the degradation of ecosystems can reduce the availability of resources, potentially leading to malnutrition and socio-economic instability.
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What resulted from the 1959 Cuban revolution?
new trade regulations with the U.S.
communist dictatorship
equal rights for men and women
democratic elections
Answer: Democratic elections
Explanation: The new government encouraged industrialization, leading to rapid economic growth. The new government established a market economy, causing skilled workers to immigrate to Cuba. The new government imposed democratic reforms, giving its citizens new political freedoms.
Did ancient Greek farmers grow food for their own families?
Ancient Greek farmers primarily grew food for their own families. Agriculture was a vital part of their economy, and farmers were responsible for producing the majority of the food consumed in ancient Greece.
They grew a variety of crops, such as wheat, barley, olives, grapes, and figs, which were used to make bread, oil, wine, and other staples of their diet. In addition to growing crops, farmers also raised animals such as goats, sheep, and pigs for meat, milk, and wool. These resources were primarily used to sustain their own households and communities, although some farmers also traded their surplus goods for other goods they needed.
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a mountain can prevent rain clouds form advancing into the desert. this is called
Answer: A rain shadow effect.
Explanation: A rain shadow is a patch of land that has been forced to become a desert because mountain ranges blocked all plant-growing, rainy weather. On one side of the mountain, wet weather systems drop rain and snow. On the other side of the mountain—the rain shadow side—all that precipitation is blocked.
The phenomenon you are describing is called a "rain shadow effect".
When air masses carrying moisture from the ocean encounter a mountain range, the air is forced to rise over the mountain. As the air rises, it cools and the moisture in the air condenses, forming clouds and precipitation on the windward side of the mountain. By the time the air reaches the leeward side of the mountain, it has lost much of its moisture, resulting in a dry, arid climate known as a "rain shadow".In the case of a desert, a mountain range can block moisture-laden air from reaching the desert, creating a rain shadow effect and contributing to the desert's arid climate. This is why many deserts are located on the leeward side of mountain ranges, such as the Mojave Desert in California, which is located on the eastern side of the Sierra Nevada mountain range.
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This element in pyrite contributes to acid mine drainage.
A
Carbon
B
Sodium
C
Sulfur
D
Phosphorus
E
Potassium
This element in pyrite contributes to acid mine drainage. This element is Sulfur. Option C is the correct answer.
Acid mine drainage is the buildup and flow of very acidic, metal-rich water. Sulfuric acid is produced as a result of the chemical interaction between surface water (rainwater, snowmelt, pond water), shallow subsurface water, and rocks that contain sulfur-bearing minerals. Option C is the correct answer.
When sulfur-bearing rocks are exposed to air oxygen, moisture, and acidophilic iron-oxidizing bacteria during mining operations, a natural process called acid mine drainage results in the formation of sulfuric acid, dissolved iron, and ferric hydroxide crystals. The action of bacteria may significantly speed up the process of heavy metal leaching from acid-contacting rocks. When combined with groundwater, surface water, and soil, the resultant fluids, which may be extremely poisonous, may injure people, animals and plants. Option C is the correct answer.
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Question 1
Which would not be classified as a sedimentary formation?
a. limestone
b. peat
c. olivine
d. loess
The mineral olivine is not a sedimentary deposit. Rocks called sedimentary formations are produced by sedimentary processes such lithification, deposition, and erosion. Option c is Correct.
Sedimentary deposits include loess, peat, and limestone. The igneous processes that create olivine, on the other hand, occur in the mantle and in basaltic lava flows. It is not a sedimentary formation because it was not created by sedimentary processes.
We can see that igneous, sedimentary, and metamorphic are the three basic categories of rock. As a result, choose the response that does not classify rocks. Limestone is a sedimentary rock mostly made of calcium carbonate (calcite) or calcium and magnesium double carbonates (dolomite). Option c is Correct.
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Why is Georgia less likely to feel the devastating impact of hurricanes than Florida or the Carolinas
Georgia less likely to feel the devastating impact of hurricanes than Florida or the Carolinas due to its geographical condition.
Since Georgia is situated further north along the eastern seaboard than Florida or the Carolinas, it is less likely to be directly in the path of hurricanes that develop in the Atlantic Ocean. The shape of the Georgia coast and the presence of barrier islands that can shield the mainland make it less vulnerable to storm surge than other regions. Georgia's coastline is relatively straight, so there aren't as many inlets and bays to amplify storm surges there.
Georgia has a flatter landscape than other eastern seaboard states, which means that there is less risk of massive flooding from hurricane related heavy rains.
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how much real-world area does a 3 x 3 10-m raster grid cover?
A 3 x 3 10-m raster grid covers a real-world area of 900 square meters.
A 3 x 3 10-m raster grid consists of 9 cells, each of which has an area of 10 meters by 10 meters, or 100 square meters. To determine the total area covered by the grid, we can simply multiply the area of one cell by the number of cells:
Total area = area of one cell x number of cells
Total area = 100 square meters/cell x 9 cells
Total area = 900 square meters
A raster grid is a regular arrangement of cells or pixels, where each cell represents a specific area on the ground. In this case, we have a 3 x 3 10-m raster grid, which means that it consists of 3 rows and 3 columns of cells, and each cell has a dimension of 10 meters by 10 meters. This is a common format for representing spatial data in geographic information systems (GIS) and remote sensing applications.
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Arctic latitudes will have what type of vegetation?
a) tropical rain forest
b) tropical grasslands
c) evergreen forests
d) deciduous forests
e) tundra
The landscape at polar latitudes will be more like that of the tundra. Artic and the continent of Antarctica together with high alpine locations, all have tundras above the level of trees. Option e is Correct.
Grasslands may be discovered in tropical, a subtropical and mid-latitude regions on all planets except Antarctica. They are four terrestrial biomes in addition to the two water ones, which are marine and freshwater ones: forests, desert, grassland, and tundra. Taiga, savanna, temperate tropical forest, or tropical rainforest are a few of the numerous subtypes that these ecological zones are further divided into.
Aquatic, Grassland, Forests, Desert, and Ice Themes are the five main types. Some of categories, such water from the sea, maritime, prairies, tropical rainforest, temperate rainforest, and taiga, can be further classified into more precise classifications. Marine or freshwater habitats are both included in aquatic biomes. Option e is the appropriate response.
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The raindrops that fall to Earth from a warm cloud contain about one million times the water in a typical cloud droplet. This growth from cloud droplet to raindrop occurs mainly because of
a. collision and coalescence.
b. condensation of water vapor.
c. supercooling of water.
d. evaporation of water in the cloud.
e. hygroscopic action.
Answer:
a.collision and coalescence
Explanation:
hope this helps!
please help with as many of these canadian geography questions as you can!!
1 .Suppose you find yourself in the Great Lakes St. Lawrence Lowlands landform region. What are two unique landforms/landscapes you may come across that provide evidence that glaciers had recently shaped this landscape? Explain in your own words how they formed.
2. Explain using (LOWERNearwater), why the city of Vancouver is so rainy and warm throughout the year.
(LOWERNear water = Latitude, ocean currents, wind direction, elevation, relief and near water)
3. (picture attached)
thank you so much
One unique landform that provides evidence of recent glacial shaping in the Great Lakes St. Lawrence Lowlands is a drumlin, which is a smooth, elongated hill formed by glacial deposits.
Another unique landform is an esker, which is a winding ridge composed of sand and gravel deposited by glacial meltwater.
What are some unique landforms in the Great Lakes St. Lawrence Lowlands that provide evidence of recent glacial shaping?"In the Great Lakes St. Lawrence Lowlands, one can come across drumlins, which are formed by glaciers as they move and reshape the landscape. These smooth, elongated hills are composed of glacial deposits and can be found scattered throughout the region.
Also, eskers can also be found in this area, which are winding ridges composed of sand and gravel deposited by glacial meltwater. These unique landforms provide clear evidence that glaciers had recently shaped the landscape of the Great Lakes St. Lawrence Lowlands, leaving behind distinct features that are indicative of glacial activity.
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