Temperature-limiting pressure and differential stress are important metamorphic processes that can significantly affect minerals and rock textures. Both processes can result in the formation of new crystal structures and textures, as well as recrystallization of pre-existing minerals.
Temperature-limiting pressure can lead to the formation of foliation, which is a planar texture in which minerals are arranged in parallel layers. In addition, this process can lead to the formation of new minerals, such as mica and chlorite, from pre-existing minerals.
In general, these metamorphic processes can produce a wide variety of metamorphic textures and minerals. The intensity and duration of these processes can affect the amount and variety of metamorphic minerals and textures present in a rock.
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A function, f. is defined by f(x,y) = 3x2 - 4y. What is the value of f(3,2) ?
F(3,2) is assigned a value of 19.
What are the different sorts of function?A relationship between a collection of inputs and outputs is known as a function. A function is, to put it simply, a relation between inputs in which each input is connected to precisely one output. Each function has a range, codomain, and domain. The usual way to refer to a function is as f(x), where x is the input.
A function called f is defined by the notation y=f(x). This should be understood as "y is indeed a function of x." The input variable, or outcome variable, is represented by the letter x. The output value, also known as the dependent variable, is denoted by the letters y, or f(x).
f(x, y) = 3[tex]x^{2}[/tex] - 4y = 3*3∧2 - 4*2
= 3*9- 8 so, 27-8=19
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what are the effects on metamorphic minerals and textures of temperature confining pressure and differential stress
Metamorphic minerals and textures are significantly affected by temperature, confining pressure, and differential stress. Temperature affects the rate of metamorphic reactions, which affects the mineralogy of the metamorphic rock.
High temperatures can cause dehydration, recrystallization, and metasomatism of the minerals. Confining pressure has an important role in metamorphism, providing the force to cause recrystallization and transformation of the minerals. As pressure increases, the minerals become more densely packed.
Differential stress affects the shape and size of the minerals and the overall texture of the rock. It causes minerals to become elongated and aligned in certain directions, creating a foliation. Additionally, differential stress can cause shearing and fracture of the minerals. The combination of temperature, confining pressure, and differential stress is important for understanding the formation of metamorphic rocks.
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Looking at the VEI, please discuss the relationship between frequency and classification of volcanoes.
The Volcanic Explosivity Index (VEI) is a method used to classify and quantify the size of volcanic eruptions. It is based on how much material is expelled, how high it is ejected, and how long the eruption lasts.
The VEI ranges from 0 to 8, with 8 being the most explosive. The higher the VEI, the more frequent and violent the eruptions are. As the VEI increases, so does the frequency of eruptions.
VEI 8 eruptions are very rare, occurring once every few centuries, whereas VEI 4 eruptions occur between once every year to once every few decades.
The frequency of eruptions is also affected by the type of volcano. Stratovolcanoes tend to have more explosive eruptions than shield volcanoes. In general, the frequency of eruptions increases with the VEI classification. As the VEI increases, eruptions are more frequent and violent, and the potential for destruction is greater.
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What is one engineering solution that humans could take to increase permeability in the cities in which they live? How will this affect runoff vs infiltration?
One engineering solution humans could take to increase permeability in cities is the use of green infrastructure. This includes green roofs, rain gardens, and porous pavement.
These methods allow rain water to be absorbed into the ground, rather than running off of surfaces and entering storm drains. This will increase infiltration and reduce runoff, allowing for improved water quality and reducing the risk of flooding.
Furthermore, green infrastructure can also provide additional benefits such as increased air quality and wildlife habitats. By increasing permeability, cities can become more resilient to the effects of climate change and protect their natural resources.
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a stream in an area under development/urbanization. which site appears to be the most likely to have a construction site immediately upstream from it? write your claim, evidence, and reasoning.
The most likely site to have a construction site immediately upstream from it is one that is closer to the urban center. This is because urbanization often includes the development of infrastructure and construction projects closer to the city center.
Your claim: A stream located closer to the urban center is more likely to have a construction site immediately upstream from it.
Evidence: Urbanization often includes the development of infrastructure and construction projects closer to the city center. Therefore, a stream located closer to the urban center would be more likely to have a construction site.
Reasoning: Since urbanization usually involves the construction of infrastructure and projects closer to the city center, the stream closer to the urban center is more likely to have a construction site immediately upstream from it.
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Of the following gyres, which one(s) flow in a counterclockwise direction? Choose all that apply.
Indian Ocean Subtropical Gyre
South Atlantic Subtropical Gyre
South Pacific Subtropical Gyre
Northern Hemisphere Subpolar Gyres
The Indian Ocean Subtropical Gyre, South Atlantic Subtropical Gyre, and South Pacific Subtropical Gyre are all gyres that flow in a counterclockwise direction.
This is due to the Coriolis effect, which causes a deflection of the wind in the northern hemisphere in a counterclockwise direction, and clockwise in the southern hemisphere.
The Northern Hemisphere Subpolar Gyres, however, flow in a clockwise direction due to the Coriolis effect. This is because the wind in the northern hemisphere is deflected in a clockwise direction, and the gyre is located in the northern hemisphere. The direction of gyres is an important factor to consider when sailing ships and understanding current patterns.
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In weighing the benefits cities derive from gentrification against the social and human costs, where do you think the balance lies?
As Map C shows, the East Rift lies beneath the Leilani Estates housing development. Note all the older eruptive vents along individual fissures. As new cracks emerged, spewing sulfurous gas beneath the neighborhood, officials ordered an evacuation. Why? Choose one: A. Evacuations were ordered to allow officials to properly evaluate the volcanic unrest. B. There was concern about a surface collapse. C. Evacuations were ordered because the gas emissions were indicative of an upcoming eruption. D. Officials were concerned about a fire starting in the Leilani Estates. The dark-colored lava flows on the map represent young lava flows. Where do they appear to originate? Choose one: A. along the edge of the volcano B. from the caldera circled in white C. from the flanks of the volcano D. from long fissures
Map C shows the East Rift beneath the Leilani Estates housing development, with older eruptive vents along individual fissures. Officials ordered an evacuation due to concern about a potential eruption, as the gas emissions were indicative of this.
The dark-colored lava flows on the map appear to originate from the flanks of the volcano, as they are seen extending from the edges of the volcano. These lava flows are likely the product of new volcanic activity, and are indicative of the volcanic unrest and potential for an eruption.
By ordering an evacuation, officials were able to properly evaluate the situation and take necessary precautions to protect the residents of Leilani Estates.
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What happen to the surface area of exposed rock if a rock is fractured?
A) there are more pieces, but the surface area does not change
B) The surface area does not change because the volume does not change
C) The surface area increases as the rock is fractured
D) The surface area decreases as the rock is fractured
E) both a and b
The surface area increases as the rock is fractured. Therefore the correct option is option C.
Rock fracture is the mechanical breakdown of rock due to stress. The stress can be tectonic or man-made, such as blasting. When rock fractures, it breaks into smaller pieces, which are known as rock fragments or rock blocks. Rock fracture has a significant impact on the surface area of rock.
When rock is fractured, the surface area of the rock increases. This is because a single rock breaks into smaller fragments, each with its own surface area.
Therefore, the correct answer to the given question is: The surface area increases as the rock is fractured.
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from the two seasonal curves shown, greater precipitation occurs at all but one of the reporting stations during . this could be due to the passing of storm systems at that time of the year in addition to orographic uplifting. a. summer b. winter g
The precipitation patterns of the two seasonal curves shown indicate that more precipitation occurs at all but one of the reporting stations during the summer season.
Here, correct option is A. summer.
This can be attributed to multiple factors, including the passing of storm systems, which is more frequent during this time of the year, as well as orographic uplifting, which is caused by the interaction of prevailing winds with mountains or hills.
As the air is forced upwards it cools, causing moisture to condense out of the atmosphere and form clouds and eventually rainfall. This is a common phenomenon in mountainous areas, and explains why there is more precipitation during the summer months in these regions.
Therefore, correct option is A. summer.
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Complete question is :-
From the two seasonal curves shown, greater precipitation occurs at all but one of the reporting stations during . this could be due to the passing of storm systems at that time of the year in addition to orographic uplifting.
a. summer
b. winter
c. spring
d. rainy.
Where do tectonic processes continually generate new ocean seafloor at?
Tectonic processes continually generate new ocean seafloor at the mid-ocean ridge, which is a continuous submarine mountain chain extending through all the ocean basins.
The mid-ocean crest is substantially composed of a central rift vale, two resemblant rift sides, and a more restrained seabed on either side of the crest. As the Earth's Tectonic plates sluggishly move piecemeal, magma rises up through the rift vale and cools to form new oceanic crust.
This process is known as seafloor spreading, and it's driven by convection currents deep within the Earth's mantle. The new crust pushes the aged crust down from the mid-ocean crest, creating a nonstop cycle of seafloor growth.
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what features in the the sedimentary or volcanic rock would you look for to tell u overturne limb
The following are the features in the sedimentary or volcanic rock that would be looked for to tell overturned limb:
1. Sedimentary rock
In sedimentary rocks, the upper surface is usually a layer of rock that has been eroded and exposed. This is commonly referred to as the "upper bed." The lower bed is located beneath the upper bed and is typically more resistant to erosion. The degree of weathering of the two beds can be used to determine whether or not a rock formation has been overturned.
2. Volcanic rock
In volcanic rocks, one can look for fractures and other structural features that may indicate that the rock has been overturned. Another method used to determine whether or not a volcanic rock has been overturned is to look for the presence of vesicles.
Vesicles are gas-filled cavities that are formed during volcanic eruptions. They can be used to determine the orientation of the rock formation.
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what makes earthquakes like the mineral, virginia quake in 2011 so dangerous? choose all that apply.
Earthquakes like the Mineral, Virginia quake in 2011 are dangerous due to their unpredictability and potential to cause damage to buildings and infrastructure.
These earthquakes occur when the underlying bedrock is disturbed, causing shock waves to propagate through the earth's crust. So, when energy is released from tectonic plates that are in motion. The shock waves generated by earthquakes can cause the ground to shake and move, leading to damage to buildings and infrastructure. In some cases, these shock waves can trigger landslides or tsunamis, leading to further damage and loss of life. The strength and duration of an earthquake can vary depending on a number of factors, including the size of the fault that ruptures, the amount of energy released, and the local geology of the area.
Overall, earthquakes are a natural and unavoidable hazard that can have significant impacts on human life and society. By understanding the underlying causes of earthquakes and implementing effective measures to prepare for and respond to them, we can reduce the risks and minimize the impacts of these events.
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which process is represented by the diagram shown? Germination, fertilization, mitotic cell division, meiotic cell division
Meiotic cell division is the process by which a cell divides in two, resulting in four haploid cells, each with half the genetic material of the original. During meiosis, cells undergo recombination and exchange genetic material, resulting in genetically distinct offspring.
the difference between renewable and nonrenewable resources is that nonrenewable resources require
Answer:
Explanation:
The difference between renewable and nonrenewable resources is that nonrenewable resources require millions of years to form and are being depleted at a faster rate than they are being replenished, while renewable resources are replenished naturally and can be sustained over time. Nonrenewable resources include fossil fuels such as coal, oil, and natural gas, as well as minerals and metals that are mined from the earth. These resources are finite and once they are depleted, they cannot be replaced. In contrast, renewable resources include solar, wind, hydro, geothermal, and biomass energy, as well as resources such as timber, water, and crops that can be regrown or replenished naturally. These resources are replenished over time and can be sustained for future generations. The use of renewable resources is seen as a more sustainable and environmentally friendly approach to resource management, as they have a lower impact on the environment and can be used indefinitely without running out.
which of the following territorial forms does not typically contribute to difficulty in national governance? please choose the correct answer from the following choices, and then select the submit answer button. answer choices an elongated state an approximately hexagonal or circular state an exclave a fragmented state consisting of multiple islands
The correct answer is an approximately hexagonal or circular state. This type of state does not typically contribute to difficulty in national governance because it is less likely to have long and difficult to control borders, and its central location makes it easier for the government to govern.
Additionally, its population will typically be more centralized, which makes communication and governance easier.
In contrast, an elongated state, an exclave, and a fragmented state consisting of multiple islands can all contribute to difficulty in national governance.
An elongated state can have long borders and may be difficult to defend and patrol. An exclave is a territory which is disconnected from the main state and therefore more difficult to control and govern.
Lastly, a fragmented state consisting of multiple islands is challenging to govern as communication and travel between the islands is more difficult.
In conclusion, an approximately hexagonal or circular state does not typically contribute to difficulty in national governance, whereas the other three forms can present a challenge for national governance.
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What does a porphyritic texture indicate about the cooling history of an igneous rock?
The rock cooled entirely on the Earth's surface in a region that regularly varied between high and low temperatures.
The rock cooled entirely underground, first forming the phenocrysts and then forming the groundmass out of different minerals.
The rock began cooling on the Earth's surface, but then was buried under the Earth's surface where it finished cooling.
The rock began cooling under the Earth's surface, but then was moved to above the Earth's surface where it finished cooling.
The rock first began cooling under the Earth's surface, which formed the groundmass. It finished by solidifying the phenocrysts on the Earth's surface.
The porphyritic texture of an igneous rock indicates that the rock began cooling underground, first forming the phenocrysts and then forming the groundmass out of different minerals.
Porphyritic texture is a texture in which a rock contains two distinct crystal sizes. The larger crystals, known as phenocrysts, are usually about 1 to 10 centimeters in diameter and are embedded in a fine-grained matrix known as a groundmass. Porphyritic rocks may be either intrusive (plutonic) or extrusive (volcanic) in origin.
The cooling history of an igneous rock can be revealed by its texture. Porphyritic texture indicates that the rock began cooling underground, first forming the phenocrysts and then forming the groundmass out of different minerals. The phenocrysts continue to form as the rock cools and solidifies on the Earth's surface.
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Which countries lost their territories in the mandate system?
Answer:
Explanation:
Several countries lost their territories in the mandate system established after World War I. The mandate system was created by the League of Nations to administer the former territories of the defeated Ottoman Empire and the colonies of the defeated German Empire. The mandate system allowed for these territories to be governed temporarily by other countries until they were deemed ready for self-rule.
The countries that lost their territories in the mandate system include:
Ottoman Empire: After the collapse of the Ottoman Empire, its former territories in the Middle East were placed under various mandates, including those of France, the United Kingdom, and Italy.
Germany: The German colonies in Africa and the Pacific were placed under mandates, with the territories in Africa being administered by France, the United Kingdom, and South Africa, and those in the Pacific being administered by Australia, Japan, and New Zealand.
Austria-Hungary: The former territories of Austria-Hungary were divided and placed under various mandates, including those of France, the United Kingdom, and Italy.
Russian Empire: The former territories of the Russian Empire in the Middle East and Central Asia were placed under mandates, with the territories in the Middle East being administered by France and the United Kingdom, and those in Central Asia being administered by the Soviet Union.
Overall, the mandate system had a significant impact on the geopolitical landscape of the world and the development of the nations that emerged from these territories.
What are five other levels of organization that ecologists study from smallest to largest aside from studying individual species?
The five other levels of organization that ecologists study from smallest to largest aside from studying individual species are Population, Community Ecosystem, Biome, Biosphere.
1. A population is a group of individualities of a species living in the same place at the same time. It includes all the individualities of one species being in the same area. 2.A community is a group of different populations of species living together in the same area. It includes all the species in an area and how they interact with one
another. 3. An ecosystem is a community of species interacting with each other and their physical environment It includes all the species, their relations and the physical environment in a given area. 4. Biome A biome is a large geographic area characterized by particular types of shops and creatures, as well as by its climate 5. The portions or the
regions where organisms are to be found are collectively called as the biosphere. Thus, it can also be said that all the biosphere is the sum of all the ecosystems on the Earth
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earthquake exploration at this station, you will explore how the wavelength of seismic waves affect differnt heigihts of buildins
The wavelength of seismic waves has a significant impact on how they affect structures like buildings. Seismic waves with longer wavelengths can travel longer distances and penetrate deeper into the ground, making them more likely to cause damage to taller buildings.
Seismic waves with shorter wavelengths are less likely to cause damage to taller buildings, as they are absorbed more easily by the ground.
The experiment will involve setting up a wave generator that can produce different wavelengths of seismic waves. These waves will be directed toward a model of a building with varying heights, and their effects on each building will be measured. The results of the experiment will help us understand how the wavelength of seismic waves affects different heights of buildings and how we can design buildings that can withstand earthquakes of different intensities.
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what is the approximate frequency of interglacial periods? question 1 options: every 10,000 years every 50,000 years every 100,000 years every 150,000 years
The approximate frequency of interglacial periods is every 100,000 years. Option C
What is An interglacial period?An interglacial period is a geological interval of warmer global average temperature lasting thousands of years that separates consecutive glacial periods within an ice age.
This is based on the pattern of glacial cycles that have occurred over the past million years, which show a roughly 100,000-year periodicity between periods of glaciation and interglacial. These cycles are believed to be driven by variations in Earth's orbit and axial tilt, which affect the amount and distribution of solar radiation received by different regions of the planet.
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Dry climates are divided into two types according to moisture. These are A) deserts and tundra. B) deserts and steppe. C) chaparral and tundra. D) steppe and chaparral.
Dry climates are divided into two types according to moisture. These are deserts and steppe
What are dry climates?
Dry climates are defined as areas where the weather is usually dry and there is little precipitation. Dry climates are usually characterized by limited rainfall and high temperatures. According to moisture, dry climates are divided into two types: deserts and steppe.
Here are some characteristics of each:Deserts: The arid desert is the driest of all the climates. They usually get less than ten inches of rain per year. Deserts are classified as having extremely low moisture levels.
There are a few different kinds of deserts, including hot and dry, semiarid, coastal, and cold.Steppe: This climate is known for its grassy, open plains. It receives more rain than the desert but less than the humid areas. There are two kinds of steppe climates: cold and semiarid.
There is enough rainfall in these areas to support grass and scrub, but not enough to support forests. Chaparral and tundra are not dry climates, as they both receive adequate rainfall for their specific vegetation. Hence, the correct option is B) deserts and steppe.
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describe eac the 4 major types of irrigation.a.rank them from least amount of evaporative/runoff loss to most.
There are four major types of irrigation: surface irrigation, sprinkler irrigation, drip irrigation, and subsurface irrigation.
Surface Irrigation involves flooding fields with water and is the most common type of irrigation. It is less expensive than other methods, but is also the least efficient, with higher rates of water loss due to evaporation and runoff.
Sprinkler Irrigation uses a system of pipes and nozzles to spray water onto crops, allowing for more even water distribution and fewer losses due to runoff. This is the most efficient method, with the least water loss due to evaporation or runoff.
Drip Irrigation uses tubes with emitters and nozzles to slowly drip water directly to plant roots, and is the most efficient method of all with the least amount of water loss due to evaporation or runoff.
Subsurface Irrigation is similar to drip irrigation, but the water is injected directly into the soil below the crop roots, which reduces the amount of water loss due to evaporation or runoff.
From least amount of evaporative/runoff loss to most, the types of irrigation are: Drip Irrigation, Subsurface Irrigation, Sprinkler Irrigation, and Surface Irrigation.
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What type of volcanic material indicates an eruption under water?
a) AA flows
b) Pyroclastic flows
c) Pillow lavas
d) Pahoehoe flows
Pillow lava-type volcanic material indicates an eruption underwater. Option C is correct.
The flow of lava at bottom of the water is known as pillow lavas. They have elongated, interconnected flow lobes that are circular or elliptical in cross-section. Pillow lavas are considered as important when trying to decipher old rock sequences because they indicate the presence of water.
Submarine volcanoes are underwater vents or volcanoes on the Earth's surface from which magma can erupt. If the gas content is low, and viscosity is high then the lava will pile up over the vent to produce a lava dome or volcanic dome
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Which of the following statements is true?
a) A region does NOT need to be distinguishable from other areas
b) Regions exist only at some scales
c) Financial networks are not functional regions
d) A region has to be a continuous area
The statement that is true is b) Regions exist only at some scales.
What are regions ?Regions are spatial areas that share common characteristics, whether it be cultural, economic, or physical. However, the definition and boundaries of a region can vary depending on the scale of analysis.
For example, a city can be considered a region at the local scale, but when viewed from a national or global perspective, it may be just a small part of a larger region, such as a state or country. A region typically needs to be distinguishable from other areas to be meaningful and useful in analysis and decision-making.
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in terms of population where does europe rank among all continents?
shapefiles are made of at least three separate files in the windows file system, and frequently include additional files containing info about projections and other auxiliary data. True or False
Shapefiles are made of at least three separate files in the windows file system, and frequently include additional files containing info about projections and other auxiliary data is true
Shapefiles are a type of geospatial vector data format for geographic data that are associated with ESRI. They consist of at least three separate files in the Windows file system and frequently include additional files containing information about projections and other auxiliary data.
These files are stored with specific extensions and are as follows:
.shp (The file with the .shp extension stores the main geometric data about the shapes.), .dbf (The file with the .dbf extension stores the attributes that describe the shapes.), .shx (The file with the .shx extension contains a positional index that allows the .shp file to be read more quickly.).They are known for being cross-platform, which means that they can be used on a variety of software applications, and for their ability to handle multiple layers of data.
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bishop desmond tutu and nelson mandela were both honored as nobel peace prize recipients because of their commitment to —ending racial injusticeprotecting the environmentbuilding schools for the poorspreading Christian teachings
Like his compatriot Albert Lutuli, the Anglican cleric Desmond Tutu was regarded with the nobel peace Prize for his resistance to South Africa's fierce politically-sanctioned racial segregation system.
What was concealed accomplishments ?Tutu was recognized by the Nobel Panel for his reasonable perspectives and his valiant position, qualities which had made him a binding together image for all African political dissidents. The nonviolent means of liberation received yet more attention.
Tutu remained true to his nonviolent stance despite the heinous crimes against the black population, such as the Sharpeville massacre in 1961 and the Soweto uprising in 1976. However, he would not hold Nelson Mandela or his supporters accountable for making a different decision. The Peace Prize made a significant impact on Tutu's international standing and assisted in the fight against apartheid.
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for people living on the edge of subsistence, climate changes brought about by the made life even more precarious in the tumultuous century following the reformation
The tumultuous century following the reformation was a difficult period for those living on the edge of subsistence. Climate change contributed to further hardship and insecurity.
Extreme weather events like floods, droughts, and cold spells had a direct impact on subsistence crops, meaning people had to compete for increasingly scarce resources. War and famine also disrupted farming activities and caused food shortages.
In addition, rising temperatures meant that previously suitable farming land became too hot and dry for cultivation. This led to an increase in poverty and displacement, as people were forced to move to find new sources of food and income.
The precariousness of life on the edge of subsistence was exacerbated by climate change, with vulnerable populations feeling the effects of a changing climate most acutely.
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what lake straddles the border between peru and bolivia
Lake Titicaca is the lake that straddles the border between Peru and Bolivia. The lake is situated in the Andean highlands and is South America's largest freshwater lake.
Lake Titicaca is South America's largest freshwater lake, and it has a surface area of 8,372 km². The lake is situated in the Andean highlands at an elevation of 3,812 meters above sea level, making it one of the world's highest navigable lakes.
The lake is located between Peru and Bolivia and is a crucial source of water for the population in the region. Lake Titicaca is also home to many species of fish, including the Andean catfish, the Orestias, and the Trichomycterus, all of which are of considerable ecological and economic importance.
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