Rain forests receive 70 inches to 30 feet of rainfall each year.
A rain forest is a typically tropical woodland with heavy annual precipitation and extremely tall, continuously layered evergreen trees. All year round, tropical rainforests are warm and lush. Even the difference in temperature between day and night is minimal. Tropical rainforests typically have temperatures between 70 and 85°F (21 and 30°C).
Tropical rainforests have a fairly moist climate with year-round humidity levels of 77% to 88%. Due to the amount of rain and sunshine these regions receive, tropical rainforests can be found close to the equator. The majority of tropical rainforests are located between the Tropics of Cancer and Capricorn.
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What are the Lesser Antilles?
a. The smaller islands of the Greater Antilles.
b. A region in the Caribbean.
c. A part of the South American continent.
d. None of the above.
Answer:
b. A region in the Caribbean.
Sort the following characteristics by the type of volcano they are associated with.1) pillow basalt2) lahars3) strombolian eruption4) pyroclastic flow5) flank eruptions6) fire fountain7) felsic lavecinder cone volcano :shield volcano :stratovolcano :
The following characteristics can be sorted by the type of volcano they are associated with:
cinder cone volcano - flank eruptions; strombolian eruptionshield volcano - pillow basalt; fire fountainstratovolcano - pyroclastic flow; lahars; felsic lavaPillow basalt, which is typically seen in oceanic intraplate volcanic islands, is associated with shield volcanoes. Shield volcanoes are formed by the accumulation of fluid basaltic lava that slowly spreads out, creating a broad and gentle-sloping volcano.
Strombolian eruptions are the least powerful volcanic eruptions, and they are most commonly associated with cinder cone volcanoes. The volcanic eruption sends lava in short bursts through the volcano's vent, sending lava hundreds of meters into the sky before it falls back to the ground.LaharsLahars are a type of volcanic mudflow that can occur on both cinder cone and stratovolcanoes. They form when volcanic ash, mud, and debris combine with water, melting snow, or ice and rush down the slopes of the volcano.
Pyroclastic flows are most commonly associated with stratovolcanoes. A pyroclastic flow is a high-velocity stream of hot ash, rock fragments, and gas that flows down the side of a volcano.
Flank eruptions, which can occur on both shield and stratovolcanoes, refer to volcanic eruptions that occur on the side of a volcano, rather than at the volcano's summit.
Fire fountains are typically seen in cinder cone volcanoes. They are brief, intermittent eruptions of lava that can rise hundreds of feet in the air before collapsing back onto the volcano's cone.
Felsic lava, which is high in silica and viscous, is typically associated with stratovolcanoes. Stratovolcanoes are steep-sided cones that are made up of alternating layers of lava and ash.
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which of the factors listed below make the pacific northwest particularly vulnerable to damage from debris flows? multiple select question. heavy annual precipitation volcanic activity high elevation, steep slopes folded and fractured rocks
The factors listed below that make the Pacific Northwest particularly vulnerable to damage from debris flows are A. heavy annual precipitation, volcanic activity, high elevation, and steep slopes.
Debris flows are rapid downhill movements of rocks, sediment, and water that move down channels and other paths in the landscape. Debris flows can be caused by landslides, volcanic activity, or heavy rainfall and it more likely to occur in areas with steep slopes, high elevations, and loose soil or rock. Heavy annual precipitation, the Pacific Northwest receives a large amount of precipitation every year, which can trigger landslides and debris flows. Rainfall increases the likelihood of debris flows because water can carry more sediment and increase the weight of the material moving down the slope.
Volcanic activity the pacific northwest is home to a number of active volcanoes, including Mount Rainier, Mount Hood, and Mount St. Helens. Volcanic activity can create unstable slopes and loose soil and rock, which can lead to debris flows.High elevation and steep slopesThe Pacific Northwest has a number of high-elevation mountains and steep slopes, which are susceptible to landslides and debris flows. Steep slopes are more prone to landslides and debris flows because they are more likely to be unstable and contain loose sediment and rock.Folded and fractured rocksThe presence of folded and fractured rocks can contribute to landslides and debris flows. However, this factor is not specific to the Pacific Northwest and is not unique to this region.
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which numbered area on this geologic map of north america consists of recently added tectonic terranes?
Area 1 on this geological map of North America consists of the recently added tectonic terranes, extending from Alaska south to the Pacific Coast.
The numbered area on this geologic map of North America which consists of recently added tectonic terranes is 1. A tectonic terrane is a fault-bounded block of the earth's crust, which has been accreted to or displaced from a continent by tectonic forces. As the location in question is Southern Alaska, it can be noted that this region has experienced multiple tectonic terranes addition over time, and these tectonic terranes are an integral part of the current geological structure of the region.
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Which is the greatest benefit to the people of Southern Africa from a growing solar energy industry?
1. They are viewed as a leader in an industry of the future.
2. Solar energy is an affordable and easily accessible energy source.
3. The industry creates more jobs for Southern Africans than fossil fuels.
4. The landscape isn’t cluttered by miles of wires and poles.
Answer: Solar energy is an affordable and easily accessible energy source
Explanation: South Africa and Egypt have the biggest solar capacity, followed by Algeria, the report says. By using this report, you can see clearly that number two is the correct answer.
what does it mean if airflow in the northern hemisphere is anticyclonic?
In the northern hemisphere, anticyclonic airflow means that the air is moving in a clockwise direction.
This is the contrary of volcanic tailwind, which is when the air moves in a counterclockwise direction. Anticyclonic tailwind generally occurs in areas of high pressure, which generally indicates good rainfall and clear skies.
The air is generally descending as it moves in an anticyclonic pattern, which is why the pressure is high. This pattern of air stir is also appertained to as a" high" or an" anticyclone." This type of rainfall pattern can frequently bring fair skies and affable rainfall.
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in iceland long, linear _ eruptions composed of low-viscosity, low-volatile lava flows are typical.
In Iceland, long, linear rift eruptions composed of low-viscosity, low-volatile lava flows are typical.
Iceland is one of the world's most volcanically active countries, with eruptions occurring every five years on average, and these are often fissure eruptions. The high-mountain landscapes of Iceland are a consequence of long periods of volcanic activity, with lava flows, ash clouds, and tephra deposits shaping the land.
Iceland's volcanoes are unique due to the fact that they are situated on the Mid-Atlantic Ridge, a divergent plate boundary where new crust is generated from volcanic activity. An eruptive fissure is a crack or narrow fissure in the ground from which lava and ash may erupt. Most volcanic fissures are found near shield volcanoes, which are formed by slow-flowing lava.
The Volcanic Explosivity Index, or VEI, is used to measure the intensity of volcanic eruptions, ranging from 0 to 8. Fissure eruptions are usually classified as VEI 0 or VEI 1 on this scale, indicating that they are not particularly explosive.
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Which equation represents a line which is parallel to the line 6x-5y=5
The equation of the line parallel to 6x-5y=5 that passes through the point (2,4) is y = (6/5)x + 18/5.
How to find the equation represents a line which is parallel to the line 6x-5y=5To find an equation that represents a line parallel to the line 6x-5y=5, we need to remember that parallel lines have the same slope.
To find the slope of the line 6x-5y=5, we can rearrange the equation into slope-intercept form, y = mx + b, where m is the slope and b is the y-intercept.
Starting with 6x - 5y = 5, we can subtract 6x from both sides to get:
-5y = -6x + 5
Dividing both sides by -5 gives us:
y = (6/5)x - 1
So the slope of the original line is 6/5.
Now, we can choose any point that we want the new line to pass through and use that point and the slope to write the equation of the new line.
For example, let's say we want the new line to pass through the point (2,4). Using the point-slope form of a line, we have:
y - 4 = (6/5)(x - 2)
Simplifying gives:
y = (6/5)x - 2/5 + 4
y = (6/5)x + 18/5
So the equation of the line parallel to 6x-5y=5 that passes through the point (2,4) is y = (6/5)x + 18/5.
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_________ make up about _______ percent of Muslims around the world.
Over the world, Sunni Muslims make up around 85–90% of the Muslim population, while Shia Muslims make up about 10%. The Ibadi, Ahmadiyya, and Sufi Muslims are only a few examples of the tiny sects that make up Islam.
How many Muslims are there in the world?The second-largest religious group in the world today is made up of Muslims. More than 24% of the world's population, or approximately 1.8 billion people, identify as Muslims.
Where do the roughly 30% of Muslims originate?91% of the people in the Middle East and North Africa (MENA), 89% in Central Asia, 40% in Southeast Asia, 31% in South Asia, 30% in Sub-Saharan Africa, 25% in Asia-Oceania, about 6% in Europe, and 1% in the Americas identify as Muslims.
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Where would one likely find the deepest soil development?
A) over the oldest geological formations in an area, regardless of slope
B) on level or nearly level grounds
C) on moderately sloping, south facing hills (in the Northern Hemisphere)
D) on steep slopes
E) in biologically productive areas, regardless of slope or aspect
One is likely to find the deepest soil development on level or nearly level grounds. This option B is the correct answer.
What is soil development?Soil development is a gradual natural process where soils are formed as a result of weathering of rocks over time. This process also involves other biological factors such as decay of organic matter, and other soil-forming processes.
Soils are formed from parent materials. These materials include minerals, rocks, and organic materials. Parent materials are broken down and transformed over time to form soils.
What is soil profile?Soil profile refers to the vertical arrangement of soils that makes up a soil horizon. The soil profile is made up of several layers that each has unique features. Each of these layers forms through soil-forming processes that take place over time.
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What shape do we call the Moon when we can only see a small sliver or less than a 1 4 of the Moon?
Crescent moon is the Moon when we can only see a small sliver or less than a 1/4th of the Moon.
It is the most common of the three lunar phases that can be seen from Earth, the other two being the full moon and the gibbous moon. A crescent moon appears when the Moon is in its waxing phase, meaning it is between a new moon and a half moon.
We can only see a crescent moon when we are looking at less than a quarter of the illuminated side of the Moon, with the rest of it being in the shadow of the Earth. The crescent shape can vary greatly in size, ranging from a thin sliver to a wide arc. It is a beautiful sight to behold in the night sky, and many cultures have associated the crescent moon with the goddess of the moon.
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The question is-
What shape do we call the Moon when we can only see a small sliver or less than a 1/4th of the Moon?
How did World War II affect Australia’s culture?
Responses
a. The war lowered the population. This changed people’s beliefs about who should immigrate to and live in Australia.
b. The war drained resources. This led Australians to grow and export more of their own crops.
c. The war damaged the economy. This led Australians to want to focus on economic development.
d. The war damaged the infrastructure. This led Australians to support more public works projects.
The world war 2 affected Australia's culture by lowering its population and changing people’s beliefs about who should immigrate to and live in Australia.
Therefore option a. is correct.
An increasingly recognizable Australian popular culture began to emerge after World War II.
The entrance and continued presence of more than 100,000 American soldiers in Australia starting in 1941 had a significant effect on postwar culture and society.
Which definition of culture is more accurate?The term "culture" refers to all of a population's passed-down ways of living, such as its institutions, beliefs, and artistic expression. "The manner of life for an entire society" is how some people define culture.
The manners, dress, language, religion, rituals, and art rules are all part of it.
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What type of rock might contain evidence of past life?what material is this?
Sedimentary rocks can contain evidence of past life. These rocks are formed from the accumulation of sediment, which can include organic material such as the remains of plants and animals.
Over time, these remains become compacted and lithified into sedimentary rock. Fossils are the most common type of evidence of past life found in sedimentary rocks. Fossils are not only the preserved remains of an organism, but can also include traces such as tracks and burrows, as well as chemical evidence.
Fossilized shells, bones, and teeth are often found in sedimentary rock, providing evidence of life in the past. Additionally, sedimentary rocks may contain evidence of past life in the form of stromatolites, which are layered structures formed by the trapping, binding, and cementation of sediment by microbial mats. Other types of sedimentary rocks such as coal and oil shale can also contain evidence of past life in the form of preserved plant and animal remains.
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based on radiometric dating, what is the estimated age of the earth?
The estimated age of the Earth is 4.54 billion years, based on radiometric dating.
This age is based on evidence from radiometric age dating of meteorite material and is consistent with the ages of the oldest-known terrestrial and lunar samples. Radiometric dating works by measuring the amount of a naturally occurring radioactive isotope and its decay products, assuming that the decay rate is constant over time.
This method has been used to determine the ages of the Earth, Moon, meteorites, and rocks from other planets. The age of the Earth is estimated by radiometric dating of meteorite material and is considered reliable by scientists.
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What are global wind patterns called?a. a local winds b. prevailing winds c. el ninod, la niña
hich of these four images would accurately demonstrate the path seismic rays would take through the interior if the interior of earth was made of uniform materials?
As an AI language model, I don't have the ability to display images. However, I can describe which image would accurately demonstrate the path seismic rays would take through the interior if the interior of the Earth was made of uniform materials.
If the interior of the Earth was made of uniform materials, seismic rays would travel in straight lines through the Earth's interior. Therefore, the image that would accurately demonstrate the path seismic rays would take through the Earth's interior would be an image of straight lines passing through the center of the Earth, as opposed to an image with curved or angled lines.
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irish immigrants to the united states typically settled in what areas?
Answer: Irish Emigration to America Irish men and women first settled in the United States during the 1700s. These were predominantly Scots-Irish and they largely settled into a rural way of life in Virginia, Pennsylvania and the Carolinas.
Explanation:
Identify the following steps in the development of a karst landscape by dragging them to the correct targets ACaves form below water table. Water- table RWater table sinks; new caves form. c ) New caves get bigger Water table Old caves empty; speleothems Sinkhole grow Caves collapse; karst landscape develops. Water able
Here are the correct steps in the development of a karst landscape and their corresponding targets:
A) Caves form below the water table.
B) Water table sinks; new caves form.
C) New caves get bigger as water table continues to sink.
D) Old caves empty; speleothems (cave formations such as stalactites and stalagmites) form.
E) Sinkholes grow as the roof of the caves collapses.
F) Caves collapse, and a karst landscape develops.
Karst landscapes are formed through the dissolution of soluble rocks, such as limestone, by groundwater. The process starts with the formation of caves below the water table. As the water table sinks due to the continuous erosion of the rock, new caves are formed and the existing ones get bigger. As the water continues to drain, the old caves empty, leaving behind speleothems. The roof of the caves can eventually collapse, leading to the formation of sinkholes, and the caves themselves can collapse, leading to the development of a karst landscape with features such as towers, valleys, and underground rivers.
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Io this next part, you will practice lithologic correlation. You need to use the following Ruler . Pencil with eraser (no pen) . Colored pencils (optional) . To correlate the sections. you will use a pencil and a ruler to draw lines connecting geologic contacts between beds as illustrated in Figure 7.16. This is not a matching activity, so do not draw lines to the midpoints of the units. Draw your lines at the contacts. Use a ruler and be as neat as possible. Note that each vertical column is a stratigraphic section. Each different rock type can be regarded as a bed or facies. 1. Correlate the three stratigraphic sections below, Draw lines between the three stratigraphic sections below to connect the geologic contacts between beds. a. How many beds can be correlated across all three sections b. How thick is the thickest stratigraphie section (entire column of rocks)? (Note meters that the scale goes from 0 to 70 meters.) , , c. A bed of coal (black) is present in sections B and C. Draw where it would appear in the blank area of section A. How deep would you have to drill in section A (starting at the top of the section, up near the letter A) to reach the buried coal seam? meters d. What type of unconformity is present? e. Above the unconformity, is there a transgressive sequence or a regressive sequence?
To practice lithologic correlation, follow these steps:
1. Gather the required materials: a ruler, a pencil with eraser, and colored pencils (optional).
2. Correlate the three stratigraphic sections by drawing lines with a pencil and a ruler to connect geologic contacts between beds as illustrated in Figure 7.16. Remember, this is not a matching activity, so draw lines at the contacts, not the midpoints of the units.
a. The number of beds that can be correlated across all three sections depends on the specific stratigraphic sections provided, which are not included in the question.
b. To determine the thickness of the thickest stratigraphic section, refer to the provided scale (0 to 70 meters) and measure the entire column of rocks in each section. The highest measurement is the thickest section.
c. To locate the bed of coal in section A, examine where it appears in sections B and C, and draw it accordingly in the blank area of section A.
To calculate the depth required to drill in section A to reach the coal seam, measure the distance from the top of section A to the top of the coal bed, using the provided scale.
d. The type of unconformity present depends on the specific stratigraphic sections provided, which are not included in the question.
e. To determine whether the sequence above the unconformity is transgressive or regressive, observe the change in sediment grain size and the sequence's overall trend (i.e., marine or non-marine).
If the sequence shows a progression from coarser to finer-grained sediments and a marine trend, it is transgressive. If the sequence shows a progression from finer to coarser-grained sediments and a non-marine trend, it is regressive.
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over what range of distances from the sun would you expect to find solid, rocky material collecting together to form a terrestrial planet? explain your reasoning
The range of distances from the sun would you expect to find solid, rocky material collecting together to form a terrestrial planet is between 0.4 and 4.0 astronomical units. The reason for this range of distance is due to the temperature and pressure of the protoplanetary disk as the temperature and pressure decrease with distance from the Sun.
Terrestrial planets are the four planets in the solar system that are closest to the sun, including Mercury, Venus, Earth, and Mars. These planets are classified as terrestrial planets because they are small and rocky, compared to the four gas giant planets which are large and gaseous.
The range of distances from the sun to find solid, rocky material is from 0.4 to 4.0 astronomical units. This is due to the temperature and pressure of the protoplanetary disk, which is decreasing with distance from the sun. This is the reason for the range of distances that are needed to form the terrestrial planets like Earth, Mars, Venus and Mercury.
The inner part of the solar system is known as the terrestrial planet region. The reason for the formation of these planets is due to the process of accretion in which smaller particles of dust and rock collide and stick together to form larger objects. Over time, these objects continued to grow in size, eventually leading to the formation of planets.
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Why do sciences use index fossils
What is most volcanism in the world associated with?
Most volcanism in the world is associated with tectonic plate boundaries, where plates either converge, diverge, or slide past each other.
The vast majority of volcanic activity occurs along the boundaries of the Pacific Plate, which is the largest and most active tectonic plate. When two plates converge, one may be subducted beneath the other, creating a volcanic arc. Divergent plate boundaries create new oceanic crust through volcanic activity, while transform plate boundaries can produce volcanic activity as a result of the movement and deformation of the plates. Some volcanoes, such as those found in Hawaii and Iceland, are associated with hotspots, which are areas of intense heat and volcanic activity that are not directly related to plate boundaries.
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What happens after the helium flash in the core of a star?A) The core quickly heats up and expands.B) The star breaks apart in a violent explosion.C) The core suddenly contracts.D) The core stops fusing helium.E) The star starts to fuse helium in a shell outside the core.
After the helium flash in the core of a star, the core suddenly contracts. This occurs due to the rapid fusion of helium. Answer.c
What is a helium flash?
Helium flash is the term used to describe the ignition of helium fusion in a star's core. It happens when a low-mass star evolves to the point that its helium core becomes degenerate. As a result of the increased temperature in the core, it undergoes a helium flash.
This will make the star shrink and cause it to expand again after the flash has ended. It ignites the nuclear fusion of helium into carbon, which provides additional heat and pressure to counteract gravity. As a result, the star will become more stable and will not collapse.
What happens after the helium flash in the core of a star?
After the helium flash in the core of a star, the core suddenly contracts. This occurs due to the rapid fusion of helium. As the core heats up, it expands until helium fusion occurs, and then it cools and contracts.
When the core contracts, the temperature and density rise again, allowing helium fusion to proceed at a faster rate. The newly generated energy causes the outer layers to expand once more, and the cycle repeats. Therefore, option C, "The core suddenly contracts," is the correct answer.
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how was gdp miss used in the past and the present
A country's economic output is measured by its gross domestic product (GDP), which has been used for many years to gauge the strength and development of a country's economy.
What is the usage of GDP's history?Simon Kuznets created the contemporary definition of GDP for a 1934 report to the U.S. Congress, in which he cautioned against using it as a welfare indicator (see below under limitations and criticisms).
What was India's GDP before?From 1960 and 2021, India GDP increased by 699.08 $ on average, with a record high of 3176.30 USD in 2021 and a record low of 37.03 USD in 1960.
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what is radiometric dating? group of answer choices the process of determining the age of a fossil from radioactive isotopes the process of determining the age of a fossil using radio waves the mineralization process by which living things are turned into fossils the process of determining the age of a fossil based on its location in layers of rocks
In radiometric dating, the relative abundance of specific radioactive isotopes and their decay products are used to calculate the age of a sample or specimen, typically a rock or mineral.
Because specific isotopes decay over time at a predictable rate, this method is frequently used to date rocks, minerals, fossils, and other organic remains.
Scientists can determine when the sample was created or when the organism died by calculating the ratio of parent and daughter isotopes in a sample. This enables them to establish the sample's age and, consequently, the age of the fossil or other organic material that it contains.
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the luyten 726-8 star system contains two stars, one with apparent magnitude m = 12.5 and the other with m = 12.9. what is the combined apparent magnitude of the two stars?
The the combined apparent magnitude of the two stars in the Luyten 726-8 star system, one with apparent magnitude m = 12.5 and the other with m = 12.9 is approximately 12.32
To find the combined apparent magnitude of the two stars, we will follow these steps:
1. Convert the apparent magnitudes (m1 and m2) to their relative brightness (f1 and f2) using the formula: f = 10^(-m/2.5). This is because the magnitude scale is logarithmic. 2. Add the relative brightness values of the two stars (f1 and f2) to get their combined brightness (F_total). 3. Convert the combined brightness (F_total) back to the apparent magnitude (M_total) using the inverse formula: m = -2.5 * log10(f).
Now, let's apply these steps to the given magnitudes:Step 1: f1 = 10^(-12.5/2.5) = 10^(-5), f2 = 10^(-12.9/2.5) = 10^(-5.16)
Step 2: F_total = f1 + f2 = 10^(-5) + 10^(-5.16)
Step 3: M_total = -2.5 * log10(F_total), After calculating the values, we get:
F_total ≈ 1.38 * 10^(-5)
M_total ≈ -2.5 * log10(1.38 * 10^(-5)) ≈ 12.32
So, the combined apparent magnitude of the two stars in the Luyten 726-8 star system is approximately 12.32.
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The Lomonosov mine is one of the largest diamond mines in Russia and in the world. The mine is located in the north-western part of the country in the Arkhangelsk Oblast.
The given statement "The Lomonosov mine is one of the largest diamond mines in Russia and in the world. The mine is located in the north-western part of the country in the Arkhangelsk Oblast" is True because It is located in a large area of land spanning nearly 140 square kilometers and is estimated to contain more than 200 million carats of diamond reserves.
It is owned and operated by the state-owned ALROSA, the world’s leading diamond producer. The mine produces around 6 million carats of diamonds annually and is the largest producer of gem-quality diamonds in the world.
It has been estimated that the mine will be capable of producing diamonds for another 70 years. The mine has provided employment to many people in the area and has contributed to the local economy.
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The Question is-
The Lomonosov mine is one of the largest diamond mines in Russia and in the world. The mine is located in the north-western part of the country in the Arkhangelsk Oblast. True/False
76. What regional effects influence continental interiors?
a)rises and falls in sea level related to changes in global climate
b)stresses transmitted from distant plate boundaries and mountain belts
c)preexisting fault that can be activated by stresses, causing faulting and folding
d)all of these
Answer:
Continental interiors are influenced by many factors
so it could be all of the above im not sure
Explanation: hope its right sorry if it isnt
The regional effects that influence continental interiors are:Rises and falls in sea level related to changes in global climate, stresses transmitted from distant plate boundaries and mountain belts and preexisting fault that can be activated by stresses, causing faulting and folding. The correct option is (d).
These three regional effects influence continental interiors, and all of them are discussed in detail below.
Rises and falls in sea level related to changes in global climate : The sea level changes due to the variations in the global climate that occur over long periods. When the climate gets colder, the sea level lowers, and when it gets warmer, the sea level increases.Stresses transmitted from distant plate boundaries and mountain belts.Stresses caused by movements in distant plate boundaries and mountain belts can influence continental interiors: When these stresses occur, the force is transmitted through the earth's crust, leading to changes in the earth's surface, such as faulting and folding
.Preexisting faults that can be activated by stresses, causing faulting and folding : Preexisting faults in the continental interiors can be activated by stresses, leading to faulting and folding. When the stresses exceed the rock's strength, the rock will break, leading to faulting and folding.In conclusion, all the regional effects mentioned above can influence continental interiors.
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the original rock from which a metamorphic rock formed.
Answer:
crustaline
Explanation:
it is the original rock
Volcanic activity created the _____ that is important to the economy of the village of Vestmannaeyjar on the island of Heimaey, near Iceland.
fishing port
volcanic peaks
mineral ores
hot springs
Volcanic activity created the fishing port that is important to the economy of the village of Vestmannaeyjar on the island of Heimaey, near Iceland.
In January 1973, a volcanic eruption began in the Vestmannaeyjar archipelago, which lasted for several months and created a new island called Surtsey. The eruption also threatened the town of Vestmannaeyjar on the island of Heimaey, but the local fishing fleet worked tirelessly to create a harbor to protect the town from the lava flow. Thanks to their efforts, the harbor was successfully completed and has since become one of the largest fishing ports in Iceland. The local fishing industry is a major contributor to the economy of the village, with fish processing and export being significant sources of income.
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