If the given time series has no trend and no seasonality, the most appropriate forecasting model to determine the forecast of the time series is the single moving average model.
Using the number of periods inside the range, simple moving averages determine the average of a range of prices.A technical indicator known as a simple moving average can help predict whether a bullish or bearish trend in the price of an asset will continue or reverse.The exponential moving average (EMA), which gives recent price movement more weight, can improve a simple moving average.An arithmetic moving average known as a simple moving average (SMA) is created by adding recent prices and dividing the result by the total number of time periods used in the calculation average.In contrast to long-term averages, which take longer to react, short-term averages react quickly to changes in the price of the underlying security.Learn more about Simple moving averages, here
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Which mineral property describes the color dust a mineral leaves behind?
Explanation:
Streak is the color of a mineral's powder. Streak is a more reliable property than color because streak does not vary. Minerals that are the same color may have a different colored streak. Many minerals, such as the quartz in the Figure above, do not have streak.
hat are the three components of magma? the liquid portion called melt, the solid portion which consists of silicate mineral crystals, and the gaseous portion called steam the liquid portion called melt, the solid portion which consists of silicate mineral crystals, and the gaseous portion called volatiles the liquid portion, which is mostly water, the solid portion which consists of silicate mineral crystals, and the gaseous portion called volatiles the liquid portion called melt, the solid portion which consists of fragments of formed igneous rock, and the gaseous portion called volatiles
The three components of magma are: the liquid portion called melt, the solid portion which consists of silicate mineral crystals, and the gaseous portion called volatiles.
The three components of magma are the liquid portion called melt, the solid portion which consists of silicate mineral crystals, and the gaseous portion called volatiles. The melt is the liquid portion of the magma that is composed of molten rock material. The solid portion is made up of silicate mineral crystals that have formed as the magma has cooled and solidified.
The volatiles are the gaseous portion of the magma that is made up of various gases, including water vapor, carbon dioxide, sulfur dioxide, and others. These three components work together to determine the characteristics of the magma and its behavior as it moves through the Earth's crust and erupts onto the surface.
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What is a midlatitude cyclone
Answer:
They are weather systems that happen to spin in a counterclockwise direction in the Northern Hemisphere from low pressure points. They form between two big cold fronts when their temperatures are very different compared to each other. These air masses will blow past each other in opposite directions when it is formed.
Choose the most likely product of partially melting a rock of intermediate composition.
Choose one:
A. ultra-mafic magma
B. mafic magma
C. felsic magma
D. a melt of the same composition as the original rock
The most likely product of partially melting a rock of intermediate composition is mafic magma. So the option B is correct.
Mafic magma is magma with a higher concentration of heavier elements, such as magnesium and iron, than silica. It is common in rocks of intermediate composition since they generally contain more of these heavier elements than other types of rocks.
Mafic magma is less viscous than other types of magma, making it easier to move through the Earth’s crust. It is also the primary source material for basaltic rocks, which are a common product of volcanic activity.
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Figure 1 shows a seaside cliff. Figure 2 shows the same cliff after a short period of time has passed. What caused the change from figure 1 to figure 2 A.Rainfall only B.Ocean waves only C.Wind D.Rainfall and ocean waves
Answer : B
Explanation: the change is caused by erosion that is caused by strong ocean waves bashing up against the cliff.
Answer:
The correct answer is D) Rainfall and Ocean waves.
Explanation:
The diagram indicated is a perfect example of coastal erosion.
Coastal erosion happens when land is lost or displaced. This can be short-term or long-term and may involve the elimination of sediment and rocks along the coastline resulting from the action of waves, currents, tides, wind-driven water, waterborne ice, or other impacts of storms.
The four main stages of coastal erosion are corrosion, abrasion, hydraulic action, and attrition.
The United States for instance experiences a lot of coastal erosion in all its regions. More specifically, barrier islands in the southeast and the Great Lakes record 25 feet and 50 feet recession rates respectively.
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How do most people visit glacier bay national park and preserve?.
Most people visit Glacier Bay National Park and Preserve through a cruise ship or tour boat. Visiting Glacier Bay National Park and Preserve is a unique and memorable experience that many people plan on making.
What are other measure?The park is only accessible via boat or plane since there are no roads.
Visitors can arrive at the park by taking a cruise ship or tour boat from Juneau, Alaska. Cruise ships are the most popular way to visit Glacier Bay National Park and Preserve.
Tourists get to view the stunning scenery and wildlife of the park. Visitors can also get a kayak tour of the Glacier Bay, which is a unique and adventurous way to explore the park. Many people visit the park to enjoy its serene beauty and get away from the hustle and bustle of the city.
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Surface area using nets Check out this rectangular prism 2 1 1 1 . 3 . 1 1 4 3
Answer:
52
Explanation:
1. Given the length, width and height find the volume, surface area and diagonal of a rectangular prism
h, l and w are known; find V, S and d
V = lwh
S = 2(lw + lh + wh)
d = √(l2 + w2 + h2)
2. Given the surface area, length and width find the height, volume and diagonal of a rectangular prism
S, l and w are known; find h, V and d
h = (S - 2lw) / (2l + 2w)
V = lwh
d = √(l2 + w2 + h2)
3. Given the volume, length and width find the height, surface area, and diagonal of a rectangular prism
V, l and w are known; find h, S and d
h = V / lw
S = 2(lw + lh + wh)
d = √(l2 + w2 + h2)
4. Given the diagonal, length and width find the height, volume and surface area of a rectangular prism
d, l and w are known; find h, V and S
h = √(d2 - l2 - w2)
V = lwh
S = 2(lw + lh + wh)
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Antarctica's location and climate changed over the last 200 million years because Antarctica moved... A) southward, resulting in a colder climate B) northward, resulting in a colder climate C) northward, resulting in a warmer climate D) southward, resulting in a warmer climate
Answer:
A
Explanation:
Because Antarctica is getting colder each year it has to move south for it to be cold if it moves north then it moves toward the equator which is a warmer climate but Antarctica is getting colder therefore its A.
The correct option is A.
Antarctica's location and climate changed over the last 200 million years because Antarctica moved southward, resulting in a colder climate.
How is Antarctica affected by climate change?
The warming of the Antarctic Peninsula is causing changes to the physical and living environment of Antarctica. The distribution of penguin colonies has changed as the sea ice conditions alter. Melting of perennial snow and ice covers has resulted in increased colonization by plants.
How is Antarctica a crucial element in the debate on climate change?Antarctica is a crucial element in the debate on climate change because it is the only place in the world that has never sustained a human population and thus remains relatively pristine. Moreover, it holds in its ice caves half-million- year old carbon records trapped in its layers of ice.
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contact metamorphism [ choose ] burial metamorphism occurs when rocks are buried very deeply by overlying sediments dynamic metamorphism [ choose ] metasomatism [ choose ] impact metamorphism [ choose ] regional metamorphism
1. Contact Metamorphism: This type of metamorphism occurs when rocks are subjected to high temperatures and low pressures due to proximity to an igneous intrusion. The heat from the intrusion alters the surrounding rocks, causing changes in their mineralogy and texture.
2. Burial Metamorphism: Burial metamorphism happens when rocks are subjected to increased temperatures and pressures due to deep burial in the Earth's crust. The weight of overlying sediments or tectonic forces can lead to changes in the rock's composition and structure.
3. Dynamic Metamorphism: Dynamic metamorphism occurs when rocks undergo high temperatures and pressures due to intense deformation during tectonic activity. The rocks experience significant strain, resulting in changes in their mineralogy and texture along fault zones or shear zones.
4. Metasomatism: Metasomatism involves the alteration of rock composition by the introduction or removal of chemical substances through fluids. This process can lead to changes in mineralogy and the formation of new minerals within the rock.
5. Impact Metamorphism: Impact metamorphism occurs when high-velocity meteorite impacts the Earth's surface, generating extremely high pressures and temperatures. The intense energy and shock waves cause profound changes in the target rocks, including the formation of unique mineral structures such as shatter cones and impact breccias.
6. Regional Metamorphism: Regional metamorphism is the most common type of metamorphism, occurring over large areas due to the effects of regional tectonic forces and deep burial. It involves the transformation of rocks due to high temperatures, pressures, and chemical changes, resulting in the development of new minerals and altered textures.
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The occurrence of earthquakes is associated with. . Select one:
a. Locations only in the southern hemisphere
b. Only divergent plate boundaries
c. Only convergent plate boundaries
d. Only transform plate boundaries
e. Locations only in the northern hemisphere
f. Any of transform, divergent and convergent plate boundaries
Earthquakes can occur at any of the three types of plate boundaries: transform, divergent, and convergent. Their occurrence is not limited to a specific hemisphere but can happen anywhere in the world where tectonic plates interact.
The occurrence of earthquakes is not limited to a specific hemisphere or plate boundary type. Earthquakes can happen at any of the three types of plate boundaries: transform, divergent, and convergent.
Transform plate boundaries occur when two plates slide past each other horizontally. The friction and stress along these boundaries can build up over time, resulting in earthquakes. Famous examples of transform plate boundaries include the San Andreas Fault in California.
Divergent plate boundaries are characterized by plates moving away from each other. As the plates separate, magma rises to fill the gap, forming new crust. The movement of plates and the volcanic activity associated with this process can cause earthquakes. The Mid-Atlantic Ridge is an example of a divergent plate boundary.
Convergent plate boundaries occur when two plates collide or come together. These boundaries can involve subduction, where one plate sinks beneath another, or continental collision, where two continental plates collide. The intense pressure and compression at these boundaries can generate powerful earthquakes. The Pacific Ring of Fire, which surrounds the Pacific Ocean, is known for its numerous convergent plate boundaries and high earthquake activity.
In summary, earthquakes can occur at transform, divergent, and convergent plate boundaries. The occurrence of earthquakes is not limited to a specific hemisphere. Earthquakes can happen anywhere in the world where tectonic plates interact, regardless of their location in the northern or southern hemisphere.
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which shelter was impossible for early humans to have given their way of life? tents tents caves caves permanent homes permanent homes rock shelters in cliffs
Lima, the capital of Peru, is a city that was not taken over from indigenous peoples but was founded by the Spanish. true false
Answer: the answer is true
Answer: true
Explanation:
on a worldwide basis the fastest growing renewable source for generating electricity is
The fastest-growing renewable source for generating electricity worldwide is solar power. Solar power is a clean and abundant source of energy that can be harnessed through photovoltaic (PV) systems or concentrated solar power (CSP) plants.
Solar energy has experienced significant growth in recent years due to advancements in technology, decreasing costs of solar panels, and increased government support and incentives.
It's important to note that the growth rates of renewable energy sources can vary over time and are influenced by various factors such as government policies, market conditions, and technological advancements. Therefore, it's recommended to consult the latest data and reports from reputable sources to obtain the most up-to-date information on the fastest-growing renewable energy sources for generating electricity worldwide.
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Which of the following phrases best defines migration?
A. forcing others to move away from their homes
B. encouraging others to move to a new place
C. spreading culture from one place to another
D. moving from one place to another to find a new place to live
In which body of water is the Great Barrier Reef found?
Indian Ocean
Mediterranean Sean
Coral Sea
Atlantic Ocean
Answer:
C. The coral sea
Explanation:
the Great Barrier Reef is the largest coral reef system in the world. The reef is located off the coast of Queensland, Australia, in the Coral Sea.
where the water table intersects earth's surface, a(n) ________ results.
Where the water table intersects earth's surface, a wetland results.
A wetland is a type of ecosystem characterized by saturated or seasonally flooded soil, and the presence of vegetation adapted to these unique conditions. Wetlands are vital habitats for many species of plants and animals, providing important breeding, feeding, and resting grounds. They also provide valuable ecosystem services, such as water purification, flood control, and carbon sequestration.
However, wetlands are also one of the most threatened ecosystems, with many being destroyed or degraded by human activities such as drainage, agriculture, and urbanization. It is important to protect and conserve wetlands to ensure their continued existence and the benefits they provide to society.
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landslide - gros ventre slide, wy. debris from the landslide dammed up the gros ventre river to form slide lake. based on the position of the lake, in what direction does the river flow at this locality?
the landslide dammed up the Gros Venter river to form slide lake. based on the position of the lake, the river flows from west to east.
What is Gross Venter River?The Gros Venter River is a 74.6-mile-long tributary of the Snake River in Wyoming, USA.In a short course, the river flows east, north, west, and southwest. It originates in the Gros Venter River in western Wyoming and empties into the Snake River in the Jackson Hole Valley. Heavy rains and rapidly melting snow soaked Ten sleep Sandstone, making the Ramsden Shale Formation on Sheep Mountain very slippery.Gross Venter River through sandstone created a 'free flank' with no additional supports to maintain the flow. There was no material support on the slopes as the river had eroded the material on the valley floor.To learn more about Gross Venter River from the given link:
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A shadow is formed by ...... bodies
Answer:
A shadow is formed by opaque bodies.
Explanation:
What is a shadow?
A shadow is a dark, two-dimensional shape formed on a nearby surface when an opaque body is placed in the path of light emitted by a source.
What are opaque bodies?
Objects that do not allow light rays to pass through them are known as opaque bodies. In other words, opaque bodies obstruct the path of incident light rays.
Why is a shadow formed?
A shadow is a dark two - dimensional cast of an opaque object placed in the path of light, on a nearby surface. Since the body obstructs the passage of light rays following that path and either deflects or absorbs them, so no light ray reaches the surface in the region covered by the projection of the body on that surface.
Hence the area appears dark and assumes a shape exactly identical to the shape of the opaque body.
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Because of the intertropical convergence zone, land around the equator is likely to have?
WHAT IS THE PRECISION OF THE TRAVERSE? O 1:105,000 O 1:1500 O 1: 20,500 O 1:15,000 WHAT IS THE CORRECTION FOR DEPARTURE AND LATITUDE OF THE PREVIOUS PROBLEM? 0.035 M and 0.025 M O 0.16 M and 0.003 M O 0.08 M and 0.15 M -0.016 Mand -0.003 M D Question 15 8 pts From the previous problem, if the coordinate for Point A was N: 121,311.411 M and E: 310,630.892 M, what is the coordinate for point C? ON: 121,625.193 M and 310,851.89 M N: 121,708.396 M and 310,229.785 M O N:121,824.38 ME: 310,551.751 M 121,559.72 M and 310,531.317 M What is the corrected length of Line EA? 295.178 M 269 M 350.123 M O 267.523 M What is the value of angle D? O 46 degrees 03' 19" 46 degrees 03' 31" 46 degrees 03' 42" 0.63 degrees 45'08" Question 10 8 pts Balance the following interior angles to the right for a polygon traverse. Compute the azimuths assuming a fixed azimuth for line AB of 35 degrees 09' 32" A = 57 DEGREES OO' 50" B= 88 DEGREES 24' 45" C = 126 DEGREES 36' 58" D = 46 DEGREES 03' 25" E = 221 DEGREES 53' 52" WHAT IS THE ADJUSTED ANGLE FOR ANGLE "C" 126 DEGREES 36 56" 126 DEGREES 36' 58" 126 DEGREES 37' 04" 126 DEGREES 37'00" Question 11 8 pts FROM THE PREVIOUS PROBLEM WHAT IS THE AZIMUTH OF LINE EA? 338 DEGREES 08' 40" O 116 DEGREES 14' 46" 158 DEGREES 08' 40" O 518 DEGREES 08' 40"
we need to apply the corrections to the coordinates of point A. Given that the coordinates of point A are N: 121,311.411 M and E: 310,630.892 M, the corrected coordinates for point C are N: 121,625.193 M and E: 310,851.89 M.
The precision of the traverse is given as 1:15,000.
The correction for departure is 0.035 M and the correction for latitude is -0.003 M.
The corrected length of Line EA is 267.523 M.
The value of angle D is 46 degrees 03' 42".
To balance the interior angles, we need to adjust angle C. The adjusted angle for angle C is 126 degrees 36' 56".
From the previous problem, the azimuth of Line EA is 338 degrees 08' 40".
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Traditional economies can meet their needs over time. All economies were initially traditional.
What is an effective illustration of a traditional economy?Traditions, practises, and beliefs play a significant role in the production of goods and services in a traditional economy, as well as in the distribution of those commodities and services. These types of economies are frequently seen in rural, agrarian nations. The Mbuti of central Africa, the Aboriginal people of Australia, and the Inuit of northern Canada are a few cultures with traditional economies. The major benefit of a traditional economy is that traditions and practises govern the WHAT, HOW, and FOR WHOM to produce questions. In growing second- and third-world nations, particularly in Africa, Latin America, Asia, and the Middle East, traditional economies are most prevalent in rural areas.
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Compare and contrast the advantages and disadvantages of
nuclear power plants and power plants that burn fossil fuels.
Nuclear and Fossil fuel-burning power plants are thermal power stations that produce heat to make steam to spin a generator and generate electricity. They differ mainly in where their energy comes from; a nuclear reactor produces heat from radioactive metals, and a fossil-fuel plant burns coal, oil, or natural gas.
Nuclear power plants turn a small amount of (different) nonrenewable rock into power and solid pollutants that can be contained quite reliably, with (especially compared to the power produced) very few exceptions.
Fossil fuel-burning power plant turns a large amount of nonrenewable rock (and oil) into power and pollutant gas that can’t easily be contained and gets out into the environment.
The advantages of nuclear power are they are low-carbon energy sources, reliable and cost-effective, and essential to our response to climate change and greenhouse gas emissions, whereas, for fossil fuel-burning plants, they are easy to install, highly efficient and reliable, currently wide availability, an abundance of fossil fuel sources.
The disadvantages of the nuclear power plant are nuclear waste, malfunctions can be catastrophic, and very high upfront costs, whereas, in the case of fossil fuel burning plants, they are unsustainable, incentivized, release vast amounts of harmful byproducts called greenhouse gases (especially carbon dioxide (CO2)), into the atmosphere and non-renewable.
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The term _____ is used to describe how far apart two locations are. A areaarea B longitudelongitude C locationlocation D distance
Answer:
D. Distance
Explanation:
Area is the measurement of a surface of piece of land, longitude describes the measurement east or west of the prime meridian, and location is a place or position.
please make a case study about leyte earthquake!
Answer:The earthquake that struck the province of Leyte in the Philippines on July 6 , 2017, was a magnitude 6.5 earthquake that had significant impacts on the lives and livelihoods of the affected communities. The earthquake was shallow, with a depth of only 2 kilometers, and was located in the northern sector of Leyte Island along the Philippine Fault.
A case study was conducted to examine the impacts of the earthquake on the lives and livelihoods of the affected communities , with a focus on Barangay Lake Danao in Ormoc City. The study found that the earthquake had significant impacts on the physical infrastructure, the economy, and the social and psychological well-being of the affected communities.
The earthquake caused damage to houses, buildings, roads, and other infrastructure, resulting in significant economic losses. Many businesses and livelihoods were affected, with farmers, fishers, and small business owners losing their sources of income. The earthquake also disrupted the delivery of basic services, such as electricity and water supply.
In addition to the physical impacts, the earthquake also had significant social and psychological impacts on the affected communities. Many people experienced anxiety, fear, and trauma as a result of the earthquake, with some people still feeling the effects of the earthquake months later. The earthquake also caused significant disruption to social and community activities, such as church gatherings, festivals, and other cultural events.
The case study identified several lessons learned from the earthquake, including the need for better infrastructure design and construction standards, the importance of disaster preparedness and response planning at the community level, and the need for effective communication systems to disseminate information to the affected communities.
Overall, the Leyte earthquake of July 6, 2017, had significant impacts on the lives and livelihoods of the affected communities, highlighting the importance of disaster preparedness and effective response planning in mitigating the impacts of natural disasters.
Explanation:
How are faults related to plate tectonics?
Answer:
A fault is formed in the Earth's crust as a brittle response to stress. ... Generally, the movement of the tectonic plates provides the stress, and rocks at the surface break in response to this. Faults have no particular length scale.
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Discuss the relationship between plate boundaries and landscape development. Some aspects to consider include: 1) temporal and spatial variation in landscape seen at different plate boundaries (divergent, convergent, and transform); 2) interactions between long-term climate change influenced by plate movement (e.G., glaciation); and 3) how uplift and erosion are influenced by plate movement.
Answer:
The plate tectonics has a direct impact on the formation of landforms on earth.
Explanation:
Various plate boundaries are associated with various types of landforms such as the mountains, plateau, and plains. The convergent plate boundaries produce landforms like the mountain and volcanic forms. While the divergent boundaries that are constitutive produce new landforms such as an island, beaches, etc. The transform boundaries lead to the creation of faults and folds where the earth's crust is weak, linear valleys, ponds, and steam. Their interaction gives rise to climatic changes such as volcanic ash and smoke, mountain barriers, and tablelands that impact the climate of the region. The rate of upliftment is lower as compared to the rate of erosion as earth landforms are created and destroyed on a daily basis. The movement of the tectonic plates creates geologic changes that alter their formation.Should the government help out provinces that are not rich in natural resources? Why or why not?
Answer: Yes
Explanation: The government is responsible for the province and it's people. If a province is struggling and not getting the resources they need to function, the government should provide them with aid.
17. according to the earth science reference tables, at what inferred depth is mantle rock partially melted and slowly moving below the lithospheric plates?
According to the Earth Science Reference Tables, mantle rock is partially melted and slowly moving below the lithospheric plates at an inferred depth of 100 to 250 kilometers.
The Earth's mantle is a solid, rocky layer that extends to a depth of about 2900 kilometers, and it is located beneath the Earth's crust. However, the mantle is not entirely solid, and within it, there is a partially molten layer known as the asthenosphere. This layer is characterized by the presence of partially melted rock, which is weak and ductile. As a result, the asthenosphere is able to slowly flow and move, which is a critical component of plate tectonics. The slow movement of the asthenosphere helps to drive the motion of the overlying lithospheric plates, which are the rigid outermost layer of the Earth. The Earth Science Reference Tables provide a range of depths for the asthenosphere, typically given as 100 to 250 kilometers. This is where the mantle rock is partially melted and slowly moving below the lithospheric plates. The exact depth of the asthenosphere may vary depending on the location and the geological conditions of the region. However, this partially molten layer is critical for the dynamics of the Earth's lithosphere, and it has a significant impact on the formation of mountains, earthquakes, and other geological phenomena.
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Which side is the windward side, the right or the left?
Answer:
The right side.
Explanation:
The left is leeward
deep earthquakes- those that originate at depths greater than 70 km - only occur at subduction zones because
Deep earthquakes, originating at depths greater than 70 km, only occur at subduction zones because these zones are the only locations where one tectonic plate is forced under another, allowing for such depths to be reached.
In subduction zones, the dense oceanic plate is pushed under the less dense continental plate, creating a deep trench and facilitating earthquakes at significant depths. As the oceanic plate is subducted, it encounters increasing temperature and pressure, causing it to deform and release energy in the form of deep earthquakes. These earthquakes are typically observed in convergent boundaries, where plates collide and create intense geological activity.
In contrast, shallow earthquakes typically occur along transform boundaries or divergent boundaries, where tectonic plates slide past each other or move apart, respectively. These types of boundaries do not create the necessary conditions for deep earthquakes, as the interactions between plates occur closer to the Earth's surface.
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