The 10 largest countries in Africa by land area are Algeria, Democratic Republic of the Congo , Sudan , Libya, Chad , Niger , Angola , Mali , South Africa , Ethiopia
Areas of the countries are mentioned below.
1. Algeria - 2,381,741 square kilometers
2. Democratic Republic of the Congo - 2,344,858 square kilometers
3. Sudan - 1,861,484 square kilometers
4. Libya - 1,759,540 square kilometers
5. Chad - 1,284,000 square kilometers
6. Niger - 1,267,000 square kilometers
7. Angola - 1,246,700 square kilometers
8. Mali - 1,240,192 square kilometers
9. South Africa - 1,221,037 square kilometers
10. Ethiopia - 1,104,300 square kilometers
These countries are all located in the continent of Africa and are known for their diverse landscapes, cultures, and wildlife. Each of these countries has its own unique history and identity, and they are all important players in the economic and political landscape of the African continent.
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the vast majority of immigrants arriving on the east coast spent about a day at a processing center located where?
The vast majority of immigrants who arrived on the East Coast of the United States spent about a day at a processing center known as the Ellis Island Immigrant Station, located in New York Harbor.
Ellis Island was the main point of entry for millions of immigrants between 1892 and 1954. Upon arrival, they underwent a series of medical and legal inspections to determine if they were eligible to enter the United States. If an immigrant passed the inspections, they were permitted to enter the country and continue their journey to their final destination. If not, they were either held for further examination or sent back to their country of origin.
The processing center at Ellis Island was a chaotic and often overwhelming experience for many immigrants. The inspections were grueling, and the conditions at the center were cramped and unsanitary. Despite this, for many, the chance to start a new life in America was worth the challenges they faced at the processing center.
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Explain why protected areas, a water point, cultivated land, orchards or vineyard and rows of trees are classified as constructed features and not natural features.
The term "protected area" is used to describe a fairly broad variety of land and water management options that have some significance for biodiversity and landscape protection.
The practice and idea of protected areas have developed over time. Designating places for protection is a key method of biodiversity conservation. Worldwide, there are numerous protected area systems. These systems vary greatly based on the country's interests, needs, and legal, institutional, and financial resources.
There are protected places everywhere, from the mountains to the sea to deserts, woodlands, freshwater lakes, and even across international borders (territories). Numerous designations, including national parks, natural reserves, wilderness areas, wildlife management areas, tourism management areas, ecological stations, and holy groves, are given to them in various nations.
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Volcanic eruptions can have severe impacts on humans and the environment. Determining the type of eruption, how weather patterns might distribute ash, and what populations live nearby are all linked to the _____ of the volcano.
The missing word in this sentence is "hazard." Volcanic hazard refers to the potential danger and risks associated with an active or potentially active volcano. The hazard level of a volcano can be determined by various factors such as the type of eruption,
the size and frequency of past eruptions, the distance and distribution of nearby populations, and the prevailing weather patterns that can affect the dispersion of ash and other volcanic materials. Determining the level of volcanic hazard is critical for developing effective mitigation strategies and emergency plans to protect the people and the environment in the affected areas. It involves monitoring and assessing the volcano's activity and behavior, including seismic activity, gas emissions, and ground deformation, among other indicators. By understanding the hazard level of a volcano, scientists and authorities can take appropriate actions to mitigate the potential impact of an eruption, such as evacuating at-risk populations, implementing emergency response plans, and communicating critical information to the public.
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Explain the differences between the three types of sedimentary rock and how they form?
The three types of sedimentary rock is Clastic,chemical sedimentary, an organic.
Clastic or chemical sedimentary rocks are the two basic categories. There is a third form of sedimentary rock called organic. Sediments make up clastic sedimentary rocks. The size of the sediments varies. Minerals that precipitate from salt water are what make up chemical sedimentary rocks. Organismal remains are used to create organic sedimentary rocks.
Chemical sedimentary rocks are those that are created through the crystallization of chemical precipitates. Ions that are dissolved in fluids precipitate and settle out of the fluid.
Organic rocks are formed due to the accumulation of debris associated with plant and animal matters. An organism's body can form a sedimentary rock. Lithification transforms plant material into coal. Limestone is created when shells are bonded together. Therefore, limestone might be categorized as organic or chemical.
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What time do I look for the Green comet?
In the early hours of January 16, 2021, the green comet visible in California. Before dawn, it will be observable in the eastern sky.
The green comet, also known as Comet C/2020 M3 (ATLAS), was found in late June 2020 by the Asteroid Terrestrial-impact Last Alert System (ATLAS). (ATLAS). Because of its long duration, the comet's orbit around the Sun takes more than 200 years to complete. On January 17, 2021, when it will come closest to Earth, it is estimated to be 11 million miles distant.
Californians can expect to see the comet on January 16, 2021, in the early morning. Just before dawn, it will rise in the eastern sky as a pale, greenish-white point of light with a long tail. It will be the brightest in the morning sky on January 17 and its tail should be visible with the unaided eye. Over the ensuing weeks, as it moves away from Earth, it will gradually fade.
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What was the effect of the end of Permian extinction?
The effect of the end of Permian extinction was a huge outpouring lava.
What is Permian extinction?The Permian extinction, also known as the Permian-Triassic extinction or the end-Permian extinction, was a sequence of extinction pulses that contributed to the most severe mass extinction event in the history of our planet. The Permian extinction was marked by the extinction of around 90 percent of the species on Earth, which comprised over 95 percent of the marine species and 70 percent of the terrestrial species. In total, this event wiped out approximately 90 percent of all life on Earth. In addition to this, over than half of all of the taxonomic families that existed during that time vanished. When compared to the other four great extinction events that occurred across geologic time, this one was by far the most catastrophic.
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To measure primary productivity in a grassland ecosystem, you should _____.A). exclude consumers; periodically mow, collect, and weigh the plants; and calculate plant biomass production per unit timeB). measure the solar energy influx to the siteC). measure the growth of all of the consumers in the systemD). measure the total biomass of organisms per unit area
A). exclude consumers; periodically mow, collect, and weigh the plants; and calculate plant biomass production per unit time.
What is primary productivity?
Primary productivity refers to the rate at which energy is converted into organic matter by autotrophic organisms, such as plants, in an ecosystem. To measure primary productivity in a grassland ecosystem, it is important to focus on the production of plant biomass, which is the primary source of energy for the entire ecosystem. This can be done by excluding consumers, periodically mowing, collecting, and weighing the plants, and then calculating the plant biomass production per unit time. This method provides a direct measure of the amount of energy that is being stored in the form of organic matter in the ecosystem, which can be used to estimate the overall rate of primary productivity in the grassland.
Hence, the answer is, a). exclude consumers; periodically mow, collect, and weigh the plants; and calculate plant biomass production per unit time.
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what would you call a granite that has undergone metamorphism and now exhibits foliation?
A granite that has undergone metamorphism and exhibits foliation is commonly referred to as a "gneiss." Gneiss is a type of metamorphic rock that forms from the alteration of sedimentary, igneous, or existing metamorphic rocks under high pressure and temperature conditions. The foliation in gneiss results from the alignment of mineral grains and is a hallmark of the rock type.
What is granite?
Granite is a type of igneous rock that forms from the solidification of cooled magma or lava. It is composed primarily of quartz, feldspar, and mica minerals, which give it its characteristic speckled appearance. Granite is a coarse-grained rock, with mineral grains visible to the human eye, and is known for its durability, strength, and resistance to weathering and erosion.
Granite is widely used as a building material, particularly for countertops, floor tiles, and monuments due to its natural beauty and durability. Additionally, granite is also used for other construction purposes, including as a road base, for retaining walls, and as filler for concrete.
Hence, the answer is, a granite that has undergone metamorphism and exhibits foliation is commonly referred to as a "gneiss."
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What elevation is Phoenix Arizona?
The elevation of Phoenix, Arizona is 1,117 feet (340 meters) above sea level.
Phoenix, Arizona is located in the southwestern region of the United States in the Sonoran Desert. The city is situated in the Valley of the Sun, surrounded by mountain ranges, including the McDowell Mountains to the northeast, the White Tank Mountains to the west, and the South Mountain Park to the south. The city's coordinates are 33.4484° N, 112.0740° W.
The official elevation of Phoenix is listed as 1,086 feet (331 meters) above sea level. This means that the city is situated at a relatively low altitude compared to many other cities in the United States. Despite its low elevation, Phoenix experiences a hot and arid climate due to its location in the desert. Summers are extremely hot, with temperatures frequently exceeding 100°F (38°C), while winters are mild, with average temperatures in the 60s°F (15-20°C).
The low elevation of Phoenix has several effects on the climate and geography of the region. For example, the lower altitude means that the air is denser, which can make it more difficult for planes to take off and land at Phoenix Sky Harbor International Airport. Additionally, the city's low elevation means that it is more susceptible to flooding during heavy rainstorms, which can cause damage to property and infrastructure.
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what is the difference between geocentric vs heliocentric
The main difference between geocentric and heliocentric models is the position of the Earth and the Sun in the universe.
In the geocentric model, the Earth is considered to be the center of the universe and all other celestial bodies, including the Sun, revolve around it. This model was popular in ancient times and was supported by the Greek philosopher Aristotle and the astronomer Ptolemy.
In contrast, the heliocentric model places the Sun at the center of the universe, with the Earth and other planets revolving around it. This model was first proposed by the Polish astronomer Nicolaus Copernicus in the 16th century and was later supported by the observations of Galileo Galilei and Johannes Kepler.
The heliocentric model is now accepted as the correct model of the universe, as it better explains the movements of the planets and is supported by evidence from modern astronomy.
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What are the 5 parts of the endocrine system?
The endocrine system is composed of five major parts: the hypothalamus, the pituitary gland, the thyroid, the adrenals, and the gonads.
The endocrine system is a complex network of glands and organs that produce and release hormones. There are 5 major parts of the endocrine system, which include:
1. The hypothalamus: This is a small region of the brain that is responsible for regulating many bodily functions, including the release of hormones from the pituitary gland.
2. The pituitary gland: This gland is located at the base of the brain and is responsible for producing and releasing a variety of hormones that regulate growth, metabolism, and reproductive functions.
3. The thyroid gland: This gland is located in the neck and produces hormones that regulate metabolism and energy levels.
4. The adrenal glands: These glands are located on top of each kidney and produce hormones that help the body respond to stress and regulate blood pressure.
5. The pancreas: This organ is located in the abdomen and produces hormones that regulate blood sugar levels.
Overall, the endocrine system plays a crucial role in maintaining homeostasis in the body and is essential for overall health and well-being.
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who is the scientist that is credited with developing the theory of continental drift?
The scientist credited with developing the theory of continental drift is Alfred Wegener. Wegener was a German geophysicist who first proposed the theory in 1912.
He hypothesized that the continents had once been joined together in a massive supercontinent called Pangaea and that they had subsequently drifted apart over time.
This theory was met with much resistance from the scientific community at the time, as there was little evidence to support it.
However, the discovery of plate tectonics in the 1960s provided evidence to support Wegener's theory and it is now widely accepted.
Wegener's theory of continental drift revolutionized the field of geology and provided a foundation for the study of plate tectonics.
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Q.1 What is a "repressed" economy based on what you see in the map?
Q.2 What do Hong Kong and Singapore have in common? (2 answers)
Q.3 What do Turkmenistan and Thailand have in common? (1 answer)
Q.4 What do the shape sizes of each country represent on the map?
Q.5 List two characteristics of South Korea's economy based on the map.
An economy is an area of the production, distribution, and trade, as well as consumption of goods and services.
What is an Economy?An economy is a region where products and services are produced, distributed, traded, and consumed. It is generally understood to be a social domain that places an emphasis on the behaviors, discourses, and tangible manifestations connected to the creation, utilization, and management of finite resources.
An economy is a collection of interconnected production and consumption processes that ultimately decide how resources are distributed within a community. The demands of persons who live there and conduct business there are met by the production as well as consumption of goods and services as a whole.
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Why does the Nile River not flood the cities of modern day Egypt?
it was to hot
it was to cold
The cause of the flood each year was heavy rains and melting snow to the south near the source of the Nile.
because it is to in Egypt
The Nile River does not flood the cities of modern-day Egypt because the climate in Egypt is too hot and dry for snow and heavy rains to cause a flood, unlike the regions near the source of the Nile. The heavy rains and melting snow to the south near the source of the Nile are the primary cause of the Nile's annual flooding.
The Nile River does not flood the cities of modern-day Egypt due to the construction of the Aswan High Dam. This dam, completed in 1970, controls the flow of the Nile River and prevents the annual floods that used to occur. Prior to the construction of the dam, the Nile River would flood each year due to heavy rains and melting snow to the south near the source of the Nile.
However, with the construction of the dam, the flood waters are now contained and can be released in a controlled manner, preventing the flooding of cities in Egypt.
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the series of processes in which rocks forms, changes from one type to another, is destroyed, and forms again by geological processes
The series of processes by which rocks form, change from one type to another, are destroyed, and then re-formed again by geological processes is known as the rock cycle.
This process is driven by the forces of nature, such as heat, pressure, and erosion, and it takes place over millions of years. The rock cycle begins with the formation of rocks through processes such as volcanic activity or the cooling of molten magma.
These rocks may then be subjected to weathering and erosion, which break them down into smaller pieces. These sediments can then be transported by wind, water, or ice, and eventually deposited in new locations, where they can be compacted and cemented to form new sedimentary rocks.
Over time, these rocks may be subjected to heat and pressure, causing them to change into metamorphic rocks. Alternatively, they may be melted and then cooled to form new igneous rocks. The cycle then begins again, with the newly formed rocks being subject to weathering and erosion, leading to the formation of new sediments, and the cycle continues on.
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Rhyolite and granite are alike in that they both are
A. fine-grained
B. dark-colored
C. mafic
D. felsic
Rhyolite and granite are alike in that they both are D. felsic.
The chemical composition of rhyolite could be very like that of granite. This equivalence means that at the least a few and likely maximum granites are of magmatic origin. The phenocrysts of rhyolite can also additionally consist of quartz, alkali feldspar, oligoclase feldspar, biotite, amphibole, or pyroxene. Compilations of many rock analyses display that rhyolite and granite are felsic, with a mean silica content material of approximately seventy two percent; syenite, diorite, and monzonite are intermediate, with a mean silica content material of fifty nine percent; gabbro and basalt are mafic, with a mean silica content material of forty eight percent.
Thus, option D is the correct choice.
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where was the aztec empire located
Answer: Central Mexico
What do leeward and windward mean?
The terms leeward and windward are used to describe the direction of the wind in relation to a particular point. Leeward is the direction that the wind is blowing towards, while windward is the direction from which the wind is coming. These terms are commonly used in sailing, as they can help sailors determine the best course to take in order to take advantage of the wind.
For example, if the wind is blowing from the north, the windward direction would be north, while the leeward direction would be south. Sailors would then position their sails in such a way that they can catch the wind from the windward side and use it to propel their boat in the leeward direction.
In maritime terms, windward refers to the direction from which the wind is coming, while leeward refers to the direction away from the wind. This distinction is important for sailors as they need to navigate and adjust their sails accordingly.
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Two tectonic plates pushing toward each other cause intense heat and pressure in Earth's crust. Into which will crust material be changed by heat and pressure?
Two tectonic plates pushing toward each other cause intense heat and pressure in Earth's crust, which can lead to the transformation of crustal material into a new type of rock. This process is called metamorphism. The type of rock that forms as a result of metamorphism depends on the specific conditions of heat, pressure, and chemical composition of the original rock.
What are metamorphic rocks?
Metamorphic rocks are rocks that have been transformed from one type of rock into another through the processes of heat, pressure, and/or chemical alteration. They are formed from pre-existing rocks that have been subjected to conditions such as high pressure, high temperature, and chemically active fluids. The changes that occur during metamorphism cause the minerals in the original rock to recrystallize, resulting in a new rock with different mineral composition and texture.
Hence, the answer is, intense heat and pressure caused by the collision of tectonic plates can result in the transformation of crustal material into a wide variety of metamorphic rocks, each with its own unique characteristics and properties.
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why are neap high tides not as high as spring high tides?
Answer:Neap tides occur when the sun, moon, and Earth form a right angle
Explanation:
The primary purpose of restoration work on Rivers in northwestern Europe is to what
The primary purpose of restoration work on Rivers in northwestern Europe is to to protect water resources in the subregion.
River restoration is an important measure to mitigate the effects of climate change. floodplains to help mitigate flood risk and drought. Planting riparian trees can provide shade and help control water temperatures. German Rhein, French Rhin, Dutch Rijn, Celtic Renos, Latin Rhenus, Western European river and waterway, culturally and historically one of the continent's largest rivers and one of the world's most important industrial thoroughfares .
Northwest European cities protect their buildings by acid - permanent coating. It was proposed to ban vehicles that produce high emissions. Many power plants today burn natural gas. They implemented the Kyoto Protocol (an agreement on climate change to reduce greenhouse gases).
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how do plate tectonics cause major geological events
Excessive movement of the tectonic plates causes major geological events.
The tectonic plates are formation of oceanic deposition, these plates rest upon the convecting mantle, inside the Earth's surface. These plates move slowly due to internal disturbance to release pressure but when the pressure inside the surface of earth increases the plates starts moving rapidly which can account to geological events such as earthquakes, volcanic eruptions, and other sublime events. These plates collide with each other and drift apart or slide past each other that can result in drifting of land. The type of event is determined by the type of plate boundary. These interactions of tectonic plates are also responsible for many different geological formations such as mountains, the San Andreas fault in California, Himalayan range in Asia.
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the series of processes in which rock forms, changes from one type to another, is destroyed, and forms again by geological processes is called ?
The series of processes in which rock forms, changes from one type to another, is destroyed, and forms again by geological processes is called rock cycle .
Crystallization, erosion and sedimentation, and metamorphism change one type of rock into another, or sediments into rocks. A rock cycle describes the transformation of one rock type into another. Pressure or temperature can even transform previously metamorphosed rocks into new types .
Metamorphic rocks are often compressed, stained and folded. Despite these uncomfortable conditions, metamorphic rocks do not become hot enough to melt or become igneous rocks. Metamorphism is the process of mineral fusion and structural changes due to physicochemical changes in solid rocks caused by factors such as crustal movement, magmatic activity or thermal fluid change in the ground.
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Which one of the following does the transit method tell us about a planet?
The transit method tells us about the size of a planet. (C)
When a planet passes in front of its star, it blocks some of the star's light, causing a small dip in the star's brightness. The amount of light that is blocked depends on the size of the planet relative to the size of the star. By measuring the dip in brightness, astronomers can determine the size of the planet.
In addition to size, the transit method can also provide information about the planet's atmosphere and temperature. If a planet has an atmosphere, some of the star's light will be absorbed by the gases in the atmosphere, causing the dip in brightness to be slightly different than if there was no atmosphere. (C)
By analyzing the light that is blocked, astronomers can determine the composition of the planet's atmosphere and estimate its temperature.
In summary, the transit method is a powerful tool for studying exoplanets and can provide information about a planet's size, atmosphere, and temperature.
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Which one of the following does the transit method tell us about a planet?
A) It's temperature
B) It's mass
C) It's size
D) It's compositon
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Which of the following is an example of modifying the environment?
A
city planners constructing highways and buildings
B
ancient Egyptian farmers waiting for the Nile to flood
C
residents of Chicago wearing heavy coats in the winter
D
a student describing the absolute location of Chicago
An example of modifying the environment is
A city planners constructing highways and buildings What is modifying the environment?Modifying the environment refers to the process of making changes to the natural surroundings in order to meet specific human needs or goals. This can involve a range of activities, from building roads and structures to planting crops or altering the natural landscape.
City planners, for example, construct highways and buildings as part of their efforts to improve and develop the built environment. This type of modification is designed to make the environment more functional and efficient for human use, as well as to support economic and social growth.
However, modifying the environment can also have negative consequences, such as causing harm to the natural ecosystem, disrupting wildlife habitats, and contributing to climate change. As a result, it's important to consider both the benefits and drawbacks of modifying the environment, and to make changes in a responsible and sustainable manner.
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Geologists of the mid-twentieth century determined that the ocean floor was much older than the centers of continents. True/False
Geologists of the mid-twentieth century determined that the ocean floor was younger than the centers of the continents. It was explained with the help of the Seafloor Spreading theory.
Researchers found that the samples of both crustal rock and sediments on the ocean floor grew older as they departed from the mid-ocean ridge. The mid-ocean ridge was closest to the freshest, youngest rock. The notion of seafloor spreading was backed by this evidence.
A significant mountain range crosses the ocean floor. Far from the mountains, there are deep holes. Deeply submerged tops have been eroded by guyots. The seafloor's magnetic polarity shifts.
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Which land feature supports the theory of continental drift
Answer: The similarities between the Appalachian and the eastern Greenland mountain ranges
What are 3 examples of continental-continental convergent boundaries?
The 3 examples of continental-continental convergent boundaries of the Ural Mountains, the collision of the Indian and Asian plates which formed the Himalayas, and the collision of the African and Eurasian plates which formed the Alps.
There are several examples of continental-continental convergent boundaries around the world. Here are three examples:
1. The Himalayan Mountains: The Himalayas are a result of the continental-continental convergent boundary between the Indian Plate and the Eurasian Plate. As the two plates collide, the land is pushed upwards to form the Himalayan mountain range.
2. The Alps: The Alps are another example of a continental-continental convergent boundary. The collision of the African Plate and the Eurasian Plate caused the formation of the Alps.
3. The Appalachian Mountains: The Appalachian Mountains are a result of a continental-continental convergent boundary between the North American Plate and the African Plate. The collision of these two plates caused the formation of the Appalachian Mountains.
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Saudi Arabia's mountains are in which region? A. East B. North C. South
This figure shows the main subdivisions of the geologic timescale. Which of these is the Mesozoic?
A. A B. B C. C D. D
Not that the option that is the Mesozoic Option B. (See attached image).
What is Mesozoic?The Mesozoic is a geological era that lasted from approximately 252 million years ago to 66 million years ago. It is commonly known as the Age of Dinosaurs because this was the period in which dinosaurs dominated the terrestrial ecosystems.
The Mesozoic era is divided into three periods: the Triassic, Jurassic, and Cretaceous periods. It ended with the mass extinction of the dinosaurs and many other species, likely caused by an asteroid impact.
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