Answer: The top edge of the map is typically considered north.
Explanation:
In traditional cartographic convention, the top edge of a map is usually considered north, while the bottom edge is south, the right edge is east, and the left edge is west. This convention helps to orient the reader and align the map with the geographical coordinates used in navigation.
It's worth noting that this convention is not universal and may vary depending on the context and the type of map. Some maps may have different orientations, such as upside-down or rotated, and may use different symbols or colors to indicate direction. Additionally, some maps may use different projections or scales, which can affect the representation of direction and distance.
So, in answer to the question, the top edge of the map is typically considered north.
Answer:
Explanation:
its the top
im sorry for confusing you about a map.
What does the change in the period with respect to the eccentricity tell you about the dependence on the period on the eccentricity?A. The period depends inversely on the eccentricity.B. The period depends directly on the eccentricity.C. The period does not depend on the eccentricity.D. The graph does not indicate anything about the dependence.
The change in the period with respect to the eccentricity tells you about the dependence on the period on the eccentricity as B) the period depends directly on eccentricity.
The period of an orbit is the time it takes for one complete revolution around the central body. Eccentricity is a measure of how much an orbit deviates from a perfect circle, with values ranging from 0 (perfect circle) to 1 (parabolic orbit).
Kepler's laws of planetary motion state that the period of an orbit depends on the semi-major axis and the eccentricity of the orbit. In particular, for a fixed semi-major axis, the period of an orbit increases as the eccentricity increases.
This can be seen from the fact that as the eccentricity increases, the object spends more time far away from the central body, and less time close to it. Therefore, the change in the period with respect to the eccentricity is directly proportional, indicating that the period depends directly on the eccentricity.
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subduction zones occur a what type of plate boundary?
Subduction zones occur at a convergent plate boundary. In a convergent boundary, two tectonic plates come together.
At a subduction zone, the denser plate, usually an oceanic plate, is forced beneath the less dense plate, usually a continental plate, creating a deep ocean trench. The oceanic plate begins to melt as it descends deeper into the Earth's mantle and the heat and pressure cause it to deform and slowly sink into the mantle.This sinking process creates a zone of intense geological activity, including earthquakes, volcanic eruptions, and the formation of mountain ranges. The Andes Mountain range in South America, for example, formed as a result of subduction of the oceanic Nazca Plate beneath the South American Plate.Subduction zones also play a crucial role in the Earth's carbon cycle, as the sinking oceanic plate carries large amounts of carbon-rich materials into the mantle, where they are eventually recycled back to the surface through volcanic eruptions.
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Do metamorphic rocks look like the preexisting rock from which they form? A. rarely B. sometimes, but not always C. never D. often E. almost always.
e. sometimes, but not always metamorphic rocks look like the preexisting rock from which they form.
Metamorphic rocks form as a result of the metamorphism of existing rocks into new types of rocks. The original rock (protolith) is subjected to temperatures of 150 to 200 °C (300 to 400 °F) and, in some cases, pressures of 100 megapascals (1,000 bar) or higher, resulting in profound physical or chemical changes.
The rock remains mostly solid during this process, but gradually recrystallizes to a new texture or mineral composition. The protolith could be an igneous, sedimentary, or metamorphic rock that already exists.
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Select the statement that best describes the concept of fossil succession Choose one: A. There is a definite relative order in which certain, but not all, fossil species occur within the layers of rock on Earth B. As you go up in stratigraphy, fossils are older. C. Fossils are randomly distributed throughout the rock record, and the succession through geologic time is irregular. D. There is a definite relative order in which each fossil species occurs within the layers of rock on Earth.
The concept of fossil succession refers to the idea that there is a definite relative order certain fossil species within the layers of rock on Earth.
This order is based on the principle that fossils found in deeper layers of rock are generally older than those found in more shallow layers. Therefore, as you move up through the layers of rock, you can observe a sequence of fossil species that reflects the evolution of life through time.It's important to note that not all fossil species are found in the rock record, and that the succession through geologic time is not always perfect or consistent. However, the overall pattern of fossil succession has been established through extensive study and observation of the rock record, and is a key tool for understanding the history of life on Earth.The relative order of fossils in the rock record is determined by a variety of factors, including the environment in which the organism lived, the time period in which it existed, and the particular conditions of fossilization that occurred. By studying these factors and observing the patterns of fossil succession, scientists can reconstruct the evolution of life on Earth and gain insights into the processes that have shaped the diversity of living organisms we see today.
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The area where we find the most active volcanoes are along the:_________
Most of these volcanoes are found in the Aleutian Islands, with the Alaska Peninsula being the area where we find the most active volcanoes.
Sixty percent of all active volcanoes are located on the boundaries between tectonic plates. Most of the volcanoes lie along a belt called the Ring of Fire that encircles the Pacific Ocean. Some volcanoes, such as those that make up the Hawaiian Islands, lie on the inside of plates. in areas called hot spots. An active volcano is a volcano that is erupting or is likely to erupt in the future. India has a list of six volcanoes, including the only living volcano,the Barren Islands volcano, which is also a confirmed active volcano in South Asia.Indonesia has more volcanoes than any other country in the world. The 1815 eruption of its Mount Tambora still holds the record for the largest in recent history.Indonesia is one of the many places located within the world with the highest volcanic activity.
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What is the energy of a radio photon from the same station?
The energy of a radio photon from a radio station depends on the frequency of the photon. Radio waves are a type of electromagnetic radiation, which includes a wide range of frequencies and wavelengths.
The energy of a photon is given by the equation E = hf, where E is the energy of the photon, h is Planck's constant (6.626 x 10^-34 J s), and f is the frequency of the photon.
Radio waves have relatively low frequencies, typically in the range of 3 kHz to 300 GHz. At the lower end of the radio frequency spectrum, the energy of a radio photon is very low, typically in the range of 10^-27 to 10^-24 joules. At the higher end of the radio frequency spectrum, the energy of a radio photon is higher, but still relatively low compared to other types of electromagnetic radiation.
Therefore, the energy of a radio photon from the same station will depend on the frequency of the photon, which in turn depends on the specific radio station being considered.
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a break in the geologic record created when rock layers are eroded or when sediment is not deposited for a long period of time.
A gap in the geologic record, also known as an unconformity, is a break in the sequence of rock strata produced by erosion, non-deposition, or a combination of the two.
Unconformities might be erosional or non-depositional in nature. A record gap results from the erosion of rock strata, which is what causes an erosional unconformity. An unconformity that is not caused by sediment deposition does not result in the formation of new rock strata. There are several reasons for this, including a change in the temperature, a reduction in the sediment supply, or an increase in sea level.
Unconformities are significant identifiers in the geologic record because they allow geologists to estimate the age of the rocks in a specific location. They also provide us with hints about prior habitats and historical events.
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when two oceanic plates converge they can create a ___ island arc
When two oceanic plates converge, they can create a volcanic island arc.
An island arc is a curved chain of volcanic islands that forms on the overriding plate above a subduction zone, where one oceanic plate is forced beneath another oceanic plate. As the subducting plate sinks into the mantle, it melts and generates magma that rises to the surface, forming a series of volcanoes. Over time, as the plate continues to subduct and the volcanoes continue to erupt, a chain of islands is formed.
These volcanic island arcs are typically found in areas of the world where there are subduction zones, such as the Pacific Ring of Fire. Examples of volcanic island arcs include the Aleutian Islands in Alaska, the Mariana Islands in the western Pacific, and the Lesser Antilles in the eastern Caribbean.
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magmas can have a variety of chemical compositions because of which of the following? a. the rocks that melt to make magma are composed of many minerals, not all of which melt under the same conditions. b. different magmas formed in different locations are isolated and don't mix. c. the magmas' pressure can melt rock from the walls of the magma chamber. d. they come from the same source rocks.
The chemical composition of magma can vary depending on the source rock and the processes that occur during partial melting and transport. The initial composition of the magma is determined by the source rock's composition and the degree of partial melting. option a)
As the higher-density- tectonic plate subducts, submerges below, or the less dense tectonic plate subducts, hot rock from below can dwell in the cooler plate above.
The temperature gradient and the formation of magma are both involved in this process. Over millions of years, the magma in this subduction zone has the potential to form a series of active volcanoes known as a volcanic arc.
Melts can originate from several sources. Source rocks undergo varying degrees of partial melting, producing magmas with different compositions than the rock.
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what is historic french port located on the english channel coast
Answer: Saint-Malo is a historic French port in Ille-et-Vilaine, Brittany on the English Channel coast. The walled city had a long history of piracy, earning much wealth from local extortion and overseas adventures. In 1944, the Allies heavily bombarded Saint-Malo, which was garrisoned by German troops.
Explanation:
now we know that current velocity, or energy, and sediment size are correlated. high velocities only allow large grains to settle out, and only low velocities can allow for very fine grains to settle out and be deposited. so, how do graded beds form? they must represent a transition from a high to low energy current because they possess a transition from large to small grains. turbidity currents are water currents that are heavy because they possess a high sediment concentration. they commonly start as slope failures in shallow marine settings like a lake or ocean margin, then travel down the sloped margin, eventually depositing their loads at the bottom where it flattens out. sediment layers deposited by these currents are called turbidites. in this activity, choose from statements about turbidity currents and graded-bed formation as exemplified in the gigapan image. read the following statements and select which are true. specifically, focus on the relationships between grain size and velocities in turbidity currents.
D Turbidity currents have high concentrations of sediments, making them heavy enough to travel down slopes coherently, even in marine environments.
E. In the Gigapan image, the sedimentary layers can be described as turbidites that were formed by repeated deposition of sediments from turbidity currents in a marine setting.
This outcrop was formed when turbidity currents repeatedly deposited sediments as individual layers in a marine setting. These layers then lithified into sedimentary rock. The rocks were later slightly deformed and metamorphosed and then brought to the surface by erosion for us to investigate.
Investigating the patterns, textures, and sedimentary structures within sedimentary rocks is one of the best ways to reconstruct past environmental conditions from the rock record. Sedimentary rocks that have undergone little to no deformation, like here, provide some of the most critical pieces of information that allow geologists to reconstruct the history and evolution of Earth’s near-surface conditions.
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Full Question : Now we know that current velocity, or energy, and sediment size are correlated. High velocities only allow large grains to settle out, and only low velocities can allow for very fine grains to settle out and be deposited. So, how do graded beds form? They must represent a transition from a high to low energy current because they possess a transition from large to small grains.
Turbidity currents are water currents that are heavy because they possess a high sediment concentration. They commonly start as slope failures in shallow marine settings like a lake or ocean margin, then travel down the sloped margin, eventually depositing their loads at the bottom where it flattens out. Sediment layers deposited by these currents are called turbidites. In this activity, choose from statements about turbidity currents and graded-bed formation as exemplified in the Gigapan image. Read the following statements and select which are true. Specifically, focus on the relationships between grain size and velocities in turbidity currents.
Select the two that apply.
a. Sedimentary rocks like these are made from mud only.
b. The fractures in the rock affected the way in which the sedimentary layers were deposited.
c. The sediments exposed in this outcrop were likely deposited in a single, massive turbidity current.
d. Turbidity currents have high concentrations of sediments, making them heavy enough to travel down slopes coherently, even in marine environments.
e. In the Gigapan image, the sedimentary layers can be described as turbidites that were formed by repeated deposition of sediments from turbidity currents in a marine setting.
Peter and Vivian each wrote a proof for the statement: if Z2 Z3, then 21 is supplementary to 23.
1
2
3
Peter's proof:
By the linear pair theorem, 21 is tsupplementary to 22. So, m/1 + m/2 = 180°. Since 4243, then 22
equality, m/1 + m/3 = 180°, which means 21 is supplementary to 3.
Vivian's proof:
Suppose 1 is not supplementary to 23. So, m/1 + m/3 # 180°. By the linear pair theorem, Z1 is supplem
supplementary angles, m/1 + m/2 = 180°. Applying the Transitive Property, m/1 + m/3 m/1+mz
this implies that m/3 m/2. By definition of congruence, m23 m22. However, m/3
m/2 contradicts the given.
What type of proof did they use
Peter used because.
Peter used direct proof method because he gets the answer directly whereas Vivian used direct proof method by contradiction because she first assumed that the answer was wrong and had to prove that the answer was right.
How to solve for the angleAngle 1 and angle 2 are on the same line. To solve this, we would have to use the angle on a straight line rule
angle 1 + angle 2 = 180 degrees
then
If ∠2 ≅ ∠3, then ∠1 is supplementary to ∠3.
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1. What is the most important mineral resource in Southwest Asia?
O coal
о uranium
O iron
Ooil
dendochronology helps to determine past climate changes. what other sources help to determine past climates?
Ice cores, sediment cores, tree rings, and coral reefs are all sources that scientists use to determine past climates, providing information about changes in temperature, precipitation patterns, and atmospheric gases.
Determining past climates is crucial for understanding the natural variability of the Earth's climate system and the impact of human activities on it. In addition to dendrochronology, there are several other sources that scientists use to reconstruct past climates. One such source is ice cores, which provide a record of past temperature and atmospheric composition by analyzing the trapped gases and particles within the ice. Another source is sediment cores, which are extracted from lake and ocean bottoms and provide information on past temperatures and precipitation patterns through the analysis of the sediment layers and fossils. Coral reefs, which contain growth bands similar to tree rings, are also used to reconstruct past climate conditions. Finally, historical documents, such as ship logs and diaries, provide anecdotal evidence of past climate conditions, as do geological records of glacial advances and retreats. By using multiple sources to reconstruct past climates, scientists can gain a more comprehensive understanding of natural climate variability and the impact of human activities on the climate system.
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Rocks around the world contain evidence that ___ have advanced and retreated and ______ have been uplifted and eroded.
Rocks from all around the world provide proof of the advance and retreat of glaciers as well as the uplift and erosion of mountains.
Massive sheets of ice that gently travel across the landscape are known as glaciers. Glacier movement can result in erosion, deposition, and other geological changes. Glaciers leave recognisable traces on the landscape, such as bedrock cuts and grooves as well as silt piles that are not well sorted. In contrast, tectonic processes that drive the Earth's crust to elevate and deform result in the formation of mountains. Mountains may gradually erode over time as a result of a number of processes, including weathering, water and wind erosion, and mass wasting. It is possible to deposit the eroded material elsewhere to create new sedimentary rocks. The evidence found in rocks found all throughout the planet therefore implies that glaciers have advanced .
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Subduction zones occur at what types of plate boundaries?
Answer:
Convergent Plate Boundaries
Explanation:
on what scale is the explosivity of a volcano measured?
Answer:
The Volcanic Explosivity Index (VEI) is a scale that describes the size of explosive volcanic eruptions based on magnitude and intensity.
Explanation:
This figure shows the main subdivisions of the geologic timescale. Which of these is ... A. Cenozoic
B. Mesozoic C. Paleozoic D. Precambrian.
The geologic timescale is a system of chronological dating that classifies Earth's history into different time intervals on significant geological events
The four main subdivisions of the geologic timescale, from most recent to oldest, are:A. Cenozoic: This is the most recent subdivision, spanning from 66 million years ago to the present day. It is characterized by the rise of mammals, birds, and flowering plants, as well as the evolution of modern humans.B. Mesozoic: This subdivision spans from 252 to 66 million years ago and is known as the "Age of Reptiles." It includes the famous dinosaurs, as well as the emergence of birds, flowering plants, and the first mammals.C. Paleozoic: This subdivision spans from 541 to 252 million years ago and is known as the "Age of Invertebrates." It includes the rise of complex life forms such as fish, amphibians, reptiles, and insects.D. Precambrian: This is the oldest subdivision, spanning from the formation of the Earth (4.6 billion years ago) to 541 million years ago. It includes the earliest known forms of life, such as bacteria and algae, and the evolution of simple multicellular organisms.
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What’s an issue in the broader world that you’ve become passionate about? What experiences made you become passionate about it?
Please be detailed, specific and explain. Giving out brainliest.
This is due today.
In writing an essay you must consider the structure of the essay, Hence, the structure of the essay should be considered;
The Introduction The body'The conclusionWhat is an essay?Generally, I have recently become passionate about the issue of racial injustice in the United States.
Growing up in a small town with a primarily white population, I didn't have much exposure to people of color and their experiences.
However, as I've gotten older and had more interaction with people of different backgrounds, I've realized just how damaging racism still is in our society. I've seen firsthand how people of color are discriminated against in jobs, housing, education, and other aspects of life. I've seen them treated as less than their white counterparts and it's heartbreaking.
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an alternate route that travels around the city begins with an even number. True or False
Answer: false
Explanation:
Compared to infrared radiation, does ultraviolet radiation have longer or shorter wavelengths? Does ultraviolet radiation have higher or lower energy per photon?a. Ultraviolet radiation has longer wavelengths and lower energy than infrared radiation.b. Ultraviolet radiation has longer wavelengths and higher energy than infrared radiation.c. Ultraviolet radiation has shorter wavelengths and lower energy than infrared radiation.d. Ultraviolet radiation has shorter wavelengths and higher energy than infrared radiation.
The correct answer is D. Ultraviolet radiation has shorter wavelengths and higher energy than infrared radiation.
Ultraviolet radiation has a shorter wavelength than infrared radiation. The wavelength of ultraviolet radiation is typically between 10 and 400 nanometers, while the wavelength of infrared radiation is typically between 700 nanometers and 1 millimeter. This means that the distance between the peaks of the waves in ultraviolet radiation is shorter than in infrared radiation.
Additionally, ultraviolet radiation has a higher energy per photon than infrared radiation. The energy of a photon is directly proportional to its frequency and inversely proportional to its wavelength. Since ultraviolet radiation has a higher frequency than infrared radiation, it also has a higher energy per photon.
Infrared radiation is often associated with heat, while ultraviolet radiation is responsible for sunburn and other forms of skin damage. It is important to protect the skin from excessive exposure to ultraviolet radiation.
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with time, a butte will most likely become a: group of answer choices plateau pillar or pinnacle mesa playa
A butte is a flat-topped hill with steep sides, typically found in arid regions.
One possibility is that a butte could become a mesa, which is a larger, flat-topped hill or mountain with steep sides. Mesas are typically larger than buttes and can be hundreds or even thousands of feet high.
Another possibility is that a butte could become a plateau, which is a large, flat-topped area of land at a high elevation. Plateaus are often created by the gradual uplift of land over millions of years, and they can be thousands of feet in elevation.
A butte could also become a pillar or pinnacle if the surrounding rock erodes away more quickly than the butte itself. This could leave behind a tall, narrow column of rock that rises above the surrounding terrain.
Finally, a butte could become a playa, which is a dry lakebed that forms in a basin or depression. This would happen if the butte erodes away completely, leaving behind a flat, sandy area that can collect water during periods of heavy rain.
So, a butte can become any of these geological features with time, depending on the specific conditions and processes of erosion and weathering in the area.
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An angular distance measured north or south of the equator from the center of Earth is termed _____.A. altitudeB. longitudeC. zenithD. latitude
An angular distance measured north or south of the equator from the center of Earth is termed D. latitude
Latitude is a coordinate in geography that specifies the north-south position of a point on the Earth's surface or another celestial body. Latitude is expressed as an angle ranging from -90° at the south pole to 90° at the north pole, with the Equator at 0°. Parallels, or lines of constant latitude, run east-west as circles parallel to the equator. Latitude and longitude are used as a coordinate pair to specify a location on the Earth's surface.
The term "latitude" normally refers to the geodetic latitude, which is defined below. In a nutshell, a point's geodetic latitude is the angle formed by the vector perpendicular (or normal) to the ellipsoidal surface from the point and the plane of the equator.
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what is the only state that touches four of the five great lakes?
Answer: Michigan
Explanation:
what was the main selective pressure behind the evolution of different anolis lizard species in the caribbean?
Different species evolved in response to the selective pressures created by the islands' specific ecological niches.
Anolis carolinensis, also known as the green anole (US: /no.li/ (listen)) (among other names below), is a tree-dwelling anole lizard native to the southeastern United States and introduced to Pacific and Caribbean islands. The green anole is a small to medium-sized lizard with a trunk-crown ecomorph that can change its color from brown to green.
Other names for the Carolina anole include Carolina green anole, American anole, North American green anole, and red-throated anole. Due to its color-changing ability, it is commonly referred to as chameleon in the southeastern United States and sometimes as the American chameleon (typically in the pet trade); however, it is not a true chameleon.
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Subduction zones occur a what type of plate boundary?
Subduction zones occur at convergent plate boundaries where two tectonic plates move towards each other.
Subduction zones occur at convergent plate boundaries where two tectonic plates move towards each other. One plate is usually denser than the other and subducts or sinks beneath the other plate, forming a deep trench. The subducting plate is usually an oceanic plate while the overriding plate can be either an oceanic or a continental plate.
As the oceanic plate subducts, it heats up and melts, forming magma. The magma rises and can trigger volcanic eruptions, leading to the formation of volcanic
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How did Brazil form of government change from the period after independence to the late 1800s
Brazil gained independence in 1822 after being under Portuguese rule for more than three centuries, retaining a monarchical system of government until the abolition of slavery in 1888 and the subsequent military proclamation of a republic in 1889.
How did Brazil gain independence?The Brazilian Empire gained independence from the United Kingdom of Portugal, Brazil, and the Algarve as a result of the Brazilian Independence, a series of political and military events.
The majority of the events took place in Bahia, Rio de Janeiro, and So Paulo between 1821 and 1824. Although there is debate about whether genuine independence occurred on July 2, 1823 in Salvador, Bahia, where the independence war was fought, it is celebrated on September 7.
Therefore, Brazil declared its independence and ceased to be a Portuguese colony in 1822, becoming the Empire of Brazil.
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flat and layered clouds with horizontal development are classed as flat and layered clouds with horizontal development are classed as cumuliform. cirroform. stratiform. stratocumuliform. nimbocirroform.
Flat and layered clouds with horizontal development are typically classed as stratocumuliform clouds.
"Strato" refers to clouds that are low-level and "cumulo" refers to clouds that have a vertical development. Stratocumuliform clouds are therefore low-level clouds that have some vertical development but also appear flat and layered. They often have a puffy or lumpy appearance, with rounded tops and flat bases, and can cover much of the sky.
The other cloud types you listed are defined as follows:
- Cumuliform clouds are characterized by vertical development and a puffy, cauliflower-like appearance, with a flat base and rounded top.
- Cirroform clouds are high-level clouds that are thin, wispy, and composed of ice crystals.
- Stratiform clouds are flat and layered clouds that typically cover large portions of the sky and can produce steady precipitation over a long period.
- Nimbocirroform clouds are thunderstorm clouds that are composed of both ice crystals and water droplets, and are associated with heavy rainfall, thunder, and lightning.
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which of these most directly triggered the main eruption?
The most powerful eruption type is a plinian eruption. The eruption of Mount St. Helens was a plinian eruption.
Plinian eruptions are distinguished by extremely tall ash clouds that can reach heights of 50,000 feet (nearly 10 miles). Plonian eruptions can also produce pyroclastic flows that are extremely lethal. The eruption of Mt. Vesuvius in Italy in 79 AD was a typical Plinian eruption. At the city of Pompei, extremely hot ash falls killed thousands of people. A 17-foot high fall of ash buried the city. The Plinian eruptions were so named in honour of Pliny the Elder of Rome, who perished during one of Vesuvius' numerous eruptions. The most explosive and hazardous eruptions are Pelean and Plinian eruptions.
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Rocks around the world contain evidence that seas have advanced and retreated and ______ have been uplifted and eroded
Rising mountains and eroded rocks all over the world contain the seas that have advanced and receded.
Shale,and limestone are examples of sedimentary rocks that likely contain fossils. As the layers of sediment build up on top of each other, they create a physical timeline.The oldest layers,along with the organisms that fossilized as they formed,are the deepest.The youngest layers are at the top. We study the history of the Earth by studying the record of past events that is preserved in rocks.The rock layers are the pages of our history book.The Earth's surface is sediment formed from older rock particles that have been broken down by water or wind.They are important to Earth's history.Sedimentary rocks contain features that allow us to interpret ancient depositional environments,including the evolution of organisms and the environments in which they lived in,how the climate has changed throughout the history of the Earth,where and when the faults were active.
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