Which is not a type of stress seen in rocks? shear stress transitional stress compressional stress tensional stress​

Answers

Answer 1

Answer:

There is no type of stress that is not seen in rocks among the options given. All four types of stress listed are commonly observed in rocks: shear stress, transitional stress, compressional stress, and tensional stress.

Shear stress occurs when rocks are subjected to forces that cause them to slide or twist along parallel planes, resulting in shearing or tearing of the rock.

Transitional stress occurs when rocks are subjected to forces that cause them to change shape or deform without breaking or cracking, such as bending or folding.

Compressional stress occurs when rocks are subjected to forces that push them together or cause them to be squeezed or shortened, resulting in deformation or folding.

Tensional stress occurs when rocks are subjected to forces that pull them apart or stretch them, resulting in the development of cracks or fractures.

Explanation:

Answer 2

Answer:

Stress during the transition period. This is NOT a sort of stress found in rocks.

Transitional stress is a sort of social stress that signifies mental tension that occurs as a result of life transitions and derives from one's connections with others and from society. Geological stresses are applied to rocks.

Explanation:

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Related Questions

explain why an understanding of geological time is critical to both geologists and the public in general.

Answers

Geological time is an important concept for both geologists and the public, as it allows us to comprehend and explain the age of the Earth and its evolution over time. It allows us to explain Earth processes and how they impact human life.

For geologists, geological time is essential for interpreting the evolution of the Earth, its climate and its environments. By understanding geological time, geologists can create theories about how the Earth formed and developed over time.

This helps them to better predict and explain natural phenomena, like earthquakes, volcanoes and floods.

For the public, understanding geological time is critical to understanding the effects of climate change, and how changes to the Earth’s environment can affect the human population.

By understanding how the Earth and its environment have evolved over time, the public can better understand the impacts of climate change and take appropriate action to protect their environment.

Finally, an understanding of geological time is also important for understanding the diversity of life on Earth. By understanding how life has evolved and adapted over time, we can better appreciate the amazing variety of life on our planet.

In conclusion, an understanding of geological time is critical for both geologists and the public. It allows us to understand and appreciate the history of the Earth and its environment, as well as the impacts of climate change and the diversity of life on Earth.

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which of the following statements about the first stars that were born in the universe is expected to be true?

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The first stars that were born in the universe were likely much more massive than stars born today.

These massive stars are thought to have contained more than 100 times the mass of our Sun, and it is likely that some were as massive as 500 times the mass of our Sun.

This mass is so great that it produces much higher temperatures and pressures than stars today, leading to different types of fusion reactions that are not seen in stars today.

These massive stars also had much shorter lifespans, lasting only a few million years, compared to stars like our Sun, which last billions of years.

The first stars also had very different compositions than stars today, being composed of only the lightest elements, hydrogen and helium, with no metals present.

This is due to the fact that heavier elements had not yet been produced in the early universe.


Due to their extreme masses and short lifespans, these first stars had much more powerful and energetic deaths, producing vast amounts of heavy elements through fusion and nucleosynthesis, which were then expelled into the universe.

This resulted in the universe becoming more enriched with metals, allowing for the formation of smaller, more stable stars with longer lifespans.

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Americans first believed John Wilkes
Booth acted alone in assassinating
President Abraham Lincoln.
Was that belief accurate?
A. Yes, but he had other assassinations planned and
breaking his leg prevented them.
B. No, a team of co-conspirators had planned several
assassinations of high government officials.
C. Yes, he was a lone assassin and Lincoln was his only
target.
D. No, there were several assassinations that happened on
the same night as that of President Lincoln.

Answers

B. No, a group of co-conspirators had planned a number of high-ranking government targets.

What was Abraham Lincoln's assassination?

The assassination of Abraham Lincoln was a brutal attack on the 16th president of the United States that took place in the evening of April 14, 1865, at Ford's Theatre in Washington, D.C. John Wilkes Booth, a Confederate sympathizer, fatally shot Lincoln in the head the following morning. The surrender of General Robert E. Lee and the Army of Northern Virginia to Union forces under General Ulysses S. Grant at Appomattox Court House, which effectively marked the end of the American Civil War, was only a few days before the assassination. The search for Booth and his accomplices was the largest manhunt in American history up to that point, and Lincoln's death sent a large portion of the nation into despair.

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what geopolitical problems does northwestern europe face today and what solutions have been proposed

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Northwestern Europe faces various geopolitical problems today, such as acid rain, air pollution, and climate change. Several solutions have been proposed to address these issues.

Geopolitical problems refer to the economic, political, social, or strategic concerns that affect a country's position on the global stage. Northwestern Europe comprises the United Kingdom, Belgium, the Netherlands, and Luxembourg, among other countries. These nations have to contend with various geopolitical problems today.

Acid rain is one of the problems affecting Northwestern Europe today. It occurs when rain combines with sulfur dioxide and nitrogen oxides, which are released into the atmosphere from factories and power stations. Acid rain is known to cause harm to forests, crops, and fish. It also damages buildings and monuments. In response to this problem, countries in Northwestern Europe have developed stricter pollution control measures.

Air pollution is another problem that Northwestern Europe faces. It results from emissions from transportation, industry, and energy production. The pollution affects the air quality, leading to respiratory and cardiovascular illnesses. To mitigate this issue, Northwestern European countries have developed various measures, including banning cars from entering urban areas, increasing the use of renewable energy, and encouraging people to use public transportation.

In conclusion, Northwestern Europe faces various geopolitical problems today, including acid rain, air pollution, and climate change. To address these problems, countries in this region have developed several solutions, including pollution control measures, increasing renewable energy, and encouraging the use of public transportation.

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the study of the alignment of magnetic minerals in rock, specifically as it relates to the reversal of earth’s magnetic poles; also the magnetic properties that rock acquires during formation is called?

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The study of the alignment of magnetic minerals in rock, particularly in relation to the reversal of the earth's magnetic poles, is referred to as paleomagnetism. Paleomagnetism is the scientific study of the history of the Earth's magnetic field. It is an important tool for studying the Earth's ancient magnetic field and its behavior over time.

Paleomagnetism is a branch of geophysics that has grown in popularity over the last few decades. This technique is used to determine the orientation of the Earth's magnetic field in the past. Paleomagnetism has the ability to measure the magnetic field of rocks at various times in history. By analyzing the magnetic properties of the rocks, researchers can better understand how the Earth's magnetic field has changed over time.
When rocks form, they become magnetized in the direction of the Earth's magnetic field at that time. The minerals in the rock align themselves with the magnetic field, leaving a record of the Earth's magnetic field. This magnetization remains frozen in the rock, providing scientists with a record of the Earth's magnetic field at the time the rock formed.
Paleomagnetism has several applications, including geologic dating, tectonic plate reconstructions, and the study of continental drift. Paleomagnetism has contributed to our understanding of the history of the Earth's magnetic field, including its reversals and fluctuations, and its impact on the Earth's climate and life.

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The Weather Channel has managers meet with subordinates to give them feedback all throughout the year. Quarterly, managers meet with subordinates to discuss whether or not specific expectations were met as part of the formal system. a critical incident b comparison с compensation d performance appraisal e work standards

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Answer:

Ask your teacher for more explanation

Explanation:

Continental Crust is generally _____ than Oceanic Crust.a. olderb. denserc. thinnerd. richer in iron and magnesiume. all of the above

Answers

Continental Crust is thinner.

a hurricane is defined as a large area of sustained winds greater than 119 this is the wind speed at which

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A hurricane is defined as a large area of sustained winds greater than 119; this is the wind speed at which a tropical storm becomes a hurricane.

A hurricane is a tropical cyclone with strong, rotating winds. A tropical cyclone is a broad, rotating low-pressure system that produces thunderstorms and potentially damaging wind and rain.

Hurricanes are classified into five categories based on their sustained winds. The Saffir-Simpson Hurricane Wind Scale classifies hurricanes as follows:

Category 1: sustained winds of 74-95 mphCategory 2: sustained winds of 96-110 mphCategory 3: sustained winds of 111-129 mphCategory 4: sustained winds of 130-156 mphCategory 5: sustained winds of 157 mph or higher

Hurricanes are classified based on their sustained wind speed. A tropical storm becomes a hurricane when its sustained wind speed exceeds 74 mph, and it becomes a major hurricane when its sustained wind speed exceeds 111 mph.

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Volcanic activity created the _____ that is important to the economy of the village of Vestmannaeyjar on the island of Heimaey, near Iceland. fishing port.

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Volcanic activity created the fishing port that is important to the economy of the village of Vestmannaeyjar on the island of Heimaey, near Iceland. This statement is factual and relevant to the given question.

Volcanic activity refers to the processes and phenomena involved in the eruption of magma, ash, gas, and other volcanic materials from the earth's surface. The volcanic activity is often accompanied by a range of environmental impacts such as air pollution, climate change, landslides, and the formation of new landforms, among others.

In the case of the village of Vestmannaeyjar on the island of Heimaey, near Iceland, volcanic activity played a significant role in creating the fishing port that is important to the economy of the village. The eruption of Eldfell in 1973, which lasted for about five months, resulted in the formation of a new landmass and created a natural harbor that became the new fishing port of the village.

The fishing industry is the backbone of the economy of Vestmannaeyjar, with its major focus being on the harvesting of fish such as cod, haddock, and mackerel. Therefore, the volcanic activity that created the fishing port played a significant role in shaping the economy and social life of the village.

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pyroclastic flows cannot travel down all sides of a volcano simultaneously. group startstrue or false

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Pyroclastic flows cannot travel down all sides of a volcano simultaneously. This statement is true.

What is a pyroclastic flow?

Pyroclastic flows are hot clouds that descend the slopes of a volcano at a high speed. These flows can travel down the sides of a volcano, but they do not necessarily have to travel down all sides at once, which makes the given statement true. Pyroclastic flows are one of the most dangerous aspects of a volcanic eruption, and they are responsible for a significant portion of the deaths caused by volcanoes.

Content loaded pyroclastic flows, Pyroclastic flows are made up of a combination of ash, rocks, and gas. They can travel at speeds of up to 430 miles per hour, leaving very little time for people to evacuate the affected area. Additionally, pyroclastic flows are known for their ability to travel over rough terrain and even across water. Pyroclastic flows can be initiated by various mechanisms, including the collapse of a volcanic column, the venting of volcanic gas, or a volcanic explosion. During a volcanic eruption, pyroclastic flows can travel tens of miles from the volcano's source before stopping, leaving a trail of destruction behind.

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Are you closer to the equator in northern Argentina or southern Spain?
a.Northern Argentina
b. Southern Spain

Answers

Southern Spain is further from the equator than northern Argentina. In this instance, Northern Argentina is closer to the equator than Spain, which is far from the equator and close to the North Pole. Option A is correct .

What makes the equator unique?

The length of the equator is just under 25,000 miles. Each of our planet's five main circles of latitude is based on the relationship between the Earth's axis of rotation and its orbit around the sun. The equator is the longest of these circles because the Earth bulges at the center. The phrase circulus aequator diei et noctis, which means "circle equalizing day and night" and is derived from the Latin word aequare, which means "make equal," is where the name comes from. Due to the Earth's tilt, countries on or near the equator experience year-round high temperatures. In these nations, the temperature hovers around 31 degrees Celsius on average.

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why do you think most tree-ring sites are located in the middle and high latitudes and not in the tropics?

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Most tree-ring sites are located in the middle and high latitudes and not in the tropics because of several reasons.

They are as follows:

Climate conditions: It is known that tree rings reveal climatic information, such as the temperature and precipitation of an area. This is because trees produce annual growth rings, which indicate changes in climate from year to year. Trees in the middle and high latitudes experience extreme temperature changes between summer and winter, making it easier to read the tree-ring patterns compared to those in the tropics.

Soil conditions: The soil in the tropics is nutrient-rich, which helps trees grow faster and produce wider rings. It is more challenging to extract the climate information from wider rings, as the rings become less distinct and less sensitive to climate changes.

Agricultural activities: In tropical areas, there is often extensive farming, deforestation, and other human activities. This can destroy the old trees or make it challenging to find trees that have lived long enough to create a reliable tree-ring record. On the other hand, there is less farming and human activity in the middle and high latitudes, allowing for more trees to grow to old ages and creating a better tree-ring record.

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a pyroclastic flow blank . multiple select question. is rarely responsible for volcano-related deaths can move at speeds that exceed 100 m/sec is a mixture of magma, volcanic ash and gas, and air forms when airborne pyroclasts of various sizes begin to rain down upon the ground can reach temperatures of 350o c

Answers

A pyroclastic flow is a volcanic ash and gas. the correct answer  is: B

A pyroclastic flow can move at speeds that exceed 100 m/sec, is a mixture of magma, volcanic ash and gas, and air, forms when airborne pyroclasts of various sizes begin to rain down upon the ground, and can reach temperatures of 350°C.

However, it is not true that it is rarely responsible for volcano-related deaths.

This statement is incorrect.

What is a pyroclastic flow?

A pyroclastic flow is a volcanic event that produces a dense, dangerous cloud of ash, lava blocks, and gas that flows swiftly down the slope of a volcano.

Pyroclastic flows are most commonly associated with volcanic eruptions and can cause a lot of damage and death.

As previously stated, a pyroclastic flow is a mixture of magma, volcanic ash and gas, and air, and it can reach temperatures of 350°C.

The statements which are true regarding the pyroclastic flow are:

It can move at speeds that exceed 100 m/secIt is a mixture of magma, volcanic ash and gas, and air forms when airborne pyroclasts of various sizes begin to rain down upon the ground and can reach temperatures of 350°C.  Therefore, the correct answer is B.

It can move at speeds that exceed 100 m/sec, is a mixture of magma, volcanic ash and gas, and air, forms when airborne pyroclasts of various sizes begin to rain down upon the ground, and can reach temperatures of 350°C.

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how would you tell if a rock is crystalline? group of answer choices it contains crystals that have been cemented together. it does not contain crystals at all. it contains interlocking crystals. it contains all one type of crystal.

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Crystalline rocks contain crystals that have been cemented together. These crystals are usually interlocking, meaning they fit together tightly. To determine if a rock is crystalline, you can look for certain characteristics.

The first characteristic of a crystalline rock is that it contains all one type of crystal. This crystal type can be identified by its shape and color. Crystals often appear in regular patterns, giving a crystalline rock a distinct, geometric look.


The second characteristic of a crystalline rock is that it is relatively hard. Crystalline rocks are usually harder than non-crystalline rocks. To test the hardness of a rock, you can use a simple scratch test. If the rock is crystalline, it will scratch metal or glass but not be scratched by them.


The third characteristic of a crystalline rock is that it does not contain any voids or gaps. Crystalline rocks are usually solid and the crystals are very tightly packed together. This creates a solid mass with no voids or gaps.



Finally, crystalline rocks often have a shiny or glassy appearance. This is due to the light reflecting off of the crystals. The shiny surface also reflects light and appears to have a glossy sheen.



To determine if a rock is crystalline, look for these characteristics. It should contain all one type of crystal, be relatively hard, have no gaps or voids, and have a glossy or shiny appearance. If these characteristics are present, the rock is likely crystalline.

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Simple-exponential smoothing forecasting models are useful for data which have All of the options are correct. pronounced seasonality. a downward time trend. neither an upward or downward time trend. an upward time trend.

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Simple-exponential smoothing forecasting models are useful for data which have C. neither an upward or downward time trend.

When should simple exponential smoothing forecasting be used ?

Simple-exponential smoothing forecasting models are a type of time series forecasting technique that uses weighted averages of past observations to predict future values.

These models are best suited for data that does not exhibit a clear trend, either upward or downward. When data have a pronounced seasonality or trend, more advanced time series models may be necessary to make accurate forecasts.

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volcanic tsunami can be generated by a number of volcanic activities, including blank . multiple select question. travel of lahars into the sea undersea eruptions large amounts of material entering the sea by pyroclastic fall caldera collapse into the sea violent outgassing along volcanic vents near sea level

Answers

Volcanic tsunamis can be generated by a number of volcanic activities, including

Travel of lahars into the seaUndersea eruptionsLarge amounts of material entering the sea by pyroclastic fallCaldera collapse into the seaViolent outgassing along volcanic vents near sea level

A volcanic tsunami is a type of tsunami generated by volcanic activity, which can occur when a volcano erupts underwater, causing a rapid displacement of water.

The resulting wave can be extremely powerful and destructive, capable of reaching heights of several meters and causing widespread damage to coastal communities.

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what geologic event is responsible for creating the gold that made prospectors rush to california in the late 1840s?

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The gold rush that brought prospectors to California in the late 1840s was due to a geologic event known as the California Gold Rush. This event was caused by gold deposits that were discovered in the Sierra Nevada Mountains.

These deposits were created millions of years ago when the Sierra Nevada Mountains were formed by the movement of tectonic plates. As these plates moved, they created cracks and crevices in the earth's crust. Over time, the gold deposits were pushed upwards and became exposed to the surface.

As news of these gold deposits spread, prospectors rushed to California in the hopes of striking it rich. The California Gold Rush changed the course of history, bringing an influx of people to the region and transforming the state into the bustling economy it is today.

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When does flooding occur?


a. When the amount of water exceeds the capacity of the land


b. When the amount of water exceeds the capacity of the rainfall


c. When the amount of water exceeds the capacity of the river's channel. The excess water overflows the river's banks and spills out across the flood plain. D. Prolonged rainfall leading to the satiation of the ground

Answers

Flooding occurs when the amount of water exceeds the capacity of the land or the rainfall. The correct option is B.

This can happen due to several reasons, such as heavy rainfall, melting snow, or a high tide. When the capacity of the river’s channel is exceeded, the excess water overflows the river’s banks and spills out across the flood plain. Prolonged rainfall can also lead to flooding, as the water will saturate the ground and begin to pool in low-lying areas.

In addition, flash floods can occur when a heavy rainstorm or thunderstorm happens in a very short period of time, making it difficult for the ground to absorb the water. In any case, when flooding occurs, it can result in significant damage to property, infrastructure, and the environment, making it important to take precautions to prevent flooding where possible. The correct option is B.

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Air flow in a Northern Hemisphere high pressure zone is
a. downward, outward and clockwise.
b. downward, outward and counterclockwise.
c. inward, upward and clockwise.
d. inward, upward and counterclockwise.
e. downward, inward and clockwise.

Answers

Airflow in a Northern Hemisphere high-pressure zone is downward, outward and clockwise. option A is the right answer.

What is a high-pressure system?

A high-pressure system is a weather condition characterized by stable, dry, and clear weather, according to meteorologists.

High-pressure systems occur when air masses having greater density than the air masses surrounding them ascend from the earth's surface and diverge in the upper atmosphere.

As the air cools, it decreases in temperature and becomes more dense, resulting in a high-pressure system.

Air moves in a clockwise manner in the Northern Hemisphere in a high-pressure system. In the Northern Hemisphere, a high-pressure system is created when air converges towards the surface of the earth.

As a result, air descends to the surface of the earth, causing increased atmospheric pressure. Thus, option A is the right answer.

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Which man-made feature has allowed for the shipment of goods and resources more effectively from the Middle East to Europe?
Panama Canal
Mediterranean Sea
Suez Canal
Nile River

Answers

Suez Canal is the man-made feature has allowed for the shipment of goods and resources more effectively from the Middle East to Europe therefore the correct option is c.

The Suez Canal is an artificial  ocean-  position  raceway connecting the Mediterranean Sea to the Red Sea. It's one of the world’s most strategically important aqueducts,  furnishing a  pivotal trade route between Europe, Asia, and Africa. Construction of the  conduit began in 1859 under the supervision of French  mastermind

Ferdinand de Lesseps. It took 10 times to complete, with the  sanctioned opening taking place in November 1869.

Hence the correct option is c.

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on the 21st of december which hemisphere has no sunrise between 66.5 degrees of latitude and the pole?

Answers

It would take place in the Northern hemisphere.

which of the following is true about the nitrogen cycle? A. the form of nitrogen present in significant levels in the atmosphere is easily assimilated by most organisms B. most of the nitrogen in the atmosphere exists as organic molecules C. all organisms can incorporate atmospheric nitrogen into their proteins and nucleic acids D. the activity of specific types of microorganisms is important to convert atmospheric nitrogen molecules into usable forms

Answers

D. The activity of specific types of microorganisms is important to convert atmospheric nitrogen molecules into usable forms, is true about nitrogen cycle.

The nitrogen cycle is a complex process that plays an important role in regulating the global environment. The activity of specific types of microorganisms is critical to the nitrogen cycle, as they are able to convert atmospheric nitrogen molecules into usable forms.

The form of nitrogen present in significant levels in the atmosphere is molecular nitrogen (N2), which is not easily assimilated by most organisms.

To make it usable, nitrogen must be "fixed" into more accessible forms, such as nitrates and ammonia, which can then be taken up by plants and other organisms.

Other microorganisms are able to convert nitrates and ammonia back into molecular nitrogen, completing the cycle. Thus, the cycle is powered by the activity of microorganisms, which are able to convert atmospheric nitrogen into usable forms and then back again.

Therefore, correct option is D.

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examine the images of the grand canyon below. notice that most of the canyon consists of layers of sedimentary rocks, but if you were to hike down into the inner gorge you would encounter the vishnu schist, a metamorphic rock. which of the following processes were involved as the vishnu schist metamorphosed? photograph a shows the grand canyon the inner gorge of the grand canyon, a steep gorge in the deepest part of the canyon with a river at its bottom. photograph b shows the vishnu schist, a dark colored rock outcrop jutting out from one side of the inner gorge. view available hint(s)for part a examine the images of the grand canyon below. notice that most of the canyon consists of layers of sedimentary rocks, but if you were to hike down into the inner gorge you would encounter the vishnu schist, a metamorphic rock. which of the following processes were involved as the vishnu schist metamorphosed? photograph a shows the grand canyon the inner gorge of the grand canyon, a steep gorge in the deepest part of the canyon with a river at its bottom. photograph b shows the vishnu schist, a dark colored rock outcrop jutting out from one side of the inner gorge. eruption and cooling of a lava flow. intense pressure due to regional metamorphism. deposition, burial, compaction, and cementation of sediment. cooling of magma.

Answers

The following processes were involved as the vishnu schist metamorphosed photograph b shows the vishnu schist, a dark colored rock outcrop jutting out from one side of the inner gorge eruption and cooling of a lava flow.

The Vishnu Schist found in the inner gorge of the Grand Canyon was formed through intense pressure due to regional metamorphism. This is different from the sedimentary rocks found in the rest of the canyon, which are formed through deposition, burial, compaction, and cementation of sediment. Eruption and cooling of a lava flow and cooling of magma are not processes that were involved in the metamorphosis of the Vishnu Schist.

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What solid figure has two bases, but no lateral faces?

cone
cylinder
rectangular prism
triangular prism

Answers

Answer: Cylinder

Explanation:

Think of a cylinder. It has 2 parallel circular bases and a curved surface.

None of those are considered lateral. Therefore, your answer is a cylinder.

why do some scientists doubt that a meteorite impact was the sole cause of the mesozoic extinction event?

Answers

Some scientists doubt that a meteorite impact was the sole cause of the Mesozoic extinction event for several reasons. There are many ways in which extraterrestrial impacts could have contributed to the extinction of non-avian dinosaurs and other Mesozoic species.

However, there is still much that we do not know about the details of how the Mesozoic extinction event unfolded.

Some of the main reasons why some scientists are skeptical of the idea that a single meteorite impact caused the Mesozoic extinction event are:

1. The geological record does not always provide conclusive evidence for a single, large-scale impact event. Some researchers have suggested that there may have been multiple impact events occurring over a longer period of time.

2. There is still much that we do not know about how the Mesozoic extinction event unfolded, and the precise timing of events may be difficult to determine.

3. Other factors such as volcanism, climate change, and changes in sea level may have played a role in the extinction of Mesozoic species.

4. The mechanisms by which an impact event could cause such widespread extinction are still not well understood.

5. The fossil record indicates that some species survived the initial impact event, which suggests that other factors may have contributed to their eventual extinction.

Overall, while the idea that a meteorite impact caused the Mesozoic extinction event is still widely accepted, there is still much that we do not know about the details of how this event unfolded.

There is ongoing research into other possible causes of the Mesozoic extinction event, and this research may shed further light on this fascinating period of Earth's history.

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what volcanic eruption was the loudest in modern history?

Answers

Answer:

Explanation:

The loudest volcanic eruption in modern history was the 1883 eruption of the Krakatoa volcano, which is located between the islands of Java and Sumatra in Indonesia. The explosion was so powerful that it was heard over 3,000 miles away, and it produced a sound that is estimated to have reached 172 decibels at a distance of 100 miles from the source. The eruption caused widespread damage and loss of life, with tsunamis and other effects felt across the region.

the spacecraft that visited pluto and sent back our first images: show answer incorrect answer please select the best choice from the available options. was called new horizons got a gravity boost from jupiter to get it to pluto faster used plutonium to keep it warm is returning to earth in the 22nd century more than one of these

Answers

The spacecraft that visited Pluto and sent back our first images was called New Horizons. It was launched in 2006 and completed its mission in 2015. It was the first mission to explore the dwarf planet, and it provided humanity with a wealth of knowledge about it.

New Horizons received a gravity boost from Jupiter to get it to Pluto faster and used plutonium to keep it warm. The craft also sent back amazing pictures of Pluto and its moons, and the data it collected is helping scientists learn more about the dwarf planet.

The spacecraft is now heading back to Earth, and it is expected to reach its destination in the 22nd century. The data from New Horizons is providing us with a better understanding of the mysterious outer reaches of our solar system.

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a set of physical conditions of the lower atmosphere, ... wind speed, cloud cover, and other factors, in a given area over a period of hours or days.

Answers

Answer:

b

Explanation:

could some layer of sediment lie beneath a layer of bedrock?

Answers

Answer:

Explanation:

No, it is highly unlikely for a layer of sediment to lie beneath a layer of bedrock. Bedrock is formed by the solidification of rock material over a long period of time, usually through the process of cooling and crystallization of magma or the compaction and cementation of sedimentary particles. It is the solid and relatively stable foundation of the Earth's crust and is typically composed of hard, dense rocks such as granite, basalt, or sandstone.

In contrast, sediment is unconsolidated material such as sand, silt, and clay that has been deposited by water, wind, or glaciers. Sediment layers are generally found on top of bedrock and can accumulate over time, but they cannot form beneath it.

However, there are some rare cases where sediment may be found beneath the bedrock. For example, if a layer of sediment is deposited on top of a bedrock layer and then covered by another layer of bedrock through the process of tectonic uplift or erosion, it is possible for the sediment layer to be preserved beneath the new bedrock layer. This is a rare occurrence and requires very specific geological conditions to happen.

A field that gets flooded is more likely to be contaminated with E. coli.
true or false

Answers

Answer:

Flooding, can also introduce pathogens to your garden including E. coli, salmonella, hepatitis A and norovirus, according to research done by North Carolina State University. The risk of pathogens being introduced to a garden increases if livestock or pet areas are nearby, or if there's a compost pile in the garden.

Explanation:

The given statement "A field that gets flooded is more likely to be contaminated with E. coli" is true because when flooding occurs, it can cause several issues that increase the likelihood of E. coli contamination.

Firstly, floodwater often contains a mix of pollutants, including sewage and animal waste, which are common sources of E. coli. As the floodwater spreads across a field, it can disperse these contaminants, making it more likely that E. coli bacteria will be present.

Secondly, the excess water from flooding can lead to soil erosion, which may disrupt natural barriers that help prevent E. coli contamination. For example, healthy soil typically contains beneficial microbes that can compete with and inhibit the growth of harmful bacteria like E. coli. However, when the soil structure is damaged due to flooding, these protective features may be diminished.

Lastly, flooding can also create favorable conditions for E. coli growth. E. coli thrives in moist environments, and the waterlogged soil in a flooded field can provide an ideal habitat for the bacteria to multiply. Furthermore, flooding can lead to nutrient-rich runoff from nearby sources, such as agricultural lands, which may provide additional nutrients that support E. coli growth.

In conclusion, a field that gets flooded is more likely to be contaminated with E. coli due to the potential presence of pollutants, disruption of natural soil barriers, and the creation of favorable conditions for bacterial growth.

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