which of following rock types does NOT involve dissolved gas in the magma?
a. tuff
b. pumice
c. scoria
d. diorite
e. vesicular basalt

Answers

Answer 1

The rock type that does NOT involve dissolved gas in the magma is diorite (option d). Diorite is an intrusive igneous rock that is formed from the slow cooling

solidification of magma deep underground. Unlike volcanic rocks such as tuff, pumice, scoria, and vesicular basalt,

It forms from the slow cooling and solidification of magma deep within the Earth's crust. Unlike the other rock types listed in the question, diorite does not involve dissolved gas in the magma. Tuff, pumice, scoria, and vesicular basalt are all formed from volcanic activity, which involves the rapid cooling and solidification of magma that has dissolved gas (usually water vapor) in it. As the magma rises to the surface and encounters lower pressure, the dissolved gas comes out of solution and forms bubbles, creating a porous or vesicular texture in the resulting rock.

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Related Questions

Halley's ______ is a common visitor to Earth, appearing every 76 years as it travels along its elliptical orbit around the _____and into the outer solar system.

Answers

Answer:

First blank: Comet

Second blank: Sun

Halley's Comet is a common visitor to Earth, appearing every 76 years as it travels along its elliptical orbit around the Sun and into the outer solar system.

This famous comet is named after Edmond Halley, who was the first to predict its return in 1705. Halley's Comet is composed of rock, dust, and ice and has a nucleus that measures approximately 15 kilometers wide.

When the comet gets close to the Sun, its ices start to vaporize, and it creates a stunning coma and tail that can stretch for millions of kilometers.

The last time Halley's Comet was visible from Earth was in 1986, and it won't be visible again until 2061.

The study of comets like Halley's provides valuable insights into the early solar system and the conditions that led to the formation of our planet.

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Provide exs/explain how each of the following led to the Columbian Exchange

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The Columbian Exchange was a complex and multifaceted phenomenon that was shaped by a variety of factors, including exploration, agriculture, animal domestication, and cultural exchange.

The Columbian Exchange was the widespread transfer of plants, animals, culture, human populations, technology, and ideas between the Americas and the Old World (Europe, Africa, and Asia) that occurred following the voyages of Christopher Columbus in the late 15th century. Here are some examples of how certain factors led to the Columbian Exchange: European Exploration: The voyages of Christopher Columbus and other European explorers to the Americas led to the discovery of new lands and peoples, which opened up trade routes and created opportunities for the exchange of goods and ideas between the Old and New Worlds.

Agricultural Advances: The Columbian Exchange led to the transfer of many new crops and agricultural techniques between the Americas and the Old World. For example, Europeans introduced wheat, rice, and sugarcane to the Americas, while Native Americans introduced corn, potatoes, and tomatoes to the Old World. Animal Domestication: The Columbian Exchange also led to the transfer of many new animals between the Americas and the Old World. Europeans brought horses, cattle, and pigs to the Americas, which had a significant impact on Native American cultures and societies. Similarly, Native Americans introduced turkeys and llamas to the Old World. Cultural Exchange: The Columbian Exchange led to the transfer of many new ideas, technologies, and cultural practices between the Americas and the Old World. For example, Europeans introduced Christianity to the Americas, while Native Americans introduced new forms of art, music, and storytelling to the Old World. Overall, The exchange of goods, ideas, and cultures between the Old and New Worlds had a profound impact on the history of both regions, and continues to influence the world today.

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A detrital sedimentary rock can be radiometrically dated because the clasts formed at the same time as the rock.
A)True
B)False

Answers

B) False. A detrital sedimentary rock cannot be radiometrically dated because the clasts are not the same age as the rock itself. Clasts can be derived from multiple sources and may have different ages than the rock they are found in.

A detrital sedimentary rock cannot be radiometrically dated accurately because the clasts within the rock were formed at different times, and not necessarily at the same time as the rock itself. Radiometric dating works best for igneous and metamorphic rocks, which form from cooling magma or high temperature/pressure conditions, respectively. In contrast, detrital sedimentary rocks form from the accumulation and compaction of pre-existing rock fragments (clasts) that have been transported and deposited in a new location, meaning their age is not representative of the rock as a whole.

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One of the first signs of renewed volcanic activity of Mount St. Helens in March 1980 was ______.

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One of the first signs of renewed volcanic activity of Mount St. Helens in March 1980 was a series of small earthquakes. These earthquakes were caused by the movement of magma and gas beneath the surface of the volcano.

As the magma rose towards the surface, it caused the ground to shake and rumble, which was picked up by seismographs. This seismic activity was closely monitored by scientists, who were aware that it could be a precursor to a major eruption. In the weeks leading up to the eruption, the earthquakes increased in frequency and intensity, as the magma continued to push its way towards the surface. Finally, on May 18th, Mount St. Helens erupted, sending a plume of ash and gas more than 15 miles into the sky. The eruption was one of the most powerful in the history of the United States, and it had a profound impact on the surrounding area. In the years since the eruption, Mount St. Helens has remained an active and closely monitored volcano, serving as a reminder of the awesome power of nature.

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What features are all produced by glacial erosion?

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Glacial erosion can produce various landforms and features, such as cirques, arêtes, U-shaped valleys, moraines, drumlins, eskers, and striations.

There are several features produced by glacial erosion. Some of the main ones include:
1. Cirques: These are bowl-shaped depressions formed when glaciers erode the mountainsides. They often have steep walls and a flat bottom.

2. U-shaped valleys: Glaciers carve out distinctive U-shaped valleys with steep sides and a wide, flat bottom as they move through the landscape.

3. Hanging valleys: When a smaller glacier erodes a tributary valley, it often leaves it hanging above the main valley, creating waterfalls.

4. Aretes: These are narrow, jagged ridges that form between two adjacent glaciated valleys.

5. Horns: A horn is a sharp, pyramid-shaped peak that forms when several glaciers erode a mountain from different sides.

In summary, glacial erosion produces features such as cirques, U-shaped valleys, hanging valleys, aretes, and horns. These landforms are a result of the powerful erosional force of glaciers as they move through the landscape.

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How will minerals orient when a rock is put under normal stress?
A) perpendicular to the direction of the greatest stress
B) parallel to the direction of the greatest stress
C) random to the direction of the greatest stress
D) oblique to the direction of the greatest stress

Answers

When a rock is put under normal stress, minerals will orient:
B) parallel to the direction of the greatest stress

When a rock is put under normal stress, the minerals will orient perpendicular to the direction of the greatest stress. This is because normal stress is a type of stress that pushes or pulls on a rock perpendicular to its surface, causing the minerals to align themselves in a perpendicular orientation. In contrast, when a rock is put under shear stress (a stress that pushes or pulls on a rock parallel to its surface), the minerals will orient parallel to the direction of the greatest stress.
This occurs because normal stress is applied perpendicularly to the rock surface, and minerals align themselves parallel to the direction of least resistance, which is the direction of the greatest stress in this case.

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________ is a technique where the decay rate of radioactive isotopes is measured and used to determine the age of a geologic material.

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Radiometric dating is a technique where the decay rate of radioactive isotopes is measured and used to determine the age of a geologic material.

It involves measuring the decay rate of radioactive isotopes in a sample of material and using that information to determine the age of the sample. The most common isotopes used in radiometric dating are carbon-14, potassium-40, and uranium-238. By measuring the ratio of parent isotopes to daughter isotopes in a sample, scientists can calculate the amount of time that has passed since the material was last heated or exposed to certain environmental conditions. Radiometric dating is a widely used technique in geology, archaeology, and other fields to determine the age of rocks, fossils, and other materials.

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Why can't color alone he used to identify most minerals?

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Color alone cannot be used to identify most minerals because many minerals can occur in different colors. For example, quartz can be clear, white, gray, pink, purple, or even black. Some minerals, such as hematite, can occur in a wide range of colors, including red, brown, black, and gray.

Some minerals can have the same color but different mineralogical properties. For example, both fluorite and apatite can be purple or green, but they have different crystal structures and chemical compositions. Minerals are identified by a combination of physical and chemical properties. These properties include hardness, cleavage, fracture, luster, density, and the way they react with acids. In order to properly identify a mineral, it is necessary to use a combination of these properties rather than relying solely on color. Furthermore, the presence of impurities or variations in crystal structure can also affect the color of a mineral. For example, iron impurities can give quartz a yellow or orange tint, while chromium can make corundum red (ruby) or green (emerald). Therefore, relying solely on color to identify minerals can lead to incorrect identifications and misinterpretations of geological data. In summary, while color can be a helpful characteristic in identifying certain minerals, it cannot be relied upon as the sole indicator of mineral identification due to variations in color and the importance of considering other physical and chemical properties.

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Natural capital is defined as all of Earth's resources that are necessary to produce ________.
A) the ecosystem services that we depend on
B) a profit
C) a sustainable market
D) environmental justice for all
E) a safe habitat for endangered species

Answers

All of the resources on Earth that are required to create the ecosystem services on which we rely are referred to as natural capital. Therefore, choice A is the best one.

The term "natural capital" refers to all of the Earth's resources, including as its minerals, biodiversity, air, water, and land, as well as the ecosystem services those resources sustain that are essential to human survival and well-being.

These cover a wide range of activities, such as pollination, healthy soil, clean air and water, and climate regulation.

The concept of "natural capital" underlines the value of ecosystem services as well as the necessity of their sustainable management.

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When a fault is expressed at the surface, it is called a __________.
A) epicenter
B) fault scarp
C) rupture surface
D)focus
E) hypocenter

Answers

B) fault scarp. A fault scarp is a small step or offset on the ground surface where one side of a fault has moved vertically with respect to the other side.

When a fault moves, it can cause earthquakes and create visible features on the surface. A fault scarp is an example of a surface expression of a fault. A fault scarp is a small step or offset on the ground surface where one side of a fault has moved vertically with respect to the other side. Fault scarps can be produced by different types of faults, such as normal, reverse, or strike-slip faults, and they can be hundreds of kilometers long or just a few centimeters high. Fault scarps can provide important information about the behavior of faults and the frequency and magnitude of earthquakes. By studying fault scarps, geologists can estimate the amount of displacement that has occurred on a fault over time, which can help them understand the earthquake hazard in a particular region. Fault scarps can also create physical and topographic barriers to human activity, and they can have ecological effects by altering water flow, creating new habitats, or disrupting existing ones.

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Which area from the list below was NOT an agricultural hearth.

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The answer is E Africa's South Africa. South Africa is not considered an agricultural hearth.

What is agriculture?

To support human existence and civilization, agriculture is the practice of cultivating land, keeping animals, and creating food, fiber, and other goods. It includes a variety of tasks such the planting, harvesting, breeding, and processing of livestock and crops. For thousands of years, agriculture has been an essential part of human societies, supplying both food and the raw resources needed for trade and commerce.

A place where agriculture is thought to have started and spread to other parts of the world is known as an agricultural hearth. These areas are distinguished by the advancement of agricultural techniques and technology that made it possible to domesticate animals and cultivate crops.

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Which of the following is NOT an agricultural hearth?

A) Southwest Asia's Mesopotamia

B) East Asia's Yangtze River Valley

C) Latin America's Andean Mountains

D) Latin America's Mexico's highlands

E) Africa's South Africa

What is a fine-grained igneous rock composed primarily of very small crystals of potassium feldspar and a few large crystals of quartz?

Answers

The fine-grained igneous rock composed primarily of very small crystals of potassium feldspar and a few large crystals of quartz is called rhyolite. Rhyolite is a volcanic rock that is formed from the rapid cooling of lava that is rich in silica. It is often found in areas where there has been volcanic activity, such as around the Pacific Ring of Fire.

The small crystals in rhyolite are typically less than 1mm in size, which gives the rock a fine-grained texture. Rhyolite is also known for its light color, which can range from white to pink to gray. It is a relatively common rock type and has been used for building materials, as well as for decorative purposes. Despite its fine-grained texture, rhyolite is still considered an igneous rock because it is formed from the solidification of magma or lava.

Overall, rhyolite is a fascinating rock type with unique properties and characteristics that make it an important part of the geological landscape.

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Hot, thin, runny lava flows with low silica content are typically _____.
a. rhyolitic
b. andesitic
c. basaltic
d. pyroclastic
e. Plinian

Answers

Hot, thin, runny lava flows with low silica content are typically basaltic. Basaltic lava is characterized by its low viscosity, which allows it to flow easily and spread out over long distances.

This type of lava typically erupts from shield volcanoes, which have gentle slopes and are formed by repeated basaltic eruptions. Rhyolitic lava, on the other hand, is thick and viscous, with a high silica content. This type of lava forms explosive eruptions and can create pyroclastic flows, which are fast-moving clouds of hot gas, ash, and rock fragments.

Andesitic lava has an intermediate composition between basaltic and rhyolitic lava, and is typically associated with stratovolcanoes, which have steep slopes and are formed by alternating layers of lava and pyroclastic deposits.

Pyroclastic materials refer to any fragments of rock ejected from a volcano, including ash, pumice, and volcanic bombs. Plinian eruptions are characterized by high columns of ash and gas, and are named after the Roman historian Pliny the Younger, who witnessed the eruption of Mount Vesuvius in 79 AD.

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All of these stars are now on the Main Sequence. Which lives longest?
A. Mass 10 times that of the Sun
B. Surface is bright blue
C. Spectral type F
D. Spectral type M

Answers

The star with the lowest mass, spectral type M, lives the longest. As a star's mass increases, its lifespan decreases, with more massive stars burning their fuel much faster and having shorter lifetimes.

The Main Sequence is the most important and longest stage in the life of a star. It is the phase where a star spends the majority of its life, steadily burning hydrogen fuel in its core to produce energy and maintain its equilibrium.The lifespan of a star on the Main Sequence depends on its mass, with more massive stars having shorter lifetimes than less massive stars. This is because more massive stars have a higher rate of energy production, which causes them to burn through their fuel supply more quickly.In general, stars with a lower mass, like spectral type M stars, have longer lifetimes than more massive stars. This is because they have a lower rate of energy production and therefore burn through their fuel supply more slowly. Stars with a mass of 10 times that of the Sun, on the other hand, have much shorter lifetimes and will exhaust their fuel supply much more quickly.

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The fact that shoreline beach deposits occur on top of terrestrial swamp and floodplain deposits indicates that ________ has occurred.
A. uplifting
B. rifting
C. transgression
D. regression

Answers

The fact that shoreline beach deposits occur on top of terrestrial swamp and floodplain deposits indicates that transgression has occurred.

Transgression refers to the gradual advance of the sea over land resulting in the deposition of sediments on top of previously deposited sediments. This causes shoreline beach deposits to occur on top of terrestrial swamp and floodplain deposits, as stated in the question. On the other hand, regression is the retreat of the sea from previously inundated areas. Uplifting refers to the vertical movement of the Earth's surface and rifting is the pulling apart of the Earth's surface.

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The avalanche caused by the collapse of Mount St. Helen's bulge also led to a tremendous blast of magma and groundwater when ______.

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The avalanche caused by the collapse of Mount St. Helen's bulge also led to a tremendous blast of magma and groundwater when the immense pressure within the volcano was suddenly released.

This pressure had been building for weeks prior to the eruption, as magma had been rising to the surface and creating a large bulge on the side of the mountain. When the bulge finally collapsed, it triggered a massive avalanche of rock, ice, and debris that traveled at speeds up to 150 miles per hour and devastated everything in its path. As the avalanche roared down the mountain, it also triggered a massive explosion of magma and steam that shot high into the sky. This explosion was caused by the sudden release of pressure within the volcano, which allowed the magma and groundwater to mix and create a highly pressurized gas that erupted violently. The resulting blast was heard for hundreds of miles and created a massive ash cloud that spread across the region, causing widespread damage and disruption. In conclusion, the collapse of Mount St. Helen's bulge caused not only an avalanche but also a tremendous blast of magma and groundwater due to the release of pressure within the volcano. The resulting eruption was one of the most significant volcanic events in modern history and had a lasting impact on the landscape and environment of the surrounding area.

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Which of the following are common processes that alter the different sizes and shapes of sediments within the surf zone?
1. Rocks become smooth and flattened
2. Angular rocks are rounded, as their corners are knocked off
3. Sand forms from broken rock particles

Answers

The following are common processes that alter the different sizes and shapes of sediments within the surf zone:

- Angular rocks are rounded, as their corners are knocked off
- Sand forms from broken rock particles

Angular rocks are rounded, as their corners are knocked off is a common process that alters the different sizes and shapes of sediments within the surf zone.

Rocks becoming smooth and flattened is also a process that can occur, but it is typically associated with aeolian processes (wind erosion) rather than surf zone processes. The formation of sand from broken rock particles is not a process that alters the sizes and shapes of sediments within the surf zone; rather, it is the result of weathering and erosion occurring upstream from the surf zone.In the surf zone, sediments are constantly being moved and sorted by the energy of breaking waves. As waves approach the shore, they slow down due to the shallower water and increase in height, causing them to break. The energy from the breaking waves then moves the sediment around in a number of ways.One process that occurs is called abrasion, in which rocks and other hard materials become smoother and more rounded as they are rolled around by the waves. This is particularly true for angular rocks, which lose their sharp edges and become more rounded over time.

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what type of natural disaster occurred in hurricane Dorian?

Answers

The natural disaster occurred in hurricane Dorian is

hurricanes which are severe tropical cyclones that result in powerful winds, heavy rainfall, storm surges, and inundation over a wide area causing extensive devastation.

What is hurricane Dorian?

Hurricane Dorian was designated Category 5, being the utmost category on the Saffir-Simpson Hurricane Wind Scale.

The Abaco Islands and Grand Bahama Island experienced ruinous destruction, thereby resulting in high numbers of casualties and displacements of residents due to hurricane-force winds that extensively damaged infrastructure, buildings, and homes.

To make matters worse, the accompanying storm surge along with the heavy rainfall from Hurricane Dorian provoked substantial flooding and exacerbated the scale and implications of this devastating Hurricane.

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Which federal agency coordinates responses to disasters that overwhelm local resources?
Select one:
CDC
DEA
FEMA
DMAT

Answers

The federal agency that coordinates responses to disasters that overwhelm local resources is FEMA, which stands for Federal Emergency Management Agency. FEMA is responsible for responding to natural disasters, such as hurricanes, earthquakes, and floods, as well as man-made disasters, such as terrorist attacks and hazardous materials spills. When a disaster occurs that exceeds the capacity of local and state resources, FEMA is activated to provide assistance and coordinate a national response.



FEMA's responsibilities include providing emergency shelter, food, and water, as well as coordinating medical care, transportation, and search and rescue operations. The agency also helps to rebuild communities and provide long-term recovery assistance after a disaster has occurred. FEMA works closely with other federal agencies, as well as state and local governments, to ensure a coordinated response to disasters and to provide the most effective and efficient assistance to those affected.

In addition to disaster response, FEMA also works to prepare communities for disasters before they occur through education, training, and planning initiatives. This includes developing emergency response plans, providing training and resources for first responders, and promoting public awareness and education about disaster preparedness. Overall, FEMA plays a critical role in helping to protect communities and provide assistance in times of crisis.

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Question 41
Marks: 1
The Council on Environmental Quality was established by
Choose one answer.

a. Title II of DSEA

b. Title IV of PHSA

c. Title VI of USEA

d. Title II of NEPA

Answers

The Council on Environmental Quality (CEQ) was established by Title II of the National Environmental Policy Act (NEPA). Therefore, the answer is d. Title II of NEPA.

The Council on Environmental Quality (CEQ) is a division of the Executive Office of the President of the United States, established in 1969 by Title II of the National Environmental Policy Act (NEPA). The CEQ's role is to advise the President on environmental matters and to oversee the implementation of NEPA.

NEPA is a federal law that requires federal agencies to assess the environmental effects of their proposed actions and to consider alternatives that may have less harmful impacts. The law also requires agencies to involve the public in the decision-making process and to disclose their environmental analyses to the public.

The CEQ is responsible for overseeing the implementation of NEPA by federal agencies, providing guidance on environmental issues to the President, and coordinating federal environmental efforts. The Council consists of three members, appointed by the President and confirmed by the Senate, who serve as the President's principal environmental policy advisers.

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Elastic deformation before an earthquake is like _______, whereas rupture is like__________.
A) breaking a rubber band; stretching a rubber band
B) baking a pie; rolling out dough
C) stretching a rubber band; breaking a rubber band
D) rolling out dough; baking a pie

Answers

C) stretching a rubber band; breaking a rubber band. Elastic deformation is the stretching or bending of rock that occurs before an earthquake.

This is similar to stretching a rubber band, where the rubber band becomes deformed but is still able to return to its original shape when the tension is released. However, when the stress on the rock exceeds its strength, the rock will rupture and release stored energy in the form of seismic waves. This is similar to breaking a rubber band, where the rubber band snaps and releases its stored energy. Therefore, elastic deformation is like stretching a rubber band and rupture is like breaking a rubber band.

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Which of these factors led Washington to fear that the United States would lose control of the Northwest Territory?

Answers

Several factors led Washington to fear that the United States would lose control of the Northwest Territory, including Native American resistance, British influence over Native American groups, and the presence of competing European powers.

Additionally, some American settlers and land speculators were also pressing for expansion into the region, which added to Washington's concerns about maintaining control over the territory. To address these issues, Washington urged Congress to adopt a policy of firm control over the region, including the establishment of military posts and the negotiation of treaties with Native American groups to secure American control over the area. The Northwest Territory was a large area of land north of the Ohio River and west of Pennsylvania that was ceded to the United States by Great Britain in the Treaty of Paris of 1783. The territory was vast, covering what are now the states of Ohio, Indiana, Illinois, Michigan, Wisconsin, and part of Minnesota.

During the Revolutionary War, many Native American tribes had formed alliances with the British and fought against the Americans. After the war, the United States government hoped to establish peaceful relations with these tribes and prevent further conflict. To this end, the government passed the Northwest Ordinance in 1787, which provided for the government of the territory and the eventual admission of new states to the Union.

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A gemstone that has been cut and polished is called a(n) ______________.

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A gemstone that has been cut and polished is called a faceted gem or simply a gem. Faceting is the process of cutting and polishing the stone's surface to enhance its beauty and allow light to refract, producing a sparkling effect.

This process not only highlights the gemstone's natural color and clarity but also increases its overall aesthetic appeal and value. A gemstone that has been cut and polished is called a faceted gemstone. Faceting is the process of cutting a gemstone into a specific shape with precise angles and dimensions to maximize its brilliance and beauty. The art of faceting gemstones dates back centuries, with ancient civilizations like the Greeks and Romans valuing gemstones for their beauty and rarity. Today, gemstones are still highly prized for their beauty and can be found in a wide range of colors and varieties, including diamonds, sapphires, emeralds, rubies, and more. Gemstones can be used in a variety of ways, from jewelry and decorative objects to healing and spiritual practices. In all cases, the beauty and rarity of a faceted gemstone make it a truly special and valuable treasure.

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Nyiragongo produced low-viscosity lava flows during its 1977 eruption, which was caused by ______.

Answers

During its 1977 eruption, the volcano produced low-viscosity lava flows, which flowed at a rapid pace and caused significant damage to the surrounding areas.

Nyiragongo is a stratovolcano located in the Democratic Republic of Congo, and it is known for its highly fluid lava, making it one of the most dangerous volcanoes in the world. This type of lava is characteristic of basaltic magma, which is less viscous than other types of magma and can flow more easily. The cause of the eruption was the result of the movement of tectonic plates beneath the Earth's surface, which led to the release of magma from deep within the volcano. As the magma rose to the surface, it encountered less pressure, causing it to expand and eventually erupt. The low-viscosity lava flows from Nyiragongo's 1977 eruption were highly destructive and caused widespread damage to nearby towns and villages. The lava flows were able to reach speeds of up to 60 miles per hour, making it difficult for residents to evacuate in time. Despite this, Nyiragongo remains an active volcano, and scientists continue to study its eruptions in order to better understand the underlying geological processes.

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Approximately how many of the buildings in Goma, Zaire, were destroyed by a lava flow in January 2002?

Answers

16 January-22 January 2002 Cite this Report
A 100-m-wide delta formed where lava entered the lake. Various reports estimated that lava flows had destroyed 25-75% of the city including ~10,000 homes.

Image by Historicair Which country on the map above has the largest population? A. country 1 B. country 2 C. country 4 D. country 5 ​

Answers

Answer this some bull 5h!t

Explanation:

Complete the illustration of a meandering stream by labeling the cut bank and point bar along the top margin and the proccesses of erosion and deposition along the bottom margin.a. cut bank b. point bar c. erosion d. deposition

Answers

To complete the illustration of a meandering stream, the cut bank should be labeled along the top margin on the outer bend of the stream, while the point bar should be labeled along the top margin on the inner bend of the stream.

On the bottom margin, erosion should be labeled as the process that is occurring on the cut bank, where the water is undercutting and removing sediment from the bank. Deposition should be labeled as the process that is occurring on the point bar, where the water is depositing sediment and building up the bank. Overall, meandering streams are constantly changing due to the processes of erosion and deposition, which shape the landscape and affect the surrounding ecosystem. In a meandering stream, the cut bank is located on the outer edge of the bend where water flows at a higher velocity, causing erosion. The point bar is found on the inner edge of the bend, where water flows more slowly, allowing deposition to occur. Therefore, your illustration should label (a) cut bank and (b) point bar along the top margin, and the processes of (c) erosion and (d) deposition along the bottom margin.

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What is the significance of this image?
A. It shows an actual disk of material orbiting another star, providing strong evidence the planets really do form in such disks
B. The large gap visible in the image represents the frost line of a young planetary system, demonstrating that such a line really exists.
C. It shows an artist's conception of what our solar system might have looked like when the planets were first forming.
D. It proves that jovian planets form farther from their stars than terrestrial planets.

Answers

It shows an actual disk of material orbiting another star, providing strong evidence the planets really do form in such disks. The correct answer is option a.

This image likely depicts a protoplanetary disk, a rotating disk of gas and dust that surrounds a young star and is believed to be the birthplace of planets.

By observing these disks around other stars, astronomers can study the processes of planet formation and gain insights into the conditions that gave rise to our own solar system.

The fact that such disks have been observed around numerous other stars provides strong evidence that planet formation is a common occurrence in the universe.

The correct answer is option a.

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the rock pictured here has visible crystals of feldspar embedded in a fine-grained gray matrix. what textural term best describes this rock?

Answers

The rock pictured here is likely a porphyritic rock. Porphyritic rocks are igneous rocks that have two distinct textures.

The first texture is a coarse-grained texture in which larger crystals (phenocrysts) are embedded in the rock. The second texture is a fine-grained texture in which the matrix, or groundmass, is composed of smaller crystals.

This two-texture structure is produced by two different stages of cooling. The larger crystals are formed during the slower cooling process that takes place deep within the Earth, while the smaller crystals are formed during a faster cooling process that takes place closer to the Earth's surface.

In the rock pictured, the larger crystals are visible and are likely feldspar, while the gray matrix is likely composed of smaller, finer-grained minerals.

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a vesicular igneous texture indicates that:
a. there was a lot of gas in the magma
b. the rock cooled
c. the rock broke apart as it flowed
d. the rock cooled slowly
e. the ash and pumice were hot and became compacted

Answers

A vesicular igneous texture indicates that a. there was a lot of gas in the magma

A vesicular texture in an igneous rock is characterized by the presence of numerous small cavities or vesicles, which are formed by trapped gas bubbles during the solidification of the magma. This texture indicates that there was a significant amount of gas in the magma, leading to the formation of these vesicles.Vesicular texture is a type of texture in igneous rocks that contains small cavities or vesicles in the rock. These vesicles are formed due to the presence of gases, such as water vapor, carbon dioxide, and sulfur dioxide, in the magma during the time of solidification. As the magma rises to the surface, the decrease in pressure causes the gas bubbles to expand and become trapped in the solidifying magma, resulting in the formation of vesicles in the rock.

The size, shape, and distribution of the vesicles can provide information about the rate of cooling and the composition of the magma. A rock with a vesicular texture indicates that the magma contained a high concentration of gas, which could have been produced by the release of volatiles from a deep magma source or from the assimilation of gases from surrounding rocks.

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Final answer:

A vesicular igneous texture indicates the presence of gas in the magma during a volcanic eruption.

Explanation:

A vesicular igneous texture indicates that there was a lot of gas in the magma. When magma contains high amounts of dissolved gases, such as water vapor and carbon dioxide, pressure builds up within the magma chamber. As the molten rock reaches the Earth's surface and erupts as a volcanic eruption, the sudden release of pressure causes the gases to rapidly expand, creating bubbles or vesicles throughout the rock.

These vesicles are preserved as the rock cools and solidifies. The size and shape of the vesicles can provide clues about the eruption dynamics and the type of magma involved. For example, larger vesicles suggest higher gas content, while elongated vesicles indicate the rock was stretched or flowed before solidification.

In conclusion, a vesicular igneous texture is primarily formed due to the presence of a significant amount of gas in the magma during a volcanic eruption.

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