What does "-zoic" in the eras of the geologic time scale refer to?
A)Water
B)Rock
C)Life
D)Fossilization

Answers

Answer 1

C) Life. The term "-zoic" in the eras of the geologic time scale refers to life. The suffix is derived from the Greek word "zoe", which means life. In the context of geology, it is used to denote different time periods characterized by specific types of life forms, rock formations, and fossilization processes.

The "-zoic" in the eras of the geologic time scale refers to life. This suffix is used to indicate a period in Earth's history that is characterized by a particular type of life, such as the Paleozoic era (which is marked by the proliferation of marine life and the emergence of the first land plants and animals) or the Mesozoic era (which is known as the "Age of Dinosaurs"). Fossilization, on the other hand, refers to the process by which organic material is preserved in rock over time, leading to the creation of fossils.

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Related Questions

Why have degassing pipes been installed in Lake Nyos in Cameroon?

Answers

In order to prevent further gas eruptions, Lakes Nyos and Monoun, as well as Kabuno Bay, which is a small, 150 m deep subbasin of Lake Kivu with only low CH4 content, are degassed artificially today.

The developments described in this passage most clearly reflect with of the following?

Answers

The developments described in this passage most clearly reflect: the degree to which Mali increased interregional trade. Option C

What should you know about Mansa Musa and his spending as a way to increased interregional trade?

The text in the picture describes Mansa Musa, King of Mali, visiting Cairo in 1324 during his trip to Mecca.

Mansa Musa's travel to Cairo tell us more about the growing interregional economic and cultural trade/integration that happend between West Africa and other areas throughout the 14th century.

in the statement " I heard talk of the arrival of this sultan Musa on his Pilgrimage and found the Cairenes eager to recount what they had seem of the Africans' prodigal spending"  Prodigal spending in the passage hints to trade

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Answer:

B

Explanation:

I did the assessment before

geologists distinguish among types of mass-wasting events based on four features. select four from the list below.

Answers

The correct options for types of mass wasting events are A, B, F, and G.

Mass wasting occurs when accumulated stabilized or unconsolidated rocks of varied shapes, sizes, and roots are carried downslope by gravity. Groundwater material, material types, and triggering mechanisms are three important factors that determine mass waste. The four different kinds of mass waste are drops, rockslides, trash flow, and earthflow.

There are three basic causes of mass waste. The mere existence of fluid, for example, works as a form of grease to facilitate mobility. The natural materials valley is the force that causes gravity to influence downslope motion. The final process is seismic activity, which triggers mass garbage transport.

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The complete question is-

Geologists distinguish among types of mass wasting events based on four features. Select four from the list below.

A. The type of material involved (rock or regolith)

B. The environment in which the movement takes place (subaerial or submarine)

C. The part of the world (southern or northern hemisphere) in which the events occur

D. The cost associated with destruction

E. The type of rock (hard or soft) that is involved

F. The velocity of movement (slow, intermediate, or fast)

G. The character of the moving mass (coherent or chaotic, wet or dry)

Geologists distinguish among types of mass-wasting events based on four features, which include:

1. Material: This refers to the type of earth material involved in the mass-wasting event, such as rock, soil, or a mixture of both. Identifying the material helps geologists understand the possible causes and impacts of the event.

2. Movement type: Mass-wasting events can involve different types of movement, such as falls, slides, flows, or creep. Recognizing the movement type helps geologists predict the behavior and potential consequences of the mass-wasting event.

3. Rate of movement: The speed at which the mass-wasting event occurs is another important feature. Rates can range from very slow (e.g., creep) to extremely rapid (e.g., rockfall). Understanding the rate of movement helps geologists assess the urgency of the situation and the potential risk to people and infrastructure.

4. Triggering factors: Geologists also consider the factors that initiate mass-wasting events, such as earthquakes, heavy rainfall, or human activities like deforestation or construction. Identifying the triggering factors helps geologists develop strategies to prevent or mitigate future mass-wasting events.

These four features—material, movement type, rate of movement, and triggering factors—allow geologists to distinguish among different types of mass-wasting events and better understand their causes and potential impacts.

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Volcanologists have estimated that about ______ people have died by volcanic activity in the past 500 years.

Answers

Volcanologists have estimated that about 275,000 people have died by volcanic activity in the past 500 years. This number includes both direct and indirect deaths caused by volcanic eruptions.

Direct deaths are those caused by the physical effects of the eruption, such as lava flows, pyroclastic flows, and ash fall. Indirect deaths are caused by secondary effects such as famine, disease outbreaks, and mudflows triggered by volcanic activity.

The number of deaths caused by volcanic eruptions varies greatly depending on the severity and location of the eruption. Some of the deadliest volcanic eruptions in history include the eruption of Mount Tambora in Indonesia in 1815, which killed an estimated 71,000 people, and the eruption of Mount Pelée in Martinique in 1902, which killed approximately 30,000 people.

In recent years, advances in technology and monitoring systems have allowed volcanologists to better predict and prepare for volcanic activity, potentially reducing the number of fatalities. However, volcanic eruptions remain a serious threat to communities living in close proximity to active volcanoes. It is important for governments and local authorities to have effective evacuation plans in place and for individuals to be aware of the risks and take necessary precautions.

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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 one of the following statements is TRUE?a. Sediment flow increases in the warm water flowing out of a hydropower reservoir.b. Variations in water released from hydropower facilities generally matches the natural flow in the affected rivers.c. Hydropower accounts for more than half of all renewable energy use.d. The construction and use of dams for hydropower produces no greenhouse gases.

Answers

Option c. "Hydropower accounts for more than half of all renewable energy use" is true.

Hydropower is a renewable energy source that harnesses the power of flowing water to generate electricity. It is one of the oldest and most widely used forms of renewable energy, and accounts for more than half of all renewable energy use globally.

Hydropower facilities use the natural flow of rivers and streams to turn turbines and generate electricity, with no direct emissions of greenhouse gases. However, the construction and use of dams can have environmental impacts, including habitat destruction, altered river flows, and changes in water temperature and quality.

In addition, variations in water released from hydropower facilities may not always match the natural flow in the affected rivers, which can have negative impacts on aquatic ecosystems and downstream communities.

The correct answer is option c.

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proximity to inputs can be beneficial to manufacturers when:
a. access to consumers is made difficult by remote locations.
b. other site factors are more expensive than previously thought.
c. access to markets is threatened by dangerous weather conditions.
d. their raw materials are more expensive to transport than their products
e. their products are more expensive to transport than their raw materials.

Answers

Proximity to inputs can be beneficial to manufacturers when:

a. access to consumers is made difficult by remote locations.

Benefit of being close to input to manufacturers

Manufacturers can benefit from being close to their inputs, such as raw materials, when transporting these inputs carries a higher cost than delivering finished products.

Transportation costs form a significant portion of the total production expenses for manufacturers. The location of raw materials close to the manufacturing unit reduces transportation costs and results in lower overall prices and greater profitability.

In contrast, if raw materials are located far from manufacturing sites and freight charges run high, substantial expenses could be added to the production process.

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A detrital sedimentary rock can be radiometrically dated because the clasts formed at the same time as the rock. T/F

Answers

False. A detrital sedimentary rock cannot be accurately radiometrically dated because the clasts formed at different times from the rock itself. Detrital sedimentary rocks consist of clasts, or fragments of pre-existing rocks and minerals, which have been transported and deposited by processes like erosion, weathering, and sedimentation.

These clasts can have various origins and ages, making it difficult to determine the age of the entire rock using radiometric dating techniques. Radiometric dating is a method that relies on the decay of radioactive isotopes within minerals, providing a precise measurement of the time elapsed since the formation of the mineral. In detrital sedimentary rocks, the age obtained through radiometric dating would correspond to the formation age of the individual clasts rather than the rock as a whole.
To accurately determine the age of a sedimentary rock, geologists often use techniques like biostratigraphy, which relies on the study of fossils within the rock layers, or the dating of volcanic ash layers found in association with the sedimentary rock. These methods provide more reliable information about the age of the sedimentary rock, as they focus on elements directly related to the rock's formation and deposition rather than the ages of individual clasts.

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earthquakes occur on convergent and transform plate boundaries, but do not occur on divergent plate boundaries. group of answer choices true or false

Answers

Answer:

False. Earthquakes do occur on divergent plate boundaries, as well as on convergent and transform plate boundaries.

Explanation:

This statement "earthquakes occur on convergent and transform plate boundaries, but do not occur on divergent plate boundaries" is false.

Earthquakes can and do occur at divergent plate boundaries, where two tectonic plates are moving away from each other. At these boundaries, the plates are still in motion and can cause stress and friction, which can lead to earthquakes.

However, the earthquakes that occur at divergent boundaries tend to be less intense than those at convergent and transform boundaries. The majority of earthquakes that occur on divergent boundaries are relatively small, shallow, and may not be felt by humans.

In contrast, convergent and transform plate boundaries often produce more powerful earthquakes.

At a convergent boundary, where two plates are moving towards each other, one plate may be forced beneath the other, creating a subduction zone and generating large earthquakes. At a transform boundary, where two plates are moving past each other horizontally, earthquakes can occur due to the friction and stress caused by the plates' motion.

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Which ocean is associated with most tsunamis?
A) Pacific Ocean
B) Arctic Ocean
C) Indian Ocean
D) Atlantic Ocean

Answers

The Pacific Ocean is associated with most tsunamis.

The Pacific Ocean is commonly known as the "Ring of Fire" due to the presence of numerous underwater earthquakes and active volcanoes. This region is responsible for producing most of the world's tsunamis, as earthquakes and volcanic eruptions can generate powerful ocean waves that can travel thousands of miles across the ocean before reaching land.

In recent history, some of the most devastating tsunamis have occurred in the Pacific Ocean, including the 2004 Indian Ocean tsunami, the 2011 Tohoku earthquake and tsunami in Japan, and the 2018 Sulawesi earthquake and tsunami in Indonesia.

While tsunamis can occur in other oceans as well, the Pacific Ocean remains the most susceptible due to its high seismic activity.

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use a protractor to measure qrs also tel whether the angle is acute obtuse or right angle

Answers

To measure an angle using a protractor, one must follow these steps: Placing the protractor on the angle, with the base of the protractor aligned with one of the angle's sides and the center point of the protractor aligned with the vertex, the angle measurement from the protractor's scale is done.

An angle is formed when two rays or lines intersect at a common endpoint, known as the vertex. To measure an angle using a protractor, the protractor is placed on the angle with one of its sides aligned with one of the sides of the angle. The vertex of the angle should be located at the center of the protractor. The measurement of the angle is then read from the scale on the protractor. The measurement of the angle can be classified as acute, obtuse, or right, depending on its degree.

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A motionless mass of ice and snow is called a(n) __________.

Answers

Answer:

snowfield

Explanation:

Snowfields are formed when ice and snow accumulate above the snow line.

1. Name the three types of rock contacts, and describe how you would distinguish among them on a geologic map.2. How might topography affect the appearance of a geologic map?3. How would you distinguish between a normal fault and a reverse fault based upon the surficial exposure of geologic rock formations (of known ages)?4. True or False? Anticlines have the youngest beds located in the center of the fold.

Answers

1. The three types of rock contacts are: Unconformity- a contact between two rock units where the upper unit is younger than the lower unit, and there is evidence of erosion or non-deposition between the two units. On a geologic map, an unconformity is represented by a wavy line with short perpendicular lines drawn across it.

Fault- a contact between two rock units where there has been displacement along the contact. On a geologic map, a fault is represented by a straight line with lines drawn perpendicular to it indicating the direction of displacement. Intrusion- a contact between an igneous rock unit and a surrounding rock unit where the igneous rock has been injected into the surrounding rock. On a geologic map, an intrusion is represented by a dotted or dashed line enclosing the area of the intrusion.

2. Topography can affect the appearance of a geologic map by influencing the visibility and accessibility of rock exposures. Steep slopes and deep valleys can make it difficult to identify and map rock units, while gently sloping terrain may provide better exposure and easier access for mapping.

3. A normal fault occurs when the hanging wall moves down relative to the footwall, while a reverse fault occurs when the hanging wall moves up relative to the footwall. Based on the surficial exposure of geologic rock formations (of known ages), a normal fault will have older rocks on the footwall side and younger rocks on the hanging wall side, while a reverse fault will have younger rocks on the footwall side and older rocks on the hanging wall side.

4. False. Anticlines have the oldest beds located in the center of the fold, while synclines have the youngest beds located in the center of the fold.

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The average rate of movement of the North American Plate and the Pacific Plate is around 2 inches per year near this fault. Which of the statements below explains how this movement is seen along the San Andreas Fault?
- Displacement events can be much greater than 2 inches
- Different locations of the fault are displaced at different times
- Displacement along the fault occurs sporadically, sometimes with many years between each displacement event

Answers

All of the statements are true and contribute to how movement is seen along the San Andreas Fault.

The average rate of movement of the North American Plate and the Pacific Plate is around 2 inches per year near the San Andreas Fault. However, displacement events can be much greater than 2 inches, as the plates build up stress over time until they suddenly slip, causing earthquakes. These earthquakes can result in displacement events of several feet or more. Different locations of the fault are displaced at different times, which also contributes to how movement is seen along the San Andreas Fault. The fault is not a single, continuous crack in the Earth's crust, but rather a complex network of faults and fractures. When a displacement event occurs, it typically involves only a portion of the fault, rather than the entire fault length.

Finally, displacement along the fault occurs sporadically, sometimes with many years between each displacement event. This means that while the average rate of movement may be 2 inches per year, this movement is not continuous or uniform over time. Instead, the plates may remain locked in place for years or even decades, until the stress builds up enough to cause a sudden displacement event.

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Arthur Mackmurdo's swirling design for this title page from Wren's City Churches is commonly referred to as the first ____________.

Answers

Arthur Mackmurdo's swirling design for the title page of Wren's City Churches is commonly referred to as the first "Art Nouveau" design. Art Nouveau was an artistic movement that emerged in the late 19th and early 20th centuries. It is characterized by its use of flowing, organic lines and natural forms, often inspired by plants and other elements found in nature.

Arthur Mackmurdo's swirling design for the title page of Wren's City Churches, featuring stylized plant-like motifs, is considered one of the earliest examples of this influential style. The Art Nouveau style was characterized by its flowing, organic forms, inspired by natural shapes such as flowers, leaves, and vines. It was also known for its intricate, detailed designs and use of new materials and techniques such as cast iron, stained glass, and curved lines. The style was particularly popular in architecture, graphic design, and decorative arts, and had a significant impact on the development of modern design.

Mackmurdo's design for the title page of Wren's City Churches, which was published in 1883, is considered to be one of the earliest examples of Art Nouveau design. Its swirling lines, intricate details, and use of asymmetry and negative space are all hallmarks of the style. Mackmurdo went on to become one of the leading proponents of the Arts and Crafts movement, which shared many of the same ideals and principles as Art Nouveau. In summary, Arthur Mackmurdo's swirling design for the title page of Wren's City Churches is commonly referred to as the first Art Nouveau design, and it played an important role in the development and popularization of this influential style.

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Ultimately, the growing bulge on the side of Mount St. Helens failed because ______.

Answers

The growing bulge on the side of Mount St. Helens failed because the pressure of the magma beneath the surface became too great for the rock to contain.

As magma continued to rise and accumulate beneath the surface, the pressure built up, causing the bulge to grow larger and larger. Eventually, the rock could no longer withstand the pressure, and the bulge failed in a massive landslide and eruption in 1980. Scientists had been monitoring the bulge for several weeks leading up to the eruption, and they recognized the potential danger. However, they were unable to predict the exact timing or magnitude of the eruption. The catastrophic event resulted in the loss of many lives and caused extensive damage to the surrounding area. Since the eruption, Mount St. Helens has become an important site for research on volcanic activity and the processes of ecological recovery after a disaster. The event also served as a reminder of the importance of monitoring and studying active volcanoes in order to better understand and prepare for potential disasters.

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One major hazard in the area surrounding Mount Rainier is the risk of future deposition of ______, which may occur in the path of previous deposits that are rapidly being developed.

Answers

One major hazard in the area surrounding Mount Rainier is the risk of future deposition of volcanic ash, which may occur in the path of previous deposits that are rapidly being developed. The volcano has a long history of explosive eruptions that have resulted in the formation of large ash deposits.

These deposits can pose a significant threat to human life, infrastructure, and the environment, as they can cause respiratory problems, damage buildings and roads, and disrupt ecosystems.The rapid development of the region surrounding Mount Rainier increases the potential for exposure to volcanic hazards. As more people move into the area, more infrastructure is built, and more land is developed, the risk of being impacted by volcanic ash increases. This is because the deposition of ash can result in disruptions to transportation, communication, and other critical infrastructure, which can have far-reaching economic and social consequences.To mitigate the risks associated with future deposition of volcanic ash, it is essential to have effective hazard management strategies in place. This includes monitoring the volcano, conducting regular risk assessments, developing emergency plans, and communicating hazards and risks to the public. By taking these steps, we can reduce the impact of future volcanic eruptions and ensure that communities in the area surrounding Mount Rainier are prepared for any potential hazards.

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Following the failure of the Mount St. Helens bulge, a series of ____ and debris flows formed from a mix of rock and water derived from melting snow. They continued to form for hours after the eruption began. (Enter only one word per blank.)

Answers

Following the failure of the Mount St. Helens bulge, a series of lahars and debris flows formed from a mix of rock and water derived from melting snow. They continued to form for hours after the eruption began.

Following the failure of the Mount St. Helens bulge, a series of lahars and debris flows formed from a mix of rock and water derived from melting snow. They continued to form for hours after the eruption began. The lahars and debris flows were a result of the collapse of the unstable bulge on the north flank of the volcano, which caused a massive landslide that sent rock, ice, and snow hurtling down the mountainside. This triggered a chain reaction that melted the snow and ice, causing a slurry of ash, rock, and water to flow down the valleys surrounding the volcano. The lahars and debris flows were so powerful that they traveled at speeds of up to 90 miles per hour and reached as far as 50 miles from the volcano. They caused extensive damage to buildings, bridges, and roads, and resulted in the loss of many lives. The lahars and debris flows also deposited huge amounts of sediment into the nearby rivers and streams, altering the landscape for decades to come.

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Which of these is a type of seismic body wave?
A. Shear/secondary waves
B. Love waves
C. Rayleigh waves
D. Rotational waves

Answers

type of seismic body wave is Shear/secondary waves

Seismic body waves are waves of energy that propagate through the earth's interior during an earthquake. They are of two types - primary (P) waves and secondary (S) waves. P waves are longitudinal waves that travel faster than S waves, and can travel through solid, liquid, and gas. S waves, also known as shear waves, are transverse waves that travel through solid material only. They are slower than P waves and arrive after them during an earthquake.

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In 1991, about 400 ______ events were observed prior to the eruption of Mount Pinatubo. In hindsight, it appears the frequency of these events could have been used to predict the volcanic eruption.

Answers

In 1991, about 400 seismic events were observed prior to the eruption of Mount Pinatubo. These events were caused by the movement of magma and gases beneath the volcano, which eventually led to the eruption.

It appears that the frequency of these events could have been used to predict the volcanic eruption. The increase in the number of seismic events indicated that the volcano was becoming more active, and this could have been used as a warning sign.

There were limited resources available to monitor the volcano, and the significance of these events was not fully understood. Today, with the advancements in technology and the understanding of volcanic activity, it is possible to monitor volcanoes more effectively and use the data to predict eruptions with greater accuracy.

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Objects in our solar system, including planets and their moons, stay in orbit because
of gravity and inertia. Draw a model to show how each factor contributes to the
orbits of a planet and a moon orbiting that planet. Include the following in your
model:
I
• Labeled arrows to represent gravity and inertia
. The paths the planet and the moon take during their orbits
A brief summary of your model

Answers

This model displays the planet and its satellite as rotating around the sun, with arrows labeled "gravity" demonstrating the power of gravitational attraction exerted by the latter on the previous pair.

So what is being represented?

In general sense, the arrows marked “inertia” depict the momentum that keeps the planet and moon in orbit - or moving near the star - after they have been propelled once. Moreover, the path of planet is depicted as a bigger, circular-shaped orbit, while the moon's trajectory appears as a smaller, elliptical shape.

The bottom line is that gravity pulls upon the planet and its natural satellite to protract them around the illumination source; inertia then maintains their motion along the shown paths. As a result, the force of gravity is relatively substantial on the planet; due to this solid attraction, the orbit of the first one is bigger and rounder. On the other hand, the moon's circuit is smaller and longer due to its weaker gravitational effect.

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How many people are in the earth?

Answers

Answer:

8 Billion People

Explanation:

As of 2022, the estimated global population is approximately 7.9 billion people. This is a significant increase from just 100 years ago, when the world population was estimated to be around 1.8 billion people.

The global population has been steadily increasing over time due to a combination of factors, including advances in healthcare and medicine, improved living conditions, and changes in cultural and societal norms.

It's important to note that population estimates are not exact, as there is always some level of uncertainty and variation in the data. The UN's population estimates are based on number of assumptions and projections about future trends in fertility and migration, other factors.

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What do stalactites and stalagmites look like?

Answers

Stalactites and stalagmites are mineral formations that are commonly found in caves. Stalactites are formed from the ceiling of the cave and appear as tapered, icicle-like structures hanging down.

Stalagmites are formed on the floor of the cave and appear as upward-growing mounds or columns. Together, stalactites and stalagmites can form pillars in caves. They are typically made of minerals such as calcite, aragonite, and gypsum, which are deposited over long periods of time by dripping water. They are often found in limestone caves and are created by the slow dripping of mineral-rich water. Over time, the accumulation of these minerals creates the unique formations that are commonly associated with underground caves.

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m31 (the andromeda galaxy) is another spiral galaxy like m101. what is different about our view of m31 that makes it look so different from m101

Answers

M31, also known as the Andromeda Galaxy, is similar to M101 as they are both spiral galaxies.

However, there are several differences that make them look different from each other. One of the main differences is their distance from us.

M31 is much closer to our Milky Way galaxy than M101, making it appear much larger and brighter in our view.

Additionally, M31 is viewed at an angle that allows us to see its spiral structure more clearly, while M101 is viewed at a more oblique angle, making its spiral structure less visible.

Lastly, the composition of the galaxies also plays a role in their appearance, as they may have different amounts of dust, gas, and stars that contribute to their color and brightness.

Overall, the different distances, viewing angles, and compositions of M31 and M101 all contribute to their unique appearances in our view.

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What minerals crystallize first out of a melt, as magma cools?

Answers

This process is described by Bowen's Reaction Series, which categorizes minerals into two branches: the discontinuous and continuous series.

In the discontinuous series, minerals with high melting points crystallize first, starting with olivine, followed by pyroxene, amphibole, and finally biotite. These minerals are rich in iron and magnesium, which makes them dense and dark in color.Hi! When magma cools, the minerals that crystallize first are those with the highest melting points. In the continuous series, plagioclase feldspar crystallizes at a range of temperatures, evolving in composition from calcium-rich to sodium-rich as the magma cools. This results in a continuous series of mineral compositions.In summary, the minerals that crystallize first out of a melt as magma cools are olivine and calcium-rich plagioclase feldspar. These minerals have high melting points, and their formation is guided by Bowen's Reaction Series.

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What is a magma chamber called after the Coduit has solicited and been exposed where by erosion?

Answers

When a conduit has been exposed by erosion and the magma has been depleted from the chamber, it is typically called a volcanic neck or a volcanic plug. This is because the hardened magma within the conduit is resistant to erosion, leaving behind a column of rock that may stand out from the surrounding landscape.

Over time, weathering and erosion can wear away the surrounding rock, leaving only the volcanic neck or plug behind. These features can provide important clues about the history of volcanic activity in a particular area, and they may also be associated with other features such as lava flows or volcanic vents.

Overall, volcanic necks and plugs are just one of the many fascinating and complex features associated with the movement and behavior of magma deep within the Earth's crust.

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A rock that contains a metal or economically useful mineral is called a(n) ___________.

Answers

The rock that contains a metal or economically useful mineral is called an ore. Ores are formed through various geological processes, including hydrothermal activity, sedimentation, and volcanic activity.

These processes can result in the concentration of minerals within a rock, making it economically viable to extract the valuable mineral. It is essential to note that not all rocks contain minerals that are economically useful. Some rocks may have minerals that have no value, while others may have minerals that are not yet discovered. Moreover, the presence of an ore deposit does not necessarily mean that the mineral is easy to extract. Mining and extraction of valuable minerals from ores can be a complex process that requires significant resources and expertise. In conclusion, the term ore refers to rocks that contain economically valuable minerals. Understanding the formation and characteristics of ores is crucial in the exploration, extraction, and processing of these minerals.

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3. Find information about storm surges. What are they?
Why are the people of Bangladesh at risk during
storm surges?

Answers


3. Find information about storm surges. What are they?
Why are the people of Bangladesh at risk during
storm surges?

which of the following statements about deserts is false? which of the following statements about deserts is false? deserts may experience cool or even freezing conditions. temperate deserts are found far inland or in rain shadows of mountains. the major characteristic of deserts is low precipitation. more deserts are found in the southern hemisphere than in the northern hemisphere. tropical deserts are influenced by the climatic patterns that result to the north and south of the intertropical convergence zone.

Answers

The statement that C: "More deserts are found in the southern hemisphere than in the northern hemisphere" is false.

In fact, more deserts are found in the northern hemisphere than in the southern hemisphere. Some of the largest deserts in the world, such as the Sahara and the Arabian Desert, are located in the northern hemisphere. The other statements are true. Deserts can experience cool or freezing conditions, temperate deserts are found inland or in rain shadows, low precipitation is a major characteristic of deserts, and tropical deserts are influenced by climatic patterns to the north and south of the intertropical convergence zone.

Option C is answer.

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are the southern portions of the unites states are more susceptible to severe weather outbreaks during la nina.
true or false

Answers

The given statement "are the southern portions of the unites states are more susceptible to severe weather outbreaks during la nina" is true.

It is generally true that the southern portions of the United States are more susceptible to severe weather outbreaks during La Niña conditions.

La Niña is a climatic phenomenon that occurs when cooler-than-average sea surface temperatures develop in the central and eastern tropical Pacific Ocean, which can influence weather patterns around the world.

During La Niña, the southern U.S. tends to experience drier and warmer conditions than usual, which can create an environment that is more conducive to the development of severe thunderstorms, tornadoes, and other types of extreme weather.

However, it is important to note that weather patterns can vary from year to year and other factors, such as atmospheric conditions, can also influence severe weather outbreaks.

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