the destructive power of a tsunami is due mostly to the great height of the wave. true or false

Answers

Answer 1

The statement "the destructive power of a tsunami is due mostly to the great height of the wave" is true.

The destructive power of a tsunami primarily stems from its great wave height, known as the amplitude. When a tsunami approaches the shoreline, its height increases due to a decrease in water depth, resulting in what's called "wave shoaling."

This process amplifies the wave's energy and destructive potential. Moreover, tsunamis typically have long wavelengths, which means they can maintain their energy over vast distances, further contributing to their devastating impact.

Additionally, tsunamis can cause powerful currents, flooding, and coastal erosion, destroying infrastructure and posing significant threats to life and property.

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which would most likely be the primary energy source to power large cities of fossil fuels were depleted?

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If fossil fuels were to be depleted, the primary energy source to power large cities would most likely shift towards renewable energy sources such as solar, wind, and hydro power.

These energy sources have the potential to provide a significant amount of power without producing harmful emissions that contribute to climate change and air pollution. While renewable energy sources are still in the process of development, they have already begun to play an increasingly important role in powering cities across the globe. Governments and private organizations are investing in research and development to make renewable energy sources more efficient and cost-effective.

It is important to note that the transition towards renewable energy sources will not happen overnight and requires a significant amount of investment and effort to make it feasible. Nevertheless, with the current rate of technological advancement and increasing public demand for sustainable energy solutions, the future of energy production looks bright.

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according to the diagram below, which sediment sample has traveled the shortest distance and why?

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According to the diagram, the sediment sample that has traveled the shortest distance is sample B.

This is because it is the closest to the source of the sediment, which is shown as the mountain in the diagram. The sediment that is closest to the source is usually the least weathered and eroded, and therefore travels the shortest distance before settling. In general, sediment that is further away from the source has undergone more weathering and erosion, which causes it to become smaller and more rounded. This process also makes the sediment lighter, allowing it to be transported further by water or wind. It is important to note that the distance traveled by sediment can be influenced by a variety of factors, including the slope of the terrain, the strength of the wind or water currents, and the size and shape of the sediment particles. However, in this particular diagram, the distance traveled by the sediment is primarily determined by the proximity to the source.

Overall, understanding the factors that influence sediment transport can help us better understand the geological processes that shape our planet's surface.

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the unfao has demonstrated that forest loss has slowed but ________.

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The UNFAO (United Nations Food and Agriculture Organization) has indeed demonstrated that forest loss has slowed down in recent years. However, this positive trend is still not enough to fully address the problem of deforestation and its negative impacts on the environment and society.

According to the latest Global Forest Resources Assessment (FRA) report released by the UNFAO in 2020, the world's total forest area was about 4.06 billion hectares, or 31% of the global land area. While this is a slight increase from the previous FRA report in 2015, which reported 4.01 billion hectares of forest cover, it is still significantly lower than the original baseline of 4.46 billion hectares in 1990.Moreover, the FRA report also reveals that the rate of forest loss has decreased over the past decade, from 7.8 million hectares per year in the 1990s to 4.7 million hectares per year between 2010 and 2020. This is largely due to various efforts and initiatives aimed at reducing deforestation and promoting sustainable forest management, such as forest conservation and restoration, certification schemes, and community-based forestry.Therefore, while the UNFAO's data shows that forest loss has slowed down, it is clear that more needs to be done to protect and restore the world's forests. This requires a multi-faceted approach that involves addressing the root causes of deforestation and promoting sustainable forest management, while also supporting the livelihoods and rights of local communities who depend on forests.

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Horizontal winds ______ parallel the height contours at the 500-mb level.
A. never
B. sometimes
C. generally

Answers

Hi, there! :)

Answer: C. Generally, horizontal winds parallel the height contours at the 500-mb level.

This is due to the fact that the height contours on a constant pressure chart (such as the 500-mb level) represent lines of constant pressure, and the wind flows perpendicular to the pressure gradient.

Therefore, the horizontal wind generally flows parallel to the height contours at the 500-mb level. However, there may be some variation and curvature in the wind direction due to other factors such as the Coriolis effect and friction with the Earth's surface.

Hope that helps! Good luck! ^_^

The horizontal winds generally parallel the height contours at the 500-mb level.

This is due to the fact that winds tend to flow from areas of high pressure to areas of low pressure, and the height contours at the 500-mb level are often associated with areas of relatively high and low pressure. However, there can be exceptions to this rule, as factors such as temperature gradients and jet streams can also influence wind patterns at this level.

Overall, a long answer to your question would involve a more in-depth discussion of the various factors that can affect horizontal winds at the 500-mb level and the ways in which these winds can impact weather patterns and climate trends.

Horizontal winds generally parallel the height contours at the 500-mb level. This is because the winds aloft are primarily driven by the pressure gradient force and the Coriolis effect, which causes the wind to flow along the height contours rather than across them.

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how csn droughts be triggered by : human activities​

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Deforestation – plants and trees release water into the atmosphere, which creates clouds and then rain. Bad agricultural practices like intense farming not only contribute to deforestation in the first instance but also affect the absorbency of the soil, meaning it dries out much quicker.

What cause impact of human activities on rivers​

Answers

Answer:Pollution Pollution is difficult to control because it is often the result of human infrastructure around a river. Pollution enters the river, sometimes in small amounts, at many different locations along the length of the river. Common sources of pollution come from rural and urban areas. ...

Flow modifications Dams alter the flow, temperature and sediment in river systems.

Exotic species

Harvesting

Explanation:

Making better ________ is the best way to try to prevent earthquake damage.
a. seismometers
b. magnitude scales
c. buildings
d. seismograms

Answers

Making better structures is the best way to try to prevent earthquake damage. Seismograms are records of ground motion generated by an earthquake, and while they are important tools for studying earthquakes and predicting their effects, they do not prevent damage from occurring.

To reduce the impact of earthquakes on buildings and other structures, it is important to design and construct them to withstand the forces generated by seismic activity. This can involve using materials that are more resilient to shaking, reinforcing structural elements to resist deformation, and creating foundation systems that can absorb and dissipate the energy of an earthquake.

Retrofitting existing buildings to improve their seismic performance can also be effective in reducing damage. Ultimately, making better structures is the most effective way to mitigate the risks posed by earthquakes and protect lives and property from the devastating effects of seismic activity.

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the region of the central great lakes in north america is generally within which koppen climate classification?

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The region of the central Great Lakes in North America is generally within the Koppen climate classification of Humid Continental (Dfb). This climate is characterized by large seasonal temperature differences, with cold winters and warm summers.

The Great Lakes region is located in North America, specifically in the northeastern part of the United States and southeastern part of Canada, this region is generally characterized by large seasonal temperature differences, with cold winters and warm summers. This climate is classified as Humid Continental (Dfb) by the Koppen climate classification system. This climate is characterized by large seasonal temperature differences, with cold winters and warm summers. The Great Lakes region is known for its heavy snowfall in the winter and thunderstorms in the summer, and can experience temperatures ranging from -40°F to 100°F.  

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The seasonal shift that occurs in the Inter-Tropical Convergence Zone is greatest: a. over the Pacific b. over oceans c. over continents

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The seasonal shift in the Inter-Tropical Convergence Zone (ITCZ) is greatest c. over the continents.

The ITCZ is a region near the equator where the trade winds from the northern and southern hemispheres converge, resulting in a band of low pressure and a high amount of rainfall. This region experiences seasonal shifts in its location, with its maximum extent occurring during the summer months of each hemisphere.
The shift in the ITCZ is driven by changes in the amount of solar radiation received by the Earth's surface due to the tilt of the planet's axis and its orbit around the sun. The continents, which have a greater capacity to absorb and radiate heat than the oceans, experience larger temperature fluctuations and greater variations in the amount of solar radiation they receive. This leads to stronger seasonal shifts in the ITCZ over land masses compared to over the oceans.
Furthermore, the ITCZ tends to follow the location of the warmest water in the oceans, which typically occurs over the western Pacific Ocean. However, this does not necessarily mean that the seasonal shift is greatest over the Pacific. Instead, the greatest seasonal shift in the ITCZ occurs over the continents due to the complex interactions between land surface processes and the atmosphere.

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On a surface weather map where isobars are closely spaced, the pressure gradient is relatively _____ and winds are relatively _____.A) steep ... strongB) weak ... strongC) steep ... weakD) weak ... weak

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On a surface weather map where isobars are closely spaced, the pressure gradient is relatively steep and winds are relatively strong. The correct answer is option A.

When isobars are closely spaced on a surface weather map, it indicates a steep pressure gradient, meaning that there is a significant difference in pressure over a short distance. This creates strong winds as air moves from high to low pressure, trying to balance out the difference. It can be explained that isobars on a weather map represent areas of equal atmospheric pressure. When isobars are closer together, it indicates a more rapid change in pressure over a short distance, indicating a steep pressure gradient. The steeper the gradient, the stronger the winds will be. Conversely, when isobars are spaced farther apart, the pressure gradient is more gradual, leading to weaker winds. These changes in pressure gradient can have significant effects on weather patterns and can help predict the movement and intensity of storms.

Therefore option "A" is correct.

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Select the FALSE statement about the benefits and impacts of dams from those listed below.a. A dam can create new ecosystems, which increase biodiversity.b. A dam can provide a means of irrigation to a region with poor or unpredictable rainfall.c. A dam can provide hydroelectric power, which is environmentally safer than burning fossil fuels.d. A dam can provide a dependable water supply for urban or industrial use.

Answers

Answer:

The false statement is "A dam can create new ecosystems, which increase biodiversity".

Explanation:

The dams do not provide any niche or place for an ecosystem , has it takes up more land which before constructing a dam would have been a niche for an ecosystem, like terrestrial or land. This destroys homes for many species of organisms and a lot of trees would have been cut down to store up water in the dam. Thus, it causes more destruction to the animals and birds.

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Explanation:

The FALSE statement is A. A dam can create new ecosystems, which increase biodiversity.

While it is true that dams can provide numerous benefits, including providing a means of irrigation, hydroelectric power, and a dependable water supply for urban or industrial use, it is not true that dams can create new ecosystems that increase biodiversity. In fact, dams can have significant negative impacts on existing ecosystems and can cause significant habitat loss and fragmentation, leading to declines in biodiversity. Dams can alter river flows, water temperature, sediment transport, and nutrient cycling, all of which can have negative effects on aquatic and terrestrial ecosystems.

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Seen from the northern latitudes, the star Polaris
a. is never above the horizon during the day.
b. always sets directly in the west.
c. is always above the northern horizon.
d. is never visible during the winter.
e. is the brightest star in the sky.

Answers

Seen from the northern latitudes, the star Polaris is always above the northern horizon.

This is because Polaris is located very close to the north celestial pole, which is the point in the sky around which all other stars appear to rotate due to the Earth's rotation. Because of its proximity to the north celestial pole, Polaris appears to remain stationary in the sky while all other stars appear to move around it in a circular motion. As a result, from the northern latitudes, Polaris remains above the horizon all day and all night, and its position in the sky can be used as a reference point for navigation. Polaris is not always the brightest star in the sky, but it is relatively bright and easy to locate, making it a useful tool for finding one's bearings in the northern hemisphere.

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Which wind condition would be most critical when taxiing a nosewheel equipped high-wing airplane?
A. Quartering headwind.
B. Direct crosswind.
C. Quartering tailwind.

Answers

The correct answer is: C. Quartering tailwind.

The most critical wind condition when taxiing a nosewheel-equipped high-wing airplane is a quartering tailwind.

A quartering tailwind is a combination of a crosswind and a tailwind, which can affect the stability of the airplane during taxiing. High-wing airplanes have their wings located above the fuselage, which causes the aircraft to be more susceptible to the effects of wind while on the ground.

In a direct crosswind, the airplane may experience some lateral movement, but the main force is perpendicular to the direction of taxiing, which can be managed with proper control inputs. However, in a quartering tailwind, not only does the crosswind component push the airplane laterally, but the tailwind component also pushes the airplane from behind, making it more challenging to maintain directional control.

This combination of forces can lift the nosewheel off the ground and potentially cause the airplane to weathervane into the wind. Weathering occurs when the airplane pivots around its main landing gear, pointing the nose into the wind, which can be hazardous during taxiing.

To counteract these effects, pilots should use proper control inputs, such as holding the control wheel or yoke into the wind and applying appropriate rudder and brake inputs to maintain directional control. By being aware of the potential hazards associated with a quartering tailwind, pilots can take necessary precautions to ensure a safe taxiing experience in a nosewheel-equipped high-wing airplane.

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if lithospheric mantle is partially melted, what is the most likely composition of the resulting magma?

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If the lithospheric mantle is partially melted, the most likely composition of the resulting magma is a silica-undersaturated magma, which would have a higher concentration of iron and magnesium compared to an unmelted mantle.

This is because the partial melting process would cause the release of partial melting components (such as alkali elements and water) from the mantle, leading to a more enriched magma composition. However, the exact composition of the resulting magma would depend on various factors such as the degree of partial melting, the initial composition of the mantle, and any additional materials that may be involved in the process.  

The lithospheric mantle is a layer of the Earth's mantle that lies beneath the crust. It is the layer that makes up the majority of the mantle, and is located beneath the rigid, outer layer of the Earth known as the lithosphere. The lithospheric mantle is a viscous, solid rock that is composed of a mixture of minerals, including olivine, pyroxene, and amphibole. It is estimated to make up about 84% of the Earth's total mass, and is thought to have a temperature of around 550-750°C.

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If the sun appears higher at noon, will it spend more or less time in the sky during the day? Will there be more or fewer daylight hours? How do think that will affect the sun's ability to transfer energy to heat Earth's surface? Does your thinking match typical seasonal temperature changes?

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In case the sun appears up higher at  noon  it will spend less time inside the sky in the midst of the day, and there will be less daylight hours.

Will there be more or fewer daylight hours?

Ordinarily since the clear height of the sun at noon is related to the point at which sunshine comes to the Earth's surface. When the sun is higher inside the sky, its light strikes the Soil more particularly, and the shadows cast by objects are shorter. This infers that the sun is closer to being particularly overhead, and in this way, the day is shorter.

The sun's ability to  transfer energy to warm the Earth's surface depends on the sum of time it is within the sky and the point at which its beams strike the Earth's surface. When the sun is higher within the sky, its beams are more concentrated and have a shorter separate to travel through the climate some time recently coming to the Earth's surface. This means that more vitality is exchanged to the Earth's surface per unit of time. This impact is most grounded close the equator, where the sun is higher within the sky all through the year.

Ordinary season temperature changes are related to the point at which the sun's beams strike the Earth's surface. Within the Northern Half of the globe, when the sun is lower within the sky amid the winter months, its beams are more spread out and have a longer separate to travel through the environment some time recently coming to the Earth's surface. This implies that less energy is transferred  to the Earth's surface per unit of time, coming about in cooler temperatures.

Hence, when the sun is higher within the sky amid the summer months, more energy is exchanged to the Earth's surface per unit of time, coming about in hotter temperatures.

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what does the s that is sometimes included in the i = pat equation stand for?

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The "s" that is sometimes included in the equation "I = PAT" stands for "sustainability" or "sustainable practices."

The equation "I = PAT" is a formula used in environmental studies and sustainability to analyze the impact of human activities on the environment. It expresses the environmental impact (I) as the product of three factors: population (P), affluence (A), and technology (T).

- Population (P) refers to the size and growth rate of the human population.

- Affluence (A) represents the level of consumption and resource use per person, typically measured by factors such as income, GDP per capita, or resource consumption patterns.

- Technology (T) encompasses the efficiency of resource use, technological advancements, and the environmental impact of production and consumption processes.

The addition of the "s" to the equation, making it "I = PAT + s," acknowledges the importance of sustainable practices and approaches in mitigating and reducing environmental impacts. It recognizes that sustainability measures and considerations, such as renewable energy, waste reduction, conservation, and eco-friendly technologies, can influence and modify the equation's variables.

Including the "s" in the equation emphasizes the need for sustainable solutions and practices to minimize environmental harm and promote a more balanced and sustainable relationship between human activities and the natural world. It highlights the role of sustainable development in addressing environmental challenges and ensuring long-term well-being for both present and future generations.

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(T/F) According to Berry Gordy, Motown artists had to project an image of class and sophistication.

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The correct answer is True. Berry Gordy, the founder of Motown Records, was very particular about the image his artists projected. He believed that in order to appeal to a mainstream audience, Motown artists had to present themselves as classy and sophisticated.

This included not only their musical style but also their appearance and behavior. Gordy wanted his artists to be seen as role models for young people, especially African Americans. He felt that by projecting an image of success and elegance, Motown artists could help to break down racial stereotypes and inspire others to achieve their dreams. To achieve this image, Gordy and his team worked closely with the artists to develop their style and image. They provided them with coaching on everything from how to dress and act to how to speak in interviews.

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what did the 6 meter long beam from the island of samothrace that dated from 400 b.c. demonstrate?

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he 6 meter long beam from the island of Samothrace that dated from 400 B.C.

was a crucial piece of evidence that demonstrated the impressive level of craftsmanship and engineering skills possessed by the ancient Greeks.

The beam was a part of a statue of Nike, the Greek goddess of victory, and was made out of Parian marble, which was a highly valued and expensive material at the time.

The beam was used to support the statue's wings and was carefully carved with intricate details to ensure that it was strong enough to support the weight of the statue.

The fact that the beam has survived for over 2,400 years is a testament to the durability of the materials used and the expertise of the artisans who created it.

The statue of Nike was likely placed on a high pedestal to further enhance its impact and grandeur, and the use of the beam allowed the statue to be placed in an open area where it could be viewed from all angles.

The discovery of the beam and other artifacts from ancient Greek culture continues to fascinate historians and archeologists today, as it provides insight into the incredible level of skill and innovation that existed during this time period.

The beam serves as a tangible reminder of the importance of the arts and sciences in ancient Greek culture, and the enduring legacy that these achievements have had on modern society.

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at the last quarter moon phase, how much of the moon's surface is receiving sunlight?

Answers

At the last quarter moon phase, 50% of the moon's surface is receiving sunlight. This phase occurs when the moon is positioned at a 90-degree angle from the Earth and the sun, causing half of the visible side to be illuminated.

The quarter moon phase, also known as the half moon phase, is a lunar phase that occurs halfway between a new moon and a full moon. During this phase, the moon appears as a semicircle in the sky, with the right half illuminated if it is waxing and the left half illuminated if it is waning. The quarter moon is an important phase for astronomers and astrologers alike, as it provides a clear view of the moon's surface features, such as craters and mountains, while also affecting tides and other natural phenomena on Earth.

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A disease that has a steady frequency over time in a particular geographic locationisA.EpidemicB.EndemicC.PandemicD.SporadicE.Chronic.

Answers

A disease that has a steady frequency over time in a particular geographic location is endemic.

Endemic diseases are those that are regularly found and present in a particular geographic area or population. The frequency of cases may vary over time, but they do not typically cause widespread outbreaks or epidemics. Examples of endemic diseases include malaria in sub-Saharan Africa, dengue fever in Southeast Asia, and Lyme disease in the northeastern United States. In contrast, epidemic diseases are those that occur at a higher than expected frequency or in a larger than expected geographic area, while pandemic diseases are those that spread across multiple countries or continents. Understanding the patterns of disease distribution and frequency is important for public health officials to effectively manage and control outbreaks.

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which of the following must be disclosed by a geographic segment according to u.s. gaap? (I.) Revenue from external customers.
(II.) Total Segment Assets
(III.) Revenues from foreign customers, identified by country. A. I, II, and III
B. I and III only
C. II and III only
D. I and II only
E. There is no requirement of information to disclose for operating segments.

Answers

Revenues from external customers and foreign customers, identified by country must be disclosed by a geographic segment according to U.S. GAAP. The right answer is B.

The Financial Accounting Standards Board in the United States created a set of accounting standards known as generally recognised accounting principles, or GAAP. Before it may be recognised and shown on financial statements, or throughout the process of revenue recognition, revenue must, in accordance with GAAP, meet several requirements. Revenue must first be either realised before revenue may be recognised.

Realised refers to receiving money, whereas realisable refers to receiving a promise to pay. Next, revenue has to be earned, which means that the organisation has to provide a good or service in exchange for the money. Before an organisation may recognise revenues and report them as income on financial accounts, both qualifying requirements must be satisfied.

The correct answer is option B.

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Which landform mesa or butte is in the furthest stage of development

Answers

Answer: Buttes were once part of flat, elevated areas of land known as mesas or plateaus. In fact, the only difference between a mesa and a butte is its size.

Explanation:

The _____ mountains lie in the corridor between the Black and Caspian seas. a. Tien Shan b. Himalayas c. Caucasus d. Rocky

Answers

Answer:

The Caucasus mountains

Explanation:

they septate the black and Caspian season the region where Europe and Asia converge

The (c) Caucasus mountains lie in the corridor between the Black and Caspian seas.

The region includes parts of Russia, Georgia, Armenia, Azerbaijan, and Turkey. The Caucasus mountains are the highest mountains in Europe, with several peaks over 5,000 meters (16,400 feet). They have a rich cultural and historical significance, with many ancient civilizations having flourished in the region.

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Sort the images below into either the intrusive or extrusive categories based on how they cooled.-split rock-penny-lava flow label-man-rocks

Answers

Based on the provided terms, I can help you categorize the images into intrusive or extrusive categories. Intrusive rocks form when magma cools slowly below Earth's surface, while extrusive rocks form when lava cools quickly on the surface.

The intrusive and extrusive categories refer to the type of igneous rock formation based on how the magma cooled. Intrusive rocks are formed when magma cools slowly deep beneath the Earth's surface, while extrusive rocks are formed when magma cools quickly on the Earth's surface.

Lava flow is a type of basalt, which is an extrusive rock that cools quickly on the Earth's surface. Pennies are made of copper, which is an extrusive metal that is often formed through volcanic activity.

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Making better ________ is the best way to try to prevent earthquake damage.
seismometers
magnitude scales
buildings
seismograms

Answers

Making better buildings is the best way to try to prevent earthquake damage. This is because earthquakes cause damage to buildings due to the shaking, ground displacement, and liquefaction.

By constructing buildings with earthquake-resistant materials and techniques, such as reinforced concrete and base isolation systems, the damage caused by earthquakes can be reduced. Additionally, building codes and regulations can be updated to ensure that new buildings are designed and built to withstand seismic activity.

While seismometers, magnitude scales, and seismograms are important tools for monitoring and measuring earthquakes, they are not necessarily effective in preventing damage. Seismometers measure the vibrations of the ground during an earthquake, while magnitude scales indicate the size of the earthquake. Seismograms record the seismic waves generated by an earthquake, providing data for analysis and research. However, none of these tools can prevent the shaking and damage caused by an earthquake. It is the construction and design of buildings that is key to mitigating the impact of earthquakes.

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if precipitation falls through a deep layer where the temperature is greater than 32of (> 0oc), and then enters an extremely shallow layer of cold air with temperatures below 32of (< 0oc) just before hitting the ground, what type of precipitation is most likely observed at the surface?

Answers

If precipitation falls through a deep layer where the temperature is greater than 32°F (>0°C) and then enters an extremely shallow layer of cold air with temperatures below 32°F (<0°C) just before hitting the ground, the precipitation is most likely to be observed as sleet or freezing rain at the surface.

Sleet occurs when precipitation falls through a layer of warm air and then encounters a layer of cold air before reaching the ground. In this case, the precipitation (usually in the form of snowflakes) melts into a liquid as it falls through the warm layer, but then re-freezes into small ice pellets (sleet) as it encounters the cold layer.

Freezing rain occurs when the air is warm enough that precipitation falls as liquid rain, but then freezes on contact with the ground or a cold surface. In this case, the precipitation falls through the warm layer and then encounters the cold layer just before reaching the ground. The liquid precipitation then freezes on contact with the cold surface, forming a layer of ice.  

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(a) Either follow the workbook instructions (using a colored highlighter to fill in the coastal areas) or capture a screen shot of the map showing the inundated regions as displayed on the web site.
(b) Charleston is located on the end of a narrow peninsula. How does Charleston's surface area at the end of the peninsula change with a 1.8 m rise in sea level?
A.
Charleson's surface area increases due to rising sea level
B.
Charleston's surface area is unchanged due to rising sea level
C.
Charleston seems to lose about half of its surface area to rising sea level

Answers

(b) Charleston seems to lose about half of its surface area to rising sea level. With a 1.8 m rise in sea level, the inundated regions will cover a significant portion of the peninsula, resulting in a loss of land. This loss will likely be concentrated towards the end of the peninsula, where the city is located, leading to a reduction in surface area. Therefore, option C is the correct answer.

Your question asks about the change in Charleston's surface area at the end of the peninsula with a 1.8 m rise in sea level. To determine this, you can either follow the workbook instructions using a colored highlighter or capture a screenshot of the map from a relevant website.

The correct answer is:
C. Charleston seems to lose about half of its surface area to rising sea level
With a 1.8 m rise in sea level, Charleston's surface area at the end of the peninsula decreases significantly, resulting in a loss of about half of its surface area due to inundation from rising sea levels.

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This country is world famous for beer production Select one: O a. France b. Germany O c. Japan O d. Brazil

Answers

The country that is world famous for beer production is Germany. The correct answer is option b. Germany.

Germany has a long history and tradition of brewing beer, dating back to the Middle Ages. German beers are known for their high quality and distinct taste and are exported all around the world. The country is home to over 1,300 breweries, producing a wide variety of styles including lagers, pilsners, wheat beers, and more.

In fact, Germany has a law called the Reinheitsgebot or "Beer Purity Law," which was enacted in 1516 and states that beer can only be made with four ingredients: water, barley, hops, and yeast. This law has helped to maintain the high standards and quality of German beer, making it a favorite among beer enthusiasts worldwide.

Therefore the correct answer is option b. Germany

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a very steep-sided volcano built primarily from ejected lava fragments is called a

Answers

A very steep-sided volcano built primarily from ejected lava fragments is called a "cinder cone." Cinder cones are typically smaller in size than other types of volcanoes and are formed when gas-rich magma is violently erupted into the air, causing the lava to break into small fragments that fall back to the ground and accumulate around the vent.

These fragments, known as "cinders," pile up to form a cone-shaped mountain with steep sides. Cinder cones are found in many volcanic regions around the world and are often associated with other types of volcanoes, such as shield and stratovolcanoes.


A very steep-sided volcano built primarily from ejected lava fragments is called a cinder cone volcano. Cinder cone volcanoes are formed when gas-charged lava is ejected violently from a volcanic vent, causing the lava to break into small fragments called cinders. These cinders then accumulate around the vent, creating the cone-shaped structure with steep sides. Some notable examples of cinder cone volcanoes include Paricutin in Mexico and Lava Butte in Oregon, USA. These volcanoes typically have a relatively short lifespan and are usually smaller in size compared to other types of volcanoes.

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which statement is true about this image? choose one: a. the water pressure is greater at p2 than at p1. b. the water pressure is greater at h1 and h2 than at the surface of the pond because there is more rock above h1 and h2.

Answers

The water pressure is greater at p2 than at p1.  Similarly, the statement "the water pressure is greater at h1 and h2 than at the surface of the pond because there is more rock above h1 and h2" is not necessarily true. Option a is Correct.

While the presence of rock above a point can affect the water pressure at that point, it is not the only factor that determines water pressure. The depth of the water and the gravitational force acting on the water are also important factors. Water pressure refers to the force of water that is exerted by a water supply system. It is typically measured in units of pounds per square inch (psi) and indicates the amount of force that is needed to push water through a pipe or other conduit.

Water pressure is important because it determines how much water can be delivered to a given point, and how quickly it can be delivered. High water pressure can help ensure that water flows consistently and efficiently, while low water pressure can result in slow or intermittent flow, or even complete failure of the water supply. Option a is Correct.

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