When a seismometer detects an earthquake, the first signal to arrive is usually the pressure wave.
What is a pressure wave in earthquake?
One of the two primary varieties of elastic body waves, known in seismology as seismic waves, is the P-wave. Also known as compressional or compression waves, mechanical longitudinal waves. Pressure waves are the first signal from an earthquake to reach any impacted place or a seismograph since they move quicker than other seismic waves.
Pressure waves are typically too subtle for people to detect, though seismographs can. However, some animals might be able to recognize P-waves before the onset of the S-waves. For any earthquake that was close enough to them to affect them, they would have less than two minutes of notice.
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What controls the movement of air masses on the surface of the earth?
A. Movements of rain clouds
B. Directions of ocean currents
C. Gravitational pull of the moon
D. Patterns of heating and cooling
the epicenters of earthquakes are located select an answer and submit. for keyboard navigation, use the up/down arrow keys to select an answer. a at random places on the earth's surface. b mostly near the earth's equator. c mostly along continental boundaries. d mostly along the edges of moving plates. e mostly in the centers of oceans.
The correct answer is option D.
The epicenters of earthquakes are located mostly along the edges of moving plates.
A sudden shaking of the earth's surface as a result of the transfer of seismic energy across layers of the earth is called an earthquake.
Earth's crust comprises tectonic plates and the movement of rocks or tectonic plates along one another causes earthquakes.
Many earthquakes take place in narrow regions of the geologic faults where most plate tectonics move relatively to one other.
The movement in which plates come across is called a convergent movement, and along the divergent boundary, plates slide away from each other this movement is known as a divergent movement.
Similarly, when plates slide past each other, this is called transformation.
In general, the epicenters of earthquakes are the focus points from where seismic waves originate outward in all directions and shaking the certain part of the earth.
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How do the different ocean zones help each other?
There are five zones in the ocean's water column. The areas of direct sunlight, twilight, nighttime, abyss, and trenches.
What are the features of the various ocean zones?Five zones make up the water column in the ocean. The areas that are in direct sunlight, the twilight zone, the midnight zone, the abyss, and the trenches. The depth of this zone is around 700 feet below the surface. The majority of the visible light is concentrated here, and heat is a byproduct of light.
What are the two different ocean zones and what do they each mean?The photic zone and aphotic zone are the two primary zones based on water depth. The upper 200 meters of water constitute the photic zone. Water deeper than 200 meters is considered the aphotic zone. The water becomes darker as you go deeper.
Which area of the ocean harbors the greatest life?The epipelagic zone of the open ocean is where life is most abundant. Here, light can enter the water, allowing for the occurrence of photosynthetic processes. It goes down approximately 200 meters, or 650 feet. The joyful zone, the sunlight zone, or the photic zone are other names for this region.
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where on earth are strike-slip faults most common? the wasatch mountains of utah and the basin and range province along the edge of continental shields inside collision zone like the himalaya fracture zones adjacent to mid-ocean ridges southern california
Fracture zones adjacent to midocean ridges is where on earth are strike-slip faults most common.
Blocks have mainly shifted horizontally over strike-slip faults, which are vertical (or almost vertical) fissures. Right lateral slip style refers to a block moving to the right when observed from across a fault; left lateral slip style refers to a block moving to the left.
Transform faults that offset mid-ocean ridge segments leave behind scars known as fracture zones in the interiors of plates. The melt supply may be reduced or increased at the extremities of spreading segments where this transform faulting occurs, resulting in differences in crustal thickness across transform faults.
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Use what you have learned about the stages and monitoring of volcanic activity to choose the correct answer from the drop-down menus. a volcano that will never erupt again is . mount aetna on sicily is a(n) volcano because it produces earthquakes and lava flows. this volcano is , having no activity since its last eruption in 1707.
Answer:
The correct option on the dropdown is a dormant volcano hence the option is a volcano that will never erupt again is dormant.
Mount Aetna on Sicily is active since it produces earthquakes and lava flows
this volcano is since its last eruption in 1770.
Explanation:
A volcano that will never erupt again is called extinct since its activity has come to an end.
Mount Aetna on Sicily is an active volcano because it produces earthquakes and lava flows which means there is still some activity taking place internally
This volcano is dormant having no activities since its last eruption in 1707.
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Answer:
Extinct, active, dormant.
Explanation:
A volcano that will never erupt again is
✔ extinct
.
Mount Aetna on Sicily is a(n)
✔ active
volcano because it produces earthquakes and lava flows.
This volcano is
✔ dormant
, having no activity since its last eruption in 1707.
describe the geography of europes 3 zones (at least 3 sentences).
From north to south, Europe can be split into four main physical regions: the Western Uplands, North European Plain, and Central Uplands.
What three geographical traits does Europe possess?Europe can be classified into four main physical zones that span from north to south: the Western Uplands, the Central Uplands, the Alpine Mountains, and the North European Plain.
Jun 15, 2022.
Which three regions make up Europe?Eastern Europe.
Europe's east.
European Union.
What would you say about the geography of Europe?A "peninsula of peninsulas" is how people frequently refer to Europe. A peninsula is a region of land with three sides bordered by sea. Europe is a peninsula of the Eurasian supercontinent and is surrounded by the Mediterranean, Black, and Caspian seas to the south, the Atlantic Ocean to the west, and the Arctic Ocean to the north.
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So how do i know what the difference is between thermal energy and temputure
sedimentary environments on land differ because of variations in blank . multiple select question. oxygen isotope ratios gravity topography local geology amount of water
The sedimentary environment is the specific depositional setting of a certain sedimentary rock, which is distinct in terms of physical, chemical, and biological properties.In Geology, sedimentation occurs in three major environments: marine, transitional, and continental.Each environment has unique characteristics that set it apart from the others. And the structure and texture of sediments will alter depending on the depositional environment.The properties of sedimentary rocks allow us to interpret ancient depositional environments, such as the evolution of animals and the conditions in which they lived, how climate has changed throughout Earth history, where and when faults were active, and so on.
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impacts of mangroves destruction
magma solidifying and forming crystals. all solidification of molten rock. the weathering of solid rock into separate pieces. sediment turning into rock. one type of rock being changed into another type.
Magma solidifying and forming crystals after a volcanic eruption on the earth's surface leads to the formation of igneous rocks.
Igneous rocks are formed by the all solidification of molten rock or magma.
The weathering of solid rock into separate pieces is called mechanical weathering or physical weathering because it splits apart the large fragments of rocks into smaller sized rock pieces.
A sediment turning into rock is called diagenesis. It occurs by the combined effect of the biological, physical, and chemical processes during which sediments deposit and buried deeply into the earth.
The process during which one type of rock being changed into another type is called metamorphism or crystallization.
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earthquake all
kind hazards
Answer:
1: the destruction of buildings
2: the risk of being crushed or harmed by falling/destroyed buildings
Explanation:
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The price of a pair of shoes was reduced from $20 to $14 By what percentage was the price of the shoes reduced? A. 6% B. 70% C. 43% D. 30%
Answer:
30%
Explanation:
100 ÷ 20 = 5
20 - 14 = 6
6 × 5 = 30
Answer:
D. 30%
100÷20=5
20-14=6
6x5=30
Explanation:
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when rocks are broken down and worn away, they form loose materials of all sizes called blank . multiple choice question. magma lithified rock sediment lava
When rocks are broken down and worn away, they form loose materials of all sizes called sediment.
Solid material that has been transferred and dumped in a new location is known as sediment. Rocks, minerals, and animal and plant remains can all be found in sediment. It can range in size from a boulder to a single sand grain.
Through the process of erosion, sediment is transferred from one location to another. The removal and transportation of rock or soil is erosion. Sediment can be transported by erosion through water, ice, or wind.
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where is the metamorphic aureole found? question 1 options: a) contained within a pluton, also known as a xenolith b) outlining the area of subduction c) between aligned mineral grains d) around outside of magma body
Metamorphic aureole contained within a pluton, also known as a xenolith.
What is metamorphic aureole?
Metamorphic rocks are altered rocks that are buried deep within the Earth. Heat, pressure, and chemicals cause these rocks to alter (minerals). They can be put together randomly, in a banded or layered appearance, or both. The presence of an igneous intrusion nearby causes the temperature of local rocks to rise, which results in contact metamorphic aureoles.
Contact metamorphism happens next to igneous intrusions and is caused by the intrusion's high temperatures. Metamorphism is limited to the zone surrounding the intrusion, known as a metamorphic or contact aureole, because only a small portion of the area surrounding the intrusion gets heated by the magma.
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which two variables are the primary basis for classifying climate types in the koppen climate classification system (the system described in geosystems core)? (there may be more than one correct answer. choose all that apply.)
Its categories are based on the annual and monthly averages of temperature and precipitation and are the primary basis for classifying climate types in the Koppen climate classification system.
Temperature is a physical quantity that describes the heat of matter or radiation. There are three types of temperature scales. The SI scale, etc., is defined by the average translational kinetic energy of each small particle, such as an atom, molecule, or electron, moving freely within an object.
Those that rely solely on purely macroscopic properties and thermodynamic principles, such as the original definition of Kelvin. Not defined by theoretical principles, but by appropriate empirical properties of a particular material. Temperature is measured with a thermometer. It is calibrated at different temperature scales that have historically relied on different reference points and thermometric substances for definition.
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a submarine volcano is created when ocean floor moves over a hot spot. when the volcano rises above sea level, a(n) is formed that eventually will be eroded and subside under the sea.
A submarine volcano is created when ocean floor moves over a hot spot. when the volcano rises above sea level, a(n) seamount is formed that eventually will be eroded and subside under the sea.
Underwater mountains known as seamounts rise hundreds or thousands of feet above the ocean's surface. They are often dormant volcanoes that formerly produced lava flows that occasionally breach the ocean's surface.
The Mauna Kea seamount in Hawaii, a dormant volcano that rises more than 30,000 feet above the ocean 18,000 feet below the surface, is the tallest mountain on Earth in reality.
Seamounts are frequently discovered close to the tectonic plate borders and mid-plate regions close to hotspots. As plates separate along mid-ocean ridges, magma rises to fill the spaces.
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Broad, flat areas of the seafloor adjacent to mid-ocean ridges are called ____________ and reflect subsidence of oceanic crust as it moves away from the mid ocean ridge, cools, and becomes more dense.
Broad, flat areas of the seafloor adjacent to mid-ocean ridges are called abyssal plane and reflect subsidence of oceanic crust as it moves away from the mid ocean ridge, cools, and becomes more dense.
What is Abyssal plane?Abyssal plane are flat surface or area that are usually located deep down the sea.
It is usually filled with many deposited that have sedimented in the area.
The area is filled with living organisms that lives and thrive on the sediment.
Therefore, abyssal plane are broad, flat areas of the seafloor adjacent to mid-ocean ridge.
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How is the new law impacting the work of the fda? take one provision of the law and think of as many decisions as you can that must be made in implementing just that one piece.
Answer:
The new law has impacted the work of the FDA by aiding in ensuring the safety of consumers of all products.
Explanation:
The new law has impacted the work of the FDA by helping them regulate consumption of food in the following ways;
ensuring that food is:
pure wholesomesafe to eat produced under sanitary conditions.This can be implemented by ensuring that all stores that sell fast food and restaurants are well-cleaned and the process taken to produce the foods is done thoroughly.
The new law can also be used to ensure that the food sold to consumers is of good quality and meets international standards.
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if aliens came to earth and you could only take them to one place to show them why they should spare the earth from destruction, where would you take them?
My Wonderland would be the Louvre Museum in Paris, France. The famous monument, a former palace for French kings, now houses hundreds of artworks, sculptures, and other valuable collections.
If alien contact :
First and foremost, I would inquire as to the reason for the alien's visit and what he intended to do here. Aliens visiting Earth would be fantastic news for the entire world. I would also learn their language so that we could communicate easily. Perhaps we could visit their planet and set up cultural exchange programmes. That would be so much fun! Last but not least, I'd like to inquire about their eating habits and request that they bring some of their food for us to sample. A food exchange programme could improve relations between humans and aliens.
Extraterrestrial life :
Extraterrestrial life, also known as alien life, is life that can be found outside of Earth and did not originate there. Although efforts are underway, no conclusive evidence of extraterrestrial life has yet been discovered. Such life could range from simple forms like prokaryotes to intelligent beings, potentially spawning civilizations far more advanced than humankind. The Drake equation posits the existence of intelligent life elsewhere in the universe. Astrobiology is the study of extraterrestrial life in all of its forms.
Since the mid-twentieth century, there has been active research to look for signs of extraterrestrial life, including searches for both current and historic extraterrestrial life, as well as a narrower search for extraterrestrial intelligent life. Depending on the category of search, methods range from telescope and specimen data analysis to radios used to detect and transmit communication signals.
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what cities have a a tropical wet and dry climate?
Answer: Really any cities in lower Brazil, middle Africa, and lower India.
Here are some examples of countries in Africa and India- Nigeria, the Central African Republic, Cote d'Ivoire, and Liberia. Countries in India: Odisha and Andhra Pradesh.
Explanation:
Which area of the south american continent would have the greatest risk of earthquake damage?
Answer: Probably Guayas province.
for which reason(s) might an earthquake with a magnitude of 7.0 result in more death and destruction than a quake with a magnitude of 8.0? choose all that apply.
Buildings in the region of the 7.0 magnitude earthquake employed lower-quality construction materials than those in the region of the 8.0 magnitude earthquake.
The Richter Scale, which Charles Richter published in 1935, is still what most Americans think of when they think about earthquake magnitude. Richter developed a magnitude rating method based on seismic wave readings and their separation from the earthquake epicenter in order to determine the power of earthquakes in Southern California.
Geological events, or quantifiable forces that take place within the earth, are used by scientists to determine an earthquake's magnitude. We use the term intensity, which has a scale all its own: the Modified Mercalli Intensity Scale, to describe and document how the earthquake felt to people in its affected area. The Mercalli Scale rates the direct impact of an earthquake on people, buildings, and the environment as a whole.
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What is the area of a rectangle with vertices at (1, 7), (5, 3), (3, 1), and (−1, 5)?
if two locations are at the same latitude but one is in the interior of a continent and one is by the ocean, which one will be hotter in the summer and colder in the winter?
A coastal climate will not be too cold in winters and not too hot in summer.
Inland climates are typically severe.
If one location is on a shore and the other is inland, two locations at the same latitude may have drastically distinct climates.
Warm, humid air from the ocean affects the climate along the shore. Most often, a coastal climate is pleasant. It doesn't become too hot in the summer or too cold in the winter. The amount of moisture in the air can cause heavy precipitation. A maritime climate exists here.
Further inland, the land's cold or hot air affects the climate. Being from above land, this air could be dry. Inland climates are typically more severe. Summers might be quite hot, and winters could be very frigid. Rainfall can be scarce. This is a continental climate.
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Sorrel has 54 beads, and 16 of them are red. Of the remaining beads, half are yellow and half are green. How many yellow beads does she have?
16 beads
19 beads
38 beads
70 beads
Answer:
54-16=38
38/2=19
Explanation: The answer is 19
Answer:
19 beads
Explanation:
Take 54 and subtract the 16 red beads, then divide that by 2
54-16=38
38/2=19
19 beads
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several communities around mt. rainier are built on enormous, but ancient lahar deposits. what might people in these areas expect if another eruption occurs?
Several communities around Mt. Rainier are built on enormous, but ancient lahar deposits. If another eruption occurs their homes may be destroyed by a new lahar.
Lahars, commonly referred to as volcanic mudflows or debris flows, pose the biggest threat from Mount Rainier. Highways, bridges, ports, and pipelines can be found in areas that were once submerged by lahars and are today heavily populated.
At Mount Rainier, scientists use the term debris flow for much smaller, more frequent events caused by glacier floods and precipitation, which typically stay within park boundaries, and the word lahar for large flows of eruption or landslide origin with potential to travel to densely populated valleys. Lahars and debris flows resemble flowing concrete in appearance and behavior, and they destroy or bury the majority of man-made structures in their paths.
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the shoreline feature that is formed by the sheltering of nearshore water from wave action by a reef or islands is a(n) . the sheltered water is commonly shallow, quiet, and perhaps warm.
Bed bedding, ripple marks, fossil tracks and trails, mud cracks, and other features are examples of sedimentary structures. Hey typically fall into groups based on how they came to be. Primary sedimentary structures are those that emerge simultaneously with the sedimentary rock in which they are found.
Is a sedimentary feature created by windblown material being deposited?
Deposits of blown sediments are referred to as aeolian, which can also be spelled eolian or olian.Aeolian deposits typically consist of clast sizes ranging from fine dust to sand due to the fact that wind has a much lower carrying capacity than water [52].Clay and fine silt can travel very far, even across entire oceans suspended in the air.
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What additional information was needed to prove alfred wegener’s hypothesis of continental drift was possible?.
Additional information that was needed to prove Alfred Wegener's hypothesis of continental drift was plate tectonic theory - the mechanism behind the movement of the plates.
According to Alfred Wegener's hypothesis of continental drift, the earth was a giant piece of the merged continents called the "supercontinent or Pangea". Although he suggested that the continents are moving away from each other due to the rotation of the earth around its own axis, his idea was not accepted as it did not provide a sufficient explanation for the phenomenon of continental drift.
However, the theory of plate tectonics provides enough explanation as it suggests that the earth's outer layer is composed of plenty of rocks that move constantly to shape the land-scape of the earth.
In general, Alfred Wegener's hypothesis does not explain the mechanism behind the rotation of continents.
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Which latitude and longitude coordinates represent a location
on the continent of Australia?
A)20° N. 135°E
B)20° N, 135° W
C)20°S, 135°E
D) 20° S, 135° W
Answer:
The latitude and longitude coordinates represent a location
on the continent of Australia are: C) 20°S, 135°E
Explanation:
The continent Australia is located in the southern hemisphere, so at the southern latitude.
Also, it is situated in the eastern hemisphere so an eastern longitude.
in the picture above, the dark stripes on the surface of the glacier are: group of answer choices schistosity, formed by metamorphic separation of minerals. sedimentary layering, formed by alternating dusty ice from late winter and clean ice from the rest of the year. medial moraines, rocks picked up from points where tributary glaciers flow together. basal moraines, deposited beneath the glacier. terminal moraines, deposited at the end of the glacier.
Medial moraines are rocks picked up from points where tributary glaciers flow together are the dark stripes on the surface of the glacier in the picture above.
So, the correct option is C.
The convergence of two tributary glaciers creates medial moraines. They are often ice-surface features, and frequently, they are made of granite that has fallen from a Rockwall where the glaciers meet. Medial moraines are typically not left behind when the glacier recedes since they are thin, surface landforms. A medial moraine is found on top of and within an existing glacier. When two glaciers collide, a lateral moraine is created. There is a push-together of two lateral moraines from several glaciers. In the center of the new, larger glacier, this material creates a single line of rocks and mud.
There are three types of moraines: terminal moraines, lateral moraines, and medial moraines. Terminal moraines are formed from a pile of sediment that builds up in front of the glacier; lateral moraines are formed from sediment left on the sides, and medial moraines are formed from sediment that two glaciers push together.
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