Motion on _________ faults results in a fault scarp?

Answers

Answer 1

Answer:

Reverse fault, Dip-Slip fault, Normal fault, Thrust fault

Explanation:

A Fault scarp is usually defined as a step-like feature that occurs on the ground surface, depicting the movement of one block upward relative to the other, along a fault line.

It is caused by the following types of faults, namely:

Reverse fault Dip-Slip fault Normal fault Thrust fault

The reverse and the thrust faults are formed due to the compressional stress acting on it from both sides, resulting in the movement of the blocks along the fault line creating a fault scarp.

Similarly, the normal fault and the Dip-slip fault also generates a fault scarp, where the fault is formed because of the extension of the crust.

Answer 2

Answer:Normal fault

Explanation:


Related Questions

How far north you live from the equator is measured as your ________, whereas an imaginary line marking all those places at that same distance north of the equator is called a ________.

Answers

Answer:

LATITUDES AND PARALLEL

Explanation:

Latitudes are the lines that are oriented in the east-west direction and are measured from the equator moving towards both the poles. It ranges from 0° to 90°, where 0° refers to the equator and 90° refers to both the poles on either side. This latitude together with the value of longitude gives the exact coordinates of a location on earth.

Parallels are the imaginary lines joining all the places lying on the same latitude. These are the lines oriented in the east-west direction. These lines are extended in both the hemisphere, maintaining a fixed distance from the equator.

Final answer:

The distance north you live from the equator is measured as your latitude, while the imaginary line running east-west at that same distance north from the equator is called a parallel.

Explanation:

How far north you live from the equator is measured as your latitude, whereas an imaginary line marking all those places at that same distance north of the equator is called a parallel. Latitude is a geographical coordinate that specifies the north-south position of a point on the Earth's surface. It ranges from 0 degrees at the equator to 90 at the poles. On the other hand, parallels are imaginary lines running east-west around the globe, parallel to the equator, that indicate latitude.

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If a single disturbance at an unknown distance emits both transverse and longitudinal waves that travel with distinctly different speeds in the medium, such as in the ground during an earthquake, how can the distance to the disturbance be determined?

Answers

Answer:

Explanation:

If the differences in the time of arrival of each wave is measured, the distance can be calculated. The more the difference in their time of arrival, the more the distance and this distance can be in any direction. If distance is used as the radius on the circle that will mean that the disturbance must have taken place on the circle.

If you place a telephone call to two people with similar measurements about this same event at different places, then their circles can be transfered to your own map, the point of intersection of this 3 circles is the location of disturbance.

Final answer:

To calculate the distance to the source of an earthquake, seismographs use the time difference between the arrival of P-waves and S-waves. The distance can be precisely determined given the speeds of these waves and the precision of timing measurement. Uncertainties in the wave speeds can affect the accuracy of this distance calculation.

Explanation:

To determine the distance to the disturbance, such as the epicenter of an earthquake, seismographs measure the arrival times of P-waves and S-waves with a high precision. Because these waves travel at different speeds through the medium, the time difference in their arrival can be used to calculate the distance to the source of the earthquake.

The formula for the distance D to the earthquake's epicenter is based on the measured time difference
Dt between the arrival of the P-waves and S-waves and their respective speeds Vp for P-waves and Vs for S-waves:

D = Vp * (Dt) / (1 - Vs/Vp)

Given the precision of time measurements (0.100 s) and the known speeds of P-waves (7.20 km/s) and S-waves (4.00 km/s), one can solve for D to find the distance to the epicenter with a certain level of precision. However, any uncertainties in the speeds of the seismic waves would contribute to a greater uncertainty in the determined distance.

In practical terms, this difference in arrival times provides a way to triangulate the location of an earthquake's epicenter or the site of underground nuclear detonations, which is crucial for geological studies and for monitoring compliance with test ban treaties.

This type of air neither rises on its own following an initial lift nor sinks back to its original level.
A. statically neutral air
B. statically unstable air
C. statically stable
D. none of these types of air rises on its own following an initial lift nor sinks back to its original level

Answers

Answer:

A. statically neutral air

Explanation:

A statically neutral air will not to rise on it's own given an initial upward displacement or sink bank to it's original level

Read the article titled "Coastlines: Works in Progress." Using two or three sentences, describe the role of waves in shaping Earth's coastlines. (Site 1)

Answers

Answer: Waves through their nonstop action play a role in shaping the earth's coastline. This they achieve by their constant ability to move sands and gravel, breach barriers, build walls and even sculpt bays. As a result, no coastline ever remains the same for long.

Explanation: Coastlines are lines where land meets water. They constantly are changed and reshaped by waves built up by winds far out at sea, which unleash their energy when they break on the shore. They deliver sand and gravel to, move them along and also out of the beach.

This nonstop action means nothing ever stays the same. Breakers gnaw away at cliffs, shift sand to and fro, breach barriers, build walls, sculpt bays etc.

The age of our solar system is about: 1. one-third of the age of the universe.2. three-fourths of the age of the universe. 3. two billion years less than the age of the universe.

Answers

Answer:

1. one-third of the age of the universe

Explanation:

The solar system is about 4.571 billion years old whole the universe is about 13 billion plus.

Final answer:

The age of our solar system is around 4.6 billion years, roughly one-third of the estimated age of the universe.

Explanation:

The age of our solar system is estimated to be around 4.6 billion years, which is approximately one-third of the estimated age of the universe at 13.8 billion years. This means that the solar system is significantly younger than the universe. While it can be difficult to grasp these vast time scales, we know these age estimates through several types of scientific evidence such as radiometric dating of rocks and the study of the oldest known celestial bodies.

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How are seafloor sediments useful in reconstructing past ocean conditions? Choose all that apply. a. Biogenic oozes are composed of organisms that used to live on the seafloor, so their distribution provides information about deep-ocean conditions. b. Siliceous oozes on the seafloor indicate a warm surface ocean directly above the deposits. c. Sediments that accumulate on the seafloor provide information about ocean conditions at the time that the sediment was deposited. d. Calcareous oozes on the seafloor indicate a cool surface ocean directly above the deposits. e. Changes in the composition of the seafloor sediment reflect changes in the depositional environment.

Answers

Answer: Options C & E

Explanation:

Option C : Sediments that accumulate on the seafloor provide information about ocean conditions at the time that the sediment was deposited

Option E: changes in the composition of the seafloor sediment reflect changes in the depositional environment

Answer:

Seafloor sediments are useful in reconstructing past ocean conditions by:

c. Sediments that accumulate on the seafloor provide information about ocean conditions at the time that the sediment was deposited.

e. Changes in the composition of the seafloor sediment reflect changes in the depositional environment.

Explanation:

Seafloor sediments are the remainings found in the bottom of the ocean. These can come from organic or inorganic sources. The organic ones are formed from the rest of microorganisms, animals, or plants. While the inorganic can come from the earth, volcanic events, or minerals. Both inorganic and inorganic come from the ocean or the land outside the oceans. Therefore they can be used to explain the ocean conditions as well as the changes in the seafloor.  

When we say that a planet has a highly eccentric orbit, we mean that (a) it is spiraling towards the Sun (b) its orbit is an ellipse with the Sun at one focus (c) in some parts of its orbit it is much closer to the Sun than in other

Answers

Answer:

(c) in some parts of its orbit it is much closer to the Sun than in other.

Final answer:

When a planet has a highly eccentric orbit, it means that its orbit is an ellipse with the Sun at one focus. In some parts of its orbit, the planet is much closer to the Sun than in others.

Explanation:

When we say that a planet has a highly eccentric orbit, it means that its orbit is an ellipse with the Sun at one focus. In other words, the planet's orbit is stretched out into an elongated shape.

The eccentricity of an orbit describes how elongated or circular it is. If a planet has a highly eccentric orbit, it means that there is a significant difference in its distance from the Sun at different points in its orbit. In some parts of its orbit, the planet will be closer to the Sun, while in other parts it will be farther away.

For example, Pluto has a highly eccentric orbit. At some points in its orbit, it is much closer to the Sun than at others.

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Astronomers discovered stars even cooler than the traditional spectral type M stars recently. Astronomers have these cool stars a new spectral type, L. If you wanted to go out and find more such type L stars, what kind of instrument would it be smart to use?

Answers

Answer:

A sensitive infra-red telescope

Explanation:

Infrared light is highly advantageous for astronomers as it helps in discovering and studying the astronomical objects that are observed in the night sky.

This infrared light is commonly used in the telescopes to study the distant stars, and by analyzing them, they are classified as different types like L or M types. These telescopes, by using the infrared light, it is able to detect the presence of stars and other astronomical bodies, and this type of telescopes helps in determining the temperature of the distant objects such as the stars, planets, and other objects.

True or false plants in a high latitude receive less direct solar energy during the year than plants at a lower latitude because they are farther from the equator

Answers

True. The higher the latitude, the less solar radiation is received by plants.

True. Plants in higher latitudes receive less direct solar energy throughout the year due to the curvature of the Earth and the angle at which sunlight reaches the surface.

Do plants in a high latitude receive less direct solar energy during the year than plants at a lower latitude because they are farther from the equator

As you move towards higher latitudes from the equator, the angle at which sunlight reaches the Earth's surface becomes more oblique. This causes the same amount of solar energy to be spread over a larger area, leading to lower intensity of sunlight.

This is why plants in high latitudes receive less direct solar energy over the course of the year compared to plants closer to the equator.

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In the following list of magmas, only one is likely to explode - the others will produce lava flows or spatter to form small cinder cones or ooze out to form lava domes. Which one of the following magmas is most likely to produce an explosive volcanic eruption when it reaches the Earth's surface?
a. A basaltic magma with gas.
b. A basaltic magma without gas.
c. An andesitic magma with gas.
d. A rhyolitic magma without gas.

Answers

Answer:

C. An andesitic magma with gas

Explanation:

Andesitic magma are characterised by high gas content allowing them to explode explosively when they reach the surface.

The sum total of the planet's living organisms and abiotic systems is ________.
a. the biosphere
b. an ecotone
c. the biomass
d. a biome

Answers

Answer:

a. the biosphere

Explanation:

The biosphere consists of both the living organisms and the non living(abiotic) system which they live in.

In any particular place on Earth, certain constellations are visible in the evening only at certain times of the year because _________.
A) during some times of year, some constellations drop below the southern horizon
B) some constellations are circumpolar
C) on any particular night, we can only see stars that are directly opposite (180 degrees away from) the Sun in the sky
D) our evening view of space depends on where Earth is located in its orbit around the Sun

Answers

Answer:

Option (D)

Explanation:

Constellation usually refers to the group of stars that forms a particular feature in the sky and which is visible at night. This is visible when the earth is located at the exact position from which it can be viewed. It often helps in the identification and location of the stars in space.

These constellations are visible from the earth when viewed in the evening, but only at particular times in a year. It is because the earth keeps on changing its position with respect to the sun. The earth goes around the sun in an elliptical orbit, and only at a few positions, with favorable conditions such as clear sky, these constellations are visible.

Thus, the correct answer is option (D).

Final answer:

Constellations are only visible during certain seasons because our view of space at night depends on Earth's position in its orbit around the Sun.

Explanation:

In any particular place on Earth, certain constellations are visible in the evening only at certain times of the year because our evening view of space depends on where Earth is located in its orbit around the Sun. As the Earth revolves around the Sun, the night sky changes, making different constellations visible at different times. In winter, for example, we can see constellations like Orion, while in summer, these constellations are not visible at night, because they are in the daytime sky, near the Sun.

The rotation and revolution of Earth cause various astronomical phenomena such as the changing visibility of constellations, the northern and southern circumpolar zones, and the unique experiences of star visibility at different latitudes. Therefore, the answer to the student's question is (D).

Stars and constellations that are circumpolar remain visible all year round for observers at certain latitudes. At the North Pole, for example, one would see certain constellations like the Big Dipper circle the sky parallel to the horizon, while others will never rise above the horizon. Similarly, at the equator, the celestial equator passes through the zenith, and stars rise and set perpendicular to the horizon.

Coquina is a rock made of small pieces of broken shells. Ocean waves break seashells into smaller pieces. Over time, these pieces are moved and deposited. When they stick together, they form coquina. Coquina is most likely a(n) ________.a. igneous rockb. metamorphic rockc. sedimentary rock

Answers

Answer:

Option (C)

Explanation:

Coquina is usually defined as a sedimentary limestone rock that is found to be present in the freshwater zones and in the coastal areas. This rock is made up of broken shells that are smaller in size. The rocks can be easily broken down by the constant flowing of sea waves.  

This rock is commonly formed in the same way as the other sedimentary rocks, i.e. it is formed by the deposition of sediments carrying these organic remains and eventually undergoes the process of compaction and lithification on the seafloor.

Thus, the correct answer is option (C).

The correct statement is that Coquina rock is a form of a sedimentary rock. So, the correct option matching the statement above is C.

Coquina rock is basically formed of chemical compositions and living organisms, which are mostly formed near marine bio-diversities and marine conditions.

Sedimentary rocks

Sedimentary rocks refer to such rocks which are formed due to the deposition of multiple layer of mineral or dead organisms on the surface of the Earth.

As it is known that Coquina is formed by the deposition of seashells near the oceans, it can be said that coquina rocks are also a form of sedimentary rocks.

Hence, the correct option is C, that Coquina rocks are a form of sedimentary rock. A reference image of coquina rock is attached below.

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_____ occurs at convergent boundaries, where one layer of crust sinks into the asthenosphere when it collides with another layer of crust.
A. Divergence
B. Weathering
C. Sublimation
D. Subduction

Answers

Answer: Subduction

Explanation:

Because it was in the lesson

Answer:

Option (D)

Explanation:

Two plates move towards one another in the case of a convergent plate boundary. Due to this, a subduction zone is created, where the heavier crust sinks below the lighter one. This zone of subduction is commonly identified by the presence of a narrow V-shaped depression known as deep-sea trench.

As the subducting denser plate reaches the layer of the asthenosphere, the rocks undergo partial melting, and the melt produced from it mixes with the magma. This magma eventually moves upwards to reach the surface in the over-riding plate giving rise to the formation of volcanoes.

The subduction zone and the oceanic trench are two of the common features present in the convergent plate boundary.

Thus, the correct answer is option (D).

Ithilium, a European country, is able to produce more electronics than Kilim, a North American country, even though both countries use the same amount of resources. Given this information, it can be deduced that Ithilium has a(n):

Answers

Answer:

the answer is "absolute advantage"

Explanation:

Absolute advantage is a principle in economics. It is when Mr. A produces a higher quantity of goods/services than Mr. B using the same quantity of resources.

In this case, Ithilium produces more electronics than Kilim even both countries use the same amount of electricity.

Select all the answers that apply. Geological evidence of the age of the earth includes _____. a. radiometric dating of rocks b. fossil evidence c. comparative anatomy d. molecular clocks e. gradual processes of rock formation

Answers

Answer:

a. radiometric dating of rocks

Explanation:

Radiometric dating is a method used by geologists to date rocks by measuring the decay rate of radioactive isotopes when they lose energy. They basically quantify the unstable atoms left in rocks and compare them to the number of stable atoms.

I hope you find this information useful and interesting! Goos luck!

Answer:

radiometric dating of rocks

fossil evidence

gradual processes of rock

Explanation:

Radiometric dating confirms that Earth is ancient and explains how extremely slow processes can result in major changes to Earth’s surface. Evidence from radiometric dating indicates that Earth is about 4.54 billion years old. The geology or deep time of Earth's past has been organized into various units according to events that took place.

-The ages of Earth, Moon, and meteorites, radiometric dating has been used to determine ages of fossils, including early man, the timing of glaciations, ages of mineral deposits, recurrence rates of earthquakes and volcanic eruptions, the history of reversals of Earth's magnetic field, and the age and duration of a wide variety of other geological events and processes.

_________________________________________________________

here I just explained why the correct answer is radiometric dating of rocks, fossil evidence, gradual processes of rock, good luck, Let me know if I am wrong, and BRAINLIEST?

In the example above, one lemur species eats only bamboo shoots. Bamboo shoots contain a high level of cyanide, a toxic chemical. This lemur species has developed a tolerance for a certain amount of cyanide. What do you think will happen over time

Answers

Answer:

A) the level of cyanide in the bamboo population will increase

Explanation:

As over the period, the lemur species will develop a resistance for the disease or the toxic chemical and thus there will be an increase of the population of the lemures that had cyanide in there blood or body. As the species have developed a resistance to this chemical.

Final answer:

A lemur species that consumes bamboo shoots high in cyanide has developed a tolerance through evolutionary adaptation, and this trait could become more refined over generations, improving the species' survival prospects.

Explanation:

In the instance of a lemur species that eats only bamboo shoots, which are high in cyanide, selective pressures favor individuals with a tolerance for cyanide. Over time, if this trait is beneficial to the lemurs' survival and reproduction, we would expect the species to exhibit increased genetic resistance to cyanide toxicity. This phenomenon is an example of evolution through natural selection, where the genetic makeup of a population changes as members with beneficial traits survive to pass those traits on to offspring.

Metabolic adaptations enable species like bamboo lemurs to process toxic substances that would otherwise be harmful. Through the process of evolutionary adaptation, these lemurs have developed the ability to metabolize cyanide. If these lemurs continue to thrive on a diet containing cyanide, it suggests that their detoxification mechanisms are effective and will likely become more refined over generations. Such adaptations diminish the impact of potential predators, as the presence of toxic substances within the lemurs' bodies can deter predation.

It's important to note that evolutionary changes take time and occur over many generations. Should the environment remain relatively stable, it is probable that the lemurs' tolerance to cyanide will solidify as a key feature of the species, potentially leading to other, secondary adaptations as they continue to exploit a dietary niche that is inaccessible to other animals without this unique tolerance.

The volcanic landforms at divergent ocean plate boundaries are _____. A. volcanic island arcs B. ocean trenches C. continental volcanic arcs D. oceanic ridges

Answers

D.

The volcanic landforms at divergent ocean plate boundaries are _oceanic ridges____.

Explanation:

As two tectonic plates move away from each, they leave a vacuum in between the two plates. This vacuum is filled by upwelling magma from the mantle. As the upwelling magma cools it forms a mountainous ridge along the boundary – because the magma cools rapidly before it could spread further out on the surface. Examples of these landforms are the Mid-Atlantic Ridge and the East Pacific Rise located at divergent tectonic boundaries.

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Answer: The answer to your questions is D. oceanic ridges I hope this helps :)

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