Tectono-eustatic Changes in Sea Level and Seafloor Spreading

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Answer 1

The three most frequently noted variables are tectonic activity alters size of  world's oceans, a temperature increase that causes water to expand thermally, massive ice sheets melting, and water entering oceans.

What qualities make an ocean?

A continual body of water that is enclosed in a sizable basin on the surface of the Earth is known as an ocean. Nearly 71% of the surface of the Earth is covered by the major oceans including its peripheral seas, which have an average density of interesting ” meters (12,100 feet).

What does ocean mean?

Greeks used the Latin word "keanos," which literally means "the huge stream around the earth's disc," to refer to the single body of water they thought ringed the planet. This is where the English word "ocean" originates from.

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Related Questions

ACTIVITY 2
Use the information from case study 2 to consider how
well tourism authorities in Myanmar have met their
research aims in trying to define the current tourism
market for the destination.
Consider how the research identifies:
the market
.
.
.
.
customer needs and wants
the competition
competition among destinations
travel trends and customer behaviours
customer preferences for destinations
popularity of destinations
stage in the Butler 'Destination Lifecycle' model.
m
Ca
t

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Analyzing the tactics used by Asian government representatives and marketers to overcome stereotypes is the aim of this study.

What are the typical justifications for the need for planning and development in the tourism industry, and what are some strategies we might use there?

The development of plans and strategies for the tourism industry is crucial because it sets an example for other places to follow in order to boost tourism in their region. By continually addressing the demands of visitors and locals, it makes sure that the destination keeps up with shifting market trends.

How do you believe this epidemic will affect the travel and tourism industry?

The Covid-19 pandemic has a particularly negative influence on the tourism industry, which also has an impact on public services, opportunities, and livelihoods.

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What is a fault and what are the different types?

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When two pieces of the Earth's crust entirely separate and glide past one another, faulting occurs. A fault tends to cause the movement of rocks in opposite directions.

what are the different types of faults ?

Normal, reverse, strike-slip, and oblique faulting are the four different categories of faulting. A normal fault is one in which the hanging wall or footwall of rocks above the fault plane moves downward in relation to the footwall of those rocks. When the footwall rises up relative to the hanging wall, this is known as a reversal fault.

What is an earthquake fault?

Faults are cracks in the crust of the Earth where movement has taken place. Sometimes energy from a sudden slip of the rocks on each side causes faults to shift. While intraplate fault zones are where most earthquakes happen in the midst of plates, they can also happen there.

Where are the major earthquake fault lines?

The San Andreas fault system, the main geologic divide between the North American and Pacific tectonic plates, which runs through much of California, will experience large earthquakes.

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What happens when oceanic plates collide with oceanic plates?; When an oceanic plate and a continental plate collide which plate is likely to Subduct?; What occurs when a continental plate and an oceanic plate collides and one of the plates is driven down into the mantle?; What happens when an oceanic plate collides with a continental plate ?

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When two oceanic plates or a plate bearing continents contact, one plate will bend and slide under the other. Subduction is the term for this action. At this subduction border, a large ocean trench develops.

When an oceanic plate and a continental plate collide which plate is likely to Subduct?;

The oceanic plate will always subduct at a convergent border between the oceanic and continental lithosphere, resulting in earthquakes and volcanic arcs.

What occurs when a continental plate and an oceanic plate collides and one of the plates is driven down into the mantle?

Convergence does not always result in subduction. When continents collide, continental rocks collapse but remain at the surface because they are too buoyant to be driven downward.

what are oceanic and continental plates?

A tectonic plate, also known as a lithospheric plate, is a substantial slab of solid rock with an uneven shape that is typically made up of both continental and oceanic lithosphere. The Pacific and Antarctic Plates are among the largest plates, but they can range in size from a few hundred to thousands of kilometers broad. The majority of the time, oceanic plates are found there. These plates are known as continental plates. The topography, or relief, of the Earth's surface is shaped by the interaction of the plates, much like when two continents collide.

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the concept of continental drift was developed by alfred wegener. which of the following pieces of evidence does not support wegener's hypothesis?

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Climates at different latitudes are similar to one another that does not support Wegener's hypothesis.

What is latitude?

The north-south location of a point on the surface of the Earth or another celestial body is indicated by the latitude coordinate in geography. Latitude is expressed as an angle with a range of -90° at the south pole, 90° at the north pole, and 0° at the equator. The equator is paralleled by circles that travel east-west along lines of constant latitude, called parallels. To specify a position on the surface of the Earth, latitude and longitude are employed as a coordinate pair. The definition of geodetic latitude that follows is typically used when the word "latitude" is used alone. In a nutshell, a point's geodetic latitude is the angle created between the vector perpendicular to the point's elliptical surface and the equator.

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members of species australopithecus afarensis (such as the lucy fossil) were hominins, but retained some apelike features such as

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Australopithecus afarensis had both ape and human traits: contributors of this species had apelike face proportions (a flat nostril, a strongly projecting decrease jaw) and braincase (with a small mind, typically less than 500 cubic centimeters, approximately 1/3 the scale of a current human brain), and long, strong arms with curved palms

Regardless of apparent differences, modern-day people and Lucy have one important similarity - we each walk upright. Bipedal motion is a very human great, and scientists without delay diagnosed that Lucy may want to stroll after reading the shape of her knees and the shape of her backbone.

In 1974, Lucy showed that human ancestors were up and on foot round lengthy earlier than the earliest stone gear were made or brains were given larger, and next fossil unearths of a great deal earlier bipedal hominids have confirmed that end. Bipedalism, it seems, became the first step towards becoming human.

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Lecture Question Which of the following are the typical weather models that we covered in this course able to correctly forecast? A) a low pressure system outside of the model's domain B) flooding rain in the Mississippi river flood plain C) a tornado in Ypsilanti, MI D) the high temperature 18 days from now

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(B) flooding rain in the Mississippi river flood plain are the typical weather models that we covered in this course able to correctly forecast.

Models of the weather simulate the evolution of the atmosphere through time. The result of trillions of computations using millions of observations as beginning circumstances is a three-dimensional representation of what the atmosphere may look like in the future. These computations are performed at extremely high rates by enormous computers, allowing simulations to stretch up to two weeks into the future and span the whole world. Global models and localized models are the two main categories of weather models. Regional models, on the other hand, have far greater resolutions and generate prediction output for the whole world.

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due to the high magnitude and unpredictability of mekong river floods, the river valley and delta region are sparsely settled. True or False ?

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It is a false statement that due to the high magnitude and unpredictability of Mekong River floods, the river valley and delta region are sparsely settled.

Flooding occurs annually in the Lower Mekong River Basin (LMB), which has both beneficial and harmful effects. Fisheries in the basin are supported by the yearly flood pulse, which also preserves river shape and deposits sediments that increase soil fertility.

The results of one study, which examined the condition and growth of the river's fish stocks, and the other, which polled riverside homes, were both well known. The numerous people who depend on the Mekong are suffering as a result of climate change, overfishing, and the construction of hydropower dams.

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Match the region of Africa in column 1 to its characteristic in column 2.

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The regions of Africa when matched with its characteristic in column 2 are :

East Africa - Competed for by Europe early onNorth Africa - Supported by the NileSouthern Africa - Rich in diamonds.Central Africa - Impenetrable jungles

How are Africa's climate ?

Africa has different regions which are known for several things such as their climate differences. We for instance note that Central Africa has some impenetrable jungles thanks to the wide tropical rainforests there. Then there is Southern Africa which is rich in minerals such as diamonds and gold. North Africa has the strength of the Nile to take care of it by passing through Sudan and Egypt and East Africa was a highly sought after prize by the Europeans at some point.

Africa's regions are renowned for their rich diversity and richness of natural resources. In reality, certain parts of Africa are renowned for having distinctive cultural and natural characteristics.

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when establishing cost control, a milestone is a typical measuring point. which of the following does not accurately describes the use of cost control milestones?

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Milestones are developed during the risk planning describes use of cost control milestones.

What is a milestone?

A milestone is a numerical marker installed along a route, such as a road, railway line, canal, or boundary. They can provide information on the distance to towns, cities, and other locations or landmarks, as well as their placement along the route in relation to a datum location. They are often found at the side of the road, in the median, or in a central reservation. Alternative names for them include mileposts, mile markers, and mileposts. A general word that is not unit-specific is "distance marker." A road's linear referencing points are provided by the installation of milestones. This can be used to show the distance traveled thus far or the distance left to travel so that travelers know they are on the right route.

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the sediment load consisting of coarse material too large to remain in suspension, moving along the channel bottom via traction and saltation is the .

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The finest grains will be on top and the coarsest grains will be at the bottom throughout the sediment transport process. Following the movement of sediment by salination, sediment is next carried in suspension, rolled across the surface.

The natural process of weathering and erosion breaks down a substance called sediment, which is subsequently pushed by the force of gravity acting on the particles or by the action of wind, water, or ice. Sediment is a term used to describe solid material that has been moved and dumped in a new area. Sediment contains rocks, minerals, as well as fragments of plants and animals. It might be as big as a boulder.

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TRUE/FALSE. the amount of friction along a fault plane determines the severity of the earthquakes it produces. therefore, the kinds of faults and the relative amount of friction generated at each type of fault, determine the relative severity of earthquakes produced at each kind of plate boundary.

Answers

True. The amount of friction along a fault plane does affect the severity of earthquakes that it produces.

When there is a high amount of friction along a fault plane, it takes more energy to cause the plates to slip past each other, leading to a more severe earthquake when the plates do eventually slip.

Conversely, when there is low friction along a fault plane, it takes less energy for the plates to slip past each other, leading to a less severe earthquake. The kinds of faults and the relative amount of friction generated at each type of fault can therefore affect the relative severity of earthquakes produced at each kind of plate boundary.

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letter b indicates teh location where the river enters the ocean which cross section represents the most likely pattern of sediments deposited where the river enters at ocean at location b.

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In Point B, there is a water table. The line separating water-saturated earth from the unsaturated ground is known as the water table. Water is present in the rocks and soil below the water table.

The zone of saturation's top surface is known as the water table. The region of saturation is the area where water has accumulated in the ground's pores and fissures. It may also be stated simply as the level of saturation of the ground.

Aquifers that are already saturated in places below the water table can be measured using water tables. Water is taken out of these aquifers for usage by people and plants. Bathing and cleaning may be done with the water from the table.

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The question is -

Letter b indicates the location where the river enters the ocean which cross-section represents the most likely pattern of sediments deposited where the river enters the ocean at location b.

Of the following objects, the one that astronomers think is the active core of an elliptical galaxy is a

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Of the following objects, the one that astronomers think is the active core of an elliptical galaxy is a not a cepheid

A form of galaxy known as an elliptical galaxy has a smooth, nearly featureless appearance and an approximate ellipsoidal shape. Along with spiral and lenticular galaxies, they are one of the four primary kinds of galaxy identified by Edwin Hubble in his Hubble sequence and 1936 book The Realm of the Nebulae.There are many stars, grains of dust, and gas in the Milky Way. It is known as a spiral galaxy because, from the top or bottom, it would appear to be whirling like a pinwheel. About 25,000 light-years from the galaxy's nucleus, the Sun is situated on one of the spiral arms.

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Based on what you learned about the terrestrial planets, select all of the correct statements from the following list

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-The cores of terrestrial planets are metallic.

-The mantles of terrestrial planets are made of dense rock

A terrestrial planet, earthly planet, or rough planet, is a planet that is composed fundamentally of silicate rocks or metals. Inside the Solar System, the terrestrial planets acknowledged by the IAU are the internal planets closest to the Sun: Mercury, Venus, Earth and Mars. Among astronomers who use the geophysical meaning of a planet, a few planetary-mass satellites - Earth's Moon, Io, and sometimes Europa - may also be considered terrestrial planets; thus might be the rough protoplanet-asteroids Pallas and Vesta. The terms "terrestrial planet" and "earthly planet" are gotten from Latin words for Earth (Land and Tellus), as these planets are, in terms of structure, Earth-like. Terrestrial planets are by and large studied by geologists, astronomers, and geophysicists.

Terrestrial planets have a solid planetary surface, making them substantially not the same as the bigger gaseous planets, which are composed mostly of some blend of hydrogen, helium, and water existing in various physical states.

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sediments deposited by glacial ice are___; material deposited by glacial meltwater are___.

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sediments deposited by glacial ice are unsorted; material deposited by glacial meltwater are sorted.

After the sediment is deposited by a subsiding glacial mass, it is in many cases modified by the meltwater moving from the ice sheet. This auxiliary course of transport and deposition makes extra frosty landforms. Dissimilar to work, these designs are for the most part sorted by grain size in light of the fact that the principal specialist of transport is streaming water.

Water streaming along the foundation of the glacial mass conveys and deposits sediment in a way like a waterway. An esker is a twisted edge made of sediment, shaped by the progression of a meltwater stream underneath the ice. As the icy mass melts and recedes, the esker is uncovered.

At the point when water streams on top of or through the ice it might deposit sediment that bit by bit gathers into a hill. As the ice sheet recedes, the hill is left behind framing a slope called a kame.

A drumlin is another kind of frosty slope, portrayed by their topsy-turvy shape with one steep side looking inverse the course of chilly stream, and one extend, delicately slanted side pointing in the stream bearing. The technique for their arrangement is as yet debated.

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lab structural geology part 2 list the five geologic time periods found on the left side of this map

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The first division of geologic time is into the eons of the Hadean, Archean, Proterozoic, and Phanerozoic. The Precambrian, which we'll refer to as a "super" eon, is the name given to the first three eons.

The eons are split into eras, which are further divided into periods, which are further divided into epochs, which are further divided into ages. We shall use this terminology for the duration of this lab manual. You'll see that there is another method to refer to these intervals on the chronology. You will mostly notice us referring to eras of geologic time throughout this lab handbook. When referring to distinct periods of geologic time, geologists often use acronyms, especially on geologic maps. Because the abbreviation isn't necessarily the initial letter of the name, some of these acronyms could be confusing.

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Based on the soil texture triangle, which of the following would describe soil that was 25% clay, 25% silt, and 50% sand?

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Based on the soil texture triangle, Clay would describe about the soil that was 25% clay, 25% silt, and 50% sand.  The textural triangle defined as the relative proportions of sand, silt and clay in different types of soils.

The soil texture triangle is verified to classify the different texture of a soil and the sides of the soil texture triangle are scaled for the percentages of sand, silt, and clay. percentages of clay are read from left to right across the triangle

Soil texture  is very  important because it ensured the  soil features that affect plant growth. These three features are water-holding capacity, permeability, and soil workability.

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Deltas
A. may form where a stream empties into a valley bottom at the base of a mountain range
B. are likely to slowly sink and become swampland called a bird's-foot delta
C. make poor farmland because they flood regularly, and flooding leaches out the minerals.
D. received their name because some have a triangular shape, but many don't
received their name because some have a triangular shape, but many don't

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The correct answer is that B, i.e., is likely to slowly sink and become swampland called a bird's-foot delta.

Deltas measure wetlands that kind as rivers empty their water and sediment into another body of water, like the ocean, lake, or another watercourse. Deposition in deltas is targeted at the delta front, wherever jet flow is initiated. Sand is set down in watercourse mouth bars which can coalesce into delta-front sand sheets. On the far side, the sand's finer sediments square measure deposited within the prodelta, a marine setting whereby seventy-fifth of the particular delta mass accumulates.

As a watercourse meets the ocean, the sediment it carries is deposited in a very fan-like formation called a delta. As longshore drift picks up and transports the sediment, it may be carried and deposited down current to create sediment options like sand bars, spits, and barrier islands.

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Northeasterly and southeasterly winds within 30° of the equator are known as the _______ winds.

southwesterly
easterly
sailing
trade

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The trade wind (also known as the trade wind) is the dominant pattern of easterly surface winds found in the tropics near the equator of the subtropical monsoon. In the Northern Hemisphere, this wind blows mainly from the northeast, while in the Southern Hemisphere, it blows from the southeast.

A wind rose is a graphical tool used by meteorologists to show the general distribution of wind speed and direction at a given location. Wind patterns shown on the polar coordinate grid indicate the frequency of wind blowing from a particular direction. The length of each spoke around the circle is proportional to the time the wind blows in each direction.

The mid-latitude winds (between 35 and 65 degrees), also known as the prevailing westerly winds, blow poleward toward the subtropical monsoons in the equatorial region. These strong winds blow from west to east and direct extratropical cyclones in that direction.

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identify whether or not each challenge is a characteristic of stage 4 of the demographic transition.

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Birth and death rates are both low in Stage 4 of the Demographic Transition Model (DTM), maintaining population growth overall.

A population's age distribution can significantly alter as a result of a long-term pattern of lowering birth and death rates, known as a demographic transition. The major determinants of population age and gender distribution are birth and death rates, along with additional variables like migration, economy, war, political and social change, hunger, or natural catastrophes. The senescent process is studied in biodemography, which focuses on issues like lifespan limitations and the length of a healthy life.

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what happens when volcanoes release greenhouse gases into the atmosphere?; what are the effects of volcanic eruptions to environment; how does volcanic activity affect climate brainly; describe two ways that the surrounding environment of a volcano can change over many years; how do volcanoes affect humans and the environment; 5 effects of volcanic eruption on the environment; how do volcanoes affect humans and the environment essay; 4 effects of volcanic eruption

Answers

when volcanoes release greenhouse gases into the atmosphere carbon dioxide, a greenhouse gas, has the ability to support global warming, volcanic gases like sulfur dioxide can actually cause global cooling.

what are the effects of volcanic eruptions to environment?

The degradation of water quality, fewer rainy days, crop losses, and vegetation destruction are further repercussions. Increased respiratory system morbidity and mortality among persons impacted by volcanic eruptions have been found during eruptions and in the early aftermath.

how does volcanic activity affect climate ?

The majority of the injected ash gets cleared from the stratosphere within a few days to weeks and has no effect on climate change. But whereas volcanic carbon dioxide, a greenhouse gas, has the ability to support global warming, volcanic gases like sulfur dioxide can actually cause global cooling.

how do volcanoes affect humans and the environment?

Volcanic ash can accumulate harmful gases like carbon dioxide and fluorine. Crop failure, animal death and deformity, and human illness are all potential consequences of the ensuing ash fall. Ash's abrasive particles can irritate and inflame the skin's surface as well as the eyes.

What are the 5 effects of volcanic eruption on the environment?

The degradation of water quality, fewer rainy days, crop losses, and vegetation destruction are further repercussions. Increased respiratory system morbidity and mortality among persons impacted by volcanic eruptions have been found during eruptions and in the early aftermath.

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Overthrust belt of central Utah and eastern Idaho: what it is, some typical structural geometries, when it formed, and its importance in petroleum resources Sketch if possible

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the increased price of oil and the uncertainties surrounding long-term global oil supply. The Overthrust belt, which includes portions of Wyoming, Utah, and Idaho, is one of the most promising regions for exploration in the continental United States.

Only recently have significant new fields been discovered, even though oil has been mined from the Overthrust belt for more than a century. At Pineview, Utah, the first substantial discovery was found in 1975. Eleven new oil and gas fields had been discovered in Wyoming and Utah by the end of 1979. 500 million barrels of recoverable oil and 5.S trillion cubic feet of recoverable gas are the potential output from these fields, respectively. The Overthrust belt's full potential as a significant hydrocarbon resource is unclear since it is still regarded as a petroleum exploration frontier.

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since the beginning of the industrial revolution, the increased flux of carbon into the atmosphere has been primarily due to . question 20 options: addition of fertilizers to the soil desertification addition of phosphate in detergents burning of fossil fuels deforestation

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Since the beginning of the industrial revolution, the increased flux of carbon into the atmosphere has been primarily due to the burning of fossil fuels.

When fossil fuels are burned, they release nitrogen oxides into the atmosphere, which contribute to the formation of smog and acid rain. The most common nitrogen-related compounds emitted into the air by human activities are collectively referred to as nitrogen oxides. Ammonia is another nitrogen compound emitted into the air, primarily from agricultural activities, but also from fossil fuels.

Major sources of nitrogen oxide emissions include cars and trucks, coal-fired power plants, large industrial operations running on fossil fuels, ships, and airplanes.

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What is a coral reef ecosystem?; What role do corals play in marine ecosystems?

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Coral polyp colonies, often known as coral reefs, number in the hundreds to thousands. These sessile (fixed in one spot permanently) marine invertebrate creatures have strong calcium carbonate exoskeletons.

What role do corals play in marine ecosystems?

Coral reefs offer chances for recreation, serve as a barrier against erosion and storm damage, and support local economies. They are also a source of fresh medications and food. More than 500 million people rely on reefs for safety, income, and food.

What is the coral reef ecosystem made of?

Thin calcium carbonate layers make up a coral reef.

Over a skeleton made of calcium carbonate, coral polyps create a living carpet. The corals most in charge of creating the groundwork for and erecting reef structures are known as stony corals (or scleractinians).

How are coral reefs formed ?

When free-swimming coral larvae cling to submerged rocks or other hard surfaces along the margins of islands or continents, coral reefs are first formed. Reefs develop one of three main structural types as the corals swell and grow: fringing, barrier, or atoll.

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which statement is not true for the climate of the so. cal. chaparral? group of answer choices mild winters close to an ocean hot, dry and long summers humid and hot summers some rain (if any) in winter

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Chaparral is found in regions with a climate similar to that of the Mediterranean area, characterized by hot, dry summers and mild, wet winters. Hence, statement 2 is not correct.

A geographical feature known as "chaparral" that is mostly found in the U.S. state of California, southern Oregon, and the northern region of Mexico's Baja California Peninsula is a shrubland plant community. Its Mediterranean environment, which features hot, dry summers and warm, wet winters, as well as infrequent, intense crown fires, shape the region. In contrast to the adjacent soft-leaved, drought-deciduous scrub community of coastal sage scrub, which is frequently found on drier, southern-facing slopes within the chaparral biome, summer-drought-tolerant species are present in chaparral.

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Which mineral will scratch feldspar but not topaz?

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Answer:

Diamond is the hardest mineral; no other mineral can scratch a diamond. Quartz is a 7. It can be scratched by topaz, corundum, and diamond. Quartz will scratch minerals that have a lower number on the scale.

Explanation:

Diamond is the hardest mineral; no other mineral can scratch a diamond. Quartz is a 7. It can be scratched by topaz, corundum, and diamond. Quartz will scratch minerals that have a lower number on the scale.

what is a planet; solar system; mercury (planet); is pluto a planet; venus planet; all planets; planet name; what are the 12 planets

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Mercury, Venus, Earth, Mars, Jupiter, Saturn, Uranus, and Neptune are in order of proximity to the sun. Pluto, which was once thought to be the outermost planet, is now categorized as a dwarf planet.

what is a planet?

A planet is a celestial body that meets the following criteria, it orbits the Sun, it has enough mass for its self-gravity to outweigh rigid body forces, assuming a hydrostatic equilibrium shape that is roughly circular, it has cleared the area in and around its orbit.

what is solar system?

the sun together with the collection of celestial bodies that are drawn to it and orbit it. also: another star-centered system with a similar configuration.

Where is the solar system?

The Milky Way Galaxy's Orion-Cygnus Arm contains the solar system. The closest star system to the solar system is Alpha Centauri, which is made up of the stars Proxima Centauri, Alpha Centauri A, and Alpha Centauri B.

What is the most important in solar system?

With the Sun making up about 99.8% of the Solar System's mass, it is clear that the Sun is its most significant component. The Solar System is "held" together by the Sun's powerful gravitational pull, which also maintains the planets' elliptical orbits around it.

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Drag each item to the correct location to indicate whether it addresses the Clean Water Act or the Safe Drinking Water Act. Items may be used more than once or not at all.wastewater managementsurface water qualitygroundwater contaminationsurface water quality

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Clean water act : wastewater management, bottled water purify

Safe drinking water act : groundwater contamination, surface water quality

The clean water act and the safe drinking water act are the two acts passes in the US of America. The significant point and reason for the both the acts being passed is that the residents of the nation ought to get clean drinking water to drink.

Yet, there are a few distinctions between both the acts passed by the public authority. The significant distinction between the two is that the safe drinking water act tends to the ground and the surface water quality where as the clean water act doesn't do as such.

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Subarctic climate zones occur along??

Answers

A subarctic or boreal climate is a source region of cold air that hits southern temperate latitudes  in winter. 027. Found in central and eastern North America, and in Asia between 30 and 60 degrees north latitude, in the major  conflict zones between polar and tropical air masses.

What is subarctic climate like?

The subarctic climate has short, cool summers and bitterly cold winters. The subarctic zone has the coldest temperatures outside Antarctica and the widest annual temperature range of any climate zone. Summer is short, but the days are fairly long, with June days lasting 18.8 hours at 60 degrees north latitude.

Where subarctic climate found?

The subarctic climate is only found in the northern hemisphere because the southern hemisphere does not have large landmasses at the same latitude. A vast subarctic climate stretches across northern North America, from Newfoundland to Alaska.

Causes of subarctic climates?

The main cause of subarctic temperatures is latitude. Temperatures can reach minus 40 degrees Celsius in  winter and  as high as 85 degrees Celsius in summer. This is the widest temperature range of any climatic zone. It makes a temperature range of  125 degrees.

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Likelihood of Fossilization ellyfish plant leaf clam fish coyote Least Likely Most Likely

Answers

Probability of Fossilization Hard bodily components like bones, teeth, shells, and other can be reasonably easily preserved as fossils. To maintain species like jellyfish, particular circumstances are required.

Although putting a temporal limit on fossilization seems tempting, the variety of possible factors, particularly those influenced by depositional context, make this a challenging topic to answer. At one extreme, a bone must be entirely deteriorated before it can be recrystallized to become a fossil. Many depositional settings don't know how rapidly that can happen in a post-mortem context. In a study on bone diagenesis in a wetland setting, the bones underwent substantial chemical and physical changes after 3 years, with some differences being apparent as early as the first year.

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