Isolated submarine volcanic mountains with a vertical relief of greater than 1000 meters are called- Seamounts
Underwater mountains known as seamounts rise hundreds or thousands of feet above the ocean's surface. Typically, these are extinct volcanoes that produced lava heaps when they were active, which occasionally caused the ocean's surface to break.
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. Oceanic crust is forced toward the Earth's hot center around subduction zones where it melts and forms magma that rises buoyantly to the surface and explodes to produce volcanoes and seamounts.
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12) Name four countries with more than one million inhabitants that are not a member of he United Nations.
Answer:
TaiwanAkrotiriAbkhaziaAlandExplanation:
Calculate how many days of solar insolation at 250 watts/m2 would be required to melt the arctic ocean surface ice coverage from 14 x106 km2 down to 4 x106 km2.
28.24 days of solar insolation would be required to melt down the artic ocean surface.
Intensity of solar radiation = 250 watt/m²
= 250 Js⁻¹/m²
Thickness of ice coverage = 2m
Ice coverage to be melt = 14 million km² - 4 million km²
= 10 million km²
= 10 × 10,00,000 km²
= 10⁷ km²
= 10⁷ × 10⁶m
= 10¹³m
Heat reaches to surface per second = 250 Js⁻¹/m² × 10¹³m
= 2.5 × 10¹⁵ J/s
Now,
Total volume of ice = 10¹³ m² × 2m
= 2 × 10¹³ m³
Latent heat of ice = 3.33 × 10⁵J/Kg
Density of ice = 917 kg/m³
Total mass of ice = 917 × 2 × 10¹³
= 1834 × 10¹³kg
∴Heat required to melt whole ice coverage = Mass × Latent Heat
= 1834 × 10¹³kg × 3.33 × 10⁵J/Kg
= 6.11 × 10²¹ J
Total time taken to melt whole ice = 6.11 × 10²¹ J / 2.5 × 10¹⁵ J/s
= 2.44 × 10⁶s
Since, 1 Day = 86400s
∴ 2.44 × 10⁶s = 2440000/86400 Days
=28.24 Days
Thus, 28.24 days of solar insolation would be required to melt down the artic ocean surface.
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Please help due tonight
Answer:d
Explanation:
rank the following earth materials in order of their most likely occurrence, starting at earth's surface. think about moving from the crust to the mantle, and then to the outer and inner cores.
The following geological materials, are listed in order of most promise, beginning at the earth's surface.
1. Granite and basalt.
2. Increasing amounts of olivine and pyroxene.
3. Minerals that are only stable at extreme pressures; Fe-Mg silica and oxides.
4. Molten iron with nickel and some other elements.
5. Crystalline iron and iron-nickel alloy.
What is the crust?The crust is the topmost solid shell of the planetary body, brown dwarf, or natural satellite. It is normally recognized from the earth's mantle by its chemical composition; nevertheless, in the case of icy satellites, it may be differentiated by its phase.
Earthly mantle:A mantle is a layer within a planet that is bordered below by a nucleus and above by a crust. Mantles are composed of rock or ice and are the thickest and most substantial layer of a planetary body.
What is Earth's inner core?Earth's inner core is the planet's deepest geologic layer. It is a solid ball with a radius of around 1,220 km, which is around 20% of Humankind's radius or 70% of the Moon's diameter.
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In which biome do plants have waxy leaves to prevent water loss and spines/thorns to discour
animals from eating them?.
A. temperate forest
B. rainforest
C. hot desert
D. savanna
Answer: C
Explanation: They are subjected to high temperatures and scarcity of water. To prevent the loss of water through transpiration or evaporation desert plants have leaves modified into spines and the epidermis is covered with a thick waxy coating.
In the geologic past, the continents on either side of the Atlantic Ocean were connected as part of a single landmass called Laurasia. The break up of Laurasia led to the formation of North America and the Eurasia.
The Mid-Atlantic Ridge is a divergent tectonic plate boundary. Two plates are moving _______ each other along this boundary. The result of this motion is that North America is moving _______ Europe.
A. away from; toward
B. toward; toward
C. away from; away from
D. toward;away from
(Study Island question)
Answer:
c
Explanation:
Since part of same landmass drifted away it means the plates are moving away from each other and results in continents moving away
Supposed you lived on the sun, would you see the moon going through phases as it orbits the earth?
As gravity and distance play a significant effect, the atmosphere of outer space is not suitable for viewing the planet from the sun.
We can't see the earth clearly because of the glare or brightness from the sun, which would obscure our vision of it when we look at it from the angle where the sun and moon appear to be revolving around the earth in a closed orbit.
Moon phases are influenced by the sun and the earth. Half of the moon is always illuminated by the sun. However, where the moon is in its orbit around Earth affects how much moonlight is visible.
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The earthquake's magnitude and intensity both tell you how severe an earthquake may be. How are they different?
a)The intensity of an earthquake tells you how much damage has been caused, while the magnitude tells you how much energy has been released from the earthquake.
b)The magnitude tells you how much damage has been caused by the earthquake, while the intensity tells you how much energy was released by the earthquake.
The earthquake's magnitude and intensity both tell you how severe an earthquake may be. They are different because "The intensity of an earthquake tells you how much damage has been caused, while the magnitude tells you how much energy has been released from the earthquake".
What is an Earthquake ?A abrupt release of energy in the Earth's lithosphere that results in seismic waves causes an earthquake, which is the shaking of the planet's surface. Earthquakes can range in strength from those that are so small that no one can feel them to those that are so powerful that they upend entire cities and send people and objects flying.
Hence, "The intensity of an earthquake tells you how much damage has been caused, while the magnitude tells you how much energy has been released from the earthquake", so option A is the correct answer.
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Where can magma form?
Answer:
.
Explanation:
Magma originates in the lower part of the Earth's crust and in the upper portion of the mantle. Most of the mantle and crust are solid, so the presence of magma is crucial to understanding the geology and morphology of the mantle.
The temperature stability of earth’s atmosphere is mostly due to _______. a. the seasonal changes in day length b. the rotation of earth about its axis c. plant respiration d. water in the oceans acting as a thermoregulator please select the best answer from the choices provided a b c d
The correct answer to the question is option D. water in the oceans acts as a thermoregulator that stabilizes the earth's atmosphere's temperature.
The atmosphere is described as the location of air and fuel enveloping objects in space, like stars and planets, or the air around any location. Earth's environment is composed of about 78 percent nitrogen, 21 percent oxygen, 0.9 percent argon, and 0.1 percent other gases. trace amounts of carbon dioxide, methane, water vapor, and neon are a number of the other gases that make up the last 0.1 percent.
The environment includes the air that we breathe; protects us from the dangerous radiation of the solar; helps to preserve the planet's warmth on the floor, and plays a very vital role in the water cycle. There are four major layers of the atmosphere. From lowest to highest, the major layers are the troposphere, stratosphere, mesosphere, thermosphere, and exosphere.
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The correct option is (d). The temperature stability of earth's atmosphere is mostly due to water in the ocean act as thermoregulation.
The ability of an organism to maintain its body temperature within predetermined limits despite drastically different environmental temperatures is known as thermoregulation.
The prefix "thermo-" determines and contributes to words with meanings related to heat, warmth, hotness, temperature, or thermal energy. The phrase is primarily used in technical and scientific language. Additionally, it can be used to create compound words that can begin in the middle, at the beginning, or at the end of a word.
A tiny part of your brain called the hypothalamus regulates your body's temperature. Your nervous system, muscles, organs, and glands receive signals from your hypothalamus if it determines that your body's temperature is abnormally high or low. These signals aid in regulating your body temperature.
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Loda is writing an article about climate change. her article will be about the issues of landfills and her suggestions on alternate ways to deal with household waste. which type of text structure would best fit this article? cause and effect chronological description problem and solution
Problem and Solution type of text structure would best fit this article.
Text structures are the hierarchical arrangements utilized inside lengthier or more complex texts that are appropriate for the genre and purpose. Sequence/process, description, time order/chronology, proposition/support, compare/contrast, problem/solution, cause/effect, inductive/deductive, and study are a few examples of text structures. Over the past two decades, research on literacy acquisition has shown that:
a) an awareness of different text structures and their functions improves students' comprehension of what they read
b) some text structures are easier to learn and grasp before other, more complicated forms.
A literary structure that presents an issue in the first paragraph or section and then moves on to address that problem's solution in the next paragraph or section. Example Overfilling of nearby landfills is a concern that is discussed in the opening paragraph. The paragraph that follows provides details on a recycling initiative designed to address the issue.
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Answer:
Problem and Solution
Explanation:
I took the test
in northern crete, mixed deposits of volcanic ash, cultural material, and marine fossils near the beach are very similar to those found in coastal regions after:
In northern crete, mixed deposits of volcanic ash, cultural material, and marine fossils near the beach are very similar to those found in coastal regions after the 2004 Asian (Indonesian) earthquake.
The Boxing Day Tsunami, also known as the Sumatra-Andaman Earthquake or the Indian Ocean Earthquake of 2004, devastated Indonesia on December 26. An undersea megathrust earthquake with a magnitude of 9.1 to 9.3, the Sumatra-Andaman earthquake. A succession of enormous tsunami waves that could reach 30 meters high (100ft). It is estimated that this tsunami killed more than 227,000 people in 14 different nations, severely affecting coastal towns. As a result, it ranks among the most terrible and fatal natural disasters in recorded history. As a result, significant changes in living conditions and effects on the general health and wellbeing of communities were caused directly.
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Why is there a need for our water supply to be managed and distributed?
There is a need for our water supply to be managed and distributed because it delivers water from the treatment facility to the consumer. Additionally, distribution systems might offer storage in addition to adequate flow and pressure for fire protection.
A water supply system provides services essential to the operation of industrialized society as well as essential for emergency preparedness and post-disaster recovery. It transports water from sources to customers (e.g., earthquakes). A water distribution system is a component of the water supply network that transports potable water from a centralized treatment facility or wells to consumers to meet their needs for household use, business use, industrial use, and firefighting. The majority of the water in urban and suburban areas is piped in from a central water supply. A river, a lake that formed naturally, a reservoir created by a dam, or a number of deep wells could serve as the water source. Aqueducts are used to transport water from distant reservoirs to numerous large cities.
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The cost to produce burgers decreased with invention of new grills. Which factor causes shift?
other goods
technology
Resource price
sllers in the market
The cost to produce burgers decreased with invention of new grills. Resource price factor causes shift.
The resource demand is the term that is used to refer to the process that deals with the measurement of the numbers of available resources that can take care of the demand for various work processes.
The factors that have the ability to shift the resource demand curve are:
Resource productivityPrices of other resourcesProduct demandDeterminants of demands are income, consumer preferences, number of buyers, price related of goods and expectation of future. A change in quantity demanded is caused by a change in its own price of the good. A change in demand is caused by a changed in determinants.
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The cost to produce burgers decreased with invention of new grills. The Resource price factor causes the shift.
The correct option is c.
When constructing a supply curve, the prices of the resource inputs that influence manufacturing costs and a good's capacity to sell are considered to be constant.
The process of measuring the quantity of resources that are readily accessible and able to meet the demand for various job activities is referred to as resource demand.
Price shift in direct proportion to demand, and vice versa. Only businesses that are prepared to pay the price will be able to obtain the resources when demand is strong, and they will only be able to do so by creating successful goods or services that customers are willing to pay more for.
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In the diagram, m ∠ACB=55
Find m ∠ACE
Given the information presented, ∠ACE = 125° This is computed using Angles on a Straight line and the principle of alternate angles. See explanation relating to same below.
What is the analysis and calculation justifying the above?Note that
ACF = 90°
ACB = 55°
ACF = ACD [Right Angle on a Straight line]
FCE = BCD [Alternate Angles]
ACE = ACF + FCE
Since ACB = 55°;
then
BCD = ACD - ACB [Angles on a Straight Line]
BCD = 90 - 55 [Recall ACF = ACD]
∠BCD = 35°
Since BCD = FCE
Then ACE = 90° + 35°
∠ ACE = 125°
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The celestial equator divides the celestial sphere in two hemishperes. true false
The celestial equator divides the celestial sphere in two hemispheres. This statement is true.
The celestial equator divides the celestial sphere among northern and southern hemispheres.
The celestial equator is the great circle of the fictitious celestial sphere on the same level as the equator of Earth. This level of instance of bases the equatorial coordinate system.
In other words, the celestial equator is an extract projection of the terrestrial equator toward outer space.
The projection into space of the earth's equator; an fictitious circle equidistant through the celestial poles.
A great circle separating the northern and southern hemispheres of the celestial sphere and stays in the same level as the Earth's equator.
The celestial equator is a projection of the Earth's equator apparent onto the celestial sphere and is generally used as the reference point in regulating a celestial body's turndown.
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you have carried out radiometric analysis on four igneous rocks uncovered at several sites you are exploring. from the percent lead you determine in each case, what is the approximate age of the rock?
lead is extracted from uranium to create lead ore. A system might go through a geological process that removes lead, leaving the resultant system devoid of uranium.
Rocks are frequently dated using lead isotopes, which offer some of the best proof of the Earth's age. The activities producing lead isotopes must satisfy all four requirements of a natural clock—an irreversible process, a uniform rate, a starting condition, and a final condition—in order to be utilised as a natural clock to determine the age of the world. This approach ultimately influenced the creation of isochrons, which plot two isotopes against one another to determine the age of the mineral or rock.
Scientists can establish how long the parent isotope has existed by comparing the relative levels of the two isotopes and understanding the rate of decay.
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question what is the beginning of a river called? mouth mouth source source tributary tributary estuary
The beginning of a river is called a source.
Rivers provide water for irrigation, domestic supply, strength era, and enterprise as well as a number of other surroundings services and intrinsic and biodiversity values. managing rivers to provide more than one blessing is consequently foundational to water protection and other policy priorities.
Rivers aren't best the source of water for human intake however in addition they maintain agriculture and gain us in different ways. once the water in rivers gets polluted, there are several harmful implications for us human beings. therefore, we ought to constantly try to maintain our rivers smooth and unfastened from pollution.
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A globe is what type of model of the earth? a) analog model b) physical model c) quantitative model d) symbolic model
Answer: Physical Model
Explanation:
What are some Examples of Scarcity?
Answer:
EIN lookup my way back home now and tomorrow morning you want me to the list
Answer:
Examples of scarcity
Land – a shortage of fertile land for populations to grow food. ...Water scarcity – Global warming and changing weather, has caused some parts of the world to become drier and rivers to dry up. ...Labour shortages. ...Health care shortages. ...Seasonal shortages. ...Fixed supply of roads.If you were traveling from South Africa to Georgia which currents would you take to arrive there?
Answer:
oceanic current
Explanation:
The area of a rectangle is 424242 square millimeters. The length is 777 millimeters.
What is the perimeter of the rectangle?
The area of a rectangle is 424242 square millimeters. The length is 777 millimeters. The perimeter of the rectangle is 2646 millimeters.
In Euclidean plane geometry, a rectangle is a quadrilateral with four right angles. Equiangular means that each of its angles is identical, so it can also be defined as an equiangular rectangle. Or a parallelogram containing a right angle. A rectangle with four equal sides is a square.
Area of rectangle = Length × Breadth
Perimeter of rectangle = 2 (length + breadth)
A rectangle is a quadrilateral with all equal angles, i.e. real angles. Rectangles have equal angles as well as equal sides. So a square is a special case of a rectangle. In other words, rectangles are sometimes squares (but all sides are the same). So we can say that a square is a special kind of rectangle. All sides have the same period. Therefore, all squares are rectangles because they are quadrilaterals with all four corners and right angles. Therefore, not all rectangles are squares. To be square, the sides must be the same length.
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Find the next number in 17,13,9,5 sequence
Answer:
1
Explanation:
subtract four
17 - 4 is 13 - 4 is 9 - 4 is 5 - 4 is 1
The Mississippi-Missouri River can be found in:
Answer:
” There is so much to consider along this great American waterway as it courses through 10 states—Minnesota, Wisconsin, Iowa, Illinois, Missouri, Kentucky, Tennessee, Arkansas, Mississippi, and Louisiana—it would seem easy to overlook a few pieces.
Explanation:
What is the first sentance in constitution?
Answer:
which countries constitution?
Our environments can change human behavior. Describe some ways that environment changes the choices we make
What does the connection between humans and environment have to do with the study of geography?
Humans change their behaviors to adapt to their surroundings in many ways. Humans adapt by building dwelling places that fit the climate and landscape they live in. The environment also has a significant impact on modes of transportation, economy, the types of activities humans participate in, and even communication methods. The way that humans interact and relate to their environment helps geographers understand the unique qualities of a place and helps humans interpret the past, understand the present, and prepare for the future.
What is environment changes?
Both natural and anthropogenic processes can cause environmental change. By converting and moving huge amounts of energy and materials, natural system and human activities both contribute to global changes.
Therefore,
Our environments can change human behavior. Describe some ways that environment changes the choices we make
What does the connection between humans and environment have to do with the study of geography?
Humans change their behaviors to adapt to their surroundings in many ways. Humans adapt by building dwelling places that fit the climate and landscape they live in. The environment also has a significant impact on modes of transportation, economy, the types of activities humans participate in, and even communication methods. The way that humans interact and relate to their environment helps geographers understand the unique qualities of a place and helps humans interpret the past, understand the present, and prepare for the future.
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1. Cross a homozygous tall plant (TT) with a homozygous
short plant (tt).
+
TTT+T
+ T+++
50
What percentage of offspring will be tall?
What percentage of offspring will be short?
The percentage of offspring will be tall a 75% possibility for the offspring to be tall. 25% purebred tall and 50% hybrid.
In mathematics, a percentage is a number or ratio expressed as a fraction of 100. It is often indicated by the percent sign '%', but the abbreviations 'pct.', 'pct', and 'pc' are also sometimes used. Percentages are dimensionless numbers. It has no units of measure.
In mathematics, a percentage is a number or ratio that is a fraction of 100. It is often represented by the symbol '%' or simply 'percent' or 'percent'. For example, 35% is equivalent to 0.35, or fractions as decimals. A percentage can be defined as a dimensionless ratio of two numbers. It can be used to compare two numbers to see how much one is greater than the other or to compare two numbers using a common scale.
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looking at global temperature distributions, it is seen that the latitudinal temperature gradient is weakest in the hemisphere experiencing winter it is difficult to explain the behavior of isotherms over the continents temperatures over land are colder than those over water at the same latitude in water temperatures increase poleward
The correct answer is temperatures over land are colder than those over water at the same latitude in water .
Latitude is used to calculate how far north or south of the Equator you are. It is calculated using 180 fictitious lines that are drawn in circles east-west of the equator. Parallels are the names for these lines. An imaginary ring connecting all points that share a parallel is known as a circle of latitude.
Latitudes are horizontal lines that indicate how far away from the equator a location is. Longitudes are vertical lines that represent the east and west directions relative to Greenwich, England's meridian. Cartographers, geographers, and others can locate points or locations on the globe by combining latitude and longitude.
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does total runoff occur over a longer or shorter time span after an area has been urbanized? runoff occurs over a time after urbanization
Runoff occurs over a shorter time after urbanization.
Under natural conditions, runoff velocities are lower than in built-up areas and runoff occurs over a longer period of time. Also, the pre-development peak runoff rate is much lower than the post-development peak runoff rate due to attenuation and absorption by soil and vegetation.
Impermeable surfaces with urbanization reduce infiltration, increase surface runoff, and alter the pathways by which water reaches urban streams. Temperature, wind speed and humidity are the main meteorological factors affecting runoff. They affect the rate of evaporation and transpiration, thus affecting soil moisture content and infiltration rates, and ultimately runoff.
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write a brief statement of a hypothesis you think might best explain the variation in the geothermal gradient within earth.
The rise in temperature with depth in the Earth's crust is known as the geothermal gradient. Within the first 3 to 5 kilometers (2 to 3 miles) of the Earth's surface, a typical geothermal gradient in normal continental crust is approximately 25°C/km.
The gradient varies between the near surface and 400 ft (122 m), depending on how the atmosphere and moving ground water affect it. Temperature rises with depth almost usually below that zone.
It suggests that the Earth's surface is receiving heat from the planet's warm center. For every kilometer of depth, the temperature rises by about 25°C on average.
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