Answer:
flood well I think this is the answer
How often would we have leap years if Earth's orbital period were 365.1 days?
a. every year b. every 2 years
c. every 4 yearsd. d. every 10 yearse.
Brifly explain Pollution and climate change
Answer:
La contaminación, principalmente identificada como una consecuencia dentro de los paisajes urbanos, también está vinculada al cambio climático. Tanto el cambio climático como la contaminación del aire se ven empeorados por la combustión de combustibles fósiles, que incrementa las emisiones de CO2.
Explanation:
What is the way forward regarding droughts for the government and the people of South Africa?
Government and the people of South Africa can have a good irrigation system as well as good water storage facilities.
Want is drought?Drought is a long period of dryness, there is usually no rain and it occur in the natural climate cycle.
Drought can affect plants leading to their wilting or death. It can occur anywhere in the world.
Way forward regarding droughts for the government and the people of South African is,
A good irrigation system, this system will conserve water during raining season and during dry season water will be made available especially to plants.Storage facilities can be used by the people to conserve water especially during raining seasons.Therefore, Government and the people of South Africa can have a good irrigation system as well as good water storage facilities
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Which observatory detects X-rays
and gamma rays?
A. The Hubble Space Telescope
B. The Spitzer Space Telescope
C. The Compton Gamma Ray Observatory
D. The Chandra X-ray Observatory
Answer:
Chandra X-ray Observatory
Explanation:
Answer:
the chandra x-ray observatory
Explanation:
What plate activity is occurring in this picture
Answer:
subduction
Explanation:
3. It's the year 3030 and society is completely dependent on computers and robots. A young boy named Domino is flying his horering board to school when all the machines start attacking people due to a powerful computer virus. What will Domino do now that the machines that are supposed to help him have tumed against him? Protagonist: Type of Contit Antagonist:
Answer:
3. It's the year 3030 and society is completely dependent on computers and robots. A young boy named Domino is flying his horering board to school when all the machines start attacking people due to a powerful computer virus. What will Domino do now that the machines that are supposed to help him have tumed against him? Protagonist: Type of Contit Antagonist:
Explanation: mag aral ka wag puro asa sa brainly
Which map balances area and shape distortion, resulting in a fairly accurate picture of the world?
Answer:
AutaGraph
Explanation:El mapa se llama AutaGraph y su autor se inspiró en origami, la milenaria técnica japonesa de plegado de papel.
Describe two observations that Galileo was the first to make with his telescope.
Answer:Galileo sparked the birth of modern astronomy with his observations of the Moon, phases of Venus, moons around Jupiter, sunspots, and the news that seemingly countless individual stars make up the Milky Way Galaxy.
Explanation: Mark me brainly please
Which legendary surrealist artist is famous for painting melting clocks?
Which football club plays its home games at Loftus Road
Continental United States has 4 time zones, can you name them?
1) icon Salvador Dalí is the legendary surrealist artist is famous for painting melting clocks
2) Queens Park Rangers Football Club
3)Eastern, Central, Mountain, and Pacific.
Answer: Out of the hundreds of artworks created by Salvador Dali, his iconic melting clock painting is no doubt the most famous.
Why are parks an important part of any city?
Answer:
Parks provide intrinsic environmental, aesthetic, and recreation benefits to our cities. They are also a source of positive economic benefits.
The interaction of gravity and the moon's inertia keeps the moon in orbit around Earth. What do the three arrows represent in the figure of Earth and the moon? Enter the correct label for each arrow in the diagram.
The three arrows in the illustration of the Earth and Moon stand for the gravitational pull of the Earth on the Moon, the centripetal force acting on the Moon, and the inertia of the Moon.
How much centripetal force exists between Earth and the moon?Centripetal force is responsible for the moon's nearly round orbit around the Earth. The centripetal force in this instance is gravity. Newton's Universal Law of Gravitation governs this force.
What does the centripetal force on the moon represent?The centripetal force required to keep planets in orbit around the Sun and all kinds of satellites in orbit around the Earth is provided by gravitational attraction. The Moon continues to orbit the Earth because to gravity. The velocity of the Moon is continuously shifting in one direction.
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The European Union established a __________ called the euro.
A.
pop culture competition
B.
common currency
C.
homogenous culture
D.
common language.
Answer:
B. Commo Currency
Answer:
Explanation:
B. Commo Currency
A tool used to measure precipitation is a __________. A. barometer B. rain gauge C. thermometer D. weather vane Please select the best answer from the choices provided A B C D
Answer:
its an barometer
Explanation:
Answer:
A
Explanation:
Sometimes a diffusion process encounters barriers that slow or stop the spread of an innovation. Which of the following is an example of such a barrier?
a. A lack of infrastructure to support a new technology
b. A change in the price of energy
c. A jump from contagious to hierarchical diffusion
d. A transition from stimulus to contagious diffusion
e. A new form of media to broadcast information
An example of a barrier that slow or stop the spread of an innovation is: a. A lack of infrastructure to support a new technology.
Innovation can be defined as the creation of a new product of any category such as automobile, building, phones, electronics, etc., which generates revenue (money) for the innovators or manufacturers when it is purchased by the end users (consumers).
Diffusion of innovation refers to a process through which a new idea, new product or new technology is adopted or not adopted by the target audience (consumers). Thus, the diffusion of innovation explains how, why, and at what rate a new idea, new product or new technology spread across a market.
However, a diffusion process would encounter barriers that inhibit or stop the spread of an innovation when there is a lack of suitable infrastructure to support a new technology.
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Uses of the savanna grassland vegetation.
Answer:
It is used for grazing animals.
It allows growth of the herbaceous layer.
It attracts tourists who bring income.
Explanation:
Richest oil producing region in the world
A. Persian/Arabian Gulf
B. Persian/American Gulf
C. Paris/Arabian Gulf
D. Iranian/Arabian Gulf
Answer:
d
Explanation:
Answer:
Its A other guy was wrong
Explanation:
When a river is in a steady state in which the balance between the supply of sediment and the amount of sediment that the river can carry is in a near equilibrium, the river is referred to as
Human activities can disrupt a river's steady-state equilibrium and cause changes in the river's channel shape, flow characteristics, and ecological balance, with implications for human communities relying on the river.
When a river is in a steady state, it means that the balance between the supply of sediment from upstream erosion and the amount of sediment that the river can transport downstream is in a state of near equilibrium. This equilibrium state is maintained over a long period, and the river maintains a consistent channel shape, flow velocity, and sediment load.
In such a state, the river can transport sediment without causing significant erosion or deposition in its channel. The sediment transport capacity of the river is controlled by various factors such as the flow velocity, channel slope, and sediment size and composition. These factors affect the ability of the river to transport sediment, and any changes in them can cause the river to shift from its steady state.
However, human activities such as damming, mining, and deforestation can cause significant changes in the sediment supply and transport capacity of the river, disrupting its steady-state equilibrium. This disruption can lead to erosion or deposition, resulting in changes in the river's channel shape and flow characteristics, affecting the river's ecological balance and the human communities that rely on it.
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What is the impact of deforestation on carbon in the Earth's atmosphere?
Deforestation transfers carbon from the atmosphere to the crust of the Earth.
Deforestation adds carbon to the atmosphere that is removed from storage in biomass and soil.
Deforestation removes carbon from the atmosphere because agricultural land holds more carbon than forest.
Deforestation is carbon neutral, neither adding nor removing carbon from the atmosphere.
The impact of deforestation on carbon in the Earth's atmosphere is that it adds carbon to the atmosphere that is removed from storage in biomass and soil.
Trees and vegetation store a significant amount of carbon through the process of photosynthesis.
When forests are cleared for various purposes, such as agriculture, logging, or urbanization, the stored carbon is released back into the atmosphere in the form of carbon dioxide (CO2) through burning or decomposition. This contributes to the increase in atmospheric CO2 levels, which is a major driver of climate change. Therefore, deforestation acts as a source of carbon emissions, exacerbating the greenhouse effect and global warming.
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the rainshadow effect influences the region west of the rockies because the area receives only ten to twenty inches of precipitation each year. true false
False, the rain shadow effect influences the east region immediately. The statement given is a wrong statement.
A rain shadow means, A mountainous area's leeward side, which faces the direction of the dominant winds, is known as the region's leeward side, and is where rainfall is noticeably reduced. The predominant onshore breezes transport evaporating moisture from aquatic bodies (such seas and huge lakes) to the drier and hotter inland regions. The moist air is forced upslope towards the apex of elevated landforms as it comes into contact with them, where it expands, cools, condenses, and begins to precipitate. The majority of the humidity will be lost to precipitation over the windward side, sometimes referred to as the rain ward side, if the landforms are tall and wide enough. This is called rain shadow. A region known as a "rain shadow" is one that was compelled to turn into a desert because nearby mountain ranges prevented any rainy, plant-growing conditions. On the rainy side of the mountain.
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Most often cited as the causative factor for acid deposition.
Answer: Sulfur dioxide
How will population growth affect the frequency of earthquakes that result in more than 1 million deaths?
We may experience them as often as once per century: five times as frequently as now population growth affects the frequency of earthquakes that result in more than 1 million deaths.
Population growth and distribution, especially increasing population density and urbanization, increase vulnerability to disasters. Nearly 80% of the U.S. population lives in urban areas, with a growing population concentration in coastal areas and flood-prone areas.
The pressure of population growth is forcing many people to migrate to another region in a highly precarious situation. Humiliation and poverty. Lack of minimal health care and basic education are exacerbating factors that can turn emergencies into disasters and social tensions into complex emergencies.
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Effects of global warming on the economy. (3x5)
During the breakup of a continent along a divergent plate boundary, deep faulted structures called ______ are generate
Answer:
Rift Valley
Explanation:
I did a quizlet on it LOL
Of the following types of mass movements, which can move fastest?
Of the following types of mass movements, rockfalls can move the fastest. Rockfalls are sudden and fast mass movements that are usually triggered by vibrations from earthquakes or human activites, weathering, and erosion.
They occur when rocks break away from steep rock faces and free fall or bounce to the bottom. These movements are relatively faster than other types of mass movements because they occur without warning and are difficult to predict.The speed of rockfalls depends on various factors, such as the steepness of the slope, the size of the rock fragments, the angle of impact, and the type of rocks involved. Larger rocks tend to move slower than smaller rocks due to air resistance and friction. However, the velocity of rockfalls can range from a few meters per second to more than 300 km/hour.Rockfalls can be dangerous and cause significant damage to infrastructure, homes, and people. Therefore, it is important to monitor the areas prone to rockfalls and take appropriate measures to prevent or mitigate their occurrence.
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Please Help Me!!!........
arrange this EMAIHTPCMER
Answer:
METAMORPHIC
Explanation:
Generally, rocks can be classified into three types in nature. they are: igneous, sedimentary and metamorphic rocks. Each of these rocks has individual mode of formation.
Metamorphic rock is one formed due to the application of heat and pressure on an originally existing rock. Metamorphic rocks are crystalline because of their nature, and contain some minerals.
Thus, arranging the word appropriately gives METAMORPHIC.
Rearranging EMAIHTPCMER would give us the word METAMORPHIC
Metamorphic Rock is one of the types of rock that is formed as a result of subjection to extreme heat and pressure. They are usually a byproduct of igneous and sedimentary rocks.
There are three major types of metamorphic rock and they are:
Contact: This occurs when molten lava directly changes an already existing rockRegional: This happens in a large area, where rocks are broken during mountain buildingDynamic: This is caused by large amounts of heat and pressure on the rocks which make them change shape.Some examples of metamorphic rocks include:
QuartzSchistGneissSlate, etcRead more here:
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especifique qual a principal distorção representada nos territórios na projeção de mercator
Question 14 4 If it is 95°F today, how much water vapor would be needed to saturate the air in g/kg O 10 g/kg O 14 g/kg O 20 g/kg 26.5 g/kg O 35 g/kg
Answer:
Explanation:For the atmosphere, the drop in temperature of rising, unsaturated air is about 10 degrees C/1000 meters (5.5 deg F per 1000 feet) altitude. If a parcel of air is at 24 degrees C at sea level, and it rises to 1000 meters, its temperature will go down to 14 degrees C. If it goes up to 2000 meters, its temperature will go down to 4 degrees C.
4. What will its temperature be at 3000 meters?
The temperature would be minus 6 degrees C.
This rate of temperature change of unsaturated air with changing altitude is called the dry adiabatic lapse rate: the rate of change of the temperature of rising or subsiding air when no condensation is taking place (we’ll talk about the condensation part shortly).
If the air subsides, it also changes temperature. It warms up, and it is warming up at the dry adiabatic lapse rate. So, if the air at 4000 meters altitude has a temperature of -10 degrees C, and it subsides to 3000 meters, its temperature will warm up to 0 degrees C. If it continues to subside, then at 2000 meters, its temperature will be 10 degrees C.
5. What will the temperature of this air be at 1000 meters?
Its temperature would be 20 degrees C.
Make sure you notice that we are talking about moving air (rising or subsiding), not still air. The change in temperature of still air (that is, air that is not rising or subsiding) follows the environmental lapse rate, which varies considerably, but averages about 6.5 deg C/1000 meters (3.6 deg/1000 feet). In still air, if you went up in a hot air balloon, carrying a thermometer and taking the air temperature every 1000 meters, on average the temperature would drop 6.5 degrees C every 1000 meters. The rate of temperature change as you rise in still air is not as great as the rate of change of rising air; that is, the air parcel does not cool off as fast.
For instance, the air temperature at sea level is 28 degrees C. Climb into your balloon, release the tethers, and go up 1000 meters in the still air.
6. On average, what will the air temperature be at 1000 meters?
The temperature will be 21.5 degrees C.
Well, what happens is that the air will still cool off, but not as fast. If water vapor in the air is condensing, the adiabatic rate is lower. The air is only cooling off at a rate of about 5 degrees C/1000 meters (2.7 deg per 1000 feet). This is called the saturated adiabatic lapse rate (or the wet adiabatic lapse rate, or the moist adiabatic lapse rate, depending on the textbook you are using). The saturated lapse rate varies with the original temperature of the air parcel, but 5 degrees C/1000 meters is a commonly used value.
So, let’s assume a rising parcel of air reaches the lifting condensation level at 2000 meters, at a dew point temperature of 12 degrees C. At this point, clouds will form. As the air continues to rise, it will continue to decrease in temperature, but more slowly than it cooled off before condensation began.
11. What will the temperature of this parcel of air be at 3000 meters?
The temperature at 3000 meters will be approximately 7 degrees C. The saturated adiabatic lapse rate is given as 5 deg C/1000 meters, so if you go up 1000 meters, the air will cool off 5 degrees. 12-5=7.
can the pattern of glacial striations be explained if continents have always been in their present-day locations?
Can the pattern of glacial striations be explained if continents have always been in their present-day locations.
No, because glacial ice moves toward coastlines, as many of the striations indicate, not toward the middle of continents
About striated (geology)In geology, striations are grooves, made by geological processes, on the surface of rocks or minerals.
In Structural Geology, striations are linear grooves, or linear marks, resulting from the movement of faults. The direction of the scratches shows the direction of movement on the fault plane.
Similar striations, called glacial striations, can occur in areas experiencing glaciation. It can also be caused by underwater landslides.
Striations can also be patterns of growth or mineral habits that look like collections of hairline grooves, visible on the surface of certain mineral crystals. Examples of minerals that can show striated growth include pyrite, feldspar, quartz, tourmaline, chalcocite and sphalerite.
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Highly impermeable layers such as compacted clay or shale are known as ________.
Aquitards are very impermeable strata made of compressed shale or clay.
Water cannot enter through an impermeable layer, as the name suggests. An aquifer can be filled with purified water by using an injection well to pump or drain fluids into it. standing water table A ""water table"" is created when water ""persists"" on a layer of soil that is relatively impermeable at a depth.
A stratum or layer that prohibits or restricts the saturated movement of water in the soil serves as an impermeable layer or barrier for the purpose of subsurface drainage planning. Finding the layer, sometimes referred to as the barrier stratum, barrier layer, barrier zone, or impermeable boundary, frequently requires knowledge of the geology.
It's a layer that can't be broken through. It usually refers to water penetration, although it can also sometimes mean air penetration. An impermeable layer is one that prevents water from passing through it.
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