two different rivers have drops that are the same height. in river a, this section of the river is a waterfall. in river b, this section has a hydroelectric dam. in what way does the energy differ between the drops in the two rivers?

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Answer 1

Answer: Given are identical-height dips in two different rivers. There is a waterfall in this section of river A. There is a hydroelectric dam on this section of river B. The potential energy of the water is now transformed into kinetic energy as it falls, with the kinetic energy peaking at the waterfall's base.

Therefore, river A would have greater water kinetic energy than river B at the bottom of the descent. Similar to how, because the river's velocity is zero at that point, the top of the drop in river A has less kinetic energy than the top of the drop in river B


Related Questions

what happens to any layer effects that have been applied to a layer when you make changes to the layer?

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When you make changes to the layer, the layer effect are automatically updated. The layer is the area where you put your photo to edit, add text and watch how the layer effect tracks the change.

To make an effects, choose the layer and go to the Layer-> Layer Style menu. There are several effects that you can apply such as such as Drop Shadow, Inner Shadow, Outer Glow, Inner Glow, Bevels & Emboss, Gradient Overlay, Pattern Overlay. We can select any of them. Adjustment layers give you greater control and flexibility over image edits than direct adjustments — you can create nondestructive adjustments to the colors and tones in your image, and still editing the adjustment layers without permanently changing the pixels in the image.

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the national oceanic research institute is planning a research study on global warming in antarctica. the 16-month network schedule is presented below. it is followed by budgets for each activity. create a time-phased budget for the research project.

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The physical and living environment of Antarctica are changing as a result of the warming of the Antarctic Peninsula. As the sea ice conditions change, the distribution of penguin colonies has altered.

According to ice cores from Antarctica, present-day greenhouse gas concentrations are higher than ever, proving that warming on this continent is caused by human-induced climate change rather than a natural cycle. If these glaciers melt, the sea level will increase more. Over the next 50 years, a little increase in Antarctica's overall temperature is forecast. Any increase in the pace of ice melting is anticipated to be at least partially compensated by the warming's increased precipitation. A shelf of ice in East Antarctica did both in March 2022. The gigantic Conger-Glenzer ice shelf's collapse and breakup in March was one East Antarctic calving event that shocked the whole globe.

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you live on a coastline and a large hurricane may strike nearby. you measure the air pressure over several hours and see that the air pressure is gradually falling. is the hurricane coming towards you or moving away?

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If the air pressure is gradually falling, that means the hurricane is moving toward you.

Hurricane is a rotating storm system that's characterized by strong winds, a low-pressure center, and spiraling thunderstorms that produce heavy rains. In general, hurricanes are steered by global winds, especially tropical winds near the equator.

In hurricanes, the warm ocean air rises into the storm and forms an area of low pressure underneath it. It causes more air to rush in. The center of a hurricane has the lowest air pressure compared to the surrounding area. Therefore, if the air pressure is gradually dropping in the place where you're measuring it, that means the hurricane is moving toward you

Attached below is an image of Hurricane Kate which was captured by NASA on October 4, 2003.

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what is a typical rate for seafloor spreading? group of answer choices 2 cm/day 2 cm/hr 2 cm/yr 2 cm/s

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The average rate of seafloor expansion, according to the statement, is 2 cm each year.

What materials make up the seafloor?

Deposits of minerals we need every day, such metal, lead, iron, gold, silver, and phosphorous, can be found on the seafloor. These deposits are nodules on silt from the deep - sea plain that are generally 3 to 10 centimetres (1 to 4- inches) in width and appear as crusts on lava and other rocks.

How is the seafloor created?

One plate may move beneath the other as the plates meet, triggering earthquakes, volcanoes, or deep ocean trenches. Molten magma moves up between the plates as continents diverge, creating semi ridges, underwater volcanoes, extremophiles, and new ocean floor crust.

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The correct question is-

A typical rate of seafloor spreading in the Atlantic Ocean is ________.

Select one:

a. 2 feet per year

b. 0.1 inches per year

c. 20 feet per year

d. 2 centimeters per year

catastrophism, meaning the regular occurrence of geological or meteorological disturbances (catastrophes), was cuvier's attempt to explain the existence of

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Catastrophism, meaning the regular occurrence of geological or meteorological disturbances (catastrophes), was cuvier's attempt to explain the existence of the fossil record.

What is catastrophism?

In geography, catastrophism is defined as the process which has played a huge role in shaping the earth's structure.

Generally, catastrophism refers to violent, short-lived, or temporary and sudden natural processes that show incremental changes in the earth's surface. These changes include erosion and weathering which bring about definite transformation in the geological features of the earth.

Simply put, catastrophism is a series of natural catastrophes or events that bring about significant changes in the earth's structure

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what could happen to the mp air mass coming onshore off the pacific coast as it traverses the mountain ranges of the western united states

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Maritime Precipitation occurs as orographic precipitation when tropical mT-airmass is near the Pacific coast. as barriers, the Rocky Mountains.

The primary moisture-bearing and rain-producing air mass throughout the year is the maritime Tropical (mT). It moves toward the pole in the winter and is cooled by the earth's surface. As a result, it has low stratus or stratocumulus clouds, drizzle, and poor visibility.

Due to the high-pressure areas that are prominent there, warm, humid maritime tropical (mT) air develops over tropical and subtropical ocean waters. On the other hand, just south and east of the substantial winter oceanic low-pressure regions, cool, moist maritime polar (mP) air develops over the colder subpolar ocean waters.

Humans have long been concerned with forecasting and predicting future weather conditions as a result of the variability of weather phenomena.

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This solid layer of the earth is made of mostly iron and nickel.A. CrustB. Outer CoreC. Inner CoreD. Mantle

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This Inner Core solid layer of the earth is made of mostly iron and nickel

In contrast to Earth's mantle, the core of the planet is not accessible for direct measurement. Analysis of seismic waves and the Earth's magnetic field provide the majority of information about the planet's core. It is thought that an iron-nickel alloy and a few additional elements make up the inner core. The surface of the inner core is thought to have a temperature of roughly 5,700 K (5,430 °C; 9,800 °F), or about the same as the Sun's surface.

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Which list includes major events in the history of life on earth in the proper order, from earliest to most recent?.

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The first prokaryotes; photosynthesis; first eukaryotes-  colonization of land by plants and fungi.

What is prokaryotes?

Single-celled creatures known as prokaryotes are found in the Bacteria and Archaea domains. Prokaryotic cells lack organelles, have no nucleus, and are significantly smaller than eukaryotic cells. A cell wall protects every prokaryotic cell. Many additionally include a polysaccharide-based capsule or slime layer.

Prokaryotes are an important part of the earth's biota even though they cannot be seen with the eye. They produce critical elements of the earth's atmosphere, catalyze distinctive and essential transformations in the biogeochemical of the biosphere, and make up a sizable fraction of the genetic variety of life.

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during which of virginia's orogenic (mountain building) episodes was the geologic structure of massanutten synclinorium formed?

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The Virginian Alleghenian Orogeny's orogenic event produced the geologic structure of the Mass Newton Synclinorium.

One of the geologic structure-forming episodes that created the Appalachian Mountains and Allegheny Mountains was the Alleghenian orogeny, also known as the Appalachian orogeny. H.P. Woodward first suggested the name and spelling Alleghany orogeny in 1957.

In the late Paleozoic period, the central and southern Appalachian continental margin of North America collided with that of North Africa, causing the Alleghenian orogeny.

The Alleghenian deformation may be observed in the north, stretching northeast to Newfoundland. Later erosion weakened the mountain range and dispersed silt to the east and west.

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John finds a rock that contains large, light-colored mineral crystals. The rock shows no sign of being altered by heat or pressure. What can john infer about the rock?.

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John finds a rock that contains large, light-colored mineral crystals. the rock shows no sign of being altered by heat or pressure. John can infer about the rock formed from hardened magma.

A mixture of molten and semi-molten rocks called magma can be found beneath the Earth's surface. A hot liquid base, known as the melt, crystallized minerals, solid rocks incorporated into the melt from the surrounding confines, and dissolved gases make up this mixture, which is typically composed of four parts. Lava is the substance that is released from a vent, such as a volcano. Igneous rock is made from magma that has solidified after cooling. Between 1,292° and 2,372° Fahrenheit, the temperature of magma ranges from 700° to 1,300° Celsius. Because of this heat, magma is a very fluid and dynamic substance that can engage in physical and chemical transformations in a variety of different environments, forming new landforms.

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What is the composition and approximate thickness of the mantle? (site 1)

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The mantle's composition is ultramafic, meaning that compared to the crust, it has a higher concentration of iron, magnesium, less aluminum, and a little less silicon. Mental thickness is about 2,900 kilometers. The three chemical layers of the earth's mantle are in order of size in terms of volume.

The mantle is the interior of the Earth that is largely solid. Between the narrow crust and the planet's dense, extremely hot core is the mantle. The stiff lithosphere, which makes up the uppermost mantle, and the more ductile asthenosphere are the two main rheological layers of the Earth's mantle. These two layers are separated by the lithosphere-asthenosphere barrier.

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what happens during el nino a. an interglacier climate shift occurs b. the pacific pressure patterns reverse c. the tilt of earths access d. the trade wind stop blowing

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An interglacial climate shift occurs during El Nino/Southern Oscillation. A single climatic phenomena known as the El Nino-Southern Oscillation alternates sporadically between three states: neutral, la Nina, and EL Nino.

In Europe And north America, there were multiple glacials over the 2.5 hundreds of millions of years of the Paleolithic, or large expansions of ice sheets and glaciers, which happened at intervals of around 40,000 to 100 million years. There were more moderate, shorter interglacial periods in between the lengthy glacial eras. The climate warms during interglacial, like the one we are currently experiencing, and the tundra retreats poleward alongside the ice sheets. Areas that formerly supported tundra vegetation now have forests. Paleontology helps determine if an interglacial occurred on landmass or in deep improved international seas.

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an earthquake had a measured amplitude of 1 mm and the epicenter was determined to be 300 km away. what was the magnitude of the earthquake?

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The magnitude of the earthquake was 4. Magnitude, in essence, is a measurement of the total energy released during an earthquake, claims seismologist Lucy Jones.

According to seismologist Lucy Jones, magnitude is essentially a measurement of the overall energy released during an earthquake. How much and how far the rock moves determines how much energy is released. Here is a definition of magnitude and an explanation of how it relates to the shaking we experience. This explains how an 8 could be far scarier than a 6 in terms of fear. The amount of seismic energy released increases by around 32 times for every whole-number increase in magnitude. In other words, a magnitude 7 earthquake is 32 times stronger than a magnitude 6 earthquake and produces 32 times more energy. According to Jones, a magnitude 8 earthquake is 1,000 times more energetic than a magnitude 6, but it also spreads out and lasts longer.

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which of the following is not a contributing factor to the poor air quality in los angeles? group of answer choices typically cloud-free conditions during afternoon heavy rainfall the city lies in a basin surrounded by mountains frequent subsidence inversions

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The correct option is heavy rainfall. This cannot be a contributing factor for the poor air pollution in the environment of Los Angeles.

Air pollution is the contamination of the atmosphere's atmosphere by compounds that are dangerous to the health of people and other living things, or that impair the climate or materials. Humans may develop illnesses, allergies, or even pass away due to air pollution. It may also harm other living things, including animals and crops used for food, as well as the built environment. Both human activity and natural occurrences can contribute to air pollution. Poor air quality has wide-ranging consequences on human health, but it primarily has an impact on the cardiovascular and respiratory systems of the body.

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The most violent volcanic activity is associated with __________.
a. fissure eruptions
b. shield volcanoes
c. cinder cones
d. composite cone volcanoes

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The most violent volcanic activity is associated with composite cone volcanoes. The appropriate response is option D.

What is composite cone volcanoes?

Composite cones are huge volcanoes (tens of thousands of feet or meters tall) that are often made up of lava flows, pyroclastic deposits, mudflow (lahar) deposits, and lava domes. Composite volcanoes are active for extended periods of time and erupt on a regular basis.

Stratovolcanoes are another name for composite cone volcanoes. They develop as a result of the deposition of various materials on a volcano's flanks by various eruption types. Layers develop as a result of alternating lava and volcanic ash explosions. They accumulate in layers over time.

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which recommendation is the first and most important step in addressing climate change, according to the intergovernmental panel on climate change (ipcc)?

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National environmental regulations should keep global warming to a maximum of 2 degrees Celsius.

Why is climate important?

Mediterranean climate over a longer length of time in a particular place. A description of an environment includes details such as the typical temperature in each season, the amount of rainfall, and the amount of sunshine.

Why is the weather significant?

Nearly every element of our life is impacted by the climate, including our food supplies, transportation systems, clothing choices, and vacation destinations. It significantly affects our future, our wellbeing, and our means of subsistence. The looooong pattern of temperature in any given location is called the climate.

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What happens to earth’s surface when horizontal pressure is applied to rocks? (site 1)

Answers

Answer:

When horizontal pressure is applied to rocks, the earth's surface will form lines that are perpendicular to the direction of the pressure.

Explanation:

An earthquake in oklahoma measured on the richter scale. Use the formula to determine approximately how many times stronger the wave amplitude a of the earthquake was than.

Answers

The intensity of the earthquake in Oklahoma measured on the Richter scale. shows that the earthquake was 1000 times stronger the wave amplitude a of the earthquake was than.

The logarithmic function of the earthquake is given by the following formula:

R = log ( [tex]\frac{A}{Ao}[/tex] )

In this problem, the given value of R = 3, and we have to find the ratio , hence:

3 = log ( [tex]\frac{A}{Ao}[/tex] )

We can see that logarithm and power of 10 have inverse relation with each other hence, applying the power of 10 to both sides of the equality, we will get:

( [tex]\frac{A}{Ao}[/tex] ) = [tex]10^{3}[/tex] = 1000

Thus,  the wave amplitude A of the earthquake was 1,000 times stronger than Ao.

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The complete question is:

An earthquake in Oklahoma measured 3.0 on the Richter scale. Use the formula R = log(4) to determine approximately how many times stronger the wave amplitude A of the earthquake was than Ao.

valleys generally lack significant valley fill and have valley walls that typically confine channel migration to a narrow, often v-shaped valley bottom

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Bedrock valley generally lack significant valley fill and have bedrock valley walls that typically confine channel migration often V shaped valley.

The solid bedrock underlying the surface materials has been eroded into a drainageway. It might be hidden from view and entirely fill with unconsolidated materials. Usually buried beneath soil and other fragmented or unconsolidated material lies bedrock, a deposit of solid rock (regolith). The parent material for regolith and soil, bedrock is composed of igneous, sediment, or metamorphic rock. Consolidated rock, or bedrock, is rock that is solid and strongly connected. Three separate groupings make up the bedrock formations in most cases. These are made up of metamorphic rocks, sedimentary rocks, and igneous rocks.

Generally lack significant valley fill and have bedrock valley walls that typically confine channel migration often V shaped valley

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A is a seasonal wind that blows in the opposite direction of normal winds. A wind is a wind that blows mainly from a single general direction. Seasonal winds that blow in the opposite direction of normal winds often cause in the winter.

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Monsoon wind is a seasonal wind that blows in the opposite direction of normal winds.

Prevailing wind is a wind that blows mainly from a single (one) general direction.Seasonal winds that blow in the opposite direction of normal winds often cause drought in the winter.Seasonal winds are variations in large-scale weather patterns that cause repetitive and predictable air movements. Many places around the world experience seasonal winds. An individual geographic location determines the name given to a specific seasonal wind as well as the underlying physical forces that propel the winds.The monsoon winds are one of the most recognized seasonal winds. Though frequently mistaken for rainstorms, monsoons are actually a type of seasonal wind. In low-latitude climates, a monsoon is a seasonal change in wind direction from winter to summer. Typically, monsoons blow from the land in the winter (known as the dry phase because the wind is composed of cool, dry air) and from the water to the land in the summer (known as the wet phase because the wind is composed of warm, moist air), causing a significant change in the patterns of precipitation and temperature in the area affected by the monsoon.

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Answer:

1- monsoon

2- prevailing

3- drought

Explanation:

got it right on edge on 12-13-22

Draw a side view of a full moon that does not result in an eclipse. Be sure to label each of the objects.

Answers

A lunar eclipse is caused by Earth blocking sunlight from reaching the moon and creating a shadow across the lunar surface.

Lunar eclipses only happen during full moons, but they don't always happen. As the moon's slightly inclined orbit frequently prohibits the ideal pass, a lunar eclipse requires a special alignment of the three celestial bodies. Paul Doherty, a senior scientist at the Exploratorium, explains why this isn't the case: because the moon's orbit is skewed in relation to Earth's path around the sun, it frequently passes below or above Earth. A solar eclipse is not produced at those times because it does not cross the dividing line between the sun and the Earth.

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Answer:

Explanation:

This the answer in edmentum

If the Earth were to reorient such that the North Pole always received direct sunlight (always faced the Sun), how would that change Earth's climate? A. The equator would not change in climate. B. The South Pole would get colder. C. The equator would get warmer. D. The North Pole would get more wind.

Answers

If the reorient the Earth so that the North Pole always receives direct sunlight (always faces the Sun), the South Pole will be colder.

The Earth receives sunlight due to its tilt and rotation about its axis, and the position of the North Pole is realigned with the position of the Sun, so more sunlight reaches the north and snow and ice melt faster. Although the equator has little effect, Antarctica is darker and colder, indirectly affecting Earth's climate.

If  reorient the Earth so that the North Pole always receives direct sunlight (always faces the Sun), the South Pole will be colder.

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Before the rise of the nation-state, europe could be described as a continent __________.

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Before the rise of the nation-state, Europe could be described as a continent of multiethnic empires.

The continent of Europe, commonly referred to as Eurasia, is entirely located in the Northern Hemisphere and largely in the Eastern Hemisphere. Prior to the development of the nation-state, Europe may be referred to as a continent of multiethnic empires. Before the rise of the nation-state, the continent was home to numerous empires of various races that competed for domination.

The Soviet Union

The Ottoman Empire in Turkey

Imperial Mongol rule

Before the rise of the nation-state, European could be described as a continent ______

A. Ruled by barbarian tribes

B. With an identity crisis

C. On the verge of collapse

D. Of multiethnic empires

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tina and grayson collect a shovel full of soil from the school garden and bring it back to the science lab. they put the soil in a glass container with some water and stir the mixture. they let the mixture settle overnight. what will the soil mixture most likely look like the next day

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Tina and Grayson collect a shovel full of soil from the school garden and bring it back to the science lab. They put the soil in a glass container with some water and stir the mixture. They let the mixture settle overnight. The top layer of soil will be darker, contain rocks, and have larger particles. The bottom layer will be lighter and will have smaller particles. the correct answer is Option B.

Typically, two students, Tina and Grayson, use shovels to scoop dirt from the school garden and carry it to the science lab. They mixed the soil with some of the water that was in the glass container previously filled with soil.

They waited a full day before stirring the mixture again.The top layers of the earth are much darker than the layers below. It also includes rocks, along with larger particles. The bottom layer particles are smaller and lighter than the top layer particles. Alternative B

A place of employment dedicated to the performance of scientific research. Laboratory, research lab, research laboratory, science laboratory, and lab are all synonyms for one another.

A place that enables and provides controlled conditions for conducting research, experiments and measurements of a scientific or technical nature.

your question is incomplete, but maybe your full question was

Tina and Grayson collect a shovel full of soil from the school garden and bring it back to the science lab. They put the soil in a glass container with some water and stir the mixture. They let the mixture settle overnight. What will the soil mixture most likely look like the next day?

a. The top layer of soil will be lighter, contain rocks, and have larger particles. The bottom layer will be darker and will have smaller particles.

b. The top layer of soil will be darker, contain rocks, and have larger particles. The bottom layer will be lighter and will have smaller particles.

c. The top layer of soil will be lighter and will have smaller particles.The bottom layer will be darker, contain rocks, and have larger particles.

d. The top layer of soil will be darker and will have smaller particles. The bottom layer will be lighter, contain rocks, and have larger particles.

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Answer:

Tina and Grayson collect a shovel full of soil from the school garden and bring it back to the science lab. They put the soil in a glass container with some water and stir the mixture. They let the mixture settle overnight. The top layer of soil will be darker, contain rocks, and have larger particles. The bottom layer will be lighter and will have smaller particles. the correct answer is Option B.

Explanation:

Question 12
Which area of Europe is mostly made up of the nations that used to comprise Yugestoon?
7.5 pts

Answers

I believe you mean Yugoslavia instead of Yugestoon but the answer would be the balkans.

flowing water that deposits weathered and eroded material that eventually forms sedimentary rock is an example of an interaction between which earth systems?

Answers

Flowing water that deposits weathered and eroded material that eventually forms sedimentary rock is an example of an interaction between the atmosphere and geosphere.

The atmosphere refers to the mass of air surrounding the earth. It is a composition of various gases that covers the earth and stays in place due to the gravitational force of the earth. Geosphere refers to the collective reference of the hydrosphere, lithosphere, cryosphere, and atmosphere.

The formation of sedimentary rocks by deposition of weathered and eroded material takes place due to various factors such as rivers, oceans, rain runoff, and winds. The fragments of rocks are detritus which get deposited during the process of sedimentation. The natural elements initiating sedimentation exist between the atmosphere and geosphere. Therefore, the interaction between atmosphere and geosphere factors contributes to the sedimentation process.

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A warm front is predicted to come through your area tomorrow. You should prepare for thunderstorms, hail, and tornadoes. t/f

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False, A warm front is predicted to come through your area tomorrow. You should prepare for thunderstorms, hail, and tornadoes

A warm front is a density discontinuity that is usually found on the edge of an isotherm gradient that faces the equator and is situated at the leading edge of a homogeneous warm air mass.

After frontal passage, clearing and warming normally happen quickly. Thunderstorms may be imbedded in the stratiform clouds ahead of the front if the warm air mass is unstable, and they may persist after the front has passed.

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by 2003, every one of the countries and territories of which continent had fertility rates below replacement levels?

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If you analyze the Geographic readings carefully, you would find that during the year 2003, South Korea which is known to be located in the easternmost part of the Asian continent had the lowest fertility rate which is beyond replacement levels.

When compared globally with other countries, you would find that there are only 0.9 children per woman. Various analysts are of the view that this is because of the country's high economic inequality such as the expensive cost while living, undesired wages which don't match up to the living standards, lack of job facilities, incapable to buy houses which is beyond their affordability.    

 

 

streams come down out of steep areas (like mountains) onto much flatter land, lose velocity, and drop material in triangular-shaped structures called

Answers

Aqueous fans are cube shaped features that are created when streams that originate in mountainous terrain (such as mountains) fall over considerably plain terrain.

What are rivers and streams?

A stream is any body of flowing water, regardless of size. A river is a significant stream that flows in a channel and downhill. Rivers that empty into various oceans are separated by a continental divide. The river may form a delta if it discharges silt.

What purposes serve streams?

A stream is a collection of objects that can support several operations and be pipelined to create the desired outcome. A stream accepts input from Collecting, Arrays, or I/O channels; it isn't a data structure.

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which of the following was a result of world war 1 in Russia
A. food shortage
B. abundance of food
C. population increase

Answers

A is the correct answer

Food shortage was a result of world war 1 in Russia.

One of the major players in the World War I incidents was Russia. In truth, after the 1914 assassination of Austrian Archduke Franz Ferdinand, Russia was one of the key nations to contribute to the genesis of World War I. Additionally, Russia took part in a number of crucial conflicts throughout the war.

For instance, Russian forces engaged in combat with Austria-Hungary and Germany anywhere along Eastern Front. Together with Britain and France, Russia had been an Associated Power during World War One. The conflict had an effect on Russia in that it influenced the events that resulted in the Russian Revolution.

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