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Hydrologic Cycle
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The hydrosphere, crust, and atmosphere combine to make up the biosphere The hydrosphere includes all the water in the atmosphere and on the Earth s surface
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124 STEP 4 Discover/Review to Score High
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When the sun heats the oceans, the cycle starts Water evaporates and then falls as precipitation in the form of snow, hail, rain, or fog While it s falling, some of the water evaporates or is sucked up by thirsty plants before the rest soaks into the ground The sun s heat also keeps the cycle going The hydrologic cycle is made up of all water movement and storage throughout the Earth s hydrosphere
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Water is constantly circulating between the atmosphere and the Earth and back to the atmosphere through condensation, precipitation, evaporation, and transpiration This cycle is known as the hydrologic cycle Figure 106 illustrates the many ways water moves through the hydrologic cycle
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Precipitation
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Water vapor is carried by wind and air currents throughout the atmosphere When an air mass cools down, its vapor condenses into clouds and eventually falls to the ground as precipitation in the form of snow, rain, sleet, or hail Water can take a variety of paths and time periods to get back into the atmosphere Some of these paths include the following: Absorption by plants Evaporation from the sun s heating Storage in the upper levels of soil Storage as groundwater deep in the earth Storage in glaciers and polar regions Storage or transport in springs, streams, rivers, and lakes Storage in the oceans
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Evaporation
Rainfall
Evaporation/ transpiration Land
Ocean River/snow runoff groundwater
The hydrologic cycle is a dynamic system
Natural Cycles and Energy Flow 125
When water is stored for any length of time, it resides in a water reservoir A reservoir is a holding area Nature s reservoirs are oceans, glaciers, polar ice, underground storage (aquifers), lakes, rivers, streams, the atmosphere, and the biosphere (within living organisms) Surface water in streams and lakes returns to the atmosphere as a gas through evaporation Water held inside plants returns to the atmosphere as a vapor through a biological process called transpiration When plants pull water up through their roots from the soil, use some of the dissolved minerals to grow, and then release the water back through the leaves, the entire cycle is known as evapotranspiration This happens the most during times of high temperatures, wind, dry air, and sunshine In temperate climates, this is summertime When air currents rise into the colder atmospheric layers, water vapor condenses and sticks to tiny particles in the air; this is called condensation When water vapor coats enough particles (dust, pollen, or pollutant), it forms a cloud When the air is saturated, gravity wins, and water falls as precipitation Precipitation can take the form of rain, snow, sleet, or hail depending on the temperature and other atmospheric conditions
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Although the hydrologic cycle balances what goes up with what comes down, in polar regions rain is stored as snow or ice on the ground for several months in winter In glacial areas, storage extends from years to thousands of years Then, as temperatures climb in the spring, water is released When this happens in a short period of time, flooding occurs
Evaporation
The sun provides energy, which powers evaporation When water is heated, its molecules get excited and vibrate so much that they break their chemical bonds Solar energy causes water to evaporate from oceans, lakes, rivers, and streams Warm air currents scoop water vapor into the atmosphere
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When water changes its form from a liquid to a gas, it is said to evaporate
Because of the huge amount of water in the oceans, it makes sense that roughly 80% of all evaporation comes from the oceans, with 20% coming from inland water and plant transpiration Wind currents transport water vapor around the world, influencing air moisture worldwide Hydrologists (scientists who study the Earth s water cycle) estimate that 100 billion gallons of water a year are cycled through this process Without the hydrologic cycle, life on Earth would not have developed Nearly every creation story tells how oceans were formed before continents and their inhabitants We use water for everything, both internally and externally Without water, life would not exist on Earth: it is second in importance only to the air we breathe
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