Cycles in Nature 2 The Water Cycle

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Presentation transcript:

Cycles in Nature 2 The Water Cycle Evaporation takes place when liquid water changes into water vapor, which is a gas, and enters the atmosphere. Water evaporates from the surfaces of lakes, streams, puddles, and oceans.

Cycles in Nature 2 The Water Cycle Water vapor enters the atmosphere from plant leaves in a process known as transpiration (trans puh RAY shun). Animals release water vapor into the air when they exhale. Water also returns to the environment from animal wastes.

Cycles in Nature 2 Condensation The process of changing from a gas to a liquid is called condensation. Water vapor condenses on particles of dust in the air, forming tiny droplets. At first, the droplets clump together to form clouds. When they become large and heavy enough, they fall to the ground as rain or other precipitation.

Cycles in Nature 2 Condensation The water cycle is a model that describes how water moves from the surface of Earth to the atmosphere and back to the surface again.

Cycles in Nature 2 Water Use The amount of water people take from reservoirs, rivers, and lakes for use in households, businesses, agriculture, and power production can reduce the amount of water that evaporates into the atmosphere.

Cycles in Nature 2 Water Use They also can influence how much water returns to the atmosphere by limiting the amount of water available to plants and animals.

The Nitrogen Cycle 2 Nitrogen is a necessary ingredient of proteins. Cycles in Nature 2 The Nitrogen Cycle Nitrogen is a necessary ingredient of proteins. Proteins are required for the life processes that take place in the cells of all organisms. Nitrogen is also an essential part of the DNA of all organisms. Although nitrogen is the most plentiful gas in the atmosphere, most organisms cannot use nitrogen directly from the air.

Cycles in Nature 2 The Nitrogen Cycle Plants need nitrogen that has been combined with other elements to form nitrogen compounds. Through a process called nitrogen fixation, some types of soil bacteria can form the nitrogen compounds that plants need. Plants absorb these nitrogen compounds through their roots. Animals obtain the nitrogen they need by eating plants or other animals.

Cycles in Nature 2 The Nitrogen Cycle When dead organisms decay, the nitrogen in their bodies returns to the soil or to the atmosphere.

The Nitrogen Cycle 2 The transfer of nitrogen from the atmosphere Cycles in Nature 2 The Nitrogen Cycle The transfer of nitrogen from the atmosphere to the soil, to living organisms, and back to the atmosphere is called the nitrogen cycle.

Cycles in Nature 2 Soil Nitrogen Human activities can affect the part of the nitrogen cycle that takes place in the soil. If a farmer grows a crop, such as corn or wheat, most of the plant material is taken away when the crop is harvested. The plants are not left in the field to decay and return their nitrogen compounds to the soil. If these nitrogen compounds are not replaced, the soil could become infertile.

Cycles in Nature 2 Soil Nitrogen Most fertilizers contain the kinds of nitrogen compounds that plants need for growth. Fertilizers can be used to replace soil nitrogen in crop fields, lawns, and gardens. Compost and animal manure also contain nitrogen compounds that plants can use.

Cycles in Nature 2 Soil Nitrogen Another method farmers use to replace soil nitrogen is to grow nitrogen-fixing crops. Most nitrogen-fixing bacteria live on or in the roots of certain plants, such as peas, clover, beans, and soybeans. These plants have roots with swollen nodules that contain nitrogen-fixing bacteria. These bacteria supply nitrogen compounds to the plants and add nitrogen compounds to the soil.

Cycles in Nature 2 The Carbon Cycle The carbon cycle describes how carbon molecules move between the living and nonliving world.

Cycles in Nature 2 The Carbon Cycle The carbon cycle begins when producers remove CO2 from the air during photosynthesis. They use CO2, water, and sunlight to produce energy-rich sugar molecules. Energy is released from these molecules during respiration. Respiration uses oxygen and releases CO2. Photosynthesis uses CO2 and releases oxygen.