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Bacteria that exist in the root nodules of some plants can absorb nitrogen from the air in the soil. One notable example is the Rhizobia that lives in nodules on soybean roots. Similar root systems exist in clover and alfalfa.

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What are 3 ways which nitrogen can be fixed?

Nitrogen can be fixed by lightning during thunderstorms, by industrial processes like the Haber-Bosch method, and through biological processes carried out by nitrogen-fixing bacteria in the soil.


Changing nitrogen gas to nitrogen in the soil?

Nitrogen gas in the atmosphere can be converted into a usable form for plants through a process called nitrogen fixation. This can be done by certain bacteria that live in the soil or through industrial processes like the Haber-Bosch process. The fixed nitrogen is then taken up by plants to support their growth.


What is meant by nitrogen fixation state two ways in which nitrogen gas of the atmosphere can be fixed in nature to get nitrogen compound in the soil?

Nitrogen fixation is the process by which nitrogen gas in the atmosphere is converted into nitrogen compounds that plants can use. This can occur through biological nitrogen fixation, where certain bacteria convert nitrogen gas into ammonia, and through abiotic processes like lightning strikes, which convert nitrogen gas into nitrogen oxides that can be absorbed by rain and deposited in the soil.


Nitrogen in the atmosphere must be fixed before it can be used by plants. Atmospheric nitrogen is fixed by?

Nitrogen fixation is the process by which certain bacteria convert atmospheric nitrogen into a usable form for plants, such as ammonium or nitrate. This can occur through the activity of symbiotic relationships with leguminous plants, free-living soil bacteria, or industrial processes.


How is nitrogen depleted from soil?

Nitrogen can be depleted from soil through plant uptake, leaching, and runoff. Plant roots absorb nitrogen from the soil to support growth, which can lead to a decrease in soil nitrogen levels over time. Additionally, excess water can cause nitrogen to leach out of the soil and into groundwater, or runoff can transport nitrogen into bodies of water, further depleting soil nitrogen.

Related Questions

What is the diffrence between fixed nitrogen and free nitrogen?

OK well free nitrogen is fixed by bacteria that live in the soil. some bacteria live in nodules, or bumps , on certain plant roots. the bacteria get food from the plants, and plants absorb fixed nitrogen from the bacteria. animals get nitrogen by eating plants or by eating prey that have eaten plants. fixed nitrogen may enter the soil in other ways too. a small amount of free nitrogen in the air by lighting. it is carried to the ground by rainfall. fixed nitrogen also enters the soil because of decomposers. decomposers break down dead organisms, and fixed nitrogen is released in the soil. the fixed nitrogen can be absorbed by plant roots.


What is the difference between free nitrogen and fixed nitrogen?

Free nitrogen refers to the nitrogen gas (N2) present in the atmosphere, which is not readily available for use by most organisms. Fixed nitrogen, however, is nitrogen that has been converted into a form that can be utilized by plants and other organisms, such as ammonia, nitrate, or nitrite. This conversion process is often carried out by nitrogen-fixing bacteria in the soil.


Why must nitrogen be fixed in the nitrogen cycles?

It has to be fixed by things in the soil called nodules, so it can be a form that plants can use in order to get protein to perform photosynthesis.


What are 3 ways which nitrogen can be fixed?

Nitrogen can be fixed by lightning during thunderstorms, by industrial processes like the Haber-Bosch method, and through biological processes carried out by nitrogen-fixing bacteria in the soil.


When nitrogen is fixed it is changed into?

When nitrogen is fixed, it is changed into ammonia, which can then be used by plants to make proteins and other essential compounds. This process is mainly carried out by nitrogen-fixing bacteria in the soil or by industrial processes.


What are the two ways nitrogen can be fixed?

Nitrogen can be fixed by lightning during thunderstorms, a process that converts nitrogen gas (N2) into nitrates (NO3-) that can be used by plants. Nitrogen can also be fixed by certain soil bacteria called nitrogen-fixing bacteria, which convert N2 into a form that can be taken up by plants.


Nitrogen is biochemically fixed within the soil by?

Nitrogen is biochemically fixed within the soil primarily by certain species of bacteria. These bacteria convert atmospheric nitrogen into a form that plants can use, through a process known as nitrogen fixation. This process is essential for making nitrogen available to plants for growth and development.


What element must be fixed by bacteria in the soil in order for plants to absorb it?

Nitrogen is the most common one.


Atmospheric nitrogen is fixed by?

Atmospheric nitrogen is fixed by certain bacteria, such as Rhizobium and Azotobacter, through a process called nitrogen fixation. These bacteria convert atmospheric nitrogen into a form that plants can use, such as ammonia or nitrates, helping to enrich the soil with essential nutrients for plant growth.


Changing nitrogen gas to nitrogen in the soil?

Nitrogen gas in the atmosphere can be converted into a usable form for plants through a process called nitrogen fixation. This can be done by certain bacteria that live in the soil or through industrial processes like the Haber-Bosch process. The fixed nitrogen is then taken up by plants to support their growth.


Most nitrogen is fixed by what?

Most nitrogen is fixed by microorganisms in the soil, such as nitrogen-fixing bacteria like Rhizobium and Azotobacter. These bacteria convert atmospheric nitrogen into a form that plants can use, helping to make nitrogen available for plant growth.


Can nitrogen be fixed naturally for plant use?

Yes, nitrogen can be fixed naturally by certain types of bacteria in the soil called nitrogen-fixing bacteria. These bacteria convert nitrogen gas from the atmosphere into a form that plants can utilize, such as ammonium or nitrate. This process helps maintain soil fertility and provides plants with the necessary nitrogen for growth.