stupid science stuff
Compounds containing nitrogen and oxygen are called nitrogen oxides. These compounds can have various chemical properties and can be produced through the combustion of fossil fuels or industrial processes.
Nitrogen is special because it is an essential element for all living organisms, as it is a key component of proteins, nucleic acids, and other biomolecules. In plants, nitrogen is important for growth and photosynthesis, while in the atmosphere, nitrogen makes up about 78% of the air we breathe.
Nitrogen is one of the most important elements for life. There is carbon, hydrogen, nitrogen, oxygen and sulfur. (CHNOPS). Nitrogen is one of elements that make up DNA.+++
Proteins contain a special form of nitrogen that our bodies can readily use.
Legumes have a special ability to form a symbiotic relationship with nitrogen-fixing bacteria in their roots. These bacteria convert atmospheric nitrogen into a form that plants can use, which helps enrich the soil with nitrogen. This process, known as nitrogen fixation, plays a crucial role in the nitrogen cycle by making nitrogen available to other plants and organisms in the ecosystem.
60 Minutes - 1968 Inside the Freemen Compound Special Ed Politically Incorrect 28-39 was released on: USA: 9 June 1996
Topsoil, nitrogen fertilizer, moisture, and wheat seeds are not special conditions, but they are required to grow wheat.
Nitrogen makes up approximately 80% of Earth's atmosphere as Diatomic Nitrogen. This is two Nitrogen atoms that are bonded together with three covalent bonds (i.e a triple bond). However there will be many other compounds in the atmosphere that contain nitrogen, but will be nowhere near as prevelant as Diatomic Nitrogen.
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No, nitrogen typically forms 3 covalent bonds due to its electronic configuration. While nitrogen can form 4 bonds in special cases such as nitrate ions, it is not commonly found with 5 bonds.
Yes through the Nitrogen Cycle that occurs within animals that are female because of special organ systems that absorb oxygen through a stromate (organelle) that can convert oxygen to Nitrogen
Nitrogen enters the food chain through nitrogen-fixing bacteria which convert atmospheric nitrogen into a form that plants can absorb. Plants then take up this nitrogen through their roots and incorporate it into their tissues. When herbivores eat these plants, they obtain the nitrogen, and it continues up the food chain when carnivores eat the herbivores.