Because Nitrogen exists freely as N_2 which has 3 covalent bonds between the Nitrogen atoms. It is difficult to break the N-N bond.
In essence, the question becomes why is it difficult to react anything with Nitrogen.
In plants, nitrogen fixing happens with the aid of microbes and catalysts help lower the activation energy and hence allowing the N2 to become N. and N. where the . refers to an electron.
Nitrogen oxides are typically formed when nitrogen and oxygen react together at high temperatures in combustion processes, such as in vehicle engines or industrial machinery. Nitrogen and oxygen are the main gases involved in the formation of nitrogen oxides.
Oxygen and nitrogen will not directly chemically react with each other under normal conditions. They will typically stay as separate molecules in the air.
Nitrogen and oxygen together make up approximately 99% of Earth's atmosphere, with nitrogen accounting for about 78% and oxygen around 21%.
Nitrate is composed of one nitrogen atom and three oxygen atoms.
Oxygen ( O2 ) : 21 % ; Nitrogen ( N2 ) : 78 % ;
Nitrogen oxides are typically formed when nitrogen and oxygen react together at high temperatures in combustion processes, such as in vehicle engines or industrial machinery. Nitrogen and oxygen are the main gases involved in the formation of nitrogen oxides.
Oxygen and nitrogen will not directly chemically react with each other under normal conditions. They will typically stay as separate molecules in the air.
Silver does not readily react with nitrogen or oxygen to form stable compounds under normal conditions. However, silver can react with nitrogen and oxygen compounds in specific conditions to form various silver compounds.
When iridium, oxygen, and nitrogen are mixed together, they do not react to form a specific compound. Iridium is a noble metal and does not readily react with oxygen or nitrogen under normal conditions.
By seeing how many valence electrons Nitrogen has, it does, it reacts with oxygen to make nitrous oxide
Californium react with oxygen, nitrogen, sulfur, hydrogen, halogens, etc.
Radium react with halogens (F, Cl, Br, I), oxygen, nitrogen, water, etc.
No. Carbon, nitrogen, and oxygen are separate elements.
99% of the atmosphere is nitrogen (78%) and oxygen (21%).
Nitrogen and oxygen together make up approximately 99% of Earth's atmosphere, with nitrogen accounting for about 78% and oxygen around 21%.
Nitrogen does not transform into a noble gas. Nitrogen is a diatomic gas that typically does not react with other elements under normal conditions. Noble gases are a group of elements that are chemically inert and do not readily form compounds with other elements.
Beryllium and nitrogen do not typically react with each other to form a stable compound.