Nitrogen is a diatomic gas at room temperature. These nitrogen atoms are bond by a triple bond. It needs more energy to break this bond. So nitrogen is less reactive.
Ammonia molecule: NH32 NH3 N2 + 3 H2Nitrogen molecule N2 , each molecule containing 2 atoms (of the element) N
Yes,Whenever an organism dies, decomposers break down the corpse into nitrogen in the form of ammonia. This nitrogen can then be used again by nutrifying bacteria to fixnitrogen for the plants
nitrogen gas is formed when two nitrogen atoms bond together...thus resulting in atriple bond between the nitrogen atoms. these triple bonds together have a very high bond enthalpy(energy needed to break bonds). so the energy needed to break the bonds is very high. since chemical reactions occur on the basis that bonds need to be broken for new bonds to form....the nitrogen molecule does not react readily under normal circumstances. it was once considered an inert gas before the discovery of the Born-Haber process...as a result of its natural "unreactivity". hence a lot of energy has to be given to the nitrogen molecules for them to dissociate and become atoms .. so that they can react- the central idea behind the Born-haber process. (british)
Triple bond nitrogen molecules are very stable due to the strong bond energy associated with triple bonds. This makes it difficult for these molecules to undergo chemical reactions under normal conditions, as it requires a significant amount of energy to break the triple bond. Additionally, the nitrogen molecules are nonpolar and do not readily interact with other molecules, further limiting their reactivity.
form a stable nitrogen molecule with a triple bond between them, resulting in a molecule of N2. This triple bond is very strong and difficult to break, which is why nitrogen gas (N2) is relatively inert and does not react easily with other elements.
Diatomic nitrogen (N2) is unreactive because it has a very strong triple bond between the two nitrogen atoms, making it difficult for other substances to break apart or react with the molecule. This stability is due to the high bond energy and low reactivity of the N2 molecule.
Nitrogen is non-reactive because it has a very stable triple bond between its two nitrogen atoms in the N2 molecule. This triple bond requires a lot of energy to break, making nitrogen resistant to most chemical reactions.
Nitrogen is a very stable molecule due to its triple bond, which requires a significant amount of energy to break. This makes nitrogen gas unreactive under normal conditions with most other elements. Additionally, most organisms lack the enzymes needed to break the strong nitrogen-nitrogen bonds.
A Nitrogen molecule(N2) has a triple bond between it Nitrogen will only react only if the bond is broken. And since Chlorine cannot break this triple bond, under normal conditions, it does not react with nitrogen readily.
Nitrogen is less reactive at room temperature because of its triple bond which is very strong and requires a significant amount of energy to break. It is also a relatively stable molecule due to its full valence shell of electrons, making it unreactive under normal conditions.
The reason why nitrogen gas is inert at room temperature is because the triple bond between the two nitrogen atoms in each nitrogen molecule (N2) is very strong, and therefore it takes a lot of energy to break that bond, and until that bond is broken, the nitrogen cannot react with any other chemical.
There are very strong triple covalent bonds between the two nitrogen atoms in diatomic N2 gas. Large amount of energy is needed to overcome this bond, thus nitrogen is fairly inert and unreactive.
A Nitrogen molecule has a triple bond.So high amount of energy is needed to break down this bond.Bond dissociates naturally in occasions like lightning.So Nitrogen's reactivity is very low.Nitrogen has a little bit high molecular mass.So it has a high escape velocity.As a result of those Nitrogen remains in atmosphere in huge amount.
Nitrogen is a diatomic gas at room temperature. These nitrogen atoms are bond by a triple bond. It needs more energy to break this bond. So nitrogen is less reactive.
Ammonia molecule: NH32 NH3 N2 + 3 H2Nitrogen molecule N2 , each molecule containing 2 atoms (of the element) N
When an organism dies, the nitrogen in its body is returned to the environment through decomposition processes. Microorganisms break down the organic matter, releasing nitrogen back into the soil where it can be taken up by plants and reused in the ecosystem.