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  2. Nitrate - Wikipedia

    en.wikipedia.org/wiki/Nitrate

    In the NO − 3 anion, the oxidation state of the central nitrogen atom is V (+5). This corresponds to the highest possible oxidation number of nitrogen. Nitrate is a potentially powerful oxidizer as evidenced by its explosive behaviour at high temperature when it is detonated in ammonium nitrate (NH 4 NO 3), or black powder, ignited by the shock wave of a primary explosive.

  3. Nitrification - Wikipedia

    en.wikipedia.org/wiki/Nitrification

    Nitrification is a process of nitrogen compound oxidation (effectively, loss of electrons from the nitrogen atom to the oxygen atoms), and is catalyzed step-wise by a series of enzymes. 2 NH 4 + + 3 O 2 2 NO 2 − + 4 H + + 2 H 2 O {\displaystyle {\ce {2NH4+ + 3O2 -> 2NO2- + 4H+ + 2H2O}}} ( Nitrosomonas , Comammox )

  4. Nitrate radical - Wikipedia

    en.wikipedia.org/wiki/Nitrate_radical

    Nitrogen trioxide or nitrate radical is an oxide of nitrogen with formula NO 3 , consisting of three oxygen atoms covalently bound to a nitrogen atom. This highly unstable blue compound has not been isolated in pure form, but can be generated and observed as a short-lived component of gas, liquid, or solid systems.

  5. Oxyanion - Wikipedia

    en.wikipedia.org/wiki/Oxyanion

    3) and nitrate (NO − 3) have a trigonal planar structure with π bonding between the central atom and the oxygen atoms. This π bonding is favoured by the similarity in size of the central atom and oxygen. The oxyanions of second-row elements in the group oxidation state are tetrahedral.

  6. Valence (chemistry) - Wikipedia

    en.wikipedia.org/wiki/Valence_(chemistry)

    In the dioxygen molecule O 2, each oxygen atom has 2 valence bonds and so is divalent (valence 2), but has oxidation state 0. In acetylene H−C≡C−H, each carbon atom has 4 valence bonds (1 single bond with hydrogen atom and a triple bond with the other carbon atom). Each carbon atom is tetravalent (valence 4), but has oxidation state −1.

  7. Theoretical oxygen demand - Wikipedia

    en.wikipedia.org/wiki/Theoretical_oxygen_demand

    Theoretical oxygen demand (ThOD) is the calculated amount of oxygen required to oxidize a compound to its final oxidation products. [1] However, there are some differences between standard methods that can influence the results obtained: for example, some calculations assume that nitrogen released from organic compounds is generated as ammonia, whereas others allow for ammonia oxidation to ...

  8. Nitration - Wikipedia

    en.wikipedia.org/wiki/Nitration

    The difference between the resulting molecular structures of nitro compounds and nitrates (NO − 3) is that the nitrogen atom in nitro compounds is directly bonded to a non-oxygen atom (typically carbon or another nitrogen atom), whereas in nitrate esters (also called organic nitrates), the nitrogen is bonded to an oxygen atom that in turn ...

  9. Atomic radius - Wikipedia

    en.wikipedia.org/wiki/Atomic_radius

    Diagram of a helium atom, showing the electron probability density as shades of gray. The atomic radius of a chemical element is a measure of the size of its atom, usually the mean or typical distance from the center of the nucleus to the outermost isolated electron. Since the boundary is not a well-defined physical entity, there are various ...