The compound formed between K+ and NO2- is called potassium nitrite.
The balanced chemical equation for the reaction NH3 + NO2 -> N2O + H2O is: 4 NH3 + 4 NO2 -> 3 N2O + 6 H2O
NO2 is more polar than CO2 due to the presence of a polar N-O bond in NO2 compared to the nonpolar C=O bonds in CO2. The difference in electronegativity between nitrogen and oxygen is larger than that between carbon and oxygen, resulting in a greater polarity in NO2.
The product of N plus O2 to form NO2 is a chemical reaction where nitrogen and oxygen gas combine to form nitrogen dioxide gas. This reaction occurs when nitrogen and oxygen molecules react under specific conditions to produce the NO2 molecule.
NO2- has a polar covalent bond due to the difference in electronegativity between nitrogen and oxygen. This creates an unequal sharing of electrons, resulting in a polar molecule.
The compound formed between K+ and NO2- is called potassium nitrite.
The balanced chemical equation for the reaction NH3 + NO2 -> N2O + H2O is: 4 NH3 + 4 NO2 -> 3 N2O + 6 H2O
NO2 is nitrogen dioxide, which is a reddish-brown gas that is highly reactive and a key component of air pollution. NO is nitric oxide, a colorless gas that is less reactive compared to NO2 and plays a role in various biological processes in the body.
NO2 is more polar than CO2 due to the presence of a polar N-O bond in NO2 compared to the nonpolar C=O bonds in CO2. The difference in electronegativity between nitrogen and oxygen is larger than that between carbon and oxygen, resulting in a greater polarity in NO2.
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SO2(g) + NO2(g) ==> SO3(g) + NO(g)Keq = [SO3][NO]/[SO2][NO2] Without knowing concentrations, one cannot calculate the actual value of Keq.
The amount of NO and SO3 would increased.
The product of N plus O2 to form NO2 is a chemical reaction where nitrogen and oxygen gas combine to form nitrogen dioxide gas. This reaction occurs when nitrogen and oxygen molecules react under specific conditions to produce the NO2 molecule.
Chemical formulas: NO2 is Nitrite NO3 is Nitrate
10S + 40 HNO3 → 10 H2SO4 + 40 NO2 + H2OS + 6HNO3 → H2SO4 + 6NO2 + 2H2OS + 4HNO3 -→ SO2 + 4NO2 + 2H2O
NO2- has a polar covalent bond due to the difference in electronegativity between nitrogen and oxygen. This creates an unequal sharing of electrons, resulting in a polar molecule.
Nothing.