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Write the chemical formula for each of the following compounds, and indicate the oxidation state of nitrogen in each: (a) sodium nitrite, (b) ammonia, (c) nitrous oxide, (d) sodium cyanide, (e) nitric acid, (f) nitrogen dioxide, (g) nitrogen, (h) boron nitride.

Short Answer

Expert verified
(a) Sodium nitrite: Chemical formula is NaNO2 and the oxidation state of nitrogen is +3. (b) Ammonia: Chemical formula is NH3 and the oxidation state of nitrogen is -3. (c) Nitrous oxide: Chemical formula is N2O and the oxidation state of nitrogen is +1.5 (average). (d) Sodium cyanide: Chemical formula is NaCN and the oxidation state of nitrogen is -3. (e) Nitric acid: Chemical formula is HNO3 and the oxidation state of nitrogen is +5. (f) Nitrogen dioxide: Chemical formula is NO2 and the oxidation state of nitrogen is +4. (g) Nitrogen: Chemical formula is N2 and the oxidation state of nitrogen is 0. (h) Boron nitride: Chemical formula is BN and the oxidation state of nitrogen is -3.

Step by step solution

01

(a) Sodium nitrite

1. Chemical formula: Sodium (Na) is an alkali metal that has a +1 charge when it loses an electron, and Nitrite (NO2-) is a polyatomic ion with a total charge of -1. Combining these two ions in the ratio 1:1, we get the chemical formula NaNO2. 2. Oxidation state of nitrogen: Nitrogen is bonded to two oxygens and has one unshared electron. Thus, its oxidation state is +3.
02

(b) Ammonia

1. Chemical formula: Ammonia comprises one nitrogen atom and three hydrogen atoms bonded together; thus, its formula is NH3. 2. Oxidation state of nitrogen: Nitrogen has one lone pair and three single bonds to hydrogen atoms. Thus, its oxidation state is -3.
03

(c) Nitrous oxide

1. Chemical formula: Nitrous oxide is a compound composed of two nitrogen atoms and one oxygen atom, arranged linearly. Thus, its chemical formula is N2O. 2. Oxidation state of nitrogen: Due to the resonance structure of the molecule, one nitrogen atom has an oxidation state of +1, and the other nitrogen atom has an oxidation state of +2 (average oxidation state of +1.5).
04

(d) Sodium cyanide

1. Chemical formula: Sodium (Na) has a +1 charge, and the cyanide ion (CN-) has a -1 charge. Combining these ions in the ratio 1:1, we get the chemical formula NaCN. 2. Oxidation state of nitrogen: Nitrogen is triple bonded to carbon and has one lone pair. Thus, its oxidation state is -3.
05

(e) Nitric acid

1. Chemical formula: Nitric acid consists of one nitrogen atom, one hydrogen atom, and three oxygen atoms. Thus, its chemical formula is HNO3. 2. Oxidation state of nitrogen: Nitrogen is bonded to three oxygen atoms (two in double bonds and one in a single bond) and one hydrogen atom. Thus, its oxidation state is +5.
06

(f) Nitrogen dioxide

1. Chemical formula: Nitrogen dioxide has one nitrogen atom and two oxygen atoms. Thus, its chemical formula is NO2. 2. Oxidation state of nitrogen: Nitrogen is bonded to two oxygen atoms and has an unshared electron. Thus, its oxidation state is +4.
07

(g) Nitrogen

1. Chemical formula: Nitrogen occurs as a diatomic molecule in the atmosphere, with two nitrogen atoms bonded together. Thus, its chemical formula is N2. 2. Oxidation state of nitrogen: Nitrogen is bonded to another nitrogen atom, with each nitrogen having three unshared electrons. Thus, its oxidation state is 0.
08

(h) Boron nitride

1. Chemical formula: Boron nitride (BN) is a compound composed of alternating boron and nitrogen atoms bonded together in a hexagonal lattice structure. The chemical formula is BN. 2. Oxidation state of nitrogen: Nitrogen has three single bonds to three boron atoms and one lone pair. Thus, its oxidation state is -3.

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Most popular questions from this chapter

Borazine, \((\mathrm{BH})_{3}(\mathrm{NH})_{3}\), is an analog of \(\mathrm{C}_{6} \mathrm{H}_{6}\), benzene. It can be prepared from the reaction of diborane with ammonia, with hydrogen as another product; or from lithium borohydride and ammonium chloride, with lithium chloride and hydrogen as the other products. (a) Write balanced chemical equations for the production of borazine using both synthetic methods. (b) Draw the Lewis dot structure of borazine. (c) How many grams of borazine can be prepared from \(2.00 \mathrm{~L}\) of ammonia at STP, assuming diborane is in excess?

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