
(a)
Interpretation: Whether nitrogen is found in Earth’s atmosphere as molecules or individual atoms needs to be explained.
Concept Introduction: Elements can exist as molecules or individual atoms depending on the number of valence electrons present in the atom of the element. If sharing of electron pairs is required, atoms of the element are present in combined form as molecules in the atmosphere. For atoms with a complete octet, they are present as individual atoms.
(a)

Explanation of Solution
In the Earth’s atmosphere, nitrogen gas is present as molecules. The molecular formula of nitrogen gas is
(b)
Interpretation: Whether oxygen is found in Earth’s atmosphere as molecules or individual atoms needs to be explained.
Concept Introduction: Elements can exist as molecules or individual atoms depending on the number of valence electrons present in the atom of the element. If sharing of electron pairs is required, atoms of the element are present in combined form as molecules in the atmosphere. For atoms with a complete octet, they are present as individual atoms.
(b)

Explanation of Solution
In the Earth’s atmosphere, oxygen gas is present as molecules. The molecular formula of oxygen gas is
(c)
Interpretation: Whether argon is found in Earth’s atmosphere as molecules or individual atoms needs to be explained.
Concept Introduction: Elements can exist as molecules or individual atoms depending on the number of valence electrons present in the atom of the element. If sharing of electron pairs is required, atoms of the element are present in combined form as molecules in the atmosphere. For atoms with a complete octet, they are present as individual atoms.
(c)

Explanation of Solution
Argon is found as an individual atom in the Earth’s atmosphere. The number of valence electrons in an argon atom is 8 thus, it has a complete octet. It does not bond with any other atom to complete its octet.
Chapter 8 Solutions
Chemistry 2012 Student Edition (hard Cover) Grade 11
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- Provide the reagents for the following reactions.arrow_forwardIf I have 1-bromopropene, to obtain compound Z, I have to add two compounds A1 and A2. Indicate which compounds are needed. P(C6H5)3arrow_forwardDraw the major product of this reaction. Ignore inorganic byproducts. Assume that the water side product is continuously removed to drive the reaction toward products. O CH3CH2NH2, TSOH Select to Draw >arrow_forward
- Indicate the products obtained by reacting fluorobenzene with a sulfonitric mixture.arrow_forwardIf I have 1-bromopropene, to obtain compound A, I have to add NaOH and another compound. Indicate which compound that would be. C6H5 CH3arrow_forwardIf I have 1-bromopropene and I want to obtain (1,1-dipropoxyethyl)benzene, indicate the compound that I should add in addition to NaOH.arrow_forward
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