Concept explainers
Name the noble gas atom that has the same electron configuration as each of the ions in the following compounds.
msp;
(a)
Interpretation:
The noble gas atom that has the same configuration as each of the ions in the given compound are to be predicted.
Concept Introduction:
The distribution of the electrons that exists in the atomic orbital of an atom is collectively known as electron configuration. The description of every electron in an orbital is given by the electron configuration of that atom.
Atoms lose or gain electrons to become stable by attaining nearest noble gas configuration. While doing so, they are converted to their respective ions. The positive ion and the negative ion combine to form their corresponding salt.
Answer to Problem 39QAP
Explanation of Solution
The salt given is
The cation present in
The electron configuration of
Barium present in
The anion present in
The electron configuration of
Sulfur present in
(b)
Interpretation:
The noble gas atom that has the same configuration as each of the ions in the given compound are to be predicted.
Concept Introduction:
The distribution of the electrons that exists in the atomic orbital of an atom is collectively known as electron configuration. The description of every electron in an orbital is given by the electron configuration of that atom.
Atoms lose or gain electrons to become stable by attaining nearest noble gas configuration. While doing so, they are converted to their respective ions. The positive ion and the negative ion combine to form their corresponding salt.
Answer to Problem 39QAP
Explanation of Solution
The salt given is
The cation present in
The electron configuration of
Strontium present in
The anion present in
The electron configuration of
Fluorine present in
(c)
Interpretation:
The noble gas atom that the has same configuration as each of the ions in the given compound are to be predicted.
Concept Introduction:
The distribution of the electrons that exists in the atomic orbital of an atom is collectively known as electron configuration. The description of every electron in an orbital is given by the electron configuration of that atom.
Atoms lose or gain electrons to become stable by attaining nearest noble gas configuration. While doing so, they are converted to their respective ions. The positive ion and the negative ion combine to form their corresponding salt.
Answer to Problem 39QAP
Explanation of Solution
The salt given is
The cation present in
The electron configuration of
Magnesium present in
The anion present in
The electron configuration of
Oxygen present in
(d)
Interpretation:
The noble gas atom that has the same configuration as each of the ions in the given compound are to be predicted.
Concept Introduction:
The distribution of the electrons that exists in the atomic orbital of an atom is collectively known as electron configuration. The description of every electron in an orbital is given by the electron configuration of that atom.
Atoms lose or gain electrons to become stable by attaining nearest noble gas configuration. While doing so, they are converted to their respective ions. The positive ion and the negative ion combine to form their corresponding salt.
Answer to Problem 39QAP
Explanation of Solution
The salt given is
The cation present in
The electron configuration of
Aluminum present in
The anion present in
The electron configuration of
Sulfur present in
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Chapter 12 Solutions
Introductory Chemistry: A Foundation
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- Write Lewis formulas for the BF molecule (two with a single BF bond, two with a double BF bond, and one with a triple BF bond) in which the octet rule is satisfied for at least one of the atoms. Obtain the formal charges of the atoms. Based on the information you have, is there one formula that you think best describes the molecule? Explain. For this best Lewis formula, give the valence bond description of the bonding.arrow_forwardSuccessive substitution of F atoms for H atoms in the molecule NH3 produces the molecules NH2F, NHF2, and NF3. a. Draw Lewis structures for each of the four molecules. b. Using VSEPR theory, predict the geometry of each of the four molecules. c. Specify the polarity (polar or nonpolar) for each of the four molecules.arrow_forward
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