(a) Interpretation: Whether the species C 2 2 − is diamagnetic or paramagnetic needs to be determined. Concept introduction: The magnetic properties of a substance are determined by examining electronic configuration of the species. Paramagnetic species are those in which unpaired electrons are remain in the orbital of any subshell and diamagnetic species does not contain unpaired electrons in the orbital of any subshell that means all electrons are paired.
(a) Interpretation: Whether the species C 2 2 − is diamagnetic or paramagnetic needs to be determined. Concept introduction: The magnetic properties of a substance are determined by examining electronic configuration of the species. Paramagnetic species are those in which unpaired electrons are remain in the orbital of any subshell and diamagnetic species does not contain unpaired electrons in the orbital of any subshell that means all electrons are paired.
Solution Summary: The author explains that the magnetic properties of a substance are determined by examining electronic configuration of the species.
Whether the species C22− is diamagnetic or paramagnetic needs to be determined.
Concept introduction:
The magnetic properties of a substance are determined by examining electronic configuration of the species. Paramagnetic species are those in which unpaired electrons are remain in the orbital of any subshell and diamagnetic species does not contain unpaired electrons in the orbital of any subshell that means all electrons are paired.
Interpretation Introduction
(b)
Interpretation:
Whether the species C22+ is diamagnetic or paramagnetic needs to be determined.
Concept introduction:
The magnetic properties of a substance are determined by examining electronic configuration of the species. Paramagnetic species are those in which unpaired electrons are remain in the orbital of any subshell and diamagnetic species does not contain unpaired electrons in the orbital of any subshell that means all electrons are paired.
Interpretation Introduction
(c)
Interpretation:
Whether the species F2− is diamagnetic or paramagnetic needs to be determined.
Concept introduction:
The magnetic properties of a substance are determined by examining electronic configuration of the species. Paramagnetic species are those in which unpaired electrons are remain in the orbital of any subshell and diamagnetic species does not contain unpaired electrons in the orbital of any subshell that means all electrons are paired.
Interpretation Introduction
(d)
Interpretation:
Whether the species Cl2 is diamagnetic or paramagnetic needs to be determined.
Concept introduction:
The magnetic properties of a substance are determined by examining electronic configuration of the species. Paramagnetic species are those in which unpaired electrons are remain in the orbital of any subshell and diamagnetic species does not contain unpaired electrons in the orbital of any subshell that means all electrons are paired.
Interpretation Introduction
(e)
Interpretation:
Whether the species Li2+ is diamagnetic or paramagnetic needs to be determined.
Concept introduction:
The magnetic properties of a substance are determined by examining electronic configuration of the species. Paramagnetic species are those in which unpaired electrons are remain in the orbital of any subshell and diamagnetic species does not contain unpaired electrons in the orbital of any subshell that means all electrons are paired.
3. Name this ether correctly.
H₁C
H3C
CH3
CH3
4. Show the best way to make the ether in #3 by a
Williamson Ether Synthesis.
Start from an alcohol or phenol.
5. Draw the structure of an example of a sulfide.
1. Which one(s) of these can be oxidized with CrO3 ?
(could be more than one)
a) triphenylmethanol
b) 2-pentanol
c) Ethyl alcohol
d)
CH3
2. Write in all the product(s) of this reaction. Label them
as "major" or "minor".
2-methyl-2-hexanol
H2SO4, heat
3) Determine if the pairs are constitutional isomers, enantiomers, diastereomers, or mesocompounds.
(4 points)
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