EBK ORGANIC CHEMISTRY: PRINCIPLES AND M
EBK ORGANIC CHEMISTRY: PRINCIPLES AND M
2nd Edition
ISBN: 9780393543971
Author: KARTY
Publisher: VST
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Chapter A, Problem A.32P
Interpretation Introduction

(a)

Interpretation:

For the given IUPAC name, the corresponding structure is to be drawn.

Concept introduction:

Ethers have an oxygen atom attached to two alkyl groups on either side. These alkyl groups may be different or same. In case of ethers having two different alkyl groups, the larger alkyl group is considered as the root. The other alkyl group with the oxygen atom is considered as the alkoxy group.

Interpretation Introduction

(b)

Interpretation:

For the given IUPAC name, the corresponding structure is to be drawn.

Concept introduction:

Ethers have an oxygen atom attached to two alkyl groups on either side. These alkyl groups may be different or same. In case of ethers having two different alkyl groups, the larger alkyl group is considered as the root. The other alkyl group with the oxygen atom is considered as the alkoxy group.

Interpretation Introduction

(c)

Interpretation:

For the given IUPAC name, the corresponding structure is to be drawn.

Concept introduction:

Ethers have an oxygen atom attached to two alkyl groups on either side. These alkyl groups may be different or same. In case of ethers having two different alkyl groups, the larger alkyl group is considered as the root. The other alkyl group with the oxygen atom is considered as the alkoxy group.

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Naming and drawing secondary Write the systematic (IUPAC) name for each of the following organic molecules: CH3 Z structure CH3 CH2 CH2 N-CH3 CH3-CH2-CH2-CH-CH3 NH CH3-CH-CH2-CH2-CH2-CH2-CH2-CH3 Explanation Check ☐ name ☐ 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy C G
C This question shows how molecular orbital (MO) theory can be used to understand the chemical properties of elemental oxygen O₂ and its anionic derivative superoxide Oz. a) Draw the MO energy diagram for both O2 and O2. Clearly label your diagram with atomic orbital names and molecular orbital symmetry labels and include electrons. Draw the Lewis structure of O2. How does the MO description of O2 differ from the Lewis structure, and how does this difference relate to the high reactivity and magnetic properties of oxygen? ) Use the MO diagram in (a) to explain the difference in bond length and bond energy between superoxide ion (Oz, 135 pm, 360 kJ/mol) and oxygen (O2, 120.8 pm, 494 kJ/mol).
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