Organic Chemistry: Principles And Mechanisms: Study Guide/solutions Manual (second)
Organic Chemistry: Principles And Mechanisms: Study Guide/solutions Manual (second)
2nd Edition
ISBN: 9780393655551
Author: KARTY, Joel
Publisher: W. W. Norton & Company
bartleby

Concept explainers

Question
Book Icon
Chapter 12, Problem 12.6P
Interpretation Introduction

(a)

Interpretation:

The products that would be produced when the given compound reacts with molecular bromine in carbon tetrachloride, are to be drawn. It is also to be predicted if the product mixture will be optically active or not.

Concept introduction:

Alkene reacts with molecular bromine (Br2) in carbon tetrachloride (CCl4) to yield a mixture of dihaloalkanes. Molecular bromine undergoes anti addition across a carbon-carbon double bond. To account for the stereochemistry of the reaction, the mechanism must proceed through a cyclic halonium ion intermediate. If the mixture of products is diastereomers, then the mixture would be optically active. If the products are either enantiomers or a meso compound, then the mixture is optically inactive. A symmetrically substituted alkene may yield a meso compound, which would be optically inactive.

Interpretation Introduction

(b)

Interpretation:

The products that would be produced when the given compound reacts with molecular bromine in carbon tetrachloride, are to be drawn. It is also to be predicted if the product mixture will be optically active or not.

Concept introduction:

Alkene reacts with molecular bromine (Br2) in carbon tetrachloride (CCl4) to yield a mixture of dihaloalkanes. Molecular bromine undergoes anti addition across a carbon-carbon double bond. To account for the stereochemistry of the reaction, the mechanism must proceed through a cyclic halonium ion intermediate. If the mixture of products is diastereomers, then the mixture would be optically active. If the products are either enantiomers or a meso compound, then the mixture is optically inactive A symmetrically substituted alkene may yield a meso compound, which would be optically inactive. While an unsymmetrically substituted alkene is expected to yield a pair of diastereomers making the mixture optically active.

Interpretation Introduction

(c)

Interpretation:

The products that would be produced when the given compound reacts with molecular bromine in carbon tetrachloride are to be drawn. It is also to be predicted if the product mixture will be optically active or not.

Concept introduction:

Alkene reacts with molecular bromine (Br2) in carbon tetrachloride (CCl4) to yield a mixture of dihaloalkanes. Molecular bromine undergoes anti addition across a carbon-carbon double bond. To account for the stereochemistry of the reaction, the mechanism must proceed through a cyclic halonium ion intermediate. If the mixture of products is diastereomers, then the mixture would be optically active. If the products are either enantiomers or a meso compound, then the mixture is optically inactive. A symmetrically substituted alkene may yield a meso compound, which would be optically inactive. While an unsymmetrically substituted alkene is expected to yield a pair of diastereomers making the mixture optically active.

Interpretation Introduction

(d)

Interpretation:

The products that would be produced when the given compound reacts with molecular bromine in carbon tetrachloride are to be drawn. It is also to be predicted if the product mixture will be optically active or not.

Concept introduction:

Alkene reacts with molecular bromine (Br2) in carbon tetrachloride (CCl4) to yield a mixture of dihaloalkanes. Molecular bromine undergoes anti addition across a carbon-carbon double bond. To account for the stereochemistry of the reaction, the mechanism must proceed through a cyclic halonium ion intermediate. If the mixture of products is diastereomers, then the mixture would be optically active. If the products are either enantiomers or a meso compound, then the mixture is optically inactive. A symmetrically substituted alkene may yield a meso compound, which would be optically inactive. While an unsymmetrically substituted alkene is expected to yield a pair of diastereomers making the mixture optically active.

Blurred answer
Students have asked these similar questions
Q7. a. Draw the line-bond structure of the major product for the following reaction, if a reaction occurs, assume monohalogenation. b. Calculate the product ratios using the following information (hint: use the number of hydrogens in each category present to calculate the ratios). Chlorination: 1° Reactivity=1 2° Reactivity=4 Heat + Cl2 3° Reactivity=5
Please correct answer and don't use hand rating and don't use Ai solution
Q10: Alkane halogenation a. Give the name and structures of the five isomeric hexanes. Page 4 of 5 Chem 0310 Organic Chemistry 1 Recitations b. For each isomer, give all the free radical monochlorination and monobromination products that are structurally isomeric.

Chapter 12 Solutions

Organic Chemistry: Principles And Mechanisms: Study Guide/solutions Manual (second)

Knowledge Booster
Background pattern image
Chemistry
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Organic Chemistry: A Guided Inquiry
Chemistry
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Cengage Learning