Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![**Title: Understanding Polymer-Monomer Relationships**
**Introduction**
In polymer chemistry, monomers are the building blocks for synthetic materials. Identifying which polymer is formed from a given monomer is crucial for understanding material properties and applications.
**Question**
Which polymer uses this monomer?
**Monomer Description**
The monomer presented is a linear diol, specifically HO-(CH₂)₄-OH, also known as butanediol.
**Polymer Options**
- **A) Polymer Structure:**
- Repeating unit consists of a para-phenylene group with ester linkages. The polymer chain is terminated with unspecified ends.
- **B) Polymer Structure:**
- Similar to option A, with a para-phenylene group. The chain includes ester linkages and features butanediol as part of its structure, showing a linear chain extending from the ester.
- **C) Polymer Structure:**
- Characterized by a para-phenylene connected via ester linkages, incorporating butanediol, indicating a linear extension akin to option B.
- **D) Polymer Structure:**
- Contains a furan ring with ester linkages. Similar to prior structures, this option includes a butanediol moiety.
**Graphical Analysis**
- Each depicted polymer features a repeating structure denoted by brackets, with 'n' indicating the number of units.
- The monomer fits into the structure where butanediol appears, suggesting compatibility with options B, C, and D.
**Conclusion**
Through analysis of repeating units and structural composition, it's evident that polymers B, C, and D could potentially incorporate the given butanediol monomer due to the presence of similar linear structures within the backbone of the polymer chain.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F75091f2a-b870-483a-8894-e55a91d58933%2F35f654ff-5378-4760-84f7-b83172f185fe%2Fhkzoc1_processed.png&w=3840&q=75)
Transcribed Image Text:**Title: Understanding Polymer-Monomer Relationships**
**Introduction**
In polymer chemistry, monomers are the building blocks for synthetic materials. Identifying which polymer is formed from a given monomer is crucial for understanding material properties and applications.
**Question**
Which polymer uses this monomer?
**Monomer Description**
The monomer presented is a linear diol, specifically HO-(CH₂)₄-OH, also known as butanediol.
**Polymer Options**
- **A) Polymer Structure:**
- Repeating unit consists of a para-phenylene group with ester linkages. The polymer chain is terminated with unspecified ends.
- **B) Polymer Structure:**
- Similar to option A, with a para-phenylene group. The chain includes ester linkages and features butanediol as part of its structure, showing a linear chain extending from the ester.
- **C) Polymer Structure:**
- Characterized by a para-phenylene connected via ester linkages, incorporating butanediol, indicating a linear extension akin to option B.
- **D) Polymer Structure:**
- Contains a furan ring with ester linkages. Similar to prior structures, this option includes a butanediol moiety.
**Graphical Analysis**
- Each depicted polymer features a repeating structure denoted by brackets, with 'n' indicating the number of units.
- The monomer fits into the structure where butanediol appears, suggesting compatibility with options B, C, and D.
**Conclusion**
Through analysis of repeating units and structural composition, it's evident that polymers B, C, and D could potentially incorporate the given butanediol monomer due to the presence of similar linear structures within the backbone of the polymer chain.
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