Highlight the atoms or groups that are in hydrophobic portions of this molecule in blue, and the atoms or groups that are in hydrophilic portions of this molecule in red. CH,—CH,—0–CH,—CH, X 3 Ć
Highlight the atoms or groups that are in hydrophobic portions of this molecule in blue, and the atoms or groups that are in hydrophilic portions of this molecule in red. CH,—CH,—0–CH,—CH, X 3 Ć
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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![**Topic: Principles of Organic Chemistry**
**Identifying Hydrophobic and Hydrophilic Parts of an Organic Molecule**
---
**Instruction:** Highlight the atoms or groups that are in **hydrophobic** portions of this molecule in blue, and the atoms or groups that are in **hydrophilic** portions of this molecule in red.
**Molecular Structure:**
\[
\text{CH}_3 - \text{CH}_2 - \text{O} - \text{CH}_2 - \text{CH}_3
\]
**Description:**
The molecular structure represents an organic compound with an ether functional group. In this structure, the hydrophobic (water-repelling) regions typically consist of non-polar hydrocarbon chains or groups, while the hydrophilic (water-attracting) region includes the polar ether group.
- **Hydrophobic Portions:** Generally, the \( \text{CH}_3 - \text{CH}_2 \) and \(\text{CH}_2 - \text{CH}_3\) segments, as they are composed of non-polar hydrocarbon chains.
- **Hydrophilic Portions:** Typically, the oxygen atom \( \text{O} \), which is part of the ether group, due to its polar nature.
---
**Interactive Tools:**
- Use the pencil tool to highlight sections of the molecule.
- Utilize the eraser tool to modify any selections.
**Navigation:**
- Click 'Explanation' for detailed guidance on identifying hydrophilic and hydrophobic parts.
- Use 'Check' to verify your highlighted selections.
**Legal Notices:**
- © 2023 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center | Accessibility
---
By understanding the differences between hydrophobic and hydrophilic parts of molecules, you can better predict their behavior in various environments, such as solvents and biological systems.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd8aa44a9-80e9-4452-8fab-e53e1762275e%2F0ff10296-7f5e-457a-992b-14c6105606ce%2F2yx5n2n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Topic: Principles of Organic Chemistry**
**Identifying Hydrophobic and Hydrophilic Parts of an Organic Molecule**
---
**Instruction:** Highlight the atoms or groups that are in **hydrophobic** portions of this molecule in blue, and the atoms or groups that are in **hydrophilic** portions of this molecule in red.
**Molecular Structure:**
\[
\text{CH}_3 - \text{CH}_2 - \text{O} - \text{CH}_2 - \text{CH}_3
\]
**Description:**
The molecular structure represents an organic compound with an ether functional group. In this structure, the hydrophobic (water-repelling) regions typically consist of non-polar hydrocarbon chains or groups, while the hydrophilic (water-attracting) region includes the polar ether group.
- **Hydrophobic Portions:** Generally, the \( \text{CH}_3 - \text{CH}_2 \) and \(\text{CH}_2 - \text{CH}_3\) segments, as they are composed of non-polar hydrocarbon chains.
- **Hydrophilic Portions:** Typically, the oxygen atom \( \text{O} \), which is part of the ether group, due to its polar nature.
---
**Interactive Tools:**
- Use the pencil tool to highlight sections of the molecule.
- Utilize the eraser tool to modify any selections.
**Navigation:**
- Click 'Explanation' for detailed guidance on identifying hydrophilic and hydrophobic parts.
- Use 'Check' to verify your highlighted selections.
**Legal Notices:**
- © 2023 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center | Accessibility
---
By understanding the differences between hydrophobic and hydrophilic parts of molecules, you can better predict their behavior in various environments, such as solvents and biological systems.
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