QUESTION 11 What is the strongest intermolecular force influencing the boiling point of the follow NH O lonic interaction O Dipole-Dipole interactions O Hydrogen bonding van der Waals attractions (aka London dispersion forces)
QUESTION 11 What is the strongest intermolecular force influencing the boiling point of the follow NH O lonic interaction O Dipole-Dipole interactions O Hydrogen bonding van der Waals attractions (aka London dispersion forces)
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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![**Question 11**
**What is the strongest intermolecular force influencing the boiling point of the following molecule?**
[Diagram of a molecule with an NH₂ group, suggesting the presence of an amine]
**Options:**
- Ionic interaction
- Dipole-Dipole interactions
- Hydrogen bonding
- van der Waals attractions (aka London dispersion forces)
The presence of an NH₂ group suggests that hydrogen bonding is the strongest intermolecular force affecting the boiling point of this molecule. Hydrogen bonds typically occur when hydrogen is directly bonded to a highly electronegative atom like nitrogen, oxygen, or fluorine, leading to significant impacts on physical properties such as boiling point.
**Question 12**
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Transcribed Image Text:**Question 11**
**What is the strongest intermolecular force influencing the boiling point of the following molecule?**
[Diagram of a molecule with an NH₂ group, suggesting the presence of an amine]
**Options:**
- Ionic interaction
- Dipole-Dipole interactions
- Hydrogen bonding
- van der Waals attractions (aka London dispersion forces)
The presence of an NH₂ group suggests that hydrogen bonding is the strongest intermolecular force affecting the boiling point of this molecule. Hydrogen bonds typically occur when hydrogen is directly bonded to a highly electronegative atom like nitrogen, oxygen, or fluorine, leading to significant impacts on physical properties such as boiling point.
**Question 12**
[No further details provided]
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