Decide which intermolecular forces act between the molecules of each compound in the table below. compound water COS carbonyl sulfide NOCI nitrosyl chloride CL₂2 chlorine intermolecular forces (check all that apply) dispersion dipole hydrogen-bonding 0 U
Decide which intermolecular forces act between the molecules of each compound in the table below. compound water COS carbonyl sulfide NOCI nitrosyl chloride CL₂2 chlorine intermolecular forces (check all that apply) dispersion dipole hydrogen-bonding 0 U
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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![**Intermolecular Forces in Compounds**
The following table helps determine which intermolecular forces act between the molecules of each compound listed. For each compound, check all applicable intermolecular forces: dispersion, dipole-dipole, or hydrogen-bonding.
| Compound | Intermolecular Forces (Check all that apply) |
|------------------|-----------------------------------------------|
| | Dispersion | Dipole | Hydrogen-Bonding |
| **Water** | [ ] | [ ] | [ ] |
| **COS** | [ ] | [ ] | [ ] |
| Carbonyl Sulfide | | | |
| **NOCl** | [ ] | [ ] | [ ] |
| Nitrosyl Chloride| | | |
| **Cl\_2** | [ ] | [ ] | [ ] |
| Chlorine | | | |
- **Water**: Known for hydrogen bonding due to its polar nature and presence of hydrogen and oxygen.
- **COS (Carbonyl Sulfide)**: Exhibits dipole interactions and possible dispersion forces.
- **NOCl (Nitrosyl Chloride)**: Likely to have dipole-dipole interactions as well as dispersion forces.
- **Cl\_2 (Chlorine)**: Typically involves dispersion forces due to its nonpolar nature.
This table serves as a guide for identifying the types of intermolecular forces in various compounds, essential for understanding their physical properties and behaviors in different environments.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd11077d3-f0b7-424b-830f-d72f05e11bec%2F234682fb-c32f-46e1-bf70-1c0064a61216%2Fvmprchs_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Intermolecular Forces in Compounds**
The following table helps determine which intermolecular forces act between the molecules of each compound listed. For each compound, check all applicable intermolecular forces: dispersion, dipole-dipole, or hydrogen-bonding.
| Compound | Intermolecular Forces (Check all that apply) |
|------------------|-----------------------------------------------|
| | Dispersion | Dipole | Hydrogen-Bonding |
| **Water** | [ ] | [ ] | [ ] |
| **COS** | [ ] | [ ] | [ ] |
| Carbonyl Sulfide | | | |
| **NOCl** | [ ] | [ ] | [ ] |
| Nitrosyl Chloride| | | |
| **Cl\_2** | [ ] | [ ] | [ ] |
| Chlorine | | | |
- **Water**: Known for hydrogen bonding due to its polar nature and presence of hydrogen and oxygen.
- **COS (Carbonyl Sulfide)**: Exhibits dipole interactions and possible dispersion forces.
- **NOCl (Nitrosyl Chloride)**: Likely to have dipole-dipole interactions as well as dispersion forces.
- **Cl\_2 (Chlorine)**: Typically involves dispersion forces due to its nonpolar nature.
This table serves as a guide for identifying the types of intermolecular forces in various compounds, essential for understanding their physical properties and behaviors in different environments.
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