Which situation below results in the smallest dipole moment? O +2 and -2 charges separated by 400 pm O +1 and -1 charges separated by 800 pm O +1 and -1 charges separated by 600 pm +2 and -2 charges separated by 800 pm +2 and -2 charges separated by 600 pm
Which situation below results in the smallest dipole moment? O +2 and -2 charges separated by 400 pm O +1 and -1 charges separated by 800 pm O +1 and -1 charges separated by 600 pm +2 and -2 charges separated by 800 pm +2 and -2 charges separated by 600 pm
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:**
Which situation below results in the smallest dipole moment?
**Options:**
- ○ +2 and -2 charges separated by 400 pm
- ○ +1 and -1 charges separated by 800 pm
- ○ +1 and -1 charges separated by 600 pm
- ○ +2 and -2 charges separated by 800 pm
- ○ +2 and -2 charges separated by 600 pm
**Explanation:**
The dipole moment (\(\mu\)) is calculated using the formula \(\mu = q \times d\), where \(q\) is the magnitude of the charge and \(d\) is the distance between the charges. To find the smallest dipole moment, you need both low charge values and a shorter distance between them.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F07c01a81-da21-424d-bcf5-49921fafa500%2Fec20cb80-e396-47a8-b4d6-27a9a4c7171d%2Ftaxyk6a_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Question:**
Which situation below results in the smallest dipole moment?
**Options:**
- ○ +2 and -2 charges separated by 400 pm
- ○ +1 and -1 charges separated by 800 pm
- ○ +1 and -1 charges separated by 600 pm
- ○ +2 and -2 charges separated by 800 pm
- ○ +2 and -2 charges separated by 600 pm
**Explanation:**
The dipole moment (\(\mu\)) is calculated using the formula \(\mu = q \times d\), where \(q\) is the magnitude of the charge and \(d\) is the distance between the charges. To find the smallest dipole moment, you need both low charge values and a shorter distance between them.
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