2. Use the electrostatic model to calculate the energy (in kJ mol') required to break an O...H hydrogen bond in a vacuum (er 1) and in water (er 80.0). Let the O...H distance be 170 pm, and partial charges on the H and O atoms be +0.42e and -0.84e, respectively.

University Physics Volume 3
17th Edition
ISBN:9781938168185
Author:William Moebs, Jeff Sanny
Publisher:William Moebs, Jeff Sanny
Chapter9: Condensed Matter Physics
Section: Chapter Questions
Problem 58P: The measured density of a CsCl crystal is 3.988 g/cm3. What is the equilibrium separate distance of...
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2. Use the electrostatic model to calculate the energy (in kJ mol") required to break an
0...H hydrogen bond in a vacuum (er = 1) and in water (er 80.0). Let the O...H
distance be 170 pm, and partial charges on the H and O atoms be +0.42e and -0.84e,
respectively.
Transcribed Image Text:2. Use the electrostatic model to calculate the energy (in kJ mol") required to break an 0...H hydrogen bond in a vacuum (er = 1) and in water (er 80.0). Let the O...H distance be 170 pm, and partial charges on the H and O atoms be +0.42e and -0.84e, respectively.
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