Problem 4 - Atomic Bonds 1 Calculate the force of attraction (in N) between a cation with a valence of +2 and an anion with a valence of -3, the centers of which are separated by a distance of 8.6 nm. Show the derivation of the expression for the force of attraction from the expression for the energy of attraction.

Organic Chemistry
9th Edition
ISBN:9781305080485
Author:John E. McMurry
Publisher:John E. McMurry
Chapter2: Polar Covalent Bonds; Acids And Bases
Section2.1: Polar Covalent Bonds: Electronegativity
Problem 4P: Look at the following electrostatic potential map of methylamine, a substance responsible for the...
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Problem 4 - Atomic Bonds 1
Calculate the force of attraction (in N) between a cation with a valence of +2 and an anion with a
valence of -3, the centers of which are separated by a distance of 8.6 nm. Show the derivation of the
expression for the force of attraction from the expression for the energy of attraction.
Problem 5 - Atomic Bonds
Calculate the percent ionic character of the interatomic bond for CsCl.
Transcribed Image Text:Problem 4 - Atomic Bonds 1 Calculate the force of attraction (in N) between a cation with a valence of +2 and an anion with a valence of -3, the centers of which are separated by a distance of 8.6 nm. Show the derivation of the expression for the force of attraction from the expression for the energy of attraction. Problem 5 - Atomic Bonds Calculate the percent ionic character of the interatomic bond for CsCl.
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