Figure 2.10 (a) The dependence of repulsive, attractive, and net forces on interatomic separation for two isolated atoms. (b) The dependence of repulsive, attractive, and net potential energies on interatomic separation for two isolated atoms. Force F Potential energy E Attraction Repulsion Repulsion Attraction + ro Eo Attractive force FA Repulsive force FR -Net force FN Interatomic separation r (a) Repulsive energy ER Interatomic separation Net energy EN Attractive energy EA

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Figure 2.10 (a) The
dependence of repulsive,
attractive, and net forces
on interatomic separation
for two isolated atoms.
(b) The dependence of
repulsive, attractive, and
net potential energies on
interatomic separation for
two isolated atoms.
Force F
Potential energy E
Attraction
→>>>
Repulsion
Repulsion
Attraction
Eo
Attractive force FA
Repulsive force FR
-Net force FN
Interatomic separation r
(a)
Repulsive energy ER
Interatomic separation r
Net energy EN
- Attractive energy EA
(b)
Transcribed Image Text:Figure 2.10 (a) The dependence of repulsive, attractive, and net forces on interatomic separation for two isolated atoms. (b) The dependence of repulsive, attractive, and net potential energies on interatomic separation for two isolated atoms. Force F Potential energy E Attraction →>>> Repulsion Repulsion Attraction Eo Attractive force FA Repulsive force FR -Net force FN Interatomic separation r (a) Repulsive energy ER Interatomic separation r Net energy EN - Attractive energy EA (b)
Attractive Energy EA and repulsive Energy ER for Na+ and Cl- is dependent on distance r between
1,436
ions and: EA==
1
ER
=
7,32.10-6
7-8
-Calculate equilibrium spacing, To and bonding energy Eo.
Transcribed Image Text:Attractive Energy EA and repulsive Energy ER for Na+ and Cl- is dependent on distance r between 1,436 ions and: EA== 1 ER = 7,32.10-6 7-8 -Calculate equilibrium spacing, To and bonding energy Eo.
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