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chapter 6-Intermolecular Forces-2012,4,10
Lecture
Section I: the Structure of Matters
Chapter 6
Intermolecular Forces
2012, 04, 10
Bond type
Intramolecular
(strong)
Covalent bonds
Ionic bonds
Metallic bonds
Intermolecular
(weak)
Hydrogen bond
Dipole–dipole forces
Dipole-induced dipole force
London dispersion forces.
Summary:
intramolecular forces and intermolecular forces
In general, intramolecular forces determine the Chemical
properties of a substance and intermolecular forces
determine its Physical properties.
Relative strength of forces:
Chapter 6
Intermolecular Forces
Dipole-dipole interactions
London dispersion forces
Dipole-induced dipole force
Hydrogen bonding
Intermolecular Forces
Intermolecular forces are forces of attraction or repulsion
which act between neighboring particles: atoms, molecules
or ions. They are weak compared to the intramolecular
forces, the forces which keep a molecule together.
The covalent bond present within HCl molecules is much stronger than the
forces present between the neighbouring molecules, which exist when the
molecules are sufficiently close to each other.
Intermolecular Forces
? The intermolecular attractions are weaker than covalent
bonds;
? They are, however, strong enough to control physical
properties such as boiling and melting points, vapor
pressures, and viscosities.
Intermolecular Forces
These intermolecular forces as a group are
referred to as van der Waals forces.
van der Waals Forces
? Dipole-dipole interactions
? London dispersion forces
? Dipole-induced dipole force
? Hydrogen bonding
The molecular’s dipole moment
Many molecules have dipole moments due to non-uniform
distributions of positive and negative charges on the various
atoms.
Such is the case with polar compounds like hydrogen fluoride
(HF), where electron density is shared unequally between
atoms.
1. Dipole moment (μ) :
A quantitative
measure of the polarity of a polar molecular.
q: the charges on both poles;
d: the distance between the
charges
+ -
+Q -Q
d
dipole mo
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