Title: Gases, Liquids, and Solids
1Chemistry B11
Chapter 5 Gases, Liquids, and Solids
2Gases
move faster Kinetic energy ?
T ?
3Gases
Physical state of matter depends on
Attractive forces
Kinetic energy
Keeps molecules apart
Brings molecules together
4Gases
Gas
High kinetic energy (move fast)
Low attractive forces
Liquid
Medium kinetic energy (move slow)
medium attractive forces
Solid
Low kinetic energy (move slower)
High attractive forces
5Physical Changes
Melting
Boiling
Change of states
6Ideal Gases
Kinetic molecular theory
- Particles move in straight lines, randomly.
- Kinetic energy of particles depends on
temperature. - Particles collide and change direction (they may
exchange - kinetic energies).
- Gas particles have no volume.
- No attractive forces between gas particles.
- More collision greater pressure.
In reality, There is no ideal gas (all gases are
real).
At STP (Standard Temperature and Pressure) we
can consider them as ideal.
T 0C (273 K) P 1 atm
7Pressure (P)
F constant
A constant
P ?
P ?
A ?
F ?
Atmosphere (atm) Millimeters of mercury (mm
Hg) torr in. Hg Pascal
1 atm 760 mm Hg 760 torr
101,325 pascals 29.92 in. Hg
8Pressure (P)
barometer atmospheric pressure
manometer pressure of gas in a container
9Gases
m,T constant
Boyles law
P 1/a V
PV a constant
P1V1 P2V2
P1V1
P1V1
P2
V2
V2
P2
10Gases
Boyles law
11Gases
m,P constant
Charless law
V
T a V
a constant
T
V1
V2
T2
T1
V1T2
T1V2
V2
T2
T1
V1
12Gases
Charless law
13Gases
m,V constant
Gay-Lussacs law
P
P a T
a constant
T
P1
P2
T2
T1
P1T2
T1P2
P2
T2
T1
P1
14Gases
Gay-Lussacs law
15Gases
combined gas law
P2V2
P1V1
PV
a constant
T
T2
T1
Avogadros law
T1
P1
P1 P2
V1
n1 n2 n number of molecules
V1 V2
T2
P2
T1 T2
V2
16Gases
Ideal gas law
n number of moles (mol) R universal gas
constant V volume (L) P pressure (atm) T
temperature (K)
PV nRT
17Gases
Daltons law of partial pressures
PT P1 P2 P3
18Intermolecular Forces
London dispersion forces
Intermolecular Forces
lt
Dipole-dipole interaction
Ionic bonds Covalent bonds
Intramolecular (Bonding) Forces
Hydrogen bonding
19London dispersion forces
Attractive forces between all molecules
Only forces between nonpolar covalent molecules
He
He
He
He
d-
d
_
_
_
_
_
_
_
2
2
_
2
2
Original Temporary Dipole
No Polarity
He
He
d-
d
d-
d
_
_
2
_
2
_
Original Temporary Dipole
Induced Temporary Dipole
20London dispersion forces
He T -240C (1 atm) ? liquid
Kinetic energy ? Move slower
Attractive forces become more important
T ?
liquid
21Dipole-Dipole Interactions
Attractive forces between two polar molecules
22Hydrogen bonding
Between H bonded to O, N, or F (high
electronegativity) ? d and a nearby O, N, or F ?
d-
H2O
Stronger than dipole-dipole interactions London
dispersion forces
23Hydrogen bonding
d
CH3COOH Acetic acid
d-
24H-bonding in our body
Protein (a-helix)
25Evaporation
equilibrium
Vapor pressure the pressure of a gas in
equilibrium with its liquid form in a closed
container.
Boiling point the temperature at which the vapor
pressure of a liquid is equal to the atmospheric
pressure.
26Evaporation
normal boiling point the temperature at which a
liquid boils under a pressure of 1 atm.
1 atm.
760 mm Hg
Diethyl ether
CH3OH
H2O
27Boiling point
Factors that affect boiling point
1. Intermolecular forces London dispersion
forces lt Dipole-Dipole interactions lt Hydrogen
bonds
28Solids
Network solids (network crystals)
Amorphous solids
29Solids
Solidification (Crystallization) change phase
from liquid to solid.
Fusion (melting) change phase from solid to
liquid.
Sublimation change phase from solid directly
into the vapor.
30Heating Curve
during the phase changes, the temperature stays
constant.
31Phase diagram