1. Relationship between volume and temperature at constant pressure (Charles's law)
Charles's law states that the volume of a fixed mass of gas is directly proportional to its absolute (Kelvin) temperature, as long as the pressure remains constant.
Formula:
T1V1=T2V2
Example 1:
A gas has a volume of 30 cm³ at 30°C. What will the volume be at 60°C?
Solution:
Convert temperatures to Kelvin:
T1=30+273=303 K
T2=60+273=333 K
V1=30 cm³
V2=T1V1×T2=30330×333=32.97 cm3
2. Relationship between pressure and volume at constant temperature (Boyle's law)
Boyle's law states that the pressure of a fixed mass of gas is inversely proportional to its volume, when temperature is constant.
Formula:
P1V1=P2V2
Example 2:
A gas has a volume of 50 cm³ at 1.2 × 10⁵ Pa. What is the volume when the pressure increases to 2.0 × 10⁵ Pa?
Solution:
V2=P2P1×V1=2.0×1051.2×105×50=30 cm3
3. Relationship between pressure and temperature at constant volume (pressure law)
Pressure law states that the pressure of a fixed mass of gas is directly proportional to its absolute temperature, when volume is constant.
Formula:
T1P1=T2P2
Example 3:
The pressure of a gas is 1.0 × 10⁵ Pa at 0°C. What is the pressure at 150°C?
Solution:
T1=0+273=273 K
T2=150+273=423 K
P2=T1P1×T2=2731.0×105×423=1.54×105 Pa
4. General gas law (combined gas law)
By combining the three laws, we get the general gas law:
Formula:
T1P1V1=T2P2V2
This equation helps to solve problems where pressure, volume, and temperature all change.