Formula:
P1V1=P2V2P1V1=P2V2
Relationship Between Variables:
Pressure (P) and Volume (V) are inversely proportional (when Temperature is constant).
If Pressure increases, Volume decreases (and vice versa).
📌 Example: Squeezing a gas-filled syringe reduces its volume, increasing pressure.
Formula:
V1T1=V2T2T1V1=T2V2
Relationship Between Variables:
Volume (V) and Temperature (T) are directly proportional (when Pressure is constant).
If Temperature increases, Volume increases (and vice versa).
📌 Example: A balloon expands when heated because the gas molecules move faster and take up more space.
Formula:
P1V1T1=P2V2T2T1P1V1=T2P2V2
Relationship Between Variables:
Pressure (P), Volume (V), and Temperature (T) are all related.
If Temperature increases, Volume increases (Charles’s Law).
If Pressure increases, Volume decreases (Boyle’s Law).
📌 Example: A closed aerosol can at high temperature can burst because both volume and pressure are affected.