which sequence represents the relationship between pressure and volume of an ideal gas as explained by the…

which sequence represents the relationship between pressure and volume of an ideal gas as explained by the kinetic - molecular theory?\no more gas particles → more collisions → higher pressure\no smaller volume → crowded particles → less collisions → lower pressure\no smaller volume → crowded particles → more collisions → higher pressure\no more gas particles → more kinetic energy → more volume → higher pressure

which sequence represents the relationship between pressure and volume of an ideal gas as explained by the kinetic - molecular theory?\no more gas particles → more collisions → higher pressure\no smaller volume → crowded particles → less collisions → lower pressure\no smaller volume → crowded particles → more collisions → higher pressure\no more gas particles → more kinetic energy → more volume → higher pressure

Answer

Answer:

C. smaller volume → crowded particles → more collisions → higher pressure

Explanation:

Step1: Understand kinetic - molecular theory

In kinetic - molecular theory, gas pressure is due to collisions of gas particles with container walls.

Step2: Analyze volume - pressure relationship

When volume is smaller, gas particles are more crowded.

Step3: Consider collision frequency

Crowded particles lead to more frequent collisions with the walls.

Step4: Determine pressure change

More collisions result in higher pressure.