decrease
Condensation can increase during particle movement because of the increased interactions between particles, leading to more nucleation sites for condensation. Movement may also increase the surface area available for condensation to occur.
The movement of particles decrease as temperature decreases, and vice versa. Therefore, they will decrease while freezing.
The movement of particles increases during vaporization as they gain more energy to overcome intermolecular forces and transition from a condensed phase to a gaseous phase.
The movement of particles increases during sublimation. This is because sublimation involves the direct transition of a substance from a solid to a gas phase without passing through a liquid phase, leading to an increase in the kinetic energy of particles.
The change from a gas to a liquid involves a decrease in molecular motion. In this phase transition, particles lose energy and come closer together, resulting in a decrease in their overall movement and a more ordered arrangement.
Decrease
increase
Condensation can increase during particle movement because of the increased interactions between particles, leading to more nucleation sites for condensation. Movement may also increase the surface area available for condensation to occur.
increase
Increase
Increase
the movement of particles increases
The movement of particles decrease as temperature decreases, and vice versa. Therefore, they will decrease while freezing.
increase
A Phase Change
The movement of particles increases during vaporization as they gain more energy to overcome intermolecular forces and transition from a condensed phase to a gaseous phase.
The movement of particles increases during sublimation. This is because sublimation involves the direct transition of a substance from a solid to a gas phase without passing through a liquid phase, leading to an increase in the kinetic energy of particles.