Rate of evaporation depends on temperature. As Temp decreases, so does the rate of evaporation.
the rate of evaporation will be equal to the rate of condensation
In a closed container with constant vapor pressure, the rate of evaporation equals the rate of condensation. This is known as dynamic equilibrium. As molecules evaporate from the liquid surface, they will also condense back into the liquid at an equal rate, resulting in a balance between evaporation and condensation.
When the evaporation rate equals the condensation rate, the space above the liquid is in a state of dynamic equilibrium, where molecules are constantly transitioning between the liquid and gas phases but there is no overall change in concentration.
rate of evaporation become equal to rate of condensation
When a liquid is cooled, the rate of evaporation slows down
Rate of evaporation depends on temperature. As Temp decreases, so does the rate of evaporation.
The evaporation rate refers to the speed at which a substance transitions from liquid to vapor at a given temperature and pressure. It is influenced by factors such as surface area, temperature, humidity, and air flow. A higher evaporation rate indicates faster evaporation.
It decreases
Yes, the evaporation rate slows at lower temperatures.
as the temperature increases, the rate of evaporation increases
the rate of evaporation will be equal to the rate of condensation
The liquid will eventually evaporate fully and disappear.
Rate of evaporation refers to the speed at which a liquid changes from its liquid state to a gaseous state, typically measured in units of volume per unit time. Factors affecting the rate of evaporation include temperature, surface area, and humidity levels. A higher rate of evaporation indicates a faster transition from liquid to gas.
In a closed container with constant vapor pressure, the rate of evaporation equals the rate of condensation. This is known as dynamic equilibrium. As molecules evaporate from the liquid surface, they will also condense back into the liquid at an equal rate, resulting in a balance between evaporation and condensation.
When the evaporation rate equals the condensation rate, the space above the liquid is in a state of dynamic equilibrium, where molecules are constantly transitioning between the liquid and gas phases but there is no overall change in concentration.
because