During diffusion, particles move from an area of high concentration to an area of low concentration of particles. This diffusion occurs until equilibrium is reached, which is when both areas are balanced out so that they both have the same concentration of particles as each other.
equilibrium QUEENSCENE: yes, equilibrium because the concentration of molecules will be the same throughout the space the molecules occupy.
Equilibrium
When no net change in concentration results from diffusion, the system has reached equilibrium. At equilibrium, the rate of molecules moving from one area to another is equal in both directions, resulting in a stable concentration gradient.
Diffusion leads to the state of equilibrium, where there is an equal distribution of molecules or particles throughout a system. At equilibrium, there is no net movement of particles from one area to another because the concentration gradient has been equalized.
Diffusion will eventually result in equilibrium, where there is an equal distribution of particles or molecules throughout the space available. This occurs because diffusion naturally moves substances from areas of high concentration to areas of low concentration until the concentration is the same everywhere.
I will use the sugar cube example. Equilibrium is established as a result of diffusion. For example, consider placing a sugar cube into a beaker of water. As the sugar cube dissolves, the sugar molecules diffuse throughout the beaker When the beaker is left undisturbed, the concentration of the sugar molecules will eventually remain the same throughout the beaker. Thus, equilibrium is established due to the same concentration of the sugar molecules throughout the beaker.
Equilibrium in diffusion and osmosis is reached when there is a balanced distribution of particles or solutes across a membrane, resulting in no net movement of particles. In diffusion, equilibrium is reached when there is an equal concentration of particles on both sides of the membrane. In osmosis, equilibrium is reached when the water concentration is the same on both sides of the membrane.
Diffusion will continue as long as there is a concentration gradient present. Once equilibrium is reached and the concentrations are equal throughout, diffusion will stop.
When an equilibrium has been met.
yes
When the system is at balance or at equalibrium, diffusion stops..
Diffusion continues until there is no longer a concentration gradient present between the two regions. Once equilibrium is reached, the molecules will be evenly distributed throughout the system and diffusion will stop.