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What is reached when molecules or particles continue to move and collide but no change in concentration occurs?

dynamic equilibrium


When there is no difference in the concentration of a substance from one to another then what happens?

Dynamic equilibrium has been reached.


When molecules or particles continue to move and collide but no change in concentration occurs is reached?

dynamic equilibrium for Plato its A


Does random movement of molecules stop once equilibrium is reached?

When equilibrium is reached, there is no net motion of molecules. This does not mean that no molecules are moving. In diffusion, this would mean there are equal molecules leaving as are entering.


Was dynamic equilibrium reached in any of the molasses demonstration?

yes


What is reached when molecules are equally distributed?

an equilibrium


What is reached when the number of molecules crossing the membrane is the same in both directions?

When the number of molecules crossing the membrane is the same in both directions, equilibrium is reached. This means that a state of balance has been achieved, where there is no net movement of molecules across the membrane.


Is reached when the concentration of the solute is the same throughout a solution?

dynamic equilibrium


What is when the molecules become uniformly distributed they have reached?

When the molecules become uniformly distributed, they have reached equilibrium. This means that there is an equal concentration of molecules throughout the system, and no further net movement of molecules will occur.


Do random movements of molecules stop once equilibrium is reached?

Yes. Equilibrium is when the movement of molecules stops and equals out.


Does diffusion ever stop?

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.


How do you know when dynamic equilibrium is reached?

Dynamic equilibrium is reached when the rate of the forward reaction equals the rate of the reverse reaction in a closed system. This means that the concentrations of reactants and products remain constant over time. The system appears to be at rest even though the reactions are still ongoing.