Dynamic Equilibrium
When materials pass into and out of a cell at equal rates, it means there is an equilibrium in concentration inside and outside the cell. This equilibrium prevents a net change in concentration inside the cell, maintaining stability in the cell's internal environment.
Dynamic equilibrium
Dynamic equilibrium
The cell is in a state of equilibrium. Meaning it is in an isotonic solution and there is no net osmotic pressure on the membrane.
The cell is in a state of dynamic equilibrium. This means that while molecules are constantly moving in and out of the cell, there is no overall change in the concentration inside the cell because the rate of movement in both directions is equal.
Isotonic.
Isotonic.
they make the concentration of the solute equal inside and outside of the molecule.
not if the concentration is equal inside and outside of the cell
A solution that produces no change in a cell is called an isotonic solution. In an isotonic solution, the concentration of solutes outside the cell is equal to the concentration of solutes inside the cell, resulting in no net movement of water. This balance maintains cell shape and function without causing swelling or shrinking.
Isotonic conditions will not change the cell in bacterial or an human cell. Because the water concentration in the cell equal.Hypotonic conditions will increase the solute in the cell because of the osmotic pressure inside the cell. Cell may burst if to much solute is inside the cell. Bacterial and human cell.Hypertonic conditions is said to have osmotic pressure. Because the concentration in the environment has an higher concentration than inside the cell so all the solute will drive out of the cell and cause it to dry out.
B. Equilibrium - when equal particles continue to move in both directions there is no further net change in the concentration on either side