When a cell is in a solution that has the same concentration of water and solutes, it is considered isotonic. Water still moves through the plasma membrane, but water enters and leaves the cell at an equal rate-it has reached an equilibrium, and there is no net movement of water.
Hypertonic and hypotonic solutions both refer to the concentration of solutes compared to a cell. In a hypertonic solution, the concentration of solutes is higher outside the cell, causing water to move out of the cell. In a hypotonic solution, the concentration of solutes is lower outside the cell, causing water to move into the cell.
An isotonic solution refers to a solution where the concentration of solutes is the same inside and outside of a cell, leading to no net movement of water across the cell membrane. Equilibrium, on the other hand, refers to a state where there is a balance between opposing forces, resulting in a steady state with no net change. In the context of a cell, equilibrium can refer to the balance of ions or molecules inside and outside the cell.
The three types of solutions in animal and plant cells are isotonic, hypotonic and hypertonic. In an isotonic solution, the concentration of solutes is the same inside and outside of the cell. In a hypotonic solution, the concentration of solutes is lower outside the cell compared to inside, causing the cell to swell. In a hypertonic solution, the concentration of solutes is higher outside the cell compared to inside, causing the cell to shrink.
Hypotonic and hypertonic describe the concentration of solutes in a solution compared to another solution. In a hypotonic solution, there is a lower concentration of solutes than in the other solution, while in a hypertonic solution, there is a higher concentration of solutes.
"Hypotonic" refers to a solution that has a lower concentration of solutes compared to another solution. In biology, a hypotonic solution has a lower concentration of solutes outside of a cell compared to inside, causing water to move into the cell and potentially cause it to swell and burst.
Hypertonic and hypotonic solutions both refer to the concentration of solutes compared to a cell. In a hypertonic solution, the concentration of solutes is higher outside the cell, causing water to move out of the cell. In a hypotonic solution, the concentration of solutes is lower outside the cell, causing water to move into the cell.
The solution is called isotonic when the cell is in equilibrium. This means that the concentration of solutes inside and outside the cell is the same, resulting in no net movement of water across the cell membrane.
isotonic solution
A hypertonic environment with regard to the cell.
An isotonic solution refers to a solution where the concentration of solutes is the same inside and outside of a cell, leading to no net movement of water across the cell membrane. Equilibrium, on the other hand, refers to a state where there is a balance between opposing forces, resulting in a steady state with no net change. In the context of a cell, equilibrium can refer to the balance of ions or molecules inside and outside the cell.
Isotonic concentration refers to a solution that has the same concentration of solutes as another solution, resulting in no net movement of water across a semipermeable membrane. This creates a state of equilibrium between the two solutions, maintaining cell volume and preventing osmotic effects.
In an isotonic solution, there is no net movement of water across the cell membrane, as the concentration of solutes inside and outside the cell is equal. Therefore, osmosis does not occur in an isotonic solution.
The three types of solutions in animal and plant cells are isotonic, hypotonic and hypertonic. In an isotonic solution, the concentration of solutes is the same inside and outside of the cell. In a hypotonic solution, the concentration of solutes is lower outside the cell compared to inside, causing the cell to swell. In a hypertonic solution, the concentration of solutes is higher outside the cell compared to inside, causing the cell to shrink.
when a concentration of something, usually water, is the same inside and outside a cell, it is called an isotonic solution. When there is more inside the cell or membrane, but less outside, the solution is hypotonic. when there is more on the outside , it is known as hypertonic. however, it depends what you are describing
To determine if a solution is hypertonic or hypotonic, you need to compare the concentration of solutes in the solution to the concentration of solutes in the surrounding environment. If the solution has a higher concentration of solutes than the surrounding environment, it is hypertonic. If the solution has a lower concentration of solutes than the surrounding environment, it is hypotonic.
Hypotonic and hypertonic describe the concentration of solutes in a solution compared to another solution. In a hypotonic solution, there is a lower concentration of solutes than in the other solution, while in a hypertonic solution, there is a higher concentration of solutes.
You can determine if a solution is hypotonic, hypertonic, or isotonic by comparing the concentration of solutes in the solution to the concentration of solutes in the surrounding environment. If the solution has a lower concentration of solutes than the surrounding environment, it is hypotonic. If the solution has a higher concentration of solutes, it is hypertonic. If the concentrations are equal, the solution is isotonic.