It depends on the concentration of salt within the solution. If the saline solution was less than 0.9%, then water would flow into the cells and they would swell and possible rupture. If the saline concentration was greater than 0.9%, then water would flow out of the cells and shrink which is called crenation. It the saline solution was 0.9% exactly, that is isotonic to the interior of a RBC and nothing would happen.
If red blood cells were placed into a beaker with plasma, the red blood cells would absorb the liquid and start to expand due to the osmotic pressure. Eventually, the red blood cells may burst (hemolysis) if the osmotic pressure is too high compared to their structural integrity. This would release hemoglobin into the plasma.
If human red blood cells are placed in a Ringer solution, which is an isotonic solution, they will maintain their normal shape and structure. The osmotic balance between the solution and the cells will prevent any swelling or shrinking of the red blood cells.
If liver cells are placed in a beaker with a solution that has the same solute concentration as the inside of the cells, the beaker would contain an isotonic solution. In this scenario, there would be no net movement of water into or out of the cells, maintaining their shape and function. The cells would remain stable, as the osmotic pressure is balanced.
The bursting of red blood cells due to osmosis is known as hemolysis. This occurs when red blood cells are placed in a hypotonic solution, causing water to enter the cells and swell them until they burst. Hemolysis can happen if the concentration of solutes inside the cell is higher than the concentration outside.
It's one of these answers: a. The red blood cells will absorb water and increase in size. b. The red blood cells will lose water and decrease in size. c. The red blood cells will first absorb water, then lose water and maintain their normal size. d. The red blood cells will first lose water, then absorb water, and finally double in size. A is wrong, just let you know. Still trying to figure out the answer myself.
If red blood cells were placed into a beaker with plasma, the red blood cells would absorb the liquid and start to expand due to the osmotic pressure. Eventually, the red blood cells may burst (hemolysis) if the osmotic pressure is too high compared to their structural integrity. This would release hemoglobin into the plasma.
If human red blood cells are placed in a Ringer solution, which is an isotonic solution, they will maintain their normal shape and structure. The osmotic balance between the solution and the cells will prevent any swelling or shrinking of the red blood cells.
What can happen to animal cells when placed in a hypotonic solution explain
It's one of these answers: a. The red blood cells will absorb water and increase in size. b. The red blood cells will lose water and decrease in size. c. The red blood cells will first absorb water, then lose water and maintain their normal size. d. The red blood cells will first lose water, then absorb water, and finally double in size. A is wrong, just let you know. Still trying to figure out the answer myself.
The water will flow out of the cell into the hypertonic solution and the red blood cell will crenate (crush).
because red blood cells are blood and if they can disolve there for they will burt cause the blood has acid in it.
What will happen to a red blood cell that is placed in a solution of 90 percent water and 10 percent salt is that the salt will decrease in volume due to osmosis. Meanwhile the water will enter the red blood cell, making it swell up.
The bursting of red blood cells due to osmosis is known as hemolysis. This occurs when red blood cells are placed in a hypotonic solution, causing water to enter the cells and swell them until they burst. Hemolysis can happen if the concentration of solutes inside the cell is higher than the concentration outside.
It's one of these answers: a. The red blood cells will absorb water and increase in size. b. The red blood cells will lose water and decrease in size. c. The red blood cells will first absorb water, then lose water and maintain their normal size. d. The red blood cells will first lose water, then absorb water, and finally double in size. A is wrong, just let you know. Still trying to figure out the answer myself.
blood cells die
nothingbitch
The distilled water is a hypotonic environment.