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osmosis is in living organism .osmosis is a flow of liquid from higher concentration to lower concentration . all living organisms undergoes this process.for eg: due to over heat our body undergoes osmosis process by emitting the sweat outside
in, this is called osmosis. it is a form of passive transport driven by the higher solute concentration inside the cell than outside. it requires no energy to run.out, this is called reverse osmosis. it is a form of active transport driven by higher pressure inside the cell than outside. it requires energy to create and maintain the pressure difference. living cells do not use this, instead they use a form of active transport involving pore pumpsembedded in the membrane to remove excess water and other undesired chemicals from the cell.
It provides different levels of water concentration to where you need it.
Diffusion is the result of a concentration gradient. When there is a higher concentration of a substance on one side of a barrier than on the other side, the molecules move across the barrier to try and establish equilibrium. This process is diffusion. Diffusion of water is specifically called osmosis. While diffusion occurs in living things, equilibrium is never reached. In an organism, equilibrium is the result of death.
Osmosis is the passage of water from a region of high water concentration through a semi-permeable membrane to a region of low water concentration.
movement of a solvent (as water) through a semipermeable membrane (as a living cell) into a solution of higher solute concentration that tends to equilize the concentration of solute on the two sides of the membrane.
It's a hypotonic solution. ex; blood, tears.
osmosis is in living organism .osmosis is a flow of liquid from higher concentration to lower concentration . all living organisms undergoes this process.for eg: due to over heat our body undergoes osmosis process by emitting the sweat outside
By testing whether it is hyper or hypotonic solution. Also, the water potential!!
As water molecules are smaller than either Sodium or Chlorine molecules, osmosis is favoured in their leaving the cell into the salt solution. Therefore a living cell shrinks in salt solution.
What is atomistic market concentration in assisted living?
The standard of living. The higher each of these things are the higher the standard of living for the people there.
in, this is called osmosis. it is a form of passive transport driven by the higher solute concentration inside the cell than outside. it requires no energy to run.out, this is called reverse osmosis. it is a form of active transport driven by higher pressure inside the cell than outside. it requires energy to create and maintain the pressure difference. living cells do not use this, instead they use a form of active transport involving pore pumpsembedded in the membrane to remove excess water and other undesired chemicals from the cell.
Hypertonic solutions are solutions that have a higher concentration than that of its immediate environment. The effects of hypertonic solutions on living cells is crenation in animal cells and plasmolysis in plant cells.
The cost of living in Raleigh is higher than other parts of North Carolina due to its greater concentration of educated professionals, however it is still significantly lower than other metropolitan parts of the U.S.
The cost of living in Raleigh is higher than other parts of North Carolina due to its greater concentration of educated professionals, however it is still significantly lower than other metropolitan parts of the U.S.
No. All plants do respond to salt to some extent, but the degree to which they do so varies dramatically. The most important way in which a plant responds to salt (specifically a salty solution) is the degree to which the plant's interior tends to lose water to its environment when the plant is in a solution whose salt concentration (salinity) exceeds its interior salt concentration. The process by which this water is lost is called osmosis. Specifically, plants that are well-adapted to living in salty environments will lose less water to the surrounding environment through osmosis relative to a plant that is well-adapted to living in freshwater environments (with the precise concentration gradient of salts between the interior of the plant and the exterior being the control variable).