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Brownian movement is the random motion of particles in a fluid due to collisions with other particles. Diffusion is the process by which particles move from an area of higher concentration to an area of lower concentration due to this random movement. Osmosis is a specific type of diffusion involving the movement of water across a semipermeable membrane from an area of lower solute concentration to an area of higher solute concentration. Brownian movement plays a key role in driving both diffusion and osmosis processes.

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Q: How does brownian movement relate to diffusion and osmosis?
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How does the cell membrane relate to diffusion and osmosis?

The cell membrane plays a crucial role in regulating diffusion and osmosis. It allows only certain molecules to pass through, which maintains the balance of solutes inside and outside the cell. Diffusion and osmosis are passive processes that rely on the cell membrane's selective permeability to control the movement of substances in and out of the cell.


What is diffusion and how does it relate to the movement of material into and out of the cell?

diffusion is the kinetic movement of molecules from higher concentration to lower concentration.


What is diffusion and how does it relate to plasma membrane?

Diffusion is simply the movement of one molecule from an area of high concentration to low concentration. It is semi related to the plasma membrane because plasma membrane does allow diffusion, to an extent. Plasma membrane is semipermeable and only allows certain things to diffuse in or diffuse out.


What is osmosis and how does it relate to water?

Osmosis is the movement of water molecules from an area of low solute concentration to an area of high solute concentration across a selectively permeable membrane. This process helps maintain balance in living organisms by allowing water to move in and out of cells to regulate their internal environment.


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How does osmosis diffusion hypotonic hypertonic and isotonic solutions relate to the cell?

Osmosis is the movement of water across a selectively permeable membrane from an area of low solute concentration to an area of high solute concentration. In a hypotonic solution, there is a higher concentration of solute inside the cell compared to outside, causing water to move into the cell. In a hypertonic solution, there is a higher concentration of solute outside the cell, causing water to move out of the cell. An isotonic solution has equal concentrations of solute inside and outside the cell, resulting in no net movement of water.


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In an egg osmosis lab, the conclusion typically summarizes the observations made during the experiment. It should discuss whether the egg gained or lost mass, explain the process of osmosis that occurred, and relate the results back to the concepts of osmosis and membrane permeability.


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