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Yes, osmosis involves the movement of water molecules across a selectively permeable membrane from an area of high water concentration to an area of low water concentration. This movement occurs in response to the concentration gradient of water molecules.

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What direction does osmosis go on the concentration gradient?

Osmosis occurs from an area of higher water concentration to an area of lower water concentration, moving down the concentration gradient.


How does the concentration gradient affect osmosis?

The concentration gradient in osmosis refers to the difference in solute concentration between two solutions separated by a semi-permeable membrane. Water will move from an area of low solute concentration to an area of high solute concentration in an attempt to equalize the concentration on both sides of the membrane. The steeper the concentration gradient, the faster the rate of osmosis.


What affects osmosis?

osmosis is affected by the concentration gradient the lower the concentration gradient the faster the speed of osmosis


Is osmosis with or against concentration gradient?

Osmosis is with the concentration gradient, meaning that it involves the movement of water molecules from an area of low solute concentration to an area of high solute concentration across a semi-permeable membrane.


Does osmosis work with or against the concentration gradient?

Osmosis works with the concentration gradient, meaning that it involves the movement of water molecules from an area of low solute concentration to an area of high solute concentration in order to equalize the solute concentration on both sides of the membrane.


What is the term for the Diffusion of water across the concentration gradient?

The term for the diffusion of water across a concentration gradient is osmosis. Osmosis refers to the movement of water molecules through a selectively permeable membrane from an area of lower solute concentration to an area of higher solute concentration.


What is the movement of water across a concentration gradient called?

The movement of water across a concentration gradient is called osmosis. Water moves from an area of higher concentration to an area of lower concentration to equalize solute concentrations on both sides of a semi-permeable membrane.


Why does the concentration gradient affect osmosis?

Osmosis is the movement of water across a selectively permeable membrane from an area of higher water concentration to an area of lower water concentration. The concentration gradient, or difference in solute concentration between two solutions, affects osmosis because water moves to areas with higher solute concentration to equalize concentrations on both sides of the membrane.


What is the difference in the concentration of a substance across a space is called concentration?

The difference in concentration of a substance across a space is called a concentration gradient. It represents the change in concentration over a given distance and drives processes like diffusion and osmosis. Substances move from areas of high concentration to areas of low concentration along the concentration gradient to achieve equilibrium.


What kind of concentration forms whenever there is a difference in concentration between one place and another?

A gradient forms when there is a difference in concentration between two places. This gradient drives the movement of substances from areas of higher concentration to areas of lower concentration through processes such as diffusion or osmosis.


What is the relationship between mo laces concentration rate of osmosis and mass change?

The rate of osmosis is directly related to the concentration gradient of solute particles across a semi-permeable membrane. When there is a higher concentration gradient, the rate of osmosis will be faster. This can lead to a greater mass change in a system as water moves to balance out the concentration on both sides of the membrane.


COMPARE osmosis and diffusion?

Diffusion is movement of molecules, from region of higher concentration, to the region of lower concentration, along concentration gradient.