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Osmosis is best illustrated by movement of water molecules across a semipermeable membrane from an area of high water concentration to an area of low water concentration. This movement occurs in an effort to equalize the concentration of solutes on both sides of the membrane.

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1y ago

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Which process accomplishes the movement of gases illustrated by arrows in the diagram?

The process that accomplishes the movement of gases illustrated by arrows in the diagram is called diffusion. Diffusion is the spontaneous movement of molecules from an area of high concentration to an area of low concentration until equilibrium is reached.


What is the principle force that causes movement of fluid from tissues into capillaries?

The principle force that causes movement of fluid from tissues into capillaries is oncotic pressure. This pressure is generated by the presence of proteins in the blood that draw fluid back into the capillaries by osmosis.


What is it called when osmosis can only occur if water travels?

This is called osmosis. Osmosis is the movement of water molecules across a semipermeable membrane from an area of low solute concentration to an area of high solute concentration. It does not require the presence of other molecules for it to occur.


Which process accomplishes the movement of gases illustrated by the arrows in th diagram?

The process that accomplishes the movement of gases illustrated by the arrows in the diagram is diffusion. Diffusion is the movement of molecules from an area of higher concentration to an area of lower concentration, resulting in the equal distribution of molecules. In this case, gases are moving down their concentration gradient through the process of diffusion.


How does the process of osmosis explain how water moves from the soil into the root?

Osmosis is the movement of water molecules from an area of high concentration to an area of low concentration through a semi-permeable membrane. In the case of plants, water moves from the soil into the root through osmosis because the root cells have a higher concentration of solutes than the surrounding soil. This creates a concentration gradient that drives the movement of water into the root.