Consider a container that is divided by a semipermeable membrane. A sodium chloride (NaCl) solution is placed in the chamber on left-hand side of the membrane and an equal volume of pure water is placed in the chamber on the right-hand side of the membrane (as illustrated BELOW). At this point, osmosis begins. Will osmotic pressure cause the water level to rise on the left-hand side or the right-hand side of the membrane? Initial State: Equal amounts of liquid are placed on opposite sides of a membrane. Saltwater on one side and pure water on the other side. = H₂O molecule = Nation =Cl- ion

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Consider a container that is divided by a semipermeable membrane. A sodium chloride (NaCl) solution is placed in the
chamber on left-hand side of the membrane and an equal volume of pure water is placed in the chamber on the right-hand
side of the membrane (as illustrated BELOW). At this point, osmosis begins. Will osmotic pressure cause the water level
to rise on the left-hand side or the right-hand side of the membrane?
Initial State:
Equal amounts of liquid are placed on
opposite sides of a membrane.
Saltwater on one side and pure water
on the other side.
= H₂O molecule
= Nation
= CI-ion
7
Transcribed Image Text:Consider a container that is divided by a semipermeable membrane. A sodium chloride (NaCl) solution is placed in the chamber on left-hand side of the membrane and an equal volume of pure water is placed in the chamber on the right-hand side of the membrane (as illustrated BELOW). At this point, osmosis begins. Will osmotic pressure cause the water level to rise on the left-hand side or the right-hand side of the membrane? Initial State: Equal amounts of liquid are placed on opposite sides of a membrane. Saltwater on one side and pure water on the other side. = H₂O molecule = Nation = CI-ion 7
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