Exercises · Q4
Q.Explain why pure water has the maximum water potential.
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Start your 14-day free trial to unlock the full solution →Water potential (ψw) expresses the free energy of water (its capacity to do work, such as moving or diffusing) at a given point, and is measured relative to the water potential of pure water at standard atmospheric pressure and temperature, which is defined as zero by convention.
Water potential can be broken down into components:
ψw = ψs + ψp
where ψs is the solute (osmotic) potential and ψp is the pressure potential.
Why pure water has the maximum water potential:
- The solute potential (ψs) of any solution is always negative (or, for pure water, exactly zero), because dissolving a solute reduces the free energy/kinetic activity of the water molecules — the solute particles interact with and "tie up" water molecules, reducing their tendency to move, diffuse, or evaporate. The more solute dissolved, the more negative the solute potential becomes.
- Pure water contains no dissolved solutes at all, so its solute potential is zero — it is the only condition under which ψs = 0.
- Under standard atmospheric pressure (with pressure potential also taken as zero for an open system exposed to the atmosphere), the overall water potential of pure water is therefore the reference value of zero, which is the maximum value water potential can have under normal (non-pressurised) conditions — every solution, by virtue of having a negative solute potential, must have a water potential lower than zero. …
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