IB Biology HL Topic 1 — Life’s Building Blocks & Variety Paper 1 & 2 Core idea ~10 min read

Osmosis

Water does not need a pump or a drop of energy to cross a membrane. It drifts — but it drifts in a predictable direction. Once you see why a water molecule is slightly lopsided, everything about osmosis, tonicity and water potential falls into place.

📚 What you need to know

Why water is such a good solvent

A water molecule is not symmetrical. The oxygen atom pulls the shared electrons of the covalent bonds closer to itself, so that end carries a slight negative charge while the two hydrogen ends carry a slight positive charge. A molecule with separated charges like this is dipolar.

That small imbalance is the whole story. Because water has both a positive end and a negative end, it can line itself up against anything charged — a polar molecule, a positive ion, a negative ion — and hold on through hydrogen bonds or ion-dipole attractions.

Why a water molecule is dipolar The electrons are not shared evenly between the atoms.δ− O H Hδ+ δ+oxygen end is slightly negative hydrogen ends are slightly positive about 105 degreesTwo charged ends on one small molecule. That is what lets water dissolve so much.
The bent shape matters. If water were straight, the two pulls would cancel out and it would not be dipolar at all.

Hydration shells

When a salt such as sodium chloride dissolves, the water molecules turn to face each ion: negative oxygen ends towards the sodium ions, positive hydrogen ends towards the chloride ions. Each solute particle ends up wrapped in a layer of water called a hydration shell, and that is what keeps it dissolved and separated.

The flip side. Non-polar molecules, such as long hydrocarbon chains, have no charged regions for water to grip. No hydration shell can form, so they stay clumped together away from the water — they are hydrophobic.

Osmosis and the partially permeable membrane

Every cell is surrounded by a membrane that is partially permeable: small molecules like water slip through, but larger solute molecules cannot. That one-sided permeability is what makes osmosis possible.

Definition to learn word for word Osmosis is the diffusion of water molecules from a dilute solution to a more concentrated solution through a partially permeable membrane

Water still moves down a concentration gradient — a gradient of water concentration, not solute. The dilute side has more free water molecules, so more of them cross to the concentrated side than come back the other way. The result is a net movement of water from low solute concentration to high solute concentration.

Osmosis across a partially permeable membrane Water crosses freely. The solute is stuck on its own side. partially permeable membrane concentrated solution dilute solution net movement of waterwater passes through; solute molecules cannot water soluteWater moves towards the higher solute concentration. Only the water can even the two sides out.
The solute cannot cross to balance the two sides, so the water has to do all the work.
Students lose marks writing “water moves from high concentration to low concentration” without saying concentration of what. Say “from a dilute solution to a concentrated solution”, or spell it out: high water concentration to low water concentration.

Hypotonic, hypertonic and isotonic

These three words describe the solution outside the cell, compared with the cytoplasm inside it. Get that reference point right and the direction of water movement follows automatically.

Outside solutionCompared with the cytoplasmNet movement of water
HypotonicLower solute concentration (more dilute)Into the cell
HypertonicHigher solute concentration (more concentrated)Out of the cell
IsotonicThe same solute concentrationNo net movement
The three tonicities Each word describes the solution outside the cell. HYPOTONIC ISOTONIC HYPERTONIC water moves in no net movement water moves outcell swells cell unchanged cell shrinksIsotonic means no NET movement, not no movement. Water molecules keep crossing in both directions.
Pink dots are solute. Count them either side of each cell and the direction of the arrow explains itself.
This one catches people out every year. In an isotonic solution water molecules still move in and out constantly, because they still have kinetic energy. What is zero is the net movement in one direction. Never write “no water moves”.

Worked examples

WORKED EXAMPLE

Define osmosis. [2]

Give the movement and the gradient Osmosis is the net movement of water molecules from a region of lower solute concentration (a dilute solution) to a region of higher solute concentration. Name the barrier This movement happens through a partially permeable membrane. 2 marks Leave out “partially permeable membrane” and you have defined diffusion, not osmosis.
WORKED EXAMPLE

Explain why sodium chloride dissolves readily in water but a lipid does not. [3]

Point 1 — the property of water Water is dipolar, with a slightly negative oxygen end and slightly positive hydrogen ends. Point 2 — the salt These charged ends are attracted to the sodium and chloride ions, forming hydration shells around them and holding them in solution. Point 3 — the lipid A lipid is non-polar, so there are no charged regions for water to be attracted to and no hydration shell can form. 3 marks “Like dissolves like” is a handy shortcut, but write out the charges to earn the marks.

💡 Exam tip

⚠ Common mix-up

Up next: Osmosis in Cells — what actually happens to an animal cell and a plant cell when the tonicity is wrong, and why one bursts while the other does not.

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