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NCERT Exemplar · Q33

Q.[Note: two or more options may be correct] In isotonic solutions ________________.

(i) solute and solvent both are same.
(ii) osmotic pressure is same.
(iii) solute and solvent may or may not be same.
(iv) solute is always same solvent may be different.
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Isotonic solutions have the same osmotic pressure; the solute and solvent may or may not be the same — so options (ii) and (iii) are correct.

The core idea: what "isotonic" really means

When two solutions are separated by a semipermeable membrane — a barrier that lets solvent molecules pass but blocks solute particles — the solvent naturally flows from the region of lower solute concentration to higher solute concentration. That flow is driven by a pressure difference called osmotic pressure.

Two solutions are called isotonic if they exert the same osmotic pressure across such a membrane. That means there is no net flow of solvent between them. This is the defining condition.

For dilute solutions, osmotic pressure Π\Pi is given by van't Hoff's law:

Π=iCRT\Pi = iCRT

where ii is the van't Hoff factor, CC is molar concentration, RR is the gas constant, and TT is the absolute temperature.

So isotonic solutions must have equal values of Π\Pi — which depends on the total concentration of particles (ions or molecules) in solution, not on the chemical identity of the solute or solvent.


Step-by-step reasoning

  1. What does "same osmotic pressure" imply?

    From Π=iCRT\Pi = iCRT, if temperature is the same, isotonic solutions must have the same product iCiC — that is, the same effective particle concentration. This can happen with different solutes (e.g., 0.1 M glucose and 0.05 M NaCl, since NaCl dissociates into two ions). So the solute need not be the same.

  2. Can the solvent be different?

    Osmotic pressure depends on the number of solute particles per volume of solution, not on the solvent's identity. Two solutions with different solvents (e.g., water and ethanol) can have the same osmotic pressure if their particle concentrations match. So the solvent may also be different.

  3. Can the solute and solvent both be the same?

    Yes — if you take two identical solutions, they are obviously isotonic. But that is a special case, not a requirement.

  4. Evaluating each option:

    • (i) "solute and solvent both are same" — Not necessary. False. …

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