Q.Match the following :
Column I
Column II
You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
Start your 14-day free trial to unlock the full solution →Match thermodynamic properties with their characteristics: vaporization entropy relates to enthalpy and boiling point, spontaneity connects to equilibrium constants, crystal order determines entropy, and adiabatic expansion affects internal energy. The matches are (i)→(b),(d) · (ii)→(b) · (iii)→(c) · (iv)→(a).
The heart of this matching exercise lies in understanding how entropy, spontaneity, and energy behave in different thermodynamic contexts. Each item in Column I represents a fundamental concept whose behavior or value follows from first principles.
Concept: Connecting Thermodynamic Quantities
Entropy measures disorder. Phase transitions, equilibrium positions, structural order, and energy changes all leave signatures in entropy and related quantities. The key is recognizing what each process or state implies about the underlying thermodynamics.
Step-by-Step Matching
1. Entropy of vaporization → (b) is always positive, and (d)
Vaporisation always increases disorder, so is always positive — and its value at the boiling point is :
When a liquid vaporizes at its boiling point, the process occurs reversibly at constant temperature and pressure. The entropy change for this phase transition is:
This is Trouton's rule in its exact form. At the boiling point, the system is in equilibrium between phases, so the heat absorbed divided by the absolute temperature gives the entropy increase as molecules escape into the disordered gas phase.
2. for spontaneous process → (b) is always positive
The equilibrium constant is defined as:
For a spontaneous process under standard conditions, , which means , and therefore . But more fundamentally, itself—being a ratio of activities or concentrations raised to positive powers—is always a positive number by definition, regardless of whether the forward or reverse reaction is spontaneous. You cannot have a negative equilibrium constant; it would be physically meaningless.
Don't confuse " is positive" with "". The statement here is about the sign: equilibrium constants are always positive real numbers, never negative or zero.
3. Crystalline solid state → (c) lowest entropy
Entropy quantifies the number of accessible microstates. In a perfect crystalline solid at low temperature, atoms or molecules are locked into a highly ordered lattice with minimal positional or orientational freedom. This represents the state of minimum disorder for a substance. …
Unlock everything free for 14 days
- Full step-by-step solutions
- Concept-first explanations
- Methods, shortcuts & mistakes
- PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.