Skip to content
NCERT Exemplar · Q9

Q.With increase in temperature, the viscosity of (Note: more than one of the given options may be correct.)

(a) gases decreases.
(b) liquids increases.
(c) gases increases.
(d) liquids decreases.
Lakshadweep CbseMCQ· 1mImportance★★★★★est
74% · 39/53 Questions
🔒 Locked · start free trial →

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 →

Viscosity measures resistance to flow. In gases, molecules move faster with heat and collide more, increasing viscosity. In liquids, molecules escape their neighbors more easily with heat, decreasing viscosity. The correct options are (C) and (D).

Why viscosity behaves differently in gases and liquids

Viscosity is the internal friction that resists flow. But the mechanism of that friction is fundamentally different in gases versus liquids, which is why temperature affects them in opposite ways.

In liquids, molecules are packed closely together. Viscosity arises because molecules are held in place by intermolecular forces—they must "break free" from their neighbors to flow past one another. When you heat a liquid, you give molecules more kinetic energy. They vibrate more vigorously and can overcome the attractive forces more easily. The liquid flows more readily; viscosity drops.

In gases, molecules are far apart and intermolecular forces are negligible. Viscosity here comes from momentum transfer: faster-moving molecules in one layer collide with slower ones in an adjacent layer, dragging them along (or slowing down). When you heat a gas, molecules move faster on average. More frequent and energetic collisions mean more momentum is transferred between layers. The gas resists shear more strongly; viscosity rises.


Step-by-step analysis

  1. Identify the physical origin of viscosity in each phase.

    Liquids: cohesive forces between neighboring molecules.

    Gases: momentum exchange via molecular collisions.

  2. Effect of temperature on liquids.

    Heating increases molecular kinetic energy ∝kBT\propto k_B T. Molecules overcome intermolecular attractions more easily, so the liquid flows with less resistance.

ηliquid↓ as T↑\eta_{\text{liquid}} \downarrow \text{ as } T \uparrow

  1. Effect of temperature on gases. …

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.