Q.For an ideal liquid (Note: more than one of the given options may be correct.)
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 →An ideal liquid is perfectly incompressible (resists volume change infinitely) but flows freely under shear (offers zero resistance to shape change). Bulk modulus is infinite, shear modulus is zero.
The question tests your understanding of how elastic moduli capture a material's response to different kinds of stress. Let's think about what defines an ideal liquid and how that translates into the language of moduli.
The concept: Bulk vs. Shear modulus
Bulk modulus measures resistance to volume change under uniform pressure:
A large means the material is hard to compress; means incompressible.
Shear modulus measures resistance to shape change under tangential stress:
A large means the material is rigid against shearing; means it flows freely.
An ideal liquid has two defining properties:
- It is incompressible: you cannot change its volume no matter how much pressure you apply.
- It flows: it offers no resistance to shear; apply any tangential force and it deforms continuously.
Now let's translate these physical properties into the moduli.
Step-by-step analysis
- Incompressibility and bulk modulus An ideal liquid cannot be compressed. When you try to reduce its volume by applying pressure, no matter how large is. Looking at the definition:
As for finite , the denominator vanishes and . The bulk modulus of an ideal liquid is infinite.
-
Fluidity and shear modulus
An ideal liquid flows under the slightest shear stress. It cannot sustain any tangential force without continuous deformation. In other words, for any finite shear strain, the shear stress required is zero (or equivalently, any finite stress produces infinite strain). From the definition:
…
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.