MCQ
The only elastic modulus that applies to fluids is
  • A
    Young's modulus
  • B
    Shear modul
  • C
    Modulus of rigidity
  • Bulk modulus

Answer

Correct option: D.
Bulk modulus
(d)

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Two masses of $1 \mathrm{gm}$ and $4 \mathrm{gm}$ are moving with equal kinetic energies. The ratio of the magnitudes of their linear momenta is
The potential energy of a certain spring when stretched through a distance ' $S$ is $10$ joule. The amount of work (in joule) that must be done on this spring to stretch it through an additional distance ' $S$ will be
A black body has maximum wavelength $\lambda_m$ at temperature $2000 K$. Its corresponding wavelength at temperature $3000 K$ will be
A cell of constant e.m.f. first connected to a resistance $R_1$ and then connected to a resistance $R_2$. If power delivered in both cases is then the internal resistance of the cell is
Two wires of copper having the length in the ratio $4: 1$ and their radii ratio as $1: 4$ are stretched by the same force. The ratio of longitudinal strain in the two will be
Two parallel pillars are $11 \mathrm{~km}$ away from an observer. The minimum distance between the pillars so that they can be seen separately will be
What will be the ratio of de-Broglie wavelengths of proton and $\alpha$-particle of same energy
Two masses $m_A$ and $m_B$ moving with velocities $v_A$ and $v_B$ in opposite directions collide elastically. After that the masses $m_A$ and $m_B$ move with velocity $v_B$ and $v_A$ respectively. The ratio $\left(m_A / m_B\right)$ is
The surface tension of a liquid is $5 \mathrm{~N} / \mathrm{m}$. If a thin film of the area $0.02 \mathrm{~m}$ is formed on a loop, then its surface energy will be
A source of frequency $150 \mathrm{~Hz}$ is moving in the direction of a person with a velocity of $110 \mathrm{~m} / \mathrm{s}$. The frequency heard by the person will be (speed of sound in medium $=330 \mathrm{~m} / \mathrm{s}$ )