If dimensions of critical velocity \({v_c}\) of a liquid flowing through a tube are expressed as \(\eta^{x}\rho^yr^{z}\), where \(\eta, \rho~\text{and}~r\) are the coefficient of viscosity of the liquid, the density of the liquid, and the radius of the tube respectively, then the values of \({x},\) \({y},\) and \({z},\) respectively, will be:
| 1. | \(1,-1,-1\) | 2. | \(-1,-1,1\) |
| 3. | \(-1,-1,-1\) | 4. | \(1,1,1\) |
If force (\(F\)), velocity (\(\mathrm{v}\)), and time (\(T\)) are taken as fundamental units, the dimensions of mass will be:
| 1. | \([FvT^{-1}]\) | 2. | \([FvT^{-2}]\) |
| 3. | \([Fv^{-1}T^{-1}]\) | 4. | \([Fv^{-1}T]\) |
| 1. | impulse and surface tension |
| 2. | angular momentum and work |
| 3. | work and torque |
| 4. | Young's modulus and energy |
The density of a material in a CGS system of units is \(4~\text{grams/cm}^3\). In a system of units in which the unit of length is \(10~\text{cm}\) and the unit of mass is \(100~\text{grams}\), the value of the density of the material will be:
1. \( 0.04 \)
2. \( 0.4 \)
3. \( 40 \)
4. \(400\)
The dimensions of where is the permittivity of free space and E is the electric field, are:
1. [ML2T-2]
2. [ML-1T-2]
3. [ML2T-1]
4. [MLT-1]
| 1. | pressure if \(a=1,\) \(b=-1,\) \(c=-2\) |
| 2. | velocity if \(a=1,\) \(b=0,\) \(c=-1\) |
| 3. | acceleration if \(a=1,\) \(b=1,\) \(c=-2\) |
| 4. | force if \(a=0,\) \(b=-1,\) \(c=-2\) |
Which two of the following five physical parameters have the same dimensions?
| (A) | Energy density |
| (B) | Refractive index |
| (C) | Dielectric constant |
| (D) | Young's modulus |
| (E) | Magnetic field |
Choose the correct option from the given ones:
| 1. | (B) and (D) |
| 2. | (C) and (E) |
| 3. | (A) and (D) |
| 4. | (A) and (E) |