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Which, of the following, is dimensionless?
1. \(\text{impedance}\times\text{conductance} \) 2. \(\dfrac{\text{emissive power}}{\text{emissivity}}\)
3. \(\dfrac{\text{electric field}}{\text{magnetic field}}\) 4. \(\dfrac{\text{inductance}}{\text{capacitance}}\)

Subtopic:  Dimensions |
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Find the dimension of the quantity \(\varepsilon_0hc\):
(where \(\varepsilon_0=\) permittivity of free space, \(h=\) Planck's constant, and \(c=\) speed of light in vacuum)
1. \(\text{(charge)}\times\text{(energy)}\) 2. \(\text{(energy)}^2\)
3. \(\text{(charge)}^2\) 4. \(\dfrac{\text{charge}}{\text{energy}}\)
Subtopic:  Dimensions |
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The dimensions of the elastic modulus of a material are the same as:
1. torque
2. surface tension
3. angular momentum
4. pressure
Subtopic:  Dimensions |
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Match the units mentioned in List-I with the units in List-II.
List-I List-II
(a) H/s (i) s2
(b) H×A (ii) Wb
(c) H×F (iii) s
(d) \(\Omega\)×F (iv) \(\Omega\)
 
1. (a)–(ii), (b)–(iv), (c)–(i), (d)–(iii)
2. (a)–(iv), (b)–(ii), (c)–(i), (d)–(iii)
3. (a)–(iv), (b)–(ii), (c)–(iii), (d)–(i)
4. (a)–(ii), (b)–(iii), (c)–(iv), (d)–(i)
Subtopic:  Dimensions |
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Match the following quantities in List-I with their dimensions in List-II.
List-I List-II
(a) acceleration (i) \([M^0L^0T^0 ]\)
(b) torque (ii) \([ML^{-1}T^{-2} ]\)
(c) absorptive power (iii) \([LT^{-2} ]\)
(d) pressure (iv) \([ML^2T^{-2} ]\)
 
1. (a)-(iii), (b)-(iv), (c)-(i), (d)-(ii)
2. (a)-(iii), (b)-(ii), (c)-(i), (d)-(iv)
3. (a)-(iii), (b)-(i), (c)-(ii), (d)-(iv)
4. (a)-(ii), (b)-(iv), (c)-(iii), (d)-(i)
Subtopic:  Dimensions |
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Match the units of some physical quantities in List-I with their corresponding dimensions in List-II.
List-I List-II
(a) Ohm (i) \([ML^2T^{-2}A^{-1}]\)
(b) Farad (ii) \([ML^2T^{-2}A^{-2}]\)
(c) Henry (iii) \([M^{-1}L^{-2}T^4A^2]\)
(d) Weber (iv) \([ML^2T^{-3}A^{-2}]\)
 
1. (a)-(i), (b)-(ii), (c)-(iv), (d)-(iii)
2. (a)-(iv), (b)-(iii), (c)-(i), (d)-(ii)
3. (a)-(ii), (b)-(iii), (c)-(i), (d)-(iv)
4. (a)-(iv), (b)-(iii), (c)-(ii), (d)-(i)
Subtopic:  Dimensions |
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Darcy's law describes the volume flow rate \((Q) \) of a viscous fluid (viscosity : \(\mu\)) through a porous medium, under the action of a pressure difference. \(\dfrac{Q}{A}=\dfrac{k}{\mu}\left(\dfrac{{\large p}_{1}-{\large p}_{2}}{L}\right) \)
Here, \(k\) is the permeability of the medium. The unit of \(k\) is (SI units):

1. m
2. m2
3. m2/s
4. m/s2
Subtopic:  Dimensions |
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Which of the quantities below have the same dimensions?
(A) \(\dfrac{\text{electric field }\times\text{ magnetic field}}{\mu_0}\)
(B) \(\dfrac{\varepsilon_0\times\text{(electric potential)}^2\times\text{ velocity}}{\text{area}}\)
(C) \(\dfrac{\text{power}}{\text{area}}\)
1. A, B
2. B, C
3. A, C
4. A, B, C
Subtopic:  Dimensions |
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Which of the following, is dimensionless?
1. \(\dfrac{\text{pressure}}{\text{density}\times\text{acceleration}}\) 2. \(\dfrac{\text{density}\times\text{pressure}}{\text{speed}}\)
3. \(\dfrac{\text{viscosity}\times\text{speed}}{\text{surface tension}}\) 4. \(\dfrac{\text{surface tension}}{\text{(speed)}^2}\)
Subtopic:  Dimensions |
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The quantity \(\eta\) is defined by:    \(\eta=\dfrac{1}{\mu_0\sigma}\)
where \(\mu_0\) is the permeability of free space and \(\sigma\) is the electrical conductivity (of a plasma). \(\eta\) is referred to as the magnetic diffusivity. Its SI unit is:
1. m2/s
2. m/s2
3. C-m2/s
4. T-m/s
Subtopic:  Dimensions |
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