If the acceleration due to gravity is 10 ms–2 and the units of length and time are changed in kilometer and hour respectively, the numerical value of the acceleration is 

(1) 360000

(2) 72,000

(3) 36,000

(4) 129600

Subtopic:  Dimensions |
 61%
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If L, C and R represent inductance, capacitance and resistance respectively, then which of the following does not represent dimensions of frequency? [This question includes concepts from the 12th syllabus]

(1) 1RC

(2) RL

(3) 1LC

(4) CL

Subtopic:  Dimensions |
 61%
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The number of particles crossing a unit area perpendicular to the \(x\)-axis in unit time is given by \(n= -D\frac{n_2-n_1}{x_2-x_1}\), where \(n_1\) and \(n_2\) are the number of particles per unit volume for the value of \(x\) equal to \(x_1\) and \(x_2\) respectively. The dimensions of \(D,\) known as the diffusion constant, will be:
1. \(\left[M^0LT^{2}\right]\)
2. \(\left[M^0L^2T^{-4}\right]\)
3. \(\left[M^0LT^{-3}\right]\)
4. \(\left[M^0L^2T^{-1}\right]\)

Subtopic:  Dimensions |
 59%
From NCERT
PMT - 1979
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With the usual notations, the following equation St=u+12a(2t1) is

(1) Only numerically correct

(2) Only dimensionally correct

(3) Both numerically and dimensionally correct

(4) Neither numerically nor dimensionally correct

Subtopic:  Dimensions |
 51%
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If the dimensions of length are expressed as Gxcyhz; where G, c and h are the universal gravitational constant, speed of light and Planck's constant respectively, then  

(1) x=12,  y=12

(2) x=12,  z=12

(3) y=12,  z=32

(4) y=32,  z=-12

Subtopic:  Dimensions |
 69%
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A highly rigid cubical block A of small mass M and side L is fixed rigidly onto another cubical block B of the same dimensions and of low modulus of rigidity η such that the lower face of A completely covers the upper face of B. The lower face of B is rigidly held on a horizontal surface. A small force F is applied perpendicular to one of the side faces of A. After the force is withdrawn block A executes small oscillations. The time period of which is given by 

(1) 2πMηL

(2) 2πLMη

(3) 2πMLη

(4) 2πMηL

Subtopic:  Dimensions |
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The pair(s) of physical quantities that do not have the same dimensions, is (are) 

(1) Reynolds number and coefficient of friction

(2) Latent heat and gravitational potential

(3) Curie and frequency of a light wave

(4) Planck's constant and torque

Subtopic:  Dimensions |
 69%
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If the constant of gravitation (G), Planck's constant (h) and the velocity of light (c) be chosen as fundamental units. The dimension of the radius of gyration is 

(1) h1/2c3/2G1/2

(2) h1/2c3/2G1/2

(3) h1/2c3/2G1/2

(4) h1/2c3/2G1/2

Subtopic:  Dimensions |
 64%
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X = 3YZ2 find dimension of Y in (MKSA) system, if X and Z are the dimension of capacity and magnetic field respectively

(1) M3L2T4A1

(2) ML–2

(3) M3L2T4A4

(4) M3L2T8A4

Subtopic:  Dimensions |
 51%
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PMT - 2003
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In the relation P=αβeαZkθ, P is pressure, Z is the distance, k is the Boltzmann constant and θ is the temperature. The dimensional formula of β will be:

(1) [M0L2T0]

(2) [M1L2T1]

(3) [M1L0T1]

(4) [M0L2T1]

Subtopic:  Dimensions |
 59%
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