A light string passing over a smooth light pulley connects two blocks of masses $$m_1$$ and $$m_2\left(\right.$$ where $$\left.m_2>m_1\right)$$. If the acceleration of the system is $$\frac{g}{\sqrt{2}}$$, then the ratio of the masses $$\frac{m_1}{m_2}$$ is:
To project a body of mass $$m$$ from earth's surface to infinity, the required kinetic energy is (assume, the radius of earth is $$R_E, g=$$ acceleration due to gravity on the surface of earth):
Match List I with List II
LIST I | LIST II | ||
---|---|---|---|
A. | Torque | I. | $$ \left[M^1 L^1 T^{-2} A^{-2}\right] $$ |
B. | Magnetic field | II. | $$ \left[L^2 A^1\right] $$ |
C. | Magnetic moment | III. | $$ \left[M^1 T^{-2} A^{-1}\right] $$ |
D. | Permeability of free space | IV. | $$ \left[M^1 L^2 T^{-2}\right] $$ |
Choose the correct answer from the options given below:
Which of the following phenomena does not explain by wave nature of light.
A. reflection
B. diffraction
C. photoelectric effect
D. interference
E. polarization
Choose the most appropriate answer from the options given below: