The process of charging a capacitor is equivalent to that of transferring charge from one plate to the other plate of the capacitor. Some work must be done to charge a capacitor. This work is stored as electrostatic potential energy in the capacitor.
The formula for energy stored in a capacitor is given by
U = Q2/2C or U = CV2/2 or U = QV/2
Where
Energy stored per unit volume of a capacitor is known as electrostatic energy density.
The formula for the energy density of a capacitor is given by
Energy density, Ud = ϵ0E2 / 2
Its SI unit is Joule per cubic meter (J m-3).
A wooden block of mass M lies on a rough floor. Another wooden block of the same mass is hanging from the point O through strings as shown in the figure. To achieve equilibrium, the coefficient of static friction between the block on the floor and the floor itself is
A beam of light of wavelength \(\lambda\) falls on a metal having work function \(\phi\) placed in a magnetic field \(B\). The most energetic electrons, perpendicular to the field, are bent in circular arcs of radius \(R\). If the experiment is performed for different values of \(\lambda\), then the \(B^2 \, \text{vs} \, \frac{1}{\lambda}\) graph will look like (keeping all other quantities constant).