For a uniformly charged non-conducting sphere, the potential \(V(r)\) inside the sphere (at a distance \(r\) from the center) is given by:
\[ V(r) = \frac{1}{4\pi \epsilon_0} \cdot \frac{Q}{R} \left( \frac{3}{2} - \frac{r^2}{2R^2} \right) \]
Here:
At the center (\(r = 0\)):
\[ V_{\text{center}} = \frac{1}{4\pi \epsilon_0} \cdot \frac{Q}{R} \cdot \frac{3}{2} \]
At the surface (\(r = R\)), the potential is:
\[ V_{\text{surface}} = \frac{1}{4\pi \epsilon_0} \cdot \frac{Q}{R} \]
From this, we see:
\[ V_{\text{center}} = \frac{3}{2} V_{\text{surface}} \]
Therefore, the potential at the center is:
\[ V_{\text{center}} = \frac{3V}{2} \]
The potential at the center of the sphere is:
\(\frac{3V}{2}\)
The total number of structural isomers possible for the substituted benzene derivatives with the molecular formula $C_7H_{12}$ is __
Four capacitors each of capacitance $16\,\mu F$ are connected as shown in the figure. The capacitance between points A and B is __ (in $\mu F$)
Among, Sc, Mn, Co and Cu, identify the element with highest enthalpy of atomisation. The spin only magnetic moment value of that element in its +2 oxidation state is _______BM (in nearest integer).
X g of nitrobenzene on nitration gave 4.2 g of m-dinitrobenzene. X =_____ g. (nearest integer) [Given : molar mass (in g mol\(^{-1}\)) C : 12, H : 1, O : 16, N : 14]
A perfect gas (0.1 mol) having \( \bar{C}_V = 1.50 \) R (independent of temperature) undergoes the above transformation from point 1 to point 4. If each step is reversible, the total work done (w) while going from point 1 to point 4 is ____ J (nearest integer) [Given : R = 0.082 L atm K\(^{-1}\)]
The potential of a point is defined as the work done per unit charge that results in bringing a charge from infinity to a certain point.
Some major things that we should know about electric potential:
The ability of a capacitor of holding the energy in form of an electric charge is defined as capacitance. Similarly, we can also say that capacitance is the storing ability of capacitors, and the unit in which they are measured is “farads”.
Read More: Electrostatic Potential and Capacitance
Both the Capacitors C1 and C2 can easily get connected in series. When the capacitors are connected in series then the total capacitance that is Ctotal is less than any one of the capacitor’s capacitance.
Both Capacitor C1 and C2 are connected in parallel. When the capacitors are connected parallelly then the total capacitance that is Ctotal is any one of the capacitor’s capacitance.