MCQ
Indirect method of charging is:
  • charging by induction
  • B
    to charge by physical contact
  • C
    charging by friction
  • D
    none of these

Answer

Correct option: A.
charging by induction
(a)charging by induction

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Three capacitors are connected to $D.C.$ source of $100\;volts$ shown in the adjoining figure. If the charge accumulated on plates of ${C_1},\;{C_2}$ and ${C_3}$ are ${q_a},\;{q_b},\;{q_c},{q_d}.{q_e}$ and ${q_f}$ respectively, then
An electric field $\vec E\, = (25 \hat i + 30 \hat j)\,NC^{-1}$ exists in a region of space. If the potential at the origin is taken to be zero then the potential at $x\, = 2\, m, y\, = 2\, m$ is......$volt$
Radiocarbon is produced in the atmosphere as a result of:
The electric potential decreases uniformly from $120V$ to $80V$ as one moves on the x-axis from $x = -1cm$ to $x = + 1cm.$ The electric field at the origin.
200 MeV of energy may be obtained per fission of $\mathrm{U}^{235}$. A reactor is generating 1000 kW of power. The rate of nuclear fission in the reactor is
A rectangular loop has a sliding connector $PQ $of length $l$ and resistance $R\,\Omega $ and it is moving with a speed $v$ as shown. The set-up is placed in a uniform magnetic field going into the plane of the paper. The three currents $I_1$, $I_2$ and $I$ are
The light rays having photons of energy $1.8 eV$ are falling on a metal surface having a work function $1.2 eV$. What is the stopping potential to be applied to stop the emitting electrons .......... $eV$
How is the potential within and on the surface of a conductor?
Two infinitely long parallel wires carry equal current in same direction. The magnetic field at a mid point in between the two wires is
The carrier frequency of a transmitter is provided by a tank circuit of a coil of inductance $49\,\mu H$ and a capactiance of $2.5\,nF$ . It is modulated by an audio signal of $12\,kHz$. The frequency range occupied by the side bands is