Embibe Experts Solutions for Chapter: Electrostatics, Exercise 3: Level 3
Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Electrostatics, Exercise 3: Level 3
Attempt the practice questions on Chapter 13: Electrostatics, Exercise 3: Level 3 with hints and solutions to strengthen your understanding. Physics Crash Course JEE Main solutions are prepared by Experienced Embibe Experts.
Questions from Embibe Experts Solutions for Chapter: Electrostatics, Exercise 3: Level 3 with Hints & Solutions
A particle of mass and charge is initially at rest. At time the particle comes under the influence of an electric field , where and Consider the effect of only the electrical force on the particle. Then the maximum speed in attained by the particle at subsequent times is:

In the figure shown, find the ratio of the linear charge densities (on semi – infinite straight wire) and (on semi – circular part) that is so that the field at is along direction.

The linear charge density on a dielectric ring of radius varies with as where is constant. Find the potential at the center of the ring (in volt).

The capacitor of an oscillatory circuit is enclosed in container. When the container is evacuated, the resonance frequency of the circuit is . When the container is filled with gas, the resonance frequency changes by . The dielectric constant of the gas is . What is the value of ?

A circular disc of radius carries surface charge density where is a constant and is the distance from the center of the disc. Electric flux through a large spherical surface that encloses the charged disc completely is Electric flux through another spherical surface of radius and concentric with the disc is Then the ratio is , the value of is___

In the circuit shown in the figure, there are two parallel plate capacitors each of capacitance . The switch is pressed first to fully charge the capacitor and then released. The switch is then pressed to charge the capacitor . After some time, is released and then is pressed. After some time,

In the given circuit diagram, , and . Find the heat produced in the circuit (in ) after switch is shorted.

Let be the capacitance of a capacitor discharging through a resistor . Suppose be the time taken for the energy stored in the capacitor to reduce to half its initial value and be the time taken for the charge to reduce to one-fourth of its initial value. Then the ratio will be,
