Embibe Experts Solutions for Chapter: Electrostatics, Exercise 1: KEAM 2020

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Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Electrostatics, Exercise 1: KEAM 2020

Attempt the practice questions on Chapter 22: Electrostatics, Exercise 1: KEAM 2020 with hints and solutions to strengthen your understanding. EMBIBE CHAPTER WISE PREVIOUS YEAR PAPERS FOR PHYSICS solutions are prepared by Experienced Embibe Experts.

Questions from Embibe Experts Solutions for Chapter: Electrostatics, Exercise 1: KEAM 2020 with Hints & Solutions

MEDIUM
KEAM
IMPORTANT

A point charge + Q is held at rest at a point P. Another point charge -q , whose mass is m , moves at a constant speed v in a circular orbit of radius R1 around P. The work required to increase the radius of revolution of -q from R1, to another orbit R2 is R2>R1 where   K=14πε0

MEDIUM
KEAM
IMPORTANT

The distance between two charges q1=+2μC and q2=+8μC is 15 cm. Calculate the distance from the charge q1 to the points on the line segment joining the two charges where the electric field is zero.

MEDIUM
KEAM
IMPORTANT

An electron, placed in an electric field, experiences a force F of 1 N. What are the magnitude and direction of the electric field E at the point where the electron is located e=1.6×10-19 C ?

MEDIUM
KEAM
IMPORTANT

The electric potential V at any point (x, y, z) in space is given by V=4z2 volt, where x,y,z are all in metre. The electric field at that point (1m,0,2m) in Vm-1 is

MEDIUM
KEAM
IMPORTANT

Four point charge (with equal magnitude of charge of 5 C; but with different signs) are placed at four corners of a square of side 10 m. Assuming that the square is centered at the origin and the configuration of the charges are as given in the figure, the potential and the magnitude of electric field at the origin, respectively are

[Note k=14πε0

Question Image

EASY
KEAM
IMPORTANT

The work done in moving a point charge of 10μC through a distance of 3cm along the equatorial axis of an electric dipole is

MEDIUM
KEAM
IMPORTANT

A point dipole with dipole moment, p=p0K^, is kept at the origin. An external electric field given by E=E02i^-3j^+4k^, is applied on it. Which one of the following statement is true ?

EASY
KEAM
IMPORTANT

The electric flux (in SI units) through any face of a cube due to a positive charge Q situated at the centre of a cube is