Physics · JEE

Potential difference, equipotential surfaces, electrical potential energy of a system of two point charges and of electric dipole in an electrostatic field Previous Year Questions for JEE

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Q1PhysicsUnit 11: Electrostatics
The top of the atmosphere is about 400 kV with respect to the surface of the earth, corresponding to an electric field that decreases with altitude. Near the surface of the earth, the field is about 100Vm1100 V m^{-1} Still, we do not get an electric shock as we step out of our house into the open house, because (assume the house to be a steel cage so that there is no field inside)
Q2PhysicsUnit 11: Electrostatics
An example of an equipotential surface in earth is
Q3PhysicsUnit 11: Electrostatics
Work done in moving an object through an equipotential surface is
Q4PhysicsUnit 11: Electrostatics
A diverging electron beam enters a region of varying potentials. Intersection of equispaced equipotential plane surfaces with the plane of the paper are shown, with their potentials mentioned in the figure. If before entering this region, xx and yy components of the velocity of electrons are32evm\operatorname{are} 3 \sqrt{\frac{2 e v}{m}} and evm,\sqrt{\frac{e v}{m}}, respectively, where mm is the mass of an electron and ee is the electronic charge, then : This question has multiple correct options
Q5PhysicsUnit 11: Electrostatics
The equi-potential surface in the region are
Q6PhysicsUnit 11: Electrostatics
What is the shape of the equipotential surface for the line charge?
Q7PhysicsUnit 11: Electrostatics
Potential difference between two points is equal to
Q8PhysicsUnit 11: Electrostatics
In a uniform electric field, equipotential surfaces must: This question has multiple correct options

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Why practise PYQs for Potential difference, equipotential surfaces, electrical potential energy of a system of two point charges and of electric dipole in an electrostatic field?

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Our bank includes exam-style MCQs aligned with JEE Main Physics syllabus for Potential difference, equipotential surfaces, electrical potential energy of a system of two point charges and of electric dipole in an electrostatic field, covering the same topics as previous year papers.

How should I use PYQs for Electrostatics?

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