Physics · JEE

Hard Electric flux, Gauss's law and its applications to find field due to infinitely long uniformly charged straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell MCQs for JEE

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Hard Electric flux, Gauss's law and its applications to find field due to infinitely long uniformly charged straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell MCQs train multi-concept problem solving — attempt after mastering easy and medium sets (13+ on Goodmarks).

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Q1PhysicsUnit 11: Electrostatics
The electric field at a distance 3R2\frac{3 R}{2} from the centre of a charged conducting spherical shell of radius R\mathrm{R} is E\mathrm{E}. The electric field at a distance R2\frac{\boldsymbol{R}}{\mathbf{2}} from the centre of the sphere is :
Q2PhysicsUnit 11: Electrostatics
Positive electric flux indicates that electric lines of force are directed
Q3PhysicsUnit 11: Electrostatics
Which of the following statements is not true about Gauss's law?
Q4PhysicsUnit 11: Electrostatics
The Sl unit of electric flux density is
Q5PhysicsUnit 11: Electrostatics
The Gaussian surface for calculating the electric field due to a charge distribution is
Q6PhysicsUnit 11: Electrostatics
The total number of lines of force passing through a surface is called
Q7PhysicsUnit 11: Electrostatics
If the electric flux entering and leaving a closed surface are 6×1066 \times 10^{6} and 9×9 \times 106SI10^{6} S I units respectively, then the charge inside the surface of permittivity of free space ω0\omega_{0} is
Q8PhysicsUnit 11: Electrostatics
If an electric dipole is placed inside a sphere filled with water, then among the following which statement is correct?

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When should I attempt hard Electric flux, Gauss's law and its applications to find field due to infinitely long uniformly charged straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell MCQs?

After 70%+ accuracy on medium MCQs and once core formulas are automatic.