Field Lines in Different Scenarios
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Q. The electric filed intensity at all point in space is given by →E=(√3 ^i−^j) V/m. The equipotential lines in xy plane will be represented by :
Q. Find the electric field due to an infinitely large uniformly charged non-conducting thick sheet, at a point P inside the sheet as shown in figure.
- 2 N/C
- 6 N/C
- 4 N/C
- 10 N/C
Q. An electrostatic field line leaves at angle α from point charge +q1, and connects with point charge –q2 at angle β. Find the ratio q1q2 (Given : α=60∘, β=90∘).
- 12
- 21
- 34
- None of these
Q. An electrostatic field line leaves at angle α from point charge +q1, and connects with point charge –q2 at angle β. Find the ratio q1q2 (Given : α=60∘, β=90∘).
- 12
- 21
- 34
- None of these
Q. The electric filed intensity at all point in space is given by →E=(√3 ^i−^j) V/m. The equipotential lines in xy plane will be represented by :
Q. An electrostatic field line leaves at angle α from point charge +q1, and connects with point charge –q2 at angle β. Find the ratio q1q2 (Given : α=60∘, β=90∘).
- 12
- 21
- 34
- None of these
Q.
Which of the following represent electric field lines due to a uniform spherical charge distribution?
Q.
Which of the following represent electric field lines due to a uniform spherical charge distribution?
Q.
Which of the following represent electric field lines due to a uniform spherical charge distribution?