267822
Statement-1:- For a charged particle moving from point \(P\) to point \(Q\), the net work done by an electrostatic field on the particle is independent of the path connecting point \(P\) to point \(Q\).
Statement-2:- The net work done by a conservative force on an ojecte moving along a closed loop is zero
267826
Statement A: Electrical potential may exist at a point where the electrical field is zero Statement B : E lectrical Field may exist at a point where the electrical potential is zero.
Statement C : The electric potential inside a charge conducting sphere is constant.
267822
Statement-1:- For a charged particle moving from point \(P\) to point \(Q\), the net work done by an electrostatic field on the particle is independent of the path connecting point \(P\) to point \(Q\).
Statement-2:- The net work done by a conservative force on an ojecte moving along a closed loop is zero
267826
Statement A: Electrical potential may exist at a point where the electrical field is zero Statement B : E lectrical Field may exist at a point where the electrical potential is zero.
Statement C : The electric potential inside a charge conducting sphere is constant.
267822
Statement-1:- For a charged particle moving from point \(P\) to point \(Q\), the net work done by an electrostatic field on the particle is independent of the path connecting point \(P\) to point \(Q\).
Statement-2:- The net work done by a conservative force on an ojecte moving along a closed loop is zero
267826
Statement A: Electrical potential may exist at a point where the electrical field is zero Statement B : E lectrical Field may exist at a point where the electrical potential is zero.
Statement C : The electric potential inside a charge conducting sphere is constant.
267822
Statement-1:- For a charged particle moving from point \(P\) to point \(Q\), the net work done by an electrostatic field on the particle is independent of the path connecting point \(P\) to point \(Q\).
Statement-2:- The net work done by a conservative force on an ojecte moving along a closed loop is zero
267826
Statement A: Electrical potential may exist at a point where the electrical field is zero Statement B : E lectrical Field may exist at a point where the electrical potential is zero.
Statement C : The electric potential inside a charge conducting sphere is constant.
267822
Statement-1:- For a charged particle moving from point \(P\) to point \(Q\), the net work done by an electrostatic field on the particle is independent of the path connecting point \(P\) to point \(Q\).
Statement-2:- The net work done by a conservative force on an ojecte moving along a closed loop is zero
267826
Statement A: Electrical potential may exist at a point where the electrical field is zero Statement B : E lectrical Field may exist at a point where the electrical potential is zero.
Statement C : The electric potential inside a charge conducting sphere is constant.