05. DIPOLE
Electric Charges and Fields

272179 For distance far away from centre of dipole the change in magnitude of electric field with change in distance from the centre of dipole is:

1 zero.
2 same in equatorial plane as well as axis of dipole.
3 more in case of equatorial plane of dipole as compared to axis of dipole.
4 more in case of axis of dipole as compared to equatorial plane of dipole.
Electric Charges and Fields

272180 Electric field at a point on equatorial line of a dipole & direction of the dipole moment

1 will be parallel
2 will be in opposite direction
3 will be perpendicular
4 are not related
Electric Charges and Fields

272181 If a dipole of dipole moment $\vec{p}$ is placed in a uniform electric field $\vec{E}$, then torque acting on it is given by

1 $\vec{\tau }=\vec{p}.\vec{E}$
2 $\vec{\tau }=\vec{p}\times \vec{E}$
3 $\vec{\tau }=\vec{p}+\vec{E}$
4 $\vec{\tau }=\vec{p}-\vec{E}$
Electric Charges and Fields

272182 If ${{E}_{a}}$ be the electric field strength of a short dipole at a point on its axial line and ${{E}_{e}}$ that on the equatorial line at the same distance, then

1 ${{E}_{e}}=2{{E}_{a}}$
2 ${{E}_{a}}=2{{E}_{e}}$
3 ${{E}_{a}}={{E}_{e}}$
4 None of these
Electric Charges and Fields

272179 For distance far away from centre of dipole the change in magnitude of electric field with change in distance from the centre of dipole is:

1 zero.
2 same in equatorial plane as well as axis of dipole.
3 more in case of equatorial plane of dipole as compared to axis of dipole.
4 more in case of axis of dipole as compared to equatorial plane of dipole.
Electric Charges and Fields

272180 Electric field at a point on equatorial line of a dipole & direction of the dipole moment

1 will be parallel
2 will be in opposite direction
3 will be perpendicular
4 are not related
Electric Charges and Fields

272181 If a dipole of dipole moment $\vec{p}$ is placed in a uniform electric field $\vec{E}$, then torque acting on it is given by

1 $\vec{\tau }=\vec{p}.\vec{E}$
2 $\vec{\tau }=\vec{p}\times \vec{E}$
3 $\vec{\tau }=\vec{p}+\vec{E}$
4 $\vec{\tau }=\vec{p}-\vec{E}$
Electric Charges and Fields

272182 If ${{E}_{a}}$ be the electric field strength of a short dipole at a point on its axial line and ${{E}_{e}}$ that on the equatorial line at the same distance, then

1 ${{E}_{e}}=2{{E}_{a}}$
2 ${{E}_{a}}=2{{E}_{e}}$
3 ${{E}_{a}}={{E}_{e}}$
4 None of these
Electric Charges and Fields

272179 For distance far away from centre of dipole the change in magnitude of electric field with change in distance from the centre of dipole is:

1 zero.
2 same in equatorial plane as well as axis of dipole.
3 more in case of equatorial plane of dipole as compared to axis of dipole.
4 more in case of axis of dipole as compared to equatorial plane of dipole.
Electric Charges and Fields

272180 Electric field at a point on equatorial line of a dipole & direction of the dipole moment

1 will be parallel
2 will be in opposite direction
3 will be perpendicular
4 are not related
Electric Charges and Fields

272181 If a dipole of dipole moment $\vec{p}$ is placed in a uniform electric field $\vec{E}$, then torque acting on it is given by

1 $\vec{\tau }=\vec{p}.\vec{E}$
2 $\vec{\tau }=\vec{p}\times \vec{E}$
3 $\vec{\tau }=\vec{p}+\vec{E}$
4 $\vec{\tau }=\vec{p}-\vec{E}$
Electric Charges and Fields

272182 If ${{E}_{a}}$ be the electric field strength of a short dipole at a point on its axial line and ${{E}_{e}}$ that on the equatorial line at the same distance, then

1 ${{E}_{e}}=2{{E}_{a}}$
2 ${{E}_{a}}=2{{E}_{e}}$
3 ${{E}_{a}}={{E}_{e}}$
4 None of these
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Electric Charges and Fields

272179 For distance far away from centre of dipole the change in magnitude of electric field with change in distance from the centre of dipole is:

1 zero.
2 same in equatorial plane as well as axis of dipole.
3 more in case of equatorial plane of dipole as compared to axis of dipole.
4 more in case of axis of dipole as compared to equatorial plane of dipole.
Electric Charges and Fields

272180 Electric field at a point on equatorial line of a dipole & direction of the dipole moment

1 will be parallel
2 will be in opposite direction
3 will be perpendicular
4 are not related
Electric Charges and Fields

272181 If a dipole of dipole moment $\vec{p}$ is placed in a uniform electric field $\vec{E}$, then torque acting on it is given by

1 $\vec{\tau }=\vec{p}.\vec{E}$
2 $\vec{\tau }=\vec{p}\times \vec{E}$
3 $\vec{\tau }=\vec{p}+\vec{E}$
4 $\vec{\tau }=\vec{p}-\vec{E}$
Electric Charges and Fields

272182 If ${{E}_{a}}$ be the electric field strength of a short dipole at a point on its axial line and ${{E}_{e}}$ that on the equatorial line at the same distance, then

1 ${{E}_{e}}=2{{E}_{a}}$
2 ${{E}_{a}}=2{{E}_{e}}$
3 ${{E}_{a}}={{E}_{e}}$
4 None of these