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Subjects

Physics

Dipole in a Uniform External Field

समान बाहरी विद्युत क्षेत्र में विद्युत द्विध्रुव

In Class 12 Physics, this topic from Chapter 1, Electric Charges and Fields, explains how an electric dipole behaves when placed in a uniform external electric field. Students learn why the equal and opposite forces on the charges produce zero net force but a torque that tends to align the dipole with the field. They study the torque formula, equilibrium positions, stability, and the dipole’s potential energy, U = −p·E, using clear vector and physical interpretations.

Practice questions

01 The direction of dipole moment and electric field are same. What condition is this?

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02 Dipole moment and electric field are in opposite directions. What condition is this?

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03 Dipole moment and electric field are perpendicular. Which statement is correct?

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04 If the net force on a dipole is zero, is it certain that the torque is also zero?

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05 The torque that aligns a dipole in an electric field acts in what way?

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06 Why is it important to identify the angle between the dipole moment direction and the electric field correctly?

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07 In a uniform electric field, a dipole has zero net force and zero torque. Which position is possible?

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08 In a uniform electric field, a dipole has zero net force and maximum torque. What is the position of the dipole?

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09 What is the best solving order for problems involving a dipole in a uniform external electric field?

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10 A dipole has moment 6 C m and is placed in an electric field of 2 N/C. What is the torque when the angle is 30°?

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11 The maximum torque on a dipole is 42 N m in an electric field of 7 N/C. What is the dipole moment?

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12 The maximum torque on a dipole is 54 N m, and its dipole moment is 9 C m. What is the electric field?

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13 A dipole has moment 5 C m and is placed in an electric field of 6 N/C. What is its potential energy in the parallel position?

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14 A dipole has moment 8 C m and is placed in an electric field of 4 N/C. What is its potential energy in the opposite position?

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15 What external work is needed to rotate a dipole from the parallel position to the opposite position if its dipole moment is 3 C m and the electric field is 5 N/C?

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16 What external work is required to move a dipole from the parallel position to the perpendicular position if its dipole moment is 6 C m and the electric field is 2 N/C?

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17 If a dipole is allowed to rotate freely from the opposite position to the parallel position, what happens to its potential energy?

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18 The angle between the dipole moment and the electric field is 60 degrees. What is the dipole's potential energy?

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19 The angle between the dipole moment and the electric field is 60 degrees. If the dipole moment is 8 C m and the field is 2 N/C, what is the potential energy?

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20 The angle between the dipole moment and the electric field is 30 degrees. What fraction of the maximum torque acts on the dipole?

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21 The angle between the dipole moment and the electric field is 60 degrees. What fraction of the maximum torque acts on the dipole?

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22 Under which condition is the torque on a dipole zero while the equilibrium is stable?

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23 Under which condition is the torque on a dipole zero while the equilibrium is unstable?

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24 If the torque on a dipole is maximum, what is the usual value of its potential energy?

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25 If the potential energy of an electric dipole in a uniform electric field is minimum, what is the torque on it?

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