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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 A charge experiences eight newton force to the right and six newton upward. What is the magnitude of net force?

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02 What is generally the net force on an electric dipole placed in a uniform external electric field?

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03 When is the torque on a dipole in a uniform electric field maximum?

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04 What is the role of torque on a dipole in a uniform electric field?

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05 In which position is a dipole in stable equilibrium?

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06 In which position is a dipole in unstable equilibrium?

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07 What is the main reason for zero net force on a dipole in a uniform electric field?

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08 When is the torque on an electric dipole in a uniform electric field zero?

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09 When is the potential energy of an electric dipole in a uniform electric field minimum?

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10 When is the potential energy of an electric dipole in a uniform electric field maximum?

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11 In which direction does an electric dipole in a uniform electric field generally tend to rotate?

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12 If an electric dipole is parallel to a uniform electric field, what is the torque on it?

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13 If an electric dipole is opposite to a uniform electric field, what is the torque on it?

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14 If the angle between the dipole moment and the electric field is 90°, how is the torque on the dipole?

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15 Why is a couple formed on an electric dipole placed in a uniform electric field?

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16 Which effect is mainly observed on an electric dipole placed in a uniform electric field?

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17 If the magnitude of the electric field is increased while the angle remains the same, what happens to the torque on the dipole?

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18 If the dipole moment is increased, what happens to the torque in the same electric field and at the same angle?

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19 On what does the potential energy of a dipole in a uniform electric field depend?

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20 The dipole moment and electric field are vector quantities. Which rule helps determine the direction of the torque?

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21 The net force on a dipole in a uniform electric field is zero. What does this imply?

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22 A dipole is parallel to the electric field. Which energy state does this represent?

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23 A dipole is opposite to the electric field. Which energy state does this represent?

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24 If the dipole moment is zero, what will be the torque in a uniform electric field?

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25 If the electric field is zero, what will be the torque on a dipole?

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