Equipotential Surface: Meaning, Properties & Examples for JEE NEET

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The geoid is the Earth’s hypothetical shape, representing a surface of constant gravitational potential. In summary, equipotential surface is a powerful, exam-focused tool in your JEE Main revision toolkit. Always start field and potential problems by sketching equipotentials for rapid, accurate answers.

Figure 2 shows the electric field and equipotential lines for two equal and opposite charges. Conversely, given the equipotential lines, as in Figure 3a, the electric field lines can be drawn by making them perpendicular to the equipotentials, as in Figure 3b. An isolated point charge Q with its electric field lines in blue and equipotential lines in green. The potential is the same along each equipotential line, meaning that no work is required to move a charge anywhere along one of those lines. Work is needed to move a charge from one equipotential line to another. Equipotential lines are perpendicular to electric field lines in every case.
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An important application of electric fields and equipotential lines involves the heart. The movement of electrical signals causes the chambers of the heart to contract and relax. When a person has a heart attack, the movement of these electrical signals may be disturbed. An artificial pacemaker and a defibrillator can be used to initiate the rhythm of electrical signals.

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The world’s highest-paid female musician in 2015 and 2018, Billboard named her one of the greatest pop stars of the 21st century. Note that in the above equation, E and F symbolize the magnitudes of the electric field strength and force, respectively. Neither q nor E nor d is zero, and so cos θ must be 0, meaning θ must be 90º. In other words, motion along an equipotential is perpendicular to E. The above figure is (a) Equipotential surfaces for a dipole and (b) Equipotential surfaces with two identical positive charges.

If a and b are any two points within or at the surface of a given conductor, and given there is no flow of charge being exchanged between the two points, then the potential difference is zero between the two points. Thus, an equipotential would contain both points a and b as they have the same potential. In the case of a hollow conductor (Faraday cage4), the equipotential region includes the space inside.

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