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Subjects

Physics

Electric Field and Electric Field Lines

विद्युत क्षेत्र और विद्युत क्षेत्र रेखाएँ

In this Class 12 Physics topic from Chapter 1, Electric Charges and Fields, students learn how electric charges produce an electric field and how the field is represented using electric field lines. The topic explains field strength, direction, the role of a test charge, and the principle of superposition for multiple charges. Students also study the properties, patterns, and relative density of field lines, including their use in understanding isolated charges and electric dipoles.

Practice questions

01 At the midpoint between two equal positive charges, the electric field is zero. Why are electric field lines still not shown intersecting there?

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02 Why do electric field lines not form closed curves in an electrostatic field?

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03 The net field at a point is zero, but at nearby points the field is not zero. What should be understood from this?

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04 A positive charge and a negative charge four times larger in magnitude are placed on a line. Where can the zero electric field point be found?

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05 Two electric fields have equal magnitudes and the angle between them is 120 degrees. What will be the magnitude of the resultant field?

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06 Two equal electric fields are in opposite directions. If the direction of one is slightly rotated, which statement about the resultant field is correct?

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07 In a region electric field lines are equally spaced but curved like circular arcs. Why is this not suitable for a perfectly uniform field?

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08 Why must the tangential component of electric field on an equipotential surface be zero?

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09 What would happen if the tangential component of electric field on the surface of an electrostatic conductor were not zero?

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10 A positive test charge is released on a curved field line. Will it necessarily move along the entire field line?

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11 Equal positive charges are placed at three corners of a square and the fourth corner is empty. The direction of net field at the centre will be related to what?

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12 At a point electric field is zero, yet electric potential can be non-zero. What is the reason?

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13 What is the actual force direction on a positive test charge placed slightly to the right of the midpoint between two equal positive charges?

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14 For two equal unlike charges, a positive test charge is placed slightly above the midpoint. In which direction is the horizontal component of the electric field?

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15 If field lines are directed to the right but potential is said to increase from left to right, what is the issue?

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16 What is the most advanced correct strategy while reading an electric field line diagram?

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17 Where will the zero-field point lie between two unequal like charges and why?

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18 Electrostatic field lines do not form closed loops. What deeper idea is this related to?

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19 In the same electric field the force magnitudes on a proton and an electron are equal. Why are their accelerations not equal?

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20 At a point the electric field is zero but electric potential is positive. In which arrangement can this happen?

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21 At the midpoint of two equal opposite charges the electric potential can be zero, but why is electric field not zero?

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22 At a point on the perpendicular bisector of two equal positive charges, what is the direction of the net electric field?

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23 At a point on the perpendicular bisector of two equal negative charges, what is the direction of the net electric field?

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24 At a point, electric field is zero but potential is not zero. In which example is this possible?

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25 At the midpoint of two equal opposite charges, potential may be zero but why is electric field not zero?

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