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A condenser of capacity is charged to a potential of Its terminals are then connected to those of an uncharged condenser of capacity The loss of energy in connecting them together is.



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Question 2
Figure shows a charge array known as an electric quadrupole. For a point on the axis of the quadrupole, obtain the dependence of potential on r for r/a >> 1, and contrast your results with that due to an electric dipole, and an electric monopole (i.e., a single charge).Question 3
A parallel plate capacitor is connected across a battery. Now, keeping the battery connected, a dielectric slab is inserted between the plates. In the process,Question 4
Two charges -q and +q are located at points (0, 0, -a) and (0, 0, a), respectively. (a) What is the electrostatic potential at the points (0, 0, z) and (x, y, 0) ?
(b) Obtain the dependence of potential on the distance r of a point from the origin when r/a >> 1
(c) How much work is done in moving a small test charge from the point (5,0,0) to (-7,0,0) along the x-axis? Does the answer change if the path of the test charge between the same points is not along the x-axis?


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Question Text | A condenser of capacity is charged to a potential of Its terminals are then connected to those of an uncharged condenser of capacity The loss of energy in connecting them together is. |
Answer Type | Video solution: 1 |
Upvotes | 152 |