6. Two identical conducting spheres, O and (2, carry equal amounts of charge and are fixed a distance apart large com- pared with their diameters. They repel each other with an electrical force of 88 mN. Suppose now that a third identical sphere 3, having an insulating handle and initially un- charged, is touched first to sphere O, then to sphere 2, and finally removed. Find the force between spheres 1 and (2) now. See Fig. 11. -F (b) (a) D- (d) (c) Problem 6. Figure 11
6. Two identical conducting spheres, O and (2, carry equal amounts of charge and are fixed a distance apart large com- pared with their diameters. They repel each other with an electrical force of 88 mN. Suppose now that a third identical sphere 3, having an insulating handle and initially un- charged, is touched first to sphere O, then to sphere 2, and finally removed. Find the force between spheres 1 and (2) now. See Fig. 11. -F (b) (a) D- (d) (c) Problem 6. Figure 11
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
Transcribed Image Text:6. Two identical conducting spheres, O and (2, carry equal
amounts of charge and are fixed a distance apart large com-
pared with their diameters. They repel each other with an
electrical force of 88 mN. Suppose now that a third identical
sphere 3, having an insulating handle and initially un-
charged, is touched first to sphere O, then to sphere 2, and
finally removed. Find the force between spheres 1 and (2)
now. See Fig. 11.
-F
(b)
(a)
D-
(d)
(c)
Problem 6.
Figure 11
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