Chapter 16: 16-44P (page 443)
How close must two electrons be if the magnitude of the electric force between them is equal to the weight of either at the Earth鈥檚 surface?
Short Answer
Two electrons must be at a distance of 5.08 m from each other.
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Chapter 16: 16-44P (page 443)
How close must two electrons be if the magnitude of the electric force between them is equal to the weight of either at the Earth鈥檚 surface?
Two electrons must be at a distance of 5.08 m from each other.
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Contrast the net charge on a conductor to the 鈥渇ree charges鈥 in the conductor.
(I) A proton is released in a uniform electric field, and it experiences an electric force of\({\bf{1}}{\bf{.86}} \times {\bf{1}}{{\bf{0}}^{ - {\bf{14}}}}{\bf{ N}}\)toward the south. Find the magnitude and direction of the electric field.
For an experiment, a colleague of yours says he smeared toner particles uniformly over the surface of a sphere 1.0 m in diameter and then measured an electric field of \({\bf{5000 N/C}}\) near its surface. (a) How many toner particles (Example 16鈥6) would have to be on the surface to produce these results? (b) What is the total mass of the toner particles?
Explain why the test charges we use when measuring electric fields must be small.
(II) Draw, approximately, the electric field lines about two point charges, +Q and 鈥3Q, which are a distance l apart.
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