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’s 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’s surface?
Two electrons must be at a distance of 5.08 m from each other.
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Measurements indicate that there is an electric field surrounding the Earth. Its magnitude is about 150 N/C at the Earth’s surface and points inward toward the Earth’s center. What is the magnitude of the electric charge on the Earth? Is it positive or negative? (Hint: The electric field outside a uniformly charged sphere is the same as if all the charge were concentrated at its center.)
Question:Two point charges,\({Q_1} = - 6.7{\rm{ }}\mu {\bf{C}}\) and\({Q_2} = {\bf{1}}{\bf{.8 }}\mu {\bf{C}}\)are located between two oppositely charged parallel plates, as shown in Fig. 16–65. The two charges are separated by a distance of \(x = 0.47 m\). Assume that the electric field produced by the charged plates is uniform and equal to\(E = 53,000 N/C\). Calculate the net electrostatic force on\({Q_1}\) and give its direction.

FIGURE 16–65 Problem 55.
Explain why fog or rain droplets tend to form around ions or electrons in the air.
Show, using the three rules for field lines given in Section 16–8, that the electric field lines starting or ending on a single point charge must be symmetrically spaced around the charge.
We are not normally aware of the gravitational or electric force between two ordinary objects. What is the reason in each case? Give an example where we are aware of each one and why.
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