A-5.0nC charge located at the origin is located near two other charges as shown. The net force acting on the -5.0nC charge is 40j pN. a. Determine the distance d. 4cm + 3cm +2g d. 7.90 cm b. Determine the charge q. 3.71AC %3D c. Determine the electric field at the position F= 3j cm due to all three charges. ting

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Chapter23: Electric Fields
Section: Chapter Questions
Problem 23.6CQ: Consider point A in Figure CQ23.6 located an arbitrary distance from two positive point charges in...
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5 A-5.0nC charge located at the origin is located near two other charges as shown. The net
force acting on the -5.0nC charge is 40j pN.
a. Determine the distance d.
4cm
3cm
+2q
d.
7.90 cm
b. Determine the charge q.
3.71nC
3j
cm due to all three charges.
c. Determine the electric field at the position F =
Transcribed Image Text:5 A-5.0nC charge located at the origin is located near two other charges as shown. The net force acting on the -5.0nC charge is 40j pN. a. Determine the distance d. 4cm 3cm +2q d. 7.90 cm b. Determine the charge q. 3.71nC 3j cm due to all three charges. c. Determine the electric field at the position F =
6 An electron is placed in a constant electric field, E = 2.2 x 10-18j N. The electron is given
an initial velocity of v = 1.5i m.
a. Calculate the acceleration that the electron experiences.
-38.78 m
MM
b. Calculate the time that it takes for the electron to move 1.0m in the -j direction.
7.19s
c. After the time in part b has elapsed, where is the electron relative to its starting
position?
10.89-1.00 m
Transcribed Image Text:6 An electron is placed in a constant electric field, E = 2.2 x 10-18j N. The electron is given an initial velocity of v = 1.5i m. a. Calculate the acceleration that the electron experiences. -38.78 m MM b. Calculate the time that it takes for the electron to move 1.0m in the -j direction. 7.19s c. After the time in part b has elapsed, where is the electron relative to its starting position? 10.89-1.00 m
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