1. A charge of 5 µC is on the y-axis at ? = 3 cm, and the second charge of –5 µC is on the y-axis at ? = −3 cm. Find the force exerted on a charge of 2 µC is on the x-axis at ? = 8 cm.

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Chapter1: Units, Trigonometry. And Vectors
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1. A charge of 5 µC is on the y-axis at ? = 3 cm,
and the second charge of –5 µC is on the y-axis at ? = −3 cm. Find the force exerted on a charge of 2 µC is on
the x-axis at ? = 8 cm.

 

 

2. (Young, et. al., Sears and Zemansky's University Physics, 12th Ed.) A +2.00-nC is at the origin, and a second
-5.00-nC point charge is on the x-axis at x = 0.800 m. (a) Find the electric field (magnitude and direction) at
each of the following points on the x-axis: (i) x = 0.200 m; (ii) x = 1.20 m; (iii) x = -0.200 m. (b) Find the
net electric force that the two charges would exert on an electron placed at each point in part (a).
3. (Serway and Jewett, Physics for Scientists and Engineers, 6th Ed.) Four point charges are at the corners of a
square of side a as shown in Figure 6.3.3. (a) Determine the magnitude and direction of the electric field at the
location of charge q. (b) What is the resultant force on q?
a
29
a
a
39
4q
Transcribed Image Text:2. (Young, et. al., Sears and Zemansky's University Physics, 12th Ed.) A +2.00-nC is at the origin, and a second -5.00-nC point charge is on the x-axis at x = 0.800 m. (a) Find the electric field (magnitude and direction) at each of the following points on the x-axis: (i) x = 0.200 m; (ii) x = 1.20 m; (iii) x = -0.200 m. (b) Find the net electric force that the two charges would exert on an electron placed at each point in part (a). 3. (Serway and Jewett, Physics for Scientists and Engineers, 6th Ed.) Four point charges are at the corners of a square of side a as shown in Figure 6.3.3. (a) Determine the magnitude and direction of the electric field at the location of charge q. (b) What is the resultant force on q? a 29 a a 39 4q
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